diff options
Diffstat (limited to 'Working_Examples')
1262 files changed, 65819 insertions, 0 deletions
diff --git a/Working_Examples/154/CH1/EX1.1/ch1_1.sce b/Working_Examples/154/CH1/EX1.1/ch1_1.sce new file mode 100755 index 0000000..a0e4f4d --- /dev/null +++ b/Working_Examples/154/CH1/EX1.1/ch1_1.sce @@ -0,0 +1,20 @@ +clc
+disp("Example 1.1")
+printf("\n")
+printf("Given")
+disp("Acceleration is 2.0m/s^2")
+disp("Mass is 10kg")
+m=10;a=2;
+disp("a)")
+disp("F=m*a")
+F=m*a
+printf("Force is %dN\n",F)
+disp("b)")
+printf("time=4s\n")
+t=4;
+x=(a*t*t)/2
+KE=(F*x)
+P=KE/t
+printf("Position is %dm\n",x)
+printf("Kinetic energy =%3.1fJ\n",KE)
+printf("Power =%3.1fW\n",P)
diff --git a/Working_Examples/154/CH1/EX1.2/ch1_2.sce b/Working_Examples/154/CH1/EX1.2/ch1_2.sce new file mode 100755 index 0000000..eae2a42 --- /dev/null +++ b/Working_Examples/154/CH1/EX1.2/ch1_2.sce @@ -0,0 +1,13 @@ +clc
+disp("Example 1.2")
+printf("\n")
+printf("Given")
+disp("Current flow is 5A")
+disp("Time is 1 minute")
+i=5;
+//As electroms/min is asked so we need to convert A(C/s) to C/min
+i1=5*60;
+//Let e be electronic charge
+e=1.602*10^-19
+n=(i1/e)
+printf("Number of electrons =%3.2f electrons/min\n",n)
\ No newline at end of file diff --git a/Working_Examples/154/CH1/EX1.3/ch1_3.sce b/Working_Examples/154/CH1/EX1.3/ch1_3.sce new file mode 100755 index 0000000..ffc73c5 --- /dev/null +++ b/Working_Examples/154/CH1/EX1.3/ch1_3.sce @@ -0,0 +1,10 @@ +clc
+disp("Example 1.3")
+printf("\n")
+printf("Given")
+disp("Energy is 9.25uJ")
+disp("Charge to be transferred is 0.5uC")
+E=9.25*10^-6;q=0.5*10^-6;
+//1 volt is 1 joule per coulomb
+V=E/q;
+printf("Potential difference between two points a and b is %3.1fV\n",V)
diff --git a/Working_Examples/154/CH1/EX1.4/ch1_4.sce b/Working_Examples/154/CH1/EX1.4/ch1_4.sce new file mode 100755 index 0000000..4a00b66 --- /dev/null +++ b/Working_Examples/154/CH1/EX1.4/ch1_4.sce @@ -0,0 +1,14 @@ +clc
+disp("Example 1.4")
+printf("\n")
+printf("Given")
+disp("Potential difference is 50V")
+disp("Charge per minute is 120C/min")
+V=50;x=120;
+//As Electrical energy is to be calculated charge per minute is to be converted in charge per second
+//Charge per second is nothing but the current
+i=x/60;
+P=i*V;
+//Since is 1W=1J/s
+printf("Rate of energy conversion is %dJ/s\n",P)
+
diff --git a/Working_Examples/154/CH10/EX10.4/ch10_4.sce b/Working_Examples/154/CH10/EX10.4/ch10_4.sce new file mode 100755 index 0000000..bd68900 --- /dev/null +++ b/Working_Examples/154/CH10/EX10.4/ch10_4.sce @@ -0,0 +1,27 @@ +clc
+disp("Problem 10.4")
+printf("\n")
+
+//For V1
+Ro1=25
+Theta1=143.13
+//For V1
+Ro2=11.2
+Theta2=26.57
+//We need to find V1/V2
+//Let V=V1/V2
+Vmag=(Ro1/Ro2)
+Vph=Theta1-Theta2
+x=Vmag*cos((Vph*%pi)/180);
+y=Vmag*sin((Vph*%pi)/180);
+z=complex(x,y)
+//Let V1+V2=V12
+x1=Ro1*cos((Theta1*%pi)/180);
+y1=Ro1*sin((Theta1*%pi)/180);
+z1=complex(x1,y1)
+x2=Ro2*cos((Theta2*%pi)/180);
+y2=Ro2*sin((Theta2*%pi)/180);
+z2=complex(x2,y2)
+V12=z1+z2
+[R,Theta]=polar(V12)
+printf("V1/V2=%0.2f+i*%3.2f \nV1+V2=%3.2f(%3.2f deg)",x,y,R,(Theta*180)/%pi)
\ No newline at end of file diff --git a/Working_Examples/154/CH10/EX10.5/ch10_5.sce b/Working_Examples/154/CH10/EX10.5/ch10_5.sce new file mode 100755 index 0000000..87f47e8 --- /dev/null +++ b/Working_Examples/154/CH10/EX10.5/ch10_5.sce @@ -0,0 +1,28 @@ +clc
+disp("Problem 10.5")
+printf("\n")
+
+printf("Given")
+disp("Voltage is 100(45 deg)")
+disp("Current is 5(15 deg)")
+//For V
+Ro1=100
+Theta1=45
+//For I
+Ro2=5
+Theta2=15
+//We need to find V/I=Z
+
+Zmag=(Ro1/Ro2)
+Zph=Theta1-Theta2
+x=Zmag*cos((Zph*%pi)/180);
+y=Zmag*sin((Zph*%pi)/180);
+z=complex(x,y)
+//Let Y=1/Z
+Ymag=(Ro2/Ro1)
+Yph=Theta2-Theta1
+x1=Ymag*cos((Yph*%pi)/180);
+y1=Ymag*sin((Yph*%pi)/180);
+z1=complex(x1,y1)
+
+printf("R=%3.2fohm XL=%3.2fH \nG=%0.3fS BL=%0.3fS",x,y,x1,abs(y1));
\ No newline at end of file diff --git a/Working_Examples/154/CH10/EX10.7/ch10_7.sce b/Working_Examples/154/CH10/EX10.7/ch10_7.sce new file mode 100755 index 0000000..13299d1 --- /dev/null +++ b/Working_Examples/154/CH10/EX10.7/ch10_7.sce @@ -0,0 +1,45 @@ +clc
+disp("Problem 10.7")
+printf("\n")
+
+printf("Voltage v1=5*cos(w1*t)")
+printf("Voltage v2=10*cos(w2*t+60)")
+//The circuit is modeled as
+disp("Resistance is 10ohm and inductance is 5mH")
+R=10;L=5*10^-3;
+disp("a)")
+w1=2000;w2=2000;
+//Let Z be the impedance of the coil
+Z1=R+%i*L*w1
+Z2=R+%i*L*w2
+//Let V be phasor voltage between the terminals
+Vmag=10;
+Vph=60;
+x=Vmag*cos((Vph*%pi)/180);
+y=Vmag*sin((Vph*%pi)/180);
+z=complex(x,y)
+v=5-z;
+//Let I be the current
+I=v/Z1
+[R,Theta]=polar(I)
+printf("i=%0.2f*cos(%dt%d deg)",R,w1,(Theta*180)/%pi);
+
+disp("b)")
+R=10;L=5*10^-3;
+w1=2000;w2=4000;
+//Let Z be the impedance of the coil
+Z1=R+%i*L*w1
+Z2=R+%i*L*w2
+V1=5;
+//By applying superposition i=i1-i2
+I1=V1/Z1
+[R,Theta]=polar(I1)
+printf("i1=%0.2f*cos(%dt%d deg)\n",R,w1,(Theta*180)/%pi);
+V2mag=10;V2ph=60;
+I2=z/Z2
+[R1,Theta1]=polar(I2)
+printf("i2=%0.2f*cos(%dt%3.2f deg)\n",R1,w2,(Theta1*180)/%pi);
+//i=i1-i2
+printf("i=%0.2f*cos(%dt%d deg)-%0.2f*cos(%dt%3.2f deg)\n",R,w1,(Theta*180)/%pi,R1,w2,(Theta1*180)/%pi)
+
+
diff --git a/Working_Examples/154/CH11/EX11.1/ch11_1.sce b/Working_Examples/154/CH11/EX11.1/ch11_1.sce new file mode 100755 index 0000000..b2eb628 --- /dev/null +++ b/Working_Examples/154/CH11/EX11.1/ch11_1.sce @@ -0,0 +1,19 @@ +clc +disp("Problem 11.1") +printf("\n") + +printf("Given") +disp("Resistance =1000ohm") +t=0:0.5:1; +i=ones(length(t),1) ;i1=-1; +figure +a=gca() +plot(t,i,t+1,i1,t+2,i,t+3,i1) +xtitle("i vs t",'t in ms','i in mA') +i=1*10^-3;R=1000; +//p=i^2*R +p=i^2*R*ones(length(t),1) ; +figure +a=gca() +plot(t,p) +xtitle("p vs t",'t in ms','p in mW')
\ No newline at end of file diff --git a/Working_Examples/154/CH11/EX11.1/ch11_11.jpeg b/Working_Examples/154/CH11/EX11.1/ch11_11.jpeg Binary files differnew file mode 100755 index 0000000..9cdc252 --- /dev/null +++ b/Working_Examples/154/CH11/EX11.1/ch11_11.jpeg diff --git a/Working_Examples/154/CH11/EX11.1/ch11_12.jpeg b/Working_Examples/154/CH11/EX11.1/ch11_12.jpeg Binary files differnew file mode 100755 index 0000000..c6ee408 --- /dev/null +++ b/Working_Examples/154/CH11/EX11.1/ch11_12.jpeg diff --git a/Working_Examples/154/CH11/EX11.10/ch11_10.sce b/Working_Examples/154/CH11/EX11.10/ch11_10.sce new file mode 100755 index 0000000..0fd8a45 --- /dev/null +++ b/Working_Examples/154/CH11/EX11.10/ch11_10.sce @@ -0,0 +1,56 @@ +clc
+disp("Problem 11.10")
+printf("\n")
+
+printf("Given")
+disp("Veff=10V v=10*sqrt(2)*cos(w*t)");
+Veff=10;vmag=10*1.414
+
+disp("a)")
+Z1=1+%i
+[R,Theta]=polar(Z1)
+printf("i1=%d*cos(w*t-%d)\n",(vmag/R),Theta)
+I1eff=(vmag/R)/1.414
+//p1(t)=100*sqrt(2)*cos(wt)*cos(wt-45)
+//On solving
+disp("p1(t)=50+50*sqrt(2)*cos(2*w*t-45) W")
+P1=Veff*I1eff*cos(Theta)
+Q1=Veff*I1eff*sin(Theta)
+S1=P1+%i*Q1
+S1mag=sqrt(P1^2+Q1^2)
+pf1=P1/S1mag
+printf("P1=%dW\nQ1=%dvar\npf1=%0.4f(lag)\n",P1,Q1,pf1)
+
+
+disp("b)")
+Z2=1-%i
+[R,Theta]=polar(Z2)
+printf("i2=%d*cos(w*t%d)\n",(vmag/R),Theta)
+I2eff=(vmag/R)/1.414
+//p2(t)=100*sqrt(2)*cos(wt)*cos(wt+45)
+//On solving
+disp("p2(t)=50+50*sqrt(2)*cos(2*w*t+45) W")
+P2=Veff*I2eff*cos(Theta)
+Q2=Veff*I2eff*sin(Theta)
+S2=P2+%i*Q2
+S2mag=sqrt(P2^2+Q2^2)
+pf2=P2/S2mag
+printf("P2=%dW\nQ2=%dvar\npf2=%0.4f(lag)\n",P2,Q2,pf2)
+
+disp("c)")
+Zmag=(Z1*Z2)/(Z1+Z2)
+printf("i=%d*cos(w*t)\n",(vmag/Zmag))
+Ieff=(vmag/Zmag)/1.414
+//p(t)=100*sqrt(2)*sqrt(2)*cos(wt)*cos(wt)
+//On solving
+disp("p2(t)=200*cos(w*t)^2 W")
+P=Veff*Ieff
+Q=0
+S=P+%i*Q
+Smag=sqrt(P^2+Q^2)
+pf=P/Smag
+printf("P=%dW\nQ=%dvar\npf=%0.4f\n",P,Q,pf)
+
+
+
+
diff --git a/Working_Examples/154/CH11/EX11.11/ch11_11.sce b/Working_Examples/154/CH11/EX11.11/ch11_11.sce new file mode 100755 index 0000000..143b3cf --- /dev/null +++ b/Working_Examples/154/CH11/EX11.11/ch11_11.sce @@ -0,0 +1,27 @@ +clc
+disp("Problem 11.11")
+printf("\n")
+
+printf("Given")
+disp("v=42.5*cos(1000*t+30 deg)V Z=3+i4 ohm")
+Vmag=42.5;
+Z=3+%i*4;
+R=sqrt(3^2+4^2)
+Theta=atan(4/3)*(180/%pi)
+Veffm=Vmag/sqrt(2)
+Veffph=30
+Ieffm=Veffm/R
+Ieffph=30-Theta
+
+Smag=Veffm*Ieffm
+Sph=Veffph-Ieffph
+x=Smag*cos((Sph*%pi)/180)
+y=Smag*sin((Sph*%pi)/180)
+z=complex(x,y)
+pf=cos((Theta*%pi)/180);
+
+printf("Real Power is %fW\n",x)
+printf("Reactive Power is %fvar(inductive)\n",y)
+printf("Complex Power is %fVA\n",Smag)
+printf("Power factor is %3.1f(lag)\n",pf)
+
diff --git a/Working_Examples/154/CH11/EX11.12/ch11_12.sce b/Working_Examples/154/CH11/EX11.12/ch11_12.sce new file mode 100755 index 0000000..346fdf4 --- /dev/null +++ b/Working_Examples/154/CH11/EX11.12/ch11_12.sce @@ -0,0 +1,29 @@ +clc
+disp("Problem 11.12")
+printf("\n")
+
+printf("Given")
+disp("pf1=1 ; pf2=0.5 ; pf3=0.5")
+disp("P1=10kW;P2=20kW;P3=15kW")
+disp("Power supply is 6kV")
+P1=10000;P2=20000;P3=15000;
+Veff=6000;
+pf1=1 //implifies that theta1=0
+t1=0
+Q1=P1*t1
+
+pf2=0.5 //implifies that theta1=60
+t2=1.73;
+Q2=P2*t2
+
+pf3=1 //implifies that theta1=53.13
+t3=1.33;
+Q3=P3*t3
+
+PT=P1+P2+P3
+QT=Q1+Q2+Q3
+ST=sqrt(PT^2+QT^2)
+pfT=PT/ST
+Ieff=ST/Veff
+Ieffph=acos(pfT)*(180/%pi)
+printf("PT=%dW\nQT=%dvar\nST=%dVA\npf=%0.2f(lag)\nIeff=%3.1f(%3.2f deg)\n",PT,QT,ST,pfT,Ieff,Ieffph)
diff --git a/Working_Examples/154/CH11/EX11.13/ch11_13.sce b/Working_Examples/154/CH11/EX11.13/ch11_13.sce new file mode 100755 index 0000000..63dcd76 --- /dev/null +++ b/Working_Examples/154/CH11/EX11.13/ch11_13.sce @@ -0,0 +1,20 @@ +clc
+disp("Problem 11.13")
+printf("\n")
+
+printf("Given")
+disp("Power factor is 0.95(lag)")
+vmag=240;Zmag=3.5;Zph=25;
+I1mag=vmag/Zmag;iph=0-Zph;
+//Smag=Veff*Ieff
+Smag=(vmag/sqrt(2))*(I1mag/sqrt(2))
+Sph=0+abs(iph)
+x=Smag*cos((Sph*%pi)/180)
+y=Smag*sin((Sph*%pi)/180)
+z=complex(x,y)
+pf=0.95
+theta=acos(0.95)*(180/%pi)
+//From fig 11.11
+//Solving for Qc
+Qc=y-(tan((theta*%pi)/180)*x)
+printf("\n Qc=%dvar(Capacitive )\n",Qc)
diff --git a/Working_Examples/154/CH11/EX11.14/ch11_14.sce b/Working_Examples/154/CH11/EX11.14/ch11_14.sce new file mode 100755 index 0000000..8b28778 --- /dev/null +++ b/Working_Examples/154/CH11/EX11.14/ch11_14.sce @@ -0,0 +1,25 @@ +clc
+disp("Problem 11.14")
+printf("\n")
+
+printf("Given")
+disp("Power =1000kW ; pf=0.5(lag)")
+disp("Voltage source is 5kV")
+disp("Improved power factor is 0.8")
+
+//Before improvement
+P=1000*10^3;
+pf=0.5;V=5*10^3;
+S=(P/pf)*10^-3
+I=S/V
+
+//After improvement
+P=1000*10^3;
+pf=0.8;V=5*10^3;
+S=(P/pf)*10^-3
+I1=S/V
+
+disp("Current is reduced by ")
+red=((I-I1)/I)*100
+printf("Percentage reduction in current is %3.1fpercent\n",red)
+
diff --git a/Working_Examples/154/CH11/EX11.16/ch11_16.sce b/Working_Examples/154/CH11/EX11.16/ch11_16.sce new file mode 100755 index 0000000..1389705 --- /dev/null +++ b/Working_Examples/154/CH11/EX11.16/ch11_16.sce @@ -0,0 +1,46 @@ +clc
+disp("Problem 11.16")
+printf("\n")
+
+printf("Given")
+disp("Vg=100V(rms)")
+disp("Zg=1+i Z1=2")
+Vg=100;
+
+disp("a)")
+Zg=1+%i;
+Z1=2
+Z=Z1+Zg
+Zmag=sqrt(real(Z)^2+imag(Z)^2)
+I=Vg/Zmag
+PZ1=real(Z1)*(I^2)
+Pg=real(Zg)*(I^2)
+PT=PZ1+Pg
+printf("PZ=%dW\n Pg=%dW\n PT=%dW\n",PZ1,Pg,PT);
+
+disp("b)")
+//If Z2=a+i*b
+//Zg*=1-i
+//Given that
+//(Z1*Z2)/(Z1+Z2)=1-i
+//As Z1=2 and solving for Z2
+ disp(-%i,"Z2=")
+
+disp("c)")
+//If Z2 is taken the value as calculated in b) then Z=1-i
+Zg=1+%i;
+Z1=2;
+Z=1-%i;
+Zt=Z+Zg
+Zmag=sqrt(real(Zt)^2+imag(Zt)^2)
+I=Vg/Zmag
+PZ=real(Z)*(I^2)
+Pg=real(Zg)*(I^2)
+//To calculate PZ1 and PZ2 we need to first calculate IZ1 nad IZ2
+VZ=I*(1-%i)
+IZ1=VZ/Z1
+IZ1mag=sqrt(real(IZ1)^2+imag(IZ1)^2)
+PZ1=real(Z1)*(IZ1mag^2)
+PZ2=PZ-PZ1
+PT=PZ1+PZ2+Pg
+printf("PZ=%dW\n Pg=%dW\n PT=%dW\n",PZ,Pg,PT);
diff --git a/Working_Examples/154/CH11/EX11.17/ch11_17.sce b/Working_Examples/154/CH11/EX11.17/ch11_17.sce new file mode 100755 index 0000000..3fdef1c --- /dev/null +++ b/Working_Examples/154/CH11/EX11.17/ch11_17.sce @@ -0,0 +1,80 @@ +clc
+disp("Problem 11.17")
+printf("\n")
+
+printf("Given")
+disp("v1=5*cos(w1*t) v2=10*cos(w2*t+60)")
+//The circuit is modeled as
+disp("Resistance is 10ohm and inductance is 5mH")
+R=10;L=5*10^-3;
+//Let V be phasor voltage between the terminals
+Vmag=10;
+Vph=60;
+x=Vmag*cos((Vph*%pi)/180);
+y=Vmag*sin((Vph*%pi)/180);
+z=complex(x,y)
+
+disp("a)")
+w1=2000;w2=4000;
+//Let Z be the impedance of the coil
+Z1=R+%i*L*w1
+Z2=R+%i*L*w2
+V1=5;
+//By applying superposition i=i1-i2
+I1=V1/Z1
+[R1,Theta]=polar(I1)
+printf("i1=%0.2f*cos(%dt%d deg)\n",R1,w1,(Theta*180)/%pi);
+P1=(R*R1^2)/2
+
+V2mag=10;V2ph=60;
+I2=z/Z2
+[R2,Theta1]=polar(I2)
+printf("i2=%0.2f*cos(%dt%3.2f deg)\n",R2,w2,(Theta1*180)/%pi);
+P2=(R*R2^2)/2
+
+//i=i1-i2
+printf("i=%0.2f*cos(%dt%d deg)-%0.2f*cos(%dt%3.2f deg)\n",R1,w1,(Theta*180)/%pi,R2,w2,(Theta1*180)/%pi)
+
+printf("P1=%0.3fW\nP2=%3.1fW\nTotal power(P)=%3.3fW\n",P1,P2,(P1+P2))
+
+disp("b)")
+//From problem 10.7
+imagn=0.61
+P=(R*imagn^2)/2
+printf("Power dissipated in the coil=%3.3fW\n",P)
+
+disp("c)")
+w1=2000;w2=1414;
+//Let Z be the impedance of the coil
+Z1=R+%i*L*w1
+Z2=R+%i*L*w2
+V1=5;
+//By applying superposition i=i1-i2
+I1=V1/Z1
+[R1,Theta]=polar(I1)
+printf("i1=%0.2f*cos(%dt%d deg)\n",R1,w1,(Theta*180)/%pi);
+P1=(R*R1^2)/2
+
+V2mag=10;V2ph=60;
+x1=V2mag*cos((V2ph*%pi)/180);
+y1=V2mag*sin((V2ph*%pi)/180);
+z1=complex(x1,y1)
+I3=z1/Z2
+[R3,Theta3]=polar(I3)
+printf("i2=%0.2f*cos(%dt+%3.2f deg)\n",R3,w2,(Theta3*180)/%pi);
+P3=(R*R3^2)/2
+
+//i=i1-i2
+printf("i=%0.2f*cos(%dt%d deg)-%0.2f*cos(%dt+%3.2f deg)\n",R1,w1,(Theta*180)/%pi,R3,w2,(Theta3*180)/%pi)
+
+printf("P1=%0.3fW\nP2=%3.1fW\nTotal power(P)=%3.3fW\n",P1,P3,(P1+P3))
+
+
+
+
+
+
+
+
+
+
diff --git a/Working_Examples/154/CH11/EX11.2/ch11_2.sce b/Working_Examples/154/CH11/EX11.2/ch11_2.sce new file mode 100755 index 0000000..8ce67ad --- /dev/null +++ b/Working_Examples/154/CH11/EX11.2/ch11_2.sce @@ -0,0 +1,37 @@ +clc +disp("Problem 11.2") +printf("\n") + +t=0:0.5:1; +i=ones(length(t),1);i1=-1; +figure +a=gca() +plot(t,i,t+1,i1) +xtitle("i vs t",'t in ms','i in mA') +//Voltage across capacitor vC=(1/C)*integrate(i*dt) +//On integration +t=0:0.0005:0.001 +v=2000*t +v1=2-v; +figure +a=gca() +plot(t,v,t+0.001,v1,t+0.002,v,t+0.003,v1) +xtitle("v vs t",'t in ms','v in V') + +//Power is p=v*i +t=0:.0005:.001 +p=2000*t +p1=p-2; +figure +a=gca() +plot(t,p,t+0.001,p1,t+0.002,p,t+0.003,p1) +xtitle("p vs t",'t in ms','p in W') + +//Work is (C*v^2)/2 +t=0:.0005:.001 +w=t.^2 +w1=t.^2+1*10^-6-(2*10^-3*t); +figure +a=gca() +plot(t,w,t+0.001,w1,t+0.002,w,t+0.003,w1) +xtitle("w vs t",'t in ms','w in J')
\ No newline at end of file diff --git a/Working_Examples/154/CH11/EX11.2/ch11_21.jpeg b/Working_Examples/154/CH11/EX11.2/ch11_21.jpeg Binary files differnew file mode 100755 index 0000000..40336d2 --- /dev/null +++ b/Working_Examples/154/CH11/EX11.2/ch11_21.jpeg diff --git a/Working_Examples/154/CH11/EX11.4/ch11_4.sce b/Working_Examples/154/CH11/EX11.4/ch11_4.sce new file mode 100755 index 0000000..cdf0690 --- /dev/null +++ b/Working_Examples/154/CH11/EX11.4/ch11_4.sce @@ -0,0 +1,15 @@ +clc +disp("Problem 11.4") +printf("\n") + +printf("Given") +disp("Veff=110V Z=10+i8 ohm") +Veff=110; +Z=10+%i*8; +R = 10; +Zmag=sqrt(10^2+8^2) +Zph=(atan(8/10)*180)/%pi +P=(Veff^2*R)/(Zmag^2) +pf=cos((Zph*%pi)/180) + +disp(pf,"Power factor is")
\ No newline at end of file diff --git a/Working_Examples/154/CH11/EX11.5/ch11_5.sce b/Working_Examples/154/CH11/EX11.5/ch11_5.sce new file mode 100755 index 0000000..220644b --- /dev/null +++ b/Working_Examples/154/CH11/EX11.5/ch11_5.sce @@ -0,0 +1,14 @@ +clc
+disp("Problem 11.5")
+printf("\n")
+
+printf("Given")
+disp("Veff=110V Ieff=20(-50 deg)")
+Imagn=20;Iph =-50;
+Veff=110;
+
+P=Veff*Imagn*cos((abs(Iph)*%pi)/180)
+Q=Veff*Imagn*sin((abs(Iph)*%pi)/180)
+printf("Average power is %3.1fW\n",P)
+printf("Reactive power is %3.1fvar\n",Q)
+
diff --git a/Working_Examples/154/CH12/EX12.2/ch12_2.sce b/Working_Examples/154/CH12/EX12.2/ch12_2.sce new file mode 100755 index 0000000..a5eb3dc --- /dev/null +++ b/Working_Examples/154/CH12/EX12.2/ch12_2.sce @@ -0,0 +1,60 @@ +clc
+disp("Example 12.2")
+printf("\n")
+
+printf("Given")
+disp("The system ABC is DELTA connected")
+disp("Effective line voltage is 120V")
+disp("The three impedances are 5(45 deg)")
+Zmag=5;Zph=45;
+//Let maximum line voltage is Vmax
+Vmax=120*sqrt(2)
+//From fig 12.7(a)
+//VAB=Vmax(120 deg)
+//VBC=Vmax(0 deg)
+//VCA=Vmax(240 deg)
+
+//From figure 12.8
+IABmag=Vmax/Zmag
+IABph=120-Zph
+printf("IAB=%3.2f(%d deg)\n",IABmag,IABph);
+
+IBCmag=Vmax/Zmag
+IBCph=0-Zph
+printf("IBC=%3.2f(%d deg)\n",IBCmag,IBCph);
+
+ICAmag=Vmax/Zmag
+ICAph=240-Zph
+printf("ICA=%3.2f(%d deg)\n",ICAmag,ICAph);
+
+//Applying KCL equation
+//IA=IAB+IAC
+//IB=IBC+IBA
+//IC=ICA+ICB
+
+x=IABmag*cos((IABph*%pi)/180);
+y=IABmag*sin((IABph*%pi)/180);
+z=complex(x,y)
+
+x1=ICAmag*cos((ICAph*%pi)/180);
+y1=ICAmag*sin((ICAph*%pi)/180);
+z1=complex(x1,y1)
+
+x2=IBCmag*cos((IBCph*%pi)/180);
+y2=IBCmag*sin((IBCph*%pi)/180);
+z2=complex(x2,y2)
+
+IA=z-z1;
+[RA,ThetaA]=polar(IA)
+
+IB=z2-z;
+[RB,ThetaB]=polar(IB)
+
+IC=z1-z2
+[RC,ThetaC]=polar(IC)
+
+disp("Therefore")
+
+printf("\nIA=%3.2f(%d deg)A\n",RA,ThetaA*(180/%pi));
+printf("\nIB=%3.2f(%d deg)A\n",RB,ThetaB*(180/%pi));
+printf("\nIC=%3.2f(%d deg)A\n",RC,ThetaC*(180/%pi));
\ No newline at end of file diff --git a/Working_Examples/154/CH12/EX12.5/ch12_5.sce b/Working_Examples/154/CH12/EX12.5/ch12_5.sce new file mode 100755 index 0000000..d24df03 --- /dev/null +++ b/Working_Examples/154/CH12/EX12.5/ch12_5.sce @@ -0,0 +1,63 @@ +clc
+disp("Example 12.5")
+printf("\n")
+
+printf("Given")
+disp("The system ABC is DELTA connected")
+disp("Maximum line voltage is 339.4V")
+disp("The three impedances are 10(0 deg),10(30 deg),15(-30 deg)")
+
+ZABmag=10;ZABph=0;
+ZBCmag=10;ZBCph=30;
+ZCAmag=15;ZCAph=-30;
+//Let maximum line voltage is Vmax
+Vmax=339.4
+//From fig 12.7(a)
+//VAB=Vmax(120 deg)
+//VBC=Vmax(0 deg)
+//VCA=Vmax(240 deg)
+
+//From figure 12.15
+IABmag=Vmax/ZABmag
+IABph=120-ZABph
+printf("IAB=%3.2f(%d deg)\n",IABmag,IABph);
+
+IBCmag=Vmax/ZBCmag
+IBCph=0-ZBCph
+printf("IBC=%3.2f(%d deg)\n",IBCmag,IBCph);
+
+ICAmag=Vmax/ZCAmag
+ICAph=240-ZCAph
+printf("ICA=%3.2f(%d deg)\n",ICAmag,ICAph);
+
+//Applying KCL equation
+//IA=IAB+IAC
+//IB=IBC+IBA
+//IC=ICA+ICB
+
+x=IABmag*cos((IABph*%pi)/180);
+y=IABmag*sin((IABph*%pi)/180);
+z=complex(x,y)
+
+x1=ICAmag*cos((ICAph*%pi)/180);
+y1=ICAmag*sin((ICAph*%pi)/180);
+z1=complex(x1,y1)
+
+x2=IBCmag*cos((IBCph*%pi)/180);
+y2=IBCmag*sin((IBCph*%pi)/180);
+z2=complex(x2,y2)
+
+IA=z-z1;
+[RA,ThetaA]=polar(IA)
+
+IB=z2-z;
+[RB,ThetaB]=polar(IB)
+
+IC=z1-z2
+[RC,ThetaC]=polar(IC)
+
+disp("Therefore")
+
+printf("\nIA=%3.2f(%d deg)A\n",RA,ThetaA*(180/%pi));
+printf("\nIB=%3.2f(%d deg)A\n",RB,ThetaB*(180/%pi));
+printf("\nIC=%3.2f(%d deg)A\n",RC,ThetaC*(180/%pi));
\ No newline at end of file diff --git a/Working_Examples/154/CH12/EX12.6/ch12_6.sce b/Working_Examples/154/CH12/EX12.6/ch12_6.sce new file mode 100755 index 0000000..039e4f5 --- /dev/null +++ b/Working_Examples/154/CH12/EX12.6/ch12_6.sce @@ -0,0 +1,52 @@ +clc
+disp("Example 12.6")
+printf("\n")
+
+printf("Given")
+disp("The system CBA is WYE connected")
+disp("Maximum line voltage is 150V")
+disp("The three impedances are 6(0 deg),6(30 deg),5(45 deg)")
+ZAmag=6;ZAph=0;
+ZBmag=6;ZBph=30;
+ZCmag=5;ZCph=45;
+//Let maximum line voltage is Vmax
+Vmax=150
+//Let the line to neutral voltage magnitude be Vn
+Vn=Vmax/sqrt(3)
+//From fig 12.7(b)
+//VAN=Vn(-90 deg)
+//VBN=Vn(30 deg)
+//VCN=Vn(150 deg)
+
+//From figure 12.16
+IAmag=Vn/ZAmag
+IAph=-90-ZAph
+printf("\nIA=%3.2f(%d deg)A\n",IAmag,IAph);
+
+IBmag=Vn/ZBmag
+IBph=30-ZBph
+printf("\nIB=%3.2f(%d deg)A\n",IBmag,IBph);
+
+ICmag=Vn/ZCmag
+ICph=150-ZCph
+printf("\nIC=%3.2f(%d deg)A\n",ICmag,ICph);
+
+//Now to calculate IN
+//IN=-(IA+IB+IC)
+x=IAmag*cos((IAph*%pi)/180);
+y=IAmag*sin((IAph*%pi)/180);
+z=complex(x,y)
+
+x1=ICmag*cos((ICph*%pi)/180);
+y1=ICmag*sin((ICph*%pi)/180);
+z1=complex(x1,y1)
+
+x2=IBmag*cos((IBph*%pi)/180);
+y2=IBmag*sin((IBph*%pi)/180);
+z2=complex(x2,y2)
+
+IN=-(z+z1+z2)
+
+[R,Theta]=polar(IN)
+
+printf("\nIN=%3.2f(%d deg)A\n",R,Theta*(180/%pi));
diff --git a/Working_Examples/154/CH13/EX13.2/ch13_2.sce b/Working_Examples/154/CH13/EX13.2/ch13_2.sce new file mode 100755 index 0000000..b4b8409 --- /dev/null +++ b/Working_Examples/154/CH13/EX13.2/ch13_2.sce @@ -0,0 +1,31 @@ +clc
+disp("Problem 13.2")
+printf("\n")
+
+printf("Given")
+disp("|Hv|=1/sqrt(2) (1)")
+disp("Resistance R1=5kohm")
+R1=5000;
+disp("Hv(w)=1/1+%i*(w/wx) (2)")
+//wx=1/(R1*C2)
+//On solving we get
+disp("wx=2*10^-4/C2 (3)")
+
+disp("a)")
+C2=10*10^-9;
+//Taking modulus of (2)
+disp("|Hv(w)|=1/sqrt(1+(w/wx)^2)")
+//Equating (1) and (2)
+wx=2*10^-4/C2;
+fx=(wx/(2*%pi))*10^-3
+printf("Frequency(a) is %3.2fkHz\n",fx)
+
+disp("b)")
+C2b=1*10^-9;
+//As frequency is inversely proportional to C2 (from (3))
+fx1=(C2/C2b)*fx
+printf("Frequency(b) is %3.2fkHz\n",fx1)
+
+
+
+
diff --git a/Working_Examples/154/CH13/EX13.7/ch13_7.sce b/Working_Examples/154/CH13/EX13.7/ch13_7.sce new file mode 100755 index 0000000..34dda83 --- /dev/null +++ b/Working_Examples/154/CH13/EX13.7/ch13_7.sce @@ -0,0 +1,21 @@ +clc
+disp("Problem 13.7")
+printf("\n")
+
+s=%s;
+printf("Given")
+H=(10*s)/(s^2+300*s+10^6)
+disp(H,"H(s)=")
+//From the above transfer function
+//Comparing the denominator with s^2+a*s+b with w=sqrt(b)
+a=300;b=10^6;
+//Therefore center frequency is
+w0=sqrt(10^6)
+//The lower and upper frequencies are
+wl=sqrt(a^2/4+b)-a/2
+wh=sqrt(a^2/4+b)+a/2
+B=wh-wl //It can be inferred that B=a
+Q=sqrt(b)/a
+printf("\nCenter frequency= %drad/s\n",w0);
+printf("Low power frequency = %3.2frad/s\nHigh power frequency = %3.2frad/s\n",wl,wh);
+printf("Bandwidth= %drad/s\nQuality factor =%3.2f\n",B,Q)
diff --git a/Working_Examples/154/CH13/EX13.8/ch13_8.sce b/Working_Examples/154/CH13/EX13.8/ch13_8.sce new file mode 100755 index 0000000..a2b2331 --- /dev/null +++ b/Working_Examples/154/CH13/EX13.8/ch13_8.sce @@ -0,0 +1,21 @@ +clc
+disp("Problem 13.8")
+printf("\n")
+
+s=%s;
+printf("Given")
+H=(10*s)/(s^2+30*s+10^6)
+disp(H,"H(s)=")
+//From the above transfer function
+//Comparing the denominator with s^2+a*s+b with w=sqrt(b)
+a=30;b=10^6;
+//Therefore center frequency is
+w0=sqrt(10^6)
+//The lower and upper frequencies are
+wl=sqrt(a^2/4+b)-a/2
+wh=sqrt(a^2/4+b)+a/2
+B=wh-wl
+Q=sqrt(b)/a
+printf("\nCenter frequency= %drad/s\n",w0);
+printf("Low power frequency = %3.2frad/s\nHigh power frequency = %3.2frad/s\n",wl,wh);
+printf("Bandwidth= %drad/s\nQuality factor =%3.2f\n",B,Q)
diff --git a/Working_Examples/154/CH14/EX14.1/ch14_1.sce b/Working_Examples/154/CH14/EX14.1/ch14_1.sce new file mode 100755 index 0000000..4737b79 --- /dev/null +++ b/Working_Examples/154/CH14/EX14.1/ch14_1.sce @@ -0,0 +1,29 @@ +clc
+disp("Example 14.1")
+printf("\n")
+
+s=%s;
+//Applying KVL equation to the two loops we get
+//V1=2*I1+s*(I1+I2)
+//V2=3*I2+s*(I1+I2)
+
+//On solving we get
+disp("(s+2)*I1+s*I2=V1 (1)");
+disp("s*I1+(s+3)*I2=V2 (2)");
+
+//The equations which contain Z parameters are
+//V1=Z11*I1+Z12*I2
+//V2=Z21*I1+Z22*I2
+
+//On comparing (1) and (2) with above equations
+Z11=s+2;
+Z12=s;
+Z21=s;
+Z22=s+3;
+
+disp(Z11,"Z11=")
+disp(Z12,"Z12=")
+disp(Z21,"Z21=")
+disp(Z22,"Z22=")
+
+
diff --git a/Working_Examples/154/CH14/EX14.10/ch14_10.sce b/Working_Examples/154/CH14/EX14.10/ch14_10.sce new file mode 100755 index 0000000..965dc13 --- /dev/null +++ b/Working_Examples/154/CH14/EX14.10/ch14_10.sce @@ -0,0 +1,29 @@ +clc
+disp("Example 14.10")
+printf("\n")
+
+s=%s;
+//Applying KVL equation to the two loops we get
+//V1=3*I1+3*(I1+I2)
+//V2=7*I1+3*(I1+I2)+2*I2
+
+//On solving we get
+disp("6*I1+3*I2=V1 (1)");
+disp("10*I1+5*I2=V2 (2)");
+
+//The equations which contain Z parameters are
+//V1=Z11*I1+Z12*I2
+//V2=Z21*I1+Z22*I2
+
+//On comparing (1) and (2) with above equations
+Z11=6;
+Z12=3;
+Z21=10;
+Z22=5;
+
+disp(Z11,"Z11=")
+disp(Z12,"Z12=")
+disp(Z21,"Z21=")
+disp(Z22,"Z22=")
+
+disp("As DZZ results in zero(0) therefore Y parameters are not defined ")
diff --git a/Working_Examples/154/CH14/EX14.2/ch14_2.sce b/Working_Examples/154/CH14/EX14.2/ch14_2.sce new file mode 100755 index 0000000..bb23309 --- /dev/null +++ b/Working_Examples/154/CH14/EX14.2/ch14_2.sce @@ -0,0 +1,27 @@ +clc
+disp("Example 14.2")
+printf("\n")
+
+s=%s;
+//Applying KVL equation to the two loops we get
+//V1=2*I1+s*(I1+I2)-I2
+//V2=3*I2+s*(I1+I2)
+
+//On solving we get
+disp("(s+2)*I1+(s-1)*I2=V1 (1)");
+disp("s*I1+(s+3)*I2=V2 (2)");
+
+//The equations which contain Z parameters are
+//V1=Z11*I1+Z12*I2
+//V2=Z21*I1+Z22*I2
+
+//On comparing (1) and (2) with above equations
+Z11=s+2;
+Z12=s-1;
+Z21=s;
+Z22=s+3;
+
+disp(Z11,"Z11=")
+disp(Z12,"Z12=")
+disp(Z21,"Z21=")
+disp(Z22,"Z22=")
diff --git a/Working_Examples/154/CH14/EX14.4/ch14_4.sce b/Working_Examples/154/CH14/EX14.4/ch14_4.sce new file mode 100755 index 0000000..5e72eb0 --- /dev/null +++ b/Working_Examples/154/CH14/EX14.4/ch14_4.sce @@ -0,0 +1,33 @@ +clc
+disp("Example 14.4")
+printf("\n")
+
+s=%s;
+Ya=3/(5*s+6);
+Yb=2/(5*s+6);
+Yc=s/(5*s+6);
+
+//Writing KCL equations
+disp("I1=(Ya+Yc)*V1-Yc*V2 (1)")
+disp("I2=-Yc*V1+(Yb+Yc)*V2 (2)")
+
+//The equations which contain Y parameters are
+//I1=Y11*V1+Y12*V2
+//I2=Y21*V1+Y22*V2
+
+//On comparing (1) and (2) with above equations
+disp("Y11=Ya+Yc")
+disp("Y12=-Yc=Y21")
+disp("Y22=Yb+Yc")
+
+//Substituting Ya , Yb and Yc
+Y11=Ya+Yc
+Y12=-Yc
+Y21=-Yc
+Y22=Yb+Yc
+
+disp(Y11,"Y11=")
+disp(Y12,"Y12=")
+disp(Y21,"Y21=")
+disp(Y22,"Y22=")
+
diff --git a/Working_Examples/154/CH14/EX14.6/ch14_6.sce b/Working_Examples/154/CH14/EX14.6/ch14_6.sce new file mode 100755 index 0000000..6cef31e --- /dev/null +++ b/Working_Examples/154/CH14/EX14.6/ch14_6.sce @@ -0,0 +1,23 @@ +clc
+disp("Example 14.6")
+printf("\n")
+
+s=%s;
+//From example 14.4
+
+Y11=(3 + s)/(5*s+6)
+Y12=- s/(6 + 5*s)
+Y21=- s/(6 + 5*s)
+Y22=(2+s)/(6+5*s)
+
+DYY=Y11*Y22-Y12*Y21
+
+Z11=Y22/DYY;
+Z12=-Y12/DYY;
+Z21=-Y21/DYY;
+Z22=Y11/DYY;
+
+disp(Z11,"Z11=")
+disp(Z12,"Z12=")
+disp(Z21,"Z21=")
+disp(Z22,"Z22=")
diff --git a/Working_Examples/154/CH14/EX14.7/ch14_7.sce b/Working_Examples/154/CH14/EX14.7/ch14_7.sce new file mode 100755 index 0000000..ffb8c5c --- /dev/null +++ b/Working_Examples/154/CH14/EX14.7/ch14_7.sce @@ -0,0 +1,18 @@ +clc
+disp("Example 14.7")
+printf("\n")
+
+//From figure 14.9
+disp("V1=50*I1 (1)");
+disp("I2=300*I1 (2)");
+
+//The equations which contain h parameters are
+//V1=h11*I1+h12*V2
+//I2=h21*I1+h22*V2
+
+//On comparing (1) and (2) with above equations
+
+printf("\nh11=%d\n",50);
+printf("h12=%d\n",0);
+printf("h21=%d\n",300);
+printf("h22=%d\n",0);
diff --git a/Working_Examples/154/CH14/EX14.8/ch14_8.sce b/Working_Examples/154/CH14/EX14.8/ch14_8.sce new file mode 100755 index 0000000..059a397 --- /dev/null +++ b/Working_Examples/154/CH14/EX14.8/ch14_8.sce @@ -0,0 +1,25 @@ +clc
+disp("Example 14.8")
+printf("\n")
+
+//From figure 14.10
+//By inspection
+//V1=10^9*I1
+//V2=10(I2-10^-3*V1)
+
+
+//On solving we get
+disp("I1=10^-9*V1 (1)");
+disp("V2=10*I2-10^-2*V1 (2)");
+
+
+//The equations which contain g parameters are
+//I1=g11*V1+g12*I2
+//V2=g21*V1+g22*I2
+
+//On comparing (1) and (2) with above equations
+
+printf("\ng11=%2.1e\n",10^-9);
+printf("g12=%d\n",0);
+printf("g21=%2.1e\n",-10^-2);
+printf("g22=%d\n",10);
diff --git a/Working_Examples/154/CH15/EX15.4/ch15_4.sce b/Working_Examples/154/CH15/EX15.4/ch15_4.sce new file mode 100755 index 0000000..a2703a4 --- /dev/null +++ b/Working_Examples/154/CH15/EX15.4/ch15_4.sce @@ -0,0 +1,34 @@ +clc
+disp("Example 15.4")
+printf("\n")
+
+printf("Given")
+disp("L1=0.1H L2=0.2H")
+disp("i1=4A i2=10A")
+L1=0.1;L2=0.2
+i1=4;i2=10;
+//The energy stored in coupled coils is
+disp("W=(L1*i1^2)/2+(L2*i2^2)/2+M*i1*i2")
+
+disp("a)")
+M=0.1;
+W=(L1*i1^2)/2+(L2*i2^2)/2+M*i1*i2;
+printf("Total Energy in the coils=%3.2fJ\n",W);
+
+disp("b)")
+M=sqrt(2)/10;
+W=(L1*i1^2)/2+(L2*i2^2)/2+M*i1*i2;
+printf("Total Energy in the coils=%3.2fJ\n",W);
+
+disp("c)")
+M=-0.1;
+W=(L1*i1^2)/2+(L2*i2^2)/2+M*i1*i2;
+printf("Total Energy in the coils=%3.2fJ\n",W);
+
+disp("a)")
+M=-sqrt(2)/10;
+W=(L1*i1^2)/2+(L2*i2^2)/2+M*i1*i2;
+printf("Total Energy in the coils=%3.2fJ\n",W);
+
+
+
diff --git a/Working_Examples/154/CH15/EX15.7/ch15_7.sce b/Working_Examples/154/CH15/EX15.7/ch15_7.sce new file mode 100755 index 0000000..86d9339 --- /dev/null +++ b/Working_Examples/154/CH15/EX15.7/ch15_7.sce @@ -0,0 +1,29 @@ +clc
+disp("Example 15.7")
+printf("\n")
+
+printf("Given")
+disp("N1=20 N2=N3=10")
+disp("I2=10(-53.13 deg) I3=10(-45 deg)")
+N1=20;N2=10;N3=10;
+I2mag=10;I2ph=-53.13;
+I3mag=10;I3ph=-45;
+//From figure 15.14
+disp("N1*I1-N2*I2-N3*I3=0")
+//Solving for I1
+Xmag=N2*I2mag
+Xph=I2ph
+x=Xmag*cos((Xph*%pi)/180);
+y=Xmag*sin((Xph*%pi)/180);
+z=complex(x,y)
+
+Ymag=N3*I3mag
+Yph=I3ph
+x1=Ymag*cos((Yph*%pi)/180);
+y1=Ymag*sin((Yph*%pi)/180);
+z1=complex(x1,y1)
+
+I1=(z+z1)/N1
+[R,Theta]=polar(I1);
+printf("I1=%3.2f(%3.2f deg) A\n",R,(Theta*180)/%pi);
+
diff --git a/Working_Examples/154/CH15/EX15.8/ch15_8.sce b/Working_Examples/154/CH15/EX15.8/ch15_8.sce new file mode 100755 index 0000000..73b8655 --- /dev/null +++ b/Working_Examples/154/CH15/EX15.8/ch15_8.sce @@ -0,0 +1,22 @@ +clc
+disp("Example 15.8")
+printf("\n")
+
+printf("Given")
+disp("L1=0.2H L2=0.1H")
+disp("M=0.1H R=10ohm")
+disp("v1=142.3*sin(100*t)")
+L1=0.2;L2=0.1
+M=0.1;R=10;
+v1mag=142.3;
+w=100;
+//Let Input impedance be Z1 and can be calculated as
+//From the equations in 15.10
+disp("Z1=%i*w*L1+((M*w)^2)/(Z2+%i*w*L2)")
+Z1=%i*w*L1+((M*w)^2)/(R+%i*w*L2)
+[R,Theta]=polar(Z1)
+//If I1 is the input current
+I1mag=v1mag/R
+I1ph=-(Theta*180)/%pi
+//In time domain form
+printf("i1=%3.1f*sin(%d*t%3.1f deg) (A)",I1mag,w,I1ph);
diff --git a/Working_Examples/154/CH15/EX15.9/ch15_9.sce b/Working_Examples/154/CH15/EX15.9/ch15_9.sce new file mode 100755 index 0000000..0d9f2fa --- /dev/null +++ b/Working_Examples/154/CH15/EX15.9/ch15_9.sce @@ -0,0 +1,33 @@ +clc
+disp("Example 15.9")
+printf("\n")
+
+s=%s;
+printf("Given")
+disp("L1=0.2H L2=0.1H")
+disp("M=0.1H R=10ohm")
+disp("v1=u(t) a unit step function")
+L1=0.2;L2=0.1
+M=0.1;R=10;
+v1=1;
+w=100;
+//Let Input impedance be Z1 and can be calculated as
+//From the equations in 15.10
+disp("Z1(s)=L1*s-((M*s)^2)/(R+L2*s)")
+Z1=L1*s-(((M*s)^2)/(R+L2*s))
+//Proper rearranging of co-efficients
+Num=Z1('num')/0.01
+Den=Z1('den')*100
+
+disp(Num/Den,"Z1(s)")
+Y1=1/Z1
+disp(Den/Num,"Y1(s)")
+
+//As the input is unit step function the value is 1V for t>0
+//In exponential form the value is represented as exp(s*t) with s=0 as the pole of Y1(s)
+
+//Therefore forced response
+k=1/L1;
+printf("Forced response i1,f=(%d*t) (A)\n",k);
+
+
diff --git a/Working_Examples/154/CH17/EX17.2/DEPENDENCIES/ch17_2.sce b/Working_Examples/154/CH17/EX17.2/DEPENDENCIES/ch17_2.sce new file mode 100755 index 0000000..e9ab99b --- /dev/null +++ b/Working_Examples/154/CH17/EX17.2/DEPENDENCIES/ch17_2.sce @@ -0,0 +1,3 @@ +syms t s ;
+ x=laplace ('3*%e^(2*t)' , t , s ) ;
+ disp (x , " X(s)=" )
diff --git a/Working_Examples/154/CH17/EX17.2/ch17_2.sce b/Working_Examples/154/CH17/EX17.2/ch17_2.sce new file mode 100755 index 0000000..e9ab99b --- /dev/null +++ b/Working_Examples/154/CH17/EX17.2/ch17_2.sce @@ -0,0 +1,3 @@ +syms t s ;
+ x=laplace ('3*%e^(2*t)' , t , s ) ;
+ disp (x , " X(s)=" )
diff --git a/Working_Examples/154/CH17/EX17.4/DEPENDENCIES/ch17_4.sce b/Working_Examples/154/CH17/EX17.4/DEPENDENCIES/ch17_4.sce new file mode 100755 index 0000000..6c4baab --- /dev/null +++ b/Working_Examples/154/CH17/EX17.4/DEPENDENCIES/ch17_4.sce @@ -0,0 +1,31 @@ +clc
+syms t
+s=%s;
+//Factorizing the denominator
+I=(s-10)/((s^2)*(s-%i)*(s+%i));
+disp(I,"I(s)=")
+//The principal part at s=0 is
+//B1/s+B2/s^2
+//Taking the limit s->0 to (s-10)/((s-%i)*(s+%i))
+
+B2=-10
+
+//Taking the limit s->0 to (s*(s-10))/(s^2)*(s^2+1)+(10/s)
+
+B1=1
+
+//The principal part at s=%i is
+//A/(s-%i)
+//Taking the limit s->%i to (s-10)/((s^2)*(s+%i))
+
+A=(-0.5-%i*5)
+
+//As the other co-efficient is conjugate of the above we can write the partial fraction expansion of I(s)
+I=(1/s)-(10/s^2)-(0.5+%i*5)/(s-%i)-(0.5-%i*5)/(s+%i);
+//Taking inverse of each term
+I1=ilaplace('1/s',s,t)
+I2=ilaplace('10/s^2',s,t)
+I3=ilaplace('(0.5+%i*5)/(s-%i)',s,t)
+I4=ilaplace('(0.5-%i*5)/(s+%i)',s,t)
+I=I1-I2-I3-I4
+disp(I,"i(t)=")
diff --git a/Working_Examples/154/CH17/EX17.4/ch17_4.sce b/Working_Examples/154/CH17/EX17.4/ch17_4.sce new file mode 100755 index 0000000..6c4baab --- /dev/null +++ b/Working_Examples/154/CH17/EX17.4/ch17_4.sce @@ -0,0 +1,31 @@ +clc
+syms t
+s=%s;
+//Factorizing the denominator
+I=(s-10)/((s^2)*(s-%i)*(s+%i));
+disp(I,"I(s)=")
+//The principal part at s=0 is
+//B1/s+B2/s^2
+//Taking the limit s->0 to (s-10)/((s-%i)*(s+%i))
+
+B2=-10
+
+//Taking the limit s->0 to (s*(s-10))/(s^2)*(s^2+1)+(10/s)
+
+B1=1
+
+//The principal part at s=%i is
+//A/(s-%i)
+//Taking the limit s->%i to (s-10)/((s^2)*(s+%i))
+
+A=(-0.5-%i*5)
+
+//As the other co-efficient is conjugate of the above we can write the partial fraction expansion of I(s)
+I=(1/s)-(10/s^2)-(0.5+%i*5)/(s-%i)-(0.5-%i*5)/(s+%i);
+//Taking inverse of each term
+I1=ilaplace('1/s',s,t)
+I2=ilaplace('10/s^2',s,t)
+I3=ilaplace('(0.5+%i*5)/(s-%i)',s,t)
+I4=ilaplace('(0.5-%i*5)/(s+%i)',s,t)
+I=I1-I2-I3-I4
+disp(I,"i(t)=")
diff --git a/Working_Examples/154/CH2/EX2.1/ch2_1.sce b/Working_Examples/154/CH2/EX2.1/ch2_1.sce new file mode 100755 index 0000000..06689b4 --- /dev/null +++ b/Working_Examples/154/CH2/EX2.1/ch2_1.sce @@ -0,0 +1,43 @@ + +disp("Example 2.1") +printf("\n") +printf("Given") +disp("Resistance used is 4 ohm") +disp("Current flow is i=2.5*sin(w*t)") +disp("Angular frequency(w)=500 rad/s") + +R=4; +iamp=2.5;w=500; +t=0:0.001:0.012566 +i=2.5*sin(w*t) + + +Vamp=iamp*R; +printf("v=%d*sin(%d*t)(V)\n",Vamp,w) + +pamp=iamp*iamp*R; +printf("p=%d(sin(%d*t))^2(W)\n",pamp,w) +p=pamp*sin(w*t)^2; + +//On integrating p with respect to t +W=25*(t/2-sin(2*w*t)/(4*w)) + +function p=f(t),p=pamp*sin(w*t)^2,endfunction +w1=intg(0,2*%pi/w,f); + + +subplot(221) +plot(t,i) +xtitle ('i vs wt','wt','i '); + +subplot(222) +plot(t,p) +xtitle ('p vs wt','wt','p '); + + + +subplot(223) +plot(t,W) +xtitle ('w vs wt','wt','w '); + + diff --git a/Working_Examples/154/CH2/EX2.1/ch2_11.jpeg b/Working_Examples/154/CH2/EX2.1/ch2_11.jpeg Binary files differnew file mode 100755 index 0000000..edba37c --- /dev/null +++ b/Working_Examples/154/CH2/EX2.1/ch2_11.jpeg diff --git a/Working_Examples/154/CH2/EX2.2/ch2_2.sce b/Working_Examples/154/CH2/EX2.2/ch2_2.sce new file mode 100755 index 0000000..8cfbb9a --- /dev/null +++ b/Working_Examples/154/CH2/EX2.2/ch2_2.sce @@ -0,0 +1,41 @@ +clc +disp("Example 2.2") +printf("\n") +printf("Given") +disp("Inductance used is 30mH") +disp("Current flow is i=10*sin(50*t)") +L=30*10^-3;iamp=10; +t=0:0.01:0.06283; +i=10*sin(50*t) +//v=L*d/dt(i) +//d/dt(sin 50t)=50*cos t +vamp=L*iamp*50; +v=vamp*cos(50*t) + +//sinA*cosB=(sin(A+B)+sin(A-B))/2 + +pamp=vamp*iamp/2; +p=pamp*sin(100*t) +//On integrating 'p' w.r.t t + +wL=0.75*(1-cos(100*t)); + + +subplot(221) +plot(t,i) +xtitle ('i vs wt','wt','i'); + +subplot(222) +plot(t,v) +xtitle ('v vs wt','wt','v '); + +subplot(223) +plot(t,p) +xtitle ('p vs wt','wt','p '); + +subplot(224) +plot(t,wL) +xtitle ('wL vs wt','wt','wL '); + + + diff --git a/Working_Examples/154/CH2/EX2.2/ch2_21.jpeg b/Working_Examples/154/CH2/EX2.2/ch2_21.jpeg Binary files differnew file mode 100755 index 0000000..e48aa65 --- /dev/null +++ b/Working_Examples/154/CH2/EX2.2/ch2_21.jpeg diff --git a/Working_Examples/154/CH2/EX2.3/ch2_3.sce b/Working_Examples/154/CH2/EX2.3/ch2_3.sce new file mode 100755 index 0000000..afff94c --- /dev/null +++ b/Working_Examples/154/CH2/EX2.3/ch2_3.sce @@ -0,0 +1,35 @@ +clc
+disp("Example 2.3")
+printf("\n")
+printf("Given")
+disp("Capacitance used is 20uF")
+disp("Voltage is v=50*sin(200*t)")
+C=20*10^-6;
+// Given that v=50*sin(200*t);
+vamp=50;
+t=0:0.001:0.015;
+//q=C*v
+qamp=vamp*C
+q=qamp*sin(200*t)
+//i=C*d/dt(v)
+//d/dt(sin 200t)=200*cos t
+iamp=C*vamp*200;
+i=iamp*cos(200*t)
+
+//sinA*cosB=(sin(A+B)+sin(A-B))/2
+
+pamp=vamp*iamp/2;
+p=pamp*sin(400*t)
+
+//On integrating 'p' w.r.t t
+
+wC=12.5*(1-cos(400*t));
+
+figure
+a= gca ();
+plot(t,wC)
+xtitle ('wC vs wt','wt','wC (mJ)');
+a. thickness = 2;
+
+
+
diff --git a/Working_Examples/154/CH2/EX2.3/ch2_31.jpeg b/Working_Examples/154/CH2/EX2.3/ch2_31.jpeg Binary files differnew file mode 100755 index 0000000..6b8ef67 --- /dev/null +++ b/Working_Examples/154/CH2/EX2.3/ch2_31.jpeg diff --git a/Working_Examples/154/CH2/EX2.4/ch2_4.sce b/Working_Examples/154/CH2/EX2.4/ch2_4.sce new file mode 100755 index 0000000..623b4b9 --- /dev/null +++ b/Working_Examples/154/CH2/EX2.4/ch2_4.sce @@ -0,0 +1,17 @@ +clc
+disp("Example 2.4")
+printf("\n")
+printf("Given")
+disp("Current through diode is 30mA")
+//From the table the nearest value is at v=0.74V
+V=0.74;I=28.7*10^-3;
+R=V/I;
+delV=0.75-0.73
+delI=42.7*10^-3-19.2*10^-3
+r=delV/delI
+p=(V*I)*10^3
+printf("\n \n Static resistance is %3.2fohm\n",R)
+printf("Dynamic resistance is %3.2fohm\n",r)
+printf("Power consumption is %3.2fmW\n",p)
+
+
diff --git a/Working_Examples/154/CH2/EX2.5/ch2_5.sce b/Working_Examples/154/CH2/EX2.5/ch2_5.sce new file mode 100755 index 0000000..9d9c06c --- /dev/null +++ b/Working_Examples/154/CH2/EX2.5/ch2_5.sce @@ -0,0 +1,29 @@ +clc
+disp("Example 2.5")
+printf("\n")
+printf("Given")
+disp("a)")
+disp("Current through diode is 10mA")
+//From the table the value is at v=2.5V
+V=2.5;I=10*10^-3;
+R=V/I;
+delV=3-2
+delI=11*10^-3-9*10^-3
+r=delV/delI
+p=(V*I)*10^3
+printf("\n \n Static resistance is %3.2fohm\n",R)
+printf("Dynamic resistance is %3.2fohm\n",r)
+printf("Power consumption is %3.2fmW\n",p)
+
+disp("b)")
+disp("Current through diode is 15mA")
+//From the table the value is at v=5V
+V=5;I=15*10^-3;
+R=V/I;
+delV=5.5-4.5
+delI=16*10^-3-14*10^-3
+r=delV/delI
+p=(V*I)*10^3
+printf("\n \n Static resistance is %3.2fohm\n",R)
+printf("Dynamic resistance is %3.2fohm\n",r)
+printf("Power consumption is %3.2fmW\n",p)
\ No newline at end of file diff --git a/Working_Examples/154/CH3/EX3.3/ch3_3.sce b/Working_Examples/154/CH3/EX3.3/ch3_3.sce new file mode 100755 index 0000000..e72c536 --- /dev/null +++ b/Working_Examples/154/CH3/EX3.3/ch3_3.sce @@ -0,0 +1,13 @@ +clc
+disp("Example 3.3")
+printf("\n")
+printf("Given")
+disp("Equivalent resistance of three resistors is 750 ohm")
+disp("values of two resistors are 40 ohm and 410 ohm")
+Req=750;R1=40;R2=410;
+
+//For series resistance
+disp("Req=R1+R2+R3")
+//On solving for R3
+R3=Req-R1-R2
+printf("Value of third ohmic resistor is %dohm\n",R3)
diff --git a/Working_Examples/154/CH3/EX3.4/ch3_4.sce b/Working_Examples/154/CH3/EX3.4/ch3_4.sce new file mode 100755 index 0000000..26e7932 --- /dev/null +++ b/Working_Examples/154/CH3/EX3.4/ch3_4.sce @@ -0,0 +1,17 @@ +clc
+disp("Example 3.4")
+printf("\n")
+printf("Given")
+disp("values of two capacitors are 2uF and 10uF")
+C1=2*10^-6;C2=10*10^-6;
+//For two capacitors in series
+disp("Ceq=(C1*C2)/(C1+C2)")
+//On solving for Ceq
+Ceq=((C1*C2)/(C1+C2))*10^6
+printf("Value of equivalent capacitance is %3.2fuF\n",Ceq)
+
+disp("If C2=10pF")
+C2=10*10^-12;
+
+Ceq=((C1*C2)/(C1+C2))*10^12
+printf("Value of equivalent capacitance is %3.2fpF\n",Ceq)
\ No newline at end of file diff --git a/Working_Examples/154/CH3/EX3.5/ch3_5.sce b/Working_Examples/154/CH3/EX3.5/ch3_5.sce new file mode 100755 index 0000000..9ca5084 --- /dev/null +++ b/Working_Examples/154/CH3/EX3.5/ch3_5.sce @@ -0,0 +1,18 @@ +clc
+disp("Example 3.5")
+printf("\n")
+printf("Given")
+disp("a)")
+disp("values of two resistors are 60 ohm and 60 ohm")
+R1=60;R2=60;
+disp("If resistors are parallel")
+Req=(R1*R2)/(R1+R2)
+printf("Value of equivalent resistance is %dohm\n",Req)
+
+disp("b)")
+disp("values of three equal resistors are 60 ohm")
+R1=60;R2=60;R3=60;
+disp("If resistors are parallel")
+x=1/R1+1/R2+1/R3
+Req=1/x;
+printf("Value of equivalent resistance is %dohm\n",Req)
diff --git a/Working_Examples/154/CH3/EX3.6/ch3_6.sce b/Working_Examples/154/CH3/EX3.6/ch3_6.sce new file mode 100755 index 0000000..5156eb9 --- /dev/null +++ b/Working_Examples/154/CH3/EX3.6/ch3_6.sce @@ -0,0 +1,11 @@ +clc
+disp("Example 3.6")
+printf("\n")
+printf("Given")
+
+disp("values of two inductors are 3mH and 6 mH")
+L1=3*10^-3;L2=6*10^-3;
+disp("If inductors are parallel")
+Leq=((L1*L2)/(L1+L2))*10^3
+printf("Value of equivalent inductance is %3.1fmH\n",Leq)
+
diff --git a/Working_Examples/154/CH3/EX3.7/ch3_7.sce b/Working_Examples/154/CH3/EX3.7/ch3_7.sce new file mode 100755 index 0000000..72aa564 --- /dev/null +++ b/Working_Examples/154/CH3/EX3.7/ch3_7.sce @@ -0,0 +1,19 @@ +clc
+disp("Example 3.7")
+printf("\n")
+printf("Given")
+disp("Total resistance of three resistors is 50 ohm")
+R=50;
+disp("Output voltage is 10 percent of the input voltage")
+//Let v be input voltage and v1 be output voltage
+//Let v1/v=V
+V=0.1;
+//As V=R1/(Total resistance)
+//Solving for R1
+R1=V*R;
+//As R=R1+R2
+//Solving for R2
+R2=R-R1;
+printf("R1=%dohm\n R2=%dohm\n",R1,R2)
+
+
diff --git a/Working_Examples/154/CH3/EX3.8/ch3_8.sce b/Working_Examples/154/CH3/EX3.8/ch3_8.sce new file mode 100755 index 0000000..f744f0f --- /dev/null +++ b/Working_Examples/154/CH3/EX3.8/ch3_8.sce @@ -0,0 +1,24 @@ +clc
+disp("Example 3.8")
+printf("\n")
+printf("Given")
+disp("Total current is 30mA")
+disp("Branch currents are 20mA and 10mA")
+disp("Equivalent resistance is equal to or greater than 10 ohm")
+
+//From Fig 3.6
+//Current flowing through R1 be i1 and let it be equal to 10mA
+//Current flowing through R2 be i2 and let it be equal to 20mA
+i1=10*10^-3;i2=20*10^-3;
+i=30*10^-3;
+
+//Let R1/(R1+R2)=X1 (1)
+//Let R2/(R1+R2)=X2 (2)
+X1=i1/i;
+X2=i2/i;
+//Let R1*R2(R1+R2)=Y (3)
+//Given that
+printf("\n Given")
+disp("R1*R2(R1+R2)>=10")
+//Solving (1),(2) and (3) we get
+printf("R1>=%dohm\nR2>=%dohm\n",15,30)
diff --git a/Working_Examples/154/CH5/EX5.1/ch5_1.xcos b/Working_Examples/154/CH5/EX5.1/ch5_1.xcos new file mode 100644 index 0000000..d08dc85 --- /dev/null +++ b/Working_Examples/154/CH5/EX5.1/ch5_1.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" finalIntegrationTime="10.0" title="ch51.scos"><!--Xcos - 1.0 - scilab-5.5.2 - 20160406 2040--><mxGraphModel as="model"><root><mxCell id="-5c1d823d:130d68ab7d2:-7f7b"/><mxCell id="-5c1d823d:130d68ab7d2:-7f7c" parent="-5c1d823d:130d68ab7d2:-7f7b"/><BasicBlock dependsOnU="1" id="-5c1d823d:130d68ab7d2:-7f67" interfaceFunctionName="CurrentSensor" ordering="1" parent="-5c1d823d:130d68ab7d2:-7f7c" simulationFunctionName="CurrentSensor" simulationFunctionType="DEFAULT" style="CurrentSensor;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CurrentSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="i"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="80.0" y="130.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5c1d823d:130d68ab7d2:-7f65" ordering="2" parent="-5c1d823d:130d68ab7d2:-7f67" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="26.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5c1d823d:130d68ab7d2:-7f64" ordering="1" parent="-5c1d823d:130d68ab7d2:-7f67" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5c1d823d:130d68ab7d2:-7f66" ordering="1" parent="-5c1d823d:130d68ab7d2:-7f67" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="6.0"/></ImplicitOutputPort><GroundBlock angle="90" dependsOnU="1" id="-5c1d823d:130d68ab7d2:-7f5e" interfaceFunctionName="Ground" ordering="2" parent="-5c1d823d:130d68ab7d2:-7f7c" simulationFunctionName="Ground" simulationFunctionType="DEFAULT" style="Ground;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Ground"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="220.0" y="400.0"/></GroundBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5c1d823d:130d68ab7d2:-7f5d" ordering="1" parent="-5c1d823d:130d68ab7d2:-7f5e" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=90;spacingTop=5;flip=false;mirror=false"><Orientation as="orientation" value="NORTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="-5c1d823d:130d68ab7d2:-7f55" interfaceFunctionName="Resistor" ordering="3" parent="-5c1d823d:130d68ab7d2:-7f7c" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="5"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="170.0" y="122.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5c1d823d:130d68ab7d2:-7ec0" ordering="1" parent="-5c1d823d:130d68ab7d2:-7f55" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5c1d823d:130d68ab7d2:-7ebf" ordering="1" parent="-5c1d823d:130d68ab7d2:-7f55" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><BasicBlock angle="90" dependsOnU="1" id="-5c1d823d:130d68ab7d2:-7f47" interfaceFunctionName="CurrentSensor" ordering="4" parent="-5c1d823d:130d68ab7d2:-7f7c" simulationFunctionName="CurrentSensor" simulationFunctionType="DEFAULT" style="CurrentSensor;rotation=90;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CurrentSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="i"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="230.0" y="190.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5c1d823d:130d68ab7d2:-7f45" ordering="2" parent="-5c1d823d:130d68ab7d2:-7f47" style="ExplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;rotation=90;spacingBottom=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="26.0" y="40.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5c1d823d:130d68ab7d2:-7f44" ordering="1" parent="-5c1d823d:130d68ab7d2:-7f47" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=90;spacingTop=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5c1d823d:130d68ab7d2:-7f46" ordering="1" parent="-5c1d823d:130d68ab7d2:-7f47" style="ImplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;rotation=90;spacingBottom=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="6.0" y="40.0"/></ImplicitOutputPort><BasicBlock dependsOnU="1" id="-5c1d823d:130d68ab7d2:-7f43" interfaceFunctionName="CurrentSensor" ordering="5" parent="-5c1d823d:130d68ab7d2:-7f7c" simulationFunctionName="CurrentSensor" simulationFunctionType="DEFAULT" style="CurrentSensor;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CurrentSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="i"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="380.0" y="120.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5c1d823d:130d68ab7d2:-7f41" ordering="2" parent="-5c1d823d:130d68ab7d2:-7f43" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="26.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5c1d823d:130d68ab7d2:-7f40" ordering="1" parent="-5c1d823d:130d68ab7d2:-7f43" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5c1d823d:130d68ab7d2:-7f42" ordering="1" parent="-5c1d823d:130d68ab7d2:-7f43" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="6.0"/></ImplicitOutputPort><BasicBlock angle="90" dependsOnU="1" id="-5c1d823d:130d68ab7d2:-7f34" interfaceFunctionName="Resistor" ordering="6" parent="-5c1d823d:130d68ab7d2:-7f7c" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="10"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="10.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="10.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="220.0" y="270.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5c1d823d:130d68ab7d2:-7eb8" ordering="1" parent="-5c1d823d:130d68ab7d2:-7f34" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;spacingTop=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5c1d823d:130d68ab7d2:-7eb7" ordering="1" parent="-5c1d823d:130d68ab7d2:-7f34" style="ImplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;spacingBottom=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><BasicBlock dependsOnU="1" id="-5c1d823d:130d68ab7d2:-7f31" interfaceFunctionName="Resistor" ordering="7" parent="-5c1d823d:130d68ab7d2:-7f7c" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="2"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="290.0" y="120.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5c1d823d:130d68ab7d2:-7ebc" ordering="1" parent="-5c1d823d:130d68ab7d2:-7f31" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5c1d823d:130d68ab7d2:-7ebb" ordering="1" parent="-5c1d823d:130d68ab7d2:-7f31" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><BasicBlock angle="90" id="-5c1d823d:130d68ab7d2:-7f2b" interfaceFunctionName="ConstantVoltage" ordering="8" parent="-5c1d823d:130d68ab7d2:-7f7c" simulationFunctionName="ConstantVoltage" simulationFunctionType="DEFAULT" style="ConstantVoltage;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="8"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ConstantVoltage"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="V"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="440.0" y="220.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5c1d823d:130d68ab7d2:-7eb4" ordering="1" parent="-5c1d823d:130d68ab7d2:-7f2b" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;spacingTop=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5c1d823d:130d68ab7d2:-7eb3" ordering="1" parent="-5c1d823d:130d68ab7d2:-7f2b" style="ImplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;spacingBottom=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitLink id="-5c1d823d:130d68ab7d2:-7f15" parent="-5c1d823d:130d68ab7d2:-7f7c" source="-5c1d823d:130d68ab7d2:-7ec4" target="-5c1d823d:130d68ab7d2:-7f64"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="60.0" y="246.0"/><mxPoint as="targetPoint" x="80.0" y="150.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="60.0" y="150.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-5c1d823d:130d68ab7d2:-7f14" parent="-5c1d823d:130d68ab7d2:-7f7c" source="-5c1d823d:130d68ab7d2:-7f66" target="-5c1d823d:130d68ab7d2:-7ec0"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="124.0" y="140.0"/><mxPoint as="targetPoint" x="170.0" y="140.0"/></mxGeometry></ImplicitLink><ImplicitLink id="-5c1d823d:130d68ab7d2:-7f12" parent="-5c1d823d:130d68ab7d2:-7f7c" source="-5c1d823d:130d68ab7d2:-7ebb" target="-5c1d823d:130d68ab7d2:-7f40"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="334.0" y="140.0"/><mxPoint as="targetPoint" x="370.0" y="140.0"/></mxGeometry></ImplicitLink><ImplicitLink id="-5c1d823d:130d68ab7d2:-7f11" parent="-5c1d823d:130d68ab7d2:-7f7c" source="-5c1d823d:130d68ab7d2:-7f42" target="-5c1d823d:130d68ab7d2:-7eb4"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="424.0" y="130.0"/><mxPoint as="targetPoint" x="460.0" y="220.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="460.0" y="130.0"/><mxPoint x="460.0" y="220.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="-5c1d823d:130d68ab7d2:-7f0e" ordering="9" parent="-5c1d823d:130d68ab7d2:-7f7c" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="247.0" y="137.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5c1d823d:130d68ab7d2:-7f0c" ordering="1" parent="-5c1d823d:130d68ab7d2:-7f0e" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5c1d823d:130d68ab7d2:-7f0b" ordering="2" parent="-5c1d823d:130d68ab7d2:-7f0e" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-5c1d823d:130d68ab7d2:-7f0d" ordering="1" parent="-5c1d823d:130d68ab7d2:-7f0e" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-5c1d823d:130d68ab7d2:-7f0a" parent="-5c1d823d:130d68ab7d2:-7f7c" source="-5c1d823d:130d68ab7d2:-7ebf" target="-5c1d823d:130d68ab7d2:-7f0d"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-5c1d823d:130d68ab7d2:-7f09" parent="-5c1d823d:130d68ab7d2:-7f7c" source="-5c1d823d:130d68ab7d2:-7f0c" target="-5c1d823d:130d68ab7d2:-7ebc"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-5c1d823d:130d68ab7d2:-7f0f" parent="-5c1d823d:130d68ab7d2:-7f7c" source="-5c1d823d:130d68ab7d2:-7f0b" target="-5c1d823d:130d68ab7d2:-7f44"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="250.0" y="186.0"/><mxPoint as="targetPoint" x="250.0" y="140.0"/></mxGeometry></ImplicitLink><ImplicitLink id="-5c1d823d:130d68ab7d2:-7f08" parent="-5c1d823d:130d68ab7d2:-7f7c" source="-5c1d823d:130d68ab7d2:-7f46" target="-5c1d823d:130d68ab7d2:-7eb8"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="240.0" y="234.0"/><mxPoint as="targetPoint" x="240.0" y="270.0"/></mxGeometry></ImplicitLink><SplitBlock id="-5c1d823d:130d68ab7d2:-7f06" ordering="10" parent="-5c1d823d:130d68ab7d2:-7f7c" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="237.0" y="357.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5c1d823d:130d68ab7d2:-7f04" ordering="1" parent="-5c1d823d:130d68ab7d2:-7f06" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5c1d823d:130d68ab7d2:-7f03" ordering="2" parent="-5c1d823d:130d68ab7d2:-7f06" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-5c1d823d:130d68ab7d2:-7f05" ordering="1" parent="-5c1d823d:130d68ab7d2:-7f06" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-5c1d823d:130d68ab7d2:-7f02" parent="-5c1d823d:130d68ab7d2:-7f7c" source="-5c1d823d:130d68ab7d2:-7ec3" target="-5c1d823d:130d68ab7d2:-7f05"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="60.0" y="360.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-5c1d823d:130d68ab7d2:-7f01" parent="-5c1d823d:130d68ab7d2:-7f7c" source="-5c1d823d:130d68ab7d2:-7eb3" target="-5c1d823d:130d68ab7d2:-7f04"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="460.0" y="360.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="-5c1d823d:130d68ab7d2:-7eff" ordering="11" parent="-5c1d823d:130d68ab7d2:-7f7c" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="237.0" y="357.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5c1d823d:130d68ab7d2:-7efd" ordering="1" parent="-5c1d823d:130d68ab7d2:-7eff" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5c1d823d:130d68ab7d2:-7efc" ordering="2" parent="-5c1d823d:130d68ab7d2:-7eff" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-5c1d823d:130d68ab7d2:-7efe" ordering="1" parent="-5c1d823d:130d68ab7d2:-7eff" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-5c1d823d:130d68ab7d2:-7efb" parent="-5c1d823d:130d68ab7d2:-7f7c" source="-5c1d823d:130d68ab7d2:-7eb7" target="-5c1d823d:130d68ab7d2:-7efe"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-5c1d823d:130d68ab7d2:-7efa" parent="-5c1d823d:130d68ab7d2:-7f7c" source="-5c1d823d:130d68ab7d2:-7f03" target="-5c1d823d:130d68ab7d2:-7efd"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-5c1d823d:130d68ab7d2:-7f00" parent="-5c1d823d:130d68ab7d2:-7f7c" source="-5c1d823d:130d68ab7d2:-7efc" target="-5c1d823d:130d68ab7d2:-7f5d"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="240.0" y="396.0"/><mxPoint as="targetPoint" x="240.0" y="360.0"/></mxGeometry></ImplicitLink><BasicBlock dependsOnU="1" id="-5c1d823d:130d68ab7d2:-7ee5" interfaceFunctionName="CSCOPE" ordering="12" parent="-5c1d823d:130d68ab7d2:-7f7c" simulationFunctionName="cscope" simulationFunctionType="C_OR_FORTRAN" style="CSCOPE;flip=false;mirror=false"><ScilabString as="exprs" height="10" width="1"><data column="0" line="0" value="1 3 5 7 9 11 13 15"/><data column="0" line="1" value="-1"/><data column="0" line="2" value="[]"/><data column="0" line="3" value="[600;400]"/><data column="0" line="4" value="1"/><data column="0" line="5" value="3"/><data column="0" line="6" value="10"/><data column="0" line="7" value="20"/><data column="0" line="8" value="0"/><data column="0" line="9" value=""/></ScilabString><ScilabDouble as="realParameters" height="4" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="3.0"/><data column="0" line="3" realPart="10.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="15" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="1.0"/><data column="0" line="4" realPart="3.0"/><data column="0" line="5" realPart="5.0"/><data column="0" line="6" realPart="7.0"/><data column="0" line="7" realPart="9.0"/><data column="0" line="8" realPart="11.0"/><data column="0" line="9" realPart="13.0"/><data column="0" line="10" realPart="15.0"/><data column="0" line="11" realPart="-1.0"/><data column="0" line="12" realPart="-1.0"/><data column="0" line="13" realPart="600.0"/><data column="0" line="14" realPart="400.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="150.0" y="80.0"/></BasicBlock><ControlPort dataType="UNKNOW_TYPE" id="331568f2:130d6f18fe2:-7b0b" ordering="1" parent="-5c1d823d:130d68ab7d2:-7ee5" style="ControlPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=90;spacingTop=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="331568f2:130d6f18fe2:-7b0c" ordering="1" parent="-5c1d823d:130d68ab7d2:-7ee5" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><BasicBlock blockType="h" id="-5c1d823d:130d68ab7d2:-7edd" interfaceFunctionName="CLOCK_c" ordering="13" parent="-5c1d823d:130d68ab7d2:-7f7c" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="119.0"/><data column="1" line="0" realPart="-150.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="331568f2:130d6f18fe2:-7b38"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="331568f2:130d6f18fe2:-7b38"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.1"/><data column="0" line="1" value="0.0001"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.1"/><data column="0" line="1" realPart="1.0E-4"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0E-4"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="331568f2:130d6f18fe2:-7b34"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="331568f2:130d6f18fe2:-7b34"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="124.71066000000002"/><data column="1" line="0" realPart="-164.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="8.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="4.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="331568f2:130d6f18fe2:-7b2f"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="331568f2:130d6f18fe2:-7b2f"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="106.0"/><data column="0" line="2" realPart="135.37732666666668"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="4.0"/><data column="0" line="1" realPart="-204.0"/><data column="0" line="2" realPart="-168.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="136.71066000000002"/><data column="0" line="1" realPart="149.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-152.0"/><data column="0" line="1" realPart="-126.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="138.04399333333336"/><data column="0" line="1" realPart="151.70999999999998"/><data column="0" line="2" realPart="111.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-168.0"/><data column="0" line="1" realPart="-58.0"/><data column="0" line="2" realPart="-58.0"/><data column="0" line="3" realPart="-44.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="150.0" y="10.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="-5c1d823d:130d68ab7d2:-7e98" ordering="1" parent="-5c1d823d:130d68ab7d2:-7edd" style="CommandPort;align=center;labelPosition=center;verticalLabelPosition=top;rotation=90;spacingBottom=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><BasicBlock blockType="h" id="-5c1d823d:130d68ab7d2:-7edb" interfaceFunctionName="CLOCK_c" ordering="14" parent="-5c1d823d:130d68ab7d2:-7f7c" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="119.0"/><data column="1" line="0" realPart="-150.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="331568f2:130d6f18fe2:-7b25"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="331568f2:130d6f18fe2:-7b25"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.1"/><data column="0" line="1" value="0.0001"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.1"/><data column="0" line="1" realPart="1.0E-4"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0E-4"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="331568f2:130d6f18fe2:-7b21"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="331568f2:130d6f18fe2:-7b21"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="124.71066000000002"/><data column="1" line="0" realPart="-164.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="8.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="4.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="331568f2:130d6f18fe2:-7b1c"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="331568f2:130d6f18fe2:-7b1c"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="106.0"/><data column="0" line="2" realPart="135.37732666666668"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="4.0"/><data column="0" line="1" realPart="-204.0"/><data column="0" line="2" realPart="-168.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="136.71066000000002"/><data column="0" line="1" realPart="149.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-152.0"/><data column="0" line="1" realPart="-126.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="138.04399333333336"/><data column="0" line="1" realPart="151.70999999999998"/><data column="0" line="2" realPart="111.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-168.0"/><data column="0" line="1" realPart="-58.0"/><data column="0" line="2" realPart="-58.0"/><data column="0" line="3" realPart="-44.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="500.0" y="90.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="-5c1d823d:130d68ab7d2:-7e95" ordering="1" parent="-5c1d823d:130d68ab7d2:-7edb" style="CommandPort;align=center;labelPosition=center;verticalLabelPosition=top;rotation=90;spacingBottom=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><CommandControlLink id="-5c1d823d:130d68ab7d2:-7ed0" parent="-5c1d823d:130d68ab7d2:-7f7c" source="-5c1d823d:130d68ab7d2:-7e98" target="331568f2:130d6f18fe2:-7b0b"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="170.0" y="54.0"/><mxPoint as="targetPoint" x="170.0" y="70.0"/></mxGeometry></CommandControlLink><ExplicitLink id="-5c1d823d:130d68ab7d2:-7ecf" parent="-5c1d823d:130d68ab7d2:-7f7c" source="-5c1d823d:130d68ab7d2:-7f65" target="331568f2:130d6f18fe2:-7b0c"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="124.0" y="160.0"/><mxPoint as="targetPoint" x="150.0" y="100.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="140.0" y="160.0"/><mxPoint x="140.0" y="100.0"/></Array></mxGeometry></ExplicitLink><BasicBlock dependsOnU="1" id="-5c1d823d:130d68ab7d2:-7ef0" interfaceFunctionName="CMSCOPE" ordering="15" parent="-5c1d823d:130d68ab7d2:-7f7c" simulationFunctionName="cmscope" simulationFunctionType="C_OR_FORTRAN" style="CMSCOPE;flip=false;mirror=false"><ScilabString as="exprs" height="11" width="1"><data column="0" line="0" value="1 1"/><data column="0" line="1" value="1 3 5 7 9 11 13 15"/><data column="0" line="2" value="-1"/><data column="0" line="3" value="[]"/><data column="0" line="4" value="[]"/><data column="0" line="5" value="0 0"/><data column="0" line="6" value="2 2"/><data column="0" line="7" value="10 10"/><data column="0" line="8" value="20"/><data column="0" line="9" value="0"/><data column="0" line="10" value=""/></ScilabString><ScilabDouble as="realParameters" height="7" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="10.0"/><data column="0" line="2" realPart="10.0"/><data column="0" line="3" realPart="0.0"/><data column="0" line="4" realPart="2.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="2.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="12" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="2.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="-1.0"/><data column="0" line="4" realPart="-1.0"/><data column="0" line="5" realPart="-1.0"/><data column="0" line="6" realPart="-1.0"/><data column="0" line="7" realPart="1.0"/><data column="0" line="8" realPart="1.0"/><data column="0" line="9" realPart="1.0"/><data column="0" line="10" realPart="3.0"/><data column="0" line="11" realPart="0.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="500.0" y="160.0"/></BasicBlock><ControlPort dataType="UNKNOW_TYPE" id="331568f2:130d6f18fe2:-7b0f" ordering="1" parent="-5c1d823d:130d68ab7d2:-7ef0" style="ControlPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=90;spacingTop=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="331568f2:130d6f18fe2:-7b11" ordering="1" parent="-5c1d823d:130d68ab7d2:-7ef0" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ExplicitInputPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="331568f2:130d6f18fe2:-7b10" ordering="2" parent="-5c1d823d:130d68ab7d2:-7ef0" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="26.0"/></ExplicitInputPort><CommandControlLink id="-5c1d823d:130d68ab7d2:-7ec6" parent="-5c1d823d:130d68ab7d2:-7f7c" source="-5c1d823d:130d68ab7d2:-7e95" target="331568f2:130d6f18fe2:-7b0f"><mxGeometry as="geometry" y="20.0"><mxPoint as="sourcePoint" x="520.0" y="124.0"/><mxPoint as="targetPoint" x="520.0" y="160.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="520.0" y="160.0"/></Array></mxGeometry></CommandControlLink><BasicBlock angle="90" id="-5c1d823d:130d68ab7d2:-7f73" interfaceFunctionName="ConstantVoltage" ordering="16" parent="-5c1d823d:130d68ab7d2:-7f7c" simulationFunctionName="ConstantVoltage" simulationFunctionType="DEFAULT" style="ConstantVoltage;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="20"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="20.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ConstantVoltage"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="V"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="20.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="40.0" y="250.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5c1d823d:130d68ab7d2:-7ec4" ordering="1" parent="-5c1d823d:130d68ab7d2:-7f73" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;spacingTop=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5c1d823d:130d68ab7d2:-7ec3" ordering="1" parent="-5c1d823d:130d68ab7d2:-7f73" style="ImplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;spacingBottom=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ExplicitLink id="331568f2:130d6f18fe2:-7b18" parent="-5c1d823d:130d68ab7d2:-7f7c" source="-5c1d823d:130d68ab7d2:-7f41" target="331568f2:130d6f18fe2:-7b11"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="424.0" y="150.0"/><mxPoint as="targetPoint" x="500.0" y="170.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="470.0" y="150.0"/><mxPoint x="470.0" y="170.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="331568f2:130d6f18fe2:-7b17" parent="-5c1d823d:130d68ab7d2:-7f7c" source="-5c1d823d:130d68ab7d2:-7f45" target="331568f2:130d6f18fe2:-7b10"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="260.0" y="234.0"/><mxPoint as="targetPoint" x="500.0" y="190.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="260.0" y="240.0"/><mxPoint x="300.0" y="240.0"/><mxPoint x="300.0" y="190.0"/></Array></mxGeometry></ExplicitLink></root></mxGraphModel><mxCell as="defaultParent" id="-5c1d823d:130d68ab7d2:-7f7c" parent="-5c1d823d:130d68ab7d2:-7f7b"/></XcosDiagram>
\ No newline at end of file diff --git a/Working_Examples/154/CH5/EX5.1/ch5_11.jpeg b/Working_Examples/154/CH5/EX5.1/ch5_11.jpeg Binary files differnew file mode 100755 index 0000000..8a5740b --- /dev/null +++ b/Working_Examples/154/CH5/EX5.1/ch5_11.jpeg diff --git a/Working_Examples/154/CH5/EX5.1/chap5_1.jpeg b/Working_Examples/154/CH5/EX5.1/chap5_1.jpeg Binary files differnew file mode 100755 index 0000000..79251a6 --- /dev/null +++ b/Working_Examples/154/CH5/EX5.1/chap5_1.jpeg diff --git a/Working_Examples/154/CH5/EX5.6/ch5_6.xcos b/Working_Examples/154/CH5/EX5.6/ch5_6.xcos new file mode 100644 index 0000000..20541fa --- /dev/null +++ b/Working_Examples/154/CH5/EX5.6/ch5_6.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" finalIntegrationTime="30.0" title="ch5_6"><!--Xcos - 1.0 - scilab-5.5.2 - 20160406 2040--><mxGraphModel as="model"><root><mxCell id="331568f2:130d6f18fe2:-7fff"/><mxCell id="331568f2:130d6f18fe2:-8000" parent="331568f2:130d6f18fe2:-7fff"/><BasicBlock angle="90" id="331568f2:130d6f18fe2:-7fde" interfaceFunctionName="ConstantVoltage" ordering="1" parent="331568f2:130d6f18fe2:-8000" simulationFunctionName="ConstantVoltage" simulationFunctionType="DEFAULT" style="ConstantVoltage;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="60"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="60.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ConstantVoltage"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="V"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="60.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="20.0" y="260.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="331568f2:130d6f18fe2:-7ee5" ordering="1" parent="331568f2:130d6f18fe2:-7fde" style="ImplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;spacingBottom=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="331568f2:130d6f18fe2:-7ee6" ordering="1" parent="331568f2:130d6f18fe2:-7fde" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;spacingTop=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><GroundBlock angle="90" dependsOnU="1" id="331568f2:130d6f18fe2:-7fd6" interfaceFunctionName="Ground" ordering="2" parent="331568f2:130d6f18fe2:-8000" simulationFunctionName="Ground" simulationFunctionType="DEFAULT" style="Ground;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Ground"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="270.0" y="430.0"/></GroundBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="331568f2:130d6f18fe2:-7fd5" ordering="1" parent="331568f2:130d6f18fe2:-7fd6" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=90;spacingTop=5;flip=false;mirror=false"><Orientation as="orientation" value="NORTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="331568f2:130d6f18fe2:-7fcd" interfaceFunctionName="Resistor" ordering="3" parent="331568f2:130d6f18fe2:-8000" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="7"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="7.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="7.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="140.0" y="160.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="331568f2:130d6f18fe2:-7ee1" ordering="1" parent="331568f2:130d6f18fe2:-7fcd" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="331568f2:130d6f18fe2:-7ee2" ordering="1" parent="331568f2:130d6f18fe2:-7fcd" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><BasicBlock angle="90" dependsOnU="1" id="331568f2:130d6f18fe2:-7fbf" interfaceFunctionName="Resistor" ordering="4" parent="331568f2:130d6f18fe2:-8000" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="5"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="430.0" y="300.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="331568f2:130d6f18fe2:-7ed1" ordering="1" parent="331568f2:130d6f18fe2:-7fbf" style="ImplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;spacingBottom=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="331568f2:130d6f18fe2:-7ed2" ordering="1" parent="331568f2:130d6f18fe2:-7fbf" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;spacingTop=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock angle="90" dependsOnU="1" id="331568f2:130d6f18fe2:-7fbc" interfaceFunctionName="Resistor" ordering="5" parent="331568f2:130d6f18fe2:-8000" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="12"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="12.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="12.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="270.0" y="260.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="331568f2:130d6f18fe2:-7edd" ordering="1" parent="331568f2:130d6f18fe2:-7fbc" style="ImplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;spacingBottom=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="331568f2:130d6f18fe2:-7ede" ordering="1" parent="331568f2:130d6f18fe2:-7fbc" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;spacingTop=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock angle="90" dependsOnU="1" id="331568f2:130d6f18fe2:-7fb3" interfaceFunctionName="Resistor" ordering="6" parent="331568f2:130d6f18fe2:-8000" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="7"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="7.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="7.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="430.0" y="210.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="331568f2:130d6f18fe2:-7ed5" ordering="1" parent="331568f2:130d6f18fe2:-7fb3" style="ImplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;spacingBottom=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="331568f2:130d6f18fe2:-7ed6" ordering="1" parent="331568f2:130d6f18fe2:-7fb3" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;spacingTop=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock angle="90" dependsOnU="1" id="331568f2:130d6f18fe2:-7faa" interfaceFunctionName="Resistor" ordering="7" parent="331568f2:130d6f18fe2:-8000" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="6"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="200.0" y="260.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="331568f2:130d6f18fe2:-7ed9" ordering="1" parent="331568f2:130d6f18fe2:-7faa" style="ImplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;spacingBottom=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="331568f2:130d6f18fe2:-7eda" ordering="1" parent="331568f2:130d6f18fe2:-7faa" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;spacingTop=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitLink id="331568f2:130d6f18fe2:-7f92" parent="331568f2:130d6f18fe2:-8000" source="331568f2:130d6f18fe2:-7ed5" target="331568f2:130d6f18fe2:-7ed2"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="450.0" y="254.0"/><mxPoint as="targetPoint" x="450.0" y="300.0"/></mxGeometry></ImplicitLink><SplitBlock id="331568f2:130d6f18fe2:-7f88" ordering="8" parent="331568f2:130d6f18fe2:-8000" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="287.0" y="377.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="331568f2:130d6f18fe2:-7f87" ordering="1" parent="331568f2:130d6f18fe2:-7f88" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="331568f2:130d6f18fe2:-7f86" ordering="1" parent="331568f2:130d6f18fe2:-7f88" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="331568f2:130d6f18fe2:-7f85" ordering="2" parent="331568f2:130d6f18fe2:-7f88" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="331568f2:130d6f18fe2:-7f84" parent="331568f2:130d6f18fe2:-8000" source="331568f2:130d6f18fe2:-7ee5" target="331568f2:130d6f18fe2:-7f87"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="40.0" y="380.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="331568f2:130d6f18fe2:-7f83" parent="331568f2:130d6f18fe2:-8000" source="331568f2:130d6f18fe2:-7ed1" target="331568f2:130d6f18fe2:-7f86"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="450.0" y="380.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="331568f2:130d6f18fe2:-7f81" ordering="9" parent="331568f2:130d6f18fe2:-8000" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="287.0" y="377.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="331568f2:130d6f18fe2:-7f80" ordering="1" parent="331568f2:130d6f18fe2:-7f81" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="331568f2:130d6f18fe2:-7f7f" ordering="1" parent="331568f2:130d6f18fe2:-7f81" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="331568f2:130d6f18fe2:-7f7e" ordering="2" parent="331568f2:130d6f18fe2:-7f81" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="331568f2:130d6f18fe2:-7f7c" parent="331568f2:130d6f18fe2:-8000" source="331568f2:130d6f18fe2:-7f85" target="331568f2:130d6f18fe2:-7f7f"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="331568f2:130d6f18fe2:-7f82" parent="331568f2:130d6f18fe2:-8000" source="331568f2:130d6f18fe2:-7f7e" target="331568f2:130d6f18fe2:-7fd5"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="290.0" y="426.0"/><mxPoint as="targetPoint" x="290.0" y="380.0"/></mxGeometry></ImplicitLink><SplitBlock id="331568f2:130d6f18fe2:-7f7a" ordering="10" parent="331568f2:130d6f18fe2:-8000" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="287.0" y="227.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="331568f2:130d6f18fe2:-7f79" ordering="1" parent="331568f2:130d6f18fe2:-7f7a" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="331568f2:130d6f18fe2:-7f78" ordering="1" parent="331568f2:130d6f18fe2:-7f7a" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="331568f2:130d6f18fe2:-7f77" ordering="2" parent="331568f2:130d6f18fe2:-7f7a" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="331568f2:130d6f18fe2:-7f75" parent="331568f2:130d6f18fe2:-8000" source="331568f2:130d6f18fe2:-7f78" target="331568f2:130d6f18fe2:-7ede"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><SplitBlock id="331568f2:130d6f18fe2:-7f73" ordering="11" parent="331568f2:130d6f18fe2:-8000" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="287.0" y="337.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="331568f2:130d6f18fe2:-7f72" ordering="1" parent="331568f2:130d6f18fe2:-7f73" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="331568f2:130d6f18fe2:-7f71" ordering="1" parent="331568f2:130d6f18fe2:-7f73" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="331568f2:130d6f18fe2:-7f70" ordering="2" parent="331568f2:130d6f18fe2:-7f73" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="331568f2:130d6f18fe2:-7f6f" parent="331568f2:130d6f18fe2:-8000" source="331568f2:130d6f18fe2:-7edd" target="331568f2:130d6f18fe2:-7f72"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="331568f2:130d6f18fe2:-7f6e" parent="331568f2:130d6f18fe2:-8000" source="331568f2:130d6f18fe2:-7f71" target="331568f2:130d6f18fe2:-7f80"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><BasicBlock dependsOnU="1" id="331568f2:130d6f18fe2:-7f64" interfaceFunctionName="CurrentSensor" ordering="12" parent="331568f2:130d6f18fe2:-8000" simulationFunctionName="CurrentSensor" simulationFunctionType="DEFAULT" style="CurrentSensor;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CurrentSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="i"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="350.0" y="160.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="331568f2:130d6f18fe2:-7f63" ordering="1" parent="331568f2:130d6f18fe2:-7f64" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="6.0"/></ImplicitOutputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="331568f2:130d6f18fe2:-7f62" ordering="2" parent="331568f2:130d6f18fe2:-7f64" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="26.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="331568f2:130d6f18fe2:-7f61" ordering="1" parent="331568f2:130d6f18fe2:-7f64" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><VoltageSensorBlock dependsOnU="1" id="331568f2:130d6f18fe2:-7f57" interfaceFunctionName="VoltageSensor" ordering="13" parent="331568f2:130d6f18fe2:-8000" simulationFunctionName="VoltageSensor" simulationFunctionType="DEFAULT" style="VoltageSensor;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="VoltageSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="v"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="140.0" y="100.0"/></VoltageSensorBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="331568f2:130d6f18fe2:-7f56" ordering="1" parent="331568f2:130d6f18fe2:-7f57" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=90;flip=false;mirror=false"><Orientation as="orientation" value="SOUTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="6.0"/></ImplicitOutputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="331568f2:130d6f18fe2:-7f55" ordering="2" parent="331568f2:130d6f18fe2:-7f57" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="26.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="331568f2:130d6f18fe2:-7f54" ordering="1" parent="331568f2:130d6f18fe2:-7f57" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><VoltageSensorBlock angle="90" dependsOnU="1" id="331568f2:130d6f18fe2:-7f47" interfaceFunctionName="VoltageSensor" ordering="14" parent="331568f2:130d6f18fe2:-8000" simulationFunctionName="VoltageSensor" simulationFunctionType="DEFAULT" style="VoltageSensor;rotation=90;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="VoltageSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="v"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="320.0" y="260.0"/></VoltageSensorBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="331568f2:130d6f18fe2:-7f46" ordering="1" parent="331568f2:130d6f18fe2:-7f47" style="ImplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;rotation=90;spacingBottom=5;flip=false;mirror=false"><Orientation as="orientation" value="SOUTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="6.0" y="40.0"/></ImplicitOutputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="331568f2:130d6f18fe2:-7f45" ordering="2" parent="331568f2:130d6f18fe2:-7f47" style="ExplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;rotation=90;spacingBottom=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="26.0" y="40.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="331568f2:130d6f18fe2:-7f44" ordering="1" parent="331568f2:130d6f18fe2:-7f47" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=90;spacingTop=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><SplitBlock id="331568f2:130d6f18fe2:-7f3e" ordering="15" parent="331568f2:130d6f18fe2:-8000" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="287.0" y="227.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="331568f2:130d6f18fe2:-7f3d" ordering="1" parent="331568f2:130d6f18fe2:-7f3e" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="331568f2:130d6f18fe2:-7f3c" ordering="1" parent="331568f2:130d6f18fe2:-7f3e" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="331568f2:130d6f18fe2:-7f3b" ordering="2" parent="331568f2:130d6f18fe2:-7f3e" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="331568f2:130d6f18fe2:-7f3a" parent="331568f2:130d6f18fe2:-8000" source="331568f2:130d6f18fe2:-7f77" target="331568f2:130d6f18fe2:-7f3d"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="331568f2:130d6f18fe2:-7f39" parent="331568f2:130d6f18fe2:-8000" source="331568f2:130d6f18fe2:-7f3c" target="331568f2:130d6f18fe2:-7eda"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="220.0" y="230.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="331568f2:130d6f18fe2:-7f3f" parent="331568f2:130d6f18fe2:-8000" source="331568f2:130d6f18fe2:-7f3b" target="331568f2:130d6f18fe2:-7f44"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="340.0" y="256.0"/><mxPoint as="targetPoint" x="290.0" y="230.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="340.0" y="230.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="331568f2:130d6f18fe2:-7f35" ordering="16" parent="331568f2:130d6f18fe2:-8000" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="287.0" y="337.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="331568f2:130d6f18fe2:-7f34" ordering="1" parent="331568f2:130d6f18fe2:-7f35" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="331568f2:130d6f18fe2:-7f33" ordering="1" parent="331568f2:130d6f18fe2:-7f35" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="331568f2:130d6f18fe2:-7f32" ordering="2" parent="331568f2:130d6f18fe2:-7f35" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="331568f2:130d6f18fe2:-7f31" parent="331568f2:130d6f18fe2:-8000" source="331568f2:130d6f18fe2:-7ed9" target="331568f2:130d6f18fe2:-7f34"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="220.0" y="340.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="331568f2:130d6f18fe2:-7f30" parent="331568f2:130d6f18fe2:-8000" source="331568f2:130d6f18fe2:-7f70" target="331568f2:130d6f18fe2:-7f33"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="331568f2:130d6f18fe2:-7f36" parent="331568f2:130d6f18fe2:-8000" source="331568f2:130d6f18fe2:-7f46" target="331568f2:130d6f18fe2:-7f32"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="330.0" y="304.0"/><mxPoint as="targetPoint" x="290.0" y="340.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="330.0" y="340.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="331568f2:130d6f18fe2:-7f29" ordering="17" parent="331568f2:130d6f18fe2:-8000" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="287.0" y="177.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="331568f2:130d6f18fe2:-7f28" ordering="1" parent="331568f2:130d6f18fe2:-7f29" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="331568f2:130d6f18fe2:-7f27" ordering="1" parent="331568f2:130d6f18fe2:-7f29" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="331568f2:130d6f18fe2:-7f26" ordering="2" parent="331568f2:130d6f18fe2:-7f29" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="331568f2:130d6f18fe2:-7f24" parent="331568f2:130d6f18fe2:-8000" source="331568f2:130d6f18fe2:-7f27" target="331568f2:130d6f18fe2:-7f79"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="290.0" y="180.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="331568f2:130d6f18fe2:-7f2a" parent="331568f2:130d6f18fe2:-8000" source="331568f2:130d6f18fe2:-7f26" target="331568f2:130d6f18fe2:-7f61"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="346.0" y="180.0"/><mxPoint as="targetPoint" x="290.0" y="180.0"/></mxGeometry></ImplicitLink><ImplicitLink id="331568f2:130d6f18fe2:-7f23" parent="331568f2:130d6f18fe2:-8000" source="331568f2:130d6f18fe2:-7f63" target="331568f2:130d6f18fe2:-7ed6"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="394.0" y="170.0"/><mxPoint as="targetPoint" x="450.0" y="200.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="450.0" y="170.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="331568f2:130d6f18fe2:-7f21" ordering="18" parent="331568f2:130d6f18fe2:-8000" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="227.0" y="177.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="331568f2:130d6f18fe2:-7f20" ordering="1" parent="331568f2:130d6f18fe2:-7f21" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="331568f2:130d6f18fe2:-7f1f" ordering="1" parent="331568f2:130d6f18fe2:-7f21" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="331568f2:130d6f18fe2:-7f1e" ordering="2" parent="331568f2:130d6f18fe2:-7f21" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="331568f2:130d6f18fe2:-7f1d" parent="331568f2:130d6f18fe2:-8000" source="331568f2:130d6f18fe2:-7ee1" target="331568f2:130d6f18fe2:-7f20"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="331568f2:130d6f18fe2:-7f1c" parent="331568f2:130d6f18fe2:-8000" source="331568f2:130d6f18fe2:-7f1f" target="331568f2:130d6f18fe2:-7f28"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="331568f2:130d6f18fe2:-7f22" parent="331568f2:130d6f18fe2:-8000" source="331568f2:130d6f18fe2:-7f56" target="331568f2:130d6f18fe2:-7f1e"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="184.0" y="110.0"/><mxPoint as="targetPoint" x="230.0" y="180.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="230.0" y="110.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="331568f2:130d6f18fe2:-7f1a" ordering="19" parent="331568f2:130d6f18fe2:-8000" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="87.0" y="177.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="331568f2:130d6f18fe2:-7f19" ordering="1" parent="331568f2:130d6f18fe2:-7f1a" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="331568f2:130d6f18fe2:-7f18" ordering="1" parent="331568f2:130d6f18fe2:-7f1a" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="331568f2:130d6f18fe2:-7f17" ordering="2" parent="331568f2:130d6f18fe2:-7f1a" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="331568f2:130d6f18fe2:-7f16" parent="331568f2:130d6f18fe2:-8000" source="331568f2:130d6f18fe2:-7ee6" target="331568f2:130d6f18fe2:-7f19"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="40.0" y="180.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="331568f2:130d6f18fe2:-7f15" parent="331568f2:130d6f18fe2:-8000" source="331568f2:130d6f18fe2:-7f18" target="331568f2:130d6f18fe2:-7ee2"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="331568f2:130d6f18fe2:-7f1b" parent="331568f2:130d6f18fe2:-8000" source="331568f2:130d6f18fe2:-7f17" target="331568f2:130d6f18fe2:-7f54"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="136.0" y="120.0"/><mxPoint as="targetPoint" x="90.0" y="180.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="90.0" y="120.0"/></Array></mxGeometry></ImplicitLink><BasicBlock blockType="h" id="331568f2:130d6f18fe2:-7f0f" interfaceFunctionName="CLOCK_c" ordering="20" parent="331568f2:130d6f18fe2:-8000" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="99.0"/><data column="1" line="0" realPart="-160.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-6828d40b:166e7805a21:-7e15"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-6828d40b:166e7805a21:-7e15"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-70.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.1"/><data column="0" line="1" value="0.001"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.1"/><data column="0" line="1" realPart="0.001"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.001"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-6828d40b:166e7805a21:-7e13"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-6828d40b:166e7805a21:-7e13"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="90.3773266666667"/><data column="1" line="0" realPart="-166.33333333333331"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="7.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="5.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-6828d40b:166e7805a21:-7e10"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-6828d40b:166e7805a21:-7e10"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="60.0"/><data column="0" line="2" realPart="97.54399333333338"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-74.0"/><data column="0" line="1" realPart="-170.0"/><data column="0" line="2" realPart="-155.33333333333331"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="97.48843777777782"/><data column="0" line="1" realPart="129.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-163.66666666666666"/><data column="0" line="1" realPart="-136.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="97.59954888888893"/><data column="0" line="1" realPart="100.70999999999998"/><data column="0" line="2" realPart="60.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-163.66666666666666"/><data column="0" line="1" realPart="-40.0"/><data column="0" line="2" realPart="-40.0"/><data column="0" line="3" realPart="-26.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="48.0" width="40.0" x="440.0" y="20.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="331568f2:130d6f18fe2:-7dbd" ordering="1" parent="331568f2:130d6f18fe2:-7f0f" style="CommandPort;align=center;labelPosition=center;verticalLabelPosition=top;rotation=90;spacingBottom=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="48.0"/></CommandPort><BasicBlock blockType="h" id="331568f2:130d6f18fe2:-7f0d" interfaceFunctionName="CLOCK_c" ordering="21" parent="331568f2:130d6f18fe2:-8000" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="99.0"/><data column="1" line="0" realPart="-160.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-6828d40b:166e7805a21:-7e07"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-6828d40b:166e7805a21:-7e07"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-70.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.1"/><data column="0" line="1" value="0.001"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.1"/><data column="0" line="1" realPart="0.001"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.001"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-6828d40b:166e7805a21:-7e05"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-6828d40b:166e7805a21:-7e05"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="90.3773266666667"/><data column="1" line="0" realPart="-166.33333333333331"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="7.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="5.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-6828d40b:166e7805a21:-7e02"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-6828d40b:166e7805a21:-7e02"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="60.0"/><data column="0" line="2" realPart="97.54399333333338"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-74.0"/><data column="0" line="1" realPart="-170.0"/><data column="0" line="2" realPart="-155.33333333333331"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="97.48843777777782"/><data column="0" line="1" realPart="129.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-163.66666666666666"/><data column="0" line="1" realPart="-136.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="97.59954888888893"/><data column="0" line="1" realPart="100.70999999999998"/><data column="0" line="2" realPart="60.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-163.66666666666666"/><data column="0" line="1" realPart="-40.0"/><data column="0" line="2" realPart="-40.0"/><data column="0" line="3" realPart="-26.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="48.0" width="40.0" x="730.0" y="120.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="331568f2:130d6f18fe2:-7dba" ordering="1" parent="331568f2:130d6f18fe2:-7f0d" style="CommandPort;align=center;labelPosition=center;verticalLabelPosition=top;rotation=90;spacingBottom=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="48.0"/></CommandPort><BasicBlock dependsOnU="1" id="331568f2:130d6f18fe2:-7f04" interfaceFunctionName="CSCOPE" ordering="22" parent="331568f2:130d6f18fe2:-8000" simulationFunctionName="cscope" simulationFunctionType="C_OR_FORTRAN" style="CSCOPE;flip=false;mirror=false"><ScilabString as="exprs" height="10" width="1"><data column="0" line="0" value="1 3 5 7 9 11 13 15"/><data column="0" line="1" value="-1"/><data column="0" line="2" value="[]"/><data column="0" line="3" value="[600;400]"/><data column="0" line="4" value="251"/><data column="0" line="5" value="253"/><data column="0" line="6" value="30"/><data column="0" line="7" value="20"/><data column="0" line="8" value="0"/><data column="0" line="9" value=""/></ScilabString><ScilabDouble as="realParameters" height="4" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="251.0"/><data column="0" line="2" realPart="253.0"/><data column="0" line="3" realPart="30.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="15" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="1.0"/><data column="0" line="4" realPart="3.0"/><data column="0" line="5" realPart="5.0"/><data column="0" line="6" realPart="7.0"/><data column="0" line="7" realPart="9.0"/><data column="0" line="8" realPart="11.0"/><data column="0" line="9" realPart="13.0"/><data column="0" line="10" realPart="15.0"/><data column="0" line="11" realPart="-1.0"/><data column="0" line="12" realPart="-1.0"/><data column="0" line="13" realPart="600.0"/><data column="0" line="14" realPart="400.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="440.0" y="112.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="331568f2:130d6f18fe2:-7de5" ordering="1" parent="331568f2:130d6f18fe2:-7f04" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ControlPort dataType="UNKNOW_TYPE" id="331568f2:130d6f18fe2:-7de4" ordering="1" parent="331568f2:130d6f18fe2:-7f04" style="ControlPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=90;spacingTop=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><BasicBlock dependsOnU="1" id="331568f2:130d6f18fe2:-7ef8" interfaceFunctionName="CMSCOPE" ordering="23" parent="331568f2:130d6f18fe2:-8000" simulationFunctionName="cmscope" simulationFunctionType="C_OR_FORTRAN" style="CMSCOPE;flip=false;mirror=false"><ScilabString as="exprs" height="11" width="1"><data column="0" line="0" value="1 1"/><data column="0" line="1" value="1 3 5 7 9 11 13 15"/><data column="0" line="2" value="-1"/><data column="0" line="3" value="[]"/><data column="0" line="4" value="[]"/><data column="0" line="5" value="15 11"/><data column="0" line="6" value="16 12"/><data column="0" line="7" value="10 10"/><data column="0" line="8" value="20"/><data column="0" line="9" value="0"/><data column="0" line="10" value=""/></ScilabString><ScilabDouble as="realParameters" height="7" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="10.0"/><data column="0" line="2" realPart="10.0"/><data column="0" line="3" realPart="15.0"/><data column="0" line="4" realPart="16.0"/><data column="0" line="5" realPart="11.0"/><data column="0" line="6" realPart="12.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="12" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="2.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="-1.0"/><data column="0" line="4" realPart="-1.0"/><data column="0" line="5" realPart="-1.0"/><data column="0" line="6" realPart="-1.0"/><data column="0" line="7" realPart="1.0"/><data column="0" line="8" realPart="1.0"/><data column="0" line="9" realPart="1.0"/><data column="0" line="10" realPart="3.0"/><data column="0" line="11" realPart="0.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="730.0" y="200.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="331568f2:130d6f18fe2:-7de1" ordering="1" parent="331568f2:130d6f18fe2:-7ef8" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ExplicitInputPort><ControlPort dataType="UNKNOW_TYPE" id="331568f2:130d6f18fe2:-7ddf" ordering="1" parent="331568f2:130d6f18fe2:-7ef8" style="ControlPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=90;spacingTop=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="331568f2:130d6f18fe2:-7de0" ordering="2" parent="331568f2:130d6f18fe2:-7ef8" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="26.0"/></ExplicitInputPort><CommandControlLink id="331568f2:130d6f18fe2:-7ef1" parent="331568f2:130d6f18fe2:-8000" source="331568f2:130d6f18fe2:-7dbd" target="331568f2:130d6f18fe2:-7de4"><mxGeometry as="geometry" x="180.0"><mxPoint as="sourcePoint" x="460.0" y="64.0"/><mxPoint as="targetPoint" x="460.0" y="110.0"/></mxGeometry></CommandControlLink><CommandControlLink id="331568f2:130d6f18fe2:-7ee8" parent="331568f2:130d6f18fe2:-8000" source="331568f2:130d6f18fe2:-7dba" target="331568f2:130d6f18fe2:-7ddf"><mxGeometry as="geometry" x="230.0" y="-90.0"><mxPoint as="sourcePoint" x="750.0" y="164.0"/><mxPoint as="targetPoint" x="750.0" y="190.0"/></mxGeometry></CommandControlLink><BasicBlock dependsOnU="1" id="331568f2:130d6f18fe2:-7ec8" interfaceFunctionName="GAINBLK_f" ordering="24" parent="331568f2:130d6f18fe2:-8000" simulationFunctionName="gain" simulationFunctionType="DEFAULT" style="GAINBLK_f;flip=false;mirror=false" value="1/7"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="1/7"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="0.14285714285714285"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="50.0" width="40.0" x="360.0" y="110.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="331568f2:130d6f18fe2:-7dd6" ordering="1" parent="331568f2:130d6f18fe2:-7ec8" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="331568f2:130d6f18fe2:-7dd7" ordering="1" parent="331568f2:130d6f18fe2:-7ec8" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><BasicBlock dependsOnU="1" id="331568f2:130d6f18fe2:-7ebe" interfaceFunctionName="POWBLK_f" ordering="25" parent="331568f2:130d6f18fe2:-8000" simulationFunctionName="powblk" simulationFunctionType="DEFAULT" style="POWBLK_f;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="2"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="50.0" width="50.0" x="270.0" y="110.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataType="REAL_MATRIX" id="331568f2:130d6f18fe2:-7de8" ordering="1" parent="331568f2:130d6f18fe2:-7ebe" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="50.0" y="16.0"/></ExplicitOutputPort><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="331568f2:130d6f18fe2:-7de9" ordering="1" parent="331568f2:130d6f18fe2:-7ebe" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitLink id="331568f2:130d6f18fe2:-7eaf" parent="331568f2:130d6f18fe2:-8000" source="331568f2:130d6f18fe2:-7f55" target="331568f2:130d6f18fe2:-7de9"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="184.0" y="130.0"/><mxPoint as="targetPoint" x="240.0" y="130.0"/></mxGeometry></ExplicitLink><ExplicitLink id="331568f2:130d6f18fe2:-7eae" parent="331568f2:130d6f18fe2:-8000" source="331568f2:130d6f18fe2:-7de8" target="331568f2:130d6f18fe2:-7dd7"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="324.0" y="130.0"/><mxPoint as="targetPoint" x="360.0" y="130.0"/></mxGeometry></ExplicitLink><ExplicitLink id="331568f2:130d6f18fe2:-7ea7" parent="331568f2:130d6f18fe2:-8000" source="331568f2:130d6f18fe2:-7dd6" target="331568f2:130d6f18fe2:-7de5"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="404.0" y="130.0"/><mxPoint as="targetPoint" x="440.0" y="130.0"/></mxGeometry></ExplicitLink><BasicBlock blockType="h" id="331568f2:130d6f18fe2:-7e98" interfaceFunctionName="CLOCK_c" ordering="26" parent="331568f2:130d6f18fe2:-8000" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="99.0"/><data column="1" line="0" realPart="-160.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-6828d40b:166e7805a21:-7df9"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-6828d40b:166e7805a21:-7df9"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-70.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.1"/><data column="0" line="1" value="0.001"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.1"/><data column="0" line="1" realPart="0.001"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.001"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-6828d40b:166e7805a21:-7df7"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-6828d40b:166e7805a21:-7df7"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="90.3773266666667"/><data column="1" line="0" realPart="-166.33333333333331"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="7.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="5.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-6828d40b:166e7805a21:-7df4"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-6828d40b:166e7805a21:-7df4"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="60.0"/><data column="0" line="2" realPart="97.54399333333338"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-74.0"/><data column="0" line="1" realPart="-170.0"/><data column="0" line="2" realPart="-155.33333333333331"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="97.48843777777782"/><data column="0" line="1" realPart="129.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-163.66666666666666"/><data column="0" line="1" realPart="-136.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="97.59954888888893"/><data column="0" line="1" realPart="100.70999999999998"/><data column="0" line="2" realPart="60.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-163.66666666666666"/><data column="0" line="1" realPart="-40.0"/><data column="0" line="2" realPart="-40.0"/><data column="0" line="3" realPart="-26.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="48.0" width="40.0" x="650.0" y="300.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="331568f2:130d6f18fe2:-7db7" ordering="1" parent="331568f2:130d6f18fe2:-7e98" style="CommandPort;align=center;labelPosition=center;verticalLabelPosition=top;rotation=90;spacingBottom=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="48.0"/></CommandPort><BasicBlock dependsOnU="1" id="331568f2:130d6f18fe2:-7e96" interfaceFunctionName="CMSCOPE" ordering="27" parent="331568f2:130d6f18fe2:-8000" simulationFunctionName="cmscope" simulationFunctionType="C_OR_FORTRAN" style="CMSCOPE;flip=false;mirror=false"><ScilabString as="exprs" height="11" width="1"><data column="0" line="0" value="1 1"/><data column="0" line="1" value="1 3 5 7 9 11 13 15"/><data column="0" line="2" value="-1"/><data column="0" line="3" value="[]"/><data column="0" line="4" value="[]"/><data column="0" line="5" value="26 53"/><data column="0" line="6" value="28 55"/><data column="0" line="7" value="30 30"/><data column="0" line="8" value="20"/><data column="0" line="9" value="0"/><data column="0" line="10" value=""/></ScilabString><ScilabDouble as="realParameters" height="7" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="30.0"/><data column="0" line="2" realPart="30.0"/><data column="0" line="3" realPart="26.0"/><data column="0" line="4" realPart="28.0"/><data column="0" line="5" realPart="53.0"/><data column="0" line="6" realPart="55.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="12" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="2.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="-1.0"/><data column="0" line="4" realPart="-1.0"/><data column="0" line="5" realPart="-1.0"/><data column="0" line="6" realPart="-1.0"/><data column="0" line="7" realPart="1.0"/><data column="0" line="8" realPart="1.0"/><data column="0" line="9" realPart="1.0"/><data column="0" line="10" realPart="3.0"/><data column="0" line="11" realPart="0.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="650.0" y="380.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="331568f2:130d6f18fe2:-7ddc" ordering="1" parent="331568f2:130d6f18fe2:-7e96" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ExplicitInputPort><ControlPort dataType="UNKNOW_TYPE" id="331568f2:130d6f18fe2:-7dda" ordering="1" parent="331568f2:130d6f18fe2:-7e96" style="ControlPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=90;spacingTop=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="331568f2:130d6f18fe2:-7ddb" ordering="2" parent="331568f2:130d6f18fe2:-7e96" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="26.0"/></ExplicitInputPort><CommandControlLink id="331568f2:130d6f18fe2:-7e92" parent="331568f2:130d6f18fe2:-8000" source="331568f2:130d6f18fe2:-7db7" target="331568f2:130d6f18fe2:-7dda"><mxGeometry as="geometry" x="150.0" y="90.0"><mxPoint as="sourcePoint" x="670.0" y="344.0"/><mxPoint as="targetPoint" x="670.0" y="370.0"/></mxGeometry></CommandControlLink><BasicBlock dependsOnU="1" id="331568f2:130d6f18fe2:-7e83" interfaceFunctionName="GAINBLK_f" ordering="28" parent="331568f2:130d6f18fe2:-8000" simulationFunctionName="gain" simulationFunctionType="DEFAULT" style="GAINBLK_f;flip=false;mirror=false" value="7"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="7"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="7.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="50.0" width="40.0" x="640.0" y="170.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="331568f2:130d6f18fe2:-7dc4" ordering="1" parent="331568f2:130d6f18fe2:-7e83" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="331568f2:130d6f18fe2:-7dc5" ordering="1" parent="331568f2:130d6f18fe2:-7e83" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><BasicBlock dependsOnU="1" id="331568f2:130d6f18fe2:-7e80" interfaceFunctionName="POWBLK_f" ordering="29" parent="331568f2:130d6f18fe2:-8000" simulationFunctionName="powblk" simulationFunctionType="DEFAULT" style="POWBLK_f;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="2"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="50.0" width="50.0" x="540.0" y="170.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataType="REAL_MATRIX" id="331568f2:130d6f18fe2:-7dec" ordering="1" parent="331568f2:130d6f18fe2:-7e80" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="50.0" y="16.0"/></ExplicitOutputPort><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="331568f2:130d6f18fe2:-7ded" ordering="1" parent="331568f2:130d6f18fe2:-7e80" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitLink id="331568f2:130d6f18fe2:-7e7d" parent="331568f2:130d6f18fe2:-8000" source="331568f2:130d6f18fe2:-7dec" target="331568f2:130d6f18fe2:-7dc5"><mxGeometry as="geometry" x="290.0" y="100.0"><mxPoint as="sourcePoint" x="614.0" y="230.0"/><mxPoint as="targetPoint" x="650.0" y="230.0"/></mxGeometry></ExplicitLink><BasicBlock dependsOnU="1" id="331568f2:130d6f18fe2:-7e75" interfaceFunctionName="GAINBLK_f" ordering="30" parent="331568f2:130d6f18fe2:-8000" simulationFunctionName="gain" simulationFunctionType="DEFAULT" style="GAINBLK_f;flip=false;mirror=false" value="5"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="5"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="50.0" width="40.0" x="640.0" y="240.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="331568f2:130d6f18fe2:-7dc0" ordering="1" parent="331568f2:130d6f18fe2:-7e75" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="331568f2:130d6f18fe2:-7dc1" ordering="1" parent="331568f2:130d6f18fe2:-7e75" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><BasicBlock dependsOnU="1" id="331568f2:130d6f18fe2:-7e72" interfaceFunctionName="POWBLK_f" ordering="31" parent="331568f2:130d6f18fe2:-8000" simulationFunctionName="powblk" simulationFunctionType="DEFAULT" style="POWBLK_f;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="2"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="50.0" width="50.0" x="540.0" y="240.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataType="REAL_MATRIX" id="331568f2:130d6f18fe2:-7df0" ordering="1" parent="331568f2:130d6f18fe2:-7e72" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="50.0" y="16.0"/></ExplicitOutputPort><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="331568f2:130d6f18fe2:-7df1" ordering="1" parent="331568f2:130d6f18fe2:-7e72" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitLink id="331568f2:130d6f18fe2:-7e6f" parent="331568f2:130d6f18fe2:-8000" source="331568f2:130d6f18fe2:-7df0" target="331568f2:130d6f18fe2:-7dc1"><mxGeometry as="geometry" x="270.0" y="130.0"><mxPoint as="sourcePoint" x="594.0" y="260.0"/><mxPoint as="targetPoint" x="630.0" y="260.0"/></mxGeometry></ExplicitLink><BasicBlock dependsOnU="1" id="331568f2:130d6f18fe2:-7e67" interfaceFunctionName="GAINBLK_f" ordering="32" parent="331568f2:130d6f18fe2:-8000" simulationFunctionName="gain" simulationFunctionType="DEFAULT" style="GAINBLK_f;flip=false;mirror=false" value="1/12"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="1/12"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="0.08333333333333333"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="50.0" width="40.0" x="570.0" y="340.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="331568f2:130d6f18fe2:-7e00" ordering="1" parent="331568f2:130d6f18fe2:-7e67" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="331568f2:130d6f18fe2:-7e01" ordering="1" parent="331568f2:130d6f18fe2:-7e67" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><BasicBlock dependsOnU="1" id="331568f2:130d6f18fe2:-7e64" interfaceFunctionName="POWBLK_f" ordering="33" parent="331568f2:130d6f18fe2:-8000" simulationFunctionName="powblk" simulationFunctionType="DEFAULT" style="POWBLK_f;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="2"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="50.0" width="50.0" x="480.0" y="340.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataType="REAL_MATRIX" id="331568f2:130d6f18fe2:-7df4" ordering="1" parent="331568f2:130d6f18fe2:-7e64" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="50.0" y="16.0"/></ExplicitOutputPort><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="331568f2:130d6f18fe2:-7df5" ordering="1" parent="331568f2:130d6f18fe2:-7e64" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitLink id="331568f2:130d6f18fe2:-7e61" parent="331568f2:130d6f18fe2:-8000" source="331568f2:130d6f18fe2:-7df4" target="331568f2:130d6f18fe2:-7e01"><mxGeometry as="geometry" x="210.0" y="230.0"><mxPoint as="sourcePoint" x="534.0" y="360.0"/><mxPoint as="targetPoint" x="570.0" y="360.0"/></mxGeometry></ExplicitLink><BasicBlock dependsOnU="1" id="331568f2:130d6f18fe2:-7e59" interfaceFunctionName="GAINBLK_f" ordering="34" parent="331568f2:130d6f18fe2:-8000" simulationFunctionName="gain" simulationFunctionType="DEFAULT" style="GAINBLK_f;flip=false;mirror=false" value="1/6"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="1/6"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="0.16666666666666666"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="50.0" width="40.0" x="570.0" y="430.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="331568f2:130d6f18fe2:-7dfc" ordering="1" parent="331568f2:130d6f18fe2:-7e59" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="331568f2:130d6f18fe2:-7dfd" ordering="1" parent="331568f2:130d6f18fe2:-7e59" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><BasicBlock dependsOnU="1" id="331568f2:130d6f18fe2:-7e56" interfaceFunctionName="POWBLK_f" ordering="35" parent="331568f2:130d6f18fe2:-8000" simulationFunctionName="powblk" simulationFunctionType="DEFAULT" style="POWBLK_f;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="2"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="50.0" width="50.0" x="480.0" y="430.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataType="REAL_MATRIX" id="331568f2:130d6f18fe2:-7df8" ordering="1" parent="331568f2:130d6f18fe2:-7e56" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="50.0" y="16.0"/></ExplicitOutputPort><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="331568f2:130d6f18fe2:-7df9" ordering="1" parent="331568f2:130d6f18fe2:-7e56" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitLink id="331568f2:130d6f18fe2:-7e53" parent="331568f2:130d6f18fe2:-8000" source="331568f2:130d6f18fe2:-7df8" target="331568f2:130d6f18fe2:-7dfd"><mxGeometry as="geometry" x="210.0" y="320.0"><mxPoint as="sourcePoint" x="534.0" y="450.0"/><mxPoint as="targetPoint" x="570.0" y="450.0"/></mxGeometry></ExplicitLink><SplitBlock id="331568f2:130d6f18fe2:-7e3c" ordering="36" parent="331568f2:130d6f18fe2:-8000" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="487.0" y="187.0"/></SplitBlock><ExplicitInputPort dataType="UNKNOW_TYPE" id="331568f2:130d6f18fe2:-7e3b" ordering="1" parent="331568f2:130d6f18fe2:-7e3c" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ExplicitInputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="331568f2:130d6f18fe2:-7e3a" ordering="1" parent="331568f2:130d6f18fe2:-7e3c" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="331568f2:130d6f18fe2:-7e39" ordering="2" parent="331568f2:130d6f18fe2:-7e3c" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitLink id="331568f2:130d6f18fe2:-7e38" parent="331568f2:130d6f18fe2:-8000" source="331568f2:130d6f18fe2:-7f62" target="331568f2:130d6f18fe2:-7e3b"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ExplicitLink><ExplicitLink id="331568f2:130d6f18fe2:-7e37" parent="331568f2:130d6f18fe2:-8000" source="331568f2:130d6f18fe2:-7e3a" target="331568f2:130d6f18fe2:-7ded"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ExplicitLink><ExplicitLink id="331568f2:130d6f18fe2:-7e3d" parent="331568f2:130d6f18fe2:-8000" source="331568f2:130d6f18fe2:-7e39" target="331568f2:130d6f18fe2:-7df1"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="536.0" y="260.0"/><mxPoint as="targetPoint" x="490.0" y="190.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="490.0" y="260.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="331568f2:130d6f18fe2:-7e2f" parent="331568f2:130d6f18fe2:-8000" source="331568f2:130d6f18fe2:-7dc4" target="331568f2:130d6f18fe2:-7de1"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="684.0" y="190.0"/><mxPoint as="targetPoint" x="720.0" y="210.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="700.0" y="190.0"/><mxPoint x="700.0" y="210.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="331568f2:130d6f18fe2:-7e2e" parent="331568f2:130d6f18fe2:-8000" source="331568f2:130d6f18fe2:-7dc0" target="331568f2:130d6f18fe2:-7de0"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="684.0" y="260.0"/><mxPoint as="targetPoint" x="730.0" y="230.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="700.0" y="260.0"/><mxPoint x="700.0" y="230.0"/></Array></mxGeometry></ExplicitLink><SplitBlock id="331568f2:130d6f18fe2:-7e1d" ordering="37" parent="331568f2:130d6f18fe2:-8000" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="457.0" y="357.0"/></SplitBlock><ExplicitInputPort dataType="UNKNOW_TYPE" id="331568f2:130d6f18fe2:-7e1c" ordering="1" parent="331568f2:130d6f18fe2:-7e1d" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ExplicitInputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="331568f2:130d6f18fe2:-7e1b" ordering="1" parent="331568f2:130d6f18fe2:-7e1d" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="331568f2:130d6f18fe2:-7e1a" ordering="2" parent="331568f2:130d6f18fe2:-7e1d" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitLink id="331568f2:130d6f18fe2:-7e19" parent="331568f2:130d6f18fe2:-8000" source="331568f2:130d6f18fe2:-7f45" target="331568f2:130d6f18fe2:-7e1c"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="350.0" y="360.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="331568f2:130d6f18fe2:-7e18" parent="331568f2:130d6f18fe2:-8000" source="331568f2:130d6f18fe2:-7e1b" target="331568f2:130d6f18fe2:-7df5"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ExplicitLink><ExplicitLink id="331568f2:130d6f18fe2:-7e1e" parent="331568f2:130d6f18fe2:-8000" source="331568f2:130d6f18fe2:-7e1a" target="331568f2:130d6f18fe2:-7df9"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="476.0" y="450.0"/><mxPoint as="targetPoint" x="460.0" y="360.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="460.0" y="450.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="331568f2:130d6f18fe2:-7e10" parent="331568f2:130d6f18fe2:-8000" source="331568f2:130d6f18fe2:-7e00" target="331568f2:130d6f18fe2:-7ddc"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="614.0" y="360.0"/><mxPoint as="targetPoint" x="640.0" y="390.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="630.0" y="360.0"/><mxPoint x="630.0" y="390.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="331568f2:130d6f18fe2:-7e0f" parent="331568f2:130d6f18fe2:-8000" source="331568f2:130d6f18fe2:-7dfc" target="331568f2:130d6f18fe2:-7ddb"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="614.0" y="450.0"/><mxPoint as="targetPoint" x="640.0" y="410.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="630.0" y="450.0"/><mxPoint x="630.0" y="410.0"/></Array></mxGeometry></ExplicitLink></root></mxGraphModel><mxCell as="defaultParent" id="331568f2:130d6f18fe2:-8000" parent="331568f2:130d6f18fe2:-7fff"/></XcosDiagram>
\ No newline at end of file diff --git a/Working_Examples/154/CH5/EX5.6/ch5_61.jpeg b/Working_Examples/154/CH5/EX5.6/ch5_61.jpeg Binary files differnew file mode 100755 index 0000000..6434e9f --- /dev/null +++ b/Working_Examples/154/CH5/EX5.6/ch5_61.jpeg diff --git a/Working_Examples/154/CH5/EX5.6/chap5_6.jpeg b/Working_Examples/154/CH5/EX5.6/chap5_6.jpeg Binary files differnew file mode 100755 index 0000000..749b018 --- /dev/null +++ b/Working_Examples/154/CH5/EX5.6/chap5_6.jpeg diff --git a/Working_Examples/154/CH5/EX5.7/ch5_7.xcos b/Working_Examples/154/CH5/EX5.7/ch5_7.xcos new file mode 100644 index 0000000..b8c52cd --- /dev/null +++ b/Working_Examples/154/CH5/EX5.7/ch5_7.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" finalIntegrationTime="30.0" title="ch5_7"><!--Xcos - 1.0 - scilab-5.5.2 - 20160406 2040--><mxGraphModel as="model"><root><mxCell id="331568f2:130d6f18fe2:-7db4"/><mxCell id="331568f2:130d6f18fe2:-7db5" parent="331568f2:130d6f18fe2:-7db4"/><BasicBlock angle="90" id="331568f2:130d6f18fe2:-7dac" interfaceFunctionName="ConstantVoltage" ordering="1" parent="331568f2:130d6f18fe2:-7db5" simulationFunctionName="ConstantVoltage" simulationFunctionType="DEFAULT" style="ConstantVoltage;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="200"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="200.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ConstantVoltage"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="V"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="200.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="100.0" y="270.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="331568f2:130d6f18fe2:-7d3e" ordering="1" parent="331568f2:130d6f18fe2:-7dac" style="ImplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;spacingBottom=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="331568f2:130d6f18fe2:-7d3f" ordering="1" parent="331568f2:130d6f18fe2:-7dac" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;spacingTop=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><GroundBlock angle="90" dependsOnU="1" id="331568f2:130d6f18fe2:-7da4" interfaceFunctionName="Ground" ordering="2" parent="331568f2:130d6f18fe2:-7db5" simulationFunctionName="Ground" simulationFunctionType="DEFAULT" style="Ground;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Ground"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="180.0" y="410.0"/></GroundBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="331568f2:130d6f18fe2:-7da3" ordering="1" parent="331568f2:130d6f18fe2:-7da4" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=90;spacingTop=5;flip=false;mirror=false"><Orientation as="orientation" value="NORTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="331568f2:130d6f18fe2:-7d9b" interfaceFunctionName="Resistor" ordering="3" parent="331568f2:130d6f18fe2:-7db5" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="4"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="190.0" y="110.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="331568f2:130d6f18fe2:-7d36" ordering="1" parent="331568f2:130d6f18fe2:-7d9b" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="331568f2:130d6f18fe2:-7d37" ordering="1" parent="331568f2:130d6f18fe2:-7d9b" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><BasicBlock angle="90" dependsOnU="1" id="331568f2:130d6f18fe2:-7d98" interfaceFunctionName="Resistor" ordering="4" parent="331568f2:130d6f18fe2:-7db5" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="27"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="27.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="27.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="20.0" y="202.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="331568f2:130d6f18fe2:-7d32" ordering="1" parent="331568f2:130d6f18fe2:-7d98" style="ImplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;spacingBottom=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="331568f2:130d6f18fe2:-7d33" ordering="1" parent="331568f2:130d6f18fe2:-7d98" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;spacingTop=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock angle="90" dependsOnU="1" id="331568f2:130d6f18fe2:-7d8f" interfaceFunctionName="Resistor" ordering="5" parent="331568f2:130d6f18fe2:-7db5" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="23"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="23.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="23.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="290.0" y="260.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="331568f2:130d6f18fe2:-7d42" ordering="1" parent="331568f2:130d6f18fe2:-7d8f" style="ImplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;spacingBottom=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="331568f2:130d6f18fe2:-7d43" ordering="1" parent="331568f2:130d6f18fe2:-7d8f" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;spacingTop=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock angle="90" dependsOnU="1" id="331568f2:130d6f18fe2:-7d8c" interfaceFunctionName="Resistor" ordering="6" parent="331568f2:130d6f18fe2:-7db5" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="47"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="47.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="47.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="100.0" y="170.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="331568f2:130d6f18fe2:-7d3a" ordering="1" parent="331568f2:130d6f18fe2:-7d8c" style="ImplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;spacingBottom=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="331568f2:130d6f18fe2:-7d3b" ordering="1" parent="331568f2:130d6f18fe2:-7d8c" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;spacingTop=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock angle="90" dependsOnU="1" id="331568f2:130d6f18fe2:-7d77" interfaceFunctionName="CurrentSensor" ordering="7" parent="331568f2:130d6f18fe2:-7db5" simulationFunctionName="CurrentSensor" simulationFunctionType="DEFAULT" style="CurrentSensor;rotation=90;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CurrentSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="i"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="300.0" y="162.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="331568f2:130d6f18fe2:-7d76" ordering="1" parent="331568f2:130d6f18fe2:-7d77" style="ImplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;rotation=90;spacingBottom=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="6.0" y="40.0"/></ImplicitOutputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="331568f2:130d6f18fe2:-7d75" ordering="2" parent="331568f2:130d6f18fe2:-7d77" style="ExplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;rotation=90;spacingBottom=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="26.0" y="40.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="331568f2:130d6f18fe2:-7d74" ordering="1" parent="331568f2:130d6f18fe2:-7d77" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=90;spacingTop=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitLink id="331568f2:130d6f18fe2:-7d72" parent="331568f2:130d6f18fe2:-7db5" source="331568f2:130d6f18fe2:-7d36" target="331568f2:130d6f18fe2:-7d74"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="234.0" y="130.0"/><mxPoint as="targetPoint" x="320.0" y="160.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="320.0" y="130.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="331568f2:130d6f18fe2:-7d71" parent="331568f2:130d6f18fe2:-7db5" source="331568f2:130d6f18fe2:-7d76" target="331568f2:130d6f18fe2:-7d43"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="310.0" y="206.0"/><mxPoint as="targetPoint" x="310.0" y="260.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="310.0" y="260.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="331568f2:130d6f18fe2:-7d6f" parent="331568f2:130d6f18fe2:-7db5" source="331568f2:130d6f18fe2:-7d3a" target="331568f2:130d6f18fe2:-7d3f"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="120.0" y="266.0"/><mxPoint as="targetPoint" x="120.0" y="210.0"/></mxGeometry></ImplicitLink><SplitBlock id="331568f2:130d6f18fe2:-7d6d" ordering="8" parent="331568f2:130d6f18fe2:-7db5" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="117.0" y="127.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="331568f2:130d6f18fe2:-7d6c" ordering="1" parent="331568f2:130d6f18fe2:-7d6d" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="331568f2:130d6f18fe2:-7d6b" ordering="1" parent="331568f2:130d6f18fe2:-7d6d" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="331568f2:130d6f18fe2:-7d6a" ordering="2" parent="331568f2:130d6f18fe2:-7d6d" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="331568f2:130d6f18fe2:-7d69" parent="331568f2:130d6f18fe2:-7db5" source="331568f2:130d6f18fe2:-7d33" target="331568f2:130d6f18fe2:-7d6c"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="40.0" y="130.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="331568f2:130d6f18fe2:-7d68" parent="331568f2:130d6f18fe2:-7db5" source="331568f2:130d6f18fe2:-7d6b" target="331568f2:130d6f18fe2:-7d37"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="190.0" y="130.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="331568f2:130d6f18fe2:-7d6e" parent="331568f2:130d6f18fe2:-7db5" source="331568f2:130d6f18fe2:-7d6a" target="331568f2:130d6f18fe2:-7d3b"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="120.0" y="166.0"/><mxPoint as="targetPoint" x="120.0" y="130.0"/></mxGeometry></ImplicitLink><SplitBlock id="331568f2:130d6f18fe2:-7d66" ordering="9" parent="331568f2:130d6f18fe2:-7db5" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="117.0" y="347.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="331568f2:130d6f18fe2:-7d65" ordering="1" parent="331568f2:130d6f18fe2:-7d66" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="331568f2:130d6f18fe2:-7d64" ordering="1" parent="331568f2:130d6f18fe2:-7d66" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="331568f2:130d6f18fe2:-7d63" ordering="2" parent="331568f2:130d6f18fe2:-7d66" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="331568f2:130d6f18fe2:-7d62" parent="331568f2:130d6f18fe2:-7db5" source="331568f2:130d6f18fe2:-7d32" target="331568f2:130d6f18fe2:-7d65"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="40.0" y="350.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="331568f2:130d6f18fe2:-7d67" parent="331568f2:130d6f18fe2:-7db5" source="331568f2:130d6f18fe2:-7d3e" target="331568f2:130d6f18fe2:-7d63"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="120.0" y="314.0"/><mxPoint as="targetPoint" x="120.0" y="350.0"/></mxGeometry></ImplicitLink><SplitBlock id="331568f2:130d6f18fe2:-7d5d" ordering="10" parent="331568f2:130d6f18fe2:-7db5" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="197.0" y="347.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="331568f2:130d6f18fe2:-7d5c" ordering="1" parent="331568f2:130d6f18fe2:-7d5d" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="331568f2:130d6f18fe2:-7d5b" ordering="1" parent="331568f2:130d6f18fe2:-7d5d" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="331568f2:130d6f18fe2:-7d5a" ordering="2" parent="331568f2:130d6f18fe2:-7d5d" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="331568f2:130d6f18fe2:-7d59" parent="331568f2:130d6f18fe2:-7db5" source="331568f2:130d6f18fe2:-7d42" target="331568f2:130d6f18fe2:-7d5c"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="310.0" y="350.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="331568f2:130d6f18fe2:-7d58" parent="331568f2:130d6f18fe2:-7db5" source="331568f2:130d6f18fe2:-7d64" target="331568f2:130d6f18fe2:-7d5b"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="331568f2:130d6f18fe2:-7d5e" parent="331568f2:130d6f18fe2:-7db5" source="331568f2:130d6f18fe2:-7d5a" target="331568f2:130d6f18fe2:-7da3"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="200.0" y="406.0"/><mxPoint as="targetPoint" x="200.0" y="350.0"/></mxGeometry></ImplicitLink><BasicBlock blockType="d" id="331568f2:130d6f18fe2:-7d13" interfaceFunctionName="CONST_m" ordering="11" parent="331568f2:130d6f18fe2:-7db5" simulationFunctionName="cstblk4" simulationFunctionType="C_OR_FORTRAN" style="CONST_m;flip=false;mirror=false" value="20"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="20"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="20.0"/></ScilabDouble></Array><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="50.0" width="40.0" x="620.0" y="290.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="331568f2:130d6f18fe2:-7bc2" ordering="1" parent="331568f2:130d6f18fe2:-7d13" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><BasicBlock angle="270" dependsOnT="1" id="331568f2:130d6f18fe2:-7d1c" interfaceFunctionName="CCS" ordering="12" parent="331568f2:130d6f18fe2:-7db5" simulationFunctionName="CCS" simulationFunctionType="DEFAULT" style="CCS;rotation=270;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CCS"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="Iin"/><data column="0" line="1" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="660.0" y="210.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="331568f2:130d6f18fe2:-7d1b" ordering="1" parent="331568f2:130d6f18fe2:-7d1c" style="ImplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=270;spacingTop=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitOutputPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="331568f2:130d6f18fe2:-7d1a" ordering="1" parent="331568f2:130d6f18fe2:-7d1c" style="ExplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=top;rotation=270;spacingBottom=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="6.0" y="40.0"/></ExplicitInputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="331568f2:130d6f18fe2:-7d19" ordering="2" parent="331568f2:130d6f18fe2:-7d1c" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=top;rotation=270;spacingBottom=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="26.0" y="40.0"/></ImplicitInputPort><GroundBlock angle="90" dependsOnU="1" id="331568f2:130d6f18fe2:-7c45" interfaceFunctionName="Ground" ordering="13" parent="331568f2:130d6f18fe2:-7db5" simulationFunctionName="Ground" simulationFunctionType="DEFAULT" style="Ground;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Ground"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="610.0" y="410.0"/></GroundBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="331568f2:130d6f18fe2:-7c44" ordering="1" parent="331568f2:130d6f18fe2:-7c45" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=90;spacingTop=5;flip=false;mirror=false"><Orientation as="orientation" value="NORTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="331568f2:130d6f18fe2:-7c43" interfaceFunctionName="Resistor" ordering="14" parent="331568f2:130d6f18fe2:-7db5" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="4"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="600.0" y="110.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="331568f2:130d6f18fe2:-7c42" ordering="1" parent="331568f2:130d6f18fe2:-7c43" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="331568f2:130d6f18fe2:-7c41" ordering="1" parent="331568f2:130d6f18fe2:-7c43" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><BasicBlock angle="90" dependsOnU="1" id="331568f2:130d6f18fe2:-7c40" interfaceFunctionName="Resistor" ordering="15" parent="331568f2:130d6f18fe2:-7db5" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="27"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="27.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="27.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="450.0" y="222.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="331568f2:130d6f18fe2:-7c3f" ordering="1" parent="331568f2:130d6f18fe2:-7c40" style="ImplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;spacingBottom=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="331568f2:130d6f18fe2:-7c3e" ordering="1" parent="331568f2:130d6f18fe2:-7c40" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;spacingTop=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock angle="90" dependsOnU="1" id="331568f2:130d6f18fe2:-7c3d" interfaceFunctionName="Resistor" ordering="16" parent="331568f2:130d6f18fe2:-7db5" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="23"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="23.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="23.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="720.0" y="260.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="331568f2:130d6f18fe2:-7c3c" ordering="1" parent="331568f2:130d6f18fe2:-7c3d" style="ImplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;spacingBottom=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="331568f2:130d6f18fe2:-7c3b" ordering="1" parent="331568f2:130d6f18fe2:-7c3d" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;spacingTop=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock angle="90" dependsOnU="1" id="331568f2:130d6f18fe2:-7c3a" interfaceFunctionName="Resistor" ordering="17" parent="331568f2:130d6f18fe2:-7db5" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="47"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="47.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="47.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="530.0" y="220.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="331568f2:130d6f18fe2:-7c39" ordering="1" parent="331568f2:130d6f18fe2:-7c3a" style="ImplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;spacingBottom=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="331568f2:130d6f18fe2:-7c38" ordering="1" parent="331568f2:130d6f18fe2:-7c3a" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;spacingTop=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock angle="90" dependsOnU="1" id="331568f2:130d6f18fe2:-7c37" interfaceFunctionName="CurrentSensor" ordering="18" parent="331568f2:130d6f18fe2:-7db5" simulationFunctionName="CurrentSensor" simulationFunctionType="DEFAULT" style="CurrentSensor;rotation=90;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CurrentSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="i"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="730.0" y="162.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="331568f2:130d6f18fe2:-7c36" ordering="1" parent="331568f2:130d6f18fe2:-7c37" style="ImplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;rotation=90;spacingBottom=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="6.0" y="40.0"/></ImplicitOutputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="331568f2:130d6f18fe2:-7c35" ordering="2" parent="331568f2:130d6f18fe2:-7c37" style="ExplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;rotation=90;spacingBottom=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="26.0" y="40.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="331568f2:130d6f18fe2:-7c34" ordering="1" parent="331568f2:130d6f18fe2:-7c37" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=90;spacingTop=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitLink id="331568f2:130d6f18fe2:-7c32" parent="331568f2:130d6f18fe2:-7db5" source="331568f2:130d6f18fe2:-7c36" target="331568f2:130d6f18fe2:-7c3b"><mxGeometry as="geometry" x="430.0"><mxPoint as="sourcePoint" x="740.0" y="206.0"/><mxPoint as="targetPoint" x="740.0" y="260.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="740.0" y="260.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="331568f2:130d6f18fe2:-7c30" ordering="19" parent="331568f2:130d6f18fe2:-7db5" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="546.5" y="126.5"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="331568f2:130d6f18fe2:-7c2f" ordering="1" parent="331568f2:130d6f18fe2:-7c30" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="331568f2:130d6f18fe2:-7c2e" ordering="1" parent="331568f2:130d6f18fe2:-7c30" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="331568f2:130d6f18fe2:-7c2d" ordering="2" parent="331568f2:130d6f18fe2:-7c30" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="331568f2:130d6f18fe2:-7c2c" parent="331568f2:130d6f18fe2:-7db5" source="331568f2:130d6f18fe2:-7c3e" target="331568f2:130d6f18fe2:-7c2f"><mxGeometry as="geometry" height="80.0" width="80.0" x="430.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="470.0" y="130.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="331568f2:130d6f18fe2:-7c2b" parent="331568f2:130d6f18fe2:-7db5" source="331568f2:130d6f18fe2:-7c2e" target="331568f2:130d6f18fe2:-7c41"><mxGeometry as="geometry" height="80.0" width="80.0" x="430.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="620.0" y="130.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="331568f2:130d6f18fe2:-7c2a" parent="331568f2:130d6f18fe2:-7db5" source="331568f2:130d6f18fe2:-7c2d" target="331568f2:130d6f18fe2:-7c38"><mxGeometry as="geometry" x="430.0"><mxPoint as="sourcePoint" x="550.0" y="166.0"/><mxPoint as="targetPoint" x="550.0" y="130.0"/></mxGeometry></ImplicitLink><SplitBlock id="331568f2:130d6f18fe2:-7c23" ordering="20" parent="331568f2:130d6f18fe2:-7db5" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="626.5" y="346.5"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="331568f2:130d6f18fe2:-7c22" ordering="1" parent="331568f2:130d6f18fe2:-7c23" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="331568f2:130d6f18fe2:-7c21" ordering="1" parent="331568f2:130d6f18fe2:-7c23" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="331568f2:130d6f18fe2:-7c20" ordering="2" parent="331568f2:130d6f18fe2:-7c23" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="331568f2:130d6f18fe2:-7c1d" parent="331568f2:130d6f18fe2:-7db5" source="331568f2:130d6f18fe2:-7c20" target="331568f2:130d6f18fe2:-7c44"><mxGeometry as="geometry" x="430.0"><mxPoint as="sourcePoint" x="630.0" y="406.0"/><mxPoint as="targetPoint" x="630.0" y="350.0"/></mxGeometry></ImplicitLink><BasicBlock dependsOnU="1" id="331568f2:130d6f18fe2:-7c1c" interfaceFunctionName="CSCOPE" ordering="21" parent="331568f2:130d6f18fe2:-7db5" simulationFunctionName="cscope" simulationFunctionType="C_OR_FORTRAN" style="CSCOPE;flip=false;mirror=false"><ScilabString as="exprs" height="10" width="1"><data column="0" line="0" value="1 3 5 7 9 11 13 15"/><data column="0" line="1" value="-1"/><data column="0" line="2" value="[]"/><data column="0" line="3" value="[600;400]"/><data column="0" line="4" value="11"/><data column="0" line="5" value="11.5"/><data column="0" line="6" value="30"/><data column="0" line="7" value="20"/><data column="0" line="8" value="0"/><data column="0" line="9" value=""/></ScilabString><ScilabDouble as="realParameters" height="4" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="11.0"/><data column="0" line="2" realPart="11.5"/><data column="0" line="3" realPart="30.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="15" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="1.0"/><data column="0" line="4" realPart="3.0"/><data column="0" line="5" realPart="5.0"/><data column="0" line="6" realPart="7.0"/><data column="0" line="7" realPart="9.0"/><data column="0" line="8" realPart="11.0"/><data column="0" line="9" realPart="13.0"/><data column="0" line="10" realPart="15.0"/><data column="0" line="11" realPart="-1.0"/><data column="0" line="12" realPart="-1.0"/><data column="0" line="13" realPart="600.0"/><data column="0" line="14" realPart="400.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="880.0" y="70.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="331568f2:130d6f18fe2:-7b8b" ordering="1" parent="331568f2:130d6f18fe2:-7c1c" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ControlPort dataType="UNKNOW_TYPE" id="331568f2:130d6f18fe2:-7b8a" ordering="1" parent="331568f2:130d6f18fe2:-7c1c" style="ControlPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=90;spacingTop=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><BasicBlock blockType="h" id="331568f2:130d6f18fe2:-7c19" interfaceFunctionName="CLOCK_c" ordering="22" parent="331568f2:130d6f18fe2:-7db5" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="99.0"/><data column="1" line="0" realPart="-160.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-6828d40b:166e7805a21:-7d74"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-6828d40b:166e7805a21:-7d74"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-70.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.1"/><data column="0" line="1" value="0.001"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.1"/><data column="0" line="1" realPart="0.001"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.001"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-6828d40b:166e7805a21:-7d72"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-6828d40b:166e7805a21:-7d72"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="90.3773266666667"/><data column="1" line="0" realPart="-166.33333333333331"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="7.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="5.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-6828d40b:166e7805a21:-7d6f"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-6828d40b:166e7805a21:-7d6f"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="60.0"/><data column="0" line="2" realPart="97.54399333333338"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-74.0"/><data column="0" line="1" realPart="-170.0"/><data column="0" line="2" realPart="-155.33333333333331"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="97.48843777777782"/><data column="0" line="1" realPart="129.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-163.66666666666666"/><data column="0" line="1" realPart="-136.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="97.59954888888893"/><data column="0" line="1" realPart="100.70999999999998"/><data column="0" line="2" realPart="60.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-163.66666666666666"/><data column="0" line="1" realPart="-40.0"/><data column="0" line="2" realPart="-40.0"/><data column="0" line="3" realPart="-26.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="880.0" y="10.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="331568f2:130d6f18fe2:-7c18" ordering="1" parent="331568f2:130d6f18fe2:-7c19" style="CommandPort;align=center;labelPosition=center;verticalLabelPosition=top;rotation=90;spacingBottom=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><CommandControlLink id="331568f2:130d6f18fe2:-7c17" parent="331568f2:130d6f18fe2:-7db5" source="331568f2:130d6f18fe2:-7c18" target="331568f2:130d6f18fe2:-7b8a"><mxGeometry as="geometry" x="520.0" y="-162.0"><mxPoint as="sourcePoint" x="900.0" y="34.0"/><mxPoint as="targetPoint" x="900.0" y="68.0"/></mxGeometry></CommandControlLink><SplitBlock id="331568f2:130d6f18fe2:-7be0" ordering="23" parent="331568f2:130d6f18fe2:-7db5" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="547.0" y="347.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="331568f2:130d6f18fe2:-7bdf" ordering="1" parent="331568f2:130d6f18fe2:-7be0" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="331568f2:130d6f18fe2:-7bde" ordering="1" parent="331568f2:130d6f18fe2:-7be0" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="331568f2:130d6f18fe2:-7bdd" ordering="2" parent="331568f2:130d6f18fe2:-7be0" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="331568f2:130d6f18fe2:-7bdc" parent="331568f2:130d6f18fe2:-7db5" source="331568f2:130d6f18fe2:-7c21" target="331568f2:130d6f18fe2:-7bdf"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="331568f2:130d6f18fe2:-7bdb" parent="331568f2:130d6f18fe2:-7db5" source="331568f2:130d6f18fe2:-7c3f" target="331568f2:130d6f18fe2:-7bde"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="470.0" y="350.0"/><mxPoint x="550.0" y="350.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="331568f2:130d6f18fe2:-7be1" parent="331568f2:130d6f18fe2:-7db5" source="331568f2:130d6f18fe2:-7c39" target="331568f2:130d6f18fe2:-7bdd"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="550.0" y="214.0"/><mxPoint as="targetPoint" x="550.0" y="350.0"/></mxGeometry></ImplicitLink><SplitBlock id="331568f2:130d6f18fe2:-7bd3" ordering="24" parent="331568f2:130d6f18fe2:-7db5" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="677.0" y="127.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="331568f2:130d6f18fe2:-7bd2" ordering="1" parent="331568f2:130d6f18fe2:-7bd3" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="331568f2:130d6f18fe2:-7bd1" ordering="1" parent="331568f2:130d6f18fe2:-7bd3" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="331568f2:130d6f18fe2:-7bd0" ordering="2" parent="331568f2:130d6f18fe2:-7bd3" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="331568f2:130d6f18fe2:-7bcf" parent="331568f2:130d6f18fe2:-7db5" source="331568f2:130d6f18fe2:-7c42" target="331568f2:130d6f18fe2:-7bd2"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="331568f2:130d6f18fe2:-7bce" parent="331568f2:130d6f18fe2:-7db5" source="331568f2:130d6f18fe2:-7bd1" target="331568f2:130d6f18fe2:-7c34"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="750.0" y="130.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="331568f2:130d6f18fe2:-7bd4" parent="331568f2:130d6f18fe2:-7db5" source="331568f2:130d6f18fe2:-7d1b" target="331568f2:130d6f18fe2:-7bd0"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="680.0" y="206.0"/><mxPoint as="targetPoint" x="680.0" y="130.0"/></mxGeometry></ImplicitLink><SplitBlock id="331568f2:130d6f18fe2:-7bcc" ordering="25" parent="331568f2:130d6f18fe2:-7db5" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="687.0" y="347.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="331568f2:130d6f18fe2:-7bcb" ordering="1" parent="331568f2:130d6f18fe2:-7bcc" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="331568f2:130d6f18fe2:-7bca" ordering="1" parent="331568f2:130d6f18fe2:-7bcc" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="331568f2:130d6f18fe2:-7bc9" ordering="2" parent="331568f2:130d6f18fe2:-7bcc" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="331568f2:130d6f18fe2:-7bc8" parent="331568f2:130d6f18fe2:-7db5" source="331568f2:130d6f18fe2:-7c3c" target="331568f2:130d6f18fe2:-7bcb"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="740.0" y="350.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="331568f2:130d6f18fe2:-7bc7" parent="331568f2:130d6f18fe2:-7db5" source="331568f2:130d6f18fe2:-7bca" target="331568f2:130d6f18fe2:-7c22"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="331568f2:130d6f18fe2:-7bcd" parent="331568f2:130d6f18fe2:-7db5" source="331568f2:130d6f18fe2:-7bc9" target="331568f2:130d6f18fe2:-7d19"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="690.0" y="254.0"/><mxPoint as="targetPoint" x="690.0" y="350.0"/></mxGeometry></ImplicitLink><ExplicitLink id="331568f2:130d6f18fe2:-7bc4" parent="331568f2:130d6f18fe2:-7db5" source="331568f2:130d6f18fe2:-7bc2" target="331568f2:130d6f18fe2:-7d1a"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="664.0" y="310.0"/><mxPoint as="targetPoint" x="670.0" y="260.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="670.0" y="310.0"/></Array></mxGeometry></ExplicitLink><BigSom dependsOnU="1" id="331568f2:130d6f18fe2:-7baf" interfaceFunctionName="BIGSOM_f" ordering="26" parent="331568f2:130d6f18fe2:-7db5" simulationFunctionName="sum" simulationFunctionType="TYPE_2" style="BIGSOM_f;flip=false;mirror=false" value="+"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="[1;1]"/></ScilabString><ScilabDouble as="realParameters" height="2" width="1"><data column="0" line="0" realPart="1.0"/><data column="0" line="1" realPart="1.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="800.0" y="70.0"/></BigSom><ExplicitOutputPort dataColumns="1" dataType="REAL_MATRIX" id="331568f2:130d6f18fe2:-7bae" ordering="1" parent="331568f2:130d6f18fe2:-7baf" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="331568f2:130d6f18fe2:-7bad" ordering="1" parent="331568f2:130d6f18fe2:-7baf" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ExplicitInputPort><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="331568f2:130d6f18fe2:-7bac" ordering="2" parent="331568f2:130d6f18fe2:-7baf" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="26.0"/></ExplicitInputPort><ExplicitLink id="331568f2:130d6f18fe2:-7b9d" parent="331568f2:130d6f18fe2:-7db5" source="331568f2:130d6f18fe2:-7d75" target="331568f2:130d6f18fe2:-7bad"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="330.0" y="206.0"/><mxPoint as="targetPoint" x="800.0" y="80.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="330.0" y="230.0"/><mxPoint x="380.0" y="230.0"/><mxPoint x="380.0" y="80.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="331568f2:130d6f18fe2:-7b9c" parent="331568f2:130d6f18fe2:-7db5" source="331568f2:130d6f18fe2:-7c35" target="331568f2:130d6f18fe2:-7bac"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="760.0" y="206.0"/><mxPoint as="targetPoint" x="790.0" y="100.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="760.0" y="220.0"/><mxPoint x="780.0" y="220.0"/><mxPoint x="780.0" y="100.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="331568f2:130d6f18fe2:-7b95" parent="331568f2:130d6f18fe2:-7db5" source="331568f2:130d6f18fe2:-7bae" target="331568f2:130d6f18fe2:-7b8b"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="844.0" y="90.0"/><mxPoint as="targetPoint" x="880.0" y="90.0"/></mxGeometry></ExplicitLink></root></mxGraphModel><mxCell as="defaultParent" id="331568f2:130d6f18fe2:-7db5" parent="331568f2:130d6f18fe2:-7db4"/></XcosDiagram>
\ No newline at end of file diff --git a/Working_Examples/154/CH5/EX5.7/ch5_71.jpeg b/Working_Examples/154/CH5/EX5.7/ch5_71.jpeg Binary files differnew file mode 100755 index 0000000..2aafbfb --- /dev/null +++ b/Working_Examples/154/CH5/EX5.7/ch5_71.jpeg diff --git a/Working_Examples/154/CH5/EX5.7/chap5_7.jpeg b/Working_Examples/154/CH5/EX5.7/chap5_7.jpeg Binary files differnew file mode 100755 index 0000000..3f1546b --- /dev/null +++ b/Working_Examples/154/CH5/EX5.7/chap5_7.jpeg diff --git a/Working_Examples/154/CH5/EX5.8/ch5_8.sce b/Working_Examples/154/CH5/EX5.8/ch5_8.sce new file mode 100755 index 0000000..4c4e229 --- /dev/null +++ b/Working_Examples/154/CH5/EX5.8/ch5_8.sce @@ -0,0 +1,19 @@ +clc
+//From figure 5.13(a)
+//Applying KVL equation to the loop
+I=(20+10)/(3+6)
+//As current will not flow in upper 3 ohm resistor so Thevenin voltage is equal to either of the two parallel branches
+V1=20-I*3
+printf("Thevenin voltage = %dV\n",V1)
+
+// Left 3 ohm and 6 ohm resistor are in parallel and their equivalent is in series with 3 ohm
+R1=3+(3*6)/(3+6)
+printf("Thevenin resistance =%dohm\n",R1)
+
+//Now to find Norton's equivalent
+I1=V1/R1
+printf("\n Norton current =%dA\n",I1)
+disp("The value of resistance in Norton equivalent will not change but will come in parallel with current source")
+
+
+
diff --git a/Working_Examples/154/CH6/EX6.10/ch6_10.sce b/Working_Examples/154/CH6/EX6.10/ch6_10.sce new file mode 100755 index 0000000..663bdca --- /dev/null +++ b/Working_Examples/154/CH6/EX6.10/ch6_10.sce @@ -0,0 +1,20 @@ +clc +printf("Given") +disp("R1=1 ohm;R2=1/2 ohm;R3=1/4 ohm;R4=1/8 ohm") +disp("Rf=1 ohm") +//From figure 6.14 +//THe output of summing circuit can be written as +disp("v0=-((Rf/R1)*v1+(Rf/R2)*v2+(Rf/R3)*v3+......") +//From above equation +disp("v0=-(8v4+4v3+2v2+v1)-----------(1)") +disp("a)") +v1=1;v2=0;v3=0;v4=1; +//Substituting in equation (1) +v0=-(8*v4+4*v3+2*v2+v1) +printf("v0=%dV\n",v0); + +disp("b)") +v1=0;v2=1;v3=1;v4=1; +//Substituting in equation (1) +v0=-(8*v4+4*v3+2*v2+v1) +printf("v0=%dV\n",v0); diff --git a/Working_Examples/154/CH6/EX6.11/ch6_11.xcos b/Working_Examples/154/CH6/EX6.11/ch6_11.xcos new file mode 100644 index 0000000..a391140 --- /dev/null +++ b/Working_Examples/154/CH6/EX6.11/ch6_11.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" finalIntegrationTime="10.0" title="ch611"><!--Xcos - 1.0 - scilab-5.5.2 - 20160406 2040--><mxGraphModel as="model"><root><mxCell id="-55de3cf2:130fe0d1e6e:-7e32"/><mxCell id="-55de3cf2:130fe0d1e6e:-7e33" parent="-55de3cf2:130fe0d1e6e:-7e32"/><BasicBlock dependsOnU="1" id="-55de3cf2:130fe0d1e6e:-7e28" interfaceFunctionName="OpAmp" ordering="1" parent="-55de3cf2:130fe0d1e6e:-7e33" simulationFunctionName="OpAmp" simulationFunctionType="DEFAULT" style="OpAmp;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="OpAmp"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="in_p"/><data column="0" line="1" value="in_n"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="out"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/></Array></Array><mxGeometry as="geometry" height="80.0" width="50.0" x="310.0" y="150.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-55de3cf2:130fe0d1e6e:-7e27" ordering="1" parent="-55de3cf2:130fe0d1e6e:-7e28" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="50.0" y="36.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-55de3cf2:130fe0d1e6e:-7e26" ordering="1" parent="-55de3cf2:130fe0d1e6e:-7e28" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-55de3cf2:130fe0d1e6e:-7e25" ordering="2" parent="-55de3cf2:130fe0d1e6e:-7e28" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="56.0"/></ImplicitInputPort><GroundBlock dependsOnU="1" id="-55de3cf2:130fe0d1e6e:-7e1f" interfaceFunctionName="Ground" ordering="2" parent="-55de3cf2:130fe0d1e6e:-7e33" simulationFunctionName="Ground" simulationFunctionType="DEFAULT" style="Ground;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Ground"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="180.0" y="380.0"/></GroundBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-55de3cf2:130fe0d1e6e:-7e1e" ordering="1" parent="-55de3cf2:130fe0d1e6e:-7e1f" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><Orientation as="orientation" value="NORTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock angle="90" id="-55de3cf2:130fe0d1e6e:-7e16" interfaceFunctionName="ConstantVoltage" ordering="3" parent="-55de3cf2:130fe0d1e6e:-7e33" simulationFunctionName="ConstantVoltage" simulationFunctionType="DEFAULT" style="ConstantVoltage;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ConstantVoltage"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="V"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="70.0" y="220.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-55de3cf2:130fe0d1e6e:-7d8e" ordering="1" parent="-55de3cf2:130fe0d1e6e:-7e16" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-55de3cf2:130fe0d1e6e:-7d8f" ordering="1" parent="-55de3cf2:130fe0d1e6e:-7e16" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="-55de3cf2:130fe0d1e6e:-7e09" interfaceFunctionName="Resistor" ordering="4" parent="-55de3cf2:130fe0d1e6e:-7e33" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="10000"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="10000.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="10000.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="120.0" y="150.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-55de3cf2:130fe0d1e6e:-7d8a" ordering="1" parent="-55de3cf2:130fe0d1e6e:-7e09" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-55de3cf2:130fe0d1e6e:-7d8b" ordering="1" parent="-55de3cf2:130fe0d1e6e:-7e09" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><BasicBlock angle="90" dependsOnU="1" id="-55de3cf2:130fe0d1e6e:-7e03" interfaceFunctionName="Resistor" ordering="5" parent="-55de3cf2:130fe0d1e6e:-7e33" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="5000"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="5000.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5000.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="180.0" y="220.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-55de3cf2:130fe0d1e6e:-7d86" ordering="1" parent="-55de3cf2:130fe0d1e6e:-7e03" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-55de3cf2:130fe0d1e6e:-7d87" ordering="1" parent="-55de3cf2:130fe0d1e6e:-7e03" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="-55de3cf2:130fe0d1e6e:-7dfd" interfaceFunctionName="Resistor" ordering="6" parent="-55de3cf2:130fe0d1e6e:-7e33" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="7000"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="7000.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="7000.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="310.0" y="260.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-55de3cf2:130fe0d1e6e:-7d7e" ordering="1" parent="-55de3cf2:130fe0d1e6e:-7dfd" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-55de3cf2:130fe0d1e6e:-7d7f" ordering="1" parent="-55de3cf2:130fe0d1e6e:-7dfd" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><BasicBlock angle="90" dependsOnU="1" id="-55de3cf2:130fe0d1e6e:-7dfa" interfaceFunctionName="Resistor" ordering="7" parent="-55de3cf2:130fe0d1e6e:-7e33" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="2000"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="2000.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="2000.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="240.0" y="300.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-55de3cf2:130fe0d1e6e:-7d82" ordering="1" parent="-55de3cf2:130fe0d1e6e:-7dfa" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-55de3cf2:130fe0d1e6e:-7d83" ordering="1" parent="-55de3cf2:130fe0d1e6e:-7dfa" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><SplitBlock id="-55de3cf2:130fe0d1e6e:-7dd9" ordering="8" parent="-55de3cf2:130fe0d1e6e:-7e33" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="197.0" y="167.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="-55de3cf2:130fe0d1e6e:-7dd8" ordering="1" parent="-55de3cf2:130fe0d1e6e:-7dd9" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-55de3cf2:130fe0d1e6e:-7dd7" ordering="1" parent="-55de3cf2:130fe0d1e6e:-7dd9" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-55de3cf2:130fe0d1e6e:-7dd6" ordering="2" parent="-55de3cf2:130fe0d1e6e:-7dd9" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitLink id="-55de3cf2:130fe0d1e6e:-7dd5" parent="-55de3cf2:130fe0d1e6e:-7e33" source="-55de3cf2:130fe0d1e6e:-7d8a" target="-55de3cf2:130fe0d1e6e:-7dd8"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-55de3cf2:130fe0d1e6e:-7dd4" parent="-55de3cf2:130fe0d1e6e:-7e33" source="-55de3cf2:130fe0d1e6e:-7dd7" target="-55de3cf2:130fe0d1e6e:-7e26"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-55de3cf2:130fe0d1e6e:-7dda" parent="-55de3cf2:130fe0d1e6e:-7e33" source="-55de3cf2:130fe0d1e6e:-7dd6" target="-55de3cf2:130fe0d1e6e:-7d87"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="200.0" y="216.0"/><mxPoint as="targetPoint" x="200.0" y="170.0"/></mxGeometry></ImplicitLink><SplitBlock id="-55de3cf2:130fe0d1e6e:-7dcd" ordering="9" parent="-55de3cf2:130fe0d1e6e:-7e33" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="197.0" y="317.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="-55de3cf2:130fe0d1e6e:-7dcc" ordering="1" parent="-55de3cf2:130fe0d1e6e:-7dcd" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-55de3cf2:130fe0d1e6e:-7dcb" ordering="1" parent="-55de3cf2:130fe0d1e6e:-7dcd" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-55de3cf2:130fe0d1e6e:-7dca" ordering="2" parent="-55de3cf2:130fe0d1e6e:-7dcd" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitLink id="-55de3cf2:130fe0d1e6e:-7dc9" parent="-55de3cf2:130fe0d1e6e:-7e33" source="-55de3cf2:130fe0d1e6e:-7d86" target="-55de3cf2:130fe0d1e6e:-7dcc"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-55de3cf2:130fe0d1e6e:-7dce" parent="-55de3cf2:130fe0d1e6e:-7e33" source="-55de3cf2:130fe0d1e6e:-7d8e" target="-55de3cf2:130fe0d1e6e:-7dca"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="90.0" y="264.0"/><mxPoint as="targetPoint" x="200.0" y="320.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="90.0" y="320.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="-55de3cf2:130fe0d1e6e:-7dc1" ordering="10" parent="-55de3cf2:130fe0d1e6e:-7e33" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="257.0" y="277.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="-55de3cf2:130fe0d1e6e:-7dc0" ordering="1" parent="-55de3cf2:130fe0d1e6e:-7dc1" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-55de3cf2:130fe0d1e6e:-7dbf" ordering="1" parent="-55de3cf2:130fe0d1e6e:-7dc1" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-55de3cf2:130fe0d1e6e:-7dbe" ordering="2" parent="-55de3cf2:130fe0d1e6e:-7dc1" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitLink id="-55de3cf2:130fe0d1e6e:-7dbd" parent="-55de3cf2:130fe0d1e6e:-7e33" source="-55de3cf2:130fe0d1e6e:-7d7f" target="-55de3cf2:130fe0d1e6e:-7dc0"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-55de3cf2:130fe0d1e6e:-7dbc" parent="-55de3cf2:130fe0d1e6e:-7e33" source="-55de3cf2:130fe0d1e6e:-7dbf" target="-55de3cf2:130fe0d1e6e:-7e25"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="260.0" y="210.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-55de3cf2:130fe0d1e6e:-7dc2" parent="-55de3cf2:130fe0d1e6e:-7e33" source="-55de3cf2:130fe0d1e6e:-7dbe" target="-55de3cf2:130fe0d1e6e:-7d83"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="260.0" y="296.0"/><mxPoint as="targetPoint" x="260.0" y="280.0"/></mxGeometry></ImplicitLink><SplitBlock id="-55de3cf2:130fe0d1e6e:-7dba" ordering="11" parent="-55de3cf2:130fe0d1e6e:-7e33" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="197.0" y="357.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="-55de3cf2:130fe0d1e6e:-7db9" ordering="1" parent="-55de3cf2:130fe0d1e6e:-7dba" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-55de3cf2:130fe0d1e6e:-7db8" ordering="1" parent="-55de3cf2:130fe0d1e6e:-7dba" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-55de3cf2:130fe0d1e6e:-7db7" ordering="2" parent="-55de3cf2:130fe0d1e6e:-7dba" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitLink id="-55de3cf2:130fe0d1e6e:-7db6" parent="-55de3cf2:130fe0d1e6e:-7e33" source="-55de3cf2:130fe0d1e6e:-7dcb" target="-55de3cf2:130fe0d1e6e:-7db9"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-55de3cf2:130fe0d1e6e:-7db5" parent="-55de3cf2:130fe0d1e6e:-7e33" source="-55de3cf2:130fe0d1e6e:-7db8" target="-55de3cf2:130fe0d1e6e:-7e1e"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-55de3cf2:130fe0d1e6e:-7dbb" parent="-55de3cf2:130fe0d1e6e:-7e33" source="-55de3cf2:130fe0d1e6e:-7d82" target="-55de3cf2:130fe0d1e6e:-7db7"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="260.0" y="344.0"/><mxPoint as="targetPoint" x="200.0" y="360.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="260.0" y="360.0"/></Array></mxGeometry></ImplicitLink><BasicBlock dependsOnU="1" id="-55de3cf2:130fe0d1e6e:-7dad" interfaceFunctionName="PotentialSensor" ordering="12" parent="-55de3cf2:130fe0d1e6e:-7e33" simulationFunctionName="PotentialSensor" simulationFunctionType="DEFAULT" style="PotentialSensor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="PotentialSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="v"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="440.0" y="170.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-55de3cf2:130fe0d1e6e:-7dac" ordering="1" parent="-55de3cf2:130fe0d1e6e:-7dad" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-55de3cf2:130fe0d1e6e:-7dab" ordering="1" parent="-55de3cf2:130fe0d1e6e:-7dad" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><BasicBlock blockType="h" id="-55de3cf2:130fe0d1e6e:-7da5" interfaceFunctionName="CLOCK_c" ordering="13" parent="-55de3cf2:130fe0d1e6e:-7e33" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="119.0"/><data column="1" line="0" realPart="-150.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-6828d40b:166e7805a21:-7d12"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-6828d40b:166e7805a21:-7d12"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.1"/><data column="0" line="1" value="0.1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.1"/><data column="0" line="1" realPart="0.1"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.1"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-6828d40b:166e7805a21:-7d10"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-6828d40b:166e7805a21:-7d10"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="123.3773266666667"/><data column="1" line="0" realPart="-169.33333333333331"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="7.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="5.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-6828d40b:166e7805a21:-7d0d"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-6828d40b:166e7805a21:-7d0d"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="100.0"/><data column="0" line="2" realPart="133.8773266666667"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-44.0"/><data column="0" line="1" realPart="-180.0"/><data column="0" line="2" realPart="-158.33333333333331"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="132.71066000000005"/><data column="0" line="1" realPart="149.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-173.33333333333331"/><data column="0" line="1" realPart="-126.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="135.04399333333336"/><data column="0" line="1" realPart="140.70999999999998"/><data column="0" line="2" realPart="100.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-173.33333333333331"/><data column="0" line="1" realPart="-50.0"/><data column="0" line="2" realPart="-50.0"/><data column="0" line="3" realPart="4.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="640.0" y="90.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="-55de3cf2:130fe0d1e6e:-7d0f" ordering="1" parent="-55de3cf2:130fe0d1e6e:-7da5" style="CommandPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><BasicBlock dependsOnU="1" id="-55de3cf2:130fe0d1e6e:-7d9c" interfaceFunctionName="CSCOPE" ordering="14" parent="-55de3cf2:130fe0d1e6e:-7e33" simulationFunctionName="cscope" simulationFunctionType="C_OR_FORTRAN" style="CSCOPE;flip=false;mirror=false"><ScilabString as="exprs" height="10" width="1"><data column="0" line="0" value="1 3 5 7 9 11 13 15"/><data column="0" line="1" value="-1"/><data column="0" line="2" value="[]"/><data column="0" line="3" value="[600;400]"/><data column="0" line="4" value="0"/><data column="0" line="5" value="2"/><data column="0" line="6" value="10"/><data column="0" line="7" value="20"/><data column="0" line="8" value="0"/><data column="0" line="9" value=""/></ScilabString><ScilabDouble as="realParameters" height="4" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="0.0"/><data column="0" line="2" realPart="2.0"/><data column="0" line="3" realPart="10.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="15" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="1.0"/><data column="0" line="4" realPart="3.0"/><data column="0" line="5" realPart="5.0"/><data column="0" line="6" realPart="7.0"/><data column="0" line="7" realPart="9.0"/><data column="0" line="8" realPart="11.0"/><data column="0" line="9" realPart="13.0"/><data column="0" line="10" realPart="15.0"/><data column="0" line="11" realPart="-1.0"/><data column="0" line="12" realPart="-1.0"/><data column="0" line="13" realPart="600.0"/><data column="0" line="14" realPart="400.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="640.0" y="180.0"/></BasicBlock><ControlPort dataType="UNKNOW_TYPE" id="-55de3cf2:130fe0d1e6e:-7d12" ordering="1" parent="-55de3cf2:130fe0d1e6e:-7d9c" style="ControlPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="-55de3cf2:130fe0d1e6e:-7d13" ordering="1" parent="-55de3cf2:130fe0d1e6e:-7d9c" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><CommandControlLink id="-55de3cf2:130fe0d1e6e:-7d91" parent="-55de3cf2:130fe0d1e6e:-7e33" source="-55de3cf2:130fe0d1e6e:-7d0f" target="-55de3cf2:130fe0d1e6e:-7d12"><mxGeometry as="geometry" x="100.0" y="10.0"><mxPoint as="sourcePoint" x="660.0" y="134.0"/><mxPoint as="targetPoint" x="660.0" y="180.0"/></mxGeometry></CommandControlLink><BasicBlock angle="90" dependsOnU="1" id="-55de3cf2:130fe0d1e6e:-7d5e" interfaceFunctionName="PotentialSensor" ordering="15" parent="-55de3cf2:130fe0d1e6e:-7e33" simulationFunctionName="PotentialSensor" simulationFunctionType="DEFAULT" style="PotentialSensor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="PotentialSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="v"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="20.0" y="220.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-55de3cf2:130fe0d1e6e:-7d5d" ordering="1" parent="-55de3cf2:130fe0d1e6e:-7d5e" style="ExplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-55de3cf2:130fe0d1e6e:-7d5c" ordering="1" parent="-55de3cf2:130fe0d1e6e:-7d5e" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><SplitBlock id="-55de3cf2:130fe0d1e6e:-7d48" ordering="16" parent="-55de3cf2:130fe0d1e6e:-7e33" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="397.0" y="187.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="-55de3cf2:130fe0d1e6e:-7d47" ordering="1" parent="-55de3cf2:130fe0d1e6e:-7d48" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-55de3cf2:130fe0d1e6e:-7d46" ordering="1" parent="-55de3cf2:130fe0d1e6e:-7d48" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-55de3cf2:130fe0d1e6e:-7d45" ordering="2" parent="-55de3cf2:130fe0d1e6e:-7d48" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitLink id="-55de3cf2:130fe0d1e6e:-7d44" parent="-55de3cf2:130fe0d1e6e:-7e33" source="-55de3cf2:130fe0d1e6e:-7d7e" target="-55de3cf2:130fe0d1e6e:-7d47"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="360.0" y="280.0"/><mxPoint x="400.0" y="280.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-55de3cf2:130fe0d1e6e:-7d43" parent="-55de3cf2:130fe0d1e6e:-7e33" source="-55de3cf2:130fe0d1e6e:-7e27" target="-55de3cf2:130fe0d1e6e:-7d46"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="400.0" y="190.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-55de3cf2:130fe0d1e6e:-7d49" parent="-55de3cf2:130fe0d1e6e:-7e33" source="-55de3cf2:130fe0d1e6e:-7d45" target="-55de3cf2:130fe0d1e6e:-7dab"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="436.0" y="190.0"/><mxPoint as="targetPoint" x="400.0" y="200.0"/></mxGeometry></ImplicitLink><SplitBlock id="-55de3cf2:130fe0d1e6e:-7d3e" ordering="17" parent="-55de3cf2:130fe0d1e6e:-7e33" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="87.0" y="187.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="-55de3cf2:130fe0d1e6e:-7d3d" ordering="1" parent="-55de3cf2:130fe0d1e6e:-7d3e" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-55de3cf2:130fe0d1e6e:-7d3c" ordering="1" parent="-55de3cf2:130fe0d1e6e:-7d3e" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-55de3cf2:130fe0d1e6e:-7d3b" ordering="2" parent="-55de3cf2:130fe0d1e6e:-7d3e" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitLink id="-55de3cf2:130fe0d1e6e:-7d3a" parent="-55de3cf2:130fe0d1e6e:-7e33" source="-55de3cf2:130fe0d1e6e:-7d8f" target="-55de3cf2:130fe0d1e6e:-7d3d"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-55de3cf2:130fe0d1e6e:-7d39" parent="-55de3cf2:130fe0d1e6e:-7e33" source="-55de3cf2:130fe0d1e6e:-7d3c" target="-55de3cf2:130fe0d1e6e:-7d8b"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="90.0" y="170.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-55de3cf2:130fe0d1e6e:-7d3f" parent="-55de3cf2:130fe0d1e6e:-7e33" source="-55de3cf2:130fe0d1e6e:-7d3b" target="-55de3cf2:130fe0d1e6e:-7d5c"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="40.0" y="216.0"/><mxPoint as="targetPoint" x="90.0" y="190.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="40.0" y="190.0"/></Array></mxGeometry></ImplicitLink><BasicBlock dependsOnU="1" id="-55de3cf2:130fe0d1e6e:-7d2c" interfaceFunctionName="MATDIV" ordering="18" parent="-55de3cf2:130fe0d1e6e:-7e33" simulationFunctionName="mat_div" simulationFunctionType="C_OR_FORTRAN" style="MATDIV;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="50.0" width="60.0" x="530.0" y="180.0"/></BasicBlock><ExplicitOutputPort dataType="REAL_MATRIX" id="-55de3cf2:130fe0d1e6e:-7d2b" ordering="1" parent="-55de3cf2:130fe0d1e6e:-7d2c" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="60.0" y="16.0"/></ExplicitOutputPort><ExplicitInputPort dataColumns="-3" dataType="REAL_MATRIX" id="-55de3cf2:130fe0d1e6e:-7d2a" ordering="1" parent="-55de3cf2:130fe0d1e6e:-7d2c" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ExplicitInputPort><ExplicitInputPort dataColumns="-3" dataLines="-2" dataType="REAL_MATRIX" id="-55de3cf2:130fe0d1e6e:-7d29" ordering="2" parent="-55de3cf2:130fe0d1e6e:-7d2c" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="36.0"/></ExplicitInputPort><ExplicitLink id="-55de3cf2:130fe0d1e6e:-7d24" parent="-55de3cf2:130fe0d1e6e:-7e33" source="-55de3cf2:130fe0d1e6e:-7dac" target="-55de3cf2:130fe0d1e6e:-7d2a"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="484.0" y="190.0"/><mxPoint as="targetPoint" x="530.0" y="190.0"/></mxGeometry></ExplicitLink><ExplicitLink id="-55de3cf2:130fe0d1e6e:-7d23" parent="-55de3cf2:130fe0d1e6e:-7e33" source="-55de3cf2:130fe0d1e6e:-7d5d" target="-55de3cf2:130fe0d1e6e:-7d29"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="40.0" y="264.0"/><mxPoint as="targetPoint" x="530.0" y="220.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="40.0" y="290.0"/><mxPoint x="40.0" y="460.0"/><mxPoint x="500.0" y="460.0"/><mxPoint x="500.0" y="220.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="-55de3cf2:130fe0d1e6e:-7d1c" parent="-55de3cf2:130fe0d1e6e:-7e33" source="-55de3cf2:130fe0d1e6e:-7d2b" target="-55de3cf2:130fe0d1e6e:-7d13"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="594.0" y="200.0"/><mxPoint as="targetPoint" x="640.0" y="200.0"/></mxGeometry></ExplicitLink></root></mxGraphModel><mxCell as="defaultParent" id="-55de3cf2:130fe0d1e6e:-7e33" parent="-55de3cf2:130fe0d1e6e:-7e32"/></XcosDiagram>
\ No newline at end of file diff --git a/Working_Examples/154/CH6/EX6.11/ch6_111.jpeg b/Working_Examples/154/CH6/EX6.11/ch6_111.jpeg Binary files differnew file mode 100755 index 0000000..017d2e2 --- /dev/null +++ b/Working_Examples/154/CH6/EX6.11/ch6_111.jpeg diff --git a/Working_Examples/154/CH6/EX6.11/chap6_11.jpeg b/Working_Examples/154/CH6/EX6.11/chap6_11.jpeg Binary files differnew file mode 100755 index 0000000..9fde52a --- /dev/null +++ b/Working_Examples/154/CH6/EX6.11/chap6_11.jpeg diff --git a/Working_Examples/154/CH6/EX6.15/ch6_15.xcos b/Working_Examples/154/CH6/EX6.15/ch6_15.xcos new file mode 100644 index 0000000..1c81c81 --- /dev/null +++ b/Working_Examples/154/CH6/EX6.15/ch6_15.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" finalIntegrationTime="30.0" title="ch6_15"><!--Xcos - 1.0 - scilab-5.5.2 - 20160406 2040--><mxGraphModel as="model"><root><mxCell id="-1e985524:130d9355380:-7fff"/><mxCell id="-1e985524:130d9355380:-8000" parent="-1e985524:130d9355380:-7fff"/><BasicBlock dependsOnU="1" id="-1e985524:130d9355380:-7fdc" interfaceFunctionName="OpAmp" ordering="1" parent="-1e985524:130d9355380:-8000" simulationFunctionName="OpAmp" simulationFunctionType="DEFAULT" style="OpAmp;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="OpAmp"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="in_p"/><data column="0" line="1" value="in_n"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="out"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/></Array></Array><mxGeometry as="geometry" height="80.0" width="40.0" x="160.0" y="160.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1e985524:130d9355380:-7fdb" ordering="1" parent="-1e985524:130d9355380:-7fdc" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="36.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1e985524:130d9355380:-7fda" ordering="1" parent="-1e985524:130d9355380:-7fdc" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1e985524:130d9355380:-7fd9" ordering="2" parent="-1e985524:130d9355380:-7fdc" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="56.0"/></ImplicitInputPort><GroundBlock angle="90" dependsOnU="1" id="-1e985524:130d9355380:-7fd3" interfaceFunctionName="Ground" ordering="2" parent="-1e985524:130d9355380:-8000" simulationFunctionName="Ground" simulationFunctionType="DEFAULT" style="Ground;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Ground"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="120.0" y="392.0"/></GroundBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1e985524:130d9355380:-7fd2" ordering="1" parent="-1e985524:130d9355380:-7fd3" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=90;spacingTop=5;flip=false;mirror=false"><Orientation as="orientation" value="NORTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="-1e985524:130d9355380:-7fcd" interfaceFunctionName="OpAmp" ordering="3" parent="-1e985524:130d9355380:-8000" simulationFunctionName="OpAmp" simulationFunctionType="DEFAULT" style="OpAmp;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="OpAmp"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="in_p"/><data column="0" line="1" value="in_n"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="out"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/></Array></Array><mxGeometry as="geometry" height="80.0" width="40.0" x="420.0" y="140.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1e985524:130d9355380:-7fcc" ordering="1" parent="-1e985524:130d9355380:-7fcd" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="36.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1e985524:130d9355380:-7fcb" ordering="1" parent="-1e985524:130d9355380:-7fcd" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1e985524:130d9355380:-7fca" ordering="2" parent="-1e985524:130d9355380:-7fcd" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="56.0"/></ImplicitInputPort><BasicBlock angle="90" id="-1e985524:130d9355380:-7fbe" interfaceFunctionName="ConstantVoltage" ordering="4" parent="-1e985524:130d9355380:-8000" simulationFunctionName="ConstantVoltage" simulationFunctionType="DEFAULT" style="ConstantVoltage;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="-0.6"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="-0.6"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ConstantVoltage"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="V"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-0.6"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="10.0" y="252.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1e985524:130d9355380:-7eda" ordering="1" parent="-1e985524:130d9355380:-7fbe" style="ImplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;spacingBottom=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1e985524:130d9355380:-7edb" ordering="1" parent="-1e985524:130d9355380:-7fbe" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;spacingTop=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="-1e985524:130d9355380:-7fb4" interfaceFunctionName="Resistor" ordering="5" parent="-1e985524:130d9355380:-8000" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="1000"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="1000.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1000.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="70.0" y="200.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1e985524:130d9355380:-7ed6" ordering="1" parent="-1e985524:130d9355380:-7fb4" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1e985524:130d9355380:-7ed7" ordering="1" parent="-1e985524:130d9355380:-7fb4" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="-1e985524:130d9355380:-7f99" interfaceFunctionName="Resistor" ordering="6" parent="-1e985524:130d9355380:-8000" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="2000"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="2000.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="2000.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="420.0" y="270.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1e985524:130d9355380:-7ec2" ordering="1" parent="-1e985524:130d9355380:-7f99" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1e985524:130d9355380:-7ec3" ordering="1" parent="-1e985524:130d9355380:-7f99" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="-1e985524:130d9355380:-7f93" interfaceFunctionName="Resistor" ordering="7" parent="-1e985524:130d9355380:-8000" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="2000"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="2000.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="2000.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="300.0" y="180.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1e985524:130d9355380:-7ec6" ordering="1" parent="-1e985524:130d9355380:-7f93" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1e985524:130d9355380:-7ec7" ordering="1" parent="-1e985524:130d9355380:-7f93" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="-1e985524:130d9355380:-7f90" interfaceFunctionName="Resistor" ordering="8" parent="-1e985524:130d9355380:-8000" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="3000"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="3000.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="3000.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="170.0" y="280.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1e985524:130d9355380:-7ed2" ordering="1" parent="-1e985524:130d9355380:-7f90" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1e985524:130d9355380:-7ed3" ordering="1" parent="-1e985524:130d9355380:-7f90" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="-1e985524:130d9355380:-7f96" interfaceFunctionName="Resistor" ordering="9" parent="-1e985524:130d9355380:-8000" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="1000"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="1000.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1000.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="300.0" y="270.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1e985524:130d9355380:-7eca" ordering="1" parent="-1e985524:130d9355380:-7f96" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1e985524:130d9355380:-7ecb" ordering="1" parent="-1e985524:130d9355380:-7f96" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><BasicBlock angle="90" id="-1e985524:130d9355380:-7f75" interfaceFunctionName="ConstantVoltage" ordering="10" parent="-1e985524:130d9355380:-8000" simulationFunctionName="ConstantVoltage" simulationFunctionType="DEFAULT" style="ConstantVoltage;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="0.5"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="0.5"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ConstantVoltage"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="V"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.5"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="260.0" y="320.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1e985524:130d9355380:-7ece" ordering="1" parent="-1e985524:130d9355380:-7f75" style="ImplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;spacingBottom=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1e985524:130d9355380:-7ecf" ordering="1" parent="-1e985524:130d9355380:-7f75" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;spacingTop=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitLink id="-1e985524:130d9355380:-7f66" parent="-1e985524:130d9355380:-8000" source="-1e985524:130d9355380:-7edb" target="-1e985524:130d9355380:-7ed7"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="30.0" y="248.0"/><mxPoint as="targetPoint" x="60.0" y="220.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="30.0" y="220.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="-1e985524:130d9355380:-7f61" ordering="11" parent="-1e985524:130d9355380:-8000" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="127.0" y="217.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="-1e985524:130d9355380:-7f60" ordering="1" parent="-1e985524:130d9355380:-7f61" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-1e985524:130d9355380:-7f5f" ordering="1" parent="-1e985524:130d9355380:-7f61" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-1e985524:130d9355380:-7f5e" ordering="2" parent="-1e985524:130d9355380:-7f61" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="-1e985524:130d9355380:-7f5d" parent="-1e985524:130d9355380:-8000" source="-1e985524:130d9355380:-7ed6" target="-1e985524:130d9355380:-7f60"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-1e985524:130d9355380:-7f5c" parent="-1e985524:130d9355380:-8000" source="-1e985524:130d9355380:-7f5f" target="-1e985524:130d9355380:-7fd9"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-1e985524:130d9355380:-7f62" parent="-1e985524:130d9355380:-8000" source="-1e985524:130d9355380:-7f5e" target="-1e985524:130d9355380:-7ed3"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="166.0" y="300.0"/><mxPoint as="targetPoint" x="130.0" y="220.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="130.0" y="300.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="-1e985524:130d9355380:-7f59" ordering="12" parent="-1e985524:130d9355380:-8000" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="237.0" y="197.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="-1e985524:130d9355380:-7f58" ordering="1" parent="-1e985524:130d9355380:-7f59" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-1e985524:130d9355380:-7f57" ordering="1" parent="-1e985524:130d9355380:-7f59" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-1e985524:130d9355380:-7f56" ordering="2" parent="-1e985524:130d9355380:-7f59" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="-1e985524:130d9355380:-7f55" parent="-1e985524:130d9355380:-8000" source="-1e985524:130d9355380:-7fdb" target="-1e985524:130d9355380:-7f58"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-1e985524:130d9355380:-7f5a" parent="-1e985524:130d9355380:-8000" source="-1e985524:130d9355380:-7f56" target="-1e985524:130d9355380:-7ec7"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="296.0" y="200.0"/><mxPoint as="targetPoint" x="240.0" y="200.0"/></mxGeometry></ImplicitLink><ImplicitLink id="-1e985524:130d9355380:-7f52" parent="-1e985524:130d9355380:-8000" source="-1e985524:130d9355380:-7ecf" target="-1e985524:130d9355380:-7ecb"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="280.0" y="326.0"/><mxPoint as="targetPoint" x="300.0" y="290.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="280.0" y="290.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="-1e985524:130d9355380:-7f48" ordering="13" parent="-1e985524:130d9355380:-8000" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="367.0" y="197.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="-1e985524:130d9355380:-7f47" ordering="1" parent="-1e985524:130d9355380:-7f48" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-1e985524:130d9355380:-7f46" ordering="1" parent="-1e985524:130d9355380:-7f48" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-1e985524:130d9355380:-7f45" ordering="2" parent="-1e985524:130d9355380:-7f48" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="-1e985524:130d9355380:-7f44" parent="-1e985524:130d9355380:-8000" source="-1e985524:130d9355380:-7ec6" target="-1e985524:130d9355380:-7f47"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-1e985524:130d9355380:-7f43" parent="-1e985524:130d9355380:-8000" source="-1e985524:130d9355380:-7f46" target="-1e985524:130d9355380:-7fca"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="380.0" y="200.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="-1e985524:130d9355380:-7f41" ordering="14" parent="-1e985524:130d9355380:-8000" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="367.0" y="287.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="-1e985524:130d9355380:-7f40" ordering="1" parent="-1e985524:130d9355380:-7f41" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-1e985524:130d9355380:-7f3f" ordering="1" parent="-1e985524:130d9355380:-7f41" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-1e985524:130d9355380:-7f3e" ordering="2" parent="-1e985524:130d9355380:-7f41" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="-1e985524:130d9355380:-7f3d" parent="-1e985524:130d9355380:-8000" source="-1e985524:130d9355380:-7eca" target="-1e985524:130d9355380:-7f40"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-1e985524:130d9355380:-7f3c" parent="-1e985524:130d9355380:-8000" source="-1e985524:130d9355380:-7f45" target="-1e985524:130d9355380:-7f3f"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="370.0" y="290.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-1e985524:130d9355380:-7f42" parent="-1e985524:130d9355380:-8000" source="-1e985524:130d9355380:-7f3e" target="-1e985524:130d9355380:-7ec3"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="416.0" y="290.0"/><mxPoint as="targetPoint" x="370.0" y="290.0"/></mxGeometry></ImplicitLink><GroundBlock angle="90" dependsOnU="1" id="-1e985524:130d9355380:-7f38" interfaceFunctionName="Ground" ordering="15" parent="-1e985524:130d9355380:-8000" simulationFunctionName="Ground" simulationFunctionType="DEFAULT" style="Ground;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Ground"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="380.0" y="410.0"/></GroundBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1e985524:130d9355380:-7f37" ordering="1" parent="-1e985524:130d9355380:-7f38" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=90;spacingTop=5;flip=false;mirror=false"><Orientation as="orientation" value="NORTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><SplitBlock id="-1e985524:130d9355380:-7f32" ordering="16" parent="-1e985524:130d9355380:-8000" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="397.0" y="387.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="-1e985524:130d9355380:-7f31" ordering="1" parent="-1e985524:130d9355380:-7f32" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-1e985524:130d9355380:-7f30" ordering="1" parent="-1e985524:130d9355380:-7f32" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-1e985524:130d9355380:-7f2f" ordering="2" parent="-1e985524:130d9355380:-7f32" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="-1e985524:130d9355380:-7f2e" parent="-1e985524:130d9355380:-8000" source="-1e985524:130d9355380:-7fcb" target="-1e985524:130d9355380:-7f31"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="400.0" y="160.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-1e985524:130d9355380:-7f2d" parent="-1e985524:130d9355380:-8000" source="-1e985524:130d9355380:-7f30" target="-1e985524:130d9355380:-7f37"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-1e985524:130d9355380:-7f33" parent="-1e985524:130d9355380:-8000" source="-1e985524:130d9355380:-7ece" target="-1e985524:130d9355380:-7f2f"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="280.0" y="374.0"/><mxPoint as="targetPoint" x="400.0" y="390.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="280.0" y="390.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="-1e985524:130d9355380:-7f2a" ordering="17" parent="-1e985524:130d9355380:-8000" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="137.0" y="347.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="-1e985524:130d9355380:-7f29" ordering="1" parent="-1e985524:130d9355380:-7f2a" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-1e985524:130d9355380:-7f28" ordering="1" parent="-1e985524:130d9355380:-7f2a" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-1e985524:130d9355380:-7f27" ordering="2" parent="-1e985524:130d9355380:-7f2a" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="-1e985524:130d9355380:-7f26" parent="-1e985524:130d9355380:-8000" source="-1e985524:130d9355380:-7fda" target="-1e985524:130d9355380:-7f29"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="140.0" y="180.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-1e985524:130d9355380:-7f25" parent="-1e985524:130d9355380:-8000" source="-1e985524:130d9355380:-7f28" target="-1e985524:130d9355380:-7fd2"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-1e985524:130d9355380:-7f2b" parent="-1e985524:130d9355380:-8000" source="-1e985524:130d9355380:-7eda" target="-1e985524:130d9355380:-7f27"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="30.0" y="296.0"/><mxPoint as="targetPoint" x="140.0" y="350.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="30.0" y="350.0"/></Array></mxGeometry></ImplicitLink><BasicBlock dependsOnU="1" id="-1e985524:130d9355380:-7f21" interfaceFunctionName="PotentialSensor" ordering="18" parent="-1e985524:130d9355380:-8000" simulationFunctionName="PotentialSensor" simulationFunctionType="DEFAULT" style="PotentialSensor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="PotentialSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="v"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="540.0" y="160.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1e985524:130d9355380:-7f20" ordering="1" parent="-1e985524:130d9355380:-7f21" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1e985524:130d9355380:-7f1f" ordering="1" parent="-1e985524:130d9355380:-7f21" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="-1e985524:130d9355380:-7faa" interfaceFunctionName="PotentialSensor" ordering="19" parent="-1e985524:130d9355380:-8000" simulationFunctionName="PotentialSensor" simulationFunctionType="DEFAULT" style="PotentialSensor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="PotentialSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="v"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="250.0" y="120.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1e985524:130d9355380:-7fa9" ordering="1" parent="-1e985524:130d9355380:-7faa" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1e985524:130d9355380:-7fa8" ordering="1" parent="-1e985524:130d9355380:-7faa" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><SplitBlock id="-1e985524:130d9355380:-7f17" ordering="20" parent="-1e985524:130d9355380:-8000" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="237.0" y="197.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="-1e985524:130d9355380:-7f16" ordering="1" parent="-1e985524:130d9355380:-7f17" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-1e985524:130d9355380:-7f15" ordering="1" parent="-1e985524:130d9355380:-7f17" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-1e985524:130d9355380:-7f14" ordering="2" parent="-1e985524:130d9355380:-7f17" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="-1e985524:130d9355380:-7f13" parent="-1e985524:130d9355380:-8000" source="-1e985524:130d9355380:-7ed2" target="-1e985524:130d9355380:-7f16"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="240.0" y="300.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-1e985524:130d9355380:-7f12" parent="-1e985524:130d9355380:-8000" source="-1e985524:130d9355380:-7f57" target="-1e985524:130d9355380:-7f15"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="240.0" y="200.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-1e985524:130d9355380:-7f18" parent="-1e985524:130d9355380:-8000" source="-1e985524:130d9355380:-7f14" target="-1e985524:130d9355380:-7fa8"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="246.0" y="140.0"/><mxPoint as="targetPoint" x="240.0" y="200.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="240.0" y="140.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="-1e985524:130d9355380:-7f10" ordering="21" parent="-1e985524:130d9355380:-8000" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="497.0" y="177.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="-1e985524:130d9355380:-7f0f" ordering="1" parent="-1e985524:130d9355380:-7f10" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-1e985524:130d9355380:-7f0e" ordering="1" parent="-1e985524:130d9355380:-7f10" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-1e985524:130d9355380:-7f0d" ordering="2" parent="-1e985524:130d9355380:-7f10" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="-1e985524:130d9355380:-7f0c" parent="-1e985524:130d9355380:-8000" source="-1e985524:130d9355380:-7fcc" target="-1e985524:130d9355380:-7f0f"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="470.0" y="180.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-1e985524:130d9355380:-7f0b" parent="-1e985524:130d9355380:-8000" source="-1e985524:130d9355380:-7ec2" target="-1e985524:130d9355380:-7f0e"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="500.0" y="290.0"/><mxPoint x="500.0" y="180.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-1e985524:130d9355380:-7f11" parent="-1e985524:130d9355380:-8000" source="-1e985524:130d9355380:-7f0d" target="-1e985524:130d9355380:-7f1f"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="536.0" y="180.0"/><mxPoint as="targetPoint" x="500.0" y="180.0"/></mxGeometry></ImplicitLink><BasicBlock blockType="h" id="-1e985524:130d9355380:-7f05" interfaceFunctionName="CLOCK_c" ordering="22" parent="-1e985524:130d9355380:-8000" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="99.0"/><data column="1" line="0" realPart="-160.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-6828d40b:166e7805a21:-7c82"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-6828d40b:166e7805a21:-7c82"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-70.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.1"/><data column="0" line="1" value="0.0001"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.1"/><data column="0" line="1" realPart="1.0E-4"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0E-4"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-6828d40b:166e7805a21:-7c80"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-6828d40b:166e7805a21:-7c80"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="90.3773266666667"/><data column="1" line="0" realPart="-166.33333333333331"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="7.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="5.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-6828d40b:166e7805a21:-7c7d"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-6828d40b:166e7805a21:-7c7d"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="60.0"/><data column="0" line="2" realPart="97.54399333333338"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-74.0"/><data column="0" line="1" realPart="-170.0"/><data column="0" line="2" realPart="-155.33333333333331"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="97.48843777777782"/><data column="0" line="1" realPart="129.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-163.66666666666666"/><data column="0" line="1" realPart="-136.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="97.59954888888893"/><data column="0" line="1" realPart="100.70999999999998"/><data column="0" line="2" realPart="60.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-163.66666666666666"/><data column="0" line="1" realPart="-40.0"/><data column="0" line="2" realPart="-40.0"/><data column="0" line="3" realPart="-26.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="48.0" width="40.0" x="320.0" y="30.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="-1e985524:130d9355380:-7ef1" ordering="1" parent="-1e985524:130d9355380:-7f05" style="CommandPort;align=center;labelPosition=center;verticalLabelPosition=top;rotation=90;spacingBottom=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="48.0"/></CommandPort><BasicBlock dependsOnU="1" id="-1e985524:130d9355380:-7efc" interfaceFunctionName="CSCOPE" ordering="23" parent="-1e985524:130d9355380:-8000" simulationFunctionName="cscope" simulationFunctionType="C_OR_FORTRAN" style="CSCOPE;flip=false;mirror=false"><ScilabString as="exprs" height="10" width="1"><data column="0" line="0" value="1 3 5 7 9 11 13 15"/><data column="0" line="1" value="-1"/><data column="0" line="2" value="[]"/><data column="0" line="3" value="[600;400]"/><data column="0" line="4" value="1"/><data column="0" line="5" value="2"/><data column="0" line="6" value="30"/><data column="0" line="7" value="20"/><data column="0" line="8" value="0"/><data column="0" line="9" value=""/></ScilabString><ScilabDouble as="realParameters" height="4" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="2.0"/><data column="0" line="3" realPart="30.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="15" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="1.0"/><data column="0" line="4" realPart="3.0"/><data column="0" line="5" realPart="5.0"/><data column="0" line="6" realPart="7.0"/><data column="0" line="7" realPart="9.0"/><data column="0" line="8" realPart="11.0"/><data column="0" line="9" realPart="13.0"/><data column="0" line="10" realPart="15.0"/><data column="0" line="11" realPart="-1.0"/><data column="0" line="12" realPart="-1.0"/><data column="0" line="13" realPart="600.0"/><data column="0" line="14" realPart="400.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="320.0" y="120.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="-1e985524:130d9355380:-7ebf" ordering="1" parent="-1e985524:130d9355380:-7efc" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ControlPort dataType="UNKNOW_TYPE" id="-1e985524:130d9355380:-7ebe" ordering="1" parent="-1e985524:130d9355380:-7efc" style="ControlPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=90;spacingTop=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><ExplicitLink id="-1e985524:130d9355380:-7ef4" parent="-1e985524:130d9355380:-8000" source="-1e985524:130d9355380:-7fa9" target="-1e985524:130d9355380:-7ebf"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="294.0" y="140.0"/><mxPoint as="targetPoint" x="320.0" y="140.0"/></mxGeometry></ExplicitLink><CommandControlLink id="-1e985524:130d9355380:-7ef3" parent="-1e985524:130d9355380:-8000" source="-1e985524:130d9355380:-7ef1" target="-1e985524:130d9355380:-7ebe"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="340.0" y="74.0"/><mxPoint as="targetPoint" x="340.0" y="110.0"/></mxGeometry></CommandControlLink><BasicBlock blockType="h" id="-1e985524:130d9355380:-7ee9" interfaceFunctionName="CLOCK_c" ordering="24" parent="-1e985524:130d9355380:-8000" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="99.0"/><data column="1" line="0" realPart="-160.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-6828d40b:166e7805a21:-7c74"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-6828d40b:166e7805a21:-7c74"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-70.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.1"/><data column="0" line="1" value="0.0001"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.1"/><data column="0" line="1" realPart="1.0E-4"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0E-4"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-6828d40b:166e7805a21:-7c72"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-6828d40b:166e7805a21:-7c72"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="90.3773266666667"/><data column="1" line="0" realPart="-166.33333333333331"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="7.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="5.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-6828d40b:166e7805a21:-7c6f"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-6828d40b:166e7805a21:-7c6f"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="60.0"/><data column="0" line="2" realPart="97.54399333333338"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-74.0"/><data column="0" line="1" realPart="-170.0"/><data column="0" line="2" realPart="-155.33333333333331"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="97.48843777777782"/><data column="0" line="1" realPart="129.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-163.66666666666666"/><data column="0" line="1" realPart="-136.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="97.59954888888893"/><data column="0" line="1" realPart="100.70999999999998"/><data column="0" line="2" realPart="60.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-163.66666666666666"/><data column="0" line="1" realPart="-40.0"/><data column="0" line="2" realPart="-40.0"/><data column="0" line="3" realPart="-26.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="48.0" width="40.0" x="610.0" y="70.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="-1e985524:130d9355380:-7ee8" ordering="1" parent="-1e985524:130d9355380:-7ee9" style="CommandPort;align=center;labelPosition=center;verticalLabelPosition=top;rotation=90;spacingBottom=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="48.0"/></CommandPort><BasicBlock dependsOnU="1" id="-1e985524:130d9355380:-7ee7" interfaceFunctionName="CSCOPE" ordering="25" parent="-1e985524:130d9355380:-8000" simulationFunctionName="cscope" simulationFunctionType="C_OR_FORTRAN" style="CSCOPE;flip=false;mirror=false"><ScilabString as="exprs" height="10" width="1"><data column="0" line="0" value="1 3 5 7 9 11 13 15"/><data column="0" line="1" value="-1"/><data column="0" line="2" value="[]"/><data column="0" line="3" value="[600;400]"/><data column="0" line="4" value="-3"/><data column="0" line="5" value="-2.5"/><data column="0" line="6" value="30"/><data column="0" line="7" value="20"/><data column="0" line="8" value="0"/><data column="0" line="9" value=""/></ScilabString><ScilabDouble as="realParameters" height="4" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="-3.0"/><data column="0" line="2" realPart="-2.5"/><data column="0" line="3" realPart="30.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="15" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="1.0"/><data column="0" line="4" realPart="3.0"/><data column="0" line="5" realPart="5.0"/><data column="0" line="6" realPart="7.0"/><data column="0" line="7" realPart="9.0"/><data column="0" line="8" realPart="11.0"/><data column="0" line="9" realPart="13.0"/><data column="0" line="10" realPart="15.0"/><data column="0" line="11" realPart="-1.0"/><data column="0" line="12" realPart="-1.0"/><data column="0" line="13" realPart="600.0"/><data column="0" line="14" realPart="400.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="610.0" y="160.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="-1e985524:130d9355380:-7ebb" ordering="1" parent="-1e985524:130d9355380:-7ee7" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ControlPort dataType="UNKNOW_TYPE" id="-1e985524:130d9355380:-7eba" ordering="1" parent="-1e985524:130d9355380:-7ee7" style="ControlPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=90;spacingTop=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><CommandControlLink id="-1e985524:130d9355380:-7ee4" parent="-1e985524:130d9355380:-8000" source="-1e985524:130d9355380:-7ee8" target="-1e985524:130d9355380:-7eba"><mxGeometry as="geometry" x="290.0" y="40.0"><mxPoint as="sourcePoint" x="630.0" y="114.0"/><mxPoint as="targetPoint" x="630.0" y="150.0"/></mxGeometry></CommandControlLink><ExplicitLink id="-1e985524:130d9355380:-7edd" parent="-1e985524:130d9355380:-8000" source="-1e985524:130d9355380:-7f20" target="-1e985524:130d9355380:-7ebb"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="584.0" y="180.0"/><mxPoint as="targetPoint" x="610.0" y="180.0"/></mxGeometry></ExplicitLink></root></mxGraphModel><mxCell as="defaultParent" id="-1e985524:130d9355380:-8000" parent="-1e985524:130d9355380:-7fff"/></XcosDiagram>
\ No newline at end of file diff --git a/Working_Examples/154/CH6/EX6.15/ch6_151.jpeg b/Working_Examples/154/CH6/EX6.15/ch6_151.jpeg Binary files differnew file mode 100755 index 0000000..6a066d5 --- /dev/null +++ b/Working_Examples/154/CH6/EX6.15/ch6_151.jpeg diff --git a/Working_Examples/154/CH6/EX6.15/chap6_15.jpeg b/Working_Examples/154/CH6/EX6.15/chap6_15.jpeg Binary files differnew file mode 100755 index 0000000..a961737 --- /dev/null +++ b/Working_Examples/154/CH6/EX6.15/chap6_15.jpeg diff --git a/Working_Examples/154/CH6/EX6.8/ch6_8.sce b/Working_Examples/154/CH6/EX6.8/ch6_8.sce new file mode 100755 index 0000000..d971edf --- /dev/null +++ b/Working_Examples/154/CH6/EX6.8/ch6_8.sce @@ -0,0 +1,15 @@ +clc
+disp("Example 6.8")
+printf("Given")
+disp("R1= 10kohm R2=50kohm Ri=500kohm R0=0")
+disp("Open loop gain (A)=10^5")
+A=10^5;R1=10*10^3;R2=50*10^3;Ri=500*10^3;
+//From figure 6.11
+//Applying KCL equation at node B
+disp("(v1+vd)/10+ (v2+vd)/50+ vd/500=0 (1)")
+//Since R0=0
+disp("v2=A*vd")
+//Solving for vd
+disp("vd=10^-5*v2 (2)")
+//Substituting (2) in (1) we get
+printf("v2/v1=%d\n",-5)
\ No newline at end of file diff --git a/Working_Examples/154/CH6/EX6.9/ch6_9.xcos b/Working_Examples/154/CH6/EX6.9/ch6_9.xcos new file mode 100755 index 0000000..59c29be --- /dev/null +++ b/Working_Examples/154/CH6/EX6.9/ch6_9.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" finalIntegrationTime="30.0" title="ch6_9"><mxGraphModel as="model"><root><mxCell id="5678f95b:130d8f27016:-7fff"/><mxCell id="5678f95b:130d8f27016:-8000" parent="5678f95b:130d8f27016:-7fff"/><BasicBlock dependsOnU="1" id="5678f95b:130d8f27016:-7fdc" interfaceFunctionName="OpAmp" ordering="1" parent="5678f95b:130d8f27016:-8000" simulationFunctionName="OpAmp" simulationFunctionType="DEFAULT" style="OpAmp"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="OpAmp"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="in_p"/><data column="0" line="1" value="in_n"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="out"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/></Array></Array><mxGeometry as="geometry" height="80.0" width="40.0" x="260.0" y="160.0"/></BasicBlock><ImplicitOutputPort connectable="0" connectedLinkId="87" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5678f95b:130d8f27016:-7fdb" ordering="1" parent="5678f95b:130d8f27016:-7fdc" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="36.0"/></ImplicitOutputPort><ImplicitInputPort connectable="0" connectedLinkId="67" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5678f95b:130d8f27016:-7fda" ordering="1" parent="5678f95b:130d8f27016:-7fdc" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitInputPort connectable="0" connectedLinkId="49" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5678f95b:130d8f27016:-7fd9" ordering="2" parent="5678f95b:130d8f27016:-7fdc" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="56.0"/></ImplicitInputPort><GroundBlock angle="90" dependsOnU="1" id="5678f95b:130d8f27016:-7fd3" interfaceFunctionName="Ground" ordering="2" parent="5678f95b:130d8f27016:-8000" simulationFunctionName="Ground" simulationFunctionType="DEFAULT" style="Ground;rotation=90"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Ground"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="230.0" y="390.0"/></GroundBlock><ImplicitInputPort connectable="0" connectedLinkId="53" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5678f95b:130d8f27016:-7fd2" ordering="1" parent="5678f95b:130d8f27016:-7fd3" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=90;spacingTop=5"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock angle="90" id="5678f95b:130d8f27016:-7fca" interfaceFunctionName="ConstantVoltage" ordering="3" parent="5678f95b:130d8f27016:-8000" simulationFunctionName="ConstantVoltage" simulationFunctionType="DEFAULT" style="ConstantVoltage;rotation=90"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="0.5"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="0.5"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ConstantVoltage"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="V"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.5"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="70.0" y="300.0"/></BasicBlock><ImplicitOutputPort connectable="0" connectedLinkId="54" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5678f95b:130d8f27016:-7f24" ordering="1" parent="5678f95b:130d8f27016:-7fca" style="ImplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;spacingBottom=5;rotation=90"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitInputPort connectable="0" connectedLinkId="91" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5678f95b:130d8f27016:-7f25" ordering="1" parent="5678f95b:130d8f27016:-7fca" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;spacingTop=5;rotation=90"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="5678f95b:130d8f27016:-7fc0" interfaceFunctionName="Resistor" ordering="4" parent="5678f95b:130d8f27016:-8000" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="5000"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="5000.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5000.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="140.0" y="200.0"/></BasicBlock><ImplicitOutputPort connectable="0" connectedLinkId="57" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5678f95b:130d8f27016:-7f20" ordering="1" parent="5678f95b:130d8f27016:-7fc0" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><ImplicitInputPort connectable="0" connectedLinkId="88" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5678f95b:130d8f27016:-7f21" ordering="1" parent="5678f95b:130d8f27016:-7fc0" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><BasicBlock angle="270" dependsOnU="1" id="5678f95b:130d8f27016:-7fa9" interfaceFunctionName="Resistor" ordering="5" parent="5678f95b:130d8f27016:-8000" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=270"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="8000"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="8000.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8000.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="460.0" y="120.0"/></BasicBlock><ImplicitOutputPort connectable="0" connectedLinkId="69" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5678f95b:130d8f27016:-7f10" ordering="1" parent="5678f95b:130d8f27016:-7fa9" style="ImplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;spacingTop=5;rotation=270"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitOutputPort><ImplicitInputPort connectable="0" connectedLinkId="80" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5678f95b:130d8f27016:-7f11" ordering="1" parent="5678f95b:130d8f27016:-7fa9" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=top;spacingBottom=5;rotation=270"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitInputPort><BasicBlock angle="270" dependsOnU="1" id="5678f95b:130d8f27016:-7fa6" interfaceFunctionName="Resistor" ordering="6" parent="5678f95b:130d8f27016:-8000" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=270"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="1000"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="1000.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1000.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="340.0" y="270.0"/></BasicBlock><ImplicitOutputPort connectable="0" connectedLinkId="51" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5678f95b:130d8f27016:-7f14" ordering="1" parent="5678f95b:130d8f27016:-7fa6" style="ImplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;spacingTop=5;rotation=270"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitOutputPort><ImplicitInputPort connectable="0" connectedLinkId="55" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5678f95b:130d8f27016:-7f15" ordering="1" parent="5678f95b:130d8f27016:-7fa6" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=top;spacingBottom=5;rotation=270"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="5678f95b:130d8f27016:-7fa0" interfaceFunctionName="Resistor" ordering="7" parent="5678f95b:130d8f27016:-8000" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="10000"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="10000.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="10000.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="290.0" y="320.0"/></BasicBlock><ImplicitOutputPort connectable="0" connectedLinkId="76" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5678f95b:130d8f27016:-7f1c" ordering="1" parent="5678f95b:130d8f27016:-7fa0" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><ImplicitInputPort connectable="0" connectedLinkId="50" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5678f95b:130d8f27016:-7f1d" ordering="1" parent="5678f95b:130d8f27016:-7fa0" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><SplitBlock id="5678f95b:130d8f27016:-7f84" ordering="8" parent="5678f95b:130d8f27016:-8000" simulationFunctionType="DEFAULT"><mxGeometry as="geometry" height="7.0" width="7.0" x="227.0" y="217.0"/></SplitBlock><ImplicitInputPort connectable="0" connectedLinkId="58" dataType="UNKNOW_TYPE" id="5678f95b:130d8f27016:-7f83" ordering="1" parent="5678f95b:130d8f27016:-7f84" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort connectable="0" connectedLinkId="49" dataType="UNKNOW_TYPE" id="5678f95b:130d8f27016:-7f82" ordering="1" parent="5678f95b:130d8f27016:-7f84" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort connectable="0" connectedLinkId="50" dataType="UNKNOW_TYPE" id="5678f95b:130d8f27016:-7f81" ordering="2" parent="5678f95b:130d8f27016:-7f84" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="5678f95b:130d8f27016:-7f7f"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass=""/></mxGeometry><mxCell as="parent" id="5678f95b:130d8f27016:-8000" parent="5678f95b:130d8f27016:-7fff"/><ImplicitOutputPort as="source" connectable="0" connectedLinkId="49" dataType="UNKNOW_TYPE" id="5678f95b:130d8f27016:-7f82" ordering="1" parent="5678f95b:130d8f27016:-7f84" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitInputPort as="target" connectable="0" connectedLinkId="49" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5678f95b:130d8f27016:-7fd9" ordering="2" parent="5678f95b:130d8f27016:-7fdc" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="56.0"/></ImplicitInputPort></ImplicitLink><ImplicitLink id="5678f95b:130d8f27016:-7f85"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="286.0" y="340.0"/><mxPoint as="targetPoint" x="230.0" y="220.0"/><Array as="points" scilabClass=""><mxPoint x="230.0" y="340.0"/></Array></mxGeometry><mxCell as="parent" id="5678f95b:130d8f27016:-8000" parent="5678f95b:130d8f27016:-7fff"/><ImplicitOutputPort as="source" connectable="0" connectedLinkId="50" dataType="UNKNOW_TYPE" id="5678f95b:130d8f27016:-7f81" ordering="2" parent="5678f95b:130d8f27016:-7f84" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitInputPort as="target" connectable="0" connectedLinkId="50" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5678f95b:130d8f27016:-7f1d" ordering="1" parent="5678f95b:130d8f27016:-7fa0" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort></ImplicitLink><SplitBlock id="5678f95b:130d8f27016:-7f6c" ordering="9" parent="5678f95b:130d8f27016:-8000" simulationFunctionType="DEFAULT"><mxGeometry as="geometry" height="7.0" width="7.0" x="247.0" y="237.0"/></SplitBlock><ImplicitInputPort connectable="0" connectedLinkId="68" dataType="UNKNOW_TYPE" id="5678f95b:130d8f27016:-7f6b" ordering="1" parent="5678f95b:130d8f27016:-7f6c" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort connectable="0" connectedLinkId="52" dataType="UNKNOW_TYPE" id="5678f95b:130d8f27016:-7f6a" ordering="1" parent="5678f95b:130d8f27016:-7f6c" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort connectable="0" connectedLinkId="51" dataType="UNKNOW_TYPE" id="5678f95b:130d8f27016:-7f69" ordering="2" parent="5678f95b:130d8f27016:-7f6c" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="5678f95b:130d8f27016:-7f6d"><mxGeometry as="geometry" y="10.0"><mxPoint as="sourcePoint" x="360.0" y="256.0"/><mxPoint as="targetPoint" x="250.0" y="250.0"/><Array as="points" scilabClass=""><mxPoint x="360.0" y="240.0"/></Array></mxGeometry><mxCell as="parent" id="5678f95b:130d8f27016:-8000" parent="5678f95b:130d8f27016:-7fff"/><ImplicitOutputPort as="source" connectable="0" connectedLinkId="51" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5678f95b:130d8f27016:-7f14" ordering="1" parent="5678f95b:130d8f27016:-7fa6" style="ImplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;spacingTop=5;rotation=270"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitOutputPort><ImplicitOutputPort as="target" connectable="0" connectedLinkId="51" dataType="UNKNOW_TYPE" id="5678f95b:130d8f27016:-7f69" ordering="2" parent="5678f95b:130d8f27016:-7f6c" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort></ImplicitLink><SplitBlock id="5678f95b:130d8f27016:-7f5e" ordering="10" parent="5678f95b:130d8f27016:-8000" simulationFunctionType="DEFAULT"><mxGeometry as="geometry" height="7.0" width="7.0" x="247.0" y="357.0"/></SplitBlock><ImplicitInputPort connectable="0" connectedLinkId="52" dataType="UNKNOW_TYPE" id="5678f95b:130d8f27016:-7f5d" ordering="1" parent="5678f95b:130d8f27016:-7f5e" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort connectable="0" connectedLinkId="53" dataType="UNKNOW_TYPE" id="5678f95b:130d8f27016:-7f5c" ordering="1" parent="5678f95b:130d8f27016:-7f5e" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort connectable="0" connectedLinkId="54" dataType="UNKNOW_TYPE" id="5678f95b:130d8f27016:-7f5b" ordering="2" parent="5678f95b:130d8f27016:-7f5e" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="5678f95b:130d8f27016:-7f5a"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass=""/></mxGeometry><mxCell as="parent" id="5678f95b:130d8f27016:-8000" parent="5678f95b:130d8f27016:-7fff"/><ImplicitOutputPort as="source" connectable="0" connectedLinkId="52" dataType="UNKNOW_TYPE" id="5678f95b:130d8f27016:-7f6a" ordering="1" parent="5678f95b:130d8f27016:-7f6c" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitInputPort as="target" connectable="0" connectedLinkId="52" dataType="UNKNOW_TYPE" id="5678f95b:130d8f27016:-7f5d" ordering="1" parent="5678f95b:130d8f27016:-7f5e" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort></ImplicitLink><ImplicitLink id="5678f95b:130d8f27016:-7f59"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass=""/></mxGeometry><mxCell as="parent" id="5678f95b:130d8f27016:-8000" parent="5678f95b:130d8f27016:-7fff"/><ImplicitOutputPort as="source" connectable="0" connectedLinkId="53" dataType="UNKNOW_TYPE" id="5678f95b:130d8f27016:-7f5c" ordering="1" parent="5678f95b:130d8f27016:-7f5e" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitInputPort as="target" connectable="0" connectedLinkId="53" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5678f95b:130d8f27016:-7fd2" ordering="1" parent="5678f95b:130d8f27016:-7fd3" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=90;spacingTop=5"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort></ImplicitLink><ImplicitLink id="5678f95b:130d8f27016:-7f5f"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="90.0" y="294.0"/><mxPoint as="targetPoint" x="250.0" y="360.0"/><Array as="points" scilabClass=""><mxPoint x="90.0" y="360.0"/></Array></mxGeometry><mxCell as="parent" id="5678f95b:130d8f27016:-8000" parent="5678f95b:130d8f27016:-7fff"/><ImplicitOutputPort as="source" connectable="0" connectedLinkId="54" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5678f95b:130d8f27016:-7f24" ordering="1" parent="5678f95b:130d8f27016:-7fca" style="ImplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;spacingBottom=5;rotation=90"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitOutputPort as="target" connectable="0" connectedLinkId="54" dataType="UNKNOW_TYPE" id="5678f95b:130d8f27016:-7f5b" ordering="2" parent="5678f95b:130d8f27016:-7f5e" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort></ImplicitLink><BasicBlock dependsOnU="1" id="5678f95b:130d8f27016:-7f4e" interfaceFunctionName="PotentialSensor" ordering="11" parent="5678f95b:130d8f27016:-8000" simulationFunctionName="PotentialSensor" simulationFunctionType="DEFAULT" style="PotentialSensor"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="PotentialSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="v"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="380.0" y="392.0"/></BasicBlock><ExplicitOutputPort connectable="0" connectedLinkId="65" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5678f95b:130d8f27016:-7f4d" ordering="1" parent="5678f95b:130d8f27016:-7f4e" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ImplicitInputPort connectable="0" connectedLinkId="56" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5678f95b:130d8f27016:-7f4c" ordering="1" parent="5678f95b:130d8f27016:-7f4e" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><SplitBlock id="5678f95b:130d8f27016:-7f36" ordering="12" parent="5678f95b:130d8f27016:-8000" simulationFunctionType="DEFAULT"><mxGeometry as="geometry" height="7.0" width="7.0" x="357.0" y="337.0"/></SplitBlock><ImplicitInputPort connectable="0" connectedLinkId="77" dataType="UNKNOW_TYPE" id="5678f95b:130d8f27016:-7f35" ordering="1" parent="5678f95b:130d8f27016:-7f36" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort connectable="0" connectedLinkId="55" dataType="UNKNOW_TYPE" id="5678f95b:130d8f27016:-7f34" ordering="1" parent="5678f95b:130d8f27016:-7f36" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort connectable="0" connectedLinkId="56" dataType="UNKNOW_TYPE" id="5678f95b:130d8f27016:-7f33" ordering="2" parent="5678f95b:130d8f27016:-7f36" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="5678f95b:130d8f27016:-7f31"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass=""/></mxGeometry><mxCell as="parent" id="5678f95b:130d8f27016:-8000" parent="5678f95b:130d8f27016:-7fff"/><ImplicitOutputPort as="source" connectable="0" connectedLinkId="55" dataType="UNKNOW_TYPE" id="5678f95b:130d8f27016:-7f34" ordering="1" parent="5678f95b:130d8f27016:-7f36" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitInputPort as="target" connectable="0" connectedLinkId="55" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5678f95b:130d8f27016:-7f15" ordering="1" parent="5678f95b:130d8f27016:-7fa6" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=top;spacingBottom=5;rotation=270"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitInputPort></ImplicitLink><ImplicitLink id="5678f95b:130d8f27016:-7f37"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="376.0" y="412.0"/><mxPoint as="targetPoint" x="360.0" y="340.0"/><Array as="points" scilabClass=""><mxPoint x="360.0" y="410.0"/><mxPoint x="370.0" y="410.0"/></Array></mxGeometry><mxCell as="parent" id="5678f95b:130d8f27016:-8000" parent="5678f95b:130d8f27016:-7fff"/><ImplicitOutputPort as="source" connectable="0" connectedLinkId="56" dataType="UNKNOW_TYPE" id="5678f95b:130d8f27016:-7f33" ordering="2" parent="5678f95b:130d8f27016:-7f36" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitInputPort as="target" connectable="0" connectedLinkId="56" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5678f95b:130d8f27016:-7f4c" ordering="1" parent="5678f95b:130d8f27016:-7f4e" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort></ImplicitLink><GainBlock dependsOnU="1" id="5678f95b:130d8f27016:-7f06" ordering="13" parent="5678f95b:130d8f27016:-8000" simulationFunctionName="gain" simulationFunctionType="DEFAULT" value="1/5000"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="1/5000"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="2.0E-4"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="50.0" width="40.0" x="310.0" y="50.0"/></GainBlock><ExplicitOutputPort connectable="0" connectedLinkId="102" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5678f95b:130d8f27016:-7e5a" ordering="1" parent="5678f95b:130d8f27016:-7f06" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ExplicitInputPort connectable="0" connectedLinkId="61" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5678f95b:130d8f27016:-7e5b" ordering="1" parent="5678f95b:130d8f27016:-7f06" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><BasicBlock dependsOnU="1" id="5678f95b:130d8f27016:-7efc" interfaceFunctionName="POWBLK_f" ordering="14" parent="5678f95b:130d8f27016:-8000" simulationFunctionName="powblk" simulationFunctionType="DEFAULT" style="POWBLK_f"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="2"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="50.0" width="50.0" x="220.0" y="50.0"/></BasicBlock><ExplicitOutputPort connectable="0" connectedLinkId="61" dataColumns="1" dataType="REAL_MATRIX" id="5678f95b:130d8f27016:-7ed0" ordering="1" parent="5678f95b:130d8f27016:-7efc" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0"><mxGeometry as="geometry" height="8.0" width="8.0" x="50.0" y="16.0"/></ExplicitOutputPort><ExplicitInputPort connectable="0" connectedLinkId="60" dataColumns="1" dataType="REAL_MATRIX" id="5678f95b:130d8f27016:-7ed1" ordering="1" parent="5678f95b:130d8f27016:-7efc" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><VoltageSensorBlock dependsOnU="1" id="5678f95b:130d8f27016:-7ef0" interfaceFunctionName="VoltageSensor" ordering="15" parent="5678f95b:130d8f27016:-8000" simulationFunctionName="VoltageSensor" simulationFunctionType="DEFAULT" style="VoltageSensor"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="VoltageSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="v"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="130.0" y="120.0"/></VoltageSensorBlock><ImplicitOutputPort connectable="0" connectedLinkId="59" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5678f95b:130d8f27016:-7eef" ordering="1" parent="5678f95b:130d8f27016:-7ef0" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="6.0"/></ImplicitOutputPort><ExplicitOutputPort connectable="0" connectedLinkId="60" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5678f95b:130d8f27016:-7eee" ordering="2" parent="5678f95b:130d8f27016:-7ef0" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="26.0"/></ExplicitOutputPort><ImplicitInputPort connectable="0" connectedLinkId="89" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5678f95b:130d8f27016:-7eed" ordering="1" parent="5678f95b:130d8f27016:-7ef0" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><SplitBlock id="5678f95b:130d8f27016:-7ee7" ordering="16" parent="5678f95b:130d8f27016:-8000" simulationFunctionType="DEFAULT"><mxGeometry as="geometry" height="7.0" width="7.0" x="197.0" y="217.0"/></SplitBlock><ImplicitInputPort connectable="0" connectedLinkId="57" dataType="UNKNOW_TYPE" id="5678f95b:130d8f27016:-7ee6" ordering="1" parent="5678f95b:130d8f27016:-7ee7" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort connectable="0" connectedLinkId="58" dataType="UNKNOW_TYPE" id="5678f95b:130d8f27016:-7ee5" ordering="1" parent="5678f95b:130d8f27016:-7ee7" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort connectable="0" connectedLinkId="59" dataType="UNKNOW_TYPE" id="5678f95b:130d8f27016:-7ee4" ordering="2" parent="5678f95b:130d8f27016:-7ee7" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="5678f95b:130d8f27016:-7ee3"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass=""/></mxGeometry><mxCell as="parent" id="5678f95b:130d8f27016:-8000" parent="5678f95b:130d8f27016:-7fff"/><ImplicitOutputPort as="source" connectable="0" connectedLinkId="57" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5678f95b:130d8f27016:-7f20" ordering="1" parent="5678f95b:130d8f27016:-7fc0" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><ImplicitInputPort as="target" connectable="0" connectedLinkId="57" dataType="UNKNOW_TYPE" id="5678f95b:130d8f27016:-7ee6" ordering="1" parent="5678f95b:130d8f27016:-7ee7" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort></ImplicitLink><ImplicitLink id="5678f95b:130d8f27016:-7ee2"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass=""/></mxGeometry><mxCell as="parent" id="5678f95b:130d8f27016:-8000" parent="5678f95b:130d8f27016:-7fff"/><ImplicitOutputPort as="source" connectable="0" connectedLinkId="58" dataType="UNKNOW_TYPE" id="5678f95b:130d8f27016:-7ee5" ordering="1" parent="5678f95b:130d8f27016:-7ee7" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitInputPort as="target" connectable="0" connectedLinkId="58" dataType="UNKNOW_TYPE" id="5678f95b:130d8f27016:-7f83" ordering="1" parent="5678f95b:130d8f27016:-7f84" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort></ImplicitLink><ImplicitLink id="5678f95b:130d8f27016:-7ee8"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="184.0" y="130.0"/><mxPoint as="targetPoint" x="200.0" y="220.0"/><Array as="points" scilabClass=""><mxPoint x="200.0" y="130.0"/></Array></mxGeometry><mxCell as="parent" id="5678f95b:130d8f27016:-8000" parent="5678f95b:130d8f27016:-7fff"/><ImplicitOutputPort as="source" connectable="0" connectedLinkId="59" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5678f95b:130d8f27016:-7eef" ordering="1" parent="5678f95b:130d8f27016:-7ef0" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="6.0"/></ImplicitOutputPort><ImplicitOutputPort as="target" connectable="0" connectedLinkId="59" dataType="UNKNOW_TYPE" id="5678f95b:130d8f27016:-7ee4" ordering="2" parent="5678f95b:130d8f27016:-7ee7" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort></ImplicitLink><ExplicitLink id="5678f95b:130d8f27016:-7ed4"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="184.0" y="150.0"/><mxPoint as="targetPoint" x="220.0" y="70.0"/><Array as="points" scilabClass=""><mxPoint x="210.0" y="150.0"/><mxPoint x="210.0" y="70.0"/><mxPoint x="210.0" y="70.0"/></Array></mxGeometry><mxCell as="parent" id="5678f95b:130d8f27016:-8000" parent="5678f95b:130d8f27016:-7fff"/><ExplicitOutputPort as="source" connectable="0" connectedLinkId="60" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5678f95b:130d8f27016:-7eee" ordering="2" parent="5678f95b:130d8f27016:-7ef0" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="26.0"/></ExplicitOutputPort><ExplicitInputPort as="target" connectable="0" connectedLinkId="60" dataColumns="1" dataType="REAL_MATRIX" id="5678f95b:130d8f27016:-7ed1" ordering="1" parent="5678f95b:130d8f27016:-7efc" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort></ExplicitLink><ExplicitLink id="5678f95b:130d8f27016:-7ed3"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="274.0" y="70.0"/><mxPoint as="targetPoint" x="310.0" y="70.0"/></mxGeometry><mxCell as="parent" id="5678f95b:130d8f27016:-8000" parent="5678f95b:130d8f27016:-7fff"/><ExplicitOutputPort as="source" connectable="0" connectedLinkId="61" dataColumns="1" dataType="REAL_MATRIX" id="5678f95b:130d8f27016:-7ed0" ordering="1" parent="5678f95b:130d8f27016:-7efc" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0"><mxGeometry as="geometry" height="8.0" width="8.0" x="50.0" y="16.0"/></ExplicitOutputPort><ExplicitInputPort as="target" connectable="0" connectedLinkId="61" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5678f95b:130d8f27016:-7e5b" ordering="1" parent="5678f95b:130d8f27016:-7f06" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort></ExplicitLink><GainBlock dependsOnU="1" id="5678f95b:130d8f27016:-7ec7" ordering="17" parent="5678f95b:130d8f27016:-8000" simulationFunctionName="gain" simulationFunctionType="DEFAULT" value="1/8000"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="1/8000"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="1.25E-4"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="50.0" width="40.0" x="670.0" y="180.0"/></GainBlock><ExplicitOutputPort connectable="0" connectedLinkId="97" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5678f95b:130d8f27016:-7e56" ordering="1" parent="5678f95b:130d8f27016:-7ec7" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ExplicitInputPort connectable="0" connectedLinkId="62" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5678f95b:130d8f27016:-7e57" ordering="1" parent="5678f95b:130d8f27016:-7ec7" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><BasicBlock dependsOnU="1" id="5678f95b:130d8f27016:-7ec4" interfaceFunctionName="POWBLK_f" ordering="18" parent="5678f95b:130d8f27016:-8000" simulationFunctionName="powblk" simulationFunctionType="DEFAULT" style="POWBLK_f"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="2"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="50.0" width="50.0" x="580.0" y="180.0"/></BasicBlock><ExplicitOutputPort connectable="0" connectedLinkId="62" dataColumns="1" dataType="REAL_MATRIX" id="5678f95b:130d8f27016:-7ec3" ordering="1" parent="5678f95b:130d8f27016:-7ec4" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0"><mxGeometry as="geometry" height="8.0" width="8.0" x="50.0" y="16.0"/></ExplicitOutputPort><ExplicitInputPort connectable="0" connectedLinkId="85" dataColumns="1" dataType="REAL_MATRIX" id="5678f95b:130d8f27016:-7ec2" ordering="1" parent="5678f95b:130d8f27016:-7ec4" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitLink id="5678f95b:130d8f27016:-7ec1"><mxGeometry as="geometry" x="330.0" y="130.0"><mxPoint as="sourcePoint" x="604.0" y="200.0"/><mxPoint as="targetPoint" x="640.0" y="200.0"/></mxGeometry><mxCell as="parent" id="5678f95b:130d8f27016:-8000" parent="5678f95b:130d8f27016:-7fff"/><ExplicitOutputPort as="source" connectable="0" connectedLinkId="62" dataColumns="1" dataType="REAL_MATRIX" id="5678f95b:130d8f27016:-7ec3" ordering="1" parent="5678f95b:130d8f27016:-7ec4" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0"><mxGeometry as="geometry" height="8.0" width="8.0" x="50.0" y="16.0"/></ExplicitOutputPort><ExplicitInputPort as="target" connectable="0" connectedLinkId="62" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5678f95b:130d8f27016:-7e57" ordering="1" parent="5678f95b:130d8f27016:-7ec7" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort></ExplicitLink><GainBlock dependsOnU="1" id="5678f95b:130d8f27016:-7ea7" ordering="19" parent="5678f95b:130d8f27016:-8000" simulationFunctionName="gain" simulationFunctionType="DEFAULT" value="1/1000"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="1/1000"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="0.0010"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="50.0" width="40.0" x="550.0" y="390.0"/></GainBlock><ExplicitOutputPort connectable="0" connectedLinkId="98" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5678f95b:130d8f27016:-7e4e" ordering="1" parent="5678f95b:130d8f27016:-7ea7" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ExplicitInputPort connectable="0" connectedLinkId="63" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5678f95b:130d8f27016:-7e4f" ordering="1" parent="5678f95b:130d8f27016:-7ea7" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><BasicBlock dependsOnU="1" id="5678f95b:130d8f27016:-7ea4" interfaceFunctionName="POWBLK_f" ordering="20" parent="5678f95b:130d8f27016:-8000" simulationFunctionName="powblk" simulationFunctionType="DEFAULT" style="POWBLK_f"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="2"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="50.0" width="50.0" x="460.0" y="390.0"/></BasicBlock><ExplicitOutputPort connectable="0" connectedLinkId="63" dataColumns="1" dataType="REAL_MATRIX" id="5678f95b:130d8f27016:-7ea3" ordering="1" parent="5678f95b:130d8f27016:-7ea4" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0"><mxGeometry as="geometry" height="8.0" width="8.0" x="50.0" y="16.0"/></ExplicitOutputPort><ExplicitInputPort connectable="0" connectedLinkId="72" dataColumns="1" dataType="REAL_MATRIX" id="5678f95b:130d8f27016:-7ea2" ordering="1" parent="5678f95b:130d8f27016:-7ea4" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitLink id="5678f95b:130d8f27016:-7ea1"><mxGeometry as="geometry" x="210.0" y="340.0"><mxPoint as="sourcePoint" x="484.0" y="410.0"/><mxPoint as="targetPoint" x="520.0" y="410.0"/></mxGeometry><mxCell as="parent" id="5678f95b:130d8f27016:-8000" parent="5678f95b:130d8f27016:-7fff"/><ExplicitOutputPort as="source" connectable="0" connectedLinkId="63" dataColumns="1" dataType="REAL_MATRIX" id="5678f95b:130d8f27016:-7ea3" ordering="1" parent="5678f95b:130d8f27016:-7ea4" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0"><mxGeometry as="geometry" height="8.0" width="8.0" x="50.0" y="16.0"/></ExplicitOutputPort><ExplicitInputPort as="target" connectable="0" connectedLinkId="63" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5678f95b:130d8f27016:-7e4f" ordering="1" parent="5678f95b:130d8f27016:-7ea7" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort></ExplicitLink><GainBlock dependsOnU="1" id="5678f95b:130d8f27016:-7e98" ordering="21" parent="5678f95b:130d8f27016:-8000" simulationFunctionName="gain" simulationFunctionType="DEFAULT" value="1/10000"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="1/10000"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="1.0E-4"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="50.0" width="40.0" x="550.0" y="480.0"/></GainBlock><ExplicitOutputPort connectable="0" connectedLinkId="99" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5678f95b:130d8f27016:-7e52" ordering="1" parent="5678f95b:130d8f27016:-7e98" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ExplicitInputPort connectable="0" connectedLinkId="64" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5678f95b:130d8f27016:-7e53" ordering="1" parent="5678f95b:130d8f27016:-7e98" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><BasicBlock dependsOnU="1" id="5678f95b:130d8f27016:-7e95" interfaceFunctionName="POWBLK_f" ordering="22" parent="5678f95b:130d8f27016:-8000" simulationFunctionName="powblk" simulationFunctionType="DEFAULT" style="POWBLK_f"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="2"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="50.0" width="50.0" x="460.0" y="480.0"/></BasicBlock><ExplicitOutputPort connectable="0" connectedLinkId="64" dataColumns="1" dataType="REAL_MATRIX" id="5678f95b:130d8f27016:-7e94" ordering="1" parent="5678f95b:130d8f27016:-7e95" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0"><mxGeometry as="geometry" height="8.0" width="8.0" x="50.0" y="16.0"/></ExplicitOutputPort><ExplicitInputPort connectable="0" connectedLinkId="66" dataColumns="1" dataType="REAL_MATRIX" id="5678f95b:130d8f27016:-7e93" ordering="1" parent="5678f95b:130d8f27016:-7e95" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitLink id="5678f95b:130d8f27016:-7e92"><mxGeometry as="geometry" x="210.0" y="430.0"><mxPoint as="sourcePoint" x="484.0" y="500.0"/><mxPoint as="targetPoint" x="520.0" y="500.0"/></mxGeometry><mxCell as="parent" id="5678f95b:130d8f27016:-8000" parent="5678f95b:130d8f27016:-7fff"/><ExplicitOutputPort as="source" connectable="0" connectedLinkId="64" dataColumns="1" dataType="REAL_MATRIX" id="5678f95b:130d8f27016:-7e94" ordering="1" parent="5678f95b:130d8f27016:-7e95" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0"><mxGeometry as="geometry" height="8.0" width="8.0" x="50.0" y="16.0"/></ExplicitOutputPort><ExplicitInputPort as="target" connectable="0" connectedLinkId="64" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5678f95b:130d8f27016:-7e53" ordering="1" parent="5678f95b:130d8f27016:-7e98" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort></ExplicitLink><SplitBlock id="5678f95b:130d8f27016:-7e89" ordering="23" parent="5678f95b:130d8f27016:-8000" simulationFunctionType="DEFAULT"><mxGeometry as="geometry" height="7.0" width="7.0" x="437.0" y="407.0"/></SplitBlock><ExplicitInputPort connectable="0" connectedLinkId="65" dataType="UNKNOW_TYPE" id="5678f95b:130d8f27016:-7e88" ordering="1" parent="5678f95b:130d8f27016:-7e89" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ExplicitInputPort><ExplicitOutputPort connectable="0" connectedLinkId="71" dataType="UNKNOW_TYPE" id="5678f95b:130d8f27016:-7e87" ordering="1" parent="5678f95b:130d8f27016:-7e89" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitOutputPort connectable="0" connectedLinkId="66" dataType="UNKNOW_TYPE" id="5678f95b:130d8f27016:-7e86" ordering="2" parent="5678f95b:130d8f27016:-7e89" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitLink id="5678f95b:130d8f27016:-7e85"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass=""/></mxGeometry><mxCell as="parent" id="5678f95b:130d8f27016:-8000" parent="5678f95b:130d8f27016:-7fff"/><ExplicitOutputPort as="source" connectable="0" connectedLinkId="65" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5678f95b:130d8f27016:-7f4d" ordering="1" parent="5678f95b:130d8f27016:-7f4e" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ExplicitInputPort as="target" connectable="0" connectedLinkId="65" dataType="UNKNOW_TYPE" id="5678f95b:130d8f27016:-7e88" ordering="1" parent="5678f95b:130d8f27016:-7e89" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ExplicitInputPort></ExplicitLink><ExplicitLink id="5678f95b:130d8f27016:-7e8a"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="456.0" y="500.0"/><mxPoint as="targetPoint" x="440.0" y="410.0"/><Array as="points" scilabClass=""><mxPoint x="440.0" y="500.0"/></Array></mxGeometry><mxCell as="parent" id="5678f95b:130d8f27016:-8000" parent="5678f95b:130d8f27016:-7fff"/><ExplicitOutputPort as="source" connectable="0" connectedLinkId="66" dataType="UNKNOW_TYPE" id="5678f95b:130d8f27016:-7e86" ordering="2" parent="5678f95b:130d8f27016:-7e89" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitInputPort as="target" connectable="0" connectedLinkId="66" dataColumns="1" dataType="REAL_MATRIX" id="5678f95b:130d8f27016:-7e93" ordering="1" parent="5678f95b:130d8f27016:-7e95" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort></ExplicitLink><SplitBlock id="5678f95b:130d8f27016:-7e82" ordering="24" parent="5678f95b:130d8f27016:-8000" simulationFunctionType="DEFAULT"><mxGeometry as="geometry" height="7.0" width="7.0" x="247.0" y="187.0"/></SplitBlock><ImplicitInputPort connectable="0" connectedLinkId="67" dataType="UNKNOW_TYPE" id="5678f95b:130d8f27016:-7e81" ordering="1" parent="5678f95b:130d8f27016:-7e82" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort connectable="0" connectedLinkId="68" dataType="UNKNOW_TYPE" id="5678f95b:130d8f27016:-7e80" ordering="1" parent="5678f95b:130d8f27016:-7e82" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort connectable="0" connectedLinkId="69" dataType="UNKNOW_TYPE" id="5678f95b:130d8f27016:-7e7f" ordering="2" parent="5678f95b:130d8f27016:-7e82" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="5678f95b:130d8f27016:-7e7e"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass=""><mxPoint x="250.0" y="180.0"/></Array></mxGeometry><mxCell as="parent" id="5678f95b:130d8f27016:-8000" parent="5678f95b:130d8f27016:-7fff"/><ImplicitInputPort as="source" connectable="0" connectedLinkId="67" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5678f95b:130d8f27016:-7fda" ordering="1" parent="5678f95b:130d8f27016:-7fdc" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitInputPort as="target" connectable="0" connectedLinkId="67" dataType="UNKNOW_TYPE" id="5678f95b:130d8f27016:-7e81" ordering="1" parent="5678f95b:130d8f27016:-7e82" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort></ImplicitLink><ImplicitLink id="5678f95b:130d8f27016:-7e7d"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass=""><mxPoint x="250.0" y="200.0"/></Array></mxGeometry><mxCell as="parent" id="5678f95b:130d8f27016:-8000" parent="5678f95b:130d8f27016:-7fff"/><ImplicitOutputPort as="source" connectable="0" connectedLinkId="68" dataType="UNKNOW_TYPE" id="5678f95b:130d8f27016:-7e80" ordering="1" parent="5678f95b:130d8f27016:-7e82" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitInputPort as="target" connectable="0" connectedLinkId="68" dataType="UNKNOW_TYPE" id="5678f95b:130d8f27016:-7f6b" ordering="1" parent="5678f95b:130d8f27016:-7f6c" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort></ImplicitLink><ImplicitLink id="5678f95b:130d8f27016:-7e83"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="480.0" y="116.0"/><mxPoint as="targetPoint" x="250.0" y="190.0"/><Array as="points" scilabClass=""><mxPoint x="480.0" y="100.0"/><mxPoint x="480.0" y="100.0"/><mxPoint x="480.0" y="100.0"/></Array></mxGeometry><mxCell as="parent" id="5678f95b:130d8f27016:-8000" parent="5678f95b:130d8f27016:-7fff"/><ImplicitOutputPort as="source" connectable="0" connectedLinkId="69" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5678f95b:130d8f27016:-7f10" ordering="1" parent="5678f95b:130d8f27016:-7fa9" style="ImplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;spacingTop=5;rotation=270"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitOutputPort><ImplicitOutputPort as="target" connectable="0" connectedLinkId="69" dataType="UNKNOW_TYPE" id="5678f95b:130d8f27016:-7e7f" ordering="2" parent="5678f95b:130d8f27016:-7e82" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort></ImplicitLink><BasicBlock dependsOnU="1" id="5678f95b:130d8f27016:-7e75" interfaceFunctionName="CMSCOPE" ordering="25" parent="5678f95b:130d8f27016:-8000" simulationFunctionName="cmscope" simulationFunctionType="C_OR_FORTRAN" style="CMSCOPE"><ScilabString as="exprs" height="11" width="1"><data column="0" line="0" value="1 1"/><data column="0" line="1" value="1 3 5 7 9 11 13 15"/><data column="0" line="2" value="-1"/><data column="0" line="3" value="[]"/><data column="0" line="4" value="[]"/><data column="0" line="5" value="0 0"/><data column="0" line="6" value="1 1"/><data column="0" line="7" value="30 30"/><data column="0" line="8" value="20"/><data column="0" line="9" value="0"/><data column="0" line="10" value=""/></ScilabString><ScilabDouble as="realParameters" height="7" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="30.0"/><data column="0" line="2" realPart="30.0"/><data column="0" line="3" realPart="0.0"/><data column="0" line="4" realPart="1.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="1.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="12" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="2.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="-1.0"/><data column="0" line="4" realPart="-1.0"/><data column="0" line="5" realPart="-1.0"/><data column="0" line="6" realPart="-1.0"/><data column="0" line="7" realPart="1.0"/><data column="0" line="8" realPart="1.0"/><data column="0" line="9" realPart="1.0"/><data column="0" line="10" realPart="3.0"/><data column="0" line="11" realPart="0.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="860.0" y="102.0"/></BasicBlock><ExplicitInputPort connectable="0" connectedLinkId="103" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5678f95b:130d8f27016:-7ccb" ordering="1" parent="5678f95b:130d8f27016:-7e75" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ExplicitInputPort><ControlPort connectable="0" connectedLinkId="70" dataType="UNKNOW_TYPE" id="5678f95b:130d8f27016:-7cc9" ordering="1" parent="5678f95b:130d8f27016:-7e75" style="ControlPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=90;spacingTop=5"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><ExplicitInputPort connectable="0" connectedLinkId="106" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5678f95b:130d8f27016:-7cca" ordering="2" parent="5678f95b:130d8f27016:-7e75" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="26.0"/></ExplicitInputPort><BasicBlock blockType="h" id="5678f95b:130d8f27016:-7e71" interfaceFunctionName="CLOCK_c" ordering="26" parent="5678f95b:130d8f27016:-8000" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="1.0E-6"/><data column="1" line="0" realPart="1.0E-6"/><data column="2" line="0" realPart="1.0E-10"/><data column="3" line="0" realPart="100001.0"/><data column="4" line="0" realPart="0.0"/><data column="5" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="4"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="2.0"/><data column="3" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="4"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="10.0"/><data column="3" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="14"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="399.0"/><data column="1" line="0" realPart="162.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value=" "/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="23"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="14"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="320.0"/><data column="1" line="0" realPart="232.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.1"/><data column="0" line="1" value="0.00001"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="3" width="1"><data column="0" line="0" value="dt=o.model.rpar(1);"/><data column="0" line="1" value="txt=['Delay';string(dt)];"/><data column="0" line="2" value="xstringb(orig(1),orig(2),txt,sz(1),sz(2),'fill');"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="23"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.1"/><data column="0" line="1" realPart="1.0E-5"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0E-5"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="340.0"/><data column="0" line="1" realPart="340.0"/><data column="0" line="2" realPart="380.71"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="226.29"/><data column="0" line="1" realPart="172.0"/><data column="0" line="2" realPart="172.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="14"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="380.71066"/><data column="0" line="1" realPart="172.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.3333333333333333"/><data column="1" line="0" realPart="0.3333333333333333"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="5.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="23"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="1.0"/><data column="0" line="1" realPart="1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabBoolean height="1" width="3"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/><data column="2" line="0" value="false"/></ScilabBoolean><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="380.71"/><data column="0" line="1" realPart="399.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="172.0"/><data column="0" line="1" realPart="172.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="380.71"/><data column="0" line="1" realPart="380.71"/><data column="0" line="2" realPart="340.0"/><data column="0" line="3" realPart="340.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="172.0"/><data column="0" line="1" realPart="302.0"/><data column="0" line="2" realPart="302.0"/><data column="0" line="3" realPart="277.71"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="2.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value="scicos4.4"/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="48.0" width="40.0" x="860.0" y="20.0"/></BasicBlock><CommandPort connectable="0" connectedLinkId="70" dataType="UNKNOW_TYPE" id="5678f95b:130d8f27016:-7e41" ordering="1" parent="5678f95b:130d8f27016:-7e71" style="CommandPort;align=center;labelPosition=center;verticalLabelPosition=top;rotation=90;spacingBottom=5"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="48.0"/></CommandPort><CommandControlLink id="5678f95b:130d8f27016:-7e6f"><mxGeometry as="geometry" x="270.0" y="-260.0"><mxPoint as="sourcePoint" x="880.0" y="66.0"/><mxPoint as="targetPoint" x="880.0" y="100.0"/><Array as="points" scilabClass=""><mxPoint x="880.0" y="100.0"/></Array></mxGeometry><mxCell as="parent" id="5678f95b:130d8f27016:-8000" parent="5678f95b:130d8f27016:-7fff"/><CommandPort as="source" connectable="0" connectedLinkId="70" dataType="UNKNOW_TYPE" id="5678f95b:130d8f27016:-7e41" ordering="1" parent="5678f95b:130d8f27016:-7e71" style="CommandPort;align=center;labelPosition=center;verticalLabelPosition=top;rotation=90;spacingBottom=5"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="48.0"/></CommandPort><ControlPort as="target" connectable="0" connectedLinkId="70" dataType="UNKNOW_TYPE" id="5678f95b:130d8f27016:-7cc9" ordering="1" parent="5678f95b:130d8f27016:-7e75" style="ControlPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=90;spacingTop=5"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort></CommandControlLink><Summation dependsOnU="1" id="5678f95b:130d8f27016:-7e1b" interfaceFunctionName="SUMMATION" ordering="27" parent="5678f95b:130d8f27016:-8000" simulationFunctionName="summation" simulationFunctionType="C_OR_FORTRAN" style="SUMMATION"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="[1;-1]"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="2" width="1"><data column="0" line="0" realPart="1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="620.0" y="272.0"/></Summation><ExplicitOutputPort connectable="0" connectedLinkId="75" dataType="REAL_MATRIX" id="5678f95b:130d8f27016:-7e1a" ordering="1" parent="5678f95b:130d8f27016:-7e1b" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ExplicitInputPort connectable="0" connectedLinkId="86" dataType="REAL_MATRIX" id="5678f95b:130d8f27016:-7e19" ordering="1" parent="5678f95b:130d8f27016:-7e1b" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0" value="+"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ExplicitInputPort><ExplicitInputPort connectable="0" connectedLinkId="73" dataType="REAL_MATRIX" id="5678f95b:130d8f27016:-7e18" ordering="2" parent="5678f95b:130d8f27016:-7e1b" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0" value="-"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="26.0"/></ExplicitInputPort><SplitBlock id="5678f95b:130d8f27016:-7e0f" ordering="28" parent="5678f95b:130d8f27016:-8000" simulationFunctionType="DEFAULT"><mxGeometry as="geometry" height="7.0" width="7.0" x="437.0" y="407.0"/></SplitBlock><ExplicitInputPort connectable="0" connectedLinkId="71" dataType="UNKNOW_TYPE" id="5678f95b:130d8f27016:-7e0e" ordering="1" parent="5678f95b:130d8f27016:-7e0f" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ExplicitInputPort><ExplicitOutputPort connectable="0" connectedLinkId="72" dataType="UNKNOW_TYPE" id="5678f95b:130d8f27016:-7e0d" ordering="1" parent="5678f95b:130d8f27016:-7e0f" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitOutputPort connectable="0" connectedLinkId="73" dataType="UNKNOW_TYPE" id="5678f95b:130d8f27016:-7e0c" ordering="2" parent="5678f95b:130d8f27016:-7e0f" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitLink id="5678f95b:130d8f27016:-7e0b"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass=""/></mxGeometry><mxCell as="parent" id="5678f95b:130d8f27016:-8000" parent="5678f95b:130d8f27016:-7fff"/><ExplicitOutputPort as="source" connectable="0" connectedLinkId="71" dataType="UNKNOW_TYPE" id="5678f95b:130d8f27016:-7e87" ordering="1" parent="5678f95b:130d8f27016:-7e89" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitInputPort as="target" connectable="0" connectedLinkId="71" dataType="UNKNOW_TYPE" id="5678f95b:130d8f27016:-7e0e" ordering="1" parent="5678f95b:130d8f27016:-7e0f" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ExplicitInputPort></ExplicitLink><ExplicitLink id="5678f95b:130d8f27016:-7e0a"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass=""/></mxGeometry><mxCell as="parent" id="5678f95b:130d8f27016:-8000" parent="5678f95b:130d8f27016:-7fff"/><ExplicitOutputPort as="source" connectable="0" connectedLinkId="72" dataType="UNKNOW_TYPE" id="5678f95b:130d8f27016:-7e0d" ordering="1" parent="5678f95b:130d8f27016:-7e0f" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitInputPort as="target" connectable="0" connectedLinkId="72" dataColumns="1" dataType="REAL_MATRIX" id="5678f95b:130d8f27016:-7ea2" ordering="1" parent="5678f95b:130d8f27016:-7ea4" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort></ExplicitLink><ExplicitLink id="5678f95b:130d8f27016:-7e10"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="616.0" y="302.0"/><mxPoint as="targetPoint" x="440.0" y="410.0"/><Array as="points" scilabClass=""><mxPoint x="440.0" y="380.0"/><mxPoint x="450.0" y="380.0"/><mxPoint x="560.0" y="380.0"/><mxPoint x="560.0" y="300.0"/></Array></mxGeometry><mxCell as="parent" id="5678f95b:130d8f27016:-8000" parent="5678f95b:130d8f27016:-7fff"/><ExplicitOutputPort as="source" connectable="0" connectedLinkId="73" dataType="UNKNOW_TYPE" id="5678f95b:130d8f27016:-7e0c" ordering="2" parent="5678f95b:130d8f27016:-7e0f" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitInputPort as="target" connectable="0" connectedLinkId="73" dataType="REAL_MATRIX" id="5678f95b:130d8f27016:-7e18" ordering="2" parent="5678f95b:130d8f27016:-7e1b" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0" value="-"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="26.0"/></ExplicitInputPort></ExplicitLink><GainBlock dependsOnU="1" id="5678f95b:130d8f27016:-7e02" ordering="29" parent="5678f95b:130d8f27016:-8000" simulationFunctionName="gain" simulationFunctionType="DEFAULT" value="1/2000"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="1/2000"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="5.0E-4"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="50.0" width="40.0" x="780.0" y="270.0"/></GainBlock><ExplicitOutputPort connectable="0" connectedLinkId="96" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5678f95b:130d8f27016:-7df1" ordering="1" parent="5678f95b:130d8f27016:-7e02" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ExplicitInputPort connectable="0" connectedLinkId="74" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5678f95b:130d8f27016:-7df2" ordering="1" parent="5678f95b:130d8f27016:-7e02" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><BasicBlock dependsOnU="1" id="5678f95b:130d8f27016:-7dff" interfaceFunctionName="POWBLK_f" ordering="30" parent="5678f95b:130d8f27016:-8000" simulationFunctionName="powblk" simulationFunctionType="DEFAULT" style="POWBLK_f"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="2"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="50.0" width="50.0" x="690.0" y="270.0"/></BasicBlock><ExplicitOutputPort connectable="0" connectedLinkId="74" dataColumns="1" dataType="REAL_MATRIX" id="5678f95b:130d8f27016:-7dfe" ordering="1" parent="5678f95b:130d8f27016:-7dff" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0"><mxGeometry as="geometry" height="8.0" width="8.0" x="50.0" y="16.0"/></ExplicitOutputPort><ExplicitInputPort connectable="0" connectedLinkId="75" dataColumns="1" dataType="REAL_MATRIX" id="5678f95b:130d8f27016:-7dfd" ordering="1" parent="5678f95b:130d8f27016:-7dff" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitLink id="5678f95b:130d8f27016:-7dfc"><mxGeometry as="geometry" x="440.0" y="220.0"><mxPoint as="sourcePoint" x="714.0" y="290.0"/><mxPoint as="targetPoint" x="750.0" y="290.0"/></mxGeometry><mxCell as="parent" id="5678f95b:130d8f27016:-8000" parent="5678f95b:130d8f27016:-7fff"/><ExplicitOutputPort as="source" connectable="0" connectedLinkId="74" dataColumns="1" dataType="REAL_MATRIX" id="5678f95b:130d8f27016:-7dfe" ordering="1" parent="5678f95b:130d8f27016:-7dff" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0"><mxGeometry as="geometry" height="8.0" width="8.0" x="50.0" y="16.0"/></ExplicitOutputPort><ExplicitInputPort as="target" connectable="0" connectedLinkId="74" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5678f95b:130d8f27016:-7df2" ordering="1" parent="5678f95b:130d8f27016:-7e02" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort></ExplicitLink><ExplicitLink id="5678f95b:130d8f27016:-7df4"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="664.0" y="292.0"/><mxPoint as="targetPoint" x="680.0" y="290.0"/></mxGeometry><mxCell as="parent" id="5678f95b:130d8f27016:-8000" parent="5678f95b:130d8f27016:-7fff"/><ExplicitOutputPort as="source" connectable="0" connectedLinkId="75" dataType="REAL_MATRIX" id="5678f95b:130d8f27016:-7e1a" ordering="1" parent="5678f95b:130d8f27016:-7e1b" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ExplicitInputPort as="target" connectable="0" connectedLinkId="75" dataColumns="1" dataType="REAL_MATRIX" id="5678f95b:130d8f27016:-7dfd" ordering="1" parent="5678f95b:130d8f27016:-7dff" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort></ExplicitLink><BasicBlock dependsOnU="1" id="5678f95b:130d8f27016:-7dd1" interfaceFunctionName="CurrentSensor" ordering="31" parent="5678f95b:130d8f27016:-8000" simulationFunctionName="CurrentSensor" simulationFunctionType="DEFAULT" style="CurrentSensor"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CurrentSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="i"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="360.0" y="180.0"/></BasicBlock><ImplicitOutputPort connectable="0" connectedLinkId="81" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5678f95b:130d8f27016:-7dd0" ordering="1" parent="5678f95b:130d8f27016:-7dd1" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="6.0"/></ImplicitOutputPort><ExplicitOutputPort connectable="0" connectedLinkId="95" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5678f95b:130d8f27016:-7dcf" ordering="2" parent="5678f95b:130d8f27016:-7dd1" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="26.0"/></ExplicitOutputPort><ImplicitInputPort connectable="0" connectedLinkId="87" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5678f95b:130d8f27016:-7dce" ordering="1" parent="5678f95b:130d8f27016:-7dd1" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="5678f95b:130d8f27016:-7dba" interfaceFunctionName="PotentialSensor" ordering="32" parent="5678f95b:130d8f27016:-8000" simulationFunctionName="PotentialSensor" simulationFunctionType="DEFAULT" style="PotentialSensor"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="PotentialSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="v"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="500.0" y="180.0"/></BasicBlock><ExplicitOutputPort connectable="0" connectedLinkId="84" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5678f95b:130d8f27016:-7db9" ordering="1" parent="5678f95b:130d8f27016:-7dba" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ImplicitInputPort connectable="0" connectedLinkId="83" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5678f95b:130d8f27016:-7db8" ordering="1" parent="5678f95b:130d8f27016:-7dba" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="5678f95b:130d8f27016:-7da2" interfaceFunctionName="Resistor" ordering="33" parent="5678f95b:130d8f27016:-8000" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="2000"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="2000.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="2000.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="390.0" y="320.0"/></BasicBlock><ImplicitOutputPort connectable="0" connectedLinkId="79" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5678f95b:130d8f27016:-7da1" ordering="1" parent="5678f95b:130d8f27016:-7da2" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><ImplicitInputPort connectable="0" connectedLinkId="78" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5678f95b:130d8f27016:-7da0" ordering="1" parent="5678f95b:130d8f27016:-7da2" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><SplitBlock id="5678f95b:130d8f27016:-7d98" ordering="34" parent="5678f95b:130d8f27016:-8000" simulationFunctionType="DEFAULT"><mxGeometry as="geometry" height="7.0" width="7.0" x="357.0" y="337.0"/></SplitBlock><ImplicitInputPort connectable="0" connectedLinkId="76" dataType="UNKNOW_TYPE" id="5678f95b:130d8f27016:-7d97" ordering="1" parent="5678f95b:130d8f27016:-7d98" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort connectable="0" connectedLinkId="77" dataType="UNKNOW_TYPE" id="5678f95b:130d8f27016:-7d96" ordering="1" parent="5678f95b:130d8f27016:-7d98" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort connectable="0" connectedLinkId="78" dataType="UNKNOW_TYPE" id="5678f95b:130d8f27016:-7d95" ordering="2" parent="5678f95b:130d8f27016:-7d98" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="5678f95b:130d8f27016:-7d94"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass=""/></mxGeometry><mxCell as="parent" id="5678f95b:130d8f27016:-8000" parent="5678f95b:130d8f27016:-7fff"/><ImplicitOutputPort as="source" connectable="0" connectedLinkId="76" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5678f95b:130d8f27016:-7f1c" ordering="1" parent="5678f95b:130d8f27016:-7fa0" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><ImplicitInputPort as="target" connectable="0" connectedLinkId="76" dataType="UNKNOW_TYPE" id="5678f95b:130d8f27016:-7d97" ordering="1" parent="5678f95b:130d8f27016:-7d98" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort></ImplicitLink><ImplicitLink id="5678f95b:130d8f27016:-7d93"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass=""><mxPoint x="360.0" y="340.0"/></Array></mxGeometry><mxCell as="parent" id="5678f95b:130d8f27016:-8000" parent="5678f95b:130d8f27016:-7fff"/><ImplicitOutputPort as="source" connectable="0" connectedLinkId="77" dataType="UNKNOW_TYPE" id="5678f95b:130d8f27016:-7d96" ordering="1" parent="5678f95b:130d8f27016:-7d98" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitInputPort as="target" connectable="0" connectedLinkId="77" dataType="UNKNOW_TYPE" id="5678f95b:130d8f27016:-7f35" ordering="1" parent="5678f95b:130d8f27016:-7f36" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort></ImplicitLink><ImplicitLink id="5678f95b:130d8f27016:-7d99"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="386.0" y="340.0"/><mxPoint as="targetPoint" x="360.0" y="340.0"/></mxGeometry><mxCell as="parent" id="5678f95b:130d8f27016:-8000" parent="5678f95b:130d8f27016:-7fff"/><ImplicitOutputPort as="source" connectable="0" connectedLinkId="78" dataType="UNKNOW_TYPE" id="5678f95b:130d8f27016:-7d95" ordering="2" parent="5678f95b:130d8f27016:-7d98" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitInputPort as="target" connectable="0" connectedLinkId="78" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5678f95b:130d8f27016:-7da0" ordering="1" parent="5678f95b:130d8f27016:-7da2" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort></ImplicitLink><SplitBlock id="5678f95b:130d8f27016:-7d8f" ordering="35" parent="5678f95b:130d8f27016:-8000" simulationFunctionType="DEFAULT"><mxGeometry as="geometry" height="7.0" width="7.0" x="477.0" y="197.0"/></SplitBlock><ImplicitInputPort connectable="0" connectedLinkId="79" dataType="UNKNOW_TYPE" id="5678f95b:130d8f27016:-7d8e" ordering="1" parent="5678f95b:130d8f27016:-7d8f" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort connectable="0" connectedLinkId="80" dataType="UNKNOW_TYPE" id="5678f95b:130d8f27016:-7d8d" ordering="1" parent="5678f95b:130d8f27016:-7d8f" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort connectable="0" connectedLinkId="82" dataType="UNKNOW_TYPE" id="5678f95b:130d8f27016:-7d8c" ordering="2" parent="5678f95b:130d8f27016:-7d8f" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="5678f95b:130d8f27016:-7d8b"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass=""><mxPoint x="470.0" y="340.0"/><mxPoint x="480.0" y="340.0"/></Array></mxGeometry><mxCell as="parent" id="5678f95b:130d8f27016:-8000" parent="5678f95b:130d8f27016:-7fff"/><ImplicitOutputPort as="source" connectable="0" connectedLinkId="79" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5678f95b:130d8f27016:-7da1" ordering="1" parent="5678f95b:130d8f27016:-7da2" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><ImplicitInputPort as="target" connectable="0" connectedLinkId="79" dataType="UNKNOW_TYPE" id="5678f95b:130d8f27016:-7d8e" ordering="1" parent="5678f95b:130d8f27016:-7d8f" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort></ImplicitLink><ImplicitLink id="5678f95b:130d8f27016:-7d8a"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass=""/></mxGeometry><mxCell as="parent" id="5678f95b:130d8f27016:-8000" parent="5678f95b:130d8f27016:-7fff"/><ImplicitOutputPort as="source" connectable="0" connectedLinkId="80" dataType="UNKNOW_TYPE" id="5678f95b:130d8f27016:-7d8d" ordering="1" parent="5678f95b:130d8f27016:-7d8f" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitInputPort as="target" connectable="0" connectedLinkId="80" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5678f95b:130d8f27016:-7f11" ordering="1" parent="5678f95b:130d8f27016:-7fa9" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=top;spacingBottom=5;rotation=270"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitInputPort></ImplicitLink><SplitBlock id="5678f95b:130d8f27016:-7d88" ordering="36" parent="5678f95b:130d8f27016:-8000" simulationFunctionType="DEFAULT"><mxGeometry as="geometry" height="7.0" width="7.0" x="477.0" y="197.0"/></SplitBlock><ImplicitInputPort connectable="0" connectedLinkId="81" dataType="UNKNOW_TYPE" id="5678f95b:130d8f27016:-7d87" ordering="1" parent="5678f95b:130d8f27016:-7d88" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort connectable="0" connectedLinkId="82" dataType="UNKNOW_TYPE" id="5678f95b:130d8f27016:-7d86" ordering="1" parent="5678f95b:130d8f27016:-7d88" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort connectable="0" connectedLinkId="83" dataType="UNKNOW_TYPE" id="5678f95b:130d8f27016:-7d85" ordering="2" parent="5678f95b:130d8f27016:-7d88" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="5678f95b:130d8f27016:-7d84"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass=""/></mxGeometry><mxCell as="parent" id="5678f95b:130d8f27016:-8000" parent="5678f95b:130d8f27016:-7fff"/><ImplicitOutputPort as="source" connectable="0" connectedLinkId="81" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5678f95b:130d8f27016:-7dd0" ordering="1" parent="5678f95b:130d8f27016:-7dd1" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort as="target" connectable="0" connectedLinkId="81" dataType="UNKNOW_TYPE" id="5678f95b:130d8f27016:-7d87" ordering="1" parent="5678f95b:130d8f27016:-7d88" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort></ImplicitLink><ImplicitLink id="5678f95b:130d8f27016:-7d83"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass=""/></mxGeometry><mxCell as="parent" id="5678f95b:130d8f27016:-8000" parent="5678f95b:130d8f27016:-7fff"/><ImplicitOutputPort as="source" connectable="0" connectedLinkId="82" dataType="UNKNOW_TYPE" id="5678f95b:130d8f27016:-7d8c" ordering="2" parent="5678f95b:130d8f27016:-7d8f" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort as="target" connectable="0" connectedLinkId="82" dataType="UNKNOW_TYPE" id="5678f95b:130d8f27016:-7d86" ordering="1" parent="5678f95b:130d8f27016:-7d88" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort></ImplicitLink><ImplicitLink id="5678f95b:130d8f27016:-7d89"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="496.0" y="200.0"/><mxPoint as="targetPoint" x="480.0" y="200.0"/></mxGeometry><mxCell as="parent" id="5678f95b:130d8f27016:-8000" parent="5678f95b:130d8f27016:-7fff"/><ImplicitOutputPort as="source" connectable="0" connectedLinkId="83" dataType="UNKNOW_TYPE" id="5678f95b:130d8f27016:-7d85" ordering="2" parent="5678f95b:130d8f27016:-7d88" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitInputPort as="target" connectable="0" connectedLinkId="83" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5678f95b:130d8f27016:-7db8" ordering="1" parent="5678f95b:130d8f27016:-7dba" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort></ImplicitLink><SplitBlock id="5678f95b:130d8f27016:-7d80" ordering="37" parent="5678f95b:130d8f27016:-8000" simulationFunctionType="DEFAULT"><mxGeometry as="geometry" height="7.0" width="7.0" x="557.0" y="197.0"/></SplitBlock><ExplicitInputPort connectable="0" connectedLinkId="84" dataType="UNKNOW_TYPE" id="5678f95b:130d8f27016:-7d7f" ordering="1" parent="5678f95b:130d8f27016:-7d80" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ExplicitInputPort><ExplicitOutputPort connectable="0" connectedLinkId="85" dataType="UNKNOW_TYPE" id="5678f95b:130d8f27016:-7d7e" ordering="1" parent="5678f95b:130d8f27016:-7d80" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitOutputPort connectable="0" connectedLinkId="86" dataType="UNKNOW_TYPE" id="5678f95b:130d8f27016:-7d7d" ordering="2" parent="5678f95b:130d8f27016:-7d80" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitLink id="5678f95b:130d8f27016:-7d7c"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass=""/></mxGeometry><mxCell as="parent" id="5678f95b:130d8f27016:-8000" parent="5678f95b:130d8f27016:-7fff"/><ExplicitOutputPort as="source" connectable="0" connectedLinkId="84" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5678f95b:130d8f27016:-7db9" ordering="1" parent="5678f95b:130d8f27016:-7dba" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ExplicitInputPort as="target" connectable="0" connectedLinkId="84" dataType="UNKNOW_TYPE" id="5678f95b:130d8f27016:-7d7f" ordering="1" parent="5678f95b:130d8f27016:-7d80" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ExplicitInputPort></ExplicitLink><ExplicitLink id="5678f95b:130d8f27016:-7d7b"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass=""/></mxGeometry><mxCell as="parent" id="5678f95b:130d8f27016:-8000" parent="5678f95b:130d8f27016:-7fff"/><ExplicitOutputPort as="source" connectable="0" connectedLinkId="85" dataType="UNKNOW_TYPE" id="5678f95b:130d8f27016:-7d7e" ordering="1" parent="5678f95b:130d8f27016:-7d80" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitInputPort as="target" connectable="0" connectedLinkId="85" dataColumns="1" dataType="REAL_MATRIX" id="5678f95b:130d8f27016:-7ec2" ordering="1" parent="5678f95b:130d8f27016:-7ec4" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort></ExplicitLink><ExplicitLink id="5678f95b:130d8f27016:-7d81"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="616.0" y="282.0"/><mxPoint as="targetPoint" x="560.0" y="200.0"/><Array as="points" scilabClass=""><mxPoint x="560.0" y="280.0"/></Array></mxGeometry><mxCell as="parent" id="5678f95b:130d8f27016:-8000" parent="5678f95b:130d8f27016:-7fff"/><ExplicitOutputPort as="source" connectable="0" connectedLinkId="86" dataType="UNKNOW_TYPE" id="5678f95b:130d8f27016:-7d7d" ordering="2" parent="5678f95b:130d8f27016:-7d80" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitInputPort as="target" connectable="0" connectedLinkId="86" dataType="REAL_MATRIX" id="5678f95b:130d8f27016:-7e19" ordering="1" parent="5678f95b:130d8f27016:-7e1b" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0" value="+"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ExplicitInputPort></ExplicitLink><ImplicitLink id="5678f95b:130d8f27016:-7d7a"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="356.0" y="200.0"/><mxPoint as="targetPoint" x="300.0" y="200.0"/></mxGeometry><mxCell as="parent" id="5678f95b:130d8f27016:-8000" parent="5678f95b:130d8f27016:-7fff"/><ImplicitOutputPort as="source" connectable="0" connectedLinkId="87" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5678f95b:130d8f27016:-7fdb" ordering="1" parent="5678f95b:130d8f27016:-7fdc" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="36.0"/></ImplicitOutputPort><ImplicitInputPort as="target" connectable="0" connectedLinkId="87" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5678f95b:130d8f27016:-7dce" ordering="1" parent="5678f95b:130d8f27016:-7dd1" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort></ImplicitLink><BasicBlock angle="270" dependsOnU="1" id="5678f95b:130d8f27016:-7d75" interfaceFunctionName="CurrentSensor" ordering="38" parent="5678f95b:130d8f27016:-8000" simulationFunctionName="CurrentSensor" simulationFunctionType="DEFAULT" style="CurrentSensor;rotation=270"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CurrentSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="i"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="70.0" y="230.0"/></BasicBlock><ImplicitOutputPort connectable="0" connectedLinkId="90" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5678f95b:130d8f27016:-7d74" ordering="1" parent="5678f95b:130d8f27016:-7d75" style="ImplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=270;spacingTop=5"><mxGeometry as="geometry" height="8.0" width="8.0" x="6.0" y="-8.0"/></ImplicitOutputPort><ExplicitOutputPort connectable="0" connectedLinkId="94" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5678f95b:130d8f27016:-7d73" ordering="2" parent="5678f95b:130d8f27016:-7d75" style="ExplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=270;spacingTop=5"><mxGeometry as="geometry" height="8.0" width="8.0" x="26.0" y="-8.0"/></ExplicitOutputPort><ImplicitInputPort connectable="0" connectedLinkId="91" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5678f95b:130d8f27016:-7d72" ordering="1" parent="5678f95b:130d8f27016:-7d75" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=top;rotation=270;spacingBottom=5"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitInputPort><SplitBlock id="5678f95b:130d8f27016:-7d67" ordering="39" parent="5678f95b:130d8f27016:-8000" simulationFunctionType="DEFAULT"><mxGeometry as="geometry" height="7.0" width="7.0" x="106.5" y="216.5"/></SplitBlock><ImplicitInputPort connectable="0" connectedLinkId="88" dataType="UNKNOW_TYPE" id="5678f95b:130d8f27016:-7d66" ordering="1" parent="5678f95b:130d8f27016:-7d67" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort connectable="0" connectedLinkId="89" dataType="UNKNOW_TYPE" id="5678f95b:130d8f27016:-7d65" ordering="1" parent="5678f95b:130d8f27016:-7d67" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort connectable="0" connectedLinkId="90" dataType="UNKNOW_TYPE" id="5678f95b:130d8f27016:-7d64" ordering="2" parent="5678f95b:130d8f27016:-7d67" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="5678f95b:130d8f27016:-7d63"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass=""/></mxGeometry><mxCell as="parent" id="5678f95b:130d8f27016:-8000" parent="5678f95b:130d8f27016:-7fff"/><ImplicitInputPort as="source" connectable="0" connectedLinkId="88" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5678f95b:130d8f27016:-7f21" ordering="1" parent="5678f95b:130d8f27016:-7fc0" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitInputPort as="target" connectable="0" connectedLinkId="88" dataType="UNKNOW_TYPE" id="5678f95b:130d8f27016:-7d66" ordering="1" parent="5678f95b:130d8f27016:-7d67" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort></ImplicitLink><ImplicitLink id="5678f95b:130d8f27016:-7d62"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass=""><mxPoint x="110.0" y="220.0"/><mxPoint x="110.0" y="140.0"/></Array></mxGeometry><mxCell as="parent" id="5678f95b:130d8f27016:-8000" parent="5678f95b:130d8f27016:-7fff"/><ImplicitOutputPort as="source" connectable="0" connectedLinkId="89" dataType="UNKNOW_TYPE" id="5678f95b:130d8f27016:-7d65" ordering="1" parent="5678f95b:130d8f27016:-7d67" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitInputPort as="target" connectable="0" connectedLinkId="89" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5678f95b:130d8f27016:-7eed" ordering="1" parent="5678f95b:130d8f27016:-7ef0" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort></ImplicitLink><ImplicitLink id="5678f95b:130d8f27016:-7d68"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="80.0" y="226.0"/><mxPoint as="targetPoint" x="120.0" y="220.0"/><Array as="points" scilabClass=""><mxPoint x="80.0" y="220.0"/></Array></mxGeometry><mxCell as="parent" id="5678f95b:130d8f27016:-8000" parent="5678f95b:130d8f27016:-7fff"/><ImplicitOutputPort as="source" connectable="0" connectedLinkId="90" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5678f95b:130d8f27016:-7d74" ordering="1" parent="5678f95b:130d8f27016:-7d75" style="ImplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=270;spacingTop=5"><mxGeometry as="geometry" height="8.0" width="8.0" x="6.0" y="-8.0"/></ImplicitOutputPort><ImplicitOutputPort as="target" connectable="0" connectedLinkId="90" dataType="UNKNOW_TYPE" id="5678f95b:130d8f27016:-7d64" ordering="2" parent="5678f95b:130d8f27016:-7d67" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort></ImplicitLink><ImplicitLink id="5678f95b:130d8f27016:-7d61"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="90.0" y="296.0"/><mxPoint as="targetPoint" x="90.0" y="270.0"/><Array as="points" scilabClass=""><mxPoint x="90.0" y="270.0"/></Array></mxGeometry><mxCell as="parent" id="5678f95b:130d8f27016:-8000" parent="5678f95b:130d8f27016:-7fff"/><ImplicitInputPort as="source" connectable="0" connectedLinkId="91" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5678f95b:130d8f27016:-7f25" ordering="1" parent="5678f95b:130d8f27016:-7fca" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;spacingTop=5;rotation=90"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitInputPort as="target" connectable="0" connectedLinkId="91" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5678f95b:130d8f27016:-7d72" ordering="1" parent="5678f95b:130d8f27016:-7d75" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=top;rotation=270;spacingBottom=5"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitInputPort></ImplicitLink><BasicBlock dependsOnU="1" id="5678f95b:130d8f27016:-7d5a" interfaceFunctionName="CSCOPE" ordering="40" parent="5678f95b:130d8f27016:-8000" simulationFunctionName="cscope" simulationFunctionType="C_OR_FORTRAN" style="CSCOPE"><ScilabString as="exprs" height="10" width="1"><data column="0" line="0" value="1 3 5 7 9 11 13 15"/><data column="0" line="1" value="-1"/><data column="0" line="2" value="[]"/><data column="0" line="3" value="[600;400]"/><data column="0" line="4" value="-0.01"/><data column="0" line="5" value="0"/><data column="0" line="6" value="30"/><data column="0" line="7" value="20"/><data column="0" line="8" value="0"/><data column="0" line="9" value=""/></ScilabString><ScilabDouble as="realParameters" height="4" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="-0.01"/><data column="0" line="2" realPart="0.0"/><data column="0" line="3" realPart="30.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="15" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="1.0"/><data column="0" line="4" realPart="3.0"/><data column="0" line="5" realPart="5.0"/><data column="0" line="6" realPart="7.0"/><data column="0" line="7" realPart="9.0"/><data column="0" line="8" realPart="11.0"/><data column="0" line="9" realPart="13.0"/><data column="0" line="10" realPart="15.0"/><data column="0" line="11" realPart="-1.0"/><data column="0" line="12" realPart="-1.0"/><data column="0" line="13" realPart="600.0"/><data column="0" line="14" realPart="400.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="30.0" width="40.0" x="420.0" y="280.0"/></BasicBlock><ExplicitInputPort connectable="0" connectedLinkId="95" dataColumns="1" dataType="REAL_MATRIX" id="5678f95b:130d8f27016:-7d24" ordering="1" parent="5678f95b:130d8f27016:-7d5a" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ControlPort connectable="0" connectedLinkId="92" dataType="UNKNOW_TYPE" id="5678f95b:130d8f27016:-7d23" ordering="1" parent="5678f95b:130d8f27016:-7d5a" style="ControlPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=90;spacingTop=5"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><BasicBlock blockType="h" id="5678f95b:130d8f27016:-7d57" interfaceFunctionName="CLOCK_c" ordering="41" parent="5678f95b:130d8f27016:-8000" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="1.0E-6"/><data column="1" line="0" realPart="1.0E-6"/><data column="2" line="0" realPart="1.0E-10"/><data column="3" line="0" realPart="100001.0"/><data column="4" line="0" realPart="0.0"/><data column="5" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="4"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="2.0"/><data column="3" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="4"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="10.0"/><data column="3" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="14"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="399.0"/><data column="1" line="0" realPart="162.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value=" "/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="23"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="14"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="320.0"/><data column="1" line="0" realPart="232.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.1"/><data column="0" line="1" value="0.00001"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="3" width="1"><data column="0" line="0" value="dt=o.model.rpar(1);"/><data column="0" line="1" value="txt=['Delay';string(dt)];"/><data column="0" line="2" value="xstringb(orig(1),orig(2),txt,sz(1),sz(2),'fill');"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="23"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.1"/><data column="0" line="1" realPart="1.0E-5"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0E-5"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="340.0"/><data column="0" line="1" realPart="340.0"/><data column="0" line="2" realPart="380.71"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="226.29"/><data column="0" line="1" realPart="172.0"/><data column="0" line="2" realPart="172.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="14"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="380.71066"/><data column="0" line="1" realPart="172.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.3333333333333333"/><data column="1" line="0" realPart="0.3333333333333333"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="5.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="23"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="1.0"/><data column="0" line="1" realPart="1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabBoolean height="1" width="3"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/><data column="2" line="0" value="false"/></ScilabBoolean><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="380.71"/><data column="0" line="1" realPart="399.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="172.0"/><data column="0" line="1" realPart="172.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="380.71"/><data column="0" line="1" realPart="380.71"/><data column="0" line="2" realPart="340.0"/><data column="0" line="3" realPart="340.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="172.0"/><data column="0" line="1" realPart="302.0"/><data column="0" line="2" realPart="302.0"/><data column="0" line="3" realPart="277.71"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="2.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value="scicos4.4"/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="30.0" width="40.0" x="420.0" y="220.0"/></BasicBlock><CommandPort connectable="0" connectedLinkId="92" dataType="UNKNOW_TYPE" id="5678f95b:130d8f27016:-7d56" ordering="1" parent="5678f95b:130d8f27016:-7d57" style="CommandPort;align=center;labelPosition=center;verticalLabelPosition=top;rotation=90;spacingBottom=5"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="30.0"/></CommandPort><CommandControlLink id="5678f95b:130d8f27016:-7d55"><mxGeometry as="geometry" x="-440.0" y="10.0"><mxPoint as="sourcePoint" x="440.0" y="232.0"/><mxPoint as="targetPoint" x="440.0" y="260.0"/></mxGeometry><mxCell as="parent" id="5678f95b:130d8f27016:-8000" parent="5678f95b:130d8f27016:-7fff"/><CommandPort as="source" connectable="0" connectedLinkId="92" dataType="UNKNOW_TYPE" id="5678f95b:130d8f27016:-7d56" ordering="1" parent="5678f95b:130d8f27016:-7d57" style="CommandPort;align=center;labelPosition=center;verticalLabelPosition=top;rotation=90;spacingBottom=5"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="30.0"/></CommandPort><ControlPort as="target" connectable="0" connectedLinkId="92" dataType="UNKNOW_TYPE" id="5678f95b:130d8f27016:-7d23" ordering="1" parent="5678f95b:130d8f27016:-7d5a" style="ControlPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=90;spacingTop=5"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort></CommandControlLink><BasicBlock angle="270" dependsOnU="1" id="5678f95b:130d8f27016:-7d4e" interfaceFunctionName="CSCOPE" ordering="42" parent="5678f95b:130d8f27016:-8000" simulationFunctionName="cscope" simulationFunctionType="C_OR_FORTRAN" style="CSCOPE;rotation=270"><ScilabString as="exprs" height="10" width="1"><data column="0" line="0" value="1 3 5 7 9 11 13 15"/><data column="0" line="1" value="-1"/><data column="0" line="2" value="[]"/><data column="0" line="3" value="[600;400]"/><data column="0" line="4" value="0"/><data column="0" line="5" value="0.001"/><data column="0" line="6" value="30"/><data column="0" line="7" value="20"/><data column="0" line="8" value="0"/><data column="0" line="9" value=""/></ScilabString><ScilabDouble as="realParameters" height="4" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="0.0"/><data column="0" line="2" realPart="0.0010"/><data column="0" line="3" realPart="30.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="15" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="1.0"/><data column="0" line="4" realPart="3.0"/><data column="0" line="5" realPart="5.0"/><data column="0" line="6" realPart="7.0"/><data column="0" line="7" realPart="9.0"/><data column="0" line="8" realPart="11.0"/><data column="0" line="9" realPart="13.0"/><data column="0" line="10" realPart="15.0"/><data column="0" line="11" realPart="-1.0"/><data column="0" line="12" realPart="-1.0"/><data column="0" line="13" realPart="600.0"/><data column="0" line="14" realPart="400.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="80.0" y="110.0"/></BasicBlock><ExplicitInputPort connectable="0" connectedLinkId="94" dataColumns="1" dataType="REAL_MATRIX" id="5678f95b:130d8f27016:-7d20" ordering="1" parent="5678f95b:130d8f27016:-7d4e" style="ExplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=top;rotation=270;spacingBottom=5"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ExplicitInputPort><ControlPort connectable="0" connectedLinkId="93" dataType="UNKNOW_TYPE" id="5678f95b:130d8f27016:-7d1f" ordering="1" parent="5678f95b:130d8f27016:-7d4e" style="ControlPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ControlPort><CommandControlLink id="5678f95b:130d8f27016:-7d49"><mxGeometry as="geometry" y="10.0"><mxPoint as="sourcePoint" x="880.0" y="232.0"/><mxPoint as="targetPoint" x="880.0" y="260.0"/></mxGeometry><mxCell as="parent" id="5678f95b:130d8f27016:-8000" parent="5678f95b:130d8f27016:-7fff"/><CommandPort as="source" connectable="0" connectedLinkId="93" dataType="UNKNOW_TYPE" id="5678f95b:130d8f27016:-7d4a" ordering="1" parent="5678f95b:130d8f27016:-7d4b" style="CommandPort;align=center;labelPosition=center;verticalLabelPosition=top;rotation=90;spacingBottom=5"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="48.0"/></CommandPort><ControlPort as="target" connectable="0" connectedLinkId="93" dataType="UNKNOW_TYPE" id="5678f95b:130d8f27016:-7d1f" ordering="1" parent="5678f95b:130d8f27016:-7d4e" style="ControlPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ControlPort></CommandControlLink><BasicBlock blockType="h" id="5678f95b:130d8f27016:-7d4b" interfaceFunctionName="CLOCK_c" ordering="43" parent="5678f95b:130d8f27016:-8000" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="1.0E-6"/><data column="1" line="0" realPart="1.0E-6"/><data column="2" line="0" realPart="1.0E-10"/><data column="3" line="0" realPart="100001.0"/><data column="4" line="0" realPart="0.0"/><data column="5" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="4"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="2.0"/><data column="3" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="4"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="10.0"/><data column="3" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="14"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="399.0"/><data column="1" line="0" realPart="162.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value=" "/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="23"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="14"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="320.0"/><data column="1" line="0" realPart="232.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.1"/><data column="0" line="1" value="0.00001"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="3" width="1"><data column="0" line="0" value="dt=o.model.rpar(1);"/><data column="0" line="1" value="txt=['Delay';string(dt)];"/><data column="0" line="2" value="xstringb(orig(1),orig(2),txt,sz(1),sz(2),'fill');"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="23"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.1"/><data column="0" line="1" realPart="1.0E-5"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0E-5"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="340.0"/><data column="0" line="1" realPart="340.0"/><data column="0" line="2" realPart="380.71"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="226.29"/><data column="0" line="1" realPart="172.0"/><data column="0" line="2" realPart="172.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="14"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="380.71066"/><data column="0" line="1" realPart="172.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.3333333333333333"/><data column="1" line="0" realPart="0.3333333333333333"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="5.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="23"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="1.0"/><data column="0" line="1" realPart="1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabBoolean height="1" width="3"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/><data column="2" line="0" value="false"/></ScilabBoolean><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="380.71"/><data column="0" line="1" realPart="399.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="172.0"/><data column="0" line="1" realPart="172.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="380.71"/><data column="0" line="1" realPart="380.71"/><data column="0" line="2" realPart="340.0"/><data column="0" line="3" realPart="340.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="172.0"/><data column="0" line="1" realPart="302.0"/><data column="0" line="2" realPart="302.0"/><data column="0" line="3" realPart="277.71"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="2.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value="scicos4.4"/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="48.0" width="40.0" x="20.0" y="80.0"/></BasicBlock><CommandPort connectable="0" connectedLinkId="93" dataType="UNKNOW_TYPE" id="5678f95b:130d8f27016:-7d4a" ordering="1" parent="5678f95b:130d8f27016:-7d4b" style="CommandPort;align=center;labelPosition=center;verticalLabelPosition=top;rotation=90;spacingBottom=5"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="48.0"/></CommandPort><ExplicitLink id="5678f95b:130d8f27016:-7d35"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="100.0" y="226.0"/><mxPoint as="targetPoint" x="90.0" y="160.0"/></mxGeometry><mxCell as="parent" id="5678f95b:130d8f27016:-8000" parent="5678f95b:130d8f27016:-7fff"/><ExplicitOutputPort as="source" connectable="0" connectedLinkId="94" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5678f95b:130d8f27016:-7d73" ordering="2" parent="5678f95b:130d8f27016:-7d75" style="ExplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=270;spacingTop=5"><mxGeometry as="geometry" height="8.0" width="8.0" x="26.0" y="-8.0"/></ExplicitOutputPort><ExplicitInputPort as="target" connectable="0" connectedLinkId="94" dataColumns="1" dataType="REAL_MATRIX" id="5678f95b:130d8f27016:-7d20" ordering="1" parent="5678f95b:130d8f27016:-7d4e" style="ExplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=top;rotation=270;spacingBottom=5"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ExplicitInputPort></ExplicitLink><ExplicitLink id="5678f95b:130d8f27016:-7d34"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="404.0" y="210.0"/><mxPoint as="targetPoint" x="420.0" y="290.0"/><Array as="points" scilabClass=""><mxPoint x="410.0" y="210.0"/><mxPoint x="410.0" y="290.0"/></Array></mxGeometry><mxCell as="parent" id="5678f95b:130d8f27016:-8000" parent="5678f95b:130d8f27016:-7fff"/><ExplicitOutputPort as="source" connectable="0" connectedLinkId="95" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5678f95b:130d8f27016:-7dcf" ordering="2" parent="5678f95b:130d8f27016:-7dd1" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="26.0"/></ExplicitOutputPort><ExplicitInputPort as="target" connectable="0" connectedLinkId="95" dataColumns="1" dataType="REAL_MATRIX" id="5678f95b:130d8f27016:-7d24" ordering="1" parent="5678f95b:130d8f27016:-7d5a" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort></ExplicitLink><BigSom dependsOnU="1" id="5678f95b:130d8f27016:-7d13" interfaceFunctionName="BIGSOM_f" ordering="44" parent="5678f95b:130d8f27016:-8000" simulationFunctionName="sum" simulationFunctionType="TYPE_2" style="BIGSOM_f" value="+"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="[1;1]"/></ScilabString><ScilabDouble as="realParameters" height="2" width="1"><data column="0" line="0" realPart="1.0"/><data column="0" line="1" realPart="1.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="850.0" y="220.0"/></BigSom><ExplicitOutputPort connectable="0" connectedLinkId="100" dataColumns="1" dataType="REAL_MATRIX" id="5678f95b:130d8f27016:-7d12" ordering="1" parent="5678f95b:130d8f27016:-7d13" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ExplicitInputPort connectable="0" connectedLinkId="97" dataColumns="1" dataType="REAL_MATRIX" id="5678f95b:130d8f27016:-7d11" ordering="1" parent="5678f95b:130d8f27016:-7d13" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ExplicitInputPort><ExplicitInputPort connectable="0" connectedLinkId="96" dataColumns="1" dataType="REAL_MATRIX" id="5678f95b:130d8f27016:-7d10" ordering="2" parent="5678f95b:130d8f27016:-7d13" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="26.0"/></ExplicitInputPort><BigSom dependsOnU="1" id="5678f95b:130d8f27016:-7d0b" interfaceFunctionName="BIGSOM_f" ordering="45" parent="5678f95b:130d8f27016:-8000" simulationFunctionName="sum" simulationFunctionType="TYPE_2" style="BIGSOM_f" value="+"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="[1;1]"/></ScilabString><ScilabDouble as="realParameters" height="2" width="1"><data column="0" line="0" realPart="1.0"/><data column="0" line="1" realPart="1.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="940.0" y="260.0"/></BigSom><ExplicitOutputPort connectable="0" connectedLinkId="105" dataColumns="1" dataType="REAL_MATRIX" id="5678f95b:130d8f27016:-7d0a" ordering="1" parent="5678f95b:130d8f27016:-7d0b" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ExplicitInputPort connectable="0" connectedLinkId="100" dataColumns="1" dataType="REAL_MATRIX" id="5678f95b:130d8f27016:-7d09" ordering="1" parent="5678f95b:130d8f27016:-7d0b" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ExplicitInputPort><ExplicitInputPort connectable="0" connectedLinkId="101" dataColumns="1" dataType="REAL_MATRIX" id="5678f95b:130d8f27016:-7d08" ordering="2" parent="5678f95b:130d8f27016:-7d0b" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="26.0"/></ExplicitInputPort><BigSom dependsOnU="1" id="5678f95b:130d8f27016:-7d07" interfaceFunctionName="BIGSOM_f" ordering="46" parent="5678f95b:130d8f27016:-8000" simulationFunctionName="sum" simulationFunctionType="TYPE_2" style="BIGSOM_f" value="+"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="[1;1]"/></ScilabString><ScilabDouble as="realParameters" height="2" width="1"><data column="0" line="0" realPart="1.0"/><data column="0" line="1" realPart="1.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="650.0" y="430.0"/></BigSom><ExplicitOutputPort connectable="0" connectedLinkId="101" dataColumns="1" dataType="REAL_MATRIX" id="5678f95b:130d8f27016:-7d06" ordering="1" parent="5678f95b:130d8f27016:-7d07" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ExplicitInputPort connectable="0" connectedLinkId="98" dataColumns="1" dataType="REAL_MATRIX" id="5678f95b:130d8f27016:-7d05" ordering="1" parent="5678f95b:130d8f27016:-7d07" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ExplicitInputPort><ExplicitInputPort connectable="0" connectedLinkId="99" dataColumns="1" dataType="REAL_MATRIX" id="5678f95b:130d8f27016:-7d04" ordering="2" parent="5678f95b:130d8f27016:-7d07" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="26.0"/></ExplicitInputPort><ExplicitLink id="5678f95b:130d8f27016:-7cf3"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="824.0" y="290.0"/><mxPoint as="targetPoint" x="850.0" y="250.0"/><Array as="points" scilabClass=""><mxPoint x="840.0" y="290.0"/><mxPoint x="840.0" y="250.0"/></Array></mxGeometry><mxCell as="parent" id="5678f95b:130d8f27016:-8000" parent="5678f95b:130d8f27016:-7fff"/><ExplicitOutputPort as="source" connectable="0" connectedLinkId="96" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5678f95b:130d8f27016:-7df1" ordering="1" parent="5678f95b:130d8f27016:-7e02" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ExplicitInputPort as="target" connectable="0" connectedLinkId="96" dataColumns="1" dataType="REAL_MATRIX" id="5678f95b:130d8f27016:-7d10" ordering="2" parent="5678f95b:130d8f27016:-7d13" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="26.0"/></ExplicitInputPort></ExplicitLink><ExplicitLink id="5678f95b:130d8f27016:-7cf2"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="714.0" y="200.0"/><mxPoint as="targetPoint" x="840.0" y="230.0"/><Array as="points" scilabClass=""><mxPoint x="840.0" y="200.0"/><mxPoint x="840.0" y="230.0"/></Array></mxGeometry><mxCell as="parent" id="5678f95b:130d8f27016:-8000" parent="5678f95b:130d8f27016:-7fff"/><ExplicitOutputPort as="source" connectable="0" connectedLinkId="97" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5678f95b:130d8f27016:-7e56" ordering="1" parent="5678f95b:130d8f27016:-7ec7" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ExplicitInputPort as="target" connectable="0" connectedLinkId="97" dataColumns="1" dataType="REAL_MATRIX" id="5678f95b:130d8f27016:-7d11" ordering="1" parent="5678f95b:130d8f27016:-7d13" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ExplicitInputPort></ExplicitLink><ExplicitLink id="5678f95b:130d8f27016:-7ced"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="594.0" y="410.0"/><mxPoint as="targetPoint" x="650.0" y="440.0"/><Array as="points" scilabClass=""><mxPoint x="630.0" y="410.0"/><mxPoint x="630.0" y="440.0"/></Array></mxGeometry><mxCell as="parent" id="5678f95b:130d8f27016:-8000" parent="5678f95b:130d8f27016:-7fff"/><ExplicitOutputPort as="source" connectable="0" connectedLinkId="98" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5678f95b:130d8f27016:-7e4e" ordering="1" parent="5678f95b:130d8f27016:-7ea7" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ExplicitInputPort as="target" connectable="0" connectedLinkId="98" dataColumns="1" dataType="REAL_MATRIX" id="5678f95b:130d8f27016:-7d05" ordering="1" parent="5678f95b:130d8f27016:-7d07" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ExplicitInputPort></ExplicitLink><ExplicitLink id="5678f95b:130d8f27016:-7cec"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="594.0" y="500.0"/><mxPoint as="targetPoint" x="640.0" y="460.0"/><Array as="points" scilabClass=""><mxPoint x="630.0" y="500.0"/><mxPoint x="630.0" y="460.0"/></Array></mxGeometry><mxCell as="parent" id="5678f95b:130d8f27016:-8000" parent="5678f95b:130d8f27016:-7fff"/><ExplicitOutputPort as="source" connectable="0" connectedLinkId="99" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5678f95b:130d8f27016:-7e52" ordering="1" parent="5678f95b:130d8f27016:-7e98" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ExplicitInputPort as="target" connectable="0" connectedLinkId="99" dataColumns="1" dataType="REAL_MATRIX" id="5678f95b:130d8f27016:-7d04" ordering="2" parent="5678f95b:130d8f27016:-7d07" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="26.0"/></ExplicitInputPort></ExplicitLink><ExplicitLink id="5678f95b:130d8f27016:-7ce7"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="894.0" y="240.0"/><mxPoint as="targetPoint" x="940.0" y="270.0"/><Array as="points" scilabClass=""><mxPoint x="910.0" y="240.0"/><mxPoint x="910.0" y="270.0"/></Array></mxGeometry><mxCell as="parent" id="5678f95b:130d8f27016:-8000" parent="5678f95b:130d8f27016:-7fff"/><ExplicitOutputPort as="source" connectable="0" connectedLinkId="100" dataColumns="1" dataType="REAL_MATRIX" id="5678f95b:130d8f27016:-7d12" ordering="1" parent="5678f95b:130d8f27016:-7d13" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ExplicitInputPort as="target" connectable="0" connectedLinkId="100" dataColumns="1" dataType="REAL_MATRIX" id="5678f95b:130d8f27016:-7d09" ordering="1" parent="5678f95b:130d8f27016:-7d0b" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ExplicitInputPort></ExplicitLink><ExplicitLink id="5678f95b:130d8f27016:-7ce6"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="694.0" y="450.0"/><mxPoint as="targetPoint" x="940.0" y="290.0"/><Array as="points" scilabClass=""><mxPoint x="920.0" y="450.0"/><mxPoint x="920.0" y="290.0"/></Array></mxGeometry><mxCell as="parent" id="5678f95b:130d8f27016:-8000" parent="5678f95b:130d8f27016:-7fff"/><ExplicitOutputPort as="source" connectable="0" connectedLinkId="101" dataColumns="1" dataType="REAL_MATRIX" id="5678f95b:130d8f27016:-7d06" ordering="1" parent="5678f95b:130d8f27016:-7d07" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ExplicitInputPort as="target" connectable="0" connectedLinkId="101" dataColumns="1" dataType="REAL_MATRIX" id="5678f95b:130d8f27016:-7d08" ordering="2" parent="5678f95b:130d8f27016:-7d0b" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="26.0"/></ExplicitInputPort></ExplicitLink><BigSom angle="180" dependsOnU="1" id="5678f95b:130d8f27016:-7ce1" interfaceFunctionName="BIGSOM_f" ordering="47" parent="5678f95b:130d8f27016:-8000" simulationFunctionName="sum" simulationFunctionType="TYPE_2" style="BIGSOM_f;rotation=180" value="+"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="[1;1]"/></ScilabString><ScilabDouble as="realParameters" height="2" width="1"><data column="0" line="0" realPart="1.0"/><data column="0" line="1" realPart="1.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="780.0" y="150.0"/></BigSom><ExplicitOutputPort connectable="0" connectedLinkId="106" dataColumns="1" dataType="REAL_MATRIX" id="5678f95b:130d8f27016:-7ce0" ordering="1" parent="5678f95b:130d8f27016:-7ce1" style="ExplicitOutputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=180;spacingLeft=5"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitOutputPort><ExplicitInputPort connectable="0" connectedLinkId="104" dataColumns="1" dataType="REAL_MATRIX" id="5678f95b:130d8f27016:-7cdf" ordering="1" parent="5678f95b:130d8f27016:-7ce1" style="ExplicitInputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=180;spacingRight=5" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="6.0"/></ExplicitInputPort><ExplicitInputPort connectable="0" connectedLinkId="105" dataColumns="1" dataType="REAL_MATRIX" id="5678f95b:130d8f27016:-7cde" ordering="2" parent="5678f95b:130d8f27016:-7ce1" style="ExplicitInputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=180;spacingRight=5" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="26.0"/></ExplicitInputPort><SplitBlock id="5678f95b:130d8f27016:-7cd4" ordering="48" parent="5678f95b:130d8f27016:-8000" simulationFunctionType="DEFAULT"><mxGeometry as="geometry" height="7.0" width="7.0" x="827.0" y="107.0"/></SplitBlock><ExplicitInputPort connectable="0" connectedLinkId="102" dataType="UNKNOW_TYPE" id="5678f95b:130d8f27016:-7cd3" ordering="1" parent="5678f95b:130d8f27016:-7cd4" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ExplicitInputPort><ExplicitOutputPort connectable="0" connectedLinkId="103" dataType="UNKNOW_TYPE" id="5678f95b:130d8f27016:-7cd2" ordering="1" parent="5678f95b:130d8f27016:-7cd4" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitOutputPort connectable="0" connectedLinkId="104" dataType="UNKNOW_TYPE" id="5678f95b:130d8f27016:-7cd1" ordering="2" parent="5678f95b:130d8f27016:-7cd4" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitLink id="5678f95b:130d8f27016:-7cd0"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass=""><mxPoint x="700.0" y="70.0"/><mxPoint x="700.0" y="110.0"/><mxPoint x="750.0" y="110.0"/></Array></mxGeometry><mxCell as="parent" id="5678f95b:130d8f27016:-8000" parent="5678f95b:130d8f27016:-7fff"/><ExplicitOutputPort as="source" connectable="0" connectedLinkId="102" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5678f95b:130d8f27016:-7e5a" ordering="1" parent="5678f95b:130d8f27016:-7f06" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ExplicitInputPort as="target" connectable="0" connectedLinkId="102" dataType="UNKNOW_TYPE" id="5678f95b:130d8f27016:-7cd3" ordering="1" parent="5678f95b:130d8f27016:-7cd4" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ExplicitInputPort></ExplicitLink><ExplicitLink id="5678f95b:130d8f27016:-7ccf"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass=""/></mxGeometry><mxCell as="parent" id="5678f95b:130d8f27016:-8000" parent="5678f95b:130d8f27016:-7fff"/><ExplicitOutputPort as="source" connectable="0" connectedLinkId="103" dataType="UNKNOW_TYPE" id="5678f95b:130d8f27016:-7cd2" ordering="1" parent="5678f95b:130d8f27016:-7cd4" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitInputPort as="target" connectable="0" connectedLinkId="103" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5678f95b:130d8f27016:-7ccb" ordering="1" parent="5678f95b:130d8f27016:-7e75" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ExplicitInputPort></ExplicitLink><ExplicitLink id="5678f95b:130d8f27016:-7cd5"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="824.0" y="160.0"/><mxPoint as="targetPoint" x="830.0" y="110.0"/><Array as="points" scilabClass=""><mxPoint x="830.0" y="160.0"/></Array></mxGeometry><mxCell as="parent" id="5678f95b:130d8f27016:-8000" parent="5678f95b:130d8f27016:-7fff"/><ExplicitOutputPort as="source" connectable="0" connectedLinkId="104" dataType="UNKNOW_TYPE" id="5678f95b:130d8f27016:-7cd1" ordering="2" parent="5678f95b:130d8f27016:-7cd4" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitInputPort as="target" connectable="0" connectedLinkId="104" dataColumns="1" dataType="REAL_MATRIX" id="5678f95b:130d8f27016:-7cdf" ordering="1" parent="5678f95b:130d8f27016:-7ce1" style="ExplicitInputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=180;spacingRight=5" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="6.0"/></ExplicitInputPort></ExplicitLink><ExplicitLink id="5678f95b:130d8f27016:-7cce"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="984.0" y="280.0"/><mxPoint as="targetPoint" x="820.0" y="180.0"/><Array as="points" scilabClass=""><mxPoint x="990.0" y="280.0"/><mxPoint x="990.0" y="180.0"/></Array></mxGeometry><mxCell as="parent" id="5678f95b:130d8f27016:-8000" parent="5678f95b:130d8f27016:-7fff"/><ExplicitOutputPort as="source" connectable="0" connectedLinkId="105" dataColumns="1" dataType="REAL_MATRIX" id="5678f95b:130d8f27016:-7d0a" ordering="1" parent="5678f95b:130d8f27016:-7d0b" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ExplicitInputPort as="target" connectable="0" connectedLinkId="105" dataColumns="1" dataType="REAL_MATRIX" id="5678f95b:130d8f27016:-7cde" ordering="2" parent="5678f95b:130d8f27016:-7ce1" style="ExplicitInputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=180;spacingRight=5" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="26.0"/></ExplicitInputPort></ExplicitLink><ExplicitLink id="5678f95b:130d8f27016:-7ccd"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="776.0" y="170.0"/><mxPoint as="targetPoint" x="860.0" y="130.0"/><Array as="points" scilabClass=""><mxPoint x="740.0" y="170.0"/><mxPoint x="740.0" y="130.0"/></Array></mxGeometry><mxCell as="parent" id="5678f95b:130d8f27016:-8000" parent="5678f95b:130d8f27016:-7fff"/><ExplicitOutputPort as="source" connectable="0" connectedLinkId="106" dataColumns="1" dataType="REAL_MATRIX" id="5678f95b:130d8f27016:-7ce0" ordering="1" parent="5678f95b:130d8f27016:-7ce1" style="ExplicitOutputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=180;spacingLeft=5"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitOutputPort><ExplicitInputPort as="target" connectable="0" connectedLinkId="106" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5678f95b:130d8f27016:-7cca" ordering="2" parent="5678f95b:130d8f27016:-7e75" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="26.0"/></ExplicitInputPort></ExplicitLink></root></mxGraphModel><mxCell as="defaultParent" id="5678f95b:130d8f27016:-8000" parent="5678f95b:130d8f27016:-7fff"/></XcosDiagram>
\ No newline at end of file diff --git a/Working_Examples/154/CH6/EX6.9/ch6_91.jpeg b/Working_Examples/154/CH6/EX6.9/ch6_91.jpeg Binary files differnew file mode 100755 index 0000000..08cc93b --- /dev/null +++ b/Working_Examples/154/CH6/EX6.9/ch6_91.jpeg diff --git a/Working_Examples/154/CH6/EX6.9/chap6_9.jpeg b/Working_Examples/154/CH6/EX6.9/chap6_9.jpeg Binary files differnew file mode 100755 index 0000000..7655778 --- /dev/null +++ b/Working_Examples/154/CH6/EX6.9/chap6_9.jpeg diff --git a/Working_Examples/154/CH7/EX7.1/ch7_1.sce b/Working_Examples/154/CH7/EX7.1/ch7_1.sce new file mode 100755 index 0000000..66f5b3d --- /dev/null +++ b/Working_Examples/154/CH7/EX7.1/ch7_1.sce @@ -0,0 +1,53 @@ +clc
+disp("Example 7.1")
+printf("\n")
+
+t1=-5:0.5:8
+v1=cos (t1)
+figure
+a= gca ();
+plot(t1,v1)
+xtitle ('v1 vs t1','t1','v1 ');
+a. thickness = 2;
+//From the graph
+printf("Time period1= %3.3fs\n Frequency 1=%0.3fHz\n",6.2832,0.159)
+
+t2=-4:0.5:10
+v2=sin (t2)
+figure
+a= gca ();
+plot(t2,v2)
+xtitle ('v2 vs t2','t2','v2 ');
+a. thickness = 2;
+//From the graph
+printf("Time period 2= %3.3fs\n Frequency 2=%0.3fHz\n",6.2832,0.159)
+
+t3=-1:0.05:1.5
+v3=2*cos (2*%pi*t3)
+figure
+a= gca ();
+plot(t3,v3)
+xtitle ('v3 vs t3','t3','v3 ');
+a. thickness = 2;
+//From the graph
+printf("Time period 3= %ds\n Frequency 3=%dHz\n",1,1)
+
+t4=-5:0.5:12
+v4=2*cos (%pi*t4/4-%pi/4)
+figure
+a= gca ();
+plot(t4,v4)
+xtitle ('v4 vs t4','t4','v4 ');
+a. thickness = 2;
+//From the graph
+printf("Time period 4= %ds\n Frequency 4=%0.3fHz\n",8,0.125)
+
+t5=-1:0.005:1
+v5=5*cos (10*t5+%pi/3)
+figure
+a= gca ();
+plot(t5,v5)
+xtitle ('v5 vs t5','t5','v5 ');
+a. thickness = 2;
+//From the graph
+printf("Time period 5= %0.3fs\n Frequency 5=%3.2fHz\n",.62832,1.59)
diff --git a/Working_Examples/154/CH7/EX7.1/ch7_11.jpeg b/Working_Examples/154/CH7/EX7.1/ch7_11.jpeg Binary files differnew file mode 100755 index 0000000..7c8e20e --- /dev/null +++ b/Working_Examples/154/CH7/EX7.1/ch7_11.jpeg diff --git a/Working_Examples/154/CH7/EX7.13/ch7_13.sce b/Working_Examples/154/CH7/EX7.13/ch7_13.sce new file mode 100755 index 0000000..86523df --- /dev/null +++ b/Working_Examples/154/CH7/EX7.13/ch7_13.sce @@ -0,0 +1,24 @@ +clc
+disp("Example 7.13")
+printf("\n")
+
+printf("Given")
+disp("Capacitance is 1uF")
+C=1*10^-6;
+disp("a)")
+//Let k=1 which results in t=5ms
+t=5*10^-3;
+vac=(integrate('.004','t',0,0.003)-integrate('.002','t',0.003,0.005))/C;
+printf("vac=%dV\n",vac);
+
+//In general
+disp("At t=5k voltage follows as v=8k ms")
+
+disp("b)")
+//As vdc=1/C*integrate(Idc*dt)
+//On solving for Idc
+vdc=vac
+Idc=(1/((integrate('1/vac','t',0,0.005))/C))*10^3
+printf("Idc=%3.2fmA\n",Idc);
+disp("Idc is equal to <i(t)> in the period of 5ms")
+
diff --git a/Working_Examples/154/CH7/EX7.17/ch7_17.sce b/Working_Examples/154/CH7/EX7.17/ch7_17.sce new file mode 100755 index 0000000..de2f600 --- /dev/null +++ b/Working_Examples/154/CH7/EX7.17/ch7_17.sce @@ -0,0 +1,39 @@ +clc
+disp("Example 7.17")
+printf("\n")
+
+printf("Given")
+disp("Capacitance is 100nF")
+disp("The voltage across capacitor increases linearly from 0 to 10V")
+C=100*10^-9;
+//From figure 7.10(a)
+disp("a)")
+//At t=T voltage across capacitor =10V
+vc=10;
+Q=C*vc;
+printf("Charge across capacitor is %fC\n",Q)
+disp("b)")
+//The waveform shown in fig 7.10(a) can be written as
+disp("0 t<0")
+disp("I0=10^-6/T 0<t<T")
+disp("0 t>T")
+
+
+//For T=1s;
+T=1;
+I0=10^-6/T;
+printf("I0(1s)=%fA\n",I0);
+
+//For T=1ms;
+T=1*10^-3;
+I0=10^-6/T;
+printf("I0(1ms)=%0.3fA\n",I0);
+
+//For T=1us;
+T=1*10^-6;
+I0=10^-6/T;
+printf("I0(1us)=%dA",I0);
+
+
+
+
diff --git a/Working_Examples/154/CH7/EX7.2/ch7_2.sce b/Working_Examples/154/CH7/EX7.2/ch7_2.sce new file mode 100755 index 0000000..07e77b0 --- /dev/null +++ b/Working_Examples/154/CH7/EX7.2/ch7_2.sce @@ -0,0 +1,12 @@ +clc
+disp("Example 7.2")
+printf("\n")
+
+//Let wt=q
+q=-8:0.5:8
+v=5*cos (q)
+figure
+a= gca ();
+plot(q,v)
+xtitle ('v vs wt','wt','v ');
+a. thickness = 2;
diff --git a/Working_Examples/154/CH7/EX7.2/ch7_21.jpeg b/Working_Examples/154/CH7/EX7.2/ch7_21.jpeg Binary files differnew file mode 100755 index 0000000..9a9fcd6 --- /dev/null +++ b/Working_Examples/154/CH7/EX7.2/ch7_21.jpeg diff --git a/Working_Examples/154/CH7/EX7.22/ch7_22.sce b/Working_Examples/154/CH7/EX7.22/ch7_22.sce new file mode 100755 index 0000000..b9cc022 --- /dev/null +++ b/Working_Examples/154/CH7/EX7.22/ch7_22.sce @@ -0,0 +1,20 @@ +clc
+disp("Example 7.22")
+printf("\n")
+
+//The general equation of exponential decay function is given by
+disp("v(t)=A*e(-t/T)+B")
+//We need to solve A and B
+//At t=0 we get v(0)=A+B (1)
+//at t=inf we get B=1 (2)
+//Solving (1) and (2)
+A=4;B=1;
+T=3;
+t=0:0.05:10
+v=4*exp(-t/T)+1;
+figure
+a= gca ();
+plot(t,v)
+xtitle ('v vs t','t','v');
+a. thickness = 2;
+
diff --git a/Working_Examples/154/CH7/EX7.22/ch7_221.jpeg b/Working_Examples/154/CH7/EX7.22/ch7_221.jpeg Binary files differnew file mode 100755 index 0000000..53a8add --- /dev/null +++ b/Working_Examples/154/CH7/EX7.22/ch7_221.jpeg diff --git a/Working_Examples/154/CH7/EX7.23/ch7_23.sce b/Working_Examples/154/CH7/EX7.23/ch7_23.sce new file mode 100755 index 0000000..2109c67 --- /dev/null +++ b/Working_Examples/154/CH7/EX7.23/ch7_23.sce @@ -0,0 +1,33 @@ +clc
+disp("Example 7.23")
+printf("\n")
+
+//Sketch voltage 'v'
+t=-.001:0.00005:0
+t1=0:0.00005:.001
+T=1*10^-3;
+V0=10;
+v=V0*exp(t/T)
+v1=V0*exp(-t1/T)
+figure
+a= gca ();
+plot(t,v)
+plot(t1,v1)
+xtitle ('v vs t','t (ms)','v ');
+a. thickness = 2;
+
+//Sketch current 'i'
+t=-.001:0.00005:0
+t1=0:0.00005:.001
+T=1*10^-3;
+I0=10*10^-3;
+i=I0*exp(t/T)
+i1=-I0*exp(-t1/T)
+figure
+a= gca ();
+plot(t,i)
+plot(t1,i1)
+xtitle ('i vs wt','t (ms)','i (mA)');
+a. thickness = 2;
+
+
diff --git a/Working_Examples/154/CH7/EX7.23/ch7_231.jpeg b/Working_Examples/154/CH7/EX7.23/ch7_231.jpeg Binary files differnew file mode 100755 index 0000000..a2488c2 --- /dev/null +++ b/Working_Examples/154/CH7/EX7.23/ch7_231.jpeg diff --git a/Working_Examples/154/CH7/EX7.23/ch7_232.jpeg b/Working_Examples/154/CH7/EX7.23/ch7_232.jpeg Binary files differnew file mode 100755 index 0000000..ea3aa2b --- /dev/null +++ b/Working_Examples/154/CH7/EX7.23/ch7_232.jpeg diff --git a/Working_Examples/154/CH7/EX7.25/ch7_25.sce b/Working_Examples/154/CH7/EX7.25/ch7_25.sce new file mode 100755 index 0000000..4d0c5da --- /dev/null +++ b/Working_Examples/154/CH7/EX7.25/ch7_25.sce @@ -0,0 +1,9 @@ +clc
+disp("Example 7.25")
+printf("\n")
+
+Xavg=(2+4+11+5+7+6+9+10+3+6+8+4+1+3+5+12)/16;
+//Let X=X^2eff
+X=(2^2+4^2+11^2+5^2+7^2+6^2+9^2+10^2+3^2+6^2+8^2+4^2+1^2+3^2+5^2+12^2)/16
+Xeff=sqrt(X);
+printf("Xavg=%d\n Xeff=%3.2f\n",Xavg,Xeff)
\ No newline at end of file diff --git a/Working_Examples/154/CH7/EX7.26/ch7_26.sce b/Working_Examples/154/CH7/EX7.26/ch7_26.sce new file mode 100755 index 0000000..8b76377 --- /dev/null +++ b/Working_Examples/154/CH7/EX7.26/ch7_26.sce @@ -0,0 +1,17 @@ +clc
+disp("Example 7.26")
+printf("\n")
+
+printf("Given")
+disp("Period =10s")
+disp("Interval is 1ms")
+disp("Voltage of binary signal is either 0.5 or -0.5")
+T=10;
+//During 10s period there are 10000 intervals of 1ms each
+//For calculating average equal number of intervals are considered at 0.5V and -0.5V
+vavg=(0.5*5000-0.5*5000)/10000
+//The effective value of v(t) is
+//Let V=V^2eff
+V=(0.5^2*5000+(-0.5)^2*5000)/10000
+Veff=sqrt(V)
+printf("vavg=%dV\nVeff=%3.2fV\n",vavg,Veff)
diff --git a/Working_Examples/154/CH7/EX7.3/ch7_3.sce b/Working_Examples/154/CH7/EX7.3/ch7_3.sce new file mode 100755 index 0000000..122832e --- /dev/null +++ b/Working_Examples/154/CH7/EX7.3/ch7_3.sce @@ -0,0 +1,12 @@ +clc
+disp("Example 7.3")
+printf("\n")
+
+t1=-10:0.05:10
+v=5*cos (%pi*t1/6+%pi/6)
+figure
+a= gca ();
+plot(t1,v)
+xtitle ('v vs %pi*t/6','%pi*t/6','v ');
+a. thickness = 2;
+
diff --git a/Working_Examples/154/CH7/EX7.3/ch7_31.jpeg b/Working_Examples/154/CH7/EX7.3/ch7_31.jpeg Binary files differnew file mode 100755 index 0000000..f74120d --- /dev/null +++ b/Working_Examples/154/CH7/EX7.3/ch7_31.jpeg diff --git a/Working_Examples/154/CH7/EX7.5/ch7_5.sce b/Working_Examples/154/CH7/EX7.5/ch7_5.sce new file mode 100755 index 0000000..515f4b9 --- /dev/null +++ b/Working_Examples/154/CH7/EX7.5/ch7_5.sce @@ -0,0 +1,14 @@ +clc
+disp("Example 7.5")
+printf("\n")
+
+printf("Given")
+disp("v(t)=cos5t+3sin(3t+45)")
+//Finding the periods of individual terms
+disp("Period of cos5t=2*%pi/5")
+disp("Period of 3*sin(3t+45)=2*%pi/3")
+//If T=2*%pi
+T=2*%pi;
+disp("Now T=5*T1=3*T2")
+//Now the relation for T is the smallest common integral multiple of T1 and T2
+printf("Period = %3.2fs\n",T)
\ No newline at end of file diff --git a/Working_Examples/154/CH8/EX8.1/ch8_1.sce b/Working_Examples/154/CH8/EX8.1/ch8_1.sce new file mode 100755 index 0000000..fdc51d2 --- /dev/null +++ b/Working_Examples/154/CH8/EX8.1/ch8_1.sce @@ -0,0 +1,17 @@ +clc
+disp("Example 8.1")
+printf("\n")
+
+printf("Given")
+disp("Capacitance is 1uF")
+disp("Resistance is 1Mohm")
+disp("Voltage across capacitor is 10V")
+R=1*10^6;C=1*10^-6;V=10
+//Let T be time constant
+T=R*C
+//v(t)=V*exp(-t/T)
+disp("v(t)=10*exp(-t) (1)")
+//Substituting value of t=5 in (1)
+v5=10*exp(-5)
+printf("Time constant is %ds\n",T)
+printf("v(5)=%0.3fV\n",v5)
\ No newline at end of file diff --git a/Working_Examples/154/CH8/EX8.10/ch8_10.sce b/Working_Examples/154/CH8/EX8.10/ch8_10.sce new file mode 100755 index 0000000..3c081ca --- /dev/null +++ b/Working_Examples/154/CH8/EX8.10/ch8_10.sce @@ -0,0 +1,25 @@ +clc
+disp("Example 8.10")
+printf("\n")
+
+printf("Given")
+disp("vs= 5V t<0")
+disp("vs=5*sin(w*t) t>0")
+vs=5;
+R=5;L=10*10^-3;
+//At t<0
+//Inductor behaves as a short circuit
+//Let i(0-)=i
+i=vs/R;
+printf("i(0-)=%dA\n",i)
+//During the transition from t=0- to t=0+
+//Let i(0+)=i1
+i1=i
+printf("i(0+)=%dA\n",i1)
+//Applying KVL equation to the loop
+disp("vs=i*R+v")
+//Let v(0+)=v1 ; vs(0+)=vs1
+//From given vs(0+)=0
+vs1=0;
+v1=vs1-i*R
+printf("\nv(0+)=%dV\n",v1)
diff --git a/Working_Examples/154/CH8/EX8.2/ch8_2.xcos b/Working_Examples/154/CH8/EX8.2/ch8_2.xcos new file mode 100755 index 0000000..c57c311 --- /dev/null +++ b/Working_Examples/154/CH8/EX8.2/ch8_2.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" finalIntegrationTime="0.05"><mxGraphModel as="model"><root><mxCell id="-1e985524:130d9355380:-7dc2"/><mxCell id="-1e985524:130d9355380:-7dc3" parent="-1e985524:130d9355380:-7dc2"/><BasicBlock angle="90" dependsOnU="1" id="-1e985524:130d9355380:-7dba" interfaceFunctionName="Capacitor" ordering="1" parent="-1e985524:130d9355380:-7dc3" simulationFunctionName="Capacitor" simulationFunctionType="DEFAULT" style="Capacitor;rotation=90"><ScilabString as="exprs" height="2" width="1"><data column="0" line="0" value="5e-6"/><data column="0" line="1" value="4"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="5.0E-6"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Capacitor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="2"><data column="0" line="0" value="C"/><data column="1" line="0" value="v"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0E-6"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="180.0" y="240.0"/></BasicBlock><ImplicitOutputPort connectable="0" connectedLinkId="17" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1e985524:130d9355380:-7d70" ordering="1" parent="-1e985524:130d9355380:-7dba" style="ImplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;spacingBottom=5;rotation=90"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitInputPort connectable="0" connectedLinkId="12" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1e985524:130d9355380:-7d71" ordering="1" parent="-1e985524:130d9355380:-7dba" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;spacingTop=5;rotation=90"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><GroundBlock angle="90" dependsOnU="1" id="-1e985524:130d9355380:-7db2" interfaceFunctionName="Ground" ordering="2" parent="-1e985524:130d9355380:-7dc3" simulationFunctionName="Ground" simulationFunctionType="DEFAULT" style="Ground;rotation=90"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Ground"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="180.0" y="422.0"/></GroundBlock><ImplicitInputPort connectable="0" connectedLinkId="19" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1e985524:130d9355380:-7db1" ordering="1" parent="-1e985524:130d9355380:-7db2" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=90;spacingTop=5"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock angle="90" dependsOnU="1" id="-1e985524:130d9355380:-7da9" interfaceFunctionName="Resistor" ordering="3" parent="-1e985524:130d9355380:-7dc3" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=90"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="6000"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="6000.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6000.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="20.0" y="250.0"/></BasicBlock><ImplicitOutputPort connectable="0" connectedLinkId="16" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1e985524:130d9355380:-7d6c" ordering="1" parent="-1e985524:130d9355380:-7da9" style="ImplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;spacingBottom=5;rotation=90"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitInputPort connectable="0" connectedLinkId="11" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1e985524:130d9355380:-7d6d" ordering="1" parent="-1e985524:130d9355380:-7da9" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;spacingTop=5;rotation=90"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock angle="90" dependsOnU="1" id="-1e985524:130d9355380:-7d9d" interfaceFunctionName="Resistor" ordering="4" parent="-1e985524:130d9355380:-7dc3" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=90"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="3000"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="3000.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="3000.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="310.0" y="240.0"/></BasicBlock><ImplicitOutputPort connectable="0" connectedLinkId="15" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1e985524:130d9355380:-7d68" ordering="1" parent="-1e985524:130d9355380:-7d9d" style="ImplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;spacingBottom=5;rotation=90"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitInputPort connectable="0" connectedLinkId="14" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1e985524:130d9355380:-7d69" ordering="1" parent="-1e985524:130d9355380:-7d9d" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;spacingTop=5;rotation=90"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock angle="180" dependsOnU="1" id="-1e985524:130d9355380:-7d8e" interfaceFunctionName="CurrentSensor" ordering="5" parent="-1e985524:130d9355380:-7dc3" simulationFunctionName="CurrentSensor" simulationFunctionType="DEFAULT" style="CurrentSensor;rotation=180"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CurrentSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="i"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="90.0" y="162.0"/></BasicBlock><ImplicitOutputPort connectable="0" connectedLinkId="11" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1e985524:130d9355380:-7d8d" ordering="1" parent="-1e985524:130d9355380:-7d8e" style="ImplicitOutputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=180;spacingLeft=5"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ImplicitOutputPort><ExplicitOutputPort connectable="0" connectedLinkId="20" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1e985524:130d9355380:-7d8c" ordering="2" parent="-1e985524:130d9355380:-7d8e" style="ExplicitOutputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=180;spacingLeft=5"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="26.0"/></ExplicitOutputPort><ImplicitInputPort connectable="0" connectedLinkId="13" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1e985524:130d9355380:-7d8b" ordering="1" parent="-1e985524:130d9355380:-7d8e" style="ImplicitInputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=180;spacingRight=5"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitInputPort><ImplicitLink id="-1e985524:130d9355380:-7d89"><mxGeometry as="geometry" y="60.0"><mxPoint as="sourcePoint" x="86.0" y="172.0"/><mxPoint as="targetPoint" x="50.0" y="250.0"/><Array as="points" scilabClass=""><mxPoint x="40.0" y="170.0"/></Array></mxGeometry><mxCell as="parent" id="-1e985524:130d9355380:-7dc3" parent="-1e985524:130d9355380:-7dc2"/><ImplicitOutputPort as="source" connectable="0" connectedLinkId="11" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1e985524:130d9355380:-7d8d" ordering="1" parent="-1e985524:130d9355380:-7d8e" style="ImplicitOutputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=180;spacingLeft=5"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort as="target" connectable="0" connectedLinkId="11" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1e985524:130d9355380:-7d6d" ordering="1" parent="-1e985524:130d9355380:-7da9" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;spacingTop=5;rotation=90"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort></ImplicitLink><SplitBlock id="-1e985524:130d9355380:-7d86" ordering="6" parent="-1e985524:130d9355380:-7dc3" simulationFunctionType="DEFAULT"><mxGeometry as="geometry" height="7.0" width="7.0" x="196.5" y="176.5"/></SplitBlock><ImplicitInputPort connectable="0" connectedLinkId="12" dataType="UNKNOW_TYPE" id="-1e985524:130d9355380:-7d85" ordering="1" parent="-1e985524:130d9355380:-7d86" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort connectable="0" connectedLinkId="13" dataType="UNKNOW_TYPE" id="-1e985524:130d9355380:-7d84" ordering="1" parent="-1e985524:130d9355380:-7d86" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort connectable="0" connectedLinkId="14" dataType="UNKNOW_TYPE" id="-1e985524:130d9355380:-7d83" ordering="2" parent="-1e985524:130d9355380:-7d86" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="-1e985524:130d9355380:-7d82"><mxGeometry as="geometry" height="80.0" width="80.0" y="60.0"><Array as="points" scilabClass=""/></mxGeometry><mxCell as="parent" id="-1e985524:130d9355380:-7dc3" parent="-1e985524:130d9355380:-7dc2"/><ImplicitInputPort as="source" connectable="0" connectedLinkId="12" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1e985524:130d9355380:-7d71" ordering="1" parent="-1e985524:130d9355380:-7dba" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;spacingTop=5;rotation=90"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitInputPort as="target" connectable="0" connectedLinkId="12" dataType="UNKNOW_TYPE" id="-1e985524:130d9355380:-7d85" ordering="1" parent="-1e985524:130d9355380:-7d86" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort></ImplicitLink><ImplicitLink id="-1e985524:130d9355380:-7d81"><mxGeometry as="geometry" height="80.0" width="80.0" y="60.0"><Array as="points" scilabClass=""><mxPoint x="200.0" y="180.0"/></Array></mxGeometry><mxCell as="parent" id="-1e985524:130d9355380:-7dc3" parent="-1e985524:130d9355380:-7dc2"/><ImplicitOutputPort as="source" connectable="0" connectedLinkId="13" dataType="UNKNOW_TYPE" id="-1e985524:130d9355380:-7d84" ordering="1" parent="-1e985524:130d9355380:-7d86" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitInputPort as="target" connectable="0" connectedLinkId="13" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1e985524:130d9355380:-7d8b" ordering="1" parent="-1e985524:130d9355380:-7d8e" style="ImplicitInputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=180;spacingRight=5"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitInputPort></ImplicitLink><ImplicitLink id="-1e985524:130d9355380:-7d87"><mxGeometry as="geometry" y="60.0"><mxPoint as="sourcePoint" x="330.0" y="236.0"/><mxPoint as="targetPoint" x="200.0" y="180.0"/><Array as="points" scilabClass=""><mxPoint x="330.0" y="180.0"/></Array></mxGeometry><mxCell as="parent" id="-1e985524:130d9355380:-7dc3" parent="-1e985524:130d9355380:-7dc2"/><ImplicitOutputPort as="source" connectable="0" connectedLinkId="14" dataType="UNKNOW_TYPE" id="-1e985524:130d9355380:-7d83" ordering="2" parent="-1e985524:130d9355380:-7d86" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitInputPort as="target" connectable="0" connectedLinkId="14" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1e985524:130d9355380:-7d69" ordering="1" parent="-1e985524:130d9355380:-7d9d" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;spacingTop=5;rotation=90"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort></ImplicitLink><SplitBlock id="-1e985524:130d9355380:-7d7f" ordering="7" parent="-1e985524:130d9355380:-7dc3" simulationFunctionType="DEFAULT"><mxGeometry as="geometry" height="7.0" width="7.0" x="196.5" y="366.5"/></SplitBlock><ImplicitInputPort connectable="0" connectedLinkId="15" dataType="UNKNOW_TYPE" id="-1e985524:130d9355380:-7d7e" ordering="1" parent="-1e985524:130d9355380:-7d7f" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort connectable="0" connectedLinkId="16" dataType="UNKNOW_TYPE" id="-1e985524:130d9355380:-7d7d" ordering="1" parent="-1e985524:130d9355380:-7d7f" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort connectable="0" connectedLinkId="18" dataType="UNKNOW_TYPE" id="-1e985524:130d9355380:-7d7c" ordering="2" parent="-1e985524:130d9355380:-7d7f" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="-1e985524:130d9355380:-7d7b"><mxGeometry as="geometry" height="80.0" width="80.0" y="60.0"><Array as="points" scilabClass=""><mxPoint x="330.0" y="370.0"/></Array></mxGeometry><mxCell as="parent" id="-1e985524:130d9355380:-7dc3" parent="-1e985524:130d9355380:-7dc2"/><ImplicitOutputPort as="source" connectable="0" connectedLinkId="15" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1e985524:130d9355380:-7d68" ordering="1" parent="-1e985524:130d9355380:-7d9d" style="ImplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;spacingBottom=5;rotation=90"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitInputPort as="target" connectable="0" connectedLinkId="15" dataType="UNKNOW_TYPE" id="-1e985524:130d9355380:-7d7e" ordering="1" parent="-1e985524:130d9355380:-7d7f" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort></ImplicitLink><ImplicitLink id="-1e985524:130d9355380:-7d7a"><mxGeometry as="geometry" height="80.0" width="80.0" y="60.0"><Array as="points" scilabClass=""><mxPoint x="40.0" y="370.0"/></Array></mxGeometry><mxCell as="parent" id="-1e985524:130d9355380:-7dc3" parent="-1e985524:130d9355380:-7dc2"/><ImplicitOutputPort as="source" connectable="0" connectedLinkId="16" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1e985524:130d9355380:-7d6c" ordering="1" parent="-1e985524:130d9355380:-7da9" style="ImplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;spacingBottom=5;rotation=90"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitOutputPort as="target" connectable="0" connectedLinkId="16" dataType="UNKNOW_TYPE" id="-1e985524:130d9355380:-7d7d" ordering="1" parent="-1e985524:130d9355380:-7d7f" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort></ImplicitLink><SplitBlock id="-1e985524:130d9355380:-7d78" ordering="8" parent="-1e985524:130d9355380:-7dc3" simulationFunctionType="DEFAULT"><mxGeometry as="geometry" height="7.0" width="7.0" x="196.5" y="366.5"/></SplitBlock><ImplicitInputPort connectable="0" connectedLinkId="17" dataType="UNKNOW_TYPE" id="-1e985524:130d9355380:-7d77" ordering="1" parent="-1e985524:130d9355380:-7d78" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort connectable="0" connectedLinkId="18" dataType="UNKNOW_TYPE" id="-1e985524:130d9355380:-7d76" ordering="1" parent="-1e985524:130d9355380:-7d78" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort connectable="0" connectedLinkId="19" dataType="UNKNOW_TYPE" id="-1e985524:130d9355380:-7d75" ordering="2" parent="-1e985524:130d9355380:-7d78" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="-1e985524:130d9355380:-7d74"><mxGeometry as="geometry" height="80.0" width="80.0" y="60.0"><Array as="points" scilabClass=""/></mxGeometry><mxCell as="parent" id="-1e985524:130d9355380:-7dc3" parent="-1e985524:130d9355380:-7dc2"/><ImplicitOutputPort as="source" connectable="0" connectedLinkId="17" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1e985524:130d9355380:-7d70" ordering="1" parent="-1e985524:130d9355380:-7dba" style="ImplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;spacingBottom=5;rotation=90"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitInputPort as="target" connectable="0" connectedLinkId="17" dataType="UNKNOW_TYPE" id="-1e985524:130d9355380:-7d77" ordering="1" parent="-1e985524:130d9355380:-7d78" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort></ImplicitLink><ImplicitLink id="-1e985524:130d9355380:-7d73"><mxGeometry as="geometry" height="80.0" width="80.0" y="60.0"><Array as="points" scilabClass=""/></mxGeometry><mxCell as="parent" id="-1e985524:130d9355380:-7dc3" parent="-1e985524:130d9355380:-7dc2"/><ImplicitOutputPort as="source" connectable="0" connectedLinkId="18" dataType="UNKNOW_TYPE" id="-1e985524:130d9355380:-7d7c" ordering="2" parent="-1e985524:130d9355380:-7d7f" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort as="target" connectable="0" connectedLinkId="18" dataType="UNKNOW_TYPE" id="-1e985524:130d9355380:-7d76" ordering="1" parent="-1e985524:130d9355380:-7d78" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort></ImplicitLink><ImplicitLink id="-1e985524:130d9355380:-7d79"><mxGeometry as="geometry" y="60.0"><mxPoint as="sourcePoint" x="200.0" y="418.0"/><mxPoint as="targetPoint" x="200.0" y="370.0"/></mxGeometry><mxCell as="parent" id="-1e985524:130d9355380:-7dc3" parent="-1e985524:130d9355380:-7dc2"/><ImplicitOutputPort as="source" connectable="0" connectedLinkId="19" dataType="UNKNOW_TYPE" id="-1e985524:130d9355380:-7d75" ordering="2" parent="-1e985524:130d9355380:-7d78" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitInputPort as="target" connectable="0" connectedLinkId="19" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1e985524:130d9355380:-7db1" ordering="1" parent="-1e985524:130d9355380:-7db2" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=90;spacingTop=5"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort></ImplicitLink><BasicBlock dependsOnU="1" id="-1e985524:130d9355380:-7d5f" interfaceFunctionName="CSCOPE" ordering="9" parent="-1e985524:130d9355380:-7dc3" simulationFunctionName="cscope" simulationFunctionType="C_OR_FORTRAN" style="CSCOPE"><ScilabString as="exprs" height="10" width="1"><data column="0" line="0" value="1 3 5 7 9 11 13 15"/><data column="0" line="1" value="-1"/><data column="0" line="2" value="[]"/><data column="0" line="3" value="[600;400]"/><data column="0" line="4" value="0"/><data column="0" line="5" value="0.0007"/><data column="0" line="6" value="0.05"/><data column="0" line="7" value="20"/><data column="0" line="8" value="0"/><data column="0" line="9" value=""/></ScilabString><ScilabDouble as="realParameters" height="4" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="0.0"/><data column="0" line="2" realPart="7.0E-4"/><data column="0" line="3" realPart="0.05"/></ScilabDouble><ScilabDouble as="integerParameters" height="15" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="1.0"/><data column="0" line="4" realPart="3.0"/><data column="0" line="5" realPart="5.0"/><data column="0" line="6" realPart="7.0"/><data column="0" line="7" realPart="9.0"/><data column="0" line="8" realPart="11.0"/><data column="0" line="9" realPart="13.0"/><data column="0" line="10" realPart="15.0"/><data column="0" line="11" realPart="-1.0"/><data column="0" line="12" realPart="-1.0"/><data column="0" line="13" realPart="600.0"/><data column="0" line="14" realPart="400.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="100.0" y="112.0"/></BasicBlock><ExplicitInputPort connectable="0" connectedLinkId="20" dataColumns="1" dataType="REAL_MATRIX" id="-1e985524:130d9355380:-7d2e" ordering="1" parent="-1e985524:130d9355380:-7d5f" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ControlPort connectable="0" connectedLinkId="21" dataType="UNKNOW_TYPE" id="-1e985524:130d9355380:-7d2d" ordering="1" parent="-1e985524:130d9355380:-7d5f" style="ControlPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=90;spacingTop=5"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><BasicBlock blockType="h" id="-1e985524:130d9355380:-7d57" interfaceFunctionName="CLOCK_c" ordering="10" parent="-1e985524:130d9355380:-7dc3" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="1.0E-6"/><data column="1" line="0" realPart="1.0E-6"/><data column="2" line="0" realPart="1.0E-10"/><data column="3" line="0" realPart="100001.0"/><data column="4" line="0" realPart="0.0"/><data column="5" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="4"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="2.0"/><data column="3" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="4"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="10.0"/><data column="3" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="14"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="399.0"/><data column="1" line="0" realPart="162.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value=" "/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="23"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="14"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="320.0"/><data column="1" line="0" realPart="232.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.00001"/><data column="0" line="1" value="0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="3" width="1"><data column="0" line="0" value="dt=o.model.rpar(1);"/><data column="0" line="1" value="txt=['Delay';string(dt)];"/><data column="0" line="2" value="xstringb(orig(1),orig(2),txt,sz(1),sz(2),'fill');"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="23"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="1.0E-5"/><data column="0" line="1" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="340.0"/><data column="0" line="1" realPart="340.0"/><data column="0" line="2" realPart="380.71"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="226.29"/><data column="0" line="1" realPart="172.0"/><data column="0" line="2" realPart="172.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="14"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="380.71066"/><data column="0" line="1" realPart="172.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.3333333333333333"/><data column="1" line="0" realPart="0.3333333333333333"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="5.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="23"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="1.0"/><data column="0" line="1" realPart="1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabBoolean height="1" width="3"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/><data column="2" line="0" value="false"/></ScilabBoolean><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="380.71"/><data column="0" line="1" realPart="399.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="172.0"/><data column="0" line="1" realPart="172.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="380.71"/><data column="0" line="1" realPart="380.71"/><data column="0" line="2" realPart="340.0"/><data column="0" line="3" realPart="340.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="172.0"/><data column="0" line="1" realPart="302.0"/><data column="0" line="2" realPart="302.0"/><data column="0" line="3" realPart="277.71"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="2.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value="scicos4.4"/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="100.0" y="30.0"/></BasicBlock><CommandPort connectable="0" connectedLinkId="21" dataType="UNKNOW_TYPE" id="-1e985524:130d9355380:-7d2a" ordering="1" parent="-1e985524:130d9355380:-7d57" style="CommandPort;align=center;labelPosition=center;verticalLabelPosition=top;rotation=90;spacingBottom=5"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><ExplicitLink id="-1e985524:130d9355380:-7d53"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="86.0" y="192.0"/><mxPoint as="targetPoint" x="100.0" y="130.0"/><Array as="points" scilabClass=""><mxPoint x="70.0" y="190.0"/><mxPoint x="70.0" y="130.0"/></Array></mxGeometry><mxCell as="parent" id="-1e985524:130d9355380:-7dc3" parent="-1e985524:130d9355380:-7dc2"/><ExplicitOutputPort as="source" connectable="0" connectedLinkId="20" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1e985524:130d9355380:-7d8c" ordering="2" parent="-1e985524:130d9355380:-7d8e" style="ExplicitOutputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=180;spacingLeft=5"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="26.0"/></ExplicitOutputPort><ExplicitInputPort as="target" connectable="0" connectedLinkId="20" dataColumns="1" dataType="REAL_MATRIX" id="-1e985524:130d9355380:-7d2e" ordering="1" parent="-1e985524:130d9355380:-7d5f" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort></ExplicitLink><CommandControlLink id="-1e985524:130d9355380:-7d50"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="120.0" y="64.0"/><mxPoint as="targetPoint" x="120.0" y="100.0"/><Array as="points" scilabClass=""><mxPoint x="120.0" y="110.0"/></Array></mxGeometry><mxCell as="parent" id="-1e985524:130d9355380:-7dc3" parent="-1e985524:130d9355380:-7dc2"/><CommandPort as="source" connectable="0" connectedLinkId="21" dataType="UNKNOW_TYPE" id="-1e985524:130d9355380:-7d2a" ordering="1" parent="-1e985524:130d9355380:-7d57" style="CommandPort;align=center;labelPosition=center;verticalLabelPosition=top;rotation=90;spacingBottom=5"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><ControlPort as="target" connectable="0" connectedLinkId="21" dataType="UNKNOW_TYPE" id="-1e985524:130d9355380:-7d2d" ordering="1" parent="-1e985524:130d9355380:-7d5f" style="ControlPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=90;spacingTop=5"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort></CommandControlLink></root></mxGraphModel><mxCell as="defaultParent" id="-1e985524:130d9355380:-7dc3" parent="-1e985524:130d9355380:-7dc2"/></XcosDiagram>
\ No newline at end of file diff --git a/Working_Examples/154/CH8/EX8.2/ch8_21.jpeg b/Working_Examples/154/CH8/EX8.2/ch8_21.jpeg Binary files differnew file mode 100755 index 0000000..87dfb4b --- /dev/null +++ b/Working_Examples/154/CH8/EX8.2/ch8_21.jpeg diff --git a/Working_Examples/154/CH8/EX8.2/chap8_2.jpeg b/Working_Examples/154/CH8/EX8.2/chap8_2.jpeg Binary files differnew file mode 100755 index 0000000..b534c80 --- /dev/null +++ b/Working_Examples/154/CH8/EX8.2/chap8_2.jpeg diff --git a/Working_Examples/154/CH8/EX8.3/ch8_3.xcos b/Working_Examples/154/CH8/EX8.3/ch8_3.xcos new file mode 100755 index 0000000..ecb65d7 --- /dev/null +++ b/Working_Examples/154/CH8/EX8.3/ch8_3.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" finalIntegrationTime="0.1"><mxGraphModel as="model"><root><mxCell id="-1e985524:130d9355380:-7d27"/><mxCell id="-1e985524:130d9355380:-7d28" parent="-1e985524:130d9355380:-7d27"/><BasicBlock angle="90" dependsOnU="1" id="-1e985524:130d9355380:-7d1f" interfaceFunctionName="Capacitor" ordering="1" parent="-1e985524:130d9355380:-7d28" simulationFunctionName="Capacitor" simulationFunctionType="DEFAULT" style="Capacitor;rotation=90"><ScilabString as="exprs" height="2" width="1"><data column="0" line="0" value="4e-6"/><data column="0" line="1" value="2"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="4.0E-6"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Capacitor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="2"><data column="0" line="0" value="C"/><data column="1" line="0" value="v"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0E-6"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="250.0" y="200.0"/></BasicBlock><ImplicitOutputPort connectable="0" connectedLinkId="19" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1e985524:130d9355380:-7c93" ordering="1" parent="-1e985524:130d9355380:-7d1f" style="ImplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;spacingBottom=5;rotation=90"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitInputPort connectable="0" connectedLinkId="17" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1e985524:130d9355380:-7c94" ordering="1" parent="-1e985524:130d9355380:-7d1f" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;spacingTop=5;rotation=90"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><GroundBlock angle="90" dependsOnU="1" id="-1e985524:130d9355380:-7d17" interfaceFunctionName="Ground" ordering="2" parent="-1e985524:130d9355380:-7d28" simulationFunctionName="Ground" simulationFunctionType="DEFAULT" style="Ground;rotation=90"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Ground"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="150.0" y="370.0"/></GroundBlock><ImplicitInputPort connectable="0" connectedLinkId="15" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1e985524:130d9355380:-7d16" ordering="1" parent="-1e985524:130d9355380:-7d17" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=90;spacingTop=5"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock angle="90" id="-1e985524:130d9355380:-7d0e" interfaceFunctionName="ConstantVoltage" ordering="3" parent="-1e985524:130d9355380:-7d28" simulationFunctionName="ConstantVoltage" simulationFunctionType="DEFAULT" style="ConstantVoltage;rotation=90"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="12"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="12.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ConstantVoltage"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="V"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="12.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="50.0" y="210.0"/></BasicBlock><ImplicitOutputPort connectable="0" connectedLinkId="14" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1e985524:130d9355380:-7c9b" ordering="1" parent="-1e985524:130d9355380:-7d0e" style="ImplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;spacingBottom=5;rotation=90"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitInputPort connectable="0" connectedLinkId="12" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1e985524:130d9355380:-7c9c" ordering="1" parent="-1e985524:130d9355380:-7d0e" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;spacingTop=5;rotation=90"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="-1e985524:130d9355380:-7d04" interfaceFunctionName="Resistor" ordering="4" parent="-1e985524:130d9355380:-7d28" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="5000"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="5000.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5000.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="100.0" y="100.0"/></BasicBlock><ImplicitOutputPort connectable="0" connectedLinkId="13" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1e985524:130d9355380:-7c97" ordering="1" parent="-1e985524:130d9355380:-7d04" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><ImplicitInputPort connectable="0" connectedLinkId="12" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1e985524:130d9355380:-7c98" ordering="1" parent="-1e985524:130d9355380:-7d04" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="-1e985524:130d9355380:-7cef" interfaceFunctionName="CurrentSensor" ordering="5" parent="-1e985524:130d9355380:-7d28" simulationFunctionName="CurrentSensor" simulationFunctionType="DEFAULT" style="CurrentSensor"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CurrentSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="i"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="180.0" y="100.0"/></BasicBlock><ImplicitOutputPort connectable="0" connectedLinkId="16" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1e985524:130d9355380:-7cee" ordering="1" parent="-1e985524:130d9355380:-7cef" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="6.0"/></ImplicitOutputPort><ExplicitOutputPort connectable="0" connectedLinkId="23" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1e985524:130d9355380:-7ced" ordering="2" parent="-1e985524:130d9355380:-7cef" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="26.0"/></ExplicitOutputPort><ImplicitInputPort connectable="0" connectedLinkId="13" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1e985524:130d9355380:-7cec" ordering="1" parent="-1e985524:130d9355380:-7cef" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitLink id="-1e985524:130d9355380:-7ce4"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="70.0" y="206.0"/><mxPoint as="targetPoint" x="90.0" y="120.0"/><Array as="points" scilabClass=""><mxPoint x="70.0" y="120.0"/></Array></mxGeometry><mxCell as="parent" id="-1e985524:130d9355380:-7d28" parent="-1e985524:130d9355380:-7d27"/><ImplicitInputPort as="source" connectable="0" connectedLinkId="12" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1e985524:130d9355380:-7c9c" ordering="1" parent="-1e985524:130d9355380:-7d0e" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;spacingTop=5;rotation=90"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitInputPort as="target" connectable="0" connectedLinkId="12" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1e985524:130d9355380:-7c98" ordering="1" parent="-1e985524:130d9355380:-7d04" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort></ImplicitLink><ImplicitLink id="-1e985524:130d9355380:-7ce3"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="144.0" y="120.0"/><mxPoint as="targetPoint" x="180.0" y="120.0"/></mxGeometry><mxCell as="parent" id="-1e985524:130d9355380:-7d28" parent="-1e985524:130d9355380:-7d27"/><ImplicitOutputPort as="source" connectable="0" connectedLinkId="13" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1e985524:130d9355380:-7c97" ordering="1" parent="-1e985524:130d9355380:-7d04" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><ImplicitInputPort as="target" connectable="0" connectedLinkId="13" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1e985524:130d9355380:-7cec" ordering="1" parent="-1e985524:130d9355380:-7cef" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort></ImplicitLink><SplitBlock id="-1e985524:130d9355380:-7cdd" ordering="6" parent="-1e985524:130d9355380:-7d28" simulationFunctionType="DEFAULT"><mxGeometry as="geometry" height="7.0" width="7.0" x="167.0" y="317.0"/></SplitBlock><ImplicitInputPort connectable="0" connectedLinkId="14" dataType="UNKNOW_TYPE" id="-1e985524:130d9355380:-7cdc" ordering="1" parent="-1e985524:130d9355380:-7cdd" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort connectable="0" connectedLinkId="20" dataType="UNKNOW_TYPE" id="-1e985524:130d9355380:-7cdb" ordering="1" parent="-1e985524:130d9355380:-7cdd" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort connectable="0" connectedLinkId="15" dataType="UNKNOW_TYPE" id="-1e985524:130d9355380:-7cda" ordering="2" parent="-1e985524:130d9355380:-7cdd" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="-1e985524:130d9355380:-7cd9"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass=""><mxPoint x="70.0" y="320.0"/></Array></mxGeometry><mxCell as="parent" id="-1e985524:130d9355380:-7d28" parent="-1e985524:130d9355380:-7d27"/><ImplicitOutputPort as="source" connectable="0" connectedLinkId="14" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1e985524:130d9355380:-7c9b" ordering="1" parent="-1e985524:130d9355380:-7d0e" style="ImplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;spacingBottom=5;rotation=90"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitInputPort as="target" connectable="0" connectedLinkId="14" dataType="UNKNOW_TYPE" id="-1e985524:130d9355380:-7cdc" ordering="1" parent="-1e985524:130d9355380:-7cdd" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort></ImplicitLink><ImplicitLink id="-1e985524:130d9355380:-7cde"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="170.0" y="366.0"/><mxPoint as="targetPoint" x="170.0" y="320.0"/></mxGeometry><mxCell as="parent" id="-1e985524:130d9355380:-7d28" parent="-1e985524:130d9355380:-7d27"/><ImplicitOutputPort as="source" connectable="0" connectedLinkId="15" dataType="UNKNOW_TYPE" id="-1e985524:130d9355380:-7cda" ordering="2" parent="-1e985524:130d9355380:-7cdd" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitInputPort as="target" connectable="0" connectedLinkId="15" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1e985524:130d9355380:-7d16" ordering="1" parent="-1e985524:130d9355380:-7d17" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=90;spacingTop=5"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort></ImplicitLink><VoltageSensorBlock angle="90" dependsOnU="1" id="-1e985524:130d9355380:-7cce" interfaceFunctionName="VoltageSensor" ordering="7" parent="-1e985524:130d9355380:-7d28" simulationFunctionName="VoltageSensor" simulationFunctionType="DEFAULT" style="VoltageSensor;rotation=90"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="VoltageSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="v"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="310.0" y="202.0"/></VoltageSensorBlock><ImplicitOutputPort connectable="0" connectedLinkId="21" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1e985524:130d9355380:-7ccd" ordering="1" parent="-1e985524:130d9355380:-7cce" style="ImplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;rotation=90;spacingBottom=5"><mxGeometry as="geometry" height="8.0" width="8.0" x="6.0" y="40.0"/></ImplicitOutputPort><ExplicitOutputPort connectable="0" connectedLinkId="22" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1e985524:130d9355380:-7ccc" ordering="2" parent="-1e985524:130d9355380:-7cce" style="ExplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;rotation=90;spacingBottom=5"><mxGeometry as="geometry" height="8.0" width="8.0" x="26.0" y="40.0"/></ExplicitOutputPort><ImplicitInputPort connectable="0" connectedLinkId="18" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1e985524:130d9355380:-7ccb" ordering="1" parent="-1e985524:130d9355380:-7cce" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=90;spacingTop=5"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock blockType="h" id="-1e985524:130d9355380:-7cc5" interfaceFunctionName="CLOCK_c" ordering="8" parent="-1e985524:130d9355380:-7d28" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="1.0E-6"/><data column="1" line="0" realPart="1.0E-6"/><data column="2" line="0" realPart="1.0E-10"/><data column="3" line="0" realPart="100001.0"/><data column="4" line="0" realPart="0.0"/><data column="5" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="4"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="2.0"/><data column="3" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="4"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="10.0"/><data column="3" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="14"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="399.0"/><data column="1" line="0" realPart="162.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value=" "/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="23"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="14"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="320.0"/><data column="1" line="0" realPart="232.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.001"/><data column="0" line="1" value="0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="3" width="1"><data column="0" line="0" value="dt=o.model.rpar(1);"/><data column="0" line="1" value="txt=['Delay';string(dt)];"/><data column="0" line="2" value="xstringb(orig(1),orig(2),txt,sz(1),sz(2),'fill');"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="23"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.0010"/><data column="0" line="1" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="340.0"/><data column="0" line="1" realPart="340.0"/><data column="0" line="2" realPart="380.71"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="226.29"/><data column="0" line="1" realPart="172.0"/><data column="0" line="2" realPart="172.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="14"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="380.71066"/><data column="0" line="1" realPart="172.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.3333333333333333"/><data column="1" line="0" realPart="0.3333333333333333"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="5.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="23"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="1.0"/><data column="0" line="1" realPart="1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabBoolean height="1" width="3"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/><data column="2" line="0" value="false"/></ScilabBoolean><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="380.71"/><data column="0" line="1" realPart="399.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="172.0"/><data column="0" line="1" realPart="172.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="380.71"/><data column="0" line="1" realPart="380.71"/><data column="0" line="2" realPart="340.0"/><data column="0" line="3" realPart="340.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="172.0"/><data column="0" line="1" realPart="302.0"/><data column="0" line="2" realPart="302.0"/><data column="0" line="3" realPart="277.71"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="2.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value="scicos4.4"/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="48.0" width="40.0" x="410.0" y="40.0"/></BasicBlock><CommandPort connectable="0" connectedLinkId="24" dataType="UNKNOW_TYPE" id="-1e985524:130d9355380:-7c90" ordering="1" parent="-1e985524:130d9355380:-7cc5" style="CommandPort;align=center;labelPosition=center;verticalLabelPosition=top;rotation=90;spacingBottom=5"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="48.0"/></CommandPort><BasicBlock dependsOnU="1" id="-1e985524:130d9355380:-7cba" interfaceFunctionName="CMSCOPE" ordering="9" parent="-1e985524:130d9355380:-7d28" simulationFunctionName="cmscope" simulationFunctionType="C_OR_FORTRAN" style="CMSCOPE"><ScilabString as="exprs" height="11" width="1"><data column="0" line="0" value="1 1"/><data column="0" line="1" value="1 3 5 7 9 11 13 15"/><data column="0" line="2" value="-1"/><data column="0" line="3" value="[]"/><data column="0" line="4" value="[]"/><data column="0" line="5" value="0 2"/><data column="0" line="6" value="0.002 13"/><data column="0" line="7" value="0.1 0.1"/><data column="0" line="8" value="20"/><data column="0" line="9" value="0"/><data column="0" line="10" value=""/></ScilabString><ScilabDouble as="realParameters" height="7" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="0.1"/><data column="0" line="2" realPart="0.1"/><data column="0" line="3" realPart="0.0"/><data column="0" line="4" realPart="0.0020"/><data column="0" line="5" realPart="2.0"/><data column="0" line="6" realPart="13.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="12" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="2.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="-1.0"/><data column="0" line="4" realPart="-1.0"/><data column="0" line="5" realPart="-1.0"/><data column="0" line="6" realPart="-1.0"/><data column="0" line="7" realPart="1.0"/><data column="0" line="8" realPart="1.0"/><data column="0" line="9" realPart="1.0"/><data column="0" line="10" realPart="3.0"/><data column="0" line="11" realPart="0.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="410.0" y="150.0"/></BasicBlock><ExplicitInputPort connectable="0" connectedLinkId="23" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1e985524:130d9355380:-7c83" ordering="1" parent="-1e985524:130d9355380:-7cba" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ExplicitInputPort><ControlPort connectable="0" connectedLinkId="24" dataType="UNKNOW_TYPE" id="-1e985524:130d9355380:-7c81" ordering="1" parent="-1e985524:130d9355380:-7cba" style="ControlPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=90;spacingTop=5"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><ExplicitInputPort connectable="0" connectedLinkId="22" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1e985524:130d9355380:-7c82" ordering="2" parent="-1e985524:130d9355380:-7cba" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="26.0"/></ExplicitInputPort><SplitBlock id="-1e985524:130d9355380:-7cb5" ordering="10" parent="-1e985524:130d9355380:-7d28" simulationFunctionType="DEFAULT"><mxGeometry as="geometry" height="7.0" width="7.0" x="267.0" y="167.0"/></SplitBlock><ImplicitInputPort connectable="0" connectedLinkId="16" dataType="UNKNOW_TYPE" id="-1e985524:130d9355380:-7cb4" ordering="1" parent="-1e985524:130d9355380:-7cb5" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort connectable="0" connectedLinkId="17" dataType="UNKNOW_TYPE" id="-1e985524:130d9355380:-7cb3" ordering="1" parent="-1e985524:130d9355380:-7cb5" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort connectable="0" connectedLinkId="18" dataType="UNKNOW_TYPE" id="-1e985524:130d9355380:-7cb2" ordering="2" parent="-1e985524:130d9355380:-7cb5" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="-1e985524:130d9355380:-7cb1"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass=""><mxPoint x="270.0" y="110.0"/></Array></mxGeometry><mxCell as="parent" id="-1e985524:130d9355380:-7d28" parent="-1e985524:130d9355380:-7d27"/><ImplicitOutputPort as="source" connectable="0" connectedLinkId="16" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1e985524:130d9355380:-7cee" ordering="1" parent="-1e985524:130d9355380:-7cef" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort as="target" connectable="0" connectedLinkId="16" dataType="UNKNOW_TYPE" id="-1e985524:130d9355380:-7cb4" ordering="1" parent="-1e985524:130d9355380:-7cb5" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort></ImplicitLink><ImplicitLink id="-1e985524:130d9355380:-7cb0"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass=""/></mxGeometry><mxCell as="parent" id="-1e985524:130d9355380:-7d28" parent="-1e985524:130d9355380:-7d27"/><ImplicitOutputPort as="source" connectable="0" connectedLinkId="17" dataType="UNKNOW_TYPE" id="-1e985524:130d9355380:-7cb3" ordering="1" parent="-1e985524:130d9355380:-7cb5" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitInputPort as="target" connectable="0" connectedLinkId="17" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1e985524:130d9355380:-7c94" ordering="1" parent="-1e985524:130d9355380:-7d1f" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;spacingTop=5;rotation=90"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort></ImplicitLink><ImplicitLink id="-1e985524:130d9355380:-7cb6"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="330.0" y="198.0"/><mxPoint as="targetPoint" x="270.0" y="170.0"/><Array as="points" scilabClass=""><mxPoint x="330.0" y="170.0"/></Array></mxGeometry><mxCell as="parent" id="-1e985524:130d9355380:-7d28" parent="-1e985524:130d9355380:-7d27"/><ImplicitOutputPort as="source" connectable="0" connectedLinkId="18" dataType="UNKNOW_TYPE" id="-1e985524:130d9355380:-7cb2" ordering="2" parent="-1e985524:130d9355380:-7cb5" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitInputPort as="target" connectable="0" connectedLinkId="18" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1e985524:130d9355380:-7ccb" ordering="1" parent="-1e985524:130d9355380:-7cce" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=90;spacingTop=5"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort></ImplicitLink><SplitBlock id="-1e985524:130d9355380:-7cae" ordering="11" parent="-1e985524:130d9355380:-7d28" simulationFunctionType="DEFAULT"><mxGeometry as="geometry" height="7.0" width="7.0" x="267.0" y="277.0"/></SplitBlock><ImplicitInputPort connectable="0" connectedLinkId="19" dataType="UNKNOW_TYPE" id="-1e985524:130d9355380:-7cad" ordering="1" parent="-1e985524:130d9355380:-7cae" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort connectable="0" connectedLinkId="20" dataType="UNKNOW_TYPE" id="-1e985524:130d9355380:-7cac" ordering="1" parent="-1e985524:130d9355380:-7cae" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort connectable="0" connectedLinkId="21" dataType="UNKNOW_TYPE" id="-1e985524:130d9355380:-7cab" ordering="2" parent="-1e985524:130d9355380:-7cae" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="-1e985524:130d9355380:-7caa"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass=""/></mxGeometry><mxCell as="parent" id="-1e985524:130d9355380:-7d28" parent="-1e985524:130d9355380:-7d27"/><ImplicitOutputPort as="source" connectable="0" connectedLinkId="19" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1e985524:130d9355380:-7c93" ordering="1" parent="-1e985524:130d9355380:-7d1f" style="ImplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;spacingBottom=5;rotation=90"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitInputPort as="target" connectable="0" connectedLinkId="19" dataType="UNKNOW_TYPE" id="-1e985524:130d9355380:-7cad" ordering="1" parent="-1e985524:130d9355380:-7cae" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort></ImplicitLink><ImplicitLink id="-1e985524:130d9355380:-7ca9"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass=""><mxPoint x="270.0" y="320.0"/></Array></mxGeometry><mxCell as="parent" id="-1e985524:130d9355380:-7d28" parent="-1e985524:130d9355380:-7d27"/><ImplicitOutputPort as="source" connectable="0" connectedLinkId="20" dataType="UNKNOW_TYPE" id="-1e985524:130d9355380:-7cdb" ordering="1" parent="-1e985524:130d9355380:-7cdd" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort as="target" connectable="0" connectedLinkId="20" dataType="UNKNOW_TYPE" id="-1e985524:130d9355380:-7cac" ordering="1" parent="-1e985524:130d9355380:-7cae" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort></ImplicitLink><ImplicitLink id="-1e985524:130d9355380:-7caf"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="320.0" y="246.0"/><mxPoint as="targetPoint" x="270.0" y="280.0"/><Array as="points" scilabClass=""><mxPoint x="320.0" y="280.0"/></Array></mxGeometry><mxCell as="parent" id="-1e985524:130d9355380:-7d28" parent="-1e985524:130d9355380:-7d27"/><ImplicitOutputPort as="source" connectable="0" connectedLinkId="21" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1e985524:130d9355380:-7ccd" ordering="1" parent="-1e985524:130d9355380:-7cce" style="ImplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;rotation=90;spacingBottom=5"><mxGeometry as="geometry" height="8.0" width="8.0" x="6.0" y="40.0"/></ImplicitOutputPort><ImplicitOutputPort as="target" connectable="0" connectedLinkId="21" dataType="UNKNOW_TYPE" id="-1e985524:130d9355380:-7cab" ordering="2" parent="-1e985524:130d9355380:-7cae" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort></ImplicitLink><ExplicitLink id="-1e985524:130d9355380:-7ca2"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="340.0" y="246.0"/><mxPoint as="targetPoint" x="410.0" y="180.0"/><Array as="points" scilabClass=""><mxPoint x="340.0" y="260.0"/><mxPoint x="390.0" y="260.0"/><mxPoint x="390.0" y="180.0"/></Array></mxGeometry><mxCell as="parent" id="-1e985524:130d9355380:-7d28" parent="-1e985524:130d9355380:-7d27"/><ExplicitOutputPort as="source" connectable="0" connectedLinkId="22" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1e985524:130d9355380:-7ccc" ordering="2" parent="-1e985524:130d9355380:-7cce" style="ExplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;rotation=90;spacingBottom=5"><mxGeometry as="geometry" height="8.0" width="8.0" x="26.0" y="40.0"/></ExplicitOutputPort><ExplicitInputPort as="target" connectable="0" connectedLinkId="22" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1e985524:130d9355380:-7c82" ordering="2" parent="-1e985524:130d9355380:-7cba" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="26.0"/></ExplicitInputPort></ExplicitLink><ExplicitLink id="-1e985524:130d9355380:-7ca1"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="224.0" y="130.0"/><mxPoint as="targetPoint" x="400.0" y="160.0"/><Array as="points" scilabClass=""><mxPoint x="390.0" y="130.0"/><mxPoint x="390.0" y="160.0"/></Array></mxGeometry><mxCell as="parent" id="-1e985524:130d9355380:-7d28" parent="-1e985524:130d9355380:-7d27"/><ExplicitOutputPort as="source" connectable="0" connectedLinkId="23" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1e985524:130d9355380:-7ced" ordering="2" parent="-1e985524:130d9355380:-7cef" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="26.0"/></ExplicitOutputPort><ExplicitInputPort as="target" connectable="0" connectedLinkId="23" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1e985524:130d9355380:-7c83" ordering="1" parent="-1e985524:130d9355380:-7cba" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ExplicitInputPort></ExplicitLink><CommandControlLink id="-1e985524:130d9355380:-7c9e"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="430.0" y="84.0"/><mxPoint as="targetPoint" x="430.0" y="150.0"/></mxGeometry><mxCell as="parent" id="-1e985524:130d9355380:-7d28" parent="-1e985524:130d9355380:-7d27"/><CommandPort as="source" connectable="0" connectedLinkId="24" dataType="UNKNOW_TYPE" id="-1e985524:130d9355380:-7c90" ordering="1" parent="-1e985524:130d9355380:-7cc5" style="CommandPort;align=center;labelPosition=center;verticalLabelPosition=top;rotation=90;spacingBottom=5"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="48.0"/></CommandPort><ControlPort as="target" connectable="0" connectedLinkId="24" dataType="UNKNOW_TYPE" id="-1e985524:130d9355380:-7c81" ordering="1" parent="-1e985524:130d9355380:-7cba" style="ControlPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=90;spacingTop=5"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort></CommandControlLink></root></mxGraphModel><mxCell as="defaultParent" id="-1e985524:130d9355380:-7d28" parent="-1e985524:130d9355380:-7d27"/></XcosDiagram>
\ No newline at end of file diff --git a/Working_Examples/154/CH8/EX8.3/ch8_31.jpeg b/Working_Examples/154/CH8/EX8.3/ch8_31.jpeg Binary files differnew file mode 100755 index 0000000..ac0b5d1 --- /dev/null +++ b/Working_Examples/154/CH8/EX8.3/ch8_31.jpeg diff --git a/Working_Examples/154/CH8/EX8.3/chap8_3.jpeg b/Working_Examples/154/CH8/EX8.3/chap8_3.jpeg Binary files differnew file mode 100755 index 0000000..8396075 --- /dev/null +++ b/Working_Examples/154/CH8/EX8.3/chap8_3.jpeg diff --git a/Working_Examples/154/CH8/EX8.4/ch8_4.xcos b/Working_Examples/154/CH8/EX8.4/ch8_4.xcos new file mode 100755 index 0000000..f516b78 --- /dev/null +++ b/Working_Examples/154/CH8/EX8.4/ch8_4.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" finalIntegrationTime="0.1" title="ch8_4"><!--Xcos - 1.0 - scilab-5.5.2 - 20160406 2040--><mxGraphModel as="model"><root><mxCell id="-1e985524:130d9355380:-7b0c"/><mxCell id="-1e985524:130d9355380:-7b0d" parent="-1e985524:130d9355380:-7b0c"/><BasicBlock dependsOnT="1" id="-1e985524:130d9355380:-7aed" interfaceFunctionName="INTEGRAL_m" ordering="1" parent="-1e985524:130d9355380:-7b0d" simulationFunctionName="integral_func" simulationFunctionType="C_OR_FORTRAN" style="INTEGRAL_m;flip=false;mirror=false"><ScilabString as="exprs" height="5" width="1"><data column="0" line="0" value="3"/><data column="0" line="1" value="0"/><data column="0" line="2" value="0"/><data column="0" line="3" value="1"/><data column="0" line="4" value="-1"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="state" height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="260.0" y="172.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1e985524:130d9355380:-7aaf" ordering="1" parent="-1e985524:130d9355380:-7aed" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1e985524:130d9355380:-7ab0" ordering="1" parent="-1e985524:130d9355380:-7aed" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><BasicBlock blockType="h" id="-1e985524:130d9355380:-7ae5" interfaceFunctionName="STEP_FUNCTION" ordering="2" parent="-1e985524:130d9355380:-7b0d" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="STEP_FUNCTION;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="STEP_FUNCTION"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-4"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="14.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=" "/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="3" width="1"><data column="0" line="0" value="0"/><data column="0" line="1" value="12"/><data column="0" line="2" value="0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"STEP",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="STEP"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="step_func"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="true"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-28bb03c0:130e63286b9:-7f9e"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="STEP"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-28bb03c0:130e63286b9:-7f9e"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="88.57143300000001"/><data column="1" line="0" realPart="-50.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"OUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="OUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-2.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-28bb03c0:130e63286b9:-7f9b"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="OUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-28bb03c0:130e63286b9:-7f9b"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="6" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="92.00000299999999"/><data column="0" line="2" realPart="53.478395000000006"/><data column="0" line="3" realPart="53.478395000000006"/><data column="0" line="4" realPart="92.00000299999999"/><data column="0" line="5" realPart="60.0"/></ScilabDouble><ScilabDouble height="6" width="1"><data column="0" line="0" realPart="-44.0"/><data column="0" line="1" realPart="-158.39289999999994"/><data column="0" line="2" realPart="-158.39289999999994"/><data column="0" line="3" realPart="-68.69677999999999"/><data column="0" line="4" realPart="-68.69677999999999"/><data column="0" line="5" realPart="4.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="84.0"/><data column="0" line="1" realPart="104.57143300000001"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-20.0"/><data column="0" line="1" realPart="-40.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="10.0" y="160.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataType="REAL_MATRIX" id="-28bb03c0:130e63286b9:-7f73" ordering="1" parent="-1e985524:130d9355380:-7ae5" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ExplicitLink id="-1e985524:130d9355380:-7ae3" parent="-1e985524:130d9355380:-7b0d" source="-28bb03c0:130e63286b9:-7f73" target="-1e985524:130d9355380:-7af6"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="54.0" y="180.0"/><mxPoint as="targetPoint" x="100.0" y="180.0"/></mxGeometry></ExplicitLink><ExplicitLink id="-1e985524:130d9355380:-7ae2" parent="-1e985524:130d9355380:-7b0d" source="-1e985524:130d9355380:-7af7" target="-1e985524:130d9355380:-7ab4"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="144.0" y="192.0"/><mxPoint as="targetPoint" x="180.0" y="190.0"/></mxGeometry></ExplicitLink><ExplicitLink id="-1e985524:130d9355380:-7ae1" parent="-1e985524:130d9355380:-7b0d" source="-1e985524:130d9355380:-7ab3" target="-1e985524:130d9355380:-7ab0"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="224.0" y="192.0"/><mxPoint as="targetPoint" x="250.0" y="190.0"/></mxGeometry></ExplicitLink><BasicBlock angle="180" dependsOnU="1" id="-1e985524:130d9355380:-7add" interfaceFunctionName="GAINBLK_f" ordering="3" parent="-1e985524:130d9355380:-7b0d" simulationFunctionName="gain" simulationFunctionType="DEFAULT" style="GAINBLK_f;rotation=180;flip=false;mirror=false" value="10"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="10"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="10.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="50.0" width="40.0" x="190.0" y="290.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1e985524:130d9355380:-7ab7" ordering="1" parent="-1e985524:130d9355380:-7add" style="ExplicitOutputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=180;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitOutputPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1e985524:130d9355380:-7ab8" ordering="1" parent="-1e985524:130d9355380:-7add" style="ExplicitInputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=180;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitInputPort><BasicBlock dependsOnU="1" id="-1e985524:130d9355380:-7acf" interfaceFunctionName="CSCOPE" ordering="4" parent="-1e985524:130d9355380:-7b0d" simulationFunctionName="cscope" simulationFunctionType="C_OR_FORTRAN" style="CSCOPE;flip=false;mirror=false"><ScilabString as="exprs" height="10" width="1"><data column="0" line="0" value="1 3 5 7 9 11 13 15"/><data column="0" line="1" value="-1"/><data column="0" line="2" value="[]"/><data column="0" line="3" value="[600;400]"/><data column="0" line="4" value="0"/><data column="0" line="5" value="3.1"/><data column="0" line="6" value="0.1"/><data column="0" line="7" value="20"/><data column="0" line="8" value="0"/><data column="0" line="9" value=""/></ScilabString><ScilabDouble as="realParameters" height="4" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="0.0"/><data column="0" line="2" realPart="3.1"/><data column="0" line="3" realPart="0.1"/></ScilabDouble><ScilabDouble as="integerParameters" height="15" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="1.0"/><data column="0" line="4" realPart="3.0"/><data column="0" line="5" realPart="5.0"/><data column="0" line="6" realPart="7.0"/><data column="0" line="7" realPart="9.0"/><data column="0" line="8" realPart="11.0"/><data column="0" line="9" realPart="13.0"/><data column="0" line="10" realPart="15.0"/><data column="0" line="11" realPart="-1.0"/><data column="0" line="12" realPart="-1.0"/><data column="0" line="13" realPart="600.0"/><data column="0" line="14" realPart="400.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="380.0" y="170.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="-1e985524:130d9355380:-7a5c" ordering="1" parent="-1e985524:130d9355380:-7acf" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ControlPort dataType="UNKNOW_TYPE" id="-1e985524:130d9355380:-7a5b" ordering="1" parent="-1e985524:130d9355380:-7acf" style="ControlPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=90;spacingTop=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><BasicBlock blockType="h" id="-1e985524:130d9355380:-7acc" interfaceFunctionName="CLOCK_c" ordering="5" parent="-1e985524:130d9355380:-7b0d" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="99.0"/><data column="1" line="0" realPart="-144.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-28bb03c0:130e63286b9:-7f93"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-28bb03c0:130e63286b9:-7f93"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-54.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.001"/><data column="0" line="1" value="0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.001"/><data column="0" line="1" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-28bb03c0:130e63286b9:-7f8f"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-28bb03c0:130e63286b9:-7f8f"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="92.71066000000002"/><data column="1" line="0" realPart="-146.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="8.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="5.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-28bb03c0:130e63286b9:-7f8a"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-28bb03c0:130e63286b9:-7f8a"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="72.0"/><data column="0" line="2" realPart="104.71066000000002"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-58.0"/><data column="0" line="1" realPart="-186.0"/><data column="0" line="2" realPart="-134.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="103.37732666666669"/><data column="0" line="1" realPart="129.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-150.0"/><data column="0" line="1" realPart="-120.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="106.04399333333335"/><data column="0" line="1" realPart="122.70999999999998"/><data column="0" line="2" realPart="82.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-150.0"/><data column="0" line="1" realPart="-40.0"/><data column="0" line="2" realPart="-40.0"/><data column="0" line="3" realPart="-10.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="46.0" width="40.0" x="380.0" y="70.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="-1e985524:130d9355380:-7aa9" ordering="1" parent="-1e985524:130d9355380:-7acc" style="CommandPort;align=center;labelPosition=center;verticalLabelPosition=top;rotation=90;spacingBottom=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="46.0"/></CommandPort><CommandControlLink id="-1e985524:130d9355380:-7aca" parent="-1e985524:130d9355380:-7b0d" source="-1e985524:130d9355380:-7aa9" target="-1e985524:130d9355380:-7a5b"><mxGeometry as="geometry" x="210.0" y="110.0"><mxPoint as="sourcePoint" x="610.0" y="236.0"/><mxPoint as="targetPoint" x="610.0" y="290.0"/></mxGeometry></CommandControlLink><SplitBlock id="-1e985524:130d9355380:-7ac2" ordering="6" parent="-1e985524:130d9355380:-7b0d" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="327.0" y="187.0"/></SplitBlock><ExplicitOutputPort dataType="UNKNOW_TYPE" id="-1e985524:130d9355380:-7abf" ordering="2" parent="-1e985524:130d9355380:-7ac2" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitInputPort dataType="UNKNOW_TYPE" id="-1e985524:130d9355380:-7ac1" ordering="1" parent="-1e985524:130d9355380:-7ac2" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ExplicitInputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="-1e985524:130d9355380:-7ac0" ordering="1" parent="-1e985524:130d9355380:-7ac2" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitLink id="-1e985524:130d9355380:-7abe" parent="-1e985524:130d9355380:-7b0d" source="-1e985524:130d9355380:-7aaf" target="-1e985524:130d9355380:-7ac1"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ExplicitLink><ExplicitLink id="-1e985524:130d9355380:-7abd" parent="-1e985524:130d9355380:-7b0d" source="-1e985524:130d9355380:-7ac0" target="-1e985524:130d9355380:-7ab8"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="330.0" y="190.0"/><mxPoint x="330.0" y="310.0"/></Array></mxGeometry></ExplicitLink><BasicBlock blockType="x" dependsOnU="1" id="-1e985524:130d9355380:-7aa0" interfaceFunctionName="DERIV" ordering="7" parent="-1e985524:130d9355380:-7b0d" simulationFunctionName="deriv" simulationFunctionType="C_OR_FORTRAN" style="DERIV;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="50.0" width="60.0" x="390.0" y="252.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataType="REAL_MATRIX" id="-1e985524:130d9355380:-7a9f" ordering="1" parent="-1e985524:130d9355380:-7aa0" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="60.0" y="16.0"/></ExplicitOutputPort><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="-1e985524:130d9355380:-7a9e" ordering="1" parent="-1e985524:130d9355380:-7aa0" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><BasicBlock dependsOnU="1" id="-1e985524:130d9355380:-7a9a" interfaceFunctionName="GAINBLK_f" ordering="8" parent="-1e985524:130d9355380:-7b0d" simulationFunctionName="gain" simulationFunctionType="DEFAULT" style="GAINBLK_f;flip=false;mirror=false" value="0.1"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="0.1"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="0.1"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="50.0" width="40.0" x="500.0" y="250.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1e985524:130d9355380:-7a8a" ordering="1" parent="-1e985524:130d9355380:-7a9a" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1e985524:130d9355380:-7a8b" ordering="1" parent="-1e985524:130d9355380:-7a9a" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><SplitBlock id="-1e985524:130d9355380:-7a93" ordering="9" parent="-1e985524:130d9355380:-7b0d" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="347.0" y="187.0"/></SplitBlock><ExplicitOutputPort dataType="UNKNOW_TYPE" id="-1e985524:130d9355380:-7a90" ordering="2" parent="-1e985524:130d9355380:-7a93" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitInputPort dataType="UNKNOW_TYPE" id="-1e985524:130d9355380:-7a92" ordering="1" parent="-1e985524:130d9355380:-7a93" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ExplicitInputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="-1e985524:130d9355380:-7a91" ordering="1" parent="-1e985524:130d9355380:-7a93" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitLink id="-1e985524:130d9355380:-7a8f" parent="-1e985524:130d9355380:-7b0d" source="-1e985524:130d9355380:-7abf" target="-1e985524:130d9355380:-7a92"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ExplicitLink><ExplicitLink id="-1e985524:130d9355380:-7a8e" parent="-1e985524:130d9355380:-7b0d" source="-1e985524:130d9355380:-7a91" target="-1e985524:130d9355380:-7a5c"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ExplicitLink><ExplicitLink id="-1e985524:130d9355380:-7a94" parent="-1e985524:130d9355380:-7b0d" source="-1e985524:130d9355380:-7a90" target="-1e985524:130d9355380:-7a9e"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="386.0" y="272.0"/><mxPoint as="targetPoint" x="350.0" y="190.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="350.0" y="270.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="-1e985524:130d9355380:-7a8d" parent="-1e985524:130d9355380:-7b0d" source="-1e985524:130d9355380:-7a9f" target="-1e985524:130d9355380:-7a8b"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="454.0" y="272.0"/><mxPoint as="targetPoint" x="500.0" y="270.0"/></mxGeometry></ExplicitLink><BasicBlock dependsOnU="1" id="-1e985524:130d9355380:-7a82" interfaceFunctionName="CSCOPE" ordering="10" parent="-1e985524:130d9355380:-7b0d" simulationFunctionName="cscope" simulationFunctionType="C_OR_FORTRAN" style="CSCOPE;flip=false;mirror=false"><ScilabString as="exprs" height="10" width="1"><data column="0" line="0" value="1 3 5 7 9 11 13 15"/><data column="0" line="1" value="-1"/><data column="0" line="2" value="[]"/><data column="0" line="3" value="[600;400]"/><data column="0" line="4" value="-31"/><data column="0" line="5" value="0"/><data column="0" line="6" value="0.1"/><data column="0" line="7" value="20"/><data column="0" line="8" value="0"/><data column="0" line="9" value=""/></ScilabString><ScilabDouble as="realParameters" height="4" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="-31.0"/><data column="0" line="2" realPart="0.0"/><data column="0" line="3" realPart="0.1"/></ScilabDouble><ScilabDouble as="integerParameters" height="15" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="1.0"/><data column="0" line="4" realPart="3.0"/><data column="0" line="5" realPart="5.0"/><data column="0" line="6" realPart="7.0"/><data column="0" line="7" realPart="9.0"/><data column="0" line="8" realPart="11.0"/><data column="0" line="9" realPart="13.0"/><data column="0" line="10" realPart="15.0"/><data column="0" line="11" realPart="-1.0"/><data column="0" line="12" realPart="-1.0"/><data column="0" line="13" realPart="600.0"/><data column="0" line="14" realPart="400.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="570.0" y="250.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="-1e985524:130d9355380:-7a4c" ordering="1" parent="-1e985524:130d9355380:-7a82" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ControlPort dataType="UNKNOW_TYPE" id="-1e985524:130d9355380:-7a4b" ordering="1" parent="-1e985524:130d9355380:-7a82" style="ControlPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=90;spacingTop=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><BasicBlock blockType="h" id="-1e985524:130d9355380:-7a7f" interfaceFunctionName="CLOCK_c" ordering="11" parent="-1e985524:130d9355380:-7b0d" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="99.0"/><data column="1" line="0" realPart="-144.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-28bb03c0:130e63286b9:-7f81"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-28bb03c0:130e63286b9:-7f81"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-54.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.001"/><data column="0" line="1" value="0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.001"/><data column="0" line="1" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-28bb03c0:130e63286b9:-7f7d"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-28bb03c0:130e63286b9:-7f7d"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="92.71066000000002"/><data column="1" line="0" realPart="-146.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="8.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="5.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-28bb03c0:130e63286b9:-7f78"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-28bb03c0:130e63286b9:-7f78"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="72.0"/><data column="0" line="2" realPart="104.71066000000002"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-58.0"/><data column="0" line="1" realPart="-186.0"/><data column="0" line="2" realPart="-134.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="103.37732666666669"/><data column="0" line="1" realPart="129.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-150.0"/><data column="0" line="1" realPart="-120.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="106.04399333333335"/><data column="0" line="1" realPart="122.70999999999998"/><data column="0" line="2" realPart="82.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-150.0"/><data column="0" line="1" realPart="-40.0"/><data column="0" line="2" realPart="-40.0"/><data column="0" line="3" realPart="-10.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="50.0" width="40.0" x="570.0" y="150.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="-1e985524:130d9355380:-7a42" ordering="1" parent="-1e985524:130d9355380:-7a7f" style="CommandPort;align=center;labelPosition=center;verticalLabelPosition=top;rotation=90;spacingBottom=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="50.0"/></CommandPort><CommandControlLink id="-1e985524:130d9355380:-7a7d" parent="-1e985524:130d9355380:-7b0d" source="-1e985524:130d9355380:-7a42" target="-1e985524:130d9355380:-7a4b"><mxGeometry as="geometry" x="220.0" y="120.0"><mxPoint as="sourcePoint" x="620.0" y="246.0"/><mxPoint as="targetPoint" x="620.0" y="300.0"/></mxGeometry></CommandControlLink><ExplicitLink id="-1e985524:130d9355380:-7a70" parent="-1e985524:130d9355380:-7b0d" source="-1e985524:130d9355380:-7a8a" target="-1e985524:130d9355380:-7a4c"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="544.0" y="270.0"/><mxPoint as="targetPoint" x="570.0" y="270.0"/></mxGeometry></ExplicitLink><ExplicitLink id="-1e985524:130d9355380:-7a6e" parent="-1e985524:130d9355380:-7b0d" source="-1e985524:130d9355380:-7ab7" target="-1e985524:130d9355380:-7af5"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="186.0" y="310.0"/><mxPoint as="targetPoint" x="100.0" y="200.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="60.0" y="310.0"/><mxPoint x="60.0" y="200.0"/></Array></mxGeometry></ExplicitLink><BasicBlock dependsOnU="1" id="-1e985524:130d9355380:-7b04" interfaceFunctionName="GAINBLK_f" ordering="12" parent="-1e985524:130d9355380:-7b0d" simulationFunctionName="gain" simulationFunctionType="DEFAULT" style="GAINBLK_f;flip=false;mirror=false" value="10"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="10"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="10.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="50.0" width="40.0" x="180.0" y="172.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1e985524:130d9355380:-7ab3" ordering="1" parent="-1e985524:130d9355380:-7b04" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1e985524:130d9355380:-7ab4" ordering="1" parent="-1e985524:130d9355380:-7b04" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><Summation dependsOnU="1" id="-1e985524:130d9355380:-7af8" interfaceFunctionName="SUMMATION" ordering="13" parent="-1e985524:130d9355380:-7b0d" simulationFunctionName="summation" simulationFunctionType="C_OR_FORTRAN" style="SUMMATION;flip=false;mirror=false" value="+"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="[1;-1]"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="2" width="1"><data column="0" line="0" realPart="1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="100.0" y="172.0"/></Summation><ExplicitInputPort dataType="REAL_MATRIX" id="-1e985524:130d9355380:-7af5" ordering="2" parent="-1e985524:130d9355380:-7af8" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0;flip=false;mirror=false" value="-"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="26.0"/></ExplicitInputPort><ExplicitOutputPort dataType="REAL_MATRIX" id="-1e985524:130d9355380:-7af7" ordering="1" parent="-1e985524:130d9355380:-7af8" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ExplicitInputPort dataType="REAL_MATRIX" id="-1e985524:130d9355380:-7af6" ordering="1" parent="-1e985524:130d9355380:-7af8" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0;flip=false;mirror=false" value="+"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ExplicitInputPort></root></mxGraphModel><mxCell as="defaultParent" id="-1e985524:130d9355380:-7b0d" parent="-1e985524:130d9355380:-7b0c"/></XcosDiagram>
\ No newline at end of file diff --git a/Working_Examples/154/CH8/EX8.4/ch8_41.jpeg b/Working_Examples/154/CH8/EX8.4/ch8_41.jpeg Binary files differnew file mode 100755 index 0000000..9bed865 --- /dev/null +++ b/Working_Examples/154/CH8/EX8.4/ch8_41.jpeg diff --git a/Working_Examples/154/CH8/EX8.4/chap8_4.jpeg b/Working_Examples/154/CH8/EX8.4/chap8_4.jpeg Binary files differnew file mode 100755 index 0000000..d6edb6d --- /dev/null +++ b/Working_Examples/154/CH8/EX8.4/chap8_4.jpeg diff --git a/Working_Examples/154/CH8/EX8.5/ch8_5.xcos b/Working_Examples/154/CH8/EX8.5/ch8_5.xcos new file mode 100755 index 0000000..aab5a0a --- /dev/null +++ b/Working_Examples/154/CH8/EX8.5/ch8_5.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" finalIntegrationTime="10.0" title="ch8_5"><!--Xcos - 1.0 - scilab-5.5.2 - 20160406 2040--><mxGraphModel as="model"><root><mxCell id="-5c3e5c92:130db8fddce:-7fff"/><mxCell id="-5c3e5c92:130db8fddce:-8000" parent="-5c3e5c92:130db8fddce:-7fff"/><GroundBlock angle="90" dependsOnU="1" id="-5c3e5c92:130db8fddce:-7fd6" interfaceFunctionName="Ground" ordering="1" parent="-5c3e5c92:130db8fddce:-8000" simulationFunctionName="Ground" simulationFunctionType="DEFAULT" style="Ground;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Ground"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="200.0" y="362.0"/></GroundBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5c3e5c92:130db8fddce:-7fd5" ordering="1" parent="-5c3e5c92:130db8fddce:-7fd6" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=90;spacingTop=5;flip=false;mirror=false"><Orientation as="orientation" value="NORTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock angle="90" dependsOnU="1" id="-5c3e5c92:130db8fddce:-7fcd" interfaceFunctionName="Inductor" ordering="2" parent="-5c3e5c92:130db8fddce:-8000" simulationFunctionName="Inductor" simulationFunctionType="DEFAULT" style="Inductor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="5*10^-3"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="0.005"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Inductor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="L"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.005"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="270.0" y="222.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5c3e5c92:130db8fddce:-7f3e" ordering="1" parent="-5c3e5c92:130db8fddce:-7fcd" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;spacingTop=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5c3e5c92:130db8fddce:-7f3d" ordering="1" parent="-5c3e5c92:130db8fddce:-7fcd" style="ImplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;spacingBottom=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><BasicBlock dependsOnU="1" id="-5c3e5c92:130db8fddce:-7fc3" interfaceFunctionName="Resistor" ordering="3" parent="-5c3e5c92:130db8fddce:-8000" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="12"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="12.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="12.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="110.0" y="92.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5c3e5c92:130db8fddce:-7f46" ordering="1" parent="-5c3e5c92:130db8fddce:-7fc3" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5c3e5c92:130db8fddce:-7f45" ordering="1" parent="-5c3e5c92:130db8fddce:-7fc3" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><BasicBlock angle="90" dependsOnU="1" id="-5c3e5c92:130db8fddce:-7fbd" interfaceFunctionName="Resistor" ordering="4" parent="-5c3e5c92:130db8fddce:-8000" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="6"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="200.0" y="220.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5c3e5c92:130db8fddce:-7f42" ordering="1" parent="-5c3e5c92:130db8fddce:-7fbd" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;spacingTop=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5c3e5c92:130db8fddce:-7f41" ordering="1" parent="-5c3e5c92:130db8fddce:-7fbd" style="ImplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;spacingBottom=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><BasicBlock dependsOnU="1" id="-5c3e5c92:130db8fddce:-7fb0" interfaceFunctionName="PotentialSensor" ordering="5" parent="-5c3e5c92:130db8fddce:-8000" simulationFunctionName="PotentialSensor" simulationFunctionType="DEFAULT" style="PotentialSensor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="PotentialSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="v"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="330.0" y="90.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5c3e5c92:130db8fddce:-7fae" ordering="1" parent="-5c3e5c92:130db8fddce:-7fb0" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5c3e5c92:130db8fddce:-7faf" ordering="1" parent="-5c3e5c92:130db8fddce:-7fb0" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><BasicBlock angle="90" dependsOnU="1" id="-5c3e5c92:130db8fddce:-7fa4" interfaceFunctionName="CurrentSensor" ordering="6" parent="-5c3e5c92:130db8fddce:-8000" simulationFunctionName="CurrentSensor" simulationFunctionType="DEFAULT" style="CurrentSensor;rotation=90;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CurrentSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="i"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="280.0" y="140.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5c3e5c92:130db8fddce:-7fa2" ordering="2" parent="-5c3e5c92:130db8fddce:-7fa4" style="ExplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;rotation=90;spacingBottom=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="26.0" y="40.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5c3e5c92:130db8fddce:-7fa1" ordering="1" parent="-5c3e5c92:130db8fddce:-7fa4" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=90;spacingTop=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5c3e5c92:130db8fddce:-7fa3" ordering="1" parent="-5c3e5c92:130db8fddce:-7fa4" style="ImplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;rotation=90;spacingBottom=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="6.0" y="40.0"/></ImplicitOutputPort><ImplicitLink id="-5c3e5c92:130db8fddce:-7f9c" parent="-5c3e5c92:130db8fddce:-8000" source="31befcfe:130dc407023:-7f65" target="-5c3e5c92:130db8fddce:-7f46"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="60.0" y="198.0"/><mxPoint as="targetPoint" x="100.0" y="110.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="60.0" y="110.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-5c3e5c92:130db8fddce:-7f9a" parent="-5c3e5c92:130db8fddce:-8000" source="-5c3e5c92:130db8fddce:-7fa3" target="-5c3e5c92:130db8fddce:-7f3e"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="290.0" y="184.0"/><mxPoint as="targetPoint" x="290.0" y="220.0"/></mxGeometry></ImplicitLink><SplitBlock id="-5c3e5c92:130db8fddce:-7f97" ordering="7" parent="-5c3e5c92:130db8fddce:-8000" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="217.0" y="107.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5c3e5c92:130db8fddce:-7f95" ordering="1" parent="-5c3e5c92:130db8fddce:-7f97" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5c3e5c92:130db8fddce:-7f94" ordering="2" parent="-5c3e5c92:130db8fddce:-7f97" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-5c3e5c92:130db8fddce:-7f96" ordering="1" parent="-5c3e5c92:130db8fddce:-7f97" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-5c3e5c92:130db8fddce:-7f93" parent="-5c3e5c92:130db8fddce:-8000" source="-5c3e5c92:130db8fddce:-7f45" target="-5c3e5c92:130db8fddce:-7f96"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-5c3e5c92:130db8fddce:-7f98" parent="-5c3e5c92:130db8fddce:-8000" source="-5c3e5c92:130db8fddce:-7f94" target="-5c3e5c92:130db8fddce:-7f42"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="220.0" y="216.0"/><mxPoint as="targetPoint" x="220.0" y="110.0"/></mxGeometry></ImplicitLink><SplitBlock id="-5c3e5c92:130db8fddce:-7f90" ordering="8" parent="-5c3e5c92:130db8fddce:-8000" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="217.0" y="307.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5c3e5c92:130db8fddce:-7f8e" ordering="1" parent="-5c3e5c92:130db8fddce:-7f90" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5c3e5c92:130db8fddce:-7f8d" ordering="2" parent="-5c3e5c92:130db8fddce:-7f90" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-5c3e5c92:130db8fddce:-7f8f" ordering="1" parent="-5c3e5c92:130db8fddce:-7f90" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-5c3e5c92:130db8fddce:-7f8b" parent="-5c3e5c92:130db8fddce:-8000" source="-5c3e5c92:130db8fddce:-7f3d" target="-5c3e5c92:130db8fddce:-7f8e"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="290.0" y="310.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-5c3e5c92:130db8fddce:-7f91" parent="-5c3e5c92:130db8fddce:-8000" source="-5c3e5c92:130db8fddce:-7f41" target="-5c3e5c92:130db8fddce:-7f8d"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="220.0" y="264.0"/><mxPoint as="targetPoint" x="220.0" y="310.0"/></mxGeometry></ImplicitLink><SplitBlock id="-5c3e5c92:130db8fddce:-7f89" ordering="9" parent="-5c3e5c92:130db8fddce:-8000" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="217.0" y="307.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5c3e5c92:130db8fddce:-7f87" ordering="1" parent="-5c3e5c92:130db8fddce:-7f89" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5c3e5c92:130db8fddce:-7f86" ordering="2" parent="-5c3e5c92:130db8fddce:-7f89" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-5c3e5c92:130db8fddce:-7f88" ordering="1" parent="-5c3e5c92:130db8fddce:-7f89" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-5c3e5c92:130db8fddce:-7f85" parent="-5c3e5c92:130db8fddce:-8000" source="31befcfe:130dc407023:-7f64" target="-5c3e5c92:130db8fddce:-7f88"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="60.0" y="310.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-5c3e5c92:130db8fddce:-7f84" parent="-5c3e5c92:130db8fddce:-8000" source="-5c3e5c92:130db8fddce:-7f87" target="-5c3e5c92:130db8fddce:-7f8f"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-5c3e5c92:130db8fddce:-7f8a" parent="-5c3e5c92:130db8fddce:-8000" source="-5c3e5c92:130db8fddce:-7f86" target="-5c3e5c92:130db8fddce:-7fd5"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="220.0" y="358.0"/><mxPoint as="targetPoint" x="220.0" y="310.0"/></mxGeometry></ImplicitLink><SplitBlock id="-5c3e5c92:130db8fddce:-7f7c" ordering="10" parent="-5c3e5c92:130db8fddce:-8000" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="297.0" y="107.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5c3e5c92:130db8fddce:-7f7a" ordering="1" parent="-5c3e5c92:130db8fddce:-7f7c" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5c3e5c92:130db8fddce:-7f79" ordering="2" parent="-5c3e5c92:130db8fddce:-7f7c" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-5c3e5c92:130db8fddce:-7f7b" ordering="1" parent="-5c3e5c92:130db8fddce:-7f7c" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-5c3e5c92:130db8fddce:-7f78" parent="-5c3e5c92:130db8fddce:-8000" source="-5c3e5c92:130db8fddce:-7f95" target="-5c3e5c92:130db8fddce:-7f7b"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-5c3e5c92:130db8fddce:-7f77" parent="-5c3e5c92:130db8fddce:-8000" source="-5c3e5c92:130db8fddce:-7f7a" target="-5c3e5c92:130db8fddce:-7fa1"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="300.0" y="110.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-5c3e5c92:130db8fddce:-7f7d" parent="-5c3e5c92:130db8fddce:-8000" source="-5c3e5c92:130db8fddce:-7f79" target="-5c3e5c92:130db8fddce:-7fae"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="326.0" y="110.0"/><mxPoint as="targetPoint" x="300.0" y="110.0"/></mxGeometry></ImplicitLink><BasicBlock dependsOnU="1" id="-5c3e5c92:130db8fddce:-7f6f" interfaceFunctionName="CSCOPE" ordering="11" parent="-5c3e5c92:130db8fddce:-8000" simulationFunctionName="cscope" simulationFunctionType="C_OR_FORTRAN" style="CSCOPE;flip=false;mirror=false"><ScilabString as="exprs" height="10" width="1"><data column="0" line="0" value="1 3 5 7 9 11 13 15"/><data column="0" line="1" value="-1"/><data column="0" line="2" value="[]"/><data column="0" line="3" value="[600;400]"/><data column="0" line="4" value="-15"/><data column="0" line="5" value="15"/><data column="0" line="6" value="30"/><data column="0" line="7" value="20"/><data column="0" line="8" value="0"/><data column="0" line="9" value=""/></ScilabString><ScilabDouble as="realParameters" height="4" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="-15.0"/><data column="0" line="2" realPart="15.0"/><data column="0" line="3" realPart="30.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="15" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="1.0"/><data column="0" line="4" realPart="3.0"/><data column="0" line="5" realPart="5.0"/><data column="0" line="6" realPart="7.0"/><data column="0" line="7" realPart="9.0"/><data column="0" line="8" realPart="11.0"/><data column="0" line="9" realPart="13.0"/><data column="0" line="10" realPart="15.0"/><data column="0" line="11" realPart="-1.0"/><data column="0" line="12" realPart="-1.0"/><data column="0" line="13" realPart="600.0"/><data column="0" line="14" realPart="400.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="400.0" y="92.0"/></BasicBlock><ControlPort dataType="UNKNOW_TYPE" id="-5c3e5c92:130db8fddce:-7f4d" ordering="1" parent="-5c3e5c92:130db8fddce:-7f6f" style="ControlPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=90;spacingTop=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="-5c3e5c92:130db8fddce:-7f4e" ordering="1" parent="-5c3e5c92:130db8fddce:-7f6f" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><BasicBlock blockType="h" id="-5c3e5c92:130db8fddce:-7f67" interfaceFunctionName="CLOCK_c" ordering="12" parent="-5c3e5c92:130db8fddce:-8000" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="99.0"/><data column="1" line="0" realPart="-152.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="31befcfe:130dc407023:-7f90"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="31befcfe:130dc407023:-7f90"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-62.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.00001"/><data column="0" line="1" value="0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="1.0E-5"/><data column="0" line="1" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="31befcfe:130dc407023:-7f8c"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="31befcfe:130dc407023:-7f8c"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="92.71066000000002"/><data column="1" line="0" realPart="-154.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="8.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="4.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="31befcfe:130dc407023:-7f87"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="31befcfe:130dc407023:-7f87"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="66.0"/><data column="0" line="2" realPart="103.37732666666669"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-18.0"/><data column="0" line="1" realPart="-186.0"/><data column="0" line="2" realPart="-158.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="104.71066000000002"/><data column="0" line="1" realPart="129.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-142.0"/><data column="0" line="1" realPart="-128.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="106.04399333333335"/><data column="0" line="1" realPart="111.70999999999998"/><data column="0" line="2" realPart="71.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-158.0"/><data column="0" line="1" realPart="-40.0"/><data column="0" line="2" realPart="-40.0"/><data column="0" line="3" realPart="-66.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="56.0" width="40.0" x="400.0" y="12.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="31befcfe:130dc407023:-7f68" ordering="1" parent="-5c3e5c92:130db8fddce:-7f67" style="CommandPort;align=center;labelPosition=center;verticalLabelPosition=top;rotation=90;spacingBottom=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="56.0"/></CommandPort><BasicBlock dependsOnU="1" id="-5c3e5c92:130db8fddce:-7f60" interfaceFunctionName="CSCOPE" ordering="13" parent="-5c3e5c92:130db8fddce:-8000" simulationFunctionName="cscope" simulationFunctionType="C_OR_FORTRAN" style="CSCOPE;flip=false;mirror=false"><ScilabString as="exprs" height="10" width="1"><data column="0" line="0" value="1 3 5 7 9 11 13 15"/><data column="0" line="1" value="-1"/><data column="0" line="2" value="[]"/><data column="0" line="3" value="[600;400]"/><data column="0" line="4" value="-15"/><data column="0" line="5" value="15"/><data column="0" line="6" value="30"/><data column="0" line="7" value="20"/><data column="0" line="8" value="0"/><data column="0" line="9" value=""/></ScilabString><ScilabDouble as="realParameters" height="4" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="-15.0"/><data column="0" line="2" realPart="15.0"/><data column="0" line="3" realPart="30.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="15" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="1.0"/><data column="0" line="4" realPart="3.0"/><data column="0" line="5" realPart="5.0"/><data column="0" line="6" realPart="7.0"/><data column="0" line="7" realPart="9.0"/><data column="0" line="8" realPart="11.0"/><data column="0" line="9" realPart="13.0"/><data column="0" line="10" realPart="15.0"/><data column="0" line="11" realPart="-1.0"/><data column="0" line="12" realPart="-1.0"/><data column="0" line="13" realPart="600.0"/><data column="0" line="14" realPart="400.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="350.0" y="250.0"/></BasicBlock><ControlPort dataType="UNKNOW_TYPE" id="-5c3e5c92:130db8fddce:-7f5e" ordering="1" parent="-5c3e5c92:130db8fddce:-7f60" style="ControlPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=90;spacingTop=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="-5c3e5c92:130db8fddce:-7f5f" ordering="1" parent="-5c3e5c92:130db8fddce:-7f60" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><BasicBlock blockType="h" id="-5c3e5c92:130db8fddce:-7f5d" interfaceFunctionName="CLOCK_c" ordering="14" parent="-5c3e5c92:130db8fddce:-8000" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="99.0"/><data column="1" line="0" realPart="-152.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="31befcfe:130dc407023:-7f7d"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="31befcfe:130dc407023:-7f7d"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-62.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.00001"/><data column="0" line="1" value="0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="1.0E-5"/><data column="0" line="1" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="31befcfe:130dc407023:-7f79"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="31befcfe:130dc407023:-7f79"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="92.71066000000002"/><data column="1" line="0" realPart="-154.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="8.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="4.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="31befcfe:130dc407023:-7f74"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="31befcfe:130dc407023:-7f74"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="66.0"/><data column="0" line="2" realPart="103.37732666666669"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-18.0"/><data column="0" line="1" realPart="-186.0"/><data column="0" line="2" realPart="-158.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="104.71066000000002"/><data column="0" line="1" realPart="129.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-142.0"/><data column="0" line="1" realPart="-128.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="106.04399333333335"/><data column="0" line="1" realPart="111.70999999999998"/><data column="0" line="2" realPart="71.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-158.0"/><data column="0" line="1" realPart="-40.0"/><data column="0" line="2" realPart="-40.0"/><data column="0" line="3" realPart="-66.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="56.0" width="40.0" x="350.0" y="160.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="31befcfe:130dc407023:-7f6b" ordering="1" parent="-5c3e5c92:130db8fddce:-7f5d" style="CommandPort;align=center;labelPosition=center;verticalLabelPosition=top;rotation=90;spacingBottom=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="56.0"/></CommandPort><CommandControlLink id="-5c3e5c92:130db8fddce:-7f56" parent="-5c3e5c92:130db8fddce:-8000" source="31befcfe:130dc407023:-7f68" target="-5c3e5c92:130db8fddce:-7f4d"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="420.0" y="56.0"/><mxPoint as="targetPoint" x="420.0" y="90.0"/></mxGeometry></CommandControlLink><ExplicitLink id="-5c3e5c92:130db8fddce:-7f55" parent="-5c3e5c92:130db8fddce:-8000" source="-5c3e5c92:130db8fddce:-7faf" target="-5c3e5c92:130db8fddce:-7f4e"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="374.0" y="110.0"/><mxPoint as="targetPoint" x="390.0" y="110.0"/></mxGeometry></ExplicitLink><ExplicitLink id="-5c3e5c92:130db8fddce:-7f54" parent="-5c3e5c92:130db8fddce:-8000" source="-5c3e5c92:130db8fddce:-7fa2" target="-5c3e5c92:130db8fddce:-7f5f"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="310.0" y="184.0"/><mxPoint as="targetPoint" x="350.0" y="270.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="310.0" y="270.0"/></Array></mxGeometry></ExplicitLink><CommandControlLink id="-5c3e5c92:130db8fddce:-7f53" parent="-5c3e5c92:130db8fddce:-8000" source="31befcfe:130dc407023:-7f6b" target="-5c3e5c92:130db8fddce:-7f5e"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="370.0" y="224.0"/><mxPoint as="targetPoint" x="370.0" y="250.0"/></mxGeometry></CommandControlLink><BasicBlock angle="90" id="-5c3e5c92:130db8fddce:-7fde" interfaceFunctionName="ConstantVoltage" ordering="15" parent="-5c3e5c92:130db8fddce:-8000" simulationFunctionName="ConstantVoltage" simulationFunctionType="DEFAULT" style="ConstantVoltage;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="9"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="9.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ConstantVoltage"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="V"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="9.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="40.0" y="202.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="31befcfe:130dc407023:-7f65" ordering="1" parent="-5c3e5c92:130db8fddce:-7fde" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;spacingTop=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="31befcfe:130dc407023:-7f64" ordering="1" parent="-5c3e5c92:130db8fddce:-7fde" style="ImplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;spacingBottom=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort></root></mxGraphModel><mxCell as="defaultParent" id="-5c3e5c92:130db8fddce:-8000" parent="-5c3e5c92:130db8fddce:-7fff"/></XcosDiagram>
\ No newline at end of file diff --git a/Working_Examples/154/CH8/EX8.5/ch8_51.jpeg b/Working_Examples/154/CH8/EX8.5/ch8_51.jpeg Binary files differnew file mode 100755 index 0000000..7a89a0f --- /dev/null +++ b/Working_Examples/154/CH8/EX8.5/ch8_51.jpeg diff --git a/Working_Examples/154/CH8/EX8.5/chap8_5.jpeg b/Working_Examples/154/CH8/EX8.5/chap8_5.jpeg Binary files differnew file mode 100755 index 0000000..a09a635 --- /dev/null +++ b/Working_Examples/154/CH8/EX8.5/chap8_5.jpeg diff --git a/Working_Examples/154/CH8/EX8.6/ch8_6.xcos b/Working_Examples/154/CH8/EX8.6/ch8_6.xcos new file mode 100755 index 0000000..bce9382 --- /dev/null +++ b/Working_Examples/154/CH8/EX8.6/ch8_6.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" finalIntegrationTime="1.0" title="ch8_6"><!--Xcos - 1.0 - scilab-5.5.2 - 20160406 2040--><mxGraphModel as="model"><root><mxCell id="31befcfe:130dc407023:-7fff"/><mxCell id="31befcfe:130dc407023:-8000" parent="31befcfe:130dc407023:-7fff"/><GroundBlock angle="90" dependsOnU="1" id="31befcfe:130dc407023:-7f53" interfaceFunctionName="Ground" ordering="2" parent="31befcfe:130dc407023:-8000" simulationFunctionName="Ground" simulationFunctionType="DEFAULT" style="Ground;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Ground"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="190.0" y="412.0"/></GroundBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="31befcfe:130dc407023:-7f52" ordering="1" parent="31befcfe:130dc407023:-7f53" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=90;spacingTop=5;flip=false;mirror=false"><Orientation as="orientation" value="NORTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="31befcfe:130dc407023:-7f4a" interfaceFunctionName="Resistor" ordering="3" parent="31befcfe:130dc407023:-8000" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="2000"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="2000.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="2000.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="150.0" y="140.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="31befcfe:130dc407023:-7d8c" ordering="1" parent="31befcfe:130dc407023:-7f4a" style="ImplicitOutputPort;align=right;rotation=0;flip=false;mirror=false;verticalAlign=middle;spacing=10.0"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="31befcfe:130dc407023:-7d8d" ordering="1" parent="31befcfe:130dc407023:-7f4a" style="ImplicitInputPort;align=left;rotation=0;flip=false;mirror=false;verticalAlign=middle;spacing=10.0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="31befcfe:130dc407023:-7f3e" interfaceFunctionName="Resistor" ordering="4" parent="31befcfe:130dc407023:-8000" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="6000"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="6000.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6000.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="190.0" y="50.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="31befcfe:130dc407023:-7e81" ordering="1" parent="31befcfe:130dc407023:-7f3e" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="31befcfe:130dc407023:-7e82" ordering="1" parent="31befcfe:130dc407023:-7f3e" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="31befcfe:130dc407023:-7f3b" interfaceFunctionName="Resistor" ordering="5" parent="31befcfe:130dc407023:-8000" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="4000"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="4000.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4000.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="320.0" y="140.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="31befcfe:130dc407023:-7e85" ordering="1" parent="31befcfe:130dc407023:-7f3b" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="31befcfe:130dc407023:-7e86" ordering="1" parent="31befcfe:130dc407023:-7f3b" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><BasicBlock angle="90" dependsOnU="1" id="31befcfe:130dc407023:-7f32" interfaceFunctionName="Resistor" ordering="6" parent="31befcfe:130dc407023:-8000" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="3000"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="3000.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="3000.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="40.0" y="260.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="31befcfe:130dc407023:-7e91" ordering="1" parent="31befcfe:130dc407023:-7f32" style="ImplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;spacingBottom=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="31befcfe:130dc407023:-7e92" ordering="1" parent="31befcfe:130dc407023:-7f32" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;spacingTop=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock angle="90" dependsOnU="1" id="31befcfe:130dc407023:-7f2c" interfaceFunctionName="Resistor" ordering="7" parent="31befcfe:130dc407023:-8000" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="12000"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="12000.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="12000.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="370.0" y="260.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="31befcfe:130dc407023:-7e89" ordering="1" parent="31befcfe:130dc407023:-7f2c" style="ImplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;spacingBottom=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="31befcfe:130dc407023:-7e8a" ordering="1" parent="31befcfe:130dc407023:-7f2c" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;spacingTop=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><SplitBlock id="31befcfe:130dc407023:-7f0d" ordering="8" parent="31befcfe:130dc407023:-8000" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="387.0" y="157.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="31befcfe:130dc407023:-7f0c" ordering="1" parent="31befcfe:130dc407023:-7f0d" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="31befcfe:130dc407023:-7f0b" ordering="1" parent="31befcfe:130dc407023:-7f0d" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="31befcfe:130dc407023:-7f0a" ordering="2" parent="31befcfe:130dc407023:-7f0d" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="31befcfe:130dc407023:-7f09" parent="31befcfe:130dc407023:-8000" source="31befcfe:130dc407023:-7e81" target="31befcfe:130dc407023:-7f0c"><mxGeometry as="geometry" height="80.0" width="80.0" y="-10.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="390.0" y="70.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="31befcfe:130dc407023:-7f0e" parent="31befcfe:130dc407023:-8000" source="31befcfe:130dc407023:-7e85" target="31befcfe:130dc407023:-7f0a"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="324.0" y="160.0"/><mxPoint as="targetPoint" x="390.0" y="160.0"/></mxGeometry></ImplicitLink><SplitBlock id="31befcfe:130dc407023:-7f06" ordering="9" parent="31befcfe:130dc407023:-8000" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="207.0" y="367.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="31befcfe:130dc407023:-7f05" ordering="1" parent="31befcfe:130dc407023:-7f06" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="31befcfe:130dc407023:-7f04" ordering="1" parent="31befcfe:130dc407023:-7f06" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="31befcfe:130dc407023:-7f03" ordering="2" parent="31befcfe:130dc407023:-7f06" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><SplitBlock id="31befcfe:130dc407023:-7eff" ordering="10" parent="31befcfe:130dc407023:-8000" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="207.0" y="367.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="31befcfe:130dc407023:-7efe" ordering="1" parent="31befcfe:130dc407023:-7eff" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="31befcfe:130dc407023:-7efd" ordering="1" parent="31befcfe:130dc407023:-7eff" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="31befcfe:130dc407023:-7efc" ordering="2" parent="31befcfe:130dc407023:-7eff" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="31befcfe:130dc407023:-7efa" parent="31befcfe:130dc407023:-8000" source="31befcfe:130dc407023:-7f03" target="31befcfe:130dc407023:-7efd"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="31befcfe:130dc407023:-7f00" parent="31befcfe:130dc407023:-8000" source="31befcfe:130dc407023:-7efc" target="31befcfe:130dc407023:-7f52"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="210.0" y="408.0"/><mxPoint as="targetPoint" x="210.0" y="370.0"/></mxGeometry></ImplicitLink><BasicBlock blockType="h" id="31befcfe:130dc407023:-7ebf" interfaceFunctionName="CLOCK_c" ordering="11" parent="31befcfe:130dc407023:-8000" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="139.0"/><data column="1" line="0" realPart="-170.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-2f9abee8:166a9b44d48:-72f1"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-2f9abee8:166a9b44d48:-72f1"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.01"/><data column="0" line="1" value="0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.01"/><data column="0" line="1" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-2f9abee8:166a9b44d48:-72ef"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-2f9abee8:166a9b44d48:-72ef"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="156.3773266666667"/><data column="1" line="0" realPart="-202.33333333333331"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="7.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="5.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-2f9abee8:166a9b44d48:-72ec"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-2f9abee8:166a9b44d48:-72ec"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="140.0"/><data column="0" line="2" realPart="166.8773266666667"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-44.0"/><data column="0" line="1" realPart="-220.0"/><data column="0" line="2" realPart="-191.33333333333331"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="165.71066000000005"/><data column="0" line="1" realPart="169.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-206.33333333333331"/><data column="0" line="1" realPart="-146.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="168.04399333333336"/><data column="0" line="1" realPart="180.70999999999998"/><data column="0" line="2" realPart="140.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-206.33333333333331"/><data column="0" line="1" realPart="-90.0"/><data column="0" line="2" realPart="-90.0"/><data column="0" line="3" realPart="4.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="48.0" width="40.0" x="480.0" y="230.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="31befcfe:130dc407023:-7e95" ordering="1" parent="31befcfe:130dc407023:-7ebf" style="CommandPort;align=center;labelPosition=center;verticalLabelPosition=top;rotation=90;spacingBottom=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="48.0"/></CommandPort><BasicBlock dependsOnU="1" id="31befcfe:130dc407023:-7eb4" interfaceFunctionName="CMSCOPE" ordering="12" parent="31befcfe:130dc407023:-8000" simulationFunctionName="cmscope" simulationFunctionType="C_OR_FORTRAN" style="CMSCOPE;flip=false;mirror=false"><ScilabString as="exprs" height="11" width="1"><data column="0" line="0" value="1 1"/><data column="0" line="1" value="1 3 5 7 9 11 13 15"/><data column="0" line="2" value="-1"/><data column="0" line="3" value="[]"/><data column="0" line="4" value="[]"/><data column="0" line="5" value="0 0"/><data column="0" line="6" value="11 18"/><data column="0" line="7" value="30 30"/><data column="0" line="8" value="20"/><data column="0" line="9" value="0"/><data column="0" line="10" value=""/></ScilabString><ScilabDouble as="realParameters" height="7" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="30.0"/><data column="0" line="2" realPart="30.0"/><data column="0" line="3" realPart="0.0"/><data column="0" line="4" realPart="11.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="18.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="12" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="2.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="-1.0"/><data column="0" line="4" realPart="-1.0"/><data column="0" line="5" realPart="-1.0"/><data column="0" line="6" realPart="-1.0"/><data column="0" line="7" realPart="1.0"/><data column="0" line="8" realPart="1.0"/><data column="0" line="9" realPart="1.0"/><data column="0" line="10" realPart="3.0"/><data column="0" line="11" realPart="0.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="250.0" y="392.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="31befcfe:130dc407023:-7d92" ordering="1" parent="31befcfe:130dc407023:-7eb4" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ExplicitInputPort><ControlPort dataType="UNKNOW_TYPE" id="31befcfe:130dc407023:-7d90" ordering="1" parent="31befcfe:130dc407023:-7eb4" style="ControlPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=90;spacingTop=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="31befcfe:130dc407023:-7d91" ordering="2" parent="31befcfe:130dc407023:-7eb4" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="26.0"/></ExplicitInputPort><BasicBlock dependsOnU="1" id="31befcfe:130dc407023:-7ea7" interfaceFunctionName="CSCOPE" ordering="13" parent="31befcfe:130dc407023:-8000" simulationFunctionName="cscope" simulationFunctionType="C_OR_FORTRAN" style="CSCOPE;flip=false;mirror=false"><ScilabString as="exprs" height="10" width="1"><data column="0" line="0" value="1 3 5 7 9 11 13 15"/><data column="0" line="1" value="-1"/><data column="0" line="2" value="[]"/><data column="0" line="3" value="[600;400]"/><data column="0" line="4" value="0"/><data column="0" line="5" value="13"/><data column="0" line="6" value="30"/><data column="0" line="7" value="20"/><data column="0" line="8" value="0"/><data column="0" line="9" value=""/></ScilabString><ScilabDouble as="realParameters" height="4" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="0.0"/><data column="0" line="2" realPart="13.0"/><data column="0" line="3" realPart="30.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="15" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="1.0"/><data column="0" line="4" realPart="3.0"/><data column="0" line="5" realPart="5.0"/><data column="0" line="6" realPart="7.0"/><data column="0" line="7" realPart="9.0"/><data column="0" line="8" realPart="11.0"/><data column="0" line="9" realPart="13.0"/><data column="0" line="10" realPart="15.0"/><data column="0" line="11" realPart="-1.0"/><data column="0" line="12" realPart="-1.0"/><data column="0" line="13" realPart="600.0"/><data column="0" line="14" realPart="400.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="480.0" y="322.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="31befcfe:130dc407023:-7dfe" ordering="1" parent="31befcfe:130dc407023:-7ea7" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ControlPort dataType="UNKNOW_TYPE" id="31befcfe:130dc407023:-7dfd" ordering="1" parent="31befcfe:130dc407023:-7ea7" style="ControlPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=90;spacingTop=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><CommandControlLink id="31befcfe:130dc407023:-7ea2" parent="31befcfe:130dc407023:-8000" source="31befcfe:130dc407023:-7e95" target="31befcfe:130dc407023:-7dfd"><mxGeometry as="geometry" y="190.0"><mxPoint as="sourcePoint" x="500.0" y="274.0"/><mxPoint as="targetPoint" x="500.0" y="320.0"/></mxGeometry></CommandControlLink><BasicBlock blockType="h" id="31befcfe:130dc407023:-7e9e" interfaceFunctionName="CLOCK_c" ordering="14" parent="31befcfe:130dc407023:-8000" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="139.0"/><data column="1" line="0" realPart="-170.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-2f9abee8:166a9b44d48:-72e3"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-2f9abee8:166a9b44d48:-72e3"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.001"/><data column="0" line="1" value="0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.001"/><data column="0" line="1" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-2f9abee8:166a9b44d48:-72e1"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-2f9abee8:166a9b44d48:-72e1"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="156.3773266666667"/><data column="1" line="0" realPart="-202.33333333333331"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="7.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="5.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-2f9abee8:166a9b44d48:-72de"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-2f9abee8:166a9b44d48:-72de"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="140.0"/><data column="0" line="2" realPart="166.8773266666667"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-44.0"/><data column="0" line="1" realPart="-220.0"/><data column="0" line="2" realPart="-191.33333333333331"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="165.71066000000005"/><data column="0" line="1" realPart="169.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-206.33333333333331"/><data column="0" line="1" realPart="-146.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="168.04399333333336"/><data column="0" line="1" realPart="180.70999999999998"/><data column="0" line="2" realPart="140.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-206.33333333333331"/><data column="0" line="1" realPart="-90.0"/><data column="0" line="2" realPart="-90.0"/><data column="0" line="3" realPart="4.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="48.0" width="40.0" x="250.0" y="320.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="31befcfe:130dc407023:-7e98" ordering="1" parent="31befcfe:130dc407023:-7e9e" style="CommandPort;align=center;labelPosition=center;verticalLabelPosition=top;rotation=90;spacingBottom=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="48.0"/></CommandPort><CommandControlLink id="31befcfe:130dc407023:-7e9a" parent="31befcfe:130dc407023:-8000" source="31befcfe:130dc407023:-7e98" target="31befcfe:130dc407023:-7d90"><mxGeometry as="geometry" x="-90.0" y="310.0"><mxPoint as="sourcePoint" x="270.0" y="364.0"/><mxPoint as="targetPoint" x="270.0" y="390.0"/></mxGeometry></CommandControlLink><BasicBlock dependsOnU="1" id="31befcfe:130dc407023:-7e7f" interfaceFunctionName="CMSCOPE" ordering="15" parent="31befcfe:130dc407023:-8000" simulationFunctionName="cmscope" simulationFunctionType="C_OR_FORTRAN" style="CMSCOPE;flip=false;mirror=false"><ScilabString as="exprs" height="11" width="1"><data column="0" line="0" value="1 1"/><data column="0" line="1" value="1 3 5 7 9 11 13 15"/><data column="0" line="2" value="-1"/><data column="0" line="3" value="[]"/><data column="0" line="4" value="[]"/><data column="0" line="5" value="1 -4"/><data column="0" line="6" value="2 -3"/><data column="0" line="7" value="10 10"/><data column="0" line="8" value="20"/><data column="0" line="9" value="0"/><data column="0" line="10" value=""/></ScilabString><ScilabDouble as="realParameters" height="7" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="10.0"/><data column="0" line="2" realPart="10.0"/><data column="0" line="3" realPart="1.0"/><data column="0" line="4" realPart="2.0"/><data column="0" line="5" realPart="-4.0"/><data column="0" line="6" realPart="-3.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="12" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="2.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="-1.0"/><data column="0" line="4" realPart="-1.0"/><data column="0" line="5" realPart="-1.0"/><data column="0" line="6" realPart="-1.0"/><data column="0" line="7" realPart="1.0"/><data column="0" line="8" realPart="1.0"/><data column="0" line="9" realPart="1.0"/><data column="0" line="10" realPart="3.0"/><data column="0" line="11" realPart="0.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="310.0" y="250.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="31befcfe:130dc407023:-7e10" ordering="1" parent="31befcfe:130dc407023:-7e7f" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ExplicitInputPort><ControlPort dataType="UNKNOW_TYPE" id="31befcfe:130dc407023:-7e0e" ordering="1" parent="31befcfe:130dc407023:-7e7f" style="ControlPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=90;spacingTop=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="31befcfe:130dc407023:-7e0f" ordering="2" parent="31befcfe:130dc407023:-7e7f" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="26.0"/></ExplicitInputPort><BasicBlock dependsOnU="1" id="31befcfe:130dc407023:-7e72" interfaceFunctionName="CurrentSensor" ordering="16" parent="31befcfe:130dc407023:-8000" simulationFunctionName="CurrentSensor" simulationFunctionType="DEFAULT" style="CurrentSensor;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CurrentSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="i"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="90.0" y="60.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="31befcfe:130dc407023:-7e71" ordering="1" parent="31befcfe:130dc407023:-7e72" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="6.0"/></ImplicitOutputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="31befcfe:130dc407023:-7e70" ordering="2" parent="31befcfe:130dc407023:-7e72" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="26.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="31befcfe:130dc407023:-7e6f" ordering="1" parent="31befcfe:130dc407023:-7e72" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitLink id="31befcfe:130dc407023:-7e69" parent="31befcfe:130dc407023:-8000" source="31befcfe:130dc407023:-7e71" target="31befcfe:130dc407023:-7e82"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="134.0" y="80.0"/><mxPoint as="targetPoint" x="190.0" y="80.0"/></mxGeometry></ImplicitLink><SplitBlock id="31befcfe:130dc407023:-7e66" ordering="17" parent="31befcfe:130dc407023:-8000" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="57.0" y="157.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="31befcfe:130dc407023:-7e65" ordering="1" parent="31befcfe:130dc407023:-7e66" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="31befcfe:130dc407023:-7e64" ordering="1" parent="31befcfe:130dc407023:-7e66" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="31befcfe:130dc407023:-7e63" ordering="2" parent="31befcfe:130dc407023:-7e66" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="31befcfe:130dc407023:-7e62" parent="31befcfe:130dc407023:-8000" source="31befcfe:130dc407023:-7e92" target="31befcfe:130dc407023:-7e65"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="31befcfe:130dc407023:-7e67" parent="31befcfe:130dc407023:-8000" source="31befcfe:130dc407023:-7e63" target="31befcfe:130dc407023:-7e6f"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="86.0" y="80.0"/><mxPoint as="targetPoint" x="60.0" y="160.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="60.0" y="80.0"/></Array></mxGeometry></ImplicitLink><BasicBlock dependsOnU="1" id="31befcfe:130dc407023:-7e59" interfaceFunctionName="CurrentSensor" ordering="18" parent="31befcfe:130dc407023:-8000" simulationFunctionName="CurrentSensor" simulationFunctionType="DEFAULT" style="CurrentSensor;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CurrentSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="i"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="240.0" y="150.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="31befcfe:130dc407023:-7e58" ordering="1" parent="31befcfe:130dc407023:-7e59" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="6.0"/></ImplicitOutputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="31befcfe:130dc407023:-7e57" ordering="2" parent="31befcfe:130dc407023:-7e59" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="26.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="31befcfe:130dc407023:-7e56" ordering="1" parent="31befcfe:130dc407023:-7e59" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="31befcfe:130dc407023:-7e55" interfaceFunctionName="CurrentSensor" ordering="19" parent="31befcfe:130dc407023:-8000" simulationFunctionName="CurrentSensor" simulationFunctionType="DEFAULT" style="CurrentSensor;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CurrentSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="i"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="80.0" y="150.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="31befcfe:130dc407023:-7e54" ordering="1" parent="31befcfe:130dc407023:-7e55" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="6.0"/></ImplicitOutputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="31befcfe:130dc407023:-7e53" ordering="2" parent="31befcfe:130dc407023:-7e55" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="26.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="31befcfe:130dc407023:-7e52" ordering="1" parent="31befcfe:130dc407023:-7e55" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitLink id="31befcfe:130dc407023:-7e46" parent="31befcfe:130dc407023:-8000" source="31befcfe:130dc407023:-7e54" target="31befcfe:130dc407023:-7d8d"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="124.0" y="160.0"/><mxPoint as="targetPoint" x="150.0" y="160.0"/></mxGeometry></ImplicitLink><SplitBlock id="31befcfe:130dc407023:-7e3b" ordering="20" parent="31befcfe:130dc407023:-8000" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="207.0" y="157.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="31befcfe:130dc407023:-7e3a" ordering="1" parent="31befcfe:130dc407023:-7e3b" style="ImplicitInputPort;align=left;rotation=0;flip=false;mirror=false;verticalAlign=middle;spacing=10.0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="31befcfe:130dc407023:-7e39" ordering="1" parent="31befcfe:130dc407023:-7e3b" style="ImplicitOutputPort;align=right;rotation=0;flip=false;mirror=false;verticalAlign=middle;spacing=10.0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="31befcfe:130dc407023:-7e38" ordering="2" parent="31befcfe:130dc407023:-7e3b" style="ImplicitOutputPort;align=right;rotation=0;flip=false;mirror=false;verticalAlign=middle;spacing=10.0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="31befcfe:130dc407023:-7e37" parent="31befcfe:130dc407023:-8000" source="31befcfe:130dc407023:-7d8c" target="31befcfe:130dc407023:-7e3a"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="31befcfe:130dc407023:-7e3c" parent="31befcfe:130dc407023:-8000" source="31befcfe:130dc407023:-7e38" target="31befcfe:130dc407023:-7e56"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="236.0" y="170.0"/><mxPoint as="targetPoint" x="210.0" y="160.0"/></mxGeometry></ImplicitLink><ImplicitLink id="31befcfe:130dc407023:-7e35" parent="31befcfe:130dc407023:-8000" source="31befcfe:130dc407023:-7e58" target="31befcfe:130dc407023:-7e86"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="284.0" y="160.0"/><mxPoint as="targetPoint" x="310.0" y="160.0"/></mxGeometry></ImplicitLink><ExplicitLink id="31befcfe:130dc407023:-7e30" parent="31befcfe:130dc407023:-8000" source="31befcfe:130dc407023:-7e57" target="31befcfe:130dc407023:-7e10"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="284.0" y="180.0"/><mxPoint as="targetPoint" x="310.0" y="260.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="290.0" y="180.0"/><mxPoint x="290.0" y="260.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="31befcfe:130dc407023:-7e2f" parent="31befcfe:130dc407023:-8000" source="31befcfe:130dc407023:-7e53" target="31befcfe:130dc407023:-7e0f"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="124.0" y="180.0"/><mxPoint as="targetPoint" x="310.0" y="280.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="130.0" y="180.0"/><mxPoint x="140.0" y="180.0"/><mxPoint x="140.0" y="280.0"/></Array></mxGeometry></ExplicitLink><BasicBlock blockType="h" id="31befcfe:130dc407023:-7e2c" interfaceFunctionName="CLOCK_c" ordering="21" parent="31befcfe:130dc407023:-8000" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="139.0"/><data column="1" line="0" realPart="-170.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-2f9abee8:166a9b44d48:-72d5"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-2f9abee8:166a9b44d48:-72d5"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.001"/><data column="0" line="1" value="0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.001"/><data column="0" line="1" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-2f9abee8:166a9b44d48:-72d3"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-2f9abee8:166a9b44d48:-72d3"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="156.3773266666667"/><data column="1" line="0" realPart="-202.33333333333331"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="7.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="5.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-2f9abee8:166a9b44d48:-72d0"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-2f9abee8:166a9b44d48:-72d0"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="140.0"/><data column="0" line="2" realPart="166.8773266666667"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-44.0"/><data column="0" line="1" realPart="-220.0"/><data column="0" line="2" realPart="-191.33333333333331"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="165.71066000000005"/><data column="0" line="1" realPart="169.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-206.33333333333331"/><data column="0" line="1" realPart="-146.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="168.04399333333336"/><data column="0" line="1" realPart="180.70999999999998"/><data column="0" line="2" realPart="140.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-206.33333333333331"/><data column="0" line="1" realPart="-90.0"/><data column="0" line="2" realPart="-90.0"/><data column="0" line="3" realPart="4.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="310.0" y="190.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="31befcfe:130dc407023:-7e2b" ordering="1" parent="31befcfe:130dc407023:-7e2c" style="CommandPort;align=center;labelPosition=center;verticalLabelPosition=top;rotation=90;spacingBottom=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><CommandControlLink id="31befcfe:130dc407023:-7e28" parent="31befcfe:130dc407023:-8000" source="31befcfe:130dc407023:-7e2b" target="31befcfe:130dc407023:-7e0e"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="330.0" y="234.0"/><mxPoint as="targetPoint" x="330.0" y="250.0"/></mxGeometry></CommandControlLink><BasicBlock dependsOnU="1" id="31befcfe:130dc407023:-7e24" interfaceFunctionName="CSCOPE" ordering="22" parent="31befcfe:130dc407023:-8000" simulationFunctionName="cscope" simulationFunctionType="C_OR_FORTRAN" style="CSCOPE;flip=false;mirror=false"><ScilabString as="exprs" height="10" width="1"><data column="0" line="0" value="1 3 5 7 9 11 13 15"/><data column="0" line="1" value="-1"/><data column="0" line="2" value="[]"/><data column="0" line="3" value="[600;400]"/><data column="0" line="4" value="-0.005"/><data column="0" line="5" value="0"/><data column="0" line="6" value="30"/><data column="0" line="7" value="20"/><data column="0" line="8" value="0"/><data column="0" line="9" value=""/></ScilabString><ScilabDouble as="realParameters" height="4" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="-0.005"/><data column="0" line="2" realPart="0.0"/><data column="0" line="3" realPart="30.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="15" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="1.0"/><data column="0" line="4" realPart="3.0"/><data column="0" line="5" realPart="5.0"/><data column="0" line="6" realPart="7.0"/><data column="0" line="7" realPart="9.0"/><data column="0" line="8" realPart="11.0"/><data column="0" line="9" realPart="13.0"/><data column="0" line="10" realPart="15.0"/><data column="0" line="11" realPart="-1.0"/><data column="0" line="12" realPart="-1.0"/><data column="0" line="13" realPart="600.0"/><data column="0" line="14" realPart="400.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="150.0" y="90.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="31befcfe:130dc407023:-7e14" ordering="1" parent="31befcfe:130dc407023:-7e24" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ControlPort dataType="UNKNOW_TYPE" id="31befcfe:130dc407023:-7e13" ordering="1" parent="31befcfe:130dc407023:-7e24" style="ControlPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=90;spacingTop=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><BasicBlock blockType="h" id="31befcfe:130dc407023:-7e1c" interfaceFunctionName="CLOCK_c" ordering="23" parent="31befcfe:130dc407023:-8000" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="139.0"/><data column="1" line="0" realPart="-170.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-2f9abee8:166a9b44d48:-72c7"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-2f9abee8:166a9b44d48:-72c7"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.001"/><data column="0" line="1" value="0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.001"/><data column="0" line="1" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-2f9abee8:166a9b44d48:-72c5"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-2f9abee8:166a9b44d48:-72c5"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="156.3773266666667"/><data column="1" line="0" realPart="-202.33333333333331"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="7.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="5.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-2f9abee8:166a9b44d48:-72c2"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-2f9abee8:166a9b44d48:-72c2"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="140.0"/><data column="0" line="2" realPart="166.8773266666667"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-44.0"/><data column="0" line="1" realPart="-220.0"/><data column="0" line="2" realPart="-191.33333333333331"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="165.71066000000005"/><data column="0" line="1" realPart="169.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-206.33333333333331"/><data column="0" line="1" realPart="-146.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="168.04399333333336"/><data column="0" line="1" realPart="180.70999999999998"/><data column="0" line="2" realPart="140.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-206.33333333333331"/><data column="0" line="1" realPart="-90.0"/><data column="0" line="2" realPart="-90.0"/><data column="0" line="3" realPart="4.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="48.0" width="40.0" x="150.0" y="10.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="31befcfe:130dc407023:-7e1b" ordering="1" parent="31befcfe:130dc407023:-7e1c" style="CommandPort;align=center;labelPosition=center;verticalLabelPosition=top;rotation=90;spacingBottom=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="48.0"/></CommandPort><ExplicitLink id="31befcfe:130dc407023:-7e17" parent="31befcfe:130dc407023:-8000" source="31befcfe:130dc407023:-7e70" target="31befcfe:130dc407023:-7e14"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="134.0" y="90.0"/><mxPoint as="targetPoint" x="150.0" y="110.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="130.0" y="110.0"/></Array></mxGeometry></ExplicitLink><CommandControlLink id="31befcfe:130dc407023:-7e16" parent="31befcfe:130dc407023:-8000" source="31befcfe:130dc407023:-7e1b" target="31befcfe:130dc407023:-7e13"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="170.0" y="86.0"/><mxPoint as="targetPoint" x="170.0" y="60.0"/></mxGeometry></CommandControlLink><VoltageSensorBlock angle="90" dependsOnU="1" id="31befcfe:130dc407023:-7ded" interfaceFunctionName="VoltageSensor" ordering="24" parent="31befcfe:130dc407023:-8000" simulationFunctionName="VoltageSensor" simulationFunctionType="DEFAULT" style="VoltageSensor;rotation=90;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="VoltageSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="v"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="10.0" y="200.0"/></VoltageSensorBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="31befcfe:130dc407023:-7dec" ordering="1" parent="31befcfe:130dc407023:-7ded" style="ImplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;rotation=90;spacingBottom=5;flip=false;mirror=false"><Orientation as="orientation" value="SOUTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="6.0" y="40.0"/></ImplicitOutputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="31befcfe:130dc407023:-7deb" ordering="2" parent="31befcfe:130dc407023:-7ded" style="ExplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;rotation=90;spacingBottom=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="26.0" y="40.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="31befcfe:130dc407023:-7dea" ordering="1" parent="31befcfe:130dc407023:-7ded" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=90;spacingTop=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><VoltageSensorBlock angle="90" dependsOnU="1" id="31befcfe:130dc407023:-7de5" interfaceFunctionName="VoltageSensor" ordering="25" parent="31befcfe:130dc407023:-8000" simulationFunctionName="VoltageSensor" simulationFunctionType="DEFAULT" style="VoltageSensor;rotation=90;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="VoltageSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="v"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="140.0" y="240.0"/></VoltageSensorBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="31befcfe:130dc407023:-7de4" ordering="1" parent="31befcfe:130dc407023:-7de5" style="ImplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;rotation=90;spacingBottom=5;flip=false;mirror=false"><Orientation as="orientation" value="SOUTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="6.0" y="40.0"/></ImplicitOutputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="31befcfe:130dc407023:-7de3" ordering="2" parent="31befcfe:130dc407023:-7de5" style="ExplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;rotation=90;spacingBottom=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="26.0" y="40.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="31befcfe:130dc407023:-7de2" ordering="1" parent="31befcfe:130dc407023:-7de5" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=90;spacingTop=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><VoltageSensorBlock angle="90" dependsOnU="1" id="31befcfe:130dc407023:-7de1" interfaceFunctionName="VoltageSensor" ordering="26" parent="31befcfe:130dc407023:-8000" simulationFunctionName="VoltageSensor" simulationFunctionType="DEFAULT" style="VoltageSensor;rotation=90;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="VoltageSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="v"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="440.0" y="240.0"/></VoltageSensorBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="31befcfe:130dc407023:-7de0" ordering="1" parent="31befcfe:130dc407023:-7de1" style="ImplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;rotation=90;spacingBottom=5;flip=false;mirror=false"><Orientation as="orientation" value="SOUTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="6.0" y="40.0"/></ImplicitOutputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="31befcfe:130dc407023:-7ddf" ordering="2" parent="31befcfe:130dc407023:-7de1" style="ExplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;rotation=90;spacingBottom=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="26.0" y="40.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="31befcfe:130dc407023:-7dde" ordering="1" parent="31befcfe:130dc407023:-7de1" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=90;spacingTop=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><SplitBlock id="31befcfe:130dc407023:-7dd8" ordering="27" parent="31befcfe:130dc407023:-8000" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="386.5" y="156.5"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="31befcfe:130dc407023:-7dd7" ordering="1" parent="31befcfe:130dc407023:-7dd8" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="31befcfe:130dc407023:-7dd6" ordering="1" parent="31befcfe:130dc407023:-7dd8" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="31befcfe:130dc407023:-7dd5" ordering="2" parent="31befcfe:130dc407023:-7dd8" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="31befcfe:130dc407023:-7dd4" parent="31befcfe:130dc407023:-8000" source="31befcfe:130dc407023:-7f0b" target="31befcfe:130dc407023:-7dd7"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="390.0" y="160.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="31befcfe:130dc407023:-7dd3" parent="31befcfe:130dc407023:-8000" source="31befcfe:130dc407023:-7dd6" target="31befcfe:130dc407023:-7e8a"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="390.0" y="260.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="31befcfe:130dc407023:-7dd9" parent="31befcfe:130dc407023:-8000" source="31befcfe:130dc407023:-7dd5" target="31befcfe:130dc407023:-7dde"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="460.0" y="236.0"/><mxPoint as="targetPoint" x="390.0" y="170.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="460.0" y="160.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="31befcfe:130dc407023:-7dd1" ordering="28" parent="31befcfe:130dc407023:-8000" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="387.0" y="347.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="31befcfe:130dc407023:-7dd0" ordering="1" parent="31befcfe:130dc407023:-7dd1" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="31befcfe:130dc407023:-7dcf" ordering="1" parent="31befcfe:130dc407023:-7dd1" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="31befcfe:130dc407023:-7dce" ordering="2" parent="31befcfe:130dc407023:-7dd1" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="31befcfe:130dc407023:-7dcd" parent="31befcfe:130dc407023:-8000" source="31befcfe:130dc407023:-7e89" target="31befcfe:130dc407023:-7dd0"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="31befcfe:130dc407023:-7dcc" parent="31befcfe:130dc407023:-8000" source="31befcfe:130dc407023:-7f04" target="31befcfe:130dc407023:-7dcf"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="390.0" y="370.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="31befcfe:130dc407023:-7dd2" parent="31befcfe:130dc407023:-8000" source="31befcfe:130dc407023:-7de0" target="31befcfe:130dc407023:-7dce"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="450.0" y="284.0"/><mxPoint as="targetPoint" x="390.0" y="350.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="450.0" y="350.0"/></Array></mxGeometry></ImplicitLink><ExplicitLink id="31befcfe:130dc407023:-7dc5" parent="31befcfe:130dc407023:-8000" source="31befcfe:130dc407023:-7ddf" target="31befcfe:130dc407023:-7dfe"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="470.0" y="284.0"/><mxPoint as="targetPoint" x="470.0" y="340.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="470.0" y="350.0"/></Array></mxGeometry></ExplicitLink><SplitBlock id="31befcfe:130dc407023:-7dbb" ordering="29" parent="31befcfe:130dc407023:-8000" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="57.0" y="157.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="31befcfe:130dc407023:-7dba" ordering="1" parent="31befcfe:130dc407023:-7dbb" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="31befcfe:130dc407023:-7db9" ordering="1" parent="31befcfe:130dc407023:-7dbb" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="31befcfe:130dc407023:-7db8" ordering="2" parent="31befcfe:130dc407023:-7dbb" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="31befcfe:130dc407023:-7db7" parent="31befcfe:130dc407023:-8000" source="31befcfe:130dc407023:-7e64" target="31befcfe:130dc407023:-7dba"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="31befcfe:130dc407023:-7db6" parent="31befcfe:130dc407023:-8000" source="31befcfe:130dc407023:-7db9" target="31befcfe:130dc407023:-7e52"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="60.0" y="160.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="31befcfe:130dc407023:-7dbc" parent="31befcfe:130dc407023:-8000" source="31befcfe:130dc407023:-7db8" target="31befcfe:130dc407023:-7dea"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="30.0" y="196.0"/><mxPoint as="targetPoint" x="60.0" y="160.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="30.0" y="160.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="31befcfe:130dc407023:-7db4" ordering="30" parent="31befcfe:130dc407023:-8000" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="57.0" y="337.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="31befcfe:130dc407023:-7db3" ordering="1" parent="31befcfe:130dc407023:-7db4" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="31befcfe:130dc407023:-7db2" ordering="1" parent="31befcfe:130dc407023:-7db4" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="31befcfe:130dc407023:-7db1" ordering="2" parent="31befcfe:130dc407023:-7db4" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="31befcfe:130dc407023:-7db0" parent="31befcfe:130dc407023:-8000" source="31befcfe:130dc407023:-7e91" target="31befcfe:130dc407023:-7db3"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="31befcfe:130dc407023:-7daf" parent="31befcfe:130dc407023:-8000" source="31befcfe:130dc407023:-7db2" target="31befcfe:130dc407023:-7f05"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="60.0" y="370.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="31befcfe:130dc407023:-7db5" parent="31befcfe:130dc407023:-8000" source="31befcfe:130dc407023:-7dec" target="31befcfe:130dc407023:-7db1"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="20.0" y="244.0"/><mxPoint as="targetPoint" x="60.0" y="340.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="20.0" y="340.0"/></Array></mxGeometry></ImplicitLink><ExplicitLink id="31befcfe:130dc407023:-7d95" parent="31befcfe:130dc407023:-8000" source="31befcfe:130dc407023:-7de3" target="31befcfe:130dc407023:-7d92"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="170.0" y="284.0"/><mxPoint as="targetPoint" x="250.0" y="400.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="170.0" y="400.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="31befcfe:130dc407023:-7d94" parent="31befcfe:130dc407023:-8000" source="31befcfe:130dc407023:-7deb" target="31befcfe:130dc407023:-7d91"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="40.0" y="244.0"/><mxPoint as="targetPoint" x="240.0" y="420.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="40.0" y="390.0"/><mxPoint x="40.0" y="420.0"/></Array></mxGeometry></ExplicitLink><ImplicitLink id="-2f9abee8:166a9b44d48:-72bb" parent="31befcfe:130dc407023:-8000" source="31befcfe:130dc407023:-7de4" target="31befcfe:130dc407023:-7efe"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="210.0" y="320.0"/><mxPoint x="150.0" y="320.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-2f9abee8:166a9b44d48:-72ba" parent="31befcfe:130dc407023:-8000" source="31befcfe:130dc407023:-7e39" target="31befcfe:130dc407023:-7de2"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="210.0" y="160.0"/><mxPoint x="210.0" y="160.0"/><mxPoint x="210.0" y="190.0"/><mxPoint x="210.0" y="190.0"/><mxPoint x="160.0" y="190.0"/></Array></mxGeometry></ImplicitLink></root></mxGraphModel><mxCell as="defaultParent" id="31befcfe:130dc407023:-8000" parent="31befcfe:130dc407023:-7fff"/></XcosDiagram>
\ No newline at end of file diff --git a/Working_Examples/154/CH8/EX8.6/ch8_61.jpeg b/Working_Examples/154/CH8/EX8.6/ch8_61.jpeg Binary files differnew file mode 100755 index 0000000..f1802a5 --- /dev/null +++ b/Working_Examples/154/CH8/EX8.6/ch8_61.jpeg diff --git a/Working_Examples/154/CH8/EX8.6/chap8_6.jpeg b/Working_Examples/154/CH8/EX8.6/chap8_6.jpeg Binary files differnew file mode 100755 index 0000000..0217ae9 --- /dev/null +++ b/Working_Examples/154/CH8/EX8.6/chap8_6.jpeg diff --git a/Working_Examples/154/CH8/EX8.7/ch8_7.xcos b/Working_Examples/154/CH8/EX8.7/ch8_7.xcos new file mode 100755 index 0000000..f51b012 --- /dev/null +++ b/Working_Examples/154/CH8/EX8.7/ch8_7.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" finalIntegrationTime="10.0" title="ch8_7"><!--Xcos - 1.0 - scilab-5.5.2 - 20160406 2040--><mxGraphModel as="model"><root><mxCell id="31befcfe:130dc407023:-7d89"/><mxCell id="31befcfe:130dc407023:-7d8a" parent="31befcfe:130dc407023:-7d89"/><BasicBlock angle="270" dependsOnT="1" id="31befcfe:130dc407023:-7d7f" interfaceFunctionName="CCS" ordering="1" parent="31befcfe:130dc407023:-7d8a" simulationFunctionName="CCS" simulationFunctionType="DEFAULT" style="CCS;rotation=270;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CCS"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="Iin"/><data column="0" line="1" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="50.0" y="230.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="31befcfe:130dc407023:-7d7e" ordering="1" parent="31befcfe:130dc407023:-7d7f" style="ImplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=270;spacingTop=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitOutputPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="31befcfe:130dc407023:-7d7d" ordering="1" parent="31befcfe:130dc407023:-7d7f" style="ExplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=top;rotation=270;spacingBottom=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="6.0" y="40.0"/></ExplicitInputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="31befcfe:130dc407023:-7d7c" ordering="2" parent="31befcfe:130dc407023:-7d7f" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=top;rotation=270;spacingBottom=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="26.0" y="40.0"/></ImplicitInputPort><GroundBlock angle="90" dependsOnU="1" id="31befcfe:130dc407023:-7d76" interfaceFunctionName="Ground" ordering="2" parent="31befcfe:130dc407023:-7d8a" simulationFunctionName="Ground" simulationFunctionType="DEFAULT" style="Ground;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Ground"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="290.0" y="402.0"/></GroundBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="31befcfe:130dc407023:-7d75" ordering="1" parent="31befcfe:130dc407023:-7d76" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=90;spacingTop=5;flip=false;mirror=false"><Orientation as="orientation" value="NORTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock angle="180" id="31befcfe:130dc407023:-7d6d" interfaceFunctionName="ConstantVoltage" ordering="3" parent="31befcfe:130dc407023:-7d8a" simulationFunctionName="ConstantVoltage" simulationFunctionType="DEFAULT" style="ConstantVoltage;rotation=180;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="18"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="18.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ConstantVoltage"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="V"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="18.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="210.0" y="72.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="31befcfe:130dc407023:-7cda" ordering="1" parent="31befcfe:130dc407023:-7d6d" style="ImplicitOutputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=180;spacingLeft=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="31befcfe:130dc407023:-7cdb" ordering="1" parent="31befcfe:130dc407023:-7d6d" style="ImplicitInputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=180;spacingRight=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitInputPort><BasicBlock angle="90" dependsOnU="1" id="31befcfe:130dc407023:-7d63" interfaceFunctionName="Resistor" ordering="4" parent="31befcfe:130dc407023:-7d8a" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="3"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="140.0" y="230.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="31befcfe:130dc407023:-7c22" ordering="1" parent="31befcfe:130dc407023:-7d63" style="ImplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;spacingBottom=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="31befcfe:130dc407023:-7c23" ordering="1" parent="31befcfe:130dc407023:-7d63" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;spacingTop=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock angle="90" dependsOnU="1" id="31befcfe:130dc407023:-7d56" interfaceFunctionName="Resistor" ordering="5" parent="31befcfe:130dc407023:-7d8a" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="12"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="12.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="12.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="470.0" y="230.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="31befcfe:130dc407023:-7c16" ordering="1" parent="31befcfe:130dc407023:-7d56" style="ImplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;spacingBottom=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="31befcfe:130dc407023:-7c17" ordering="1" parent="31befcfe:130dc407023:-7d56" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;spacingTop=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="31befcfe:130dc407023:-7d50" interfaceFunctionName="Resistor" ordering="6" parent="31befcfe:130dc407023:-7d8a" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=0;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="6"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="300.0" y="70.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="31befcfe:130dc407023:-7c12" ordering="1" parent="31befcfe:130dc407023:-7d50" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="31befcfe:130dc407023:-7c13" ordering="1" parent="31befcfe:130dc407023:-7d50" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="31befcfe:130dc407023:-7d4d" interfaceFunctionName="Resistor" ordering="7" parent="31befcfe:130dc407023:-7d8a" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=0;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="4"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="370.0" y="150.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="31befcfe:130dc407023:-7c1a" ordering="1" parent="31befcfe:130dc407023:-7d4d" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="31befcfe:130dc407023:-7c1b" ordering="1" parent="31befcfe:130dc407023:-7d4d" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="31befcfe:130dc407023:-7d4a" interfaceFunctionName="Resistor" ordering="8" parent="31befcfe:130dc407023:-7d8a" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=0;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="2"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="210.0" y="150.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="31befcfe:130dc407023:-7c1e" ordering="1" parent="31befcfe:130dc407023:-7d4a" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="31befcfe:130dc407023:-7c1f" ordering="1" parent="31befcfe:130dc407023:-7d4a" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="31befcfe:130dc407023:-7d33" interfaceFunctionName="CurrentSensor" ordering="9" parent="31befcfe:130dc407023:-7d8a" simulationFunctionName="CurrentSensor" simulationFunctionType="DEFAULT" style="CurrentSensor;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CurrentSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="i"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="390.0" y="70.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="31befcfe:130dc407023:-7d32" ordering="1" parent="31befcfe:130dc407023:-7d33" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="6.0"/></ImplicitOutputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="31befcfe:130dc407023:-7d31" ordering="2" parent="31befcfe:130dc407023:-7d33" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="26.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="31befcfe:130dc407023:-7d30" ordering="1" parent="31befcfe:130dc407023:-7d33" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><SplitBlock id="31befcfe:130dc407023:-7d1b" ordering="10" parent="31befcfe:130dc407023:-7d8a" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="157.0" y="167.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="31befcfe:130dc407023:-7d1a" ordering="1" parent="31befcfe:130dc407023:-7d1b" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="31befcfe:130dc407023:-7d19" ordering="1" parent="31befcfe:130dc407023:-7d1b" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="31befcfe:130dc407023:-7d18" ordering="2" parent="31befcfe:130dc407023:-7d1b" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="31befcfe:130dc407023:-7d16" parent="31befcfe:130dc407023:-7d8a" source="31befcfe:130dc407023:-7d19" target="31befcfe:130dc407023:-7c23"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="31befcfe:130dc407023:-7d1c" parent="31befcfe:130dc407023:-7d8a" source="31befcfe:130dc407023:-7d18" target="31befcfe:130dc407023:-7c1f"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="206.0" y="170.0"/><mxPoint as="targetPoint" x="160.0" y="170.0"/></mxGeometry></ImplicitLink><SplitBlock id="31befcfe:130dc407023:-7d13" ordering="11" parent="31befcfe:130dc407023:-7d8a" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="487.0" y="167.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="31befcfe:130dc407023:-7d12" ordering="1" parent="31befcfe:130dc407023:-7d13" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="31befcfe:130dc407023:-7d11" ordering="1" parent="31befcfe:130dc407023:-7d13" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="31befcfe:130dc407023:-7d10" ordering="2" parent="31befcfe:130dc407023:-7d13" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="31befcfe:130dc407023:-7d0f" parent="31befcfe:130dc407023:-7d8a" source="31befcfe:130dc407023:-7d32" target="31befcfe:130dc407023:-7d12"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="490.0" y="80.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="31befcfe:130dc407023:-7d0e" parent="31befcfe:130dc407023:-7d8a" source="31befcfe:130dc407023:-7d11" target="31befcfe:130dc407023:-7c17"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="31befcfe:130dc407023:-7d14" parent="31befcfe:130dc407023:-7d8a" source="31befcfe:130dc407023:-7c1a" target="31befcfe:130dc407023:-7d10"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="364.0" y="170.0"/><mxPoint as="targetPoint" x="490.0" y="170.0"/></mxGeometry></ImplicitLink><SplitBlock id="31befcfe:130dc407023:-7d0b" ordering="12" parent="31befcfe:130dc407023:-7d8a" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="157.0" y="347.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="31befcfe:130dc407023:-7d0a" ordering="1" parent="31befcfe:130dc407023:-7d0b" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="31befcfe:130dc407023:-7d09" ordering="1" parent="31befcfe:130dc407023:-7d0b" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="31befcfe:130dc407023:-7d08" ordering="2" parent="31befcfe:130dc407023:-7d0b" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="31befcfe:130dc407023:-7d06" parent="31befcfe:130dc407023:-7d8a" source="31befcfe:130dc407023:-7d09" target="31befcfe:130dc407023:-7d7c"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="80.0" y="350.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="31befcfe:130dc407023:-7d04" ordering="13" parent="31befcfe:130dc407023:-7d8a" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="307.0" y="347.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="31befcfe:130dc407023:-7d03" ordering="1" parent="31befcfe:130dc407023:-7d04" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="31befcfe:130dc407023:-7d02" ordering="1" parent="31befcfe:130dc407023:-7d04" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="31befcfe:130dc407023:-7d01" ordering="2" parent="31befcfe:130dc407023:-7d04" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="31befcfe:130dc407023:-7d00" parent="31befcfe:130dc407023:-7d8a" source="31befcfe:130dc407023:-7c16" target="31befcfe:130dc407023:-7d03"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="490.0" y="350.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="31befcfe:130dc407023:-7d05" parent="31befcfe:130dc407023:-7d8a" source="31befcfe:130dc407023:-7d01" target="31befcfe:130dc407023:-7d75"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="310.0" y="398.0"/><mxPoint as="targetPoint" x="310.0" y="350.0"/></mxGeometry></ImplicitLink><BasicBlock blockType="h" id="31befcfe:130dc407023:-7cf9" interfaceFunctionName="CLOCK_c" ordering="14" parent="31befcfe:130dc407023:-7d8a" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="119.0"/><data column="1" line="0" realPart="-150.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-4c79a1b6:166e2706967:-79b8"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-4c79a1b6:166e2706967:-79b8"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.1"/><data column="0" line="1" value="0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.1"/><data column="0" line="1" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-4c79a1b6:166e2706967:-79b6"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-4c79a1b6:166e2706967:-79b6"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="123.3773266666667"/><data column="1" line="0" realPart="-169.33333333333331"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="7.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="5.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-4c79a1b6:166e2706967:-79b3"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-4c79a1b6:166e2706967:-79b3"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="100.0"/><data column="0" line="2" realPart="133.8773266666667"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-44.0"/><data column="0" line="1" realPart="-180.0"/><data column="0" line="2" realPart="-158.33333333333331"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="132.71066000000005"/><data column="0" line="1" realPart="149.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-173.33333333333331"/><data column="0" line="1" realPart="-126.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="135.04399333333336"/><data column="0" line="1" realPart="140.70999999999998"/><data column="0" line="2" realPart="100.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-173.33333333333331"/><data column="0" line="1" realPart="-50.0"/><data column="0" line="2" realPart="-50.0"/><data column="0" line="3" realPart="4.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="48.0" width="40.0" x="530.0" y="10.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="31befcfe:130dc407023:-7c26" ordering="1" parent="31befcfe:130dc407023:-7cf9" style="CommandPort;align=center;labelPosition=center;verticalLabelPosition=top;rotation=90;spacingBottom=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="48.0"/></CommandPort><BasicBlock dependsOnU="1" id="31befcfe:130dc407023:-7cf0" interfaceFunctionName="CSCOPE" ordering="15" parent="31befcfe:130dc407023:-7d8a" simulationFunctionName="cscope" simulationFunctionType="C_OR_FORTRAN" style="CSCOPE;flip=false;mirror=false"><ScilabString as="exprs" height="10" width="1"><data column="0" line="0" value="1 3 5 7 9 11 13 15"/><data column="0" line="1" value="-1"/><data column="0" line="2" value="[]"/><data column="0" line="3" value="[600;400]"/><data column="0" line="4" value="-1"/><data column="0" line="5" value="1"/><data column="0" line="6" value="30"/><data column="0" line="7" value="20"/><data column="0" line="8" value="0"/><data column="0" line="9" value=""/></ScilabString><ScilabDouble as="realParameters" height="4" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="-1.0"/><data column="0" line="2" realPart="1.0"/><data column="0" line="3" realPart="30.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="15" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="1.0"/><data column="0" line="4" realPart="3.0"/><data column="0" line="5" realPart="5.0"/><data column="0" line="6" realPart="7.0"/><data column="0" line="7" realPart="9.0"/><data column="0" line="8" realPart="11.0"/><data column="0" line="9" realPart="13.0"/><data column="0" line="10" realPart="15.0"/><data column="0" line="11" realPart="-1.0"/><data column="0" line="12" realPart="-1.0"/><data column="0" line="13" realPart="600.0"/><data column="0" line="14" realPart="400.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="530.0" y="92.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="31befcfe:130dc407023:-7cbb" ordering="1" parent="31befcfe:130dc407023:-7cf0" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ControlPort dataType="UNKNOW_TYPE" id="31befcfe:130dc407023:-7cba" ordering="1" parent="31befcfe:130dc407023:-7cf0" style="ControlPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=90;spacingTop=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><ExplicitLink id="31befcfe:130dc407023:-7ced" parent="31befcfe:130dc407023:-7d8a" source="31befcfe:130dc407023:-7d31" target="31befcfe:130dc407023:-7cbb"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="434.0" y="100.0"/><mxPoint as="targetPoint" x="520.0" y="110.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="510.0" y="100.0"/><mxPoint x="510.0" y="110.0"/></Array></mxGeometry></ExplicitLink><CommandControlLink id="31befcfe:130dc407023:-7cec" parent="31befcfe:130dc407023:-7d8a" source="31befcfe:130dc407023:-7c26" target="31befcfe:130dc407023:-7cba"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="550.0" y="56.0"/><mxPoint as="targetPoint" x="550.0" y="90.0"/></mxGeometry></CommandControlLink><BasicBlock blockType="d" id="31befcfe:130dc407023:-7ccb" interfaceFunctionName="CONST_m" ordering="16" parent="31befcfe:130dc407023:-7d8a" simulationFunctionName="cstblk4" simulationFunctionType="C_OR_FORTRAN" style="CONST_m;flip=false;mirror=false" value="3"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="3"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble></Array><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="50.0" width="40.0" x="10.0" y="360.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="31befcfe:130dc407023:-7cc5" ordering="1" parent="31befcfe:130dc407023:-7ccb" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ExplicitLink id="31befcfe:130dc407023:-7cc7" parent="31befcfe:130dc407023:-7d8a" source="31befcfe:130dc407023:-7cc5" target="31befcfe:130dc407023:-7d7d"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="54.0" y="380.0"/><mxPoint as="targetPoint" x="60.0" y="270.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="60.0" y="380.0"/></Array></mxGeometry></ExplicitLink><BasicBlock dependsOnU="1" id="31befcfe:130dc407023:-7caf" interfaceFunctionName="CMSCOPE" ordering="17" parent="31befcfe:130dc407023:-7d8a" simulationFunctionName="cmscope" simulationFunctionType="C_OR_FORTRAN" style="CMSCOPE;flip=false;mirror=false"><ScilabString as="exprs" height="11" width="1"><data column="0" line="0" value="1 1"/><data column="0" line="1" value="1 3 5 7 9 11 13 15"/><data column="0" line="2" value="-1"/><data column="0" line="3" value="[]"/><data column="0" line="4" value="[]"/><data column="0" line="5" value="-1 -5"/><data column="0" line="6" value="1 5"/><data column="0" line="7" value="30 30"/><data column="0" line="8" value="20"/><data column="0" line="9" value="0"/><data column="0" line="10" value=""/></ScilabString><ScilabDouble as="realParameters" height="7" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="30.0"/><data column="0" line="2" realPart="30.0"/><data column="0" line="3" realPart="-1.0"/><data column="0" line="4" realPart="1.0"/><data column="0" line="5" realPart="-5.0"/><data column="0" line="6" realPart="5.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="11" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="2.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="-1.0"/><data column="0" line="4" realPart="-1.0"/><data column="0" line="5" realPart="-1.0"/><data column="0" line="6" realPart="-1.0"/><data column="0" line="7" realPart="1.0"/><data column="0" line="8" realPart="1.0"/><data column="0" line="9" realPart="1.0"/><data column="0" line="10" realPart="3.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="380.0" y="290.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="31befcfe:130dc407023:-7cae" ordering="1" parent="31befcfe:130dc407023:-7caf" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ExplicitInputPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="31befcfe:130dc407023:-7cad" ordering="2" parent="31befcfe:130dc407023:-7caf" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="26.0"/></ExplicitInputPort><ControlPort dataType="UNKNOW_TYPE" id="31befcfe:130dc407023:-7cac" ordering="1" parent="31befcfe:130dc407023:-7caf" style="ControlPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=90;spacingTop=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><VoltageSensorBlock angle="90" dependsOnU="1" id="31befcfe:130dc407023:-7ca2" interfaceFunctionName="VoltageSensor" ordering="18" parent="31befcfe:130dc407023:-7d8a" simulationFunctionName="VoltageSensor" simulationFunctionType="DEFAULT" style="VoltageSensor;rotation=90;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="VoltageSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="v"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="300.0" y="240.0"/></VoltageSensorBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="31befcfe:130dc407023:-7ca1" ordering="1" parent="31befcfe:130dc407023:-7ca2" style="ImplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;rotation=90;spacingBottom=5;flip=false;mirror=false"><Orientation as="orientation" value="SOUTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="6.0" y="40.0"/></ImplicitOutputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="31befcfe:130dc407023:-7ca0" ordering="2" parent="31befcfe:130dc407023:-7ca2" style="ExplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;rotation=90;spacingBottom=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="26.0" y="40.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="31befcfe:130dc407023:-7c9f" ordering="1" parent="31befcfe:130dc407023:-7ca2" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=90;spacingTop=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><VoltageSensorBlock angle="90" dependsOnU="1" id="31befcfe:130dc407023:-7c96" interfaceFunctionName="VoltageSensor" ordering="19" parent="31befcfe:130dc407023:-7d8a" simulationFunctionName="VoltageSensor" simulationFunctionType="DEFAULT" style="VoltageSensor;rotation=90;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="VoltageSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="v"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="90.0" y="220.0"/></VoltageSensorBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="31befcfe:130dc407023:-7c95" ordering="1" parent="31befcfe:130dc407023:-7c96" style="ImplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;rotation=90;spacingBottom=5;flip=false;mirror=false"><Orientation as="orientation" value="SOUTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="6.0" y="40.0"/></ImplicitOutputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="31befcfe:130dc407023:-7c94" ordering="2" parent="31befcfe:130dc407023:-7c96" style="ExplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;rotation=90;spacingBottom=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="26.0" y="40.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="31befcfe:130dc407023:-7c93" ordering="1" parent="31befcfe:130dc407023:-7c96" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=90;spacingTop=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><SplitBlock id="31befcfe:130dc407023:-7c8d" ordering="20" parent="31befcfe:130dc407023:-7d8a" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="316.5" y="166.5"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="31befcfe:130dc407023:-7c8c" ordering="1" parent="31befcfe:130dc407023:-7c8d" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="31befcfe:130dc407023:-7c8b" ordering="1" parent="31befcfe:130dc407023:-7c8d" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="31befcfe:130dc407023:-7c8a" ordering="2" parent="31befcfe:130dc407023:-7c8d" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="31befcfe:130dc407023:-7c89" parent="31befcfe:130dc407023:-7d8a" source="31befcfe:130dc407023:-7c1e" target="31befcfe:130dc407023:-7c8c"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="31befcfe:130dc407023:-7c88" parent="31befcfe:130dc407023:-7d8a" source="31befcfe:130dc407023:-7c8b" target="31befcfe:130dc407023:-7c1b"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="31befcfe:130dc407023:-7c8e" parent="31befcfe:130dc407023:-7d8a" source="31befcfe:130dc407023:-7c8a" target="31befcfe:130dc407023:-7c9f"><mxGeometry as="geometry" x="-30.0"><mxPoint as="sourcePoint" x="300.0" y="236.0"/><mxPoint as="targetPoint" x="290.0" y="170.0"/></mxGeometry></ImplicitLink><SplitBlock id="31befcfe:130dc407023:-7c86" ordering="21" parent="31befcfe:130dc407023:-7d8a" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="307.0" y="347.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="31befcfe:130dc407023:-7c85" ordering="1" parent="31befcfe:130dc407023:-7c86" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="31befcfe:130dc407023:-7c84" ordering="1" parent="31befcfe:130dc407023:-7c86" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="31befcfe:130dc407023:-7c83" ordering="2" parent="31befcfe:130dc407023:-7c86" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="31befcfe:130dc407023:-7c82" parent="31befcfe:130dc407023:-7d8a" source="31befcfe:130dc407023:-7d02" target="31befcfe:130dc407023:-7c85"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="31befcfe:130dc407023:-7c81" parent="31befcfe:130dc407023:-7d8a" source="31befcfe:130dc407023:-7c84" target="31befcfe:130dc407023:-7d0a"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="31befcfe:130dc407023:-7c87" parent="31befcfe:130dc407023:-7d8a" source="31befcfe:130dc407023:-7ca1" target="31befcfe:130dc407023:-7c83"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="320.0" y="284.0"/><mxPoint as="targetPoint" x="310.0" y="350.0"/></mxGeometry></ImplicitLink><SplitBlock id="31befcfe:130dc407023:-7c7d" ordering="22" parent="31befcfe:130dc407023:-7d8a" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="157.0" y="167.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="31befcfe:130dc407023:-7c7c" ordering="1" parent="31befcfe:130dc407023:-7c7d" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="31befcfe:130dc407023:-7c7b" ordering="1" parent="31befcfe:130dc407023:-7c7d" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="31befcfe:130dc407023:-7c7a" ordering="2" parent="31befcfe:130dc407023:-7c7d" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="31befcfe:130dc407023:-7c78" parent="31befcfe:130dc407023:-7d8a" source="31befcfe:130dc407023:-7c7b" target="31befcfe:130dc407023:-7d1a"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><SplitBlock id="31befcfe:130dc407023:-7c76" ordering="23" parent="31befcfe:130dc407023:-7d8a" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="157.0" y="307.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="31befcfe:130dc407023:-7c75" ordering="1" parent="31befcfe:130dc407023:-7c76" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="31befcfe:130dc407023:-7c74" ordering="1" parent="31befcfe:130dc407023:-7c76" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="31befcfe:130dc407023:-7c73" ordering="2" parent="31befcfe:130dc407023:-7c76" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="31befcfe:130dc407023:-7c72" parent="31befcfe:130dc407023:-7d8a" source="31befcfe:130dc407023:-7c22" target="31befcfe:130dc407023:-7c75"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="31befcfe:130dc407023:-7c71" parent="31befcfe:130dc407023:-7d8a" source="31befcfe:130dc407023:-7d08" target="31befcfe:130dc407023:-7c74"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="31befcfe:130dc407023:-7c77" parent="31befcfe:130dc407023:-7d8a" source="31befcfe:130dc407023:-7c95" target="31befcfe:130dc407023:-7c73"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="100.0" y="264.0"/><mxPoint as="targetPoint" x="160.0" y="310.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="100.0" y="310.0"/></Array></mxGeometry></ImplicitLink><ExplicitLink id="31befcfe:130dc407023:-7c6c" parent="31befcfe:130dc407023:-7d8a" source="31befcfe:130dc407023:-7ca0" target="31befcfe:130dc407023:-7cae"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="330.0" y="284.0"/><mxPoint as="targetPoint" x="380.0" y="300.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="330.0" y="300.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="31befcfe:130dc407023:-7c6b" parent="31befcfe:130dc407023:-7d8a" source="31befcfe:130dc407023:-7c94" target="31befcfe:130dc407023:-7cad"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="120.0" y="264.0"/><mxPoint as="targetPoint" x="370.0" y="320.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="120.0" y="320.0"/></Array></mxGeometry></ExplicitLink><BasicBlock blockType="h" id="31befcfe:130dc407023:-7c68" interfaceFunctionName="CLOCK_c" ordering="24" parent="31befcfe:130dc407023:-7d8a" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="119.0"/><data column="1" line="0" realPart="-150.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-4c79a1b6:166e2706967:-79aa"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-4c79a1b6:166e2706967:-79aa"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.1"/><data column="0" line="1" value="0.0001"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.1"/><data column="0" line="1" realPart="1.0E-4"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0E-4"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-4c79a1b6:166e2706967:-79a8"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-4c79a1b6:166e2706967:-79a8"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="123.3773266666667"/><data column="1" line="0" realPart="-169.33333333333331"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="7.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="5.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-4c79a1b6:166e2706967:-79a5"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-4c79a1b6:166e2706967:-79a5"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="100.0"/><data column="0" line="2" realPart="133.8773266666667"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-44.0"/><data column="0" line="1" realPart="-180.0"/><data column="0" line="2" realPart="-158.33333333333331"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="132.71066000000005"/><data column="0" line="1" realPart="149.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-173.33333333333331"/><data column="0" line="1" realPart="-126.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="135.04399333333336"/><data column="0" line="1" realPart="140.70999999999998"/><data column="0" line="2" realPart="100.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-173.33333333333331"/><data column="0" line="1" realPart="-50.0"/><data column="0" line="2" realPart="-50.0"/><data column="0" line="3" realPart="4.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="380.0" y="200.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="31befcfe:130dc407023:-7c67" ordering="1" parent="31befcfe:130dc407023:-7c68" style="CommandPort;align=center;labelPosition=center;verticalLabelPosition=top;rotation=90;spacingBottom=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><CommandControlLink id="31befcfe:130dc407023:-7c62" parent="31befcfe:130dc407023:-7d8a" source="31befcfe:130dc407023:-7c67" target="31befcfe:130dc407023:-7cac"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="400.0" y="244.0"/><mxPoint as="targetPoint" x="400.0" y="290.0"/></mxGeometry></CommandControlLink><ImplicitLink id="31befcfe:130dc407023:-7c53" parent="31befcfe:130dc407023:-7d8a" target="31befcfe:130dc407023:-7c7c"><!--Invalid source--><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="160.0" y="90.0"/><mxPoint x="160.0" y="90.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="31befcfe:130dc407023:-7c48" ordering="25" parent="31befcfe:130dc407023:-7d8a" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="107.0" y="167.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="31befcfe:130dc407023:-7c47" ordering="1" parent="31befcfe:130dc407023:-7c48" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="31befcfe:130dc407023:-7c46" ordering="1" parent="31befcfe:130dc407023:-7c48" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="31befcfe:130dc407023:-7c45" ordering="2" parent="31befcfe:130dc407023:-7c48" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="31befcfe:130dc407023:-7c43" parent="31befcfe:130dc407023:-7d8a" source="31befcfe:130dc407023:-7c46" target="31befcfe:130dc407023:-7c93"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="110.0" y="170.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="31befcfe:130dc407023:-7c49" parent="31befcfe:130dc407023:-7d8a" source="31befcfe:130dc407023:-7d7e" target="31befcfe:130dc407023:-7c45"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="70.0" y="226.0"/><mxPoint as="targetPoint" x="110.0" y="170.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="70.0" y="170.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="31befcfe:130dc407023:-7c32" parent="31befcfe:130dc407023:-7d8a" source="31befcfe:130dc407023:-7c12" target="31befcfe:130dc407023:-7d30"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="344.0" y="90.0"/><mxPoint as="targetPoint" x="390.0" y="90.0"/></mxGeometry></ImplicitLink><ImplicitLink id="31befcfe:130dc407023:-7c2f" parent="31befcfe:130dc407023:-7d8a" source="31befcfe:130dc407023:-7cdb" target="31befcfe:130dc407023:-7c13"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="254.0" y="92.0"/><mxPoint as="targetPoint" x="300.0" y="90.0"/></mxGeometry></ImplicitLink><SplitBlock id="31befcfe:130dc407023:-7c2d" ordering="26" parent="31befcfe:130dc407023:-7d8a" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="157.0" y="167.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="31befcfe:130dc407023:-7c2c" ordering="1" parent="31befcfe:130dc407023:-7c2d" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="31befcfe:130dc407023:-7c2b" ordering="1" parent="31befcfe:130dc407023:-7c2d" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="31befcfe:130dc407023:-7c2a" ordering="2" parent="31befcfe:130dc407023:-7c2d" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="31befcfe:130dc407023:-7c29" parent="31befcfe:130dc407023:-7d8a" source="31befcfe:130dc407023:-7c7a" target="31befcfe:130dc407023:-7c2c"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="31befcfe:130dc407023:-7c28" parent="31befcfe:130dc407023:-7d8a" source="31befcfe:130dc407023:-7c2b" target="31befcfe:130dc407023:-7c47"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="160.0" y="170.0"/><mxPoint x="160.0" y="170.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="31befcfe:130dc407023:-7c2e" parent="31befcfe:130dc407023:-7d8a" source="31befcfe:130dc407023:-7cda" target="31befcfe:130dc407023:-7c2a"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="206.0" y="92.0"/><mxPoint as="targetPoint" x="160.0" y="170.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="160.0" y="90.0"/></Array></mxGeometry></ImplicitLink></root></mxGraphModel><mxCell as="defaultParent" id="31befcfe:130dc407023:-7d8a" parent="31befcfe:130dc407023:-7d89"/><mxPoint as="origin" x="-6.0" y="-6.0"/></XcosDiagram>
\ No newline at end of file diff --git a/Working_Examples/154/CH8/EX8.7/ch8_71.jpeg b/Working_Examples/154/CH8/EX8.7/ch8_71.jpeg Binary files differnew file mode 100755 index 0000000..de6ff5e --- /dev/null +++ b/Working_Examples/154/CH8/EX8.7/ch8_71.jpeg diff --git a/Working_Examples/154/CH8/EX8.7/chap8_7.jpeg b/Working_Examples/154/CH8/EX8.7/chap8_7.jpeg Binary files differnew file mode 100755 index 0000000..29815dd --- /dev/null +++ b/Working_Examples/154/CH8/EX8.7/chap8_7.jpeg diff --git a/Working_Examples/154/CH8/EX8.8/ch8_8.xcos b/Working_Examples/154/CH8/EX8.8/ch8_8.xcos new file mode 100644 index 0000000..969196f --- /dev/null +++ b/Working_Examples/154/CH8/EX8.8/ch8_8.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" title="ch8_8"><!--Xcos - 1.0 - scilab-5.5.2 - 20160406 2040--><mxGraphModel as="model"><root><mxCell id="4cf3be04:130e07e353b:-7fff"/><mxCell id="4cf3be04:130e07e353b:-8000" parent="4cf3be04:130e07e353b:-7fff"/><BasicBlock id="4cf3be04:130e07e353b:-7ffc" interfaceFunctionName="ConstantVoltage" ordering="1" parent="4cf3be04:130e07e353b:-8000" simulationFunctionName="ConstantVoltage" simulationFunctionType="DEFAULT" style="ConstantVoltage;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="36"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="36.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ConstantVoltage"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="V"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="36.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="150.0" y="82.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="4cf3be04:130e07e353b:-7ffb" ordering="1" parent="4cf3be04:130e07e353b:-7ffc" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="4cf3be04:130e07e353b:-7ffa" ordering="1" parent="4cf3be04:130e07e353b:-7ffc" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="4cf3be04:130e07e353b:-7ff9" interfaceFunctionName="Resistor" ordering="2" parent="4cf3be04:130e07e353b:-8000" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="2000"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="2000.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="2000.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="130.0" y="172.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="4cf3be04:130e07e353b:-7ff8" ordering="1" parent="4cf3be04:130e07e353b:-7ff9" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="4cf3be04:130e07e353b:-7ff7" ordering="1" parent="4cf3be04:130e07e353b:-7ff9" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="4cf3be04:130e07e353b:-7ff6" interfaceFunctionName="Resistor" ordering="3" parent="4cf3be04:130e07e353b:-8000" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="6000"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="6000.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6000.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="320.0" y="80.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="4cf3be04:130e07e353b:-7ff5" ordering="1" parent="4cf3be04:130e07e353b:-7ff6" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="4cf3be04:130e07e353b:-7ff4" ordering="1" parent="4cf3be04:130e07e353b:-7ff6" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="4cf3be04:130e07e353b:-7ff3" interfaceFunctionName="Resistor" ordering="4" parent="4cf3be04:130e07e353b:-8000" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="4000"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="4000.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4000.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="340.0" y="170.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="4cf3be04:130e07e353b:-7ff2" ordering="1" parent="4cf3be04:130e07e353b:-7ff3" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="4cf3be04:130e07e353b:-7ff1" ordering="1" parent="4cf3be04:130e07e353b:-7ff3" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><BasicBlock angle="90" dependsOnU="1" id="4cf3be04:130e07e353b:-7ff0" interfaceFunctionName="Resistor" ordering="5" parent="4cf3be04:130e07e353b:-8000" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="12000"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="12000.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="12000.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="430.0" y="280.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="4cf3be04:130e07e353b:-7fef" ordering="1" parent="4cf3be04:130e07e353b:-7ff0" style="ImplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;spacingBottom=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="4cf3be04:130e07e353b:-7fee" ordering="1" parent="4cf3be04:130e07e353b:-7ff0" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;spacingTop=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock angle="90" dependsOnU="1" id="4cf3be04:130e07e353b:-7fed" interfaceFunctionName="Resistor" ordering="6" parent="4cf3be04:130e07e353b:-8000" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="3000"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="3000.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="3000.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="60.0" y="280.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="4cf3be04:130e07e353b:-7fec" ordering="1" parent="4cf3be04:130e07e353b:-7fed" style="ImplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;spacingBottom=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="4cf3be04:130e07e353b:-7feb" ordering="1" parent="4cf3be04:130e07e353b:-7fed" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;spacingTop=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitLink id="4cf3be04:130e07e353b:-7fea" parent="4cf3be04:130e07e353b:-8000" source="4cf3be04:130e07e353b:-7ffb" target="4cf3be04:130e07e353b:-7ff4"><mxGeometry as="geometry" x="20.0" y="20.0"><mxPoint as="sourcePoint" x="194.0" y="102.0"/><mxPoint as="targetPoint" x="320.0" y="100.0"/></mxGeometry></ImplicitLink><SplitBlock id="4cf3be04:130e07e353b:-7fe9" ordering="7" parent="4cf3be04:130e07e353b:-8000" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="76.5" y="186.5"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="4cf3be04:130e07e353b:-7fe8" ordering="1" parent="4cf3be04:130e07e353b:-7fe9" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="4cf3be04:130e07e353b:-7fe7" ordering="1" parent="4cf3be04:130e07e353b:-7fe9" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="4cf3be04:130e07e353b:-7fe6" ordering="2" parent="4cf3be04:130e07e353b:-7fe9" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="4cf3be04:130e07e353b:-7fe5" parent="4cf3be04:130e07e353b:-8000" source="4cf3be04:130e07e353b:-7feb" target="4cf3be04:130e07e353b:-7fe8"><mxGeometry as="geometry" height="80.0" width="80.0" x="20.0" y="20.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="4cf3be04:130e07e353b:-7fe4" parent="4cf3be04:130e07e353b:-8000" source="4cf3be04:130e07e353b:-7fe7" target="4cf3be04:130e07e353b:-7ffa"><mxGeometry as="geometry" height="80.0" width="80.0" x="20.0" y="20.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="80.0" y="100.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="4cf3be04:130e07e353b:-7fe3" parent="4cf3be04:130e07e353b:-8000" source="4cf3be04:130e07e353b:-7fe6" target="4cf3be04:130e07e353b:-7ff7"><mxGeometry as="geometry" x="20.0" y="20.0"><mxPoint as="sourcePoint" x="126.0" y="192.0"/><mxPoint as="targetPoint" x="80.0" y="190.0"/></mxGeometry></ImplicitLink><SplitBlock id="4cf3be04:130e07e353b:-7fe2" ordering="8" parent="4cf3be04:130e07e353b:-8000" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="446.5" y="186.5"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="4cf3be04:130e07e353b:-7fe1" ordering="1" parent="4cf3be04:130e07e353b:-7fe2" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="4cf3be04:130e07e353b:-7fe0" ordering="1" parent="4cf3be04:130e07e353b:-7fe2" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="4cf3be04:130e07e353b:-7fdf" ordering="2" parent="4cf3be04:130e07e353b:-7fe2" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="4cf3be04:130e07e353b:-7fde" parent="4cf3be04:130e07e353b:-8000" source="4cf3be04:130e07e353b:-7ff5" target="4cf3be04:130e07e353b:-7fe1"><mxGeometry as="geometry" height="80.0" width="80.0" x="20.0" y="20.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="450.0" y="100.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="4cf3be04:130e07e353b:-7fdd" parent="4cf3be04:130e07e353b:-8000" source="4cf3be04:130e07e353b:-7fe0" target="4cf3be04:130e07e353b:-7fee"><mxGeometry as="geometry" height="80.0" width="80.0" x="20.0" y="20.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="4cf3be04:130e07e353b:-7fdc" parent="4cf3be04:130e07e353b:-8000" source="4cf3be04:130e07e353b:-7ff2" target="4cf3be04:130e07e353b:-7fdf"><mxGeometry as="geometry" x="20.0" y="20.0"><mxPoint as="sourcePoint" x="384.0" y="190.0"/><mxPoint as="targetPoint" x="450.0" y="190.0"/></mxGeometry></ImplicitLink><VoltageSensorBlock angle="90" dependsOnU="1" id="4cf3be04:130e07e353b:-7fdb" interfaceFunctionName="VoltageSensor" ordering="9" parent="4cf3be04:130e07e353b:-8000" simulationFunctionName="VoltageSensor" simulationFunctionType="DEFAULT" style="VoltageSensor;rotation=90;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="VoltageSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="v"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="330.0" y="270.0"/></VoltageSensorBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="4cf3be04:130e07e353b:-7fda" ordering="1" parent="4cf3be04:130e07e353b:-7fdb" style="ImplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;rotation=90;spacingBottom=5;flip=false;mirror=false"><Orientation as="orientation" value="SOUTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="6.0" y="40.0"/></ImplicitOutputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="4cf3be04:130e07e353b:-7fd9" ordering="2" parent="4cf3be04:130e07e353b:-7fdb" style="ExplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;rotation=90;spacingBottom=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="26.0" y="40.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="4cf3be04:130e07e353b:-7fd8" ordering="1" parent="4cf3be04:130e07e353b:-7fdb" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=90;spacingTop=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="4cf3be04:130e07e353b:-7fd7" interfaceFunctionName="CMSCOPE" ordering="10" parent="4cf3be04:130e07e353b:-8000" simulationFunctionName="cmscope" simulationFunctionType="C_OR_FORTRAN" style="CMSCOPE;flip=false;mirror=false"><ScilabString as="exprs" height="11" width="1"><data column="0" line="0" value="1 1"/><data column="0" line="1" value="1 3 5 7 9 11 13 15"/><data column="0" line="2" value="-1"/><data column="0" line="3" value="[]"/><data column="0" line="4" value="[]"/><data column="0" line="5" value="-1 -5"/><data column="0" line="6" value="1 5"/><data column="0" line="7" value="30 30"/><data column="0" line="8" value="20"/><data column="0" line="9" value="0"/><data column="0" line="10" value=""/></ScilabString><ScilabDouble as="realParameters" height="7" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="30.0"/><data column="0" line="2" realPart="30.0"/><data column="0" line="3" realPart="-1.0"/><data column="0" line="4" realPart="1.0"/><data column="0" line="5" realPart="-5.0"/><data column="0" line="6" realPart="5.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="12" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="2.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="-1.0"/><data column="0" line="4" realPart="-1.0"/><data column="0" line="5" realPart="-1.0"/><data column="0" line="6" realPart="-1.0"/><data column="0" line="7" realPart="1.0"/><data column="0" line="8" realPart="1.0"/><data column="0" line="9" realPart="1.0"/><data column="0" line="10" realPart="3.0"/><data column="0" line="11" realPart="0.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="740.0" y="352.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="4cf3be04:130e07e353b:-7fd6" ordering="1" parent="4cf3be04:130e07e353b:-7fd7" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ExplicitInputPort><ControlPort dataType="UNKNOW_TYPE" id="4cf3be04:130e07e353b:-7fd5" ordering="1" parent="4cf3be04:130e07e353b:-7fd7" style="ControlPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=90;spacingTop=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="4cf3be04:130e07e353b:-7fd4" ordering="2" parent="4cf3be04:130e07e353b:-7fd7" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="26.0"/></ExplicitInputPort><BasicBlock blockType="h" id="4cf3be04:130e07e353b:-7fd3" interfaceFunctionName="CLOCK_c" ordering="11" parent="4cf3be04:130e07e353b:-8000" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="119.0"/><data column="1" line="0" realPart="-150.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-4c79a1b6:166e2706967:-791b"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-4c79a1b6:166e2706967:-791b"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.0001"/><data column="0" line="1" value="0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="1.0E-4"/><data column="0" line="1" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-4c79a1b6:166e2706967:-7919"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-4c79a1b6:166e2706967:-7919"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="123.3773266666667"/><data column="1" line="0" realPart="-169.33333333333331"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="7.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="5.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-4c79a1b6:166e2706967:-7916"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-4c79a1b6:166e2706967:-7916"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="100.0"/><data column="0" line="2" realPart="133.8773266666667"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-44.0"/><data column="0" line="1" realPart="-180.0"/><data column="0" line="2" realPart="-158.33333333333331"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="132.71066000000005"/><data column="0" line="1" realPart="149.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-173.33333333333331"/><data column="0" line="1" realPart="-126.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="135.04399333333336"/><data column="0" line="1" realPart="140.70999999999998"/><data column="0" line="2" realPart="100.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-173.33333333333331"/><data column="0" line="1" realPart="-50.0"/><data column="0" line="2" realPart="-50.0"/><data column="0" line="3" realPart="4.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="740.0" y="260.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="4cf3be04:130e07e353b:-7fd2" ordering="1" parent="4cf3be04:130e07e353b:-7fd3" style="CommandPort;align=center;labelPosition=center;verticalLabelPosition=top;rotation=90;spacingBottom=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><CommandControlLink id="4cf3be04:130e07e353b:-7fd1" parent="4cf3be04:130e07e353b:-8000" source="4cf3be04:130e07e353b:-7fd2" target="4cf3be04:130e07e353b:-7fd5"><mxGeometry as="geometry" x="260.0" y="20.0"><mxPoint as="sourcePoint" x="760.0" y="306.0"/><mxPoint as="targetPoint" x="760.0" y="350.0"/></mxGeometry></CommandControlLink><BasicBlock angle="90" dependsOnU="1" id="4cf3be04:130e07e353b:-7fd0" interfaceFunctionName="Capacitor" ordering="12" parent="4cf3be04:130e07e353b:-8000" simulationFunctionName="Capacitor" simulationFunctionType="DEFAULT" style="Capacitor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="2" width="1"><data column="0" line="0" value="0.000009"/><data column="0" line="1" value="0"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="9.0E-6"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Capacitor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="2"><data column="0" line="0" value="C"/><data column="1" line="0" value="v"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="9.0E-6"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="250.0" y="270.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="4cf3be04:130e07e353b:-7fcf" ordering="1" parent="4cf3be04:130e07e353b:-7fd0" style="ImplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;spacingBottom=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="4cf3be04:130e07e353b:-7fce" ordering="1" parent="4cf3be04:130e07e353b:-7fd0" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;spacingTop=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><GroundBlock angle="90" dependsOnU="1" id="4cf3be04:130e07e353b:-7fcd" interfaceFunctionName="Ground" ordering="13" parent="4cf3be04:130e07e353b:-8000" simulationFunctionName="Ground" simulationFunctionType="DEFAULT" style="Ground;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Ground"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="250.0" y="440.0"/></GroundBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="4cf3be04:130e07e353b:-7fcc" ordering="1" parent="4cf3be04:130e07e353b:-7fcd" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=90;spacingTop=5;flip=false;mirror=false"><Orientation as="orientation" value="NORTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><SplitBlock id="4cf3be04:130e07e353b:-7fcb" ordering="14" parent="4cf3be04:130e07e353b:-8000" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="266.5" y="186.5"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="4cf3be04:130e07e353b:-7fca" ordering="1" parent="4cf3be04:130e07e353b:-7fcb" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="4cf3be04:130e07e353b:-7fc9" ordering="1" parent="4cf3be04:130e07e353b:-7fcb" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="4cf3be04:130e07e353b:-7fc8" ordering="2" parent="4cf3be04:130e07e353b:-7fcb" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="4cf3be04:130e07e353b:-7fc7" parent="4cf3be04:130e07e353b:-8000" source="4cf3be04:130e07e353b:-7ff8" target="4cf3be04:130e07e353b:-7fca"><mxGeometry as="geometry" height="80.0" width="80.0" x="10.0" y="10.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="260.0" y="190.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="4cf3be04:130e07e353b:-7fc6" parent="4cf3be04:130e07e353b:-8000" source="4cf3be04:130e07e353b:-7fc9" target="4cf3be04:130e07e353b:-7ff1"><mxGeometry as="geometry" height="80.0" width="80.0" x="10.0" y="10.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="270.0" y="190.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="4cf3be04:130e07e353b:-7fc5" ordering="15" parent="4cf3be04:130e07e353b:-8000" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="266.5" y="226.5"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="4cf3be04:130e07e353b:-7fc4" ordering="1" parent="4cf3be04:130e07e353b:-7fc5" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="4cf3be04:130e07e353b:-7fc3" ordering="1" parent="4cf3be04:130e07e353b:-7fc5" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="4cf3be04:130e07e353b:-7fc2" ordering="2" parent="4cf3be04:130e07e353b:-7fc5" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="4cf3be04:130e07e353b:-7fc1" parent="4cf3be04:130e07e353b:-8000" source="4cf3be04:130e07e353b:-7fc8" target="4cf3be04:130e07e353b:-7fc4"><mxGeometry as="geometry" height="80.0" width="80.0" x="10.0" y="10.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="4cf3be04:130e07e353b:-7fc0" parent="4cf3be04:130e07e353b:-8000" source="4cf3be04:130e07e353b:-7fc3" target="4cf3be04:130e07e353b:-7fce"><mxGeometry as="geometry" height="80.0" width="80.0" x="10.0" y="10.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="4cf3be04:130e07e353b:-7fbf" parent="4cf3be04:130e07e353b:-8000" source="4cf3be04:130e07e353b:-7fc2" target="4cf3be04:130e07e353b:-7fd8"><mxGeometry as="geometry" x="10.0" y="10.0"><mxPoint as="sourcePoint" x="350.0" y="266.0"/><mxPoint as="targetPoint" x="270.0" y="230.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="350.0" y="230.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="4cf3be04:130e07e353b:-7fbe" ordering="16" parent="4cf3be04:130e07e353b:-8000" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="266.5" y="396.5"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="4cf3be04:130e07e353b:-7fbd" ordering="1" parent="4cf3be04:130e07e353b:-7fbe" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="4cf3be04:130e07e353b:-7fbc" ordering="1" parent="4cf3be04:130e07e353b:-7fbe" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="4cf3be04:130e07e353b:-7fbb" ordering="2" parent="4cf3be04:130e07e353b:-7fbe" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="4cf3be04:130e07e353b:-7fba" parent="4cf3be04:130e07e353b:-8000" source="4cf3be04:130e07e353b:-7fef" target="4cf3be04:130e07e353b:-7fbd"><mxGeometry as="geometry" height="80.0" width="80.0" x="10.0" y="10.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="450.0" y="400.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="4cf3be04:130e07e353b:-7fb9" parent="4cf3be04:130e07e353b:-8000" source="4cf3be04:130e07e353b:-7fec" target="4cf3be04:130e07e353b:-7fbc"><mxGeometry as="geometry" height="80.0" width="80.0" x="10.0" y="10.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="80.0" y="400.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="4cf3be04:130e07e353b:-7fb8" ordering="17" parent="4cf3be04:130e07e353b:-8000" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="266.5" y="346.5"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="4cf3be04:130e07e353b:-7fb7" ordering="1" parent="4cf3be04:130e07e353b:-7fb8" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="4cf3be04:130e07e353b:-7fb6" ordering="1" parent="4cf3be04:130e07e353b:-7fb8" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="4cf3be04:130e07e353b:-7fb5" ordering="2" parent="4cf3be04:130e07e353b:-7fb8" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="4cf3be04:130e07e353b:-7fb4" parent="4cf3be04:130e07e353b:-8000" source="4cf3be04:130e07e353b:-7fcf" target="4cf3be04:130e07e353b:-7fb7"><mxGeometry as="geometry" height="80.0" width="80.0" x="10.0" y="10.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="4cf3be04:130e07e353b:-7fb3" parent="4cf3be04:130e07e353b:-8000" source="4cf3be04:130e07e353b:-7fda" target="4cf3be04:130e07e353b:-7fb5"><mxGeometry as="geometry" x="10.0" y="10.0"><mxPoint as="sourcePoint" x="340.0" y="314.0"/><mxPoint as="targetPoint" x="270.0" y="350.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="340.0" y="350.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="4cf3be04:130e07e353b:-7fb2" ordering="18" parent="4cf3be04:130e07e353b:-8000" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="266.5" y="396.5"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="4cf3be04:130e07e353b:-7fb1" ordering="1" parent="4cf3be04:130e07e353b:-7fb2" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="4cf3be04:130e07e353b:-7fb0" ordering="1" parent="4cf3be04:130e07e353b:-7fb2" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="4cf3be04:130e07e353b:-7faf" ordering="2" parent="4cf3be04:130e07e353b:-7fb2" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="4cf3be04:130e07e353b:-7fae" parent="4cf3be04:130e07e353b:-8000" source="4cf3be04:130e07e353b:-7fbb" target="4cf3be04:130e07e353b:-7fb1"><mxGeometry as="geometry" height="80.0" width="80.0" x="10.0" y="10.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="4cf3be04:130e07e353b:-7fad" parent="4cf3be04:130e07e353b:-8000" source="4cf3be04:130e07e353b:-7fb6" target="4cf3be04:130e07e353b:-7fb0"><mxGeometry as="geometry" height="80.0" width="80.0" x="10.0" y="10.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="4cf3be04:130e07e353b:-7fac" parent="4cf3be04:130e07e353b:-8000" source="4cf3be04:130e07e353b:-7faf" target="4cf3be04:130e07e353b:-7fcc"><mxGeometry as="geometry" x="10.0" y="10.0"><mxPoint as="sourcePoint" x="270.0" y="436.0"/><mxPoint as="targetPoint" x="270.0" y="400.0"/></mxGeometry></ImplicitLink><BasicBlock dependsOnU="1" id="4cf3be04:130e07e353b:-7fab" interfaceFunctionName="GAINBLK_f" ordering="19" parent="4cf3be04:130e07e353b:-8000" simulationFunctionName="gain" simulationFunctionType="DEFAULT" style="GAINBLK_f;flip=false;mirror=false" value="0.000009"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="0.000009"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="9.0E-6"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="50.0" width="40.0" x="580.0" y="360.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="4cf3be04:130e07e353b:-7faa" ordering="1" parent="4cf3be04:130e07e353b:-7fab" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="4cf3be04:130e07e353b:-7fa9" ordering="1" parent="4cf3be04:130e07e353b:-7fab" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><BasicBlock blockType="x" dependsOnU="1" id="4cf3be04:130e07e353b:-7fa8" interfaceFunctionName="DERIV" ordering="20" parent="4cf3be04:130e07e353b:-8000" simulationFunctionName="deriv" simulationFunctionType="C_OR_FORTRAN" style="DERIV;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="50.0" width="60.0" x="470.0" y="360.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataType="REAL_MATRIX" id="4cf3be04:130e07e353b:-7fa7" ordering="1" parent="4cf3be04:130e07e353b:-7fa8" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="60.0" y="16.0"/></ExplicitOutputPort><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="4cf3be04:130e07e353b:-7fa6" ordering="1" parent="4cf3be04:130e07e353b:-7fa8" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitLink id="4cf3be04:130e07e353b:-7fa5" parent="4cf3be04:130e07e353b:-8000" source="4cf3be04:130e07e353b:-7fa7" target="4cf3be04:130e07e353b:-7fa9"><mxGeometry as="geometry" x="10.0" y="10.0"><mxPoint as="sourcePoint" x="534.0" y="380.0"/><mxPoint as="targetPoint" x="580.0" y="380.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="580.0" y="380.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="4cf3be04:130e07e353b:-7fa4" parent="4cf3be04:130e07e353b:-8000" source="4cf3be04:130e07e353b:-7faa" target="4cf3be04:130e07e353b:-7fd4"><mxGeometry as="geometry" x="10.0" y="10.0"><mxPoint as="sourcePoint" x="624.0" y="380.0"/><mxPoint as="targetPoint" x="740.0" y="380.0"/></mxGeometry></ExplicitLink><SplitBlock id="4cf3be04:130e07e353b:-7fa3" ordering="21" parent="4cf3be04:130e07e353b:-8000" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="356.5" y="356.5"/></SplitBlock><ExplicitInputPort dataType="UNKNOW_TYPE" id="4cf3be04:130e07e353b:-7fa2" ordering="1" parent="4cf3be04:130e07e353b:-7fa3" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ExplicitInputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="4cf3be04:130e07e353b:-7fa1" ordering="1" parent="4cf3be04:130e07e353b:-7fa3" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="4cf3be04:130e07e353b:-7fa0" ordering="2" parent="4cf3be04:130e07e353b:-7fa3" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitLink id="4cf3be04:130e07e353b:-7f9f" parent="4cf3be04:130e07e353b:-8000" source="4cf3be04:130e07e353b:-7fd9" target="4cf3be04:130e07e353b:-7fa2"><mxGeometry as="geometry" height="80.0" width="80.0" x="10.0" y="10.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ExplicitLink><ExplicitLink id="4cf3be04:130e07e353b:-7f9e" parent="4cf3be04:130e07e353b:-8000" source="4cf3be04:130e07e353b:-7fa1" target="4cf3be04:130e07e353b:-7fa6"><mxGeometry as="geometry" height="80.0" width="80.0" x="10.0" y="10.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="360.0" y="380.0"/><mxPoint x="470.0" y="380.0"/><mxPoint x="460.0" y="380.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="4cf3be04:130e07e353b:-7f9d" parent="4cf3be04:130e07e353b:-8000" source="4cf3be04:130e07e353b:-7fa0" target="4cf3be04:130e07e353b:-7fd6"><mxGeometry as="geometry" x="10.0" y="10.0"><mxPoint as="sourcePoint" x="736.0" y="362.0"/><mxPoint as="targetPoint" x="360.0" y="360.0"/></mxGeometry></ExplicitLink></root></mxGraphModel><mxCell as="defaultParent" id="4cf3be04:130e07e353b:-8000" parent="4cf3be04:130e07e353b:-7fff"/></XcosDiagram>
\ No newline at end of file diff --git a/Working_Examples/154/CH8/EX8.8/ch8_81.jpeg b/Working_Examples/154/CH8/EX8.8/ch8_81.jpeg Binary files differnew file mode 100755 index 0000000..21d70a8 --- /dev/null +++ b/Working_Examples/154/CH8/EX8.8/ch8_81.jpeg diff --git a/Working_Examples/154/CH8/EX8.8/chap8_8.jpeg b/Working_Examples/154/CH8/EX8.8/chap8_8.jpeg Binary files differnew file mode 100755 index 0000000..6a3e10c --- /dev/null +++ b/Working_Examples/154/CH8/EX8.8/chap8_8.jpeg diff --git a/Working_Examples/154/CH8/EX8.9/ch8_9.xcos b/Working_Examples/154/CH8/EX8.9/ch8_9.xcos new file mode 100755 index 0000000..fa66ac3 --- /dev/null +++ b/Working_Examples/154/CH8/EX8.9/ch8_9.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" finalIntegrationTime="5.0" title="ch8_9"><!--Xcos - 1.0 - scilab-5.5.2 - 20160406 2040--><mxGraphModel as="model"><root><mxCell id="0:1:0"/><mxCell id="0:2:0" parent="0:1:0"/><Summation dependsOnU="1" id="5e4ad73d:130de8b0a0f:-7f38" interfaceFunctionName="SUMMATION" ordering="1" parent="0:2:0" simulationFunctionName="summation" simulationFunctionType="C_OR_FORTRAN" style="SUMMATION;flip=false;mirror=false" value="+"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="[1;-1]"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabInteger as="integerParameters" height="1" intPrecision="sci_int32" width="2"><data column="0" line="0" value="1"/><data column="1" line="0" value="-1"/></ScilabInteger><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabInteger as="nbZerosCrossing" height="1" intPrecision="sci_int32" width="1"><data column="0" line="0" value="0"/></ScilabInteger><ScilabInteger as="nmode" height="1" intPrecision="sci_int32" width="1"><data column="0" line="0" value="0"/></ScilabInteger><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="150.0" y="350.0"/></Summation><ExplicitInputPort dataType="REAL_MATRIX" id="5e4ad73d:130de8b0a0f:-7f36" ordering="1" parent="5e4ad73d:130de8b0a0f:-7f38" style="ExplicitInputPort;align=left;rotation=0;flip=false;mirror=false;verticalAlign=middle;spacing=10.0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ExplicitInputPort><ExplicitInputPort dataType="REAL_MATRIX" id="5e4ad73d:130de8b0a0f:-7f35" ordering="2" parent="5e4ad73d:130de8b0a0f:-7f38" style="ExplicitInputPort;align=left;rotation=0;flip=false;mirror=false;verticalAlign=middle;spacing=10.0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="26.0"/></ExplicitInputPort><ExplicitOutputPort dataType="REAL_MATRIX" id="5e4ad73d:130de8b0a0f:-7f37" ordering="1" parent="5e4ad73d:130de8b0a0f:-7f38" style="ExplicitOutputPort;align=right;rotation=0;flip=false;mirror=false;verticalAlign=middle;spacing=10.0"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><BasicBlock dependsOnT="1" id="5e4ad73d:130de8b0a0f:-7f26" interfaceFunctionName="INTEGRAL_m" ordering="2" parent="0:2:0" simulationFunctionName="integral_func" simulationFunctionType="C_OR_FORTRAN" style="INTEGRAL_m;flip=false;mirror=false"><ScilabString as="exprs" height="5" width="1"><data column="0" line="0" value="2"/><data column="0" line="1" value="0"/><data column="0" line="2" value="0"/><data column="0" line="3" value="1"/><data column="0" line="4" value="-1"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabInteger as="nbZerosCrossing" height="1" intPrecision="sci_int32" width="1"><data column="0" line="0" value="0"/></ScilabInteger><ScilabInteger as="nmode" height="1" intPrecision="sci_int32" width="1"><data column="0" line="0" value="0"/></ScilabInteger><ScilabDouble as="state" height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="330.0" y="350.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5e4ad73d:130de8b0a0f:-7edb" ordering="1" parent="5e4ad73d:130de8b0a0f:-7f26" style="ExplicitInputPort;align=left;rotation=0;flip=false;mirror=false;verticalAlign=middle;spacing=10.0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5e4ad73d:130de8b0a0f:-7eda" ordering="1" parent="5e4ad73d:130de8b0a0f:-7f26" style="ExplicitOutputPort;align=right;rotation=0;flip=false;mirror=false;verticalAlign=middle;spacing=10.0"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><BasicBlock blockType="x" dependsOnU="1" id="5e4ad73d:130de8b0a0f:-7eab" interfaceFunctionName="DERIV" ordering="3" parent="0:2:0" simulationFunctionName="deriv" simulationFunctionType="C_OR_FORTRAN" style="DERIV;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabInteger as="nbZerosCrossing" height="1" intPrecision="sci_int32" width="1"><data column="0" line="0" value="0"/></ScilabInteger><ScilabInteger as="nmode" height="1" intPrecision="sci_int32" width="1"><data column="0" line="0" value="0"/></ScilabInteger><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="50.0" width="60.0" x="470.0" y="460.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="5e4ad73d:130de8b0a0f:-7ea9" ordering="1" parent="5e4ad73d:130de8b0a0f:-7eab" style="ExplicitInputPort;align=left;rotation=0;flip=false;mirror=false;verticalAlign=middle;spacing=10.0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitOutputPort dataColumns="1" dataType="REAL_MATRIX" id="5e4ad73d:130de8b0a0f:-7eaa" ordering="1" parent="5e4ad73d:130de8b0a0f:-7eab" style="ExplicitOutputPort;align=right;rotation=0;flip=false;mirror=false;verticalAlign=middle;spacing=10.0"><mxGeometry as="geometry" height="8.0" width="8.0" x="60.0" y="16.0"/></ExplicitOutputPort><BasicBlock dependsOnU="1" id="-544482e7:1666703fa67:-7fb7" interfaceFunctionName="GAINBLK" ordering="4" parent="0:2:0" simulationFunctionName="gainblk" simulationFunctionType="C_OR_FORTRAN" style="GAINBLK;flip=false;mirror=false"><ScilabString as="exprs" height="2" width="1"><data column="0" line="0" value="10"/><data column="0" line="1" value="0"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="10.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabInteger as="nbZerosCrossing" height="1" intPrecision="sci_int32" width="1"><data column="0" line="0" value="0"/></ScilabInteger><ScilabInteger as="nmode" height="1" intPrecision="sci_int32" width="1"><data column="0" line="0" value="0"/></ScilabInteger><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="240.0" y="350.0"/></BasicBlock><ExplicitInputPort dataType="REAL_MATRIX" id="-544482e7:1666703fa67:-7fb6" ordering="1" parent="-544482e7:1666703fa67:-7fb7" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitOutputPort dataType="REAL_MATRIX" id="-544482e7:1666703fa67:-7fb5" ordering="1" parent="-544482e7:1666703fa67:-7fb7" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><BasicBlock angle="180" dependsOnU="1" id="-544482e7:1666703fa67:-7fb2" interfaceFunctionName="GAINBLK" ordering="5" parent="0:2:0" simulationFunctionName="gainblk" simulationFunctionType="C_OR_FORTRAN" style="GAINBLK;rotation=180;flip=false;mirror=false"><ScilabString as="exprs" height="2" width="1"><data column="0" line="0" value="3"/><data column="0" line="1" value="0"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabInteger as="nbZerosCrossing" height="1" intPrecision="sci_int32" width="1"><data column="0" line="0" value="0"/></ScilabInteger><ScilabInteger as="nmode" height="1" intPrecision="sci_int32" width="1"><data column="0" line="0" value="0"/></ScilabInteger><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="210.0" y="490.0"/></BasicBlock><ExplicitInputPort dataType="REAL_MATRIX" id="-544482e7:1666703fa67:-7fb1" ordering="1" parent="-544482e7:1666703fa67:-7fb2" style="ExplicitInputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=180;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitInputPort><ExplicitOutputPort dataType="REAL_MATRIX" id="-544482e7:1666703fa67:-7fb0" ordering="1" parent="-544482e7:1666703fa67:-7fb2" style="ExplicitOutputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=180;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitOutputPort><SplitBlock dependsOnU="1" id="-544482e7:1666703fa67:-7fa6" ordering="6" parent="0:2:0" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><ScilabInteger as="nbZerosCrossing" height="1" intPrecision="sci_int32" width="1"><data column="0" line="0" value="0"/></ScilabInteger><ScilabInteger as="nmode" height="1" intPrecision="sci_int32" width="1"><data column="0" line="0" value="0"/></ScilabInteger><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="7.0" width="7.0" x="406.5" y="466.5"/></SplitBlock><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="-544482e7:1666703fa67:-7fa5" ordering="1" parent="-544482e7:1666703fa67:-7fa6" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;flip=false;mirror=false" visible="0"/><ExplicitOutputPort dataColumns="1" dataType="REAL_MATRIX" id="-544482e7:1666703fa67:-7fa4" ordering="1" parent="-544482e7:1666703fa67:-7fa6" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;flip=false;mirror=false" visible="0"/><ExplicitOutputPort dataColumns="1" dataType="REAL_MATRIX" id="-544482e7:1666703fa67:-7fa3" ordering="2" parent="-544482e7:1666703fa67:-7fa6" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;flip=false;mirror=false" visible="0"/><ExplicitOutputPort dataColumns="1" dataType="REAL_MATRIX" id="-544482e7:1666703fa67:-7fa2" ordering="3" parent="-544482e7:1666703fa67:-7fa6" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;flip=false;mirror=false" visible="0"/><BasicBlock dependsOnU="1" id="-544482e7:1666703fa67:-7f9f" interfaceFunctionName="GAINBLK" ordering="7" parent="0:2:0" simulationFunctionName="gainblk" simulationFunctionType="C_OR_FORTRAN" style="GAINBLK;flip=false;mirror=false"><ScilabString as="exprs" height="2" width="1"><data column="0" line="0" value="0.1"/><data column="0" line="1" value="0"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="0.1"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabInteger as="nbZerosCrossing" height="1" intPrecision="sci_int32" width="1"><data column="0" line="0" value="0"/></ScilabInteger><ScilabInteger as="nmode" height="1" intPrecision="sci_int32" width="1"><data column="0" line="0" value="0"/></ScilabInteger><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="560.0" y="460.0"/></BasicBlock><ExplicitInputPort dataType="REAL_MATRIX" id="-544482e7:1666703fa67:-7f9e" ordering="1" parent="-544482e7:1666703fa67:-7f9f" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitOutputPort dataType="REAL_MATRIX" id="-544482e7:1666703fa67:-7f9d" ordering="1" parent="-544482e7:1666703fa67:-7f9f" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ExplicitLink id="-544482e7:1666703fa67:-7fb4" parent="0:2:0" source="5e4ad73d:130de8b0a0f:-7f37" target="-544482e7:1666703fa67:-7fb6" value=""><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="44.0" y="20.0"/><mxPoint as="targetPoint" x="-4.0" y="20.0"/><Array as="points" scilabClass="ScilabList"/></mxGeometry></ExplicitLink><ExplicitLink id="-544482e7:1666703fa67:-7fb3" parent="0:2:0" source="-544482e7:1666703fa67:-7fb5" target="5e4ad73d:130de8b0a0f:-7edb" value=""><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="44.0" y="20.0"/><mxPoint as="targetPoint" x="-4.0" y="20.0"/><Array as="points" scilabClass="ScilabList"/></mxGeometry></ExplicitLink><ExplicitLink id="-544482e7:1666703fa67:-7fab" parent="0:2:0" source="-544482e7:1666703fa67:-7fb0" target="5e4ad73d:130de8b0a0f:-7f35" value=""><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="-4.0" y="20.0"/><mxPoint as="targetPoint" x="-4.0" y="30.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="130.0" y="510.0"/><mxPoint x="130.0" y="380.0"/><mxPoint x="130.0" y="380.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="-544482e7:1666703fa67:-7fa0" parent="0:2:0" source="-544482e7:1666703fa67:-7fa4" target="5e4ad73d:130de8b0a0f:-7ea9" value=""><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="4.0" y="4.0"/><mxPoint as="targetPoint" x="-4.0" y="20.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="410.0" y="480.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="-544482e7:1666703fa67:-7fa7" parent="0:2:0" source="-544482e7:1666703fa67:-7fa3" target="-544482e7:1666703fa67:-7fb1" value=""><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="44.0" y="20.0"/><mxPoint as="targetPoint"/><Array as="points" scilabClass="ScilabList"><mxPoint x="410.0" y="510.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="-544482e7:1666703fa67:-7f9b" parent="0:2:0" source="5e4ad73d:130de8b0a0f:-7eaa" target="-544482e7:1666703fa67:-7f9e" value=""><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="64.0" y="20.0"/><mxPoint as="targetPoint" x="-4.0" y="20.0"/><Array as="points" scilabClass="ScilabList"/></mxGeometry></ExplicitLink><BasicBlock dependsOnU="1" id="-2f9abee8:166a9b44d48:-7f49" interfaceFunctionName="Resistor" ordering="8" parent="0:2:0" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="0.01"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="0.01"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.01"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="20.0" width="40.0" x="230.0" y="30.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-2f9abee8:166a9b44d48:-7f48" ordering="1" parent="-2f9abee8:166a9b44d48:-7f49" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-2f9abee8:166a9b44d48:-7f47" ordering="1" parent="-2f9abee8:166a9b44d48:-7f49" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="6.0"/></ImplicitOutputPort><BasicBlock angle="90" id="-2f9abee8:166a9b44d48:-7f40" interfaceFunctionName="ConstantVoltage" ordering="9" parent="0:2:0" simulationFunctionName="ConstantVoltage" simulationFunctionType="DEFAULT" style="ConstantVoltage;rotation=90"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="0.01"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="0.01"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ConstantVoltage"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="V"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.01"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="22.0" width="30.0" x="50.0" y="100.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-2f9abee8:166a9b44d48:-7f3f" ordering="1" parent="-2f9abee8:166a9b44d48:-7f40" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10.0;rotation=90" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-2f9abee8:166a9b44d48:-7f3e" ordering="1" parent="-2f9abee8:166a9b44d48:-7f40" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10.0;rotation=90" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="22.0"/></ImplicitOutputPort><BasicBlock dependsOnU="1" id="-2f9abee8:166a9b44d48:-7f36" interfaceFunctionName="Resistor" ordering="10" parent="0:2:0" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="0.01"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="0.01"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.01"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="20.0" width="40.0" x="90.0" y="30.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-2f9abee8:166a9b44d48:-7f35" ordering="1" parent="-2f9abee8:166a9b44d48:-7f36" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-2f9abee8:166a9b44d48:-7f34" ordering="1" parent="-2f9abee8:166a9b44d48:-7f36" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="6.0"/></ImplicitOutputPort><BasicBlock angle="270" dependsOnU="1" id="-2f9abee8:166a9b44d48:-7f33" interfaceFunctionName="Resistor" ordering="11" parent="0:2:0" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=270"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="0.01"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="0.01"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.01"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="20.0" width="40.0" x="150.0" y="120.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-2f9abee8:166a9b44d48:-7f32" ordering="1" parent="-2f9abee8:166a9b44d48:-7f33" style="ImplicitInputPort;align=center;verticalAlign=bottom;spacing=10.0;rotation=270" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="20.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-2f9abee8:166a9b44d48:-7f31" ordering="1" parent="-2f9abee8:166a9b44d48:-7f33" style="ImplicitOutputPort;align=center;verticalAlign=top;spacing=10.0;rotation=270" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitOutputPort><ImplicitLink id="-2f9abee8:166a9b44d48:-7f26" parent="0:2:0" source="-2f9abee8:166a9b44d48:-7f35" target="-2f9abee8:166a9b44d48:-7f3f"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="90.0" y="50.0"/><mxPoint as="targetPoint" x="110.0" y="90.0"/></mxGeometry></ImplicitLink><SplitBlock id="-2f9abee8:166a9b44d48:-7f24" interfaceFunctionName="IMPSPLIT_f" ordering="12" parent="0:2:0" simulationFunctionType="DEFAULT" style="IMPSPLIT_f"><mxGeometry as="geometry" height="7.0" width="7.0" x="167.0" y="37.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="-2f9abee8:166a9b44d48:-7f23" ordering="1" parent="-2f9abee8:166a9b44d48:-7f24" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-2f9abee8:166a9b44d48:-7f22" ordering="1" parent="-2f9abee8:166a9b44d48:-7f24" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-2f9abee8:166a9b44d48:-7f21" ordering="2" parent="-2f9abee8:166a9b44d48:-7f24" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="-2f9abee8:166a9b44d48:-7f20" parent="0:2:0" source="-2f9abee8:166a9b44d48:-7f34" target="-2f9abee8:166a9b44d48:-7f23"><mxGeometry as="geometry"><Array as="points" scilabClass=""/></mxGeometry></ImplicitLink><ImplicitLink id="-2f9abee8:166a9b44d48:-7f1f" parent="0:2:0" source="-2f9abee8:166a9b44d48:-7f22" target="-2f9abee8:166a9b44d48:-7f48"><mxGeometry as="geometry"><Array as="points" scilabClass=""/></mxGeometry></ImplicitLink><ImplicitLink id="-2f9abee8:166a9b44d48:-7f25" parent="0:2:0" source="-2f9abee8:166a9b44d48:-7f31" target="-2f9abee8:166a9b44d48:-7f21"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="230.0" y="120.0"/><mxPoint as="targetPoint" x="170.0" y="50.0"/></mxGeometry></ImplicitLink><GroundBlock dependsOnU="1" id="-2f9abee8:166a9b44d48:-7f09" interfaceFunctionName="Ground" ordering="13" parent="0:2:0" simulationFunctionName="Ground" simulationFunctionType="DEFAULT" style="Ground"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Ground"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="20.0" width="20.0" x="160.0" y="220.0"/></GroundBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-2f9abee8:166a9b44d48:-7f08" ordering="1" parent="-2f9abee8:166a9b44d48:-7f09" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10.0;rotation=90" value=""><Orientation as="orientation" value="NORTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="6.0" y="-8.0"/></ImplicitInputPort><SplitBlock id="-2f9abee8:166a9b44d48:-7f03" interfaceFunctionName="IMPSPLIT_f" ordering="14" parent="0:2:0" simulationFunctionType="DEFAULT" style="IMPSPLIT_f"><mxGeometry as="geometry" height="7.0" width="7.0" x="167.0" y="167.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="-2f9abee8:166a9b44d48:-7f02" ordering="1" parent="-2f9abee8:166a9b44d48:-7f03" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-2f9abee8:166a9b44d48:-7f01" ordering="1" parent="-2f9abee8:166a9b44d48:-7f03" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-2f9abee8:166a9b44d48:-7f00" ordering="2" parent="-2f9abee8:166a9b44d48:-7f03" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="-2f9abee8:166a9b44d48:-7eff" parent="0:2:0" source="-2f9abee8:166a9b44d48:-7f3e" target="-2f9abee8:166a9b44d48:-7f02"><mxGeometry as="geometry"><Array as="points" scilabClass=""><mxPoint x="70.0" y="170.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-2f9abee8:166a9b44d48:-7f04" parent="0:2:0" source="-2f9abee8:166a9b44d48:-7f00" target="-2f9abee8:166a9b44d48:-7f08"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="140.0" y="220.0"/><mxPoint as="targetPoint" x="140.0" y="170.0"/></mxGeometry></ImplicitLink><BasicBlock angle="90" dependsOnU="1" id="-2f9abee8:166a9b44d48:-7ef5" interfaceFunctionName="CurrentSensor" ordering="15" parent="0:2:0" simulationFunctionName="CurrentSensor" simulationFunctionType="DEFAULT" style="CurrentSensor;rotation=90"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CurrentSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="i"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="310.0" y="80.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-2f9abee8:166a9b44d48:-7ef4" ordering="1" parent="-2f9abee8:166a9b44d48:-7ef5" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10.0;rotation=90" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-2f9abee8:166a9b44d48:-7ef3" ordering="1" parent="-2f9abee8:166a9b44d48:-7ef5" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10.0;rotation=90" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="6.0" y="40.0"/></ImplicitOutputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-2f9abee8:166a9b44d48:-7ef2" ordering="2" parent="-2f9abee8:166a9b44d48:-7ef5" style="ExplicitOutputPort;align=center;verticalAlign=bottom;spacing=10.0;rotation=90" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="26.0" y="40.0"/></ExplicitOutputPort><SplitBlock id="-2f9abee8:166a9b44d48:-7ef0" interfaceFunctionName="IMPSPLIT_f" ordering="16" parent="0:2:0" simulationFunctionType="DEFAULT" style="IMPSPLIT_f"><mxGeometry as="geometry" height="7.0" width="7.0" x="167.0" y="167.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="-2f9abee8:166a9b44d48:-7eef" ordering="1" parent="-2f9abee8:166a9b44d48:-7ef0" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-2f9abee8:166a9b44d48:-7eee" ordering="1" parent="-2f9abee8:166a9b44d48:-7ef0" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-2f9abee8:166a9b44d48:-7eed" ordering="2" parent="-2f9abee8:166a9b44d48:-7ef0" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="-2f9abee8:166a9b44d48:-7eec" parent="0:2:0" source="-2f9abee8:166a9b44d48:-7f01" target="-2f9abee8:166a9b44d48:-7eef"><mxGeometry as="geometry"><Array as="points" scilabClass=""/></mxGeometry></ImplicitLink><ImplicitLink id="-2f9abee8:166a9b44d48:-7eeb" parent="0:2:0" source="-2f9abee8:166a9b44d48:-7eee" target="-2f9abee8:166a9b44d48:-7f32"><mxGeometry as="geometry"><Array as="points" scilabClass=""/></mxGeometry></ImplicitLink><ImplicitLink id="-2f9abee8:166a9b44d48:-7ef1" parent="0:2:0" source="-2f9abee8:166a9b44d48:-7ef3" target="-2f9abee8:166a9b44d48:-7eed"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="250.0" y="130.0"/><mxPoint as="targetPoint" x="170.0" y="170.0"/><Array as="points" scilabClass=""><mxPoint x="320.0" y="170.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-2f9abee8:166a9b44d48:-7edf" parent="0:2:0" source="-2f9abee8:166a9b44d48:-7f47" target="-2f9abee8:166a9b44d48:-7ef4"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="270.0" y="40.0"/><mxPoint as="targetPoint" x="330.0" y="80.0"/><Array as="points" scilabClass=""><mxPoint x="330.0" y="40.0"/></Array></mxGeometry></ImplicitLink><BasicBlock dependsOnU="1" id="-2f9abee8:166a9b44d48:-7ed8" interfaceFunctionName="CSCOPE" ordering="17" parent="0:2:0" simulationFunctionName="cscope" simulationFunctionType="C_OR_FORTRAN" style="CSCOPE"><ScilabString as="exprs" height="10" width="1"><data column="0" line="0" value="1 3 5 7 9 11 13 15"/><data column="0" line="1" value="-1"/><data column="0" line="2" value="[]"/><data column="0" line="3" value="[600;400]"/><data column="0" line="4" value="-5"/><data column="0" line="5" value="5"/><data column="0" line="6" value="5"/><data column="0" line="7" value="20"/><data column="0" line="8" value="0"/><data column="0" line="9" value=""/></ScilabString><ScilabDouble as="realParameters" height="4" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="-5.0"/><data column="0" line="2" realPart="5.0"/><data column="0" line="3" realPart="5.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="15" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="1.0"/><data column="0" line="4" realPart="3.0"/><data column="0" line="5" realPart="5.0"/><data column="0" line="6" realPart="7.0"/><data column="0" line="7" realPart="9.0"/><data column="0" line="8" realPart="11.0"/><data column="0" line="9" realPart="13.0"/><data column="0" line="10" realPart="15.0"/><data column="0" line="11" realPart="-1.0"/><data column="0" line="12" realPart="-1.0"/><data column="0" line="13" realPart="600.0"/><data column="0" line="14" realPart="400.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="480.0" y="110.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="-2f9abee8:166a9b44d48:-7d99" ordering="1" parent="-2f9abee8:166a9b44d48:-7ed8" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ControlPort dataType="UNKNOW_TYPE" id="-2f9abee8:166a9b44d48:-7d98" ordering="1" parent="-2f9abee8:166a9b44d48:-7ed8" style="ControlPort;align=center;verticalAlign=top;spacing=10.0;rotation=90"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><ExplicitLink id="-2f9abee8:166a9b44d48:-7ed5" parent="0:2:0" source="-2f9abee8:166a9b44d48:-7ef2" target="-2f9abee8:166a9b44d48:-7d99"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="340.0" y="120.0"/><mxPoint as="targetPoint" x="480.0" y="130.0"/><Array as="points" scilabClass=""><mxPoint x="340.0" y="130.0"/></Array></mxGeometry></ExplicitLink><BasicBlock blockType="h" id="-2f9abee8:166a9b44d48:-7ed0" interfaceFunctionName="CLOCK_c" ordering="18" parent="0:2:0" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="1.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="359.0"/><data column="1" line="0" realPart="-390.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-2f9abee8:166a9b44d48:-7ecb"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-2f9abee8:166a9b44d48:-7ecb"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.1"/><data column="0" line="1" value="0.1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.1"/><data column="0" line="1" realPart="0.1"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.1"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-2f9abee8:166a9b44d48:-7ec9"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-2f9abee8:166a9b44d48:-7ec9"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="519.3773266666667"/><data column="1" line="0" realPart="-565.3333333333333"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="7.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="5.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-2f9abee8:166a9b44d48:-7ec6"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-2f9abee8:166a9b44d48:-7ec6"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="580.0"/><data column="0" line="2" realPart="529.8773266666667"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-44.0"/><data column="0" line="1" realPart="-660.0"/><data column="0" line="2" realPart="-554.3333333333333"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="528.7106600000001"/><data column="0" line="1" realPart="389.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-569.3333333333333"/><data column="0" line="1" realPart="-366.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="531.0439933333333"/><data column="0" line="1" realPart="620.71"/><data column="0" line="2" realPart="580.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-569.3333333333333"/><data column="0" line="1" realPart="-530.0"/><data column="0" line="2" realPart="-530.0"/><data column="0" line="3" realPart="4.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="480.0" y="50.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="-2f9abee8:166a9b44d48:-7ecf" ordering="1" parent="-2f9abee8:166a9b44d48:-7ed0" style="CommandPort;align=center;verticalAlign=bottom;spacing=10.0;rotation=90"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><CommandControlLink id="-2f9abee8:166a9b44d48:-7ece" parent="0:2:0" source="-2f9abee8:166a9b44d48:-7ecf" target="-2f9abee8:166a9b44d48:-7d98"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="500.0" y="90.0"/><mxPoint as="targetPoint" x="500.0" y="110.0"/></mxGeometry></CommandControlLink><BasicBlock blockType="h" id="-2f9abee8:166a9b44d48:-7ea8" interfaceFunctionName="CLOCK_c" ordering="19" parent="0:2:0" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="1.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="359.0"/><data column="1" line="0" realPart="-390.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-2f9abee8:166a9b44d48:-7ecb"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-2f9abee8:166a9b44d48:-7ecb"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.1"/><data column="0" line="1" value="0.1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.1"/><data column="0" line="1" realPart="0.1"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.1"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-2f9abee8:166a9b44d48:-7ec9"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-2f9abee8:166a9b44d48:-7ec9"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="519.3773266666667"/><data column="1" line="0" realPart="-565.3333333333333"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="7.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="5.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-2f9abee8:166a9b44d48:-7ec6"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-2f9abee8:166a9b44d48:-7ec6"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="580.0"/><data column="0" line="2" realPart="529.8773266666667"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-44.0"/><data column="0" line="1" realPart="-660.0"/><data column="0" line="2" realPart="-554.3333333333333"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="528.7106600000001"/><data column="0" line="1" realPart="389.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-569.3333333333333"/><data column="0" line="1" realPart="-366.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="531.0439933333333"/><data column="0" line="1" realPart="620.71"/><data column="0" line="2" realPart="580.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-569.3333333333333"/><data column="0" line="1" realPart="-530.0"/><data column="0" line="2" realPart="-530.0"/><data column="0" line="3" realPart="4.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="620.0" y="240.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="-2f9abee8:166a9b44d48:-7ea7" ordering="1" parent="-2f9abee8:166a9b44d48:-7ea8" style="CommandPort;align=center;verticalAlign=bottom;spacing=10.0;rotation=90"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><BasicBlock id="-2f9abee8:166a9b44d48:-7e16" interfaceFunctionName="STEP_FUNCTION" ordering="20" parent="0:2:0" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="STEP_FUNCTION"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="1.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="3" width="1"><data column="0" line="0" value="1"/><data column="0" line="1" value="0"/><data column="0" line="2" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"STEP",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="STEP"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="step_func"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-2f9abee8:166a9b44d48:-7df5"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="STEP"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-2f9abee8:166a9b44d48:-7df5"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="280.0"/><data column="1" line="0" realPart="-230.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"OUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="OUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-2.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-2f9abee8:166a9b44d48:-7df1"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="OUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-2f9abee8:166a9b44d48:-7df1"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="84.0"/><data column="0" line="1" realPart="296.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-20.0"/><data column="0" line="1" realPart="-220.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="6" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="420.0"/><data column="0" line="2" realPart="380.0"/><data column="0" line="3" realPart="380.0"/><data column="0" line="4" realPart="420.0"/><data column="0" line="5" realPart="60.0"/></ScilabDouble><ScilabDouble height="6" width="1"><data column="0" line="0" realPart="-44.0"/><data column="0" line="1" realPart="-460.0"/><data column="0" line="2" realPart="-460.0"/><data column="0" line="3" realPart="-380.0"/><data column="0" line="4" realPart="-380.0"/><data column="0" line="5" realPart="4.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="60.0" y="340.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-2f9abee8:166a9b44d48:-7e15" ordering="1" parent="-2f9abee8:166a9b44d48:-7e16" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ExplicitLink id="-2f9abee8:166a9b44d48:-7e14" parent="0:2:0" source="-2f9abee8:166a9b44d48:-7e15" target="5e4ad73d:130de8b0a0f:-7f36"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="100.0" y="360.0"/><mxPoint as="targetPoint" x="140.0" y="360.0"/><Array as="points" scilabClass=""><mxPoint x="140.0" y="360.0"/></Array></mxGeometry></ExplicitLink><BasicBlock dependsOnU="1" id="-2f9abee8:166a9b44d48:-7cea" interfaceFunctionName="CMSCOPE" ordering="21" parent="0:2:0" simulationFunctionName="cmscope" simulationFunctionType="C_OR_FORTRAN" style="CMSCOPE"><ScilabString as="exprs" height="11" width="1"><data column="0" line="0" value="1 1"/><data column="0" line="1" value="1 3 5 7 9 11 13 15"/><data column="0" line="2" value="-1"/><data column="0" line="3" value="[]"/><data column="0" line="4" value="[]"/><data column="0" line="5" value="-1 -1"/><data column="0" line="6" value="1 1"/><data column="0" line="7" value="5 5"/><data column="0" line="8" value="20"/><data column="0" line="9" value="0"/><data column="0" line="10" value=""/></ScilabString><ScilabDouble as="realParameters" height="7" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="5.0"/><data column="0" line="2" realPart="5.0"/><data column="0" line="3" realPart="-1.0"/><data column="0" line="4" realPart="1.0"/><data column="0" line="5" realPart="-1.0"/><data column="0" line="6" realPart="1.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="12" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="2.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="-1.0"/><data column="0" line="4" realPart="-1.0"/><data column="0" line="5" realPart="-1.0"/><data column="0" line="6" realPart="-1.0"/><data column="0" line="7" realPart="1.0"/><data column="0" line="8" realPart="1.0"/><data column="0" line="9" realPart="1.0"/><data column="0" line="10" realPart="3.0"/><data column="0" line="11" realPart="0.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="620.0" y="360.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-2f9abee8:166a9b44d48:-7c88" ordering="1" parent="-2f9abee8:166a9b44d48:-7cea" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ExplicitInputPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-2f9abee8:166a9b44d48:-7c87" ordering="2" parent="-2f9abee8:166a9b44d48:-7cea" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="26.0"/></ExplicitInputPort><ControlPort dataType="UNKNOW_TYPE" id="-2f9abee8:166a9b44d48:-7c86" ordering="1" parent="-2f9abee8:166a9b44d48:-7cea" style="ControlPort;align=center;verticalAlign=top;spacing=10.0;rotation=90"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><CommandControlLink id="-2f9abee8:166a9b44d48:-7ce4" parent="0:2:0" source="-2f9abee8:166a9b44d48:-7ea7" target="-2f9abee8:166a9b44d48:-7c86"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="640.0" y="280.0"/><mxPoint as="targetPoint" x="640.0" y="360.0"/></mxGeometry></CommandControlLink><ExplicitLink id="-2f9abee8:166a9b44d48:-7ce3" parent="0:2:0" source="-544482e7:1666703fa67:-7f9d" target="-2f9abee8:166a9b44d48:-7c87"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="620.0" y="390.0"/><mxPoint as="targetPoint" x="610.0" y="480.0"/><Array as="points" scilabClass=""><mxPoint x="610.0" y="390.0"/></Array></mxGeometry></ExplicitLink><SplitBlock id="-2f9abee8:166a9b44d48:-7ce1" ordering="22" parent="0:2:0" simulationFunctionType="DEFAULT"><mxGeometry as="geometry" height="7.0" width="7.0" x="397.0" y="367.0"/></SplitBlock><ExplicitInputPort dataType="UNKNOW_TYPE" id="-2f9abee8:166a9b44d48:-7ce0" ordering="1" parent="-2f9abee8:166a9b44d48:-7ce1" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ExplicitInputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="-2f9abee8:166a9b44d48:-7cdf" ordering="1" parent="-2f9abee8:166a9b44d48:-7ce1" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="-2f9abee8:166a9b44d48:-7cde" ordering="2" parent="-2f9abee8:166a9b44d48:-7ce1" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitLink id="-2f9abee8:166a9b44d48:-7cdd" parent="0:2:0" source="5e4ad73d:130de8b0a0f:-7eda" target="-2f9abee8:166a9b44d48:-7ce0"><mxGeometry as="geometry"><Array as="points" scilabClass=""/></mxGeometry></ExplicitLink><ExplicitLink id="-2f9abee8:166a9b44d48:-7cdc" parent="0:2:0" source="-2f9abee8:166a9b44d48:-7cdf" target="-544482e7:1666703fa67:-7fa5"><mxGeometry as="geometry"><Array as="points" scilabClass=""><mxPoint x="410.0" y="370.0"/><mxPoint x="410.0" y="370.0"/><mxPoint x="410.0" y="370.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="-2f9abee8:166a9b44d48:-7ce2" parent="0:2:0" source="-2f9abee8:166a9b44d48:-7cde" target="-2f9abee8:166a9b44d48:-7c88"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="620.0" y="370.0"/><mxPoint as="targetPoint" x="400.0" y="370.0"/></mxGeometry></ExplicitLink></root></mxGraphModel><mxCell as="defaultParent" id="0:2:0" parent="0:1:0"/></XcosDiagram>
\ No newline at end of file diff --git a/Working_Examples/154/CH8/EX8.9/ch8_91.jpeg b/Working_Examples/154/CH8/EX8.9/ch8_91.jpeg Binary files differnew file mode 100755 index 0000000..d265ec2 --- /dev/null +++ b/Working_Examples/154/CH8/EX8.9/ch8_91.jpeg diff --git a/Working_Examples/154/CH8/EX8.9/chap8_9.jpeg b/Working_Examples/154/CH8/EX8.9/chap8_9.jpeg Binary files differnew file mode 100755 index 0000000..40e2515 --- /dev/null +++ b/Working_Examples/154/CH8/EX8.9/chap8_9.jpeg diff --git a/Working_Examples/154/CH9/EX9.1/ch9_1.xcos b/Working_Examples/154/CH9/EX9.1/ch9_1.xcos new file mode 100755 index 0000000..ffd9906 --- /dev/null +++ b/Working_Examples/154/CH9/EX9.1/ch9_1.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" cellsLocked="1" finalIntegrationTime="0.05" title="ch9_1"><!--Xcos - 1.0 - scilab-5.5.2 - 20160406 2040--><mxGraphModel as="model"><root><mxCell id="5f267dc3:130e0981282:-7fff"/><mxCell id="5f267dc3:130e0981282:-8000" parent="5f267dc3:130e0981282:-7fff"/><BasicBlock dependsOnU="1" id="5f267dc3:130e0981282:-7fde" interfaceFunctionName="Capacitor" ordering="1" parent="5f267dc3:130e0981282:-8000" simulationFunctionName="Capacitor" simulationFunctionType="DEFAULT" style="Capacitor;flip=false;mirror=false"><ScilabString as="exprs" height="2" width="1"><data column="0" line="0" value="13.33*10^-6"/><data column="0" line="1" value="200.3"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="1.333E-5"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Capacitor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="2"><data column="0" line="0" value="C"/><data column="1" line="0" value="v"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.333E-5"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="200.3"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="250.0" y="140.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5f267dc3:130e0981282:-7f6e" ordering="1" parent="5f267dc3:130e0981282:-7fde" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5f267dc3:130e0981282:-7f6f" ordering="1" parent="5f267dc3:130e0981282:-7fde" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><GroundBlock angle="90" dependsOnU="1" id="5f267dc3:130e0981282:-7fd6" interfaceFunctionName="Ground" ordering="2" parent="5f267dc3:130e0981282:-8000" simulationFunctionName="Ground" simulationFunctionType="DEFAULT" style="Ground;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Ground"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="160.0" y="390.0"/></GroundBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5f267dc3:130e0981282:-7fd5" ordering="1" parent="5f267dc3:130e0981282:-7fd6" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=90;spacingTop=5;flip=false;mirror=false"><Orientation as="orientation" value="NORTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="5f267dc3:130e0981282:-7fcd" interfaceFunctionName="Inductor" ordering="3" parent="5f267dc3:130e0981282:-8000" simulationFunctionName="Inductor" simulationFunctionType="DEFAULT" style="Inductor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="0.1"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="0.1"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Inductor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="L"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.1"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="140.0" y="140.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5f267dc3:130e0981282:-7f72" ordering="1" parent="5f267dc3:130e0981282:-7fcd" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5f267dc3:130e0981282:-7f73" ordering="1" parent="5f267dc3:130e0981282:-7fcd" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="5f267dc3:130e0981282:-7fc3" interfaceFunctionName="Resistor" ordering="4" parent="5f267dc3:130e0981282:-8000" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="200"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="200.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="200.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="30.0" y="140.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5f267dc3:130e0981282:-7f76" ordering="1" parent="5f267dc3:130e0981282:-7fc3" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5f267dc3:130e0981282:-7f77" ordering="1" parent="5f267dc3:130e0981282:-7fc3" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><BasicBlock angle="90" dependsOnU="1" id="5f267dc3:130e0981282:-7fb7" interfaceFunctionName="CurrentSensor" ordering="5" parent="5f267dc3:130e0981282:-8000" simulationFunctionName="CurrentSensor" simulationFunctionType="DEFAULT" style="CurrentSensor;rotation=90;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CurrentSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="i"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="310.0" y="240.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5f267dc3:130e0981282:-7fb6" ordering="1" parent="5f267dc3:130e0981282:-7fb7" style="ImplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;rotation=90;spacingBottom=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="6.0" y="40.0"/></ImplicitOutputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5f267dc3:130e0981282:-7fb5" ordering="2" parent="5f267dc3:130e0981282:-7fb7" style="ExplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;rotation=90;spacingBottom=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="26.0" y="40.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5f267dc3:130e0981282:-7fb4" ordering="1" parent="5f267dc3:130e0981282:-7fb7" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=90;spacingTop=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitLink id="5f267dc3:130e0981282:-7fa0" parent="5f267dc3:130e0981282:-8000" source="5f267dc3:130e0981282:-7f76" target="5f267dc3:130e0981282:-7f73"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="74.0" y="160.0"/><mxPoint as="targetPoint" x="140.0" y="160.0"/></mxGeometry></ImplicitLink><ImplicitLink id="5f267dc3:130e0981282:-7f9f" parent="5f267dc3:130e0981282:-8000" source="5f267dc3:130e0981282:-7f72" target="5f267dc3:130e0981282:-7f6f"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="184.0" y="160.0"/><mxPoint as="targetPoint" x="250.0" y="160.0"/></mxGeometry></ImplicitLink><ImplicitLink id="5f267dc3:130e0981282:-7f9e" parent="5f267dc3:130e0981282:-8000" source="5f267dc3:130e0981282:-7f6e" target="5f267dc3:130e0981282:-7fb4"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="294.0" y="160.0"/><mxPoint as="targetPoint" x="330.0" y="240.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="320.0" y="160.0"/><mxPoint x="330.0" y="160.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="5f267dc3:130e0981282:-7f99" ordering="6" parent="5f267dc3:130e0981282:-8000" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="177.0" y="337.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="5f267dc3:130e0981282:-7f98" ordering="1" parent="5f267dc3:130e0981282:-7f99" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="5f267dc3:130e0981282:-7f97" ordering="1" parent="5f267dc3:130e0981282:-7f99" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="5f267dc3:130e0981282:-7f96" ordering="2" parent="5f267dc3:130e0981282:-7f99" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="5f267dc3:130e0981282:-7f95" parent="5f267dc3:130e0981282:-8000" source="5f267dc3:130e0981282:-7fb6" target="5f267dc3:130e0981282:-7f98"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="320.0" y="340.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="5f267dc3:130e0981282:-7f94" parent="5f267dc3:130e0981282:-8000" source="5f267dc3:130e0981282:-7f97" target="5f267dc3:130e0981282:-7f77"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="10.0" y="340.0"/><mxPoint x="10.0" y="160.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="5f267dc3:130e0981282:-7f9a" parent="5f267dc3:130e0981282:-8000" source="5f267dc3:130e0981282:-7f96" target="5f267dc3:130e0981282:-7fd5"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="180.0" y="386.0"/><mxPoint as="targetPoint" x="180.0" y="340.0"/></mxGeometry></ImplicitLink><BasicBlock dependsOnU="1" id="5f267dc3:130e0981282:-7f8c" interfaceFunctionName="CSCOPE" ordering="7" parent="5f267dc3:130e0981282:-8000" simulationFunctionName="cscope" simulationFunctionType="C_OR_FORTRAN" style="CSCOPE;flip=false;mirror=false"><ScilabString as="exprs" height="10" width="1"><data column="0" line="0" value="1 3 5 7 9 11 13 15"/><data column="0" line="1" value="-1"/><data column="0" line="2" value="[]"/><data column="0" line="3" value="[600;400]"/><data column="0" line="4" value="-1"/><data column="0" line="5" value="1"/><data column="0" line="6" value="0.1"/><data column="0" line="7" value="20"/><data column="0" line="8" value="0"/><data column="0" line="9" value=""/></ScilabString><ScilabDouble as="realParameters" height="4" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="-1.0"/><data column="0" line="2" realPart="1.0"/><data column="0" line="3" realPart="0.1"/></ScilabDouble><ScilabDouble as="integerParameters" height="15" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="1.0"/><data column="0" line="4" realPart="3.0"/><data column="0" line="5" realPart="5.0"/><data column="0" line="6" realPart="7.0"/><data column="0" line="7" realPart="9.0"/><data column="0" line="8" realPart="11.0"/><data column="0" line="9" realPart="13.0"/><data column="0" line="10" realPart="15.0"/><data column="0" line="11" realPart="-1.0"/><data column="0" line="12" realPart="-1.0"/><data column="0" line="13" realPart="600.0"/><data column="0" line="14" realPart="400.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="380.0" y="300.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="5f267dc3:130e0981282:-7edf" ordering="1" parent="5f267dc3:130e0981282:-7f8c" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ControlPort dataType="UNKNOW_TYPE" id="5f267dc3:130e0981282:-7ede" ordering="1" parent="5f267dc3:130e0981282:-7f8c" style="ControlPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=90;spacingTop=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><BasicBlock blockType="h" id="5f267dc3:130e0981282:-7f84" interfaceFunctionName="CLOCK_c" ordering="8" parent="5f267dc3:130e0981282:-8000" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="119.0"/><data column="1" line="0" realPart="-150.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-4c79a1b6:166e2706967:-7cc4"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-4c79a1b6:166e2706967:-7cc4"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.001"/><data column="0" line="1" value="0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.001"/><data column="0" line="1" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-4c79a1b6:166e2706967:-7cc2"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-4c79a1b6:166e2706967:-7cc2"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="123.3773266666667"/><data column="1" line="0" realPart="-169.33333333333331"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="7.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="5.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-4c79a1b6:166e2706967:-7cbf"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-4c79a1b6:166e2706967:-7cbf"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="100.0"/><data column="0" line="2" realPart="133.8773266666667"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-44.0"/><data column="0" line="1" realPart="-180.0"/><data column="0" line="2" realPart="-158.33333333333331"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="132.71066000000005"/><data column="0" line="1" realPart="149.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-173.33333333333331"/><data column="0" line="1" realPart="-126.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="135.04399333333336"/><data column="0" line="1" realPart="140.70999999999998"/><data column="0" line="2" realPart="100.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-173.33333333333331"/><data column="0" line="1" realPart="-50.0"/><data column="0" line="2" realPart="-50.0"/><data column="0" line="3" realPart="4.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="48.0" width="40.0" x="380.0" y="210.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="5f267dc3:130e0981282:-7f7a" ordering="1" parent="5f267dc3:130e0981282:-7f84" style="CommandPort;align=center;labelPosition=center;verticalLabelPosition=top;rotation=90;spacingBottom=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="48.0"/></CommandPort><ExplicitLink id="5f267dc3:130e0981282:-7f7d" parent="5f267dc3:130e0981282:-8000" source="5f267dc3:130e0981282:-7fb5" target="5f267dc3:130e0981282:-7edf"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="340.0" y="284.0"/><mxPoint as="targetPoint" x="380.0" y="320.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="340.0" y="320.0"/></Array></mxGeometry></ExplicitLink><CommandControlLink id="5f267dc3:130e0981282:-7f7c" parent="5f267dc3:130e0981282:-8000" source="5f267dc3:130e0981282:-7f7a" target="5f267dc3:130e0981282:-7ede"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="400.0" y="254.0"/><mxPoint as="targetPoint" x="400.0" y="290.0"/></mxGeometry></CommandControlLink></root></mxGraphModel><mxCell as="defaultParent" id="5f267dc3:130e0981282:-8000" parent="5f267dc3:130e0981282:-7fff"/></XcosDiagram>
\ No newline at end of file diff --git a/Working_Examples/154/CH9/EX9.1/ch9_11.jpeg b/Working_Examples/154/CH9/EX9.1/ch9_11.jpeg Binary files differnew file mode 100755 index 0000000..f1375f6 --- /dev/null +++ b/Working_Examples/154/CH9/EX9.1/ch9_11.jpeg diff --git a/Working_Examples/154/CH9/EX9.1/chap9_1.jpeg b/Working_Examples/154/CH9/EX9.1/chap9_1.jpeg Binary files differnew file mode 100755 index 0000000..98eeeba --- /dev/null +++ b/Working_Examples/154/CH9/EX9.1/chap9_1.jpeg diff --git a/Working_Examples/154/CH9/EX9.11/ch9_11.sce b/Working_Examples/154/CH9/EX9.11/ch9_11.sce new file mode 100755 index 0000000..8563a90 --- /dev/null +++ b/Working_Examples/154/CH9/EX9.11/ch9_11.sce @@ -0,0 +1,16 @@ +clc
+disp("Example 9.11")
+printf("\n")
+
+//From figure 9.16
+//H(s)=V(s)/I(s)=Z(s)
+//Let V(s)=1 the H(s)=Z(s)
+s=%s
+z1=(1/2.5)+(3/(5*s))+(s/20)
+Z=1/z1
+Dem=Z('den')
+//The roots are
+q=roots(Dem)
+disp(q,"Poles are")
+
+
diff --git a/Working_Examples/154/CH9/EX9.2/ch9_2.xcos b/Working_Examples/154/CH9/EX9.2/ch9_2.xcos new file mode 100755 index 0000000..86c3d70 --- /dev/null +++ b/Working_Examples/154/CH9/EX9.2/ch9_2.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" finalIntegrationTime="0.05" title="ch9_2"><!--Xcos - 1.0 - scilab-5.5.2 - 20160406 2040--><mxGraphModel as="model"><root><mxCell id="5f267dc3:130e0981282:-7ebb"/><mxCell id="5f267dc3:130e0981282:-7ebc" parent="5f267dc3:130e0981282:-7ebb"/><GroundBlock angle="90" dependsOnU="1" id="5f267dc3:130e0981282:-7eb7" interfaceFunctionName="Ground" ordering="1" parent="5f267dc3:130e0981282:-7ebc" simulationFunctionName="Ground" simulationFunctionType="DEFAULT" style="Ground;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Ground"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="170.0" y="400.0"/></GroundBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5f267dc3:130e0981282:-7eb6" ordering="1" parent="5f267dc3:130e0981282:-7eb7" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=90;spacingTop=5;flip=false;mirror=false"><Orientation as="orientation" value="NORTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="5f267dc3:130e0981282:-7eb5" interfaceFunctionName="Inductor" ordering="2" parent="5f267dc3:130e0981282:-7ebc" simulationFunctionName="Inductor" simulationFunctionType="DEFAULT" style="Inductor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="0.1"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="0.1"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Inductor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="L"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.1"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="150.0" y="150.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5f267dc3:130e0981282:-7eb3" ordering="1" parent="5f267dc3:130e0981282:-7eb5" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5f267dc3:130e0981282:-7eb4" ordering="1" parent="5f267dc3:130e0981282:-7eb5" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><BasicBlock dependsOnU="1" id="5f267dc3:130e0981282:-7eb2" interfaceFunctionName="Resistor" ordering="3" parent="5f267dc3:130e0981282:-7ebc" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="200"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="200.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="200.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="40.0" y="150.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5f267dc3:130e0981282:-7eb0" ordering="1" parent="5f267dc3:130e0981282:-7eb2" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5f267dc3:130e0981282:-7eb1" ordering="1" parent="5f267dc3:130e0981282:-7eb2" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><BasicBlock angle="90" dependsOnU="1" id="5f267dc3:130e0981282:-7eaf" interfaceFunctionName="CurrentSensor" ordering="4" parent="5f267dc3:130e0981282:-7ebc" simulationFunctionName="CurrentSensor" simulationFunctionType="DEFAULT" style="CurrentSensor;rotation=90;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CurrentSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="i"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="320.0" y="250.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5f267dc3:130e0981282:-7ead" ordering="2" parent="5f267dc3:130e0981282:-7eaf" style="ExplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;rotation=90;spacingBottom=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="26.0" y="40.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5f267dc3:130e0981282:-7eac" ordering="1" parent="5f267dc3:130e0981282:-7eaf" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=90;spacingTop=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5f267dc3:130e0981282:-7eae" ordering="1" parent="5f267dc3:130e0981282:-7eaf" style="ImplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;rotation=90;spacingBottom=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="6.0" y="40.0"/></ImplicitOutputPort><ImplicitLink id="5f267dc3:130e0981282:-7eab" parent="5f267dc3:130e0981282:-7ebc" source="5f267dc3:130e0981282:-7eb1" target="5f267dc3:130e0981282:-7eb3"><mxGeometry as="geometry" x="10.0" y="10.0"><mxPoint as="sourcePoint" x="84.0" y="170.0"/><mxPoint as="targetPoint" x="150.0" y="170.0"/></mxGeometry></ImplicitLink><ImplicitLink id="5f267dc3:130e0981282:-7eaa" parent="5f267dc3:130e0981282:-7ebc" source="5f267dc3:130e0981282:-7eb4" target="5f267dc3:130e0981282:-7e0d"><mxGeometry as="geometry" x="10.0" y="10.0"><mxPoint as="sourcePoint" x="194.0" y="170.0"/><mxPoint as="targetPoint" x="260.0" y="170.0"/></mxGeometry></ImplicitLink><ImplicitLink id="5f267dc3:130e0981282:-7ea9" parent="5f267dc3:130e0981282:-7ebc" source="5f267dc3:130e0981282:-7e0c" target="5f267dc3:130e0981282:-7eac"><mxGeometry as="geometry" x="10.0" y="10.0"><mxPoint as="sourcePoint" x="304.0" y="170.0"/><mxPoint as="targetPoint" x="340.0" y="250.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="330.0" y="170.0"/><mxPoint x="340.0" y="170.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="5f267dc3:130e0981282:-7ea8" ordering="5" parent="5f267dc3:130e0981282:-7ebc" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="186.5" y="346.5"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="5f267dc3:130e0981282:-7ea6" ordering="1" parent="5f267dc3:130e0981282:-7ea8" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="5f267dc3:130e0981282:-7ea5" ordering="2" parent="5f267dc3:130e0981282:-7ea8" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="5f267dc3:130e0981282:-7ea7" ordering="1" parent="5f267dc3:130e0981282:-7ea8" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="5f267dc3:130e0981282:-7ea4" parent="5f267dc3:130e0981282:-7ebc" source="5f267dc3:130e0981282:-7eae" target="5f267dc3:130e0981282:-7ea7"><mxGeometry as="geometry" height="80.0" width="80.0" x="10.0" y="10.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="330.0" y="350.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="5f267dc3:130e0981282:-7ea3" parent="5f267dc3:130e0981282:-7ebc" source="5f267dc3:130e0981282:-7ea6" target="5f267dc3:130e0981282:-7eb0"><mxGeometry as="geometry" height="80.0" width="80.0" x="10.0" y="10.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="20.0" y="350.0"/><mxPoint x="20.0" y="170.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="5f267dc3:130e0981282:-7ea2" parent="5f267dc3:130e0981282:-7ebc" source="5f267dc3:130e0981282:-7ea5" target="5f267dc3:130e0981282:-7eb6"><mxGeometry as="geometry" x="10.0" y="10.0"><mxPoint as="sourcePoint" x="190.0" y="396.0"/><mxPoint as="targetPoint" x="190.0" y="350.0"/></mxGeometry></ImplicitLink><BasicBlock dependsOnU="1" id="5f267dc3:130e0981282:-7ea1" interfaceFunctionName="CSCOPE" ordering="6" parent="5f267dc3:130e0981282:-7ebc" simulationFunctionName="cscope" simulationFunctionType="C_OR_FORTRAN" style="CSCOPE;flip=false;mirror=false"><ScilabString as="exprs" height="10" width="1"><data column="0" line="0" value="1 3 5 7 9 11 13 15"/><data column="0" line="1" value="-1"/><data column="0" line="2" value="[]"/><data column="0" line="3" value="[600;400]"/><data column="0" line="4" value="-1"/><data column="0" line="5" value="1"/><data column="0" line="6" value="0.1"/><data column="0" line="7" value="20"/><data column="0" line="8" value="0"/><data column="0" line="9" value=""/></ScilabString><ScilabDouble as="realParameters" height="4" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="-1.0"/><data column="0" line="2" realPart="1.0"/><data column="0" line="3" realPart="0.1"/></ScilabDouble><ScilabDouble as="integerParameters" height="15" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="1.0"/><data column="0" line="4" realPart="3.0"/><data column="0" line="5" realPart="5.0"/><data column="0" line="6" realPart="7.0"/><data column="0" line="7" realPart="9.0"/><data column="0" line="8" realPart="11.0"/><data column="0" line="9" realPart="13.0"/><data column="0" line="10" realPart="15.0"/><data column="0" line="11" realPart="-1.0"/><data column="0" line="12" realPart="-1.0"/><data column="0" line="13" realPart="600.0"/><data column="0" line="14" realPart="400.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="390.0" y="310.0"/></BasicBlock><ControlPort dataType="UNKNOW_TYPE" id="5f267dc3:130e0981282:-7e91" ordering="1" parent="5f267dc3:130e0981282:-7ea1" style="ControlPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=90;spacingTop=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="5f267dc3:130e0981282:-7e92" ordering="1" parent="5f267dc3:130e0981282:-7ea1" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><BasicBlock blockType="h" id="5f267dc3:130e0981282:-7e9e" interfaceFunctionName="CLOCK_c" ordering="7" parent="5f267dc3:130e0981282:-7ebc" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="99.0"/><data column="1" line="0" realPart="-152.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="5f267dc3:130e0981282:-7e1b"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="5f267dc3:130e0981282:-7e1b"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-62.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.00001"/><data column="0" line="1" value="0.0001"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="1.0E-5"/><data column="0" line="1" realPart="1.0E-4"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0E-4"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="5f267dc3:130e0981282:-7e17"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="5f267dc3:130e0981282:-7e17"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="92.71066000000002"/><data column="1" line="0" realPart="-154.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="8.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="4.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="5f267dc3:130e0981282:-7e12"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="5f267dc3:130e0981282:-7e12"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="66.0"/><data column="0" line="2" realPart="103.37732666666669"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-18.0"/><data column="0" line="1" realPart="-186.0"/><data column="0" line="2" realPart="-158.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="104.71066000000002"/><data column="0" line="1" realPart="129.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-142.0"/><data column="0" line="1" realPart="-128.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="106.04399333333335"/><data column="0" line="1" realPart="111.70999999999998"/><data column="0" line="2" realPart="71.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-158.0"/><data column="0" line="1" realPart="-40.0"/><data column="0" line="2" realPart="-40.0"/><data column="0" line="3" realPart="-66.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="58.0" width="40.0" x="390.0" y="220.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="5f267dc3:130e0981282:-7e8b" ordering="1" parent="5f267dc3:130e0981282:-7e9e" style="CommandPort;align=center;labelPosition=center;verticalLabelPosition=top;rotation=90;spacingBottom=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="58.0"/></CommandPort><ExplicitLink id="5f267dc3:130e0981282:-7e9c" parent="5f267dc3:130e0981282:-7ebc" source="5f267dc3:130e0981282:-7ead" target="5f267dc3:130e0981282:-7e92"><mxGeometry as="geometry" x="10.0" y="10.0"><mxPoint as="sourcePoint" x="350.0" y="294.0"/><mxPoint as="targetPoint" x="390.0" y="330.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="350.0" y="330.0"/></Array></mxGeometry></ExplicitLink><CommandControlLink id="5f267dc3:130e0981282:-7e9b" parent="5f267dc3:130e0981282:-7ebc" source="5f267dc3:130e0981282:-7e8b" target="5f267dc3:130e0981282:-7e91"><mxGeometry as="geometry" x="10.0" y="10.0"><mxPoint as="sourcePoint" x="410.0" y="264.0"/><mxPoint as="targetPoint" x="410.0" y="300.0"/></mxGeometry></CommandControlLink><BasicBlock dependsOnU="1" id="5f267dc3:130e0981282:-7eba" interfaceFunctionName="Capacitor" ordering="8" parent="5f267dc3:130e0981282:-7ebc" simulationFunctionName="Capacitor" simulationFunctionType="DEFAULT" style="Capacitor;flip=false;mirror=false"><ScilabString as="exprs" height="2" width="1"><data column="0" line="0" value="10*10^-6"/><data column="0" line="1" value="267"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="9.999999999999999E-6"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Capacitor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="2"><data column="0" line="0" value="C"/><data column="1" line="0" value="v"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="9.999999999999999E-6"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="267.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="260.0" y="150.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5f267dc3:130e0981282:-7e0d" ordering="1" parent="5f267dc3:130e0981282:-7eba" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5f267dc3:130e0981282:-7e0c" ordering="1" parent="5f267dc3:130e0981282:-7eba" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort></root></mxGraphModel><mxCell as="defaultParent" id="5f267dc3:130e0981282:-7ebc" parent="5f267dc3:130e0981282:-7ebb"/></XcosDiagram>
\ No newline at end of file diff --git a/Working_Examples/154/CH9/EX9.2/ch9_21.jpeg b/Working_Examples/154/CH9/EX9.2/ch9_21.jpeg Binary files differnew file mode 100755 index 0000000..0a1244e --- /dev/null +++ b/Working_Examples/154/CH9/EX9.2/ch9_21.jpeg diff --git a/Working_Examples/154/CH9/EX9.2/chap9_2.jpeg b/Working_Examples/154/CH9/EX9.2/chap9_2.jpeg Binary files differnew file mode 100755 index 0000000..a2fe63b --- /dev/null +++ b/Working_Examples/154/CH9/EX9.2/chap9_2.jpeg diff --git a/Working_Examples/154/CH9/EX9.5/ch9_5.xcos b/Working_Examples/154/CH9/EX9.5/ch9_5.xcos new file mode 100755 index 0000000..3db2578 --- /dev/null +++ b/Working_Examples/154/CH9/EX9.5/ch9_5.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" finalIntegrationTime="1.0" title="ch9_5"><!--Xcos - 1.0 - scilab-5.5.2 - 20160406 2040--><mxGraphModel as="model"><root><mxCell id="5f267dc3:130e0981282:-7d6c"/><mxCell id="5f267dc3:130e0981282:-7d6d" parent="5f267dc3:130e0981282:-7d6c"/><BasicBlock angle="90" dependsOnU="1" id="5f267dc3:130e0981282:-7d64" interfaceFunctionName="Capacitor" ordering="1" parent="5f267dc3:130e0981282:-7d6d" simulationFunctionName="Capacitor" simulationFunctionType="DEFAULT" style="Capacitor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="2" width="1"><data column="0" line="0" value="3.57e-6"/><data column="0" line="1" value="50"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="3.57E-6"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Capacitor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="2"><data column="0" line="0" value="C"/><data column="1" line="0" value="v"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="3.57E-6"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="50.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="220.0" y="210.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5f267dc3:130e0981282:-7c5f" ordering="1" parent="5f267dc3:130e0981282:-7d64" style="ImplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;spacingBottom=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5f267dc3:130e0981282:-7c60" ordering="1" parent="5f267dc3:130e0981282:-7d64" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;spacingTop=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><GroundBlock angle="90" dependsOnU="1" id="5f267dc3:130e0981282:-7d5c" interfaceFunctionName="Ground" ordering="2" parent="5f267dc3:130e0981282:-7d6d" simulationFunctionName="Ground" simulationFunctionType="DEFAULT" style="Ground;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Ground"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="130.0" y="380.0"/></GroundBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5f267dc3:130e0981282:-7d5b" ordering="1" parent="5f267dc3:130e0981282:-7d5c" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=90;spacingTop=5;flip=false;mirror=false"><Orientation as="orientation" value="NORTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock angle="90" dependsOnU="1" id="5f267dc3:130e0981282:-7d53" interfaceFunctionName="Inductor" ordering="3" parent="5f267dc3:130e0981282:-7d6d" simulationFunctionName="Inductor" simulationFunctionType="DEFAULT" style="Inductor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="0.28"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="0.28"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Inductor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="L"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.28"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="130.0" y="210.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5f267dc3:130e0981282:-7c63" ordering="1" parent="5f267dc3:130e0981282:-7d53" style="ImplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;spacingBottom=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5f267dc3:130e0981282:-7c64" ordering="1" parent="5f267dc3:130e0981282:-7d53" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;spacingTop=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock angle="90" dependsOnU="1" id="5f267dc3:130e0981282:-7d49" interfaceFunctionName="Resistor" ordering="4" parent="5f267dc3:130e0981282:-7d6d" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="200"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="200.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="200.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="30.0" y="210.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5f267dc3:130e0981282:-7c67" ordering="1" parent="5f267dc3:130e0981282:-7d49" style="ImplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;spacingBottom=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5f267dc3:130e0981282:-7c68" ordering="1" parent="5f267dc3:130e0981282:-7d49" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;spacingTop=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><VoltageSensorBlock angle="90" dependsOnU="1" id="5f267dc3:130e0981282:-7d30" interfaceFunctionName="VoltageSensor" ordering="5" parent="5f267dc3:130e0981282:-7d6d" simulationFunctionName="VoltageSensor" simulationFunctionType="DEFAULT" style="VoltageSensor;rotation=90;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="VoltageSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="v"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="280.0" y="202.0"/></VoltageSensorBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5f267dc3:130e0981282:-7d2f" ordering="1" parent="5f267dc3:130e0981282:-7d30" style="ImplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;rotation=90;spacingBottom=5;flip=false;mirror=false"><Orientation as="orientation" value="SOUTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="6.0" y="40.0"/></ImplicitOutputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5f267dc3:130e0981282:-7d2e" ordering="2" parent="5f267dc3:130e0981282:-7d30" style="ExplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;rotation=90;spacingBottom=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="26.0" y="40.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5f267dc3:130e0981282:-7d2d" ordering="1" parent="5f267dc3:130e0981282:-7d30" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=90;spacingTop=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><SplitBlock id="5f267dc3:130e0981282:-7d2b" ordering="6" parent="5f267dc3:130e0981282:-7d6d" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="146.5" y="106.5"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="5f267dc3:130e0981282:-7d2a" ordering="1" parent="5f267dc3:130e0981282:-7d2b" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="5f267dc3:130e0981282:-7d29" ordering="1" parent="5f267dc3:130e0981282:-7d2b" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="5f267dc3:130e0981282:-7d28" ordering="2" parent="5f267dc3:130e0981282:-7d2b" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="5f267dc3:130e0981282:-7d27" parent="5f267dc3:130e0981282:-7d6d" source="5f267dc3:130e0981282:-7c68" target="5f267dc3:130e0981282:-7d2a"><mxGeometry as="geometry" height="80.0" width="80.0" x="-50.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="50.0" y="110.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="5f267dc3:130e0981282:-7d2c" parent="5f267dc3:130e0981282:-7d6d" source="5f267dc3:130e0981282:-7d28" target="5f267dc3:130e0981282:-7c64"><mxGeometry as="geometry" x="-50.0"><mxPoint as="sourcePoint" x="150.0" y="206.0"/><mxPoint as="targetPoint" x="150.0" y="110.0"/></mxGeometry></ImplicitLink><SplitBlock id="5f267dc3:130e0981282:-7d24" ordering="7" parent="5f267dc3:130e0981282:-7d6d" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="146.5" y="326.5"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="5f267dc3:130e0981282:-7d23" ordering="1" parent="5f267dc3:130e0981282:-7d24" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="5f267dc3:130e0981282:-7d22" ordering="1" parent="5f267dc3:130e0981282:-7d24" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="5f267dc3:130e0981282:-7d21" ordering="2" parent="5f267dc3:130e0981282:-7d24" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="5f267dc3:130e0981282:-7d20" parent="5f267dc3:130e0981282:-7d6d" source="5f267dc3:130e0981282:-7c67" target="5f267dc3:130e0981282:-7d23"><mxGeometry as="geometry" height="80.0" width="80.0" x="-50.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="50.0" y="330.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="5f267dc3:130e0981282:-7d1d" ordering="8" parent="5f267dc3:130e0981282:-7d6d" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="146.5" y="326.5"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="5f267dc3:130e0981282:-7d1c" ordering="1" parent="5f267dc3:130e0981282:-7d1d" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="5f267dc3:130e0981282:-7d1b" ordering="1" parent="5f267dc3:130e0981282:-7d1d" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="5f267dc3:130e0981282:-7d1a" ordering="2" parent="5f267dc3:130e0981282:-7d1d" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="5f267dc3:130e0981282:-7d19" parent="5f267dc3:130e0981282:-7d6d" source="5f267dc3:130e0981282:-7c63" target="5f267dc3:130e0981282:-7d1c"><mxGeometry as="geometry" height="80.0" width="80.0" x="-50.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="5f267dc3:130e0981282:-7d18" parent="5f267dc3:130e0981282:-7d6d" source="5f267dc3:130e0981282:-7d21" target="5f267dc3:130e0981282:-7d1b"><mxGeometry as="geometry" height="80.0" width="80.0" x="-50.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="5f267dc3:130e0981282:-7d1e" parent="5f267dc3:130e0981282:-7d6d" source="5f267dc3:130e0981282:-7d1a" target="5f267dc3:130e0981282:-7d5b"><mxGeometry as="geometry" x="-50.0"><mxPoint as="sourcePoint" x="150.0" y="376.0"/><mxPoint as="targetPoint" x="150.0" y="330.0"/></mxGeometry></ImplicitLink><SplitBlock id="5f267dc3:130e0981282:-7d16" ordering="9" parent="5f267dc3:130e0981282:-7d6d" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="236.5" y="116.5"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="5f267dc3:130e0981282:-7d15" ordering="1" parent="5f267dc3:130e0981282:-7d16" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="5f267dc3:130e0981282:-7d14" ordering="1" parent="5f267dc3:130e0981282:-7d16" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="5f267dc3:130e0981282:-7d13" ordering="2" parent="5f267dc3:130e0981282:-7d16" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="5f267dc3:130e0981282:-7d12" parent="5f267dc3:130e0981282:-7d6d" source="5f267dc3:130e0981282:-7d29" target="5f267dc3:130e0981282:-7d15"><mxGeometry as="geometry" height="80.0" width="80.0" x="-50.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="240.0" y="110.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="5f267dc3:130e0981282:-7d11" parent="5f267dc3:130e0981282:-7d6d" source="5f267dc3:130e0981282:-7d14" target="5f267dc3:130e0981282:-7c60"><mxGeometry as="geometry" height="80.0" width="80.0" x="-50.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="5f267dc3:130e0981282:-7d17" parent="5f267dc3:130e0981282:-7d6d" source="5f267dc3:130e0981282:-7d13" target="5f267dc3:130e0981282:-7d2d"><mxGeometry as="geometry" x="-50.0"><mxPoint as="sourcePoint" x="300.0" y="198.0"/><mxPoint as="targetPoint" x="240.0" y="120.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="300.0" y="120.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="5f267dc3:130e0981282:-7d0f" ordering="10" parent="5f267dc3:130e0981282:-7d6d" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="236.5" y="306.5"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="5f267dc3:130e0981282:-7d0e" ordering="1" parent="5f267dc3:130e0981282:-7d0f" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="5f267dc3:130e0981282:-7d0d" ordering="1" parent="5f267dc3:130e0981282:-7d0f" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="5f267dc3:130e0981282:-7d0c" ordering="2" parent="5f267dc3:130e0981282:-7d0f" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="5f267dc3:130e0981282:-7d0b" parent="5f267dc3:130e0981282:-7d6d" source="5f267dc3:130e0981282:-7c5f" target="5f267dc3:130e0981282:-7d0e"><mxGeometry as="geometry" height="80.0" width="80.0" x="-50.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="5f267dc3:130e0981282:-7d0a" parent="5f267dc3:130e0981282:-7d6d" source="5f267dc3:130e0981282:-7d22" target="5f267dc3:130e0981282:-7d0d"><mxGeometry as="geometry" height="80.0" width="80.0" x="-50.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="240.0" y="330.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="5f267dc3:130e0981282:-7d10" parent="5f267dc3:130e0981282:-7d6d" source="5f267dc3:130e0981282:-7d2f" target="5f267dc3:130e0981282:-7d0c"><mxGeometry as="geometry" x="-50.0" y="10.0"><mxPoint as="sourcePoint" x="290.0" y="256.0"/><mxPoint as="targetPoint" x="240.0" y="320.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="290.0" y="310.0"/><mxPoint x="290.0" y="310.0"/></Array></mxGeometry></ImplicitLink><BasicBlock dependsOnU="1" id="5f267dc3:130e0981282:-7d02" interfaceFunctionName="CSCOPE" ordering="11" parent="5f267dc3:130e0981282:-7d6d" simulationFunctionName="cscope" simulationFunctionType="C_OR_FORTRAN" style="CSCOPE;flip=false;mirror=false"><ScilabString as="exprs" height="10" width="1"><data column="0" line="0" value="1 3 5 7 9 11 13 15"/><data column="0" line="1" value="-1"/><data column="0" line="2" value="[]"/><data column="0" line="3" value="[600;400]"/><data column="0" line="4" value="-160"/><data column="0" line="5" value="160"/><data column="0" line="6" value="0.1"/><data column="0" line="7" value="20"/><data column="0" line="8" value="0"/><data column="0" line="9" value=""/></ScilabString><ScilabDouble as="realParameters" height="4" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="-160.0"/><data column="0" line="2" realPart="160.0"/><data column="0" line="3" realPart="0.1"/></ScilabDouble><ScilabDouble as="integerParameters" height="15" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="1.0"/><data column="0" line="4" realPart="3.0"/><data column="0" line="5" realPart="5.0"/><data column="0" line="6" realPart="7.0"/><data column="0" line="7" realPart="9.0"/><data column="0" line="8" realPart="11.0"/><data column="0" line="9" realPart="13.0"/><data column="0" line="10" realPart="15.0"/><data column="0" line="11" realPart="-1.0"/><data column="0" line="12" realPart="-1.0"/><data column="0" line="13" realPart="600.0"/><data column="0" line="14" realPart="400.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="360.0" y="240.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="5f267dc3:130e0981282:-7c6c" ordering="1" parent="5f267dc3:130e0981282:-7d02" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ControlPort dataType="UNKNOW_TYPE" id="5f267dc3:130e0981282:-7c6b" ordering="1" parent="5f267dc3:130e0981282:-7d02" style="ControlPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=90;spacingTop=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><BasicBlock blockType="h" id="5f267dc3:130e0981282:-7cfa" interfaceFunctionName="CLOCK_c" ordering="12" parent="5f267dc3:130e0981282:-7d6d" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="139.0"/><data column="1" line="0" realPart="-170.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="69478aa4:1665d477b3f:-758b"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="69478aa4:1665d477b3f:-758b"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.0001"/><data column="0" line="1" value="0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="1.0E-4"/><data column="0" line="1" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="69478aa4:1665d477b3f:-7589"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="69478aa4:1665d477b3f:-7589"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="156.3773266666667"/><data column="1" line="0" realPart="-202.33333333333331"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="7.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="5.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="69478aa4:1665d477b3f:-7586"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="69478aa4:1665d477b3f:-7586"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="140.0"/><data column="0" line="2" realPart="166.8773266666667"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-44.0"/><data column="0" line="1" realPart="-220.0"/><data column="0" line="2" realPart="-191.33333333333331"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="165.71066000000005"/><data column="0" line="1" realPart="169.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-206.33333333333331"/><data column="0" line="1" realPart="-146.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="168.04399333333336"/><data column="0" line="1" realPart="180.70999999999998"/><data column="0" line="2" realPart="140.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-206.33333333333331"/><data column="0" line="1" realPart="-90.0"/><data column="0" line="2" realPart="-90.0"/><data column="0" line="3" realPart="4.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="46.0" width="40.0" x="360.0" y="150.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="5f267dc3:130e0981282:-7c73" ordering="1" parent="5f267dc3:130e0981282:-7cfa" style="CommandPort;align=center;labelPosition=center;verticalLabelPosition=top;rotation=90;spacingBottom=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="46.0"/></CommandPort><ExplicitLink id="5f267dc3:130e0981282:-7cef" parent="5f267dc3:130e0981282:-7d6d" source="5f267dc3:130e0981282:-7d2e" target="5f267dc3:130e0981282:-7c6c"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="310.0" y="246.0"/><mxPoint as="targetPoint" x="360.0" y="260.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="310.0" y="260.0"/></Array></mxGeometry></ExplicitLink><CommandControlLink id="5f267dc3:130e0981282:-7cee" parent="5f267dc3:130e0981282:-7d6d" source="5f267dc3:130e0981282:-7c73" target="5f267dc3:130e0981282:-7c6b"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="380.0" y="194.0"/><mxPoint as="targetPoint" x="380.0" y="240.0"/></mxGeometry></CommandControlLink></root></mxGraphModel><mxCell as="defaultParent" id="5f267dc3:130e0981282:-7d6d" parent="5f267dc3:130e0981282:-7d6c"/></XcosDiagram>
\ No newline at end of file diff --git a/Working_Examples/154/CH9/EX9.5/ch9_51.jpeg b/Working_Examples/154/CH9/EX9.5/ch9_51.jpeg Binary files differnew file mode 100755 index 0000000..1f2fdb9 --- /dev/null +++ b/Working_Examples/154/CH9/EX9.5/ch9_51.jpeg diff --git a/Working_Examples/154/CH9/EX9.5/chap9_5.jpeg b/Working_Examples/154/CH9/EX9.5/chap9_5.jpeg Binary files differnew file mode 100755 index 0000000..6ab2a36 --- /dev/null +++ b/Working_Examples/154/CH9/EX9.5/chap9_5.jpeg diff --git a/Working_Examples/154/CH9/EX9.6/ch9_6.sce b/Working_Examples/154/CH9/EX9.6/ch9_6.sce new file mode 100755 index 0000000..a063207 --- /dev/null +++ b/Working_Examples/154/CH9/EX9.6/ch9_6.sce @@ -0,0 +1,32 @@ +clc
+disp("Example 9.6")
+printf("\n")
+
+printf("Given")
+disp("Resistance is 10ohm and inductance is 2H")
+disp("Applied voltage is 10*exp(-2*t)*cos(10*t+30)")
+s=%s;
+//For a RL circuit
+//Applying KVL equation
+//v=i*R+L*d/dt(i) (1)
+//As v=10(30 deg) (2)
+//Equating (1) and (2)
+// Let i=I*exp(s*t) (3)
+// 10(30 deg)*exp(s*t)=10*I*exp(s*t)+2*s*I*exp(s*t)")
+//Solving for I
+disp("I=10(30 deg)/10+2*s")
+s=-2+%i*10
+a=10+2*s
+x=10*cos((30*%pi)/180);
+y=10*sin((30*%pi)/180);
+z=complex(x,y)
+I=z/a
+b=real(I);
+c=imag(I);
+magn=sqrt(b^2+c^2)
+ph=(atan(c/b)*180)/%pi
+//From (3)
+printf("\ni=%0.2f*exp(-2*t)*cos(10t%3.1f deg) (A)\n",magn,ph);
+
+
+
diff --git a/Working_Examples/154/CH9/EX9.7/ch9_7.sce b/Working_Examples/154/CH9/EX9.7/ch9_7.sce new file mode 100755 index 0000000..fe7c0cf --- /dev/null +++ b/Working_Examples/154/CH9/EX9.7/ch9_7.sce @@ -0,0 +1,31 @@ +clc
+disp("Example 9.7")
+printf("\n")
+
+printf("Given")
+disp("Resistance is 10ohm and Capacitance is 0.2F")
+disp("Applied voltage is 10*exp(-2*t)*cos(10*t+30)")
+s=%s;
+//For a RC circuit
+//Applying KVL equation
+//v=i*R+(1/C)*integrate(i*dt) (1)
+//As v=10(30 deg) (2)
+//Equating (1) and (2)
+// Let i=I*exp(s*t) (3)
+// 10(30 deg)*exp(s*t)=10*I*exp(s*t)+(5/s)*I*exp(s*t)")
+//Solving for I
+disp("I=10(30 deg)/10+(5/s)")
+s=-2+%i*10
+a=10+(5/s)
+x=10*cos((30*%pi)/180);
+y=10*sin((30*%pi)/180);
+z=complex(x,y)
+I=z/a
+b=real(I);
+c=imag(I);
+magn=sqrt(b^2+c^2)
+ph=(atan(c/b)*180)/%pi
+//From (3)
+printf("\ni=%0.2f*exp(-2*t)*cos(10t+%3.1f deg) (A)\n",magn,ph);
+
+
diff --git a/Working_Examples/154/CH9/EX9.8/ch9_8.sce b/Working_Examples/154/CH9/EX9.8/ch9_8.sce new file mode 100755 index 0000000..d9c67e9 --- /dev/null +++ b/Working_Examples/154/CH9/EX9.8/ch9_8.sce @@ -0,0 +1,18 @@ +clc
+disp("Example 9.8")
+printf("\n")
+
+s=%s ;
+
+//From figure 9.13
+disp("Z(s)=(2.5+((5*s/3)*(20/s))/(5*s/3+20/s))")
+//On solving
+z1=poly([12 8 1],'s','coeff')
+z2=poly([12 0 1],'s','coeff')
+Z=2.5*(z1/z2)
+disp(Z,"Z(s)")
+//H(s)=I(s)/Z(s)
+//Let I(s)=1 the H(s)=1/Z(s)
+H=(1/2.5)*(z2/z1)
+disp(H,"H(s)")
+
diff --git a/Working_Examples/154/CH9/EX9.9/ch9_9.sce b/Working_Examples/154/CH9/EX9.9/ch9_9.sce new file mode 100755 index 0000000..668b268 --- /dev/null +++ b/Working_Examples/154/CH9/EX9.9/ch9_9.sce @@ -0,0 +1,11 @@ +clc
+disp("Example 9.9")
+printf("\n")
+
+s=%s ;
+H=syslin ( 'c',(0.4*(s^2+12))/((s+2)*(s+6) ) ) ;
+evans (H,1)
+//If s=1Np/s
+H1=0.4*(1+12)/((1+2)*(1+6))
+printf("H(1)=%0.3f\n",H1)
+
\ No newline at end of file diff --git a/Working_Examples/154/DEPENDENCIES/ch10_4.sce b/Working_Examples/154/DEPENDENCIES/ch10_4.sce new file mode 100755 index 0000000..bd68900 --- /dev/null +++ b/Working_Examples/154/DEPENDENCIES/ch10_4.sce @@ -0,0 +1,27 @@ +clc
+disp("Problem 10.4")
+printf("\n")
+
+//For V1
+Ro1=25
+Theta1=143.13
+//For V1
+Ro2=11.2
+Theta2=26.57
+//We need to find V1/V2
+//Let V=V1/V2
+Vmag=(Ro1/Ro2)
+Vph=Theta1-Theta2
+x=Vmag*cos((Vph*%pi)/180);
+y=Vmag*sin((Vph*%pi)/180);
+z=complex(x,y)
+//Let V1+V2=V12
+x1=Ro1*cos((Theta1*%pi)/180);
+y1=Ro1*sin((Theta1*%pi)/180);
+z1=complex(x1,y1)
+x2=Ro2*cos((Theta2*%pi)/180);
+y2=Ro2*sin((Theta2*%pi)/180);
+z2=complex(x2,y2)
+V12=z1+z2
+[R,Theta]=polar(V12)
+printf("V1/V2=%0.2f+i*%3.2f \nV1+V2=%3.2f(%3.2f deg)",x,y,R,(Theta*180)/%pi)
\ No newline at end of file diff --git a/Working_Examples/154/DEPENDENCIES/ch10_5.sce b/Working_Examples/154/DEPENDENCIES/ch10_5.sce new file mode 100755 index 0000000..87f47e8 --- /dev/null +++ b/Working_Examples/154/DEPENDENCIES/ch10_5.sce @@ -0,0 +1,28 @@ +clc
+disp("Problem 10.5")
+printf("\n")
+
+printf("Given")
+disp("Voltage is 100(45 deg)")
+disp("Current is 5(15 deg)")
+//For V
+Ro1=100
+Theta1=45
+//For I
+Ro2=5
+Theta2=15
+//We need to find V/I=Z
+
+Zmag=(Ro1/Ro2)
+Zph=Theta1-Theta2
+x=Zmag*cos((Zph*%pi)/180);
+y=Zmag*sin((Zph*%pi)/180);
+z=complex(x,y)
+//Let Y=1/Z
+Ymag=(Ro2/Ro1)
+Yph=Theta2-Theta1
+x1=Ymag*cos((Yph*%pi)/180);
+y1=Ymag*sin((Yph*%pi)/180);
+z1=complex(x1,y1)
+
+printf("R=%3.2fohm XL=%3.2fH \nG=%0.3fS BL=%0.3fS",x,y,x1,abs(y1));
\ No newline at end of file diff --git a/Working_Examples/154/DEPENDENCIES/ch10_7.sce b/Working_Examples/154/DEPENDENCIES/ch10_7.sce new file mode 100755 index 0000000..13299d1 --- /dev/null +++ b/Working_Examples/154/DEPENDENCIES/ch10_7.sce @@ -0,0 +1,45 @@ +clc
+disp("Problem 10.7")
+printf("\n")
+
+printf("Voltage v1=5*cos(w1*t)")
+printf("Voltage v2=10*cos(w2*t+60)")
+//The circuit is modeled as
+disp("Resistance is 10ohm and inductance is 5mH")
+R=10;L=5*10^-3;
+disp("a)")
+w1=2000;w2=2000;
+//Let Z be the impedance of the coil
+Z1=R+%i*L*w1
+Z2=R+%i*L*w2
+//Let V be phasor voltage between the terminals
+Vmag=10;
+Vph=60;
+x=Vmag*cos((Vph*%pi)/180);
+y=Vmag*sin((Vph*%pi)/180);
+z=complex(x,y)
+v=5-z;
+//Let I be the current
+I=v/Z1
+[R,Theta]=polar(I)
+printf("i=%0.2f*cos(%dt%d deg)",R,w1,(Theta*180)/%pi);
+
+disp("b)")
+R=10;L=5*10^-3;
+w1=2000;w2=4000;
+//Let Z be the impedance of the coil
+Z1=R+%i*L*w1
+Z2=R+%i*L*w2
+V1=5;
+//By applying superposition i=i1-i2
+I1=V1/Z1
+[R,Theta]=polar(I1)
+printf("i1=%0.2f*cos(%dt%d deg)\n",R,w1,(Theta*180)/%pi);
+V2mag=10;V2ph=60;
+I2=z/Z2
+[R1,Theta1]=polar(I2)
+printf("i2=%0.2f*cos(%dt%3.2f deg)\n",R1,w2,(Theta1*180)/%pi);
+//i=i1-i2
+printf("i=%0.2f*cos(%dt%d deg)-%0.2f*cos(%dt%3.2f deg)\n",R,w1,(Theta*180)/%pi,R1,w2,(Theta1*180)/%pi)
+
+
diff --git a/Working_Examples/154/DEPENDENCIES/ch11_1.sce b/Working_Examples/154/DEPENDENCIES/ch11_1.sce new file mode 100755 index 0000000..cb812c5 --- /dev/null +++ b/Working_Examples/154/DEPENDENCIES/ch11_1.sce @@ -0,0 +1,20 @@ +clc
+disp("Problem 11.1")
+printf("\n")
+
+printf("Given")
+disp("Resistance =1000ohm")
+t=0:0.5:1;
+i=1;i1=-1;
+figure
+a=gca()
+plot(t,i,t+1,i1,t+2,i,t+3,i1)
+xtitle("i vs t",'t in ms','i in mA')
+i=1*10^-3;R=1000;
+//p=i^2*R
+p=i^2*R;
+figure
+a=gca()
+plot(t,p)
+xtitle("p vs t",'t in ms','p in mW')
+
diff --git a/Working_Examples/154/DEPENDENCIES/ch11_10.sce b/Working_Examples/154/DEPENDENCIES/ch11_10.sce new file mode 100755 index 0000000..0fd8a45 --- /dev/null +++ b/Working_Examples/154/DEPENDENCIES/ch11_10.sce @@ -0,0 +1,56 @@ +clc
+disp("Problem 11.10")
+printf("\n")
+
+printf("Given")
+disp("Veff=10V v=10*sqrt(2)*cos(w*t)");
+Veff=10;vmag=10*1.414
+
+disp("a)")
+Z1=1+%i
+[R,Theta]=polar(Z1)
+printf("i1=%d*cos(w*t-%d)\n",(vmag/R),Theta)
+I1eff=(vmag/R)/1.414
+//p1(t)=100*sqrt(2)*cos(wt)*cos(wt-45)
+//On solving
+disp("p1(t)=50+50*sqrt(2)*cos(2*w*t-45) W")
+P1=Veff*I1eff*cos(Theta)
+Q1=Veff*I1eff*sin(Theta)
+S1=P1+%i*Q1
+S1mag=sqrt(P1^2+Q1^2)
+pf1=P1/S1mag
+printf("P1=%dW\nQ1=%dvar\npf1=%0.4f(lag)\n",P1,Q1,pf1)
+
+
+disp("b)")
+Z2=1-%i
+[R,Theta]=polar(Z2)
+printf("i2=%d*cos(w*t%d)\n",(vmag/R),Theta)
+I2eff=(vmag/R)/1.414
+//p2(t)=100*sqrt(2)*cos(wt)*cos(wt+45)
+//On solving
+disp("p2(t)=50+50*sqrt(2)*cos(2*w*t+45) W")
+P2=Veff*I2eff*cos(Theta)
+Q2=Veff*I2eff*sin(Theta)
+S2=P2+%i*Q2
+S2mag=sqrt(P2^2+Q2^2)
+pf2=P2/S2mag
+printf("P2=%dW\nQ2=%dvar\npf2=%0.4f(lag)\n",P2,Q2,pf2)
+
+disp("c)")
+Zmag=(Z1*Z2)/(Z1+Z2)
+printf("i=%d*cos(w*t)\n",(vmag/Zmag))
+Ieff=(vmag/Zmag)/1.414
+//p(t)=100*sqrt(2)*sqrt(2)*cos(wt)*cos(wt)
+//On solving
+disp("p2(t)=200*cos(w*t)^2 W")
+P=Veff*Ieff
+Q=0
+S=P+%i*Q
+Smag=sqrt(P^2+Q^2)
+pf=P/Smag
+printf("P=%dW\nQ=%dvar\npf=%0.4f\n",P,Q,pf)
+
+
+
+
diff --git a/Working_Examples/154/DEPENDENCIES/ch11_11.sce b/Working_Examples/154/DEPENDENCIES/ch11_11.sce new file mode 100755 index 0000000..143b3cf --- /dev/null +++ b/Working_Examples/154/DEPENDENCIES/ch11_11.sce @@ -0,0 +1,27 @@ +clc
+disp("Problem 11.11")
+printf("\n")
+
+printf("Given")
+disp("v=42.5*cos(1000*t+30 deg)V Z=3+i4 ohm")
+Vmag=42.5;
+Z=3+%i*4;
+R=sqrt(3^2+4^2)
+Theta=atan(4/3)*(180/%pi)
+Veffm=Vmag/sqrt(2)
+Veffph=30
+Ieffm=Veffm/R
+Ieffph=30-Theta
+
+Smag=Veffm*Ieffm
+Sph=Veffph-Ieffph
+x=Smag*cos((Sph*%pi)/180)
+y=Smag*sin((Sph*%pi)/180)
+z=complex(x,y)
+pf=cos((Theta*%pi)/180);
+
+printf("Real Power is %fW\n",x)
+printf("Reactive Power is %fvar(inductive)\n",y)
+printf("Complex Power is %fVA\n",Smag)
+printf("Power factor is %3.1f(lag)\n",pf)
+
diff --git a/Working_Examples/154/DEPENDENCIES/ch11_12.sce b/Working_Examples/154/DEPENDENCIES/ch11_12.sce new file mode 100755 index 0000000..346fdf4 --- /dev/null +++ b/Working_Examples/154/DEPENDENCIES/ch11_12.sce @@ -0,0 +1,29 @@ +clc
+disp("Problem 11.12")
+printf("\n")
+
+printf("Given")
+disp("pf1=1 ; pf2=0.5 ; pf3=0.5")
+disp("P1=10kW;P2=20kW;P3=15kW")
+disp("Power supply is 6kV")
+P1=10000;P2=20000;P3=15000;
+Veff=6000;
+pf1=1 //implifies that theta1=0
+t1=0
+Q1=P1*t1
+
+pf2=0.5 //implifies that theta1=60
+t2=1.73;
+Q2=P2*t2
+
+pf3=1 //implifies that theta1=53.13
+t3=1.33;
+Q3=P3*t3
+
+PT=P1+P2+P3
+QT=Q1+Q2+Q3
+ST=sqrt(PT^2+QT^2)
+pfT=PT/ST
+Ieff=ST/Veff
+Ieffph=acos(pfT)*(180/%pi)
+printf("PT=%dW\nQT=%dvar\nST=%dVA\npf=%0.2f(lag)\nIeff=%3.1f(%3.2f deg)\n",PT,QT,ST,pfT,Ieff,Ieffph)
diff --git a/Working_Examples/154/DEPENDENCIES/ch11_13.sce b/Working_Examples/154/DEPENDENCIES/ch11_13.sce new file mode 100755 index 0000000..63dcd76 --- /dev/null +++ b/Working_Examples/154/DEPENDENCIES/ch11_13.sce @@ -0,0 +1,20 @@ +clc
+disp("Problem 11.13")
+printf("\n")
+
+printf("Given")
+disp("Power factor is 0.95(lag)")
+vmag=240;Zmag=3.5;Zph=25;
+I1mag=vmag/Zmag;iph=0-Zph;
+//Smag=Veff*Ieff
+Smag=(vmag/sqrt(2))*(I1mag/sqrt(2))
+Sph=0+abs(iph)
+x=Smag*cos((Sph*%pi)/180)
+y=Smag*sin((Sph*%pi)/180)
+z=complex(x,y)
+pf=0.95
+theta=acos(0.95)*(180/%pi)
+//From fig 11.11
+//Solving for Qc
+Qc=y-(tan((theta*%pi)/180)*x)
+printf("\n Qc=%dvar(Capacitive )\n",Qc)
diff --git a/Working_Examples/154/DEPENDENCIES/ch11_14.sce b/Working_Examples/154/DEPENDENCIES/ch11_14.sce new file mode 100755 index 0000000..8b28778 --- /dev/null +++ b/Working_Examples/154/DEPENDENCIES/ch11_14.sce @@ -0,0 +1,25 @@ +clc
+disp("Problem 11.14")
+printf("\n")
+
+printf("Given")
+disp("Power =1000kW ; pf=0.5(lag)")
+disp("Voltage source is 5kV")
+disp("Improved power factor is 0.8")
+
+//Before improvement
+P=1000*10^3;
+pf=0.5;V=5*10^3;
+S=(P/pf)*10^-3
+I=S/V
+
+//After improvement
+P=1000*10^3;
+pf=0.8;V=5*10^3;
+S=(P/pf)*10^-3
+I1=S/V
+
+disp("Current is reduced by ")
+red=((I-I1)/I)*100
+printf("Percentage reduction in current is %3.1fpercent\n",red)
+
diff --git a/Working_Examples/154/DEPENDENCIES/ch11_16.sce b/Working_Examples/154/DEPENDENCIES/ch11_16.sce new file mode 100755 index 0000000..1389705 --- /dev/null +++ b/Working_Examples/154/DEPENDENCIES/ch11_16.sce @@ -0,0 +1,46 @@ +clc
+disp("Problem 11.16")
+printf("\n")
+
+printf("Given")
+disp("Vg=100V(rms)")
+disp("Zg=1+i Z1=2")
+Vg=100;
+
+disp("a)")
+Zg=1+%i;
+Z1=2
+Z=Z1+Zg
+Zmag=sqrt(real(Z)^2+imag(Z)^2)
+I=Vg/Zmag
+PZ1=real(Z1)*(I^2)
+Pg=real(Zg)*(I^2)
+PT=PZ1+Pg
+printf("PZ=%dW\n Pg=%dW\n PT=%dW\n",PZ1,Pg,PT);
+
+disp("b)")
+//If Z2=a+i*b
+//Zg*=1-i
+//Given that
+//(Z1*Z2)/(Z1+Z2)=1-i
+//As Z1=2 and solving for Z2
+ disp(-%i,"Z2=")
+
+disp("c)")
+//If Z2 is taken the value as calculated in b) then Z=1-i
+Zg=1+%i;
+Z1=2;
+Z=1-%i;
+Zt=Z+Zg
+Zmag=sqrt(real(Zt)^2+imag(Zt)^2)
+I=Vg/Zmag
+PZ=real(Z)*(I^2)
+Pg=real(Zg)*(I^2)
+//To calculate PZ1 and PZ2 we need to first calculate IZ1 nad IZ2
+VZ=I*(1-%i)
+IZ1=VZ/Z1
+IZ1mag=sqrt(real(IZ1)^2+imag(IZ1)^2)
+PZ1=real(Z1)*(IZ1mag^2)
+PZ2=PZ-PZ1
+PT=PZ1+PZ2+Pg
+printf("PZ=%dW\n Pg=%dW\n PT=%dW\n",PZ,Pg,PT);
diff --git a/Working_Examples/154/DEPENDENCIES/ch11_17.sce b/Working_Examples/154/DEPENDENCIES/ch11_17.sce new file mode 100755 index 0000000..3fdef1c --- /dev/null +++ b/Working_Examples/154/DEPENDENCIES/ch11_17.sce @@ -0,0 +1,80 @@ +clc
+disp("Problem 11.17")
+printf("\n")
+
+printf("Given")
+disp("v1=5*cos(w1*t) v2=10*cos(w2*t+60)")
+//The circuit is modeled as
+disp("Resistance is 10ohm and inductance is 5mH")
+R=10;L=5*10^-3;
+//Let V be phasor voltage between the terminals
+Vmag=10;
+Vph=60;
+x=Vmag*cos((Vph*%pi)/180);
+y=Vmag*sin((Vph*%pi)/180);
+z=complex(x,y)
+
+disp("a)")
+w1=2000;w2=4000;
+//Let Z be the impedance of the coil
+Z1=R+%i*L*w1
+Z2=R+%i*L*w2
+V1=5;
+//By applying superposition i=i1-i2
+I1=V1/Z1
+[R1,Theta]=polar(I1)
+printf("i1=%0.2f*cos(%dt%d deg)\n",R1,w1,(Theta*180)/%pi);
+P1=(R*R1^2)/2
+
+V2mag=10;V2ph=60;
+I2=z/Z2
+[R2,Theta1]=polar(I2)
+printf("i2=%0.2f*cos(%dt%3.2f deg)\n",R2,w2,(Theta1*180)/%pi);
+P2=(R*R2^2)/2
+
+//i=i1-i2
+printf("i=%0.2f*cos(%dt%d deg)-%0.2f*cos(%dt%3.2f deg)\n",R1,w1,(Theta*180)/%pi,R2,w2,(Theta1*180)/%pi)
+
+printf("P1=%0.3fW\nP2=%3.1fW\nTotal power(P)=%3.3fW\n",P1,P2,(P1+P2))
+
+disp("b)")
+//From problem 10.7
+imagn=0.61
+P=(R*imagn^2)/2
+printf("Power dissipated in the coil=%3.3fW\n",P)
+
+disp("c)")
+w1=2000;w2=1414;
+//Let Z be the impedance of the coil
+Z1=R+%i*L*w1
+Z2=R+%i*L*w2
+V1=5;
+//By applying superposition i=i1-i2
+I1=V1/Z1
+[R1,Theta]=polar(I1)
+printf("i1=%0.2f*cos(%dt%d deg)\n",R1,w1,(Theta*180)/%pi);
+P1=(R*R1^2)/2
+
+V2mag=10;V2ph=60;
+x1=V2mag*cos((V2ph*%pi)/180);
+y1=V2mag*sin((V2ph*%pi)/180);
+z1=complex(x1,y1)
+I3=z1/Z2
+[R3,Theta3]=polar(I3)
+printf("i2=%0.2f*cos(%dt+%3.2f deg)\n",R3,w2,(Theta3*180)/%pi);
+P3=(R*R3^2)/2
+
+//i=i1-i2
+printf("i=%0.2f*cos(%dt%d deg)-%0.2f*cos(%dt+%3.2f deg)\n",R1,w1,(Theta*180)/%pi,R3,w2,(Theta3*180)/%pi)
+
+printf("P1=%0.3fW\nP2=%3.1fW\nTotal power(P)=%3.3fW\n",P1,P3,(P1+P3))
+
+
+
+
+
+
+
+
+
+
diff --git a/Working_Examples/154/DEPENDENCIES/ch11_2.sce b/Working_Examples/154/DEPENDENCIES/ch11_2.sce new file mode 100755 index 0000000..eeada8f --- /dev/null +++ b/Working_Examples/154/DEPENDENCIES/ch11_2.sce @@ -0,0 +1,37 @@ +clc
+disp("Problem 11.2")
+printf("\n")
+
+t=0:0.5:1;
+i=1;i1=-1;
+figure
+a=gca()
+plot(t,i,t+1,i1)
+xtitle("i vs t",'t in ms','i in mA')
+//Voltage across capacitor vC=(1/C)*integrate(i*dt)
+//On integration
+t=0:0.0005:0.001
+v=2000*t
+v1=2-v;
+figure
+a=gca()
+plot(t,v,t+0.001,v1,t+0.002,v,t+0.003,v1)
+xtitle("v vs t",'t in ms','v in V')
+
+//Power is p=v*i
+t=0:.0005:.001
+p=2000*t
+p1=p-2;
+figure
+a=gca()
+plot(t,p,t+0.001,p1,t+0.002,p,t+0.003,p1)
+xtitle("p vs t",'t in ms','p in W')
+
+//Work is (C*v^2)/2
+t=0:.0005:.001
+w=t^2
+w1=t^2+1*10^-6-(2*10^-3*t);
+figure
+a=gca()
+plot(t,w,t+0.001,w1,t+0.002,w,t+0.003,w1)
+xtitle("w vs t",'t in ms','w in J')
diff --git a/Working_Examples/154/DEPENDENCIES/ch11_4.sce b/Working_Examples/154/DEPENDENCIES/ch11_4.sce new file mode 100755 index 0000000..76ad594 --- /dev/null +++ b/Working_Examples/154/DEPENDENCIES/ch11_4.sce @@ -0,0 +1,14 @@ +clc
+disp("Problem 11.4")
+printf("\n")
+
+printf("Given")
+disp("Veff=110V Z=10+i8 ohm")
+Veff=110;
+Z=10+%i*8
+Zmag=sqrt(10^2+8^2)
+Zph=(atan(8/10)*180)/%pi
+P=(Veff^2*R)/(Zmag^2)
+pf=cos((Zph*%pi)/180)
+
+disp(pf,"Power factor is")
\ No newline at end of file diff --git a/Working_Examples/154/DEPENDENCIES/ch11_5.sce b/Working_Examples/154/DEPENDENCIES/ch11_5.sce new file mode 100755 index 0000000..220644b --- /dev/null +++ b/Working_Examples/154/DEPENDENCIES/ch11_5.sce @@ -0,0 +1,14 @@ +clc
+disp("Problem 11.5")
+printf("\n")
+
+printf("Given")
+disp("Veff=110V Ieff=20(-50 deg)")
+Imagn=20;Iph =-50;
+Veff=110;
+
+P=Veff*Imagn*cos((abs(Iph)*%pi)/180)
+Q=Veff*Imagn*sin((abs(Iph)*%pi)/180)
+printf("Average power is %3.1fW\n",P)
+printf("Reactive power is %3.1fvar\n",Q)
+
diff --git a/Working_Examples/154/DEPENDENCIES/ch12_2.sce b/Working_Examples/154/DEPENDENCIES/ch12_2.sce new file mode 100755 index 0000000..a5eb3dc --- /dev/null +++ b/Working_Examples/154/DEPENDENCIES/ch12_2.sce @@ -0,0 +1,60 @@ +clc
+disp("Example 12.2")
+printf("\n")
+
+printf("Given")
+disp("The system ABC is DELTA connected")
+disp("Effective line voltage is 120V")
+disp("The three impedances are 5(45 deg)")
+Zmag=5;Zph=45;
+//Let maximum line voltage is Vmax
+Vmax=120*sqrt(2)
+//From fig 12.7(a)
+//VAB=Vmax(120 deg)
+//VBC=Vmax(0 deg)
+//VCA=Vmax(240 deg)
+
+//From figure 12.8
+IABmag=Vmax/Zmag
+IABph=120-Zph
+printf("IAB=%3.2f(%d deg)\n",IABmag,IABph);
+
+IBCmag=Vmax/Zmag
+IBCph=0-Zph
+printf("IBC=%3.2f(%d deg)\n",IBCmag,IBCph);
+
+ICAmag=Vmax/Zmag
+ICAph=240-Zph
+printf("ICA=%3.2f(%d deg)\n",ICAmag,ICAph);
+
+//Applying KCL equation
+//IA=IAB+IAC
+//IB=IBC+IBA
+//IC=ICA+ICB
+
+x=IABmag*cos((IABph*%pi)/180);
+y=IABmag*sin((IABph*%pi)/180);
+z=complex(x,y)
+
+x1=ICAmag*cos((ICAph*%pi)/180);
+y1=ICAmag*sin((ICAph*%pi)/180);
+z1=complex(x1,y1)
+
+x2=IBCmag*cos((IBCph*%pi)/180);
+y2=IBCmag*sin((IBCph*%pi)/180);
+z2=complex(x2,y2)
+
+IA=z-z1;
+[RA,ThetaA]=polar(IA)
+
+IB=z2-z;
+[RB,ThetaB]=polar(IB)
+
+IC=z1-z2
+[RC,ThetaC]=polar(IC)
+
+disp("Therefore")
+
+printf("\nIA=%3.2f(%d deg)A\n",RA,ThetaA*(180/%pi));
+printf("\nIB=%3.2f(%d deg)A\n",RB,ThetaB*(180/%pi));
+printf("\nIC=%3.2f(%d deg)A\n",RC,ThetaC*(180/%pi));
\ No newline at end of file diff --git a/Working_Examples/154/DEPENDENCIES/ch12_3.sce b/Working_Examples/154/DEPENDENCIES/ch12_3.sce new file mode 100755 index 0000000..1bb93b8 --- /dev/null +++ b/Working_Examples/154/DEPENDENCIES/ch12_3.sce @@ -0,0 +1,31 @@ +clc
+disp("Example 12.3")
+printf("\n")
+
+printf("Given")
+disp("The system CBA is WYE connected")
+disp("Effective line voltage is 120V")
+disp("The three impedances are 20(-30 deg)")
+Zmag=20;Zph=-30;
+//Let maximum line voltage is Vmax
+Vmax=120*sqrt(2)
+//Let the line to neutral voltage magnitude be Vn
+Vn=Vmax/sqrt(3)
+//From fig 12.7(b)
+//VAN=Vn(-90 deg)
+//VBN=Vn(30 deg)
+//VCN=Vn(150 deg)
+
+//From figure 12.10
+IAmag=Vn/Zmag
+IAph=-90-Zph
+printf("\nIA=%3.2f(%d deg)A\n",IAmag,IAph);
+
+IBmag=Vn/Zmag
+IBph=30-Zph
+printf("\nIB=%3.2f(%d deg)A\n",IBmag,IBph);
+
+ICmag=Vn/Zmag
+ICph=150-Zph
+printf("\nIC=%3.2f(%d deg)A\n",ICmag,ICph);
+
diff --git a/Working_Examples/154/DEPENDENCIES/ch12_4.sce b/Working_Examples/154/DEPENDENCIES/ch12_4.sce new file mode 100755 index 0000000..4bc71e2 --- /dev/null +++ b/Working_Examples/154/DEPENDENCIES/ch12_4.sce @@ -0,0 +1,27 @@ +clc
+disp("Example 12.4")
+printf("\n")
+
+disp("Continued from Example 12.3")
+Vmax=120*sqrt(2)
+Zmag=20;Zph=-30;
+//Let the line to neutral voltage magnitude be VLN
+VLN=Vmax/sqrt(3)
+
+//From figure 12.14
+ILmag=VLN/Zmag
+ILph=0-Zph
+printf("\nIL=%3.2f(%d deg)\n",ILmag,ILph);
+
+//From fig 12.7(b)
+//VAN=Vn(-90 deg)
+//VBN=Vn(30 deg)
+//VCN=Vn(150 deg)
+IAph=ILph-90
+printf("\nIA=%3.2f(%d deg)A\n",ILmag,IAph);
+
+IBph=ILph+30
+printf("\nIB=%3.2f(%d deg)A\n",ILmag,IBph);
+
+ICph=ILph+150
+printf("\nIC=%3.2f(%d deg)A\n",ILmag,ICph);
diff --git a/Working_Examples/154/DEPENDENCIES/ch12_5.sce b/Working_Examples/154/DEPENDENCIES/ch12_5.sce new file mode 100755 index 0000000..d24df03 --- /dev/null +++ b/Working_Examples/154/DEPENDENCIES/ch12_5.sce @@ -0,0 +1,63 @@ +clc
+disp("Example 12.5")
+printf("\n")
+
+printf("Given")
+disp("The system ABC is DELTA connected")
+disp("Maximum line voltage is 339.4V")
+disp("The three impedances are 10(0 deg),10(30 deg),15(-30 deg)")
+
+ZABmag=10;ZABph=0;
+ZBCmag=10;ZBCph=30;
+ZCAmag=15;ZCAph=-30;
+//Let maximum line voltage is Vmax
+Vmax=339.4
+//From fig 12.7(a)
+//VAB=Vmax(120 deg)
+//VBC=Vmax(0 deg)
+//VCA=Vmax(240 deg)
+
+//From figure 12.15
+IABmag=Vmax/ZABmag
+IABph=120-ZABph
+printf("IAB=%3.2f(%d deg)\n",IABmag,IABph);
+
+IBCmag=Vmax/ZBCmag
+IBCph=0-ZBCph
+printf("IBC=%3.2f(%d deg)\n",IBCmag,IBCph);
+
+ICAmag=Vmax/ZCAmag
+ICAph=240-ZCAph
+printf("ICA=%3.2f(%d deg)\n",ICAmag,ICAph);
+
+//Applying KCL equation
+//IA=IAB+IAC
+//IB=IBC+IBA
+//IC=ICA+ICB
+
+x=IABmag*cos((IABph*%pi)/180);
+y=IABmag*sin((IABph*%pi)/180);
+z=complex(x,y)
+
+x1=ICAmag*cos((ICAph*%pi)/180);
+y1=ICAmag*sin((ICAph*%pi)/180);
+z1=complex(x1,y1)
+
+x2=IBCmag*cos((IBCph*%pi)/180);
+y2=IBCmag*sin((IBCph*%pi)/180);
+z2=complex(x2,y2)
+
+IA=z-z1;
+[RA,ThetaA]=polar(IA)
+
+IB=z2-z;
+[RB,ThetaB]=polar(IB)
+
+IC=z1-z2
+[RC,ThetaC]=polar(IC)
+
+disp("Therefore")
+
+printf("\nIA=%3.2f(%d deg)A\n",RA,ThetaA*(180/%pi));
+printf("\nIB=%3.2f(%d deg)A\n",RB,ThetaB*(180/%pi));
+printf("\nIC=%3.2f(%d deg)A\n",RC,ThetaC*(180/%pi));
\ No newline at end of file diff --git a/Working_Examples/154/DEPENDENCIES/ch12_6.sce b/Working_Examples/154/DEPENDENCIES/ch12_6.sce new file mode 100755 index 0000000..039e4f5 --- /dev/null +++ b/Working_Examples/154/DEPENDENCIES/ch12_6.sce @@ -0,0 +1,52 @@ +clc
+disp("Example 12.6")
+printf("\n")
+
+printf("Given")
+disp("The system CBA is WYE connected")
+disp("Maximum line voltage is 150V")
+disp("The three impedances are 6(0 deg),6(30 deg),5(45 deg)")
+ZAmag=6;ZAph=0;
+ZBmag=6;ZBph=30;
+ZCmag=5;ZCph=45;
+//Let maximum line voltage is Vmax
+Vmax=150
+//Let the line to neutral voltage magnitude be Vn
+Vn=Vmax/sqrt(3)
+//From fig 12.7(b)
+//VAN=Vn(-90 deg)
+//VBN=Vn(30 deg)
+//VCN=Vn(150 deg)
+
+//From figure 12.16
+IAmag=Vn/ZAmag
+IAph=-90-ZAph
+printf("\nIA=%3.2f(%d deg)A\n",IAmag,IAph);
+
+IBmag=Vn/ZBmag
+IBph=30-ZBph
+printf("\nIB=%3.2f(%d deg)A\n",IBmag,IBph);
+
+ICmag=Vn/ZCmag
+ICph=150-ZCph
+printf("\nIC=%3.2f(%d deg)A\n",ICmag,ICph);
+
+//Now to calculate IN
+//IN=-(IA+IB+IC)
+x=IAmag*cos((IAph*%pi)/180);
+y=IAmag*sin((IAph*%pi)/180);
+z=complex(x,y)
+
+x1=ICmag*cos((ICph*%pi)/180);
+y1=ICmag*sin((ICph*%pi)/180);
+z1=complex(x1,y1)
+
+x2=IBmag*cos((IBph*%pi)/180);
+y2=IBmag*sin((IBph*%pi)/180);
+z2=complex(x2,y2)
+
+IN=-(z+z1+z2)
+
+[R,Theta]=polar(IN)
+
+printf("\nIN=%3.2f(%d deg)A\n",R,Theta*(180/%pi));
diff --git a/Working_Examples/154/DEPENDENCIES/ch13_2.sce b/Working_Examples/154/DEPENDENCIES/ch13_2.sce new file mode 100755 index 0000000..b4b8409 --- /dev/null +++ b/Working_Examples/154/DEPENDENCIES/ch13_2.sce @@ -0,0 +1,31 @@ +clc
+disp("Problem 13.2")
+printf("\n")
+
+printf("Given")
+disp("|Hv|=1/sqrt(2) (1)")
+disp("Resistance R1=5kohm")
+R1=5000;
+disp("Hv(w)=1/1+%i*(w/wx) (2)")
+//wx=1/(R1*C2)
+//On solving we get
+disp("wx=2*10^-4/C2 (3)")
+
+disp("a)")
+C2=10*10^-9;
+//Taking modulus of (2)
+disp("|Hv(w)|=1/sqrt(1+(w/wx)^2)")
+//Equating (1) and (2)
+wx=2*10^-4/C2;
+fx=(wx/(2*%pi))*10^-3
+printf("Frequency(a) is %3.2fkHz\n",fx)
+
+disp("b)")
+C2b=1*10^-9;
+//As frequency is inversely proportional to C2 (from (3))
+fx1=(C2/C2b)*fx
+printf("Frequency(b) is %3.2fkHz\n",fx1)
+
+
+
+
diff --git a/Working_Examples/154/DEPENDENCIES/ch13_7.sce b/Working_Examples/154/DEPENDENCIES/ch13_7.sce new file mode 100755 index 0000000..34dda83 --- /dev/null +++ b/Working_Examples/154/DEPENDENCIES/ch13_7.sce @@ -0,0 +1,21 @@ +clc
+disp("Problem 13.7")
+printf("\n")
+
+s=%s;
+printf("Given")
+H=(10*s)/(s^2+300*s+10^6)
+disp(H,"H(s)=")
+//From the above transfer function
+//Comparing the denominator with s^2+a*s+b with w=sqrt(b)
+a=300;b=10^6;
+//Therefore center frequency is
+w0=sqrt(10^6)
+//The lower and upper frequencies are
+wl=sqrt(a^2/4+b)-a/2
+wh=sqrt(a^2/4+b)+a/2
+B=wh-wl //It can be inferred that B=a
+Q=sqrt(b)/a
+printf("\nCenter frequency= %drad/s\n",w0);
+printf("Low power frequency = %3.2frad/s\nHigh power frequency = %3.2frad/s\n",wl,wh);
+printf("Bandwidth= %drad/s\nQuality factor =%3.2f\n",B,Q)
diff --git a/Working_Examples/154/DEPENDENCIES/ch13_8.sce b/Working_Examples/154/DEPENDENCIES/ch13_8.sce new file mode 100755 index 0000000..a2b2331 --- /dev/null +++ b/Working_Examples/154/DEPENDENCIES/ch13_8.sce @@ -0,0 +1,21 @@ +clc
+disp("Problem 13.8")
+printf("\n")
+
+s=%s;
+printf("Given")
+H=(10*s)/(s^2+30*s+10^6)
+disp(H,"H(s)=")
+//From the above transfer function
+//Comparing the denominator with s^2+a*s+b with w=sqrt(b)
+a=30;b=10^6;
+//Therefore center frequency is
+w0=sqrt(10^6)
+//The lower and upper frequencies are
+wl=sqrt(a^2/4+b)-a/2
+wh=sqrt(a^2/4+b)+a/2
+B=wh-wl
+Q=sqrt(b)/a
+printf("\nCenter frequency= %drad/s\n",w0);
+printf("Low power frequency = %3.2frad/s\nHigh power frequency = %3.2frad/s\n",wl,wh);
+printf("Bandwidth= %drad/s\nQuality factor =%3.2f\n",B,Q)
diff --git a/Working_Examples/154/DEPENDENCIES/ch14_1.sce b/Working_Examples/154/DEPENDENCIES/ch14_1.sce new file mode 100755 index 0000000..4737b79 --- /dev/null +++ b/Working_Examples/154/DEPENDENCIES/ch14_1.sce @@ -0,0 +1,29 @@ +clc
+disp("Example 14.1")
+printf("\n")
+
+s=%s;
+//Applying KVL equation to the two loops we get
+//V1=2*I1+s*(I1+I2)
+//V2=3*I2+s*(I1+I2)
+
+//On solving we get
+disp("(s+2)*I1+s*I2=V1 (1)");
+disp("s*I1+(s+3)*I2=V2 (2)");
+
+//The equations which contain Z parameters are
+//V1=Z11*I1+Z12*I2
+//V2=Z21*I1+Z22*I2
+
+//On comparing (1) and (2) with above equations
+Z11=s+2;
+Z12=s;
+Z21=s;
+Z22=s+3;
+
+disp(Z11,"Z11=")
+disp(Z12,"Z12=")
+disp(Z21,"Z21=")
+disp(Z22,"Z22=")
+
+
diff --git a/Working_Examples/154/DEPENDENCIES/ch14_10.sce b/Working_Examples/154/DEPENDENCIES/ch14_10.sce new file mode 100755 index 0000000..965dc13 --- /dev/null +++ b/Working_Examples/154/DEPENDENCIES/ch14_10.sce @@ -0,0 +1,29 @@ +clc
+disp("Example 14.10")
+printf("\n")
+
+s=%s;
+//Applying KVL equation to the two loops we get
+//V1=3*I1+3*(I1+I2)
+//V2=7*I1+3*(I1+I2)+2*I2
+
+//On solving we get
+disp("6*I1+3*I2=V1 (1)");
+disp("10*I1+5*I2=V2 (2)");
+
+//The equations which contain Z parameters are
+//V1=Z11*I1+Z12*I2
+//V2=Z21*I1+Z22*I2
+
+//On comparing (1) and (2) with above equations
+Z11=6;
+Z12=3;
+Z21=10;
+Z22=5;
+
+disp(Z11,"Z11=")
+disp(Z12,"Z12=")
+disp(Z21,"Z21=")
+disp(Z22,"Z22=")
+
+disp("As DZZ results in zero(0) therefore Y parameters are not defined ")
diff --git a/Working_Examples/154/DEPENDENCIES/ch14_2.sce b/Working_Examples/154/DEPENDENCIES/ch14_2.sce new file mode 100755 index 0000000..bb23309 --- /dev/null +++ b/Working_Examples/154/DEPENDENCIES/ch14_2.sce @@ -0,0 +1,27 @@ +clc
+disp("Example 14.2")
+printf("\n")
+
+s=%s;
+//Applying KVL equation to the two loops we get
+//V1=2*I1+s*(I1+I2)-I2
+//V2=3*I2+s*(I1+I2)
+
+//On solving we get
+disp("(s+2)*I1+(s-1)*I2=V1 (1)");
+disp("s*I1+(s+3)*I2=V2 (2)");
+
+//The equations which contain Z parameters are
+//V1=Z11*I1+Z12*I2
+//V2=Z21*I1+Z22*I2
+
+//On comparing (1) and (2) with above equations
+Z11=s+2;
+Z12=s-1;
+Z21=s;
+Z22=s+3;
+
+disp(Z11,"Z11=")
+disp(Z12,"Z12=")
+disp(Z21,"Z21=")
+disp(Z22,"Z22=")
diff --git a/Working_Examples/154/DEPENDENCIES/ch14_4.sce b/Working_Examples/154/DEPENDENCIES/ch14_4.sce new file mode 100755 index 0000000..5e72eb0 --- /dev/null +++ b/Working_Examples/154/DEPENDENCIES/ch14_4.sce @@ -0,0 +1,33 @@ +clc
+disp("Example 14.4")
+printf("\n")
+
+s=%s;
+Ya=3/(5*s+6);
+Yb=2/(5*s+6);
+Yc=s/(5*s+6);
+
+//Writing KCL equations
+disp("I1=(Ya+Yc)*V1-Yc*V2 (1)")
+disp("I2=-Yc*V1+(Yb+Yc)*V2 (2)")
+
+//The equations which contain Y parameters are
+//I1=Y11*V1+Y12*V2
+//I2=Y21*V1+Y22*V2
+
+//On comparing (1) and (2) with above equations
+disp("Y11=Ya+Yc")
+disp("Y12=-Yc=Y21")
+disp("Y22=Yb+Yc")
+
+//Substituting Ya , Yb and Yc
+Y11=Ya+Yc
+Y12=-Yc
+Y21=-Yc
+Y22=Yb+Yc
+
+disp(Y11,"Y11=")
+disp(Y12,"Y12=")
+disp(Y21,"Y21=")
+disp(Y22,"Y22=")
+
diff --git a/Working_Examples/154/DEPENDENCIES/ch14_6.sce b/Working_Examples/154/DEPENDENCIES/ch14_6.sce new file mode 100755 index 0000000..6cef31e --- /dev/null +++ b/Working_Examples/154/DEPENDENCIES/ch14_6.sce @@ -0,0 +1,23 @@ +clc
+disp("Example 14.6")
+printf("\n")
+
+s=%s;
+//From example 14.4
+
+Y11=(3 + s)/(5*s+6)
+Y12=- s/(6 + 5*s)
+Y21=- s/(6 + 5*s)
+Y22=(2+s)/(6+5*s)
+
+DYY=Y11*Y22-Y12*Y21
+
+Z11=Y22/DYY;
+Z12=-Y12/DYY;
+Z21=-Y21/DYY;
+Z22=Y11/DYY;
+
+disp(Z11,"Z11=")
+disp(Z12,"Z12=")
+disp(Z21,"Z21=")
+disp(Z22,"Z22=")
diff --git a/Working_Examples/154/DEPENDENCIES/ch14_7.sce b/Working_Examples/154/DEPENDENCIES/ch14_7.sce new file mode 100755 index 0000000..ffb8c5c --- /dev/null +++ b/Working_Examples/154/DEPENDENCIES/ch14_7.sce @@ -0,0 +1,18 @@ +clc
+disp("Example 14.7")
+printf("\n")
+
+//From figure 14.9
+disp("V1=50*I1 (1)");
+disp("I2=300*I1 (2)");
+
+//The equations which contain h parameters are
+//V1=h11*I1+h12*V2
+//I2=h21*I1+h22*V2
+
+//On comparing (1) and (2) with above equations
+
+printf("\nh11=%d\n",50);
+printf("h12=%d\n",0);
+printf("h21=%d\n",300);
+printf("h22=%d\n",0);
diff --git a/Working_Examples/154/DEPENDENCIES/ch14_8.sce b/Working_Examples/154/DEPENDENCIES/ch14_8.sce new file mode 100755 index 0000000..059a397 --- /dev/null +++ b/Working_Examples/154/DEPENDENCIES/ch14_8.sce @@ -0,0 +1,25 @@ +clc
+disp("Example 14.8")
+printf("\n")
+
+//From figure 14.10
+//By inspection
+//V1=10^9*I1
+//V2=10(I2-10^-3*V1)
+
+
+//On solving we get
+disp("I1=10^-9*V1 (1)");
+disp("V2=10*I2-10^-2*V1 (2)");
+
+
+//The equations which contain g parameters are
+//I1=g11*V1+g12*I2
+//V2=g21*V1+g22*I2
+
+//On comparing (1) and (2) with above equations
+
+printf("\ng11=%2.1e\n",10^-9);
+printf("g12=%d\n",0);
+printf("g21=%2.1e\n",-10^-2);
+printf("g22=%d\n",10);
diff --git a/Working_Examples/154/DEPENDENCIES/ch15_4.sce b/Working_Examples/154/DEPENDENCIES/ch15_4.sce new file mode 100755 index 0000000..a2703a4 --- /dev/null +++ b/Working_Examples/154/DEPENDENCIES/ch15_4.sce @@ -0,0 +1,34 @@ +clc
+disp("Example 15.4")
+printf("\n")
+
+printf("Given")
+disp("L1=0.1H L2=0.2H")
+disp("i1=4A i2=10A")
+L1=0.1;L2=0.2
+i1=4;i2=10;
+//The energy stored in coupled coils is
+disp("W=(L1*i1^2)/2+(L2*i2^2)/2+M*i1*i2")
+
+disp("a)")
+M=0.1;
+W=(L1*i1^2)/2+(L2*i2^2)/2+M*i1*i2;
+printf("Total Energy in the coils=%3.2fJ\n",W);
+
+disp("b)")
+M=sqrt(2)/10;
+W=(L1*i1^2)/2+(L2*i2^2)/2+M*i1*i2;
+printf("Total Energy in the coils=%3.2fJ\n",W);
+
+disp("c)")
+M=-0.1;
+W=(L1*i1^2)/2+(L2*i2^2)/2+M*i1*i2;
+printf("Total Energy in the coils=%3.2fJ\n",W);
+
+disp("a)")
+M=-sqrt(2)/10;
+W=(L1*i1^2)/2+(L2*i2^2)/2+M*i1*i2;
+printf("Total Energy in the coils=%3.2fJ\n",W);
+
+
+
diff --git a/Working_Examples/154/DEPENDENCIES/ch15_7.sce b/Working_Examples/154/DEPENDENCIES/ch15_7.sce new file mode 100755 index 0000000..86d9339 --- /dev/null +++ b/Working_Examples/154/DEPENDENCIES/ch15_7.sce @@ -0,0 +1,29 @@ +clc
+disp("Example 15.7")
+printf("\n")
+
+printf("Given")
+disp("N1=20 N2=N3=10")
+disp("I2=10(-53.13 deg) I3=10(-45 deg)")
+N1=20;N2=10;N3=10;
+I2mag=10;I2ph=-53.13;
+I3mag=10;I3ph=-45;
+//From figure 15.14
+disp("N1*I1-N2*I2-N3*I3=0")
+//Solving for I1
+Xmag=N2*I2mag
+Xph=I2ph
+x=Xmag*cos((Xph*%pi)/180);
+y=Xmag*sin((Xph*%pi)/180);
+z=complex(x,y)
+
+Ymag=N3*I3mag
+Yph=I3ph
+x1=Ymag*cos((Yph*%pi)/180);
+y1=Ymag*sin((Yph*%pi)/180);
+z1=complex(x1,y1)
+
+I1=(z+z1)/N1
+[R,Theta]=polar(I1);
+printf("I1=%3.2f(%3.2f deg) A\n",R,(Theta*180)/%pi);
+
diff --git a/Working_Examples/154/DEPENDENCIES/ch15_8.sce b/Working_Examples/154/DEPENDENCIES/ch15_8.sce new file mode 100755 index 0000000..73b8655 --- /dev/null +++ b/Working_Examples/154/DEPENDENCIES/ch15_8.sce @@ -0,0 +1,22 @@ +clc
+disp("Example 15.8")
+printf("\n")
+
+printf("Given")
+disp("L1=0.2H L2=0.1H")
+disp("M=0.1H R=10ohm")
+disp("v1=142.3*sin(100*t)")
+L1=0.2;L2=0.1
+M=0.1;R=10;
+v1mag=142.3;
+w=100;
+//Let Input impedance be Z1 and can be calculated as
+//From the equations in 15.10
+disp("Z1=%i*w*L1+((M*w)^2)/(Z2+%i*w*L2)")
+Z1=%i*w*L1+((M*w)^2)/(R+%i*w*L2)
+[R,Theta]=polar(Z1)
+//If I1 is the input current
+I1mag=v1mag/R
+I1ph=-(Theta*180)/%pi
+//In time domain form
+printf("i1=%3.1f*sin(%d*t%3.1f deg) (A)",I1mag,w,I1ph);
diff --git a/Working_Examples/154/DEPENDENCIES/ch15_9.sce b/Working_Examples/154/DEPENDENCIES/ch15_9.sce new file mode 100755 index 0000000..0d9f2fa --- /dev/null +++ b/Working_Examples/154/DEPENDENCIES/ch15_9.sce @@ -0,0 +1,33 @@ +clc
+disp("Example 15.9")
+printf("\n")
+
+s=%s;
+printf("Given")
+disp("L1=0.2H L2=0.1H")
+disp("M=0.1H R=10ohm")
+disp("v1=u(t) a unit step function")
+L1=0.2;L2=0.1
+M=0.1;R=10;
+v1=1;
+w=100;
+//Let Input impedance be Z1 and can be calculated as
+//From the equations in 15.10
+disp("Z1(s)=L1*s-((M*s)^2)/(R+L2*s)")
+Z1=L1*s-(((M*s)^2)/(R+L2*s))
+//Proper rearranging of co-efficients
+Num=Z1('num')/0.01
+Den=Z1('den')*100
+
+disp(Num/Den,"Z1(s)")
+Y1=1/Z1
+disp(Den/Num,"Y1(s)")
+
+//As the input is unit step function the value is 1V for t>0
+//In exponential form the value is represented as exp(s*t) with s=0 as the pole of Y1(s)
+
+//Therefore forced response
+k=1/L1;
+printf("Forced response i1,f=(%d*t) (A)\n",k);
+
+
diff --git a/Working_Examples/154/DEPENDENCIES/ch17_2.sce b/Working_Examples/154/DEPENDENCIES/ch17_2.sce new file mode 100755 index 0000000..e9ab99b --- /dev/null +++ b/Working_Examples/154/DEPENDENCIES/ch17_2.sce @@ -0,0 +1,3 @@ +syms t s ;
+ x=laplace ('3*%e^(2*t)' , t , s ) ;
+ disp (x , " X(s)=" )
diff --git a/Working_Examples/154/DEPENDENCIES/ch17_4.sce b/Working_Examples/154/DEPENDENCIES/ch17_4.sce new file mode 100755 index 0000000..6c4baab --- /dev/null +++ b/Working_Examples/154/DEPENDENCIES/ch17_4.sce @@ -0,0 +1,31 @@ +clc
+syms t
+s=%s;
+//Factorizing the denominator
+I=(s-10)/((s^2)*(s-%i)*(s+%i));
+disp(I,"I(s)=")
+//The principal part at s=0 is
+//B1/s+B2/s^2
+//Taking the limit s->0 to (s-10)/((s-%i)*(s+%i))
+
+B2=-10
+
+//Taking the limit s->0 to (s*(s-10))/(s^2)*(s^2+1)+(10/s)
+
+B1=1
+
+//The principal part at s=%i is
+//A/(s-%i)
+//Taking the limit s->%i to (s-10)/((s^2)*(s+%i))
+
+A=(-0.5-%i*5)
+
+//As the other co-efficient is conjugate of the above we can write the partial fraction expansion of I(s)
+I=(1/s)-(10/s^2)-(0.5+%i*5)/(s-%i)-(0.5-%i*5)/(s+%i);
+//Taking inverse of each term
+I1=ilaplace('1/s',s,t)
+I2=ilaplace('10/s^2',s,t)
+I3=ilaplace('(0.5+%i*5)/(s-%i)',s,t)
+I4=ilaplace('(0.5-%i*5)/(s+%i)',s,t)
+I=I1-I2-I3-I4
+disp(I,"i(t)=")
diff --git a/Working_Examples/154/DEPENDENCIES/ch1_1.sce b/Working_Examples/154/DEPENDENCIES/ch1_1.sce new file mode 100755 index 0000000..a0e4f4d --- /dev/null +++ b/Working_Examples/154/DEPENDENCIES/ch1_1.sce @@ -0,0 +1,20 @@ +clc
+disp("Example 1.1")
+printf("\n")
+printf("Given")
+disp("Acceleration is 2.0m/s^2")
+disp("Mass is 10kg")
+m=10;a=2;
+disp("a)")
+disp("F=m*a")
+F=m*a
+printf("Force is %dN\n",F)
+disp("b)")
+printf("time=4s\n")
+t=4;
+x=(a*t*t)/2
+KE=(F*x)
+P=KE/t
+printf("Position is %dm\n",x)
+printf("Kinetic energy =%3.1fJ\n",KE)
+printf("Power =%3.1fW\n",P)
diff --git a/Working_Examples/154/DEPENDENCIES/ch1_2.sce b/Working_Examples/154/DEPENDENCIES/ch1_2.sce new file mode 100755 index 0000000..eae2a42 --- /dev/null +++ b/Working_Examples/154/DEPENDENCIES/ch1_2.sce @@ -0,0 +1,13 @@ +clc
+disp("Example 1.2")
+printf("\n")
+printf("Given")
+disp("Current flow is 5A")
+disp("Time is 1 minute")
+i=5;
+//As electroms/min is asked so we need to convert A(C/s) to C/min
+i1=5*60;
+//Let e be electronic charge
+e=1.602*10^-19
+n=(i1/e)
+printf("Number of electrons =%3.2f electrons/min\n",n)
\ No newline at end of file diff --git a/Working_Examples/154/DEPENDENCIES/ch1_3.sce b/Working_Examples/154/DEPENDENCIES/ch1_3.sce new file mode 100755 index 0000000..ffc73c5 --- /dev/null +++ b/Working_Examples/154/DEPENDENCIES/ch1_3.sce @@ -0,0 +1,10 @@ +clc
+disp("Example 1.3")
+printf("\n")
+printf("Given")
+disp("Energy is 9.25uJ")
+disp("Charge to be transferred is 0.5uC")
+E=9.25*10^-6;q=0.5*10^-6;
+//1 volt is 1 joule per coulomb
+V=E/q;
+printf("Potential difference between two points a and b is %3.1fV\n",V)
diff --git a/Working_Examples/154/DEPENDENCIES/ch1_4.sce b/Working_Examples/154/DEPENDENCIES/ch1_4.sce new file mode 100755 index 0000000..4a00b66 --- /dev/null +++ b/Working_Examples/154/DEPENDENCIES/ch1_4.sce @@ -0,0 +1,14 @@ +clc
+disp("Example 1.4")
+printf("\n")
+printf("Given")
+disp("Potential difference is 50V")
+disp("Charge per minute is 120C/min")
+V=50;x=120;
+//As Electrical energy is to be calculated charge per minute is to be converted in charge per second
+//Charge per second is nothing but the current
+i=x/60;
+P=i*V;
+//Since is 1W=1J/s
+printf("Rate of energy conversion is %dJ/s\n",P)
+
diff --git a/Working_Examples/154/DEPENDENCIES/ch2_1.sce b/Working_Examples/154/DEPENDENCIES/ch2_1.sce new file mode 100755 index 0000000..bbb83e9 --- /dev/null +++ b/Working_Examples/154/DEPENDENCIES/ch2_1.sce @@ -0,0 +1,47 @@ +clc
+disp("Example 2.1")
+printf("\n")
+printf("Given")
+disp("Resistance used is 4 ohm")
+disp("Current flow is i=2.5*sin(w*t)")
+disp("Angular frequency(w)=500 rad/s")
+
+R=4;
+iamp=2.5;w=500;
+t=0:0.001:0.012566
+i=2.5*sin(w*t)
+
+
+Vamp=iamp*R;
+printf("v=%d*sin(%d*t)(V)\n",Vamp,w)
+
+pamp=iamp*iamp*R;
+printf("p=%d(sin(%d*t))^2(W)\n",pamp,w)
+p=pamp*sin(w*t)^2;
+
+//On integrating p with respect to t
+W=25*(t/2-sin(2*w*t)/(4*w))
+
+function p=f(t),p=pamp*sin(w*t)^2,endfunction
+w1=intg(0,2*%pi/w,f);
+
+figure
+a= gca ();
+plot(t,i)
+xtitle ('i vs wt','wt','i ');
+a. thickness = 2;
+
+figure
+a= gca ();
+plot(t,p)
+xtitle ('p vs wt','wt','p ');
+a. thickness = 2;
+
+figure
+a= gca ();
+plot(t,W)
+xtitle ('w vs wt','wt','w ');
+a. thickness = 2;
+
+
+
diff --git a/Working_Examples/154/DEPENDENCIES/ch2_2.sce b/Working_Examples/154/DEPENDENCIES/ch2_2.sce new file mode 100755 index 0000000..16684e3 --- /dev/null +++ b/Working_Examples/154/DEPENDENCIES/ch2_2.sce @@ -0,0 +1,48 @@ +clc
+disp("Example 2.2")
+printf("\n")
+printf("Given")
+disp("Inductance used is 30mH")
+disp("Current flow is i=10*sin(50*t)")
+L=30*10^-3;iamp=10;
+t=0:0.01:0.06283;
+i=10*sin(50*t)
+//v=L*d/dt(i)
+//d/dt(sin 50t)=50*cos t
+vamp=L*iamp*50;
+v=vamp*cos(50*t)
+
+//sinA*cosB=(sin(A+B)+sin(A-B))/2
+
+pamp=vamp*iamp/2;
+p=pamp*sin(100*t)
+//On integrating 'p' w.r.t t
+
+wL=0.75*(1-cos(100*t));
+
+figure
+a= gca ();
+plot(t,i)
+xtitle ('i vs wt','wt','i');
+a. thickness = 2;
+
+figure
+a= gca ();
+plot(t,v)
+xtitle ('v vs wt','wt','v ');
+a. thickness = 2;
+
+figure
+a= gca ();
+plot(t,p)
+xtitle ('p vs wt','wt','p ');
+a. thickness = 2;
+
+figure
+a= gca ();
+plot(t,wL)
+xtitle ('wL vs wt','wt','wL ');
+a. thickness = 2;
+
+
+
diff --git a/Working_Examples/154/DEPENDENCIES/ch2_3.sce b/Working_Examples/154/DEPENDENCIES/ch2_3.sce new file mode 100755 index 0000000..cb92e89 --- /dev/null +++ b/Working_Examples/154/DEPENDENCIES/ch2_3.sce @@ -0,0 +1,35 @@ +clc
+disp("Example 2.3")
+printf("\n")
+printf("Given")
+disp("Capacitance used is 20uF")
+disp("Voltage is v=50*sin(200*t)")
+C=20*10^-6;
+v=50*sin(200*t);
+vamp=50;
+t=0:0.001:0.015;
+//q=C*v
+qamp=vamp*C
+q=qamp*sin(200*t)
+//i=C*d/dt(v)
+//d/dt(sin 200t)=200*cos t
+iamp=C*vamp*200;
+i=iamp*cos(200*t)
+
+//sinA*cosB=(sin(A+B)+sin(A-B))/2
+
+pamp=vamp*iamp/2;
+p=pamp*sin(400*t)
+
+//On integrating 'p' w.r.t t
+
+wC=12.5*(1-cos(400*t));
+
+figure
+a= gca ();
+plot(t,wC)
+xtitle ('wC vs wt','wt','wC (mJ)');
+a. thickness = 2;
+
+
+
diff --git a/Working_Examples/154/DEPENDENCIES/ch2_4.sce b/Working_Examples/154/DEPENDENCIES/ch2_4.sce new file mode 100755 index 0000000..623b4b9 --- /dev/null +++ b/Working_Examples/154/DEPENDENCIES/ch2_4.sce @@ -0,0 +1,17 @@ +clc
+disp("Example 2.4")
+printf("\n")
+printf("Given")
+disp("Current through diode is 30mA")
+//From the table the nearest value is at v=0.74V
+V=0.74;I=28.7*10^-3;
+R=V/I;
+delV=0.75-0.73
+delI=42.7*10^-3-19.2*10^-3
+r=delV/delI
+p=(V*I)*10^3
+printf("\n \n Static resistance is %3.2fohm\n",R)
+printf("Dynamic resistance is %3.2fohm\n",r)
+printf("Power consumption is %3.2fmW\n",p)
+
+
diff --git a/Working_Examples/154/DEPENDENCIES/ch2_5.sce b/Working_Examples/154/DEPENDENCIES/ch2_5.sce new file mode 100755 index 0000000..9d9c06c --- /dev/null +++ b/Working_Examples/154/DEPENDENCIES/ch2_5.sce @@ -0,0 +1,29 @@ +clc
+disp("Example 2.5")
+printf("\n")
+printf("Given")
+disp("a)")
+disp("Current through diode is 10mA")
+//From the table the value is at v=2.5V
+V=2.5;I=10*10^-3;
+R=V/I;
+delV=3-2
+delI=11*10^-3-9*10^-3
+r=delV/delI
+p=(V*I)*10^3
+printf("\n \n Static resistance is %3.2fohm\n",R)
+printf("Dynamic resistance is %3.2fohm\n",r)
+printf("Power consumption is %3.2fmW\n",p)
+
+disp("b)")
+disp("Current through diode is 15mA")
+//From the table the value is at v=5V
+V=5;I=15*10^-3;
+R=V/I;
+delV=5.5-4.5
+delI=16*10^-3-14*10^-3
+r=delV/delI
+p=(V*I)*10^3
+printf("\n \n Static resistance is %3.2fohm\n",R)
+printf("Dynamic resistance is %3.2fohm\n",r)
+printf("Power consumption is %3.2fmW\n",p)
\ No newline at end of file diff --git a/Working_Examples/154/DEPENDENCIES/ch3_3.sce b/Working_Examples/154/DEPENDENCIES/ch3_3.sce new file mode 100755 index 0000000..e72c536 --- /dev/null +++ b/Working_Examples/154/DEPENDENCIES/ch3_3.sce @@ -0,0 +1,13 @@ +clc
+disp("Example 3.3")
+printf("\n")
+printf("Given")
+disp("Equivalent resistance of three resistors is 750 ohm")
+disp("values of two resistors are 40 ohm and 410 ohm")
+Req=750;R1=40;R2=410;
+
+//For series resistance
+disp("Req=R1+R2+R3")
+//On solving for R3
+R3=Req-R1-R2
+printf("Value of third ohmic resistor is %dohm\n",R3)
diff --git a/Working_Examples/154/DEPENDENCIES/ch3_4.sce b/Working_Examples/154/DEPENDENCIES/ch3_4.sce new file mode 100755 index 0000000..26e7932 --- /dev/null +++ b/Working_Examples/154/DEPENDENCIES/ch3_4.sce @@ -0,0 +1,17 @@ +clc
+disp("Example 3.4")
+printf("\n")
+printf("Given")
+disp("values of two capacitors are 2uF and 10uF")
+C1=2*10^-6;C2=10*10^-6;
+//For two capacitors in series
+disp("Ceq=(C1*C2)/(C1+C2)")
+//On solving for Ceq
+Ceq=((C1*C2)/(C1+C2))*10^6
+printf("Value of equivalent capacitance is %3.2fuF\n",Ceq)
+
+disp("If C2=10pF")
+C2=10*10^-12;
+
+Ceq=((C1*C2)/(C1+C2))*10^12
+printf("Value of equivalent capacitance is %3.2fpF\n",Ceq)
\ No newline at end of file diff --git a/Working_Examples/154/DEPENDENCIES/ch3_5.sce b/Working_Examples/154/DEPENDENCIES/ch3_5.sce new file mode 100755 index 0000000..9ca5084 --- /dev/null +++ b/Working_Examples/154/DEPENDENCIES/ch3_5.sce @@ -0,0 +1,18 @@ +clc
+disp("Example 3.5")
+printf("\n")
+printf("Given")
+disp("a)")
+disp("values of two resistors are 60 ohm and 60 ohm")
+R1=60;R2=60;
+disp("If resistors are parallel")
+Req=(R1*R2)/(R1+R2)
+printf("Value of equivalent resistance is %dohm\n",Req)
+
+disp("b)")
+disp("values of three equal resistors are 60 ohm")
+R1=60;R2=60;R3=60;
+disp("If resistors are parallel")
+x=1/R1+1/R2+1/R3
+Req=1/x;
+printf("Value of equivalent resistance is %dohm\n",Req)
diff --git a/Working_Examples/154/DEPENDENCIES/ch3_6.sce b/Working_Examples/154/DEPENDENCIES/ch3_6.sce new file mode 100755 index 0000000..5156eb9 --- /dev/null +++ b/Working_Examples/154/DEPENDENCIES/ch3_6.sce @@ -0,0 +1,11 @@ +clc
+disp("Example 3.6")
+printf("\n")
+printf("Given")
+
+disp("values of two inductors are 3mH and 6 mH")
+L1=3*10^-3;L2=6*10^-3;
+disp("If inductors are parallel")
+Leq=((L1*L2)/(L1+L2))*10^3
+printf("Value of equivalent inductance is %3.1fmH\n",Leq)
+
diff --git a/Working_Examples/154/DEPENDENCIES/ch3_7.sce b/Working_Examples/154/DEPENDENCIES/ch3_7.sce new file mode 100755 index 0000000..72aa564 --- /dev/null +++ b/Working_Examples/154/DEPENDENCIES/ch3_7.sce @@ -0,0 +1,19 @@ +clc
+disp("Example 3.7")
+printf("\n")
+printf("Given")
+disp("Total resistance of three resistors is 50 ohm")
+R=50;
+disp("Output voltage is 10 percent of the input voltage")
+//Let v be input voltage and v1 be output voltage
+//Let v1/v=V
+V=0.1;
+//As V=R1/(Total resistance)
+//Solving for R1
+R1=V*R;
+//As R=R1+R2
+//Solving for R2
+R2=R-R1;
+printf("R1=%dohm\n R2=%dohm\n",R1,R2)
+
+
diff --git a/Working_Examples/154/DEPENDENCIES/ch3_8.sce b/Working_Examples/154/DEPENDENCIES/ch3_8.sce new file mode 100755 index 0000000..f744f0f --- /dev/null +++ b/Working_Examples/154/DEPENDENCIES/ch3_8.sce @@ -0,0 +1,24 @@ +clc
+disp("Example 3.8")
+printf("\n")
+printf("Given")
+disp("Total current is 30mA")
+disp("Branch currents are 20mA and 10mA")
+disp("Equivalent resistance is equal to or greater than 10 ohm")
+
+//From Fig 3.6
+//Current flowing through R1 be i1 and let it be equal to 10mA
+//Current flowing through R2 be i2 and let it be equal to 20mA
+i1=10*10^-3;i2=20*10^-3;
+i=30*10^-3;
+
+//Let R1/(R1+R2)=X1 (1)
+//Let R2/(R1+R2)=X2 (2)
+X1=i1/i;
+X2=i2/i;
+//Let R1*R2(R1+R2)=Y (3)
+//Given that
+printf("\n Given")
+disp("R1*R2(R1+R2)>=10")
+//Solving (1),(2) and (3) we get
+printf("R1>=%dohm\nR2>=%dohm\n",15,30)
diff --git a/Working_Examples/154/DEPENDENCIES/ch4_1.sce b/Working_Examples/154/DEPENDENCIES/ch4_1.sce new file mode 100755 index 0000000..bbf2e06 --- /dev/null +++ b/Working_Examples/154/DEPENDENCIES/ch4_1.sce @@ -0,0 +1,19 @@ +clc
+disp("Problem 4.1")
+printf("\n")
+
+//From figure 4.2
+//All the nodes and branches of the network are marked
+//The incidence matrix is written in a manner in which
+disp("1 is written if the direction of flow is away from the node")
+disp("-1 is written if the direction of flow is towards the node")
+disp("0 is written if the branch is not connected to the node")
+//Considering columns as branches with 1 to 6 from left to right
+//and rows as nodes with 0 to 3 from top to bottom
+A=[1 0 -1 -1 0 0
+ -1 1 0 0 1 0
+ 0 -1 1 0 0 1
+ 0 0 0 1 -1 -1]
+disp("The incidence matrix is ")
+disp(A,"Aa=")
+//It can be inferred from matrix Aa that the sum of elements in any row or a column is ZERO
\ No newline at end of file diff --git a/Working_Examples/154/DEPENDENCIES/ch4_2.sce b/Working_Examples/154/DEPENDENCIES/ch4_2.sce new file mode 100755 index 0000000..4692092 --- /dev/null +++ b/Working_Examples/154/DEPENDENCIES/ch4_2.sce @@ -0,0 +1,22 @@ +clc
+disp("Problem 4.2")
+printf("\n")
+
+//From figure 4.2
+disp("The reduced incidence matrix is ")
+A=[-1 1 0 0 1 0
+ 0 -1 1 0 0 1
+ 0 0 0 1 -1 -1]
+ disp(A,"A=")
+//Here node D is chosen as reference
+//Let i=[ i1
+// i2
+// i3
+// i4
+// i5
+// i6 ]
+//Multiplying [A] with [i] we get the KCL equations
+disp("KCL equations are")
+disp("-i1+i2+i5=0")
+disp("-i2+i3+i6=0")
+disp("i4-i5-i6=0")
diff --git a/Working_Examples/154/DEPENDENCIES/ch4_3.sce b/Working_Examples/154/DEPENDENCIES/ch4_3.sce new file mode 100755 index 0000000..74e715c --- /dev/null +++ b/Working_Examples/154/DEPENDENCIES/ch4_3.sce @@ -0,0 +1,30 @@ +clc
+disp("Problem 4.3")
+printf("\n")
+
+//From figure 4.2
+disp("The reduced incidence matrix is ")
+A=[-1 1 0 0 1 0
+ 0 -1 1 0 0 1
+ 0 0 0 1 -1 -1]
+ disp(A,"A=")
+AT=[ -1 0 0
+ 1 -1 0
+ 0 1 0
+ 0 0 1
+ 1 0 -1
+ 0 1 -1 ]
+ disp(AT,"AT=")
+//Let e be the node to datum voltages
+//Let e=[ e1
+// e2
+// e3 ]
+//Multiplying [AT] with [e] we get the node voltages as
+disp("Node to datum voltages are")
+disp("v1=-e1")
+disp("v2=e1-e2")
+disp("v3=e2")
+disp("v4=e3")
+disp("v5=e1-e3")
+disp("v6=e2-e3")
+
diff --git a/Working_Examples/154/DEPENDENCIES/ch4_4.sce b/Working_Examples/154/DEPENDENCIES/ch4_4.sce new file mode 100755 index 0000000..9deb374 --- /dev/null +++ b/Working_Examples/154/DEPENDENCIES/ch4_4.sce @@ -0,0 +1,59 @@ +clc
+disp("Problem 4.4")
+printf("\n")
+
+//From figure 4.7
+//Let us consider a tree with 5,6,7,8 as tree branches
+//Correspondingly links be 1,2,3,4
+//By adding links one after other Loops can be formed
+//The fundamental loops are..
+disp("L1={1,5,6} L2={2,5,6,7,8} L3={3,6,7,8} L4={4,6,7}")
+disp("1 is written if the direction of flow is along the direction of loop")
+disp("-1 is written if the direction of flow is opposite to the direction of loop")
+disp("0 is written if the branch is not a part of loop")
+disp("The loop incidence matrix is")
+B=[1 0 0 0 -1 1 0 0
+ 0 1 0 0 1 -1 1 1
+ 0 0 1 0 0 -1 1 1
+ 0 0 0 1 0 -1 1 0]
+ disp(B,"B=")
+//The above matrix has branches as columns and the number of loops as rows
+//As we need to find branch currents(8 in number)in terms of loop currents(4 in number)
+//Let i=[ i1 also iL=[ iL1
+// i2 iL2
+// i3 iL3
+// i4 iL4 ]
+// i5
+// i6
+// i7
+// i8]
+
+
+//We know i=BT*iL
+//i=[ i1 [1 0 0 0 iL=[ iL1
+// i2 0 1 0 0 iL2
+// i3 0 0 1 0 * iL3
+// i4 = 0 0 0 1 iL4 ]
+// i5 -1 1 0 0
+// i6 -1 -1 -1 -1
+// i7 0 1 1 1
+// i8] 0 1 1 0 ]
+
+disp("The branch currents are")
+disp("i1=iL1")
+disp("i2=iL2")
+disp("i3=iL3")
+disp("i4=iL4")
+disp("i5=-iL1+iL2")
+disp("i6=iL1-iL2-iL3-iL4")
+disp("i7=iL2+iL3+iL4")
+disp("i8=iL2+iL3")
+
+
+
+
+
+
+
+
+
diff --git a/Working_Examples/154/DEPENDENCIES/ch4_5.sce b/Working_Examples/154/DEPENDENCIES/ch4_5.sce new file mode 100755 index 0000000..c9e2865 --- /dev/null +++ b/Working_Examples/154/DEPENDENCIES/ch4_5.sce @@ -0,0 +1,35 @@ +clc
+disp("Problem 4.5")
+printf("\n")
+
+//From figure 4.8
+//The fundamental cut-sets are..
+disp("C1={1,2,5} L2={2,3,8} L3={1,2,3,4,6} L4={2,3,4,7}")
+disp("1 is written for the link if the direction of flow of tree branch is same as that of the link")
+disp("-1 is written for the link if the direction of flow of tree branch is opposite as that of the link")
+disp("0 is written if the branch or a link is not a part of cut set")
+disp("The cut set matrix is")
+C=[ 1 -1 0 0 1 0 0 0
+ 0 -1 -1 0 0 0 0 1
+ 1 -1 -1 -1 0 1 0 0
+ 0 -1 -1 -1 0 0 1 0 ]
+ disp(C,"C=")
+//The above matrix has branches as columns and the number of cut sets as rows
+
+//Let i=[ i1
+// i2
+// i3
+// i4
+// i5
+// i6
+// i7
+// i8 ]
+
+//As we need to write the KCL for the circuit
+//KCL=[C]*[i]
+//Multiplying [C] with [i] we get the KCL equations
+disp("KCL equations are")
+disp("i1-i2+i5=0")
+disp("-i2-i3+i8=0")
+disp("i1-i2-i3-i4+i6=0")
+disp("-i2-i3-i4+i7=0")
diff --git a/Working_Examples/154/DEPENDENCIES/ch5_8.sce b/Working_Examples/154/DEPENDENCIES/ch5_8.sce new file mode 100755 index 0000000..4c4e229 --- /dev/null +++ b/Working_Examples/154/DEPENDENCIES/ch5_8.sce @@ -0,0 +1,19 @@ +clc
+//From figure 5.13(a)
+//Applying KVL equation to the loop
+I=(20+10)/(3+6)
+//As current will not flow in upper 3 ohm resistor so Thevenin voltage is equal to either of the two parallel branches
+V1=20-I*3
+printf("Thevenin voltage = %dV\n",V1)
+
+// Left 3 ohm and 6 ohm resistor are in parallel and their equivalent is in series with 3 ohm
+R1=3+(3*6)/(3+6)
+printf("Thevenin resistance =%dohm\n",R1)
+
+//Now to find Norton's equivalent
+I1=V1/R1
+printf("\n Norton current =%dA\n",I1)
+disp("The value of resistance in Norton equivalent will not change but will come in parallel with current source")
+
+
+
diff --git a/Working_Examples/154/DEPENDENCIES/ch6_8.sce b/Working_Examples/154/DEPENDENCIES/ch6_8.sce new file mode 100755 index 0000000..d971edf --- /dev/null +++ b/Working_Examples/154/DEPENDENCIES/ch6_8.sce @@ -0,0 +1,15 @@ +clc
+disp("Example 6.8")
+printf("Given")
+disp("R1= 10kohm R2=50kohm Ri=500kohm R0=0")
+disp("Open loop gain (A)=10^5")
+A=10^5;R1=10*10^3;R2=50*10^3;Ri=500*10^3;
+//From figure 6.11
+//Applying KCL equation at node B
+disp("(v1+vd)/10+ (v2+vd)/50+ vd/500=0 (1)")
+//Since R0=0
+disp("v2=A*vd")
+//Solving for vd
+disp("vd=10^-5*v2 (2)")
+//Substituting (2) in (1) we get
+printf("v2/v1=%d\n",-5)
\ No newline at end of file diff --git a/Working_Examples/154/DEPENDENCIES/ch7_1.sce b/Working_Examples/154/DEPENDENCIES/ch7_1.sce new file mode 100755 index 0000000..66f5b3d --- /dev/null +++ b/Working_Examples/154/DEPENDENCIES/ch7_1.sce @@ -0,0 +1,53 @@ +clc
+disp("Example 7.1")
+printf("\n")
+
+t1=-5:0.5:8
+v1=cos (t1)
+figure
+a= gca ();
+plot(t1,v1)
+xtitle ('v1 vs t1','t1','v1 ');
+a. thickness = 2;
+//From the graph
+printf("Time period1= %3.3fs\n Frequency 1=%0.3fHz\n",6.2832,0.159)
+
+t2=-4:0.5:10
+v2=sin (t2)
+figure
+a= gca ();
+plot(t2,v2)
+xtitle ('v2 vs t2','t2','v2 ');
+a. thickness = 2;
+//From the graph
+printf("Time period 2= %3.3fs\n Frequency 2=%0.3fHz\n",6.2832,0.159)
+
+t3=-1:0.05:1.5
+v3=2*cos (2*%pi*t3)
+figure
+a= gca ();
+plot(t3,v3)
+xtitle ('v3 vs t3','t3','v3 ');
+a. thickness = 2;
+//From the graph
+printf("Time period 3= %ds\n Frequency 3=%dHz\n",1,1)
+
+t4=-5:0.5:12
+v4=2*cos (%pi*t4/4-%pi/4)
+figure
+a= gca ();
+plot(t4,v4)
+xtitle ('v4 vs t4','t4','v4 ');
+a. thickness = 2;
+//From the graph
+printf("Time period 4= %ds\n Frequency 4=%0.3fHz\n",8,0.125)
+
+t5=-1:0.005:1
+v5=5*cos (10*t5+%pi/3)
+figure
+a= gca ();
+plot(t5,v5)
+xtitle ('v5 vs t5','t5','v5 ');
+a. thickness = 2;
+//From the graph
+printf("Time period 5= %0.3fs\n Frequency 5=%3.2fHz\n",.62832,1.59)
diff --git a/Working_Examples/154/DEPENDENCIES/ch7_13.sce b/Working_Examples/154/DEPENDENCIES/ch7_13.sce new file mode 100755 index 0000000..86523df --- /dev/null +++ b/Working_Examples/154/DEPENDENCIES/ch7_13.sce @@ -0,0 +1,24 @@ +clc
+disp("Example 7.13")
+printf("\n")
+
+printf("Given")
+disp("Capacitance is 1uF")
+C=1*10^-6;
+disp("a)")
+//Let k=1 which results in t=5ms
+t=5*10^-3;
+vac=(integrate('.004','t',0,0.003)-integrate('.002','t',0.003,0.005))/C;
+printf("vac=%dV\n",vac);
+
+//In general
+disp("At t=5k voltage follows as v=8k ms")
+
+disp("b)")
+//As vdc=1/C*integrate(Idc*dt)
+//On solving for Idc
+vdc=vac
+Idc=(1/((integrate('1/vac','t',0,0.005))/C))*10^3
+printf("Idc=%3.2fmA\n",Idc);
+disp("Idc is equal to <i(t)> in the period of 5ms")
+
diff --git a/Working_Examples/154/DEPENDENCIES/ch7_17.sce b/Working_Examples/154/DEPENDENCIES/ch7_17.sce new file mode 100755 index 0000000..de2f600 --- /dev/null +++ b/Working_Examples/154/DEPENDENCIES/ch7_17.sce @@ -0,0 +1,39 @@ +clc
+disp("Example 7.17")
+printf("\n")
+
+printf("Given")
+disp("Capacitance is 100nF")
+disp("The voltage across capacitor increases linearly from 0 to 10V")
+C=100*10^-9;
+//From figure 7.10(a)
+disp("a)")
+//At t=T voltage across capacitor =10V
+vc=10;
+Q=C*vc;
+printf("Charge across capacitor is %fC\n",Q)
+disp("b)")
+//The waveform shown in fig 7.10(a) can be written as
+disp("0 t<0")
+disp("I0=10^-6/T 0<t<T")
+disp("0 t>T")
+
+
+//For T=1s;
+T=1;
+I0=10^-6/T;
+printf("I0(1s)=%fA\n",I0);
+
+//For T=1ms;
+T=1*10^-3;
+I0=10^-6/T;
+printf("I0(1ms)=%0.3fA\n",I0);
+
+//For T=1us;
+T=1*10^-6;
+I0=10^-6/T;
+printf("I0(1us)=%dA",I0);
+
+
+
+
diff --git a/Working_Examples/154/DEPENDENCIES/ch7_2.sce b/Working_Examples/154/DEPENDENCIES/ch7_2.sce new file mode 100755 index 0000000..07e77b0 --- /dev/null +++ b/Working_Examples/154/DEPENDENCIES/ch7_2.sce @@ -0,0 +1,12 @@ +clc
+disp("Example 7.2")
+printf("\n")
+
+//Let wt=q
+q=-8:0.5:8
+v=5*cos (q)
+figure
+a= gca ();
+plot(q,v)
+xtitle ('v vs wt','wt','v ');
+a. thickness = 2;
diff --git a/Working_Examples/154/DEPENDENCIES/ch7_22.sce b/Working_Examples/154/DEPENDENCIES/ch7_22.sce new file mode 100755 index 0000000..b9cc022 --- /dev/null +++ b/Working_Examples/154/DEPENDENCIES/ch7_22.sce @@ -0,0 +1,20 @@ +clc
+disp("Example 7.22")
+printf("\n")
+
+//The general equation of exponential decay function is given by
+disp("v(t)=A*e(-t/T)+B")
+//We need to solve A and B
+//At t=0 we get v(0)=A+B (1)
+//at t=inf we get B=1 (2)
+//Solving (1) and (2)
+A=4;B=1;
+T=3;
+t=0:0.05:10
+v=4*exp(-t/T)+1;
+figure
+a= gca ();
+plot(t,v)
+xtitle ('v vs t','t','v');
+a. thickness = 2;
+
diff --git a/Working_Examples/154/DEPENDENCIES/ch7_23.sce b/Working_Examples/154/DEPENDENCIES/ch7_23.sce new file mode 100755 index 0000000..2109c67 --- /dev/null +++ b/Working_Examples/154/DEPENDENCIES/ch7_23.sce @@ -0,0 +1,33 @@ +clc
+disp("Example 7.23")
+printf("\n")
+
+//Sketch voltage 'v'
+t=-.001:0.00005:0
+t1=0:0.00005:.001
+T=1*10^-3;
+V0=10;
+v=V0*exp(t/T)
+v1=V0*exp(-t1/T)
+figure
+a= gca ();
+plot(t,v)
+plot(t1,v1)
+xtitle ('v vs t','t (ms)','v ');
+a. thickness = 2;
+
+//Sketch current 'i'
+t=-.001:0.00005:0
+t1=0:0.00005:.001
+T=1*10^-3;
+I0=10*10^-3;
+i=I0*exp(t/T)
+i1=-I0*exp(-t1/T)
+figure
+a= gca ();
+plot(t,i)
+plot(t1,i1)
+xtitle ('i vs wt','t (ms)','i (mA)');
+a. thickness = 2;
+
+
diff --git a/Working_Examples/154/DEPENDENCIES/ch7_25.sce b/Working_Examples/154/DEPENDENCIES/ch7_25.sce new file mode 100755 index 0000000..4d0c5da --- /dev/null +++ b/Working_Examples/154/DEPENDENCIES/ch7_25.sce @@ -0,0 +1,9 @@ +clc
+disp("Example 7.25")
+printf("\n")
+
+Xavg=(2+4+11+5+7+6+9+10+3+6+8+4+1+3+5+12)/16;
+//Let X=X^2eff
+X=(2^2+4^2+11^2+5^2+7^2+6^2+9^2+10^2+3^2+6^2+8^2+4^2+1^2+3^2+5^2+12^2)/16
+Xeff=sqrt(X);
+printf("Xavg=%d\n Xeff=%3.2f\n",Xavg,Xeff)
\ No newline at end of file diff --git a/Working_Examples/154/DEPENDENCIES/ch7_26.sce b/Working_Examples/154/DEPENDENCIES/ch7_26.sce new file mode 100755 index 0000000..8b76377 --- /dev/null +++ b/Working_Examples/154/DEPENDENCIES/ch7_26.sce @@ -0,0 +1,17 @@ +clc
+disp("Example 7.26")
+printf("\n")
+
+printf("Given")
+disp("Period =10s")
+disp("Interval is 1ms")
+disp("Voltage of binary signal is either 0.5 or -0.5")
+T=10;
+//During 10s period there are 10000 intervals of 1ms each
+//For calculating average equal number of intervals are considered at 0.5V and -0.5V
+vavg=(0.5*5000-0.5*5000)/10000
+//The effective value of v(t) is
+//Let V=V^2eff
+V=(0.5^2*5000+(-0.5)^2*5000)/10000
+Veff=sqrt(V)
+printf("vavg=%dV\nVeff=%3.2fV\n",vavg,Veff)
diff --git a/Working_Examples/154/DEPENDENCIES/ch7_3.sce b/Working_Examples/154/DEPENDENCIES/ch7_3.sce new file mode 100755 index 0000000..122832e --- /dev/null +++ b/Working_Examples/154/DEPENDENCIES/ch7_3.sce @@ -0,0 +1,12 @@ +clc
+disp("Example 7.3")
+printf("\n")
+
+t1=-10:0.05:10
+v=5*cos (%pi*t1/6+%pi/6)
+figure
+a= gca ();
+plot(t1,v)
+xtitle ('v vs %pi*t/6','%pi*t/6','v ');
+a. thickness = 2;
+
diff --git a/Working_Examples/154/DEPENDENCIES/ch7_5.sce b/Working_Examples/154/DEPENDENCIES/ch7_5.sce new file mode 100755 index 0000000..515f4b9 --- /dev/null +++ b/Working_Examples/154/DEPENDENCIES/ch7_5.sce @@ -0,0 +1,14 @@ +clc
+disp("Example 7.5")
+printf("\n")
+
+printf("Given")
+disp("v(t)=cos5t+3sin(3t+45)")
+//Finding the periods of individual terms
+disp("Period of cos5t=2*%pi/5")
+disp("Period of 3*sin(3t+45)=2*%pi/3")
+//If T=2*%pi
+T=2*%pi;
+disp("Now T=5*T1=3*T2")
+//Now the relation for T is the smallest common integral multiple of T1 and T2
+printf("Period = %3.2fs\n",T)
\ No newline at end of file diff --git a/Working_Examples/154/DEPENDENCIES/ch8_1.sce b/Working_Examples/154/DEPENDENCIES/ch8_1.sce new file mode 100755 index 0000000..fdc51d2 --- /dev/null +++ b/Working_Examples/154/DEPENDENCIES/ch8_1.sce @@ -0,0 +1,17 @@ +clc
+disp("Example 8.1")
+printf("\n")
+
+printf("Given")
+disp("Capacitance is 1uF")
+disp("Resistance is 1Mohm")
+disp("Voltage across capacitor is 10V")
+R=1*10^6;C=1*10^-6;V=10
+//Let T be time constant
+T=R*C
+//v(t)=V*exp(-t/T)
+disp("v(t)=10*exp(-t) (1)")
+//Substituting value of t=5 in (1)
+v5=10*exp(-5)
+printf("Time constant is %ds\n",T)
+printf("v(5)=%0.3fV\n",v5)
\ No newline at end of file diff --git a/Working_Examples/154/DEPENDENCIES/ch8_10.sce b/Working_Examples/154/DEPENDENCIES/ch8_10.sce new file mode 100755 index 0000000..3c081ca --- /dev/null +++ b/Working_Examples/154/DEPENDENCIES/ch8_10.sce @@ -0,0 +1,25 @@ +clc
+disp("Example 8.10")
+printf("\n")
+
+printf("Given")
+disp("vs= 5V t<0")
+disp("vs=5*sin(w*t) t>0")
+vs=5;
+R=5;L=10*10^-3;
+//At t<0
+//Inductor behaves as a short circuit
+//Let i(0-)=i
+i=vs/R;
+printf("i(0-)=%dA\n",i)
+//During the transition from t=0- to t=0+
+//Let i(0+)=i1
+i1=i
+printf("i(0+)=%dA\n",i1)
+//Applying KVL equation to the loop
+disp("vs=i*R+v")
+//Let v(0+)=v1 ; vs(0+)=vs1
+//From given vs(0+)=0
+vs1=0;
+v1=vs1-i*R
+printf("\nv(0+)=%dV\n",v1)
diff --git a/Working_Examples/154/DEPENDENCIES/ch9_11.sce b/Working_Examples/154/DEPENDENCIES/ch9_11.sce new file mode 100755 index 0000000..8563a90 --- /dev/null +++ b/Working_Examples/154/DEPENDENCIES/ch9_11.sce @@ -0,0 +1,16 @@ +clc
+disp("Example 9.11")
+printf("\n")
+
+//From figure 9.16
+//H(s)=V(s)/I(s)=Z(s)
+//Let V(s)=1 the H(s)=Z(s)
+s=%s
+z1=(1/2.5)+(3/(5*s))+(s/20)
+Z=1/z1
+Dem=Z('den')
+//The roots are
+q=roots(Dem)
+disp(q,"Poles are")
+
+
diff --git a/Working_Examples/154/DEPENDENCIES/ch9_6.sce b/Working_Examples/154/DEPENDENCIES/ch9_6.sce new file mode 100755 index 0000000..a063207 --- /dev/null +++ b/Working_Examples/154/DEPENDENCIES/ch9_6.sce @@ -0,0 +1,32 @@ +clc
+disp("Example 9.6")
+printf("\n")
+
+printf("Given")
+disp("Resistance is 10ohm and inductance is 2H")
+disp("Applied voltage is 10*exp(-2*t)*cos(10*t+30)")
+s=%s;
+//For a RL circuit
+//Applying KVL equation
+//v=i*R+L*d/dt(i) (1)
+//As v=10(30 deg) (2)
+//Equating (1) and (2)
+// Let i=I*exp(s*t) (3)
+// 10(30 deg)*exp(s*t)=10*I*exp(s*t)+2*s*I*exp(s*t)")
+//Solving for I
+disp("I=10(30 deg)/10+2*s")
+s=-2+%i*10
+a=10+2*s
+x=10*cos((30*%pi)/180);
+y=10*sin((30*%pi)/180);
+z=complex(x,y)
+I=z/a
+b=real(I);
+c=imag(I);
+magn=sqrt(b^2+c^2)
+ph=(atan(c/b)*180)/%pi
+//From (3)
+printf("\ni=%0.2f*exp(-2*t)*cos(10t%3.1f deg) (A)\n",magn,ph);
+
+
+
diff --git a/Working_Examples/154/DEPENDENCIES/ch9_7.sce b/Working_Examples/154/DEPENDENCIES/ch9_7.sce new file mode 100755 index 0000000..fe7c0cf --- /dev/null +++ b/Working_Examples/154/DEPENDENCIES/ch9_7.sce @@ -0,0 +1,31 @@ +clc
+disp("Example 9.7")
+printf("\n")
+
+printf("Given")
+disp("Resistance is 10ohm and Capacitance is 0.2F")
+disp("Applied voltage is 10*exp(-2*t)*cos(10*t+30)")
+s=%s;
+//For a RC circuit
+//Applying KVL equation
+//v=i*R+(1/C)*integrate(i*dt) (1)
+//As v=10(30 deg) (2)
+//Equating (1) and (2)
+// Let i=I*exp(s*t) (3)
+// 10(30 deg)*exp(s*t)=10*I*exp(s*t)+(5/s)*I*exp(s*t)")
+//Solving for I
+disp("I=10(30 deg)/10+(5/s)")
+s=-2+%i*10
+a=10+(5/s)
+x=10*cos((30*%pi)/180);
+y=10*sin((30*%pi)/180);
+z=complex(x,y)
+I=z/a
+b=real(I);
+c=imag(I);
+magn=sqrt(b^2+c^2)
+ph=(atan(c/b)*180)/%pi
+//From (3)
+printf("\ni=%0.2f*exp(-2*t)*cos(10t+%3.1f deg) (A)\n",magn,ph);
+
+
diff --git a/Working_Examples/154/DEPENDENCIES/ch9_8.sce b/Working_Examples/154/DEPENDENCIES/ch9_8.sce new file mode 100755 index 0000000..d9c67e9 --- /dev/null +++ b/Working_Examples/154/DEPENDENCIES/ch9_8.sce @@ -0,0 +1,18 @@ +clc
+disp("Example 9.8")
+printf("\n")
+
+s=%s ;
+
+//From figure 9.13
+disp("Z(s)=(2.5+((5*s/3)*(20/s))/(5*s/3+20/s))")
+//On solving
+z1=poly([12 8 1],'s','coeff')
+z2=poly([12 0 1],'s','coeff')
+Z=2.5*(z1/z2)
+disp(Z,"Z(s)")
+//H(s)=I(s)/Z(s)
+//Let I(s)=1 the H(s)=1/Z(s)
+H=(1/2.5)*(z2/z1)
+disp(H,"H(s)")
+
diff --git a/Working_Examples/154/DEPENDENCIES/ch9_9.sce b/Working_Examples/154/DEPENDENCIES/ch9_9.sce new file mode 100755 index 0000000..668b268 --- /dev/null +++ b/Working_Examples/154/DEPENDENCIES/ch9_9.sce @@ -0,0 +1,11 @@ +clc
+disp("Example 9.9")
+printf("\n")
+
+s=%s ;
+H=syslin ( 'c',(0.4*(s^2+12))/((s+2)*(s+6) ) ) ;
+evans (H,1)
+//If s=1Np/s
+H1=0.4*(1+12)/((1+2)*(1+6))
+printf("H(1)=%0.3f\n",H1)
+
\ No newline at end of file diff --git a/Working_Examples/215.zip b/Working_Examples/215.zip Binary files differnew file mode 100644 index 0000000..b688a21 --- /dev/null +++ b/Working_Examples/215.zip diff --git a/Working_Examples/215/CH10/EX10.1/Figure10_1.jpg b/Working_Examples/215/CH10/EX10.1/Figure10_1.jpg Binary files differnew file mode 100755 index 0000000..b04ab78 --- /dev/null +++ b/Working_Examples/215/CH10/EX10.1/Figure10_1.jpg diff --git a/Working_Examples/215/CH10/EX10.1/Figure10_1_xcos.jpg b/Working_Examples/215/CH10/EX10.1/Figure10_1_xcos.jpg Binary files differnew file mode 100755 index 0000000..64c6983 --- /dev/null +++ b/Working_Examples/215/CH10/EX10.1/Figure10_1_xcos.jpg diff --git a/Working_Examples/215/CH10/EX10.1/ex10_1.xcos b/Working_Examples/215/CH10/EX10.1/ex10_1.xcos new file mode 100755 index 0000000..a12314e --- /dev/null +++ b/Working_Examples/215/CH10/EX10.1/ex10_1.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" finalIntegrationTime="10.0" title="ex10_1"><!--Xcos - 1.0 - scilab-5.5.2 - 20160406 2040--><mxGraphModel as="model"><root><mxCell id="-1fad1256:134d7ff92c3:-7ffd"/><mxCell id="-1fad1256:134d7ff92c3:-7ffe" parent="-1fad1256:134d7ff92c3:-7ffd"/><BasicBlock dependsOnU="1" id="1f781c6f:13506286c0b:-7fd6" interfaceFunctionName="Resistor" ordering="1" parent="-1fad1256:134d7ff92c3:-7ffe" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="25"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="25.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="25.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="110.0" y="60.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1fad1256:134d7ff92c3:-7f87" ordering="1" parent="1f781c6f:13506286c0b:-7fd6" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1fad1256:134d7ff92c3:-7f86" ordering="1" parent="1f781c6f:13506286c0b:-7fd6" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><BasicBlock angle="90" dependsOnU="1" id="1f781c6f:13506286c0b:-7fd3" interfaceFunctionName="Resistor" ordering="2" parent="-1fad1256:134d7ff92c3:-7ffe" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="100"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="100.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="260.0" y="200.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1fad1256:134d7ff92c3:-7f83" ordering="1" parent="1f781c6f:13506286c0b:-7fd3" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10.0;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1fad1256:134d7ff92c3:-7f82" ordering="1" parent="1f781c6f:13506286c0b:-7fd3" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10.0;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><VoltageSensorBlock dependsOnU="1" id="1f781c6f:13506286c0b:-7fd0" interfaceFunctionName="VoltageSensor" ordering="2" parent="-1fad1256:134d7ff92c3:-7ffe" simulationFunctionName="VoltageSensor" simulationFunctionType="DEFAULT" style="VoltageSensor;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="VoltageSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="v"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="190.0" y="130.0"/></VoltageSensorBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1fad1256:134d7ff92c3:-7fbd" ordering="2" parent="1f781c6f:13506286c0b:-7fd0" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1fad1256:134d7ff92c3:-7fbc" ordering="1" parent="1f781c6f:13506286c0b:-7fd0" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1fad1256:134d7ff92c3:-7fbe" ordering="1" parent="1f781c6f:13506286c0b:-7fd0" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><Orientation as="orientation" value="SOUTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><GroundBlock dependsOnU="1" id="1f781c6f:13506286c0b:-7fcc" interfaceFunctionName="Ground" ordering="3" parent="-1fad1256:134d7ff92c3:-7ffe" simulationFunctionName="Ground" simulationFunctionType="DEFAULT" style="Ground;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Ground"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="150.0" y="320.0"/></GroundBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1fad1256:134d7ff92c3:-7fb5" ordering="1" parent="1f781c6f:13506286c0b:-7fcc" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><Orientation as="orientation" value="NORTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="1f781c6f:13506286c0b:-7fca" interfaceFunctionName="CSCOPE" ordering="4" parent="-1fad1256:134d7ff92c3:-7ffe" simulationFunctionName="cscope" simulationFunctionType="C_OR_FORTRAN" style="CSCOPE;flip=false;mirror=false"><ScilabString as="exprs" height="10" width="1"><data column="0" line="0" value="1 3 5 7 9 11 13 15"/><data column="0" line="1" value="-1"/><data column="0" line="2" value="[]"/><data column="0" line="3" value="[600;400]"/><data column="0" line="4" value="-9"/><data column="0" line="5" value="9"/><data column="0" line="6" value="10"/><data column="0" line="7" value="20"/><data column="0" line="8" value="0"/><data column="0" line="9" value=""/></ScilabString><ScilabDouble as="realParameters" height="4" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="-9.0"/><data column="0" line="2" realPart="9.0"/><data column="0" line="3" realPart="10.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="15" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="1.0"/><data column="0" line="4" realPart="3.0"/><data column="0" line="5" realPart="5.0"/><data column="0" line="6" realPart="7.0"/><data column="0" line="7" realPart="9.0"/><data column="0" line="8" realPart="11.0"/><data column="0" line="9" realPart="13.0"/><data column="0" line="10" realPart="15.0"/><data column="0" line="11" realPart="-1.0"/><data column="0" line="12" realPart="-1.0"/><data column="0" line="13" realPart="600.0"/><data column="0" line="14" realPart="400.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="740.0" y="180.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="-1fad1256:134d7ff92c3:-7f0a" ordering="1" parent="1f781c6f:13506286c0b:-7fca" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ControlPort dataType="UNKNOW_TYPE" id="-1fad1256:134d7ff92c3:-7f09" ordering="1" parent="1f781c6f:13506286c0b:-7fca" style="ControlPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><ImplicitLink id="-1fad1256:134d7ff92c3:-7fa3" parent="-1fad1256:134d7ff92c3:-7ffe" source="-1fad1256:134d7ff92c3:-7fde" target="-1fad1256:134d7ff92c3:-7f87"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="60.0" y="120.0"/><mxPoint as="targetPoint" x="110.0" y="80.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="60.0" y="80.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="1f781c6f:13506286c0b:-7fc4" ordering="5" parent="-1fad1256:134d7ff92c3:-7ffe" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="167.0" y="277.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-1fad1256:134d7ff92c3:-7f9d" ordering="1" parent="1f781c6f:13506286c0b:-7fc4" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-1fad1256:134d7ff92c3:-7f9c" ordering="2" parent="1f781c6f:13506286c0b:-7fc4" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-1fad1256:134d7ff92c3:-7f9e" ordering="1" parent="1f781c6f:13506286c0b:-7fc4" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-1fad1256:134d7ff92c3:-7f9b" parent="-1fad1256:134d7ff92c3:-7ffe" source="-1fad1256:134d7ff92c3:-7fdd" target="-1fad1256:134d7ff92c3:-7f9e"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="60.0" y="280.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-1fad1256:134d7ff92c3:-7fa0" parent="-1fad1256:134d7ff92c3:-7ffe" source="-1fad1256:134d7ff92c3:-7f9c" target="-1fad1256:134d7ff92c3:-7fb5"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="170.0" y="320.0"/><mxPoint as="targetPoint" x="170.0" y="280.0"/></mxGeometry></ImplicitLink><SplitBlock id="1f781c6f:13506286c0b:-7fbe" ordering="7" parent="-1fad1256:134d7ff92c3:-7ffe" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="177.0" y="77.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="-1fad1256:134d7ff92c3:-7f97" ordering="1" parent="1f781c6f:13506286c0b:-7fbe" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-1fad1256:134d7ff92c3:-7f96" ordering="1" parent="1f781c6f:13506286c0b:-7fbe" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-1fad1256:134d7ff92c3:-7f95" ordering="2" parent="1f781c6f:13506286c0b:-7fbe" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="-1fad1256:134d7ff92c3:-7f94" parent="-1fad1256:134d7ff92c3:-7ffe" source="-1fad1256:134d7ff92c3:-7f86" target="-1fad1256:134d7ff92c3:-7f97"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-1fad1256:134d7ff92c3:-7f93" parent="-1fad1256:134d7ff92c3:-7ffe" source="-1fad1256:134d7ff92c3:-7f96" target="-1fad1256:134d7ff92c3:-7f83"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="280.0" y="80.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-1fad1256:134d7ff92c3:-7f99" parent="-1fad1256:134d7ff92c3:-7ffe" source="-1fad1256:134d7ff92c3:-7f95" target="-1fad1256:134d7ff92c3:-7fbc"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="180.0" y="150.0"/><mxPoint as="targetPoint" x="180.0" y="80.0"/></mxGeometry></ImplicitLink><SplitBlock id="1f781c6f:13506286c0b:-7fb7" ordering="8" parent="-1fad1256:134d7ff92c3:-7ffe" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="207.0" y="277.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="-1fad1256:134d7ff92c3:-7f8f" ordering="1" parent="1f781c6f:13506286c0b:-7fb7" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-1fad1256:134d7ff92c3:-7f8e" ordering="1" parent="1f781c6f:13506286c0b:-7fb7" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-1fad1256:134d7ff92c3:-7f8d" ordering="2" parent="1f781c6f:13506286c0b:-7fb7" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="-1fad1256:134d7ff92c3:-7f8c" parent="-1fad1256:134d7ff92c3:-7ffe" source="-1fad1256:134d7ff92c3:-7f82" target="-1fad1256:134d7ff92c3:-7f8f"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="280.0" y="280.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-1fad1256:134d7ff92c3:-7f8b" parent="-1fad1256:134d7ff92c3:-7ffe" source="-1fad1256:134d7ff92c3:-7f9d" target="-1fad1256:134d7ff92c3:-7f8e"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-1fad1256:134d7ff92c3:-7f91" parent="-1fad1256:134d7ff92c3:-7ffe" source="-1fad1256:134d7ff92c3:-7fbe" target="-1fad1256:134d7ff92c3:-7f8d"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="210.0" y="170.0"/><mxPoint as="targetPoint" x="210.0" y="280.0"/></mxGeometry></ImplicitLink><BasicBlock angle="90" dependsOnU="1" id="1f781c6f:13506286c0b:-7fae" interfaceFunctionName="SineVoltage" ordering="6" parent="-1fad1256:134d7ff92c3:-7ffe" simulationFunctionName="SineVoltage" simulationFunctionType="DEFAULT" style="SineVoltage;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="5" width="1"><data column="0" line="0" value="8"/><data column="0" line="1" value="0"/><data column="0" line="2" value="1000/6.28"/><data column="0" line="3" value="0"/><data column="0" line="4" value="0"/></ScilabString><ScilabDouble as="realParameters" height="5" width="1"><data column="0" line="0" realPart="8.0"/><data column="0" line="1" realPart="0.0"/><data column="0" line="2" realPart="159.2356687898089"/><data column="0" line="3" realPart="0.0"/><data column="0" line="4" realPart="0.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="SineVoltage"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="5" width="1"><data column="0" line="0" value="V"/><data column="0" line="1" value="phase"/><data column="0" line="2" value="freqHz"/><data column="0" line="3" value="offset"/><data column="0" line="4" value="startTime"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="159.2356687898089"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="60.0" width="50.0" x="420.0" y="190.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1fad1256:134d7ff92c3:-7f1e" ordering="1" parent="1f781c6f:13506286c0b:-7fae" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1fad1256:134d7ff92c3:-7f1d" ordering="1" parent="1f781c6f:13506286c0b:-7fae" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="60.0"/></ImplicitOutputPort><BasicBlock dependsOnU="1" id="1f781c6f:13506286c0b:-7fab" interfaceFunctionName="Resistor" ordering="7" parent="-1fad1256:134d7ff92c3:-7ffe" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="20"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="20.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="20.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="510.0" y="110.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1fad1256:134d7ff92c3:-7f22" ordering="1" parent="1f781c6f:13506286c0b:-7fab" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1fad1256:134d7ff92c3:-7f21" ordering="1" parent="1f781c6f:13506286c0b:-7fab" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><BasicBlock angle="90" dependsOnU="1" id="1f781c6f:13506286c0b:-7fa8" interfaceFunctionName="Inductor" ordering="8" parent="-1fad1256:134d7ff92c3:-7ffe" simulationFunctionName="Inductor" simulationFunctionType="DEFAULT" style="Inductor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="0.03"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="0.03"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Inductor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="L"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.03"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="590.0" y="180.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1fad1256:134d7ff92c3:-7f26" ordering="1" parent="1f781c6f:13506286c0b:-7fa8" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1fad1256:134d7ff92c3:-7f25" ordering="1" parent="1f781c6f:13506286c0b:-7fa8" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitLink id="-1fad1256:134d7ff92c3:-7f5f" parent="-1fad1256:134d7ff92c3:-7ffe" source="-1fad1256:134d7ff92c3:-7f1e" target="-1fad1256:134d7ff92c3:-7f22"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="440.0" y="190.0"/><mxPoint as="targetPoint" x="500.0" y="130.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="440.0" y="130.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-1fad1256:134d7ff92c3:-7f5c" parent="-1fad1256:134d7ff92c3:-7ffe" source="-1fad1256:134d7ff92c3:-7f21" target="-1fad1256:134d7ff92c3:-7f26"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="610.0" y="190.0"/><mxPoint as="targetPoint" x="550.0" y="130.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="610.0" y="130.0"/></Array></mxGeometry></ImplicitLink><BasicBlock angle="90" dependsOnU="1" id="1f781c6f:13506286c0b:-7fa3" interfaceFunctionName="CurrentSensor" ordering="9" parent="-1fad1256:134d7ff92c3:-7ffe" simulationFunctionName="CurrentSensor" simulationFunctionType="DEFAULT" style="CurrentSensor;rotation=90;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CurrentSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="i"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="590.0" y="250.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1fad1256:134d7ff92c3:-7f50" ordering="2" parent="1f781c6f:13506286c0b:-7fa3" style="ExplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="26.0" y="40.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1fad1256:134d7ff92c3:-7f4f" ordering="1" parent="1f781c6f:13506286c0b:-7fa3" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1fad1256:134d7ff92c3:-7f51" ordering="1" parent="1f781c6f:13506286c0b:-7fa3" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="6.0" y="40.0"/></ImplicitOutputPort><ImplicitLink id="-1fad1256:134d7ff92c3:-7f4e" parent="-1fad1256:134d7ff92c3:-7ffe" source="-1fad1256:134d7ff92c3:-7f25" target="-1fad1256:134d7ff92c3:-7f4f"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="610.0" y="250.0"/><mxPoint as="targetPoint" x="610.0" y="220.0"/></mxGeometry></ImplicitLink><GroundBlock dependsOnU="1" id="1f781c6f:13506286c0b:-7f9e" interfaceFunctionName="Ground" ordering="10" parent="-1fad1256:134d7ff92c3:-7ffe" simulationFunctionName="Ground" simulationFunctionType="DEFAULT" style="Ground;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Ground"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="500.0" y="370.0"/></GroundBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1fad1256:134d7ff92c3:-7f44" ordering="1" parent="1f781c6f:13506286c0b:-7f9e" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><Orientation as="orientation" value="NORTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><SplitBlock id="1f781c6f:13506286c0b:-7f97" ordering="11" parent="-1fad1256:134d7ff92c3:-7ffe" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="517.0" y="327.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-1fad1256:134d7ff92c3:-7f32" ordering="1" parent="1f781c6f:13506286c0b:-7f97" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-1fad1256:134d7ff92c3:-7f31" ordering="2" parent="1f781c6f:13506286c0b:-7f97" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-1fad1256:134d7ff92c3:-7f33" ordering="1" parent="1f781c6f:13506286c0b:-7f97" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-1fad1256:134d7ff92c3:-7f30" parent="-1fad1256:134d7ff92c3:-7ffe" source="-1fad1256:134d7ff92c3:-7f1d" target="-1fad1256:134d7ff92c3:-7f33"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="440.0" y="330.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-1fad1256:134d7ff92c3:-7f2f" parent="-1fad1256:134d7ff92c3:-7ffe" source="-1fad1256:134d7ff92c3:-7f51" target="-1fad1256:134d7ff92c3:-7f32"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="600.0" y="330.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-1fad1256:134d7ff92c3:-7f35" parent="-1fad1256:134d7ff92c3:-7ffe" source="-1fad1256:134d7ff92c3:-7f31" target="-1fad1256:134d7ff92c3:-7f44"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="520.0" y="370.0"/><mxPoint as="targetPoint" x="520.0" y="330.0"/></mxGeometry></ImplicitLink><BasicBlock dependsOnU="1" id="1f781c6f:13506286c0b:-7f61" interfaceFunctionName="MUX" ordering="12" parent="-1fad1256:134d7ff92c3:-7ffe" simulationFunctionName="multiplex" simulationFunctionType="C_OR_FORTRAN" style="MUX;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="2"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="20.0" width="30.0" x="680.0" y="190.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="1f781c6f:13506286c0b:-7f5f" ordering="1" parent="1f781c6f:13506286c0b:-7f61" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ExplicitInputPort><ExplicitInputPort dataColumns="1" dataLines="-2" dataType="REAL_MATRIX" id="1f781c6f:13506286c0b:-7f5e" ordering="2" parent="1f781c6f:13506286c0b:-7f61" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitOutputPort dataColumns="1" dataLines="0" dataType="REAL_MATRIX" id="1f781c6f:13506286c0b:-7f60" ordering="1" parent="1f781c6f:13506286c0b:-7f61" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="30.0" y="6.0"/></ExplicitOutputPort><ExplicitLink id="1f781c6f:13506286c0b:-7f51" parent="-1fad1256:134d7ff92c3:-7ffe" source="-1fad1256:134d7ff92c3:-7f50" target="1f781c6f:13506286c0b:-7f5e"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="620.0" y="290.0"/><mxPoint as="targetPoint" x="670.0" y="210.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="620.0" y="310.0"/><mxPoint x="660.0" y="310.0"/><mxPoint x="660.0" y="210.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="1f781c6f:13506286c0b:-7f50" parent="-1fad1256:134d7ff92c3:-7ffe" source="-1fad1256:134d7ff92c3:-7fbd" target="1f781c6f:13506286c0b:-7f5f"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="230.0" y="150.0"/><mxPoint as="targetPoint" x="680.0" y="190.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="650.0" y="150.0"/><mxPoint x="660.0" y="150.0"/><mxPoint x="660.0" y="190.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="1f781c6f:13506286c0b:-7f4f" parent="-1fad1256:134d7ff92c3:-7ffe" source="1f781c6f:13506286c0b:-7f60" target="-1fad1256:134d7ff92c3:-7f0a"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="710.0" y="200.0"/><mxPoint as="targetPoint" x="740.0" y="200.0"/></mxGeometry></ExplicitLink><BasicBlock angle="90" dependsOnU="1" id="1f781c6f:13506286c0b:-7fd9" interfaceFunctionName="SineVoltage" ordering="13" parent="-1fad1256:134d7ff92c3:-7ffe" simulationFunctionName="SineVoltage" simulationFunctionType="DEFAULT" style="SineVoltage;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="5" width="1"><data column="0" line="0" value="10"/><data column="0" line="1" value="0"/><data column="0" line="2" value="1000/6.28"/><data column="0" line="3" value="0"/><data column="0" line="4" value="0"/></ScilabString><ScilabDouble as="realParameters" height="5" width="1"><data column="0" line="0" realPart="10.0"/><data column="0" line="1" realPart="0.0"/><data column="0" line="2" realPart="159.2356687898089"/><data column="0" line="3" realPart="0.0"/><data column="0" line="4" realPart="0.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="SineVoltage"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="5" width="1"><data column="0" line="0" value="V"/><data column="0" line="1" value="phase"/><data column="0" line="2" value="freqHz"/><data column="0" line="3" value="offset"/><data column="0" line="4" value="startTime"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="10.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="159.2356687898089"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="60.0" width="50.0" x="40.0" y="120.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1fad1256:134d7ff92c3:-7fde" ordering="1" parent="1f781c6f:13506286c0b:-7fd9" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1fad1256:134d7ff92c3:-7fdd" ordering="1" parent="1f781c6f:13506286c0b:-7fd9" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="60.0"/></ImplicitOutputPort><BasicBlock blockType="h" id="5635043b:13894cfb31b:-7b59" interfaceFunctionName="CLOCK_c" ordering="14" parent="-1fad1256:134d7ff92c3:-7ffe" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="179.0"/><data column="1" line="0" realPart="-210.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-2d357185:1669f6a7491:-7cfb"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-2d357185:1669f6a7491:-7cfb"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.1"/><data column="0" line="1" value="0.1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.1"/><data column="0" line="1" realPart="0.1"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.1"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-2d357185:1669f6a7491:-7cf9"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-2d357185:1669f6a7491:-7cf9"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="222.3773266666667"/><data column="1" line="0" realPart="-268.3333333333333"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="7.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="5.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-2d357185:1669f6a7491:-7cf6"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-2d357185:1669f6a7491:-7cf6"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="220.0"/><data column="0" line="2" realPart="232.8773266666667"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-44.0"/><data column="0" line="1" realPart="-300.0"/><data column="0" line="2" realPart="-257.3333333333333"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="231.71066000000005"/><data column="0" line="1" realPart="209.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-272.3333333333333"/><data column="0" line="1" realPart="-186.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="234.04399333333336"/><data column="0" line="1" realPart="260.71"/><data column="0" line="2" realPart="220.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-272.3333333333333"/><data column="0" line="1" realPart="-170.0"/><data column="0" line="2" realPart="-170.0"/><data column="0" line="3" realPart="4.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="740.0" y="100.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="5635043b:13894cfb31b:-7b58" ordering="1" parent="5635043b:13894cfb31b:-7b59" style="CommandPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><CommandControlLink id="5635043b:13894cfb31b:-7b55" parent="-1fad1256:134d7ff92c3:-7ffe" source="5635043b:13894cfb31b:-7b58" target="-1fad1256:134d7ff92c3:-7f09"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="760.0" y="144.0"/><mxPoint as="targetPoint" x="760.0" y="170.0"/></mxGeometry></CommandControlLink></root></mxGraphModel><mxCell as="defaultParent" id="-1fad1256:134d7ff92c3:-7ffe" parent="-1fad1256:134d7ff92c3:-7ffd"/></XcosDiagram>
\ No newline at end of file diff --git a/Working_Examples/215/CH10/EX10.10/Figure10_10.jpg b/Working_Examples/215/CH10/EX10.10/Figure10_10.jpg Binary files differnew file mode 100755 index 0000000..bf9ff43 --- /dev/null +++ b/Working_Examples/215/CH10/EX10.10/Figure10_10.jpg diff --git a/Working_Examples/215/CH10/EX10.10/Figure10_10_xcos.jpg b/Working_Examples/215/CH10/EX10.10/Figure10_10_xcos.jpg Binary files differnew file mode 100755 index 0000000..c67064c --- /dev/null +++ b/Working_Examples/215/CH10/EX10.10/Figure10_10_xcos.jpg diff --git a/Working_Examples/215/CH10/EX10.10/ex10_10.xcos b/Working_Examples/215/CH10/EX10.10/ex10_10.xcos new file mode 100755 index 0000000..f131113 --- /dev/null +++ b/Working_Examples/215/CH10/EX10.10/ex10_10.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" finalIntegrationTime="1.0" title="ex10_10"><!--Xcos - 1.0 - scilab-5.5.2 - 20160406 2040--><mxGraphModel as="model"><root><mxCell id="7a2a91ff:134d8462990:-7b7f"/><mxCell id="7a2a91ff:134d8462990:-7b80" parent="7a2a91ff:134d8462990:-7b7f"/><BasicBlock dependsOnU="1" id="7a2a91ff:134d8462990:-7a46" interfaceFunctionName="CSCOPE" ordering="1" parent="7a2a91ff:134d8462990:-7b80" simulationFunctionName="cscope" simulationFunctionType="C_OR_FORTRAN" style="CSCOPE;flip=false;mirror=false"><ScilabString as="exprs" height="10" width="1"><data column="0" line="0" value="1 3 5 7 9 11 13 15"/><data column="0" line="1" value="-1"/><data column="0" line="2" value="[]"/><data column="0" line="3" value="[600;400]"/><data column="0" line="4" value="-7"/><data column="0" line="5" value="7"/><data column="0" line="6" value="1"/><data column="0" line="7" value="20"/><data column="0" line="8" value="0"/><data column="0" line="9" value=""/></ScilabString><ScilabDouble as="realParameters" height="4" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="-7.0"/><data column="0" line="2" realPart="7.0"/><data column="0" line="3" realPart="1.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="15" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="1.0"/><data column="0" line="4" realPart="3.0"/><data column="0" line="5" realPart="5.0"/><data column="0" line="6" realPart="7.0"/><data column="0" line="7" realPart="9.0"/><data column="0" line="8" realPart="11.0"/><data column="0" line="9" realPart="13.0"/><data column="0" line="10" realPart="15.0"/><data column="0" line="11" realPart="-1.0"/><data column="0" line="12" realPart="-1.0"/><data column="0" line="13" realPart="600.0"/><data column="0" line="14" realPart="400.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="740.0" y="120.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="7a2a91ff:134d8462990:-7992" ordering="1" parent="7a2a91ff:134d8462990:-7a46" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ControlPort dataType="UNKNOW_TYPE" id="7a2a91ff:134d8462990:-7991" ordering="1" parent="7a2a91ff:134d8462990:-7a46" style="ControlPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><BasicBlock angle="270" dependsOnT="1" id="7a2a91ff:134d8462990:-7a43" interfaceFunctionName="CCS" ordering="2" parent="7a2a91ff:134d8462990:-7b80" simulationFunctionName="CCS" simulationFunctionType="DEFAULT" style="CCS;rotation=270;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CCS"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="Iin"/><data column="0" line="1" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="80.0" y="230.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="7a2a91ff:134d8462990:-7a41" ordering="1" parent="7a2a91ff:134d8462990:-7a43" style="ExplicitInputPort;align=center;verticalAlign=bottom;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="6.0" y="40.0"/></ExplicitInputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="7a2a91ff:134d8462990:-7a40" ordering="2" parent="7a2a91ff:134d8462990:-7a43" style="ImplicitInputPort;align=center;verticalAlign=bottom;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="26.0" y="40.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="7a2a91ff:134d8462990:-7a42" ordering="1" parent="7a2a91ff:134d8462990:-7a43" style="ImplicitOutputPort;align=center;verticalAlign=top;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitOutputPort><BasicBlock dependsOnT="1" id="7a2a91ff:134d8462990:-7a3f" interfaceFunctionName="GENSIN_f" ordering="3" parent="7a2a91ff:134d8462990:-7b80" simulationFunctionName="gensin" simulationFunctionType="DEFAULT" style="GENSIN_f;flip=false;mirror=false"><ScilabString as="exprs" height="3" width="1"><data column="0" line="0" value="1"/><data column="0" line="1" value="100"/><data column="0" line="2" value="0"/></ScilabString><ScilabDouble as="realParameters" height="3" width="1"><data column="0" line="0" realPart="1.0"/><data column="0" line="1" realPart="100.0"/><data column="0" line="2" realPart="0.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="60.0" width="80.0" x="10.0" y="310.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="7a2a91ff:134d8462990:-7a3e" ordering="1" parent="7a2a91ff:134d8462990:-7a3f" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="80.0" y="26.0"/></ExplicitOutputPort><ExplicitLink id="7a2a91ff:134d8462990:-7a3d" parent="7a2a91ff:134d8462990:-7b80" source="7a2a91ff:134d8462990:-7a3e" target="7a2a91ff:134d8462990:-7a41"><mxGeometry as="geometry" x="10.0" y="70.0"><mxPoint as="sourcePoint" x="80.0" y="340.0"/><mxPoint as="targetPoint" x="90.0" y="280.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="90.0" y="340.0"/></Array></mxGeometry></ExplicitLink><GroundBlock dependsOnU="1" id="7a2a91ff:134d8462990:-7a39" interfaceFunctionName="Ground" ordering="4" parent="7a2a91ff:134d8462990:-7b80" simulationFunctionName="Ground" simulationFunctionType="DEFAULT" style="Ground;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Ground"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="320.0" y="380.0"/></GroundBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="7a2a91ff:134d8462990:-7a38" ordering="1" parent="7a2a91ff:134d8462990:-7a39" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><Orientation as="orientation" value="NORTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock angle="90" dependsOnU="1" id="7a2a91ff:134d8462990:-7a34" interfaceFunctionName="Resistor" ordering="5" parent="7a2a91ff:134d8462990:-7b80" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="5"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="170.0" y="230.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="7a2a91ff:134d8462990:-7a32" ordering="1" parent="7a2a91ff:134d8462990:-7a34" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10.0;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="7a2a91ff:134d8462990:-7a33" ordering="1" parent="7a2a91ff:134d8462990:-7a34" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10.0;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><BasicBlock angle="90" dependsOnU="1" id="7a2a91ff:134d8462990:-7a31" interfaceFunctionName="Capacitor" ordering="6" parent="7a2a91ff:134d8462990:-7b80" simulationFunctionName="Capacitor" simulationFunctionType="DEFAULT" style="Capacitor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="2" width="1"><data column="0" line="0" value="10^-3"/><data column="0" line="1" value="0"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="0.001"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Capacitor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="2"><data column="0" line="0" value="C"/><data column="1" line="0" value="v"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.001"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="240.0" y="230.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="7a2a91ff:134d8462990:-7a2f" ordering="1" parent="7a2a91ff:134d8462990:-7a31" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10.0;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="7a2a91ff:134d8462990:-7a30" ordering="1" parent="7a2a91ff:134d8462990:-7a31" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10.0;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><BasicBlock angle="90" dependsOnU="1" id="7a2a91ff:134d8462990:-7a2e" interfaceFunctionName="Inductor" ordering="6" parent="7a2a91ff:134d8462990:-7b80" simulationFunctionName="Inductor" simulationFunctionType="DEFAULT" style="Inductor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="0.05"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="0.05"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Inductor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="L"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.05"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="410.0" y="240.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="7a2a91ff:134d8462990:-7a2c" ordering="1" parent="7a2a91ff:134d8462990:-7a2e" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10.0;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="7a2a91ff:134d8462990:-7a2d" ordering="1" parent="7a2a91ff:134d8462990:-7a2e" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10.0;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><BasicBlock angle="90" dependsOnU="1" id="7a2a91ff:134d8462990:-7a28" interfaceFunctionName="Resistor" ordering="7" parent="7a2a91ff:134d8462990:-7b80" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="10"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="10.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="10.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="510.0" y="240.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="7a2a91ff:134d8462990:-7a26" ordering="1" parent="7a2a91ff:134d8462990:-7a28" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="7a2a91ff:134d8462990:-7a27" ordering="1" parent="7a2a91ff:134d8462990:-7a28" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><BasicBlock angle="90" dependsOnT="1" id="7a2a91ff:134d8462990:-7a25" interfaceFunctionName="CCS" ordering="8" parent="7a2a91ff:134d8462990:-7b80" simulationFunctionName="CCS" simulationFunctionType="DEFAULT" style="CCS;rotation=90;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CCS"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="Iin"/><data column="0" line="1" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="610.0" y="230.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="7a2a91ff:134d8462990:-7a23" ordering="1" parent="7a2a91ff:134d8462990:-7a25" style="ExplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="6.0" y="-8.0"/></ExplicitInputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="7a2a91ff:134d8462990:-7a22" ordering="2" parent="7a2a91ff:134d8462990:-7a25" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="26.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="7a2a91ff:134d8462990:-7a24" ordering="1" parent="7a2a91ff:134d8462990:-7a25" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><SplitBlock id="7a2a91ff:134d8462990:-7a21" ordering="9" parent="7a2a91ff:134d8462990:-7b80" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="187.0" y="187.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="7a2a91ff:134d8462990:-7a20" ordering="1" parent="7a2a91ff:134d8462990:-7a21" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="7a2a91ff:134d8462990:-7a1f" ordering="1" parent="7a2a91ff:134d8462990:-7a21" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="7a2a91ff:134d8462990:-7a1e" ordering="2" parent="7a2a91ff:134d8462990:-7a21" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="7a2a91ff:134d8462990:-7a1d" parent="7a2a91ff:134d8462990:-7b80" source="7a2a91ff:134d8462990:-7a42" target="7a2a91ff:134d8462990:-7a20"><mxGeometry as="geometry" x="10.0" y="70.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="100.0" y="190.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="7a2a91ff:134d8462990:-7a1c" parent="7a2a91ff:134d8462990:-7b80" source="7a2a91ff:134d8462990:-7a1e" target="7a2a91ff:134d8462990:-7a32"><mxGeometry as="geometry" x="10.0" y="70.0"><mxPoint as="sourcePoint" x="190.0" y="230.0"/><mxPoint as="targetPoint" x="190.0" y="190.0"/></mxGeometry></ImplicitLink><SplitBlock id="7a2a91ff:134d8462990:-7a0f" ordering="10" parent="7a2a91ff:134d8462990:-7b80" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="187.0" y="337.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="7a2a91ff:134d8462990:-7a0e" ordering="1" parent="7a2a91ff:134d8462990:-7a0f" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="7a2a91ff:134d8462990:-7a0d" ordering="1" parent="7a2a91ff:134d8462990:-7a0f" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="7a2a91ff:134d8462990:-7a0c" ordering="2" parent="7a2a91ff:134d8462990:-7a0f" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="7a2a91ff:134d8462990:-7a0b" parent="7a2a91ff:134d8462990:-7b80" source="7a2a91ff:134d8462990:-7a0d" target="7a2a91ff:134d8462990:-7a40"><mxGeometry as="geometry" x="10.0" y="70.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="110.0" y="340.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="7a2a91ff:134d8462990:-7a0a" parent="7a2a91ff:134d8462990:-7b80" source="7a2a91ff:134d8462990:-7a33" target="7a2a91ff:134d8462990:-7a0c"><mxGeometry as="geometry" x="10.0" y="70.0"><mxPoint as="sourcePoint" x="190.0" y="270.0"/><mxPoint as="targetPoint" x="190.0" y="340.0"/></mxGeometry></ImplicitLink><SplitBlock id="7a2a91ff:134d8462990:-7a09" ordering="12" parent="7a2a91ff:134d8462990:-7b80" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="257.0" y="337.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="7a2a91ff:134d8462990:-7a08" ordering="1" parent="7a2a91ff:134d8462990:-7a09" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="7a2a91ff:134d8462990:-7a07" ordering="1" parent="7a2a91ff:134d8462990:-7a09" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="7a2a91ff:134d8462990:-7a06" ordering="2" parent="7a2a91ff:134d8462990:-7a09" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="7a2a91ff:134d8462990:-7a05" parent="7a2a91ff:134d8462990:-7b80" source="7a2a91ff:134d8462990:-7a07" target="7a2a91ff:134d8462990:-7a0e"><mxGeometry as="geometry" x="10.0" y="70.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="7a2a91ff:134d8462990:-7a04" parent="7a2a91ff:134d8462990:-7b80" source="7a2a91ff:134d8462990:-7a30" target="7a2a91ff:134d8462990:-7a06"><mxGeometry as="geometry" x="10.0" y="70.0"><mxPoint as="sourcePoint" x="260.0" y="270.0"/><mxPoint as="targetPoint" x="260.0" y="340.0"/></mxGeometry></ImplicitLink><SplitBlock id="7a2a91ff:134d8462990:-7a03" ordering="11" parent="7a2a91ff:134d8462990:-7b80" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="337.0" y="337.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="7a2a91ff:134d8462990:-7a02" ordering="1" parent="7a2a91ff:134d8462990:-7a03" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="7a2a91ff:134d8462990:-7a01" ordering="1" parent="7a2a91ff:134d8462990:-7a03" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="7a2a91ff:134d8462990:-7a00" ordering="2" parent="7a2a91ff:134d8462990:-7a03" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="7a2a91ff:134d8462990:-79ff" parent="7a2a91ff:134d8462990:-7b80" source="7a2a91ff:134d8462990:-7a01" target="7a2a91ff:134d8462990:-7a08"><mxGeometry as="geometry" x="10.0" y="70.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="7a2a91ff:134d8462990:-79fe" parent="7a2a91ff:134d8462990:-7b80" source="7a2a91ff:134d8462990:-7a00" target="7a2a91ff:134d8462990:-7a38"><mxGeometry as="geometry" x="10.0" y="70.0"><mxPoint as="sourcePoint" x="340.0" y="400.0"/><mxPoint as="targetPoint" x="340.0" y="340.0"/></mxGeometry></ImplicitLink><SplitBlock id="7a2a91ff:134d8462990:-79fd" ordering="12" parent="7a2a91ff:134d8462990:-7b80" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="427.0" y="337.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="7a2a91ff:134d8462990:-79fc" ordering="1" parent="7a2a91ff:134d8462990:-79fd" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="7a2a91ff:134d8462990:-79fb" ordering="1" parent="7a2a91ff:134d8462990:-79fd" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="7a2a91ff:134d8462990:-79fa" ordering="2" parent="7a2a91ff:134d8462990:-79fd" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="7a2a91ff:134d8462990:-79f9" parent="7a2a91ff:134d8462990:-7b80" source="7a2a91ff:134d8462990:-79fb" target="7a2a91ff:134d8462990:-7a02"><mxGeometry as="geometry" x="10.0" y="70.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="7a2a91ff:134d8462990:-79f8" parent="7a2a91ff:134d8462990:-7b80" source="7a2a91ff:134d8462990:-7a2d" target="7a2a91ff:134d8462990:-79fa"><mxGeometry as="geometry" x="10.0" y="70.0"><mxPoint as="sourcePoint" x="430.0" y="270.0"/><mxPoint as="targetPoint" x="430.0" y="340.0"/></mxGeometry></ImplicitLink><SplitBlock id="7a2a91ff:134d8462990:-79f7" ordering="13" parent="7a2a91ff:134d8462990:-7b80" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="527.0" y="337.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="7a2a91ff:134d8462990:-79f5" ordering="1" parent="7a2a91ff:134d8462990:-79f7" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="7a2a91ff:134d8462990:-79f4" ordering="2" parent="7a2a91ff:134d8462990:-79f7" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="7a2a91ff:134d8462990:-79f6" ordering="1" parent="7a2a91ff:134d8462990:-79f7" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="7a2a91ff:134d8462990:-79f3" parent="7a2a91ff:134d8462990:-7b80" source="7a2a91ff:134d8462990:-7a24" target="7a2a91ff:134d8462990:-79f6"><mxGeometry as="geometry" x="10.0" y="70.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="630.0" y="340.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="7a2a91ff:134d8462990:-79f2" parent="7a2a91ff:134d8462990:-7b80" source="7a2a91ff:134d8462990:-79f5" target="7a2a91ff:134d8462990:-79fc"><mxGeometry as="geometry" x="10.0" y="70.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="7a2a91ff:134d8462990:-79f1" parent="7a2a91ff:134d8462990:-7b80" source="7a2a91ff:134d8462990:-7a27" target="7a2a91ff:134d8462990:-79f4"><mxGeometry as="geometry" x="10.0" y="70.0"><mxPoint as="sourcePoint" x="530.0" y="270.0"/><mxPoint as="targetPoint" x="530.0" y="340.0"/></mxGeometry></ImplicitLink><SplitBlock id="7a2a91ff:134d8462990:-79f0" ordering="14" parent="7a2a91ff:134d8462990:-7b80" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="527.0" y="187.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="7a2a91ff:134d8462990:-79ee" ordering="1" parent="7a2a91ff:134d8462990:-79f0" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="7a2a91ff:134d8462990:-79ed" ordering="2" parent="7a2a91ff:134d8462990:-79f0" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="7a2a91ff:134d8462990:-79ef" ordering="1" parent="7a2a91ff:134d8462990:-79f0" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="7a2a91ff:134d8462990:-79ec" parent="7a2a91ff:134d8462990:-7b80" source="7a2a91ff:134d8462990:-79ee" target="7a2a91ff:134d8462990:-7a22"><mxGeometry as="geometry" x="10.0" y="70.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="640.0" y="190.0"/></Array></mxGeometry></ImplicitLink><BasicBlock dependsOnT="1" id="7a2a91ff:134d8462990:-79e5" interfaceFunctionName="GENSIN_f" ordering="15" parent="7a2a91ff:134d8462990:-7b80" simulationFunctionName="gensin" simulationFunctionType="DEFAULT" style="GENSIN_f;flip=false;mirror=false"><ScilabString as="exprs" height="3" width="1"><data column="0" line="0" value="0.5"/><data column="0" line="1" value="100"/><data column="0" line="2" value="-%pi/2"/></ScilabString><ScilabDouble as="realParameters" height="3" width="1"><data column="0" line="0" realPart="0.5"/><data column="0" line="1" realPart="100.0"/><data column="0" line="2" realPart="-1.5707963267948966"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="60.0" width="80.0" x="530.0" y="80.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="7a2a91ff:134d8462990:-79e4" ordering="1" parent="7a2a91ff:134d8462990:-79e5" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="80.0" y="26.0"/></ExplicitOutputPort><ExplicitLink id="7a2a91ff:134d8462990:-79e3" parent="7a2a91ff:134d8462990:-7b80" source="7a2a91ff:134d8462990:-79e4" target="7a2a91ff:134d8462990:-7a23"><mxGeometry as="geometry" x="10.0" y="40.0"><mxPoint as="sourcePoint" x="610.0" y="110.0"/><mxPoint as="targetPoint" x="620.0" y="200.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="620.0" y="110.0"/></Array></mxGeometry></ExplicitLink><TextBlock id="7a2a91ff:134d8462990:-79c1" parent="7a2a91ff:134d8462990:-7b80" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="In this problem omega(w)=100 rad/s is assumed"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="In this problem omega(w)=100 rad/s is assumed"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="In this problem omega(w)=100 rad/s is assumed"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="380.0" y="30.0"/></TextBlock><VoltageSensorBlock dependsOnU="1" id="7a2a91ff:134d8462990:-79b7" interfaceFunctionName="VoltageSensor" ordering="16" parent="7a2a91ff:134d8462990:-7b80" simulationFunctionName="VoltageSensor" simulationFunctionType="DEFAULT" style="VoltageSensor;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="VoltageSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="v"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="330.0" y="120.0"/></VoltageSensorBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="7a2a91ff:134d8462990:-79b5" ordering="2" parent="7a2a91ff:134d8462990:-79b7" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="7a2a91ff:134d8462990:-79b4" ordering="1" parent="7a2a91ff:134d8462990:-79b7" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="7a2a91ff:134d8462990:-79b6" ordering="1" parent="7a2a91ff:134d8462990:-79b7" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><Orientation as="orientation" value="SOUTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitLink id="7a2a91ff:134d8462990:-79ad" parent="7a2a91ff:134d8462990:-7b80" source="7a2a91ff:134d8462990:-79ed" target="7a2a91ff:134d8462990:-7a26"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="530.0" y="190.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="7a2a91ff:134d8462990:-79a3" ordering="19" parent="7a2a91ff:134d8462990:-7b80" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="257.0" y="187.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="7a2a91ff:134d8462990:-79a2" ordering="1" parent="7a2a91ff:134d8462990:-79a3" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="7a2a91ff:134d8462990:-79a1" ordering="1" parent="7a2a91ff:134d8462990:-79a3" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="7a2a91ff:134d8462990:-79a0" ordering="2" parent="7a2a91ff:134d8462990:-79a3" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="7a2a91ff:134d8462990:-799e" parent="7a2a91ff:134d8462990:-7b80" source="7a2a91ff:134d8462990:-79a1" target="7a2a91ff:134d8462990:-7a2f"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="7a2a91ff:134d8462990:-79a4" parent="7a2a91ff:134d8462990:-7b80" source="7a2a91ff:134d8462990:-79a0" target="7a2a91ff:134d8462990:-79b4"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="330.0" y="140.0"/><mxPoint as="targetPoint" x="260.0" y="190.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="260.0" y="140.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="7a2a91ff:134d8462990:-799c" ordering="17" parent="7a2a91ff:134d8462990:-7b80" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="427.0" y="187.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="7a2a91ff:134d8462990:-799b" ordering="1" parent="7a2a91ff:134d8462990:-799c" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="7a2a91ff:134d8462990:-799a" ordering="1" parent="7a2a91ff:134d8462990:-799c" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="7a2a91ff:134d8462990:-7999" ordering="2" parent="7a2a91ff:134d8462990:-799c" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="7a2a91ff:134d8462990:-7998" parent="7a2a91ff:134d8462990:-7b80" source="7a2a91ff:134d8462990:-79ef" target="7a2a91ff:134d8462990:-799b"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="7a2a91ff:134d8462990:-7997" parent="7a2a91ff:134d8462990:-7b80" source="7a2a91ff:134d8462990:-799a" target="7a2a91ff:134d8462990:-7a2c"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="7a2a91ff:134d8462990:-799d" parent="7a2a91ff:134d8462990:-7b80" source="7a2a91ff:134d8462990:-79b6" target="7a2a91ff:134d8462990:-7999"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="350.0" y="160.0"/><mxPoint as="targetPoint" x="430.0" y="190.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="430.0" y="180.0"/><mxPoint x="430.0" y="180.0"/></Array></mxGeometry></ImplicitLink><ExplicitLink id="7a2a91ff:134d8462990:-7996" parent="7a2a91ff:134d8462990:-7b80" source="7a2a91ff:134d8462990:-79b5" target="7a2a91ff:134d8462990:-7992"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="370.0" y="140.0"/><mxPoint as="targetPoint" x="740.0" y="140.0"/></mxGeometry></ExplicitLink><ImplicitLink id="7a2a91ff:134d8462990:-7957" parent="7a2a91ff:134d8462990:-7b80" source="7a2a91ff:134d8462990:-7a1f" target="7a2a91ff:134d8462990:-79a2"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="190.0" y="190.0"/><mxPoint x="260.0" y="190.0"/></Array></mxGeometry></ImplicitLink><BasicBlock blockType="h" id="5635043b:13894cfb31b:-78c4" interfaceFunctionName="CLOCK_c" ordering="18" parent="7a2a91ff:134d8462990:-7b80" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="319.0"/><data column="1" line="0" realPart="-350.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-2d357185:1669f6a7491:-7df9"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-2d357185:1669f6a7491:-7df9"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.1"/><data column="0" line="1" value="0.1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.1"/><data column="0" line="1" realPart="0.1"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.1"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-2d357185:1669f6a7491:-7df7"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-2d357185:1669f6a7491:-7df7"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="453.3773266666667"/><data column="1" line="0" realPart="-499.3333333333333"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="7.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="5.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-2d357185:1669f6a7491:-7df4"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-2d357185:1669f6a7491:-7df4"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="500.0"/><data column="0" line="2" realPart="463.8773266666667"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-44.0"/><data column="0" line="1" realPart="-580.0"/><data column="0" line="2" realPart="-488.3333333333333"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="462.71066"/><data column="0" line="1" realPart="349.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-503.3333333333333"/><data column="0" line="1" realPart="-326.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="465.0439933333334"/><data column="0" line="1" realPart="540.71"/><data column="0" line="2" realPart="500.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-503.3333333333333"/><data column="0" line="1" realPart="-450.0"/><data column="0" line="2" realPart="-450.0"/><data column="0" line="3" realPart="4.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="740.0" y="50.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="5635043b:13894cfb31b:-78c3" ordering="1" parent="5635043b:13894cfb31b:-78c4" style="CommandPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><CommandControlLink id="5635043b:13894cfb31b:-78c0" parent="7a2a91ff:134d8462990:-7b80" source="5635043b:13894cfb31b:-78c3" target="7a2a91ff:134d8462990:-7991"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="760.0" y="94.0"/><mxPoint as="targetPoint" x="760.0" y="120.0"/></mxGeometry></CommandControlLink></root></mxGraphModel><mxCell as="defaultParent" id="7a2a91ff:134d8462990:-7b80" parent="7a2a91ff:134d8462990:-7b7f"/></XcosDiagram>
\ No newline at end of file diff --git a/Working_Examples/215/CH10/EX10.11/Figure10_11.jpg b/Working_Examples/215/CH10/EX10.11/Figure10_11.jpg Binary files differnew file mode 100755 index 0000000..82469ab --- /dev/null +++ b/Working_Examples/215/CH10/EX10.11/Figure10_11.jpg diff --git a/Working_Examples/215/CH10/EX10.11/Figure10_11_xcos.jpg b/Working_Examples/215/CH10/EX10.11/Figure10_11_xcos.jpg Binary files differnew file mode 100755 index 0000000..30023ce --- /dev/null +++ b/Working_Examples/215/CH10/EX10.11/Figure10_11_xcos.jpg diff --git a/Working_Examples/215/CH10/EX10.11/ex10_11.xcos b/Working_Examples/215/CH10/EX10.11/ex10_11.xcos new file mode 100755 index 0000000..feadde9 --- /dev/null +++ b/Working_Examples/215/CH10/EX10.11/ex10_11.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" finalIntegrationTime="30.0" title="ex10_11"><!--Xcos - 1.0 - scilab-5.5.2 - 20160406 2040--><mxGraphModel as="model"><root><mxCell id="7a2a91ff:134d8462990:-7954"/><mxCell id="7a2a91ff:134d8462990:-7955" parent="7a2a91ff:134d8462990:-7954"/><BasicBlock angle="90" dependsOnU="1" id="6641adef:135055938d4:-7af7" interfaceFunctionName="Capacitor" ordering="1" parent="7a2a91ff:134d8462990:-7955" simulationFunctionName="Capacitor" simulationFunctionType="DEFAULT" style="Capacitor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="2" width="1"><data column="0" line="0" value="0.5"/><data column="0" line="1" value="0"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="0.5"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Capacitor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="2"><data column="0" line="0" value="C"/><data column="1" line="0" value="v"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.5"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="300.0" y="180.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="7a2a91ff:134d8462990:-78b9" ordering="1" parent="6641adef:135055938d4:-7af7" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="7a2a91ff:134d8462990:-78b8" ordering="1" parent="6641adef:135055938d4:-7af7" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><GroundBlock dependsOnU="1" id="6641adef:135055938d4:-7af4" interfaceFunctionName="Ground" ordering="2" parent="7a2a91ff:134d8462990:-7955" simulationFunctionName="Ground" simulationFunctionType="DEFAULT" style="Ground;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Ground"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="200.0" y="300.0"/></GroundBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="7a2a91ff:134d8462990:-792d" ordering="1" parent="6641adef:135055938d4:-7af4" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><Orientation as="orientation" value="NORTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="6641adef:135055938d4:-7af2" interfaceFunctionName="CurrentSensor" ordering="3" parent="7a2a91ff:134d8462990:-7955" simulationFunctionName="CurrentSensor" simulationFunctionType="DEFAULT" style="CurrentSensor;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CurrentSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="i"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="130.0" y="90.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="7a2a91ff:134d8462990:-7921" ordering="2" parent="6641adef:135055938d4:-7af2" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="26.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="7a2a91ff:134d8462990:-7920" ordering="1" parent="6641adef:135055938d4:-7af2" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="7a2a91ff:134d8462990:-7922" ordering="1" parent="6641adef:135055938d4:-7af2" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="6.0"/></ImplicitOutputPort><BasicBlock dependsOnU="1" id="6641adef:135055938d4:-7aee" interfaceFunctionName="Resistor" ordering="4" parent="7a2a91ff:134d8462990:-7955" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="10"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="10.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="10.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="230.0" y="80.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="7a2a91ff:134d8462990:-78b5" ordering="1" parent="6641adef:135055938d4:-7aee" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="7a2a91ff:134d8462990:-78b4" ordering="1" parent="6641adef:135055938d4:-7aee" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><BasicBlock angle="90" dependsOnT="1" id="6641adef:135055938d4:-7aeb" interfaceFunctionName="CCS" ordering="5" parent="7a2a91ff:134d8462990:-7955" simulationFunctionName="CCS" simulationFunctionType="DEFAULT" style="CCS;rotation=90;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CCS"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="Iin"/><data column="0" line="1" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="390.0" y="180.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="7a2a91ff:134d8462990:-790f" ordering="1" parent="6641adef:135055938d4:-7aeb" style="ExplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="6.0" y="-8.0"/></ExplicitInputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="7a2a91ff:134d8462990:-790e" ordering="2" parent="6641adef:135055938d4:-7aeb" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="26.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="7a2a91ff:134d8462990:-7910" ordering="1" parent="6641adef:135055938d4:-7aeb" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitLink id="7a2a91ff:134d8462990:-78f8" parent="7a2a91ff:134d8462990:-7955" source="7a2a91ff:134d8462990:-78b1" target="7a2a91ff:134d8462990:-7920"><mxGeometry as="geometry" y="40.0"><mxPoint as="sourcePoint" x="90.0" y="190.0"/><mxPoint as="targetPoint" x="120.0" y="110.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="90.0" y="110.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="7a2a91ff:134d8462990:-78f6" parent="7a2a91ff:134d8462990:-7955" source="7a2a91ff:134d8462990:-7922" target="7a2a91ff:134d8462990:-78b5"><mxGeometry as="geometry" y="40.0"><mxPoint as="sourcePoint" x="170.0" y="100.0"/><mxPoint as="targetPoint" x="230.0" y="100.0"/></mxGeometry></ImplicitLink><SplitBlock id="6641adef:135055938d4:-7ae5" ordering="6" parent="7a2a91ff:134d8462990:-7955" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="317.0" y="97.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="7a2a91ff:134d8462990:-78f1" ordering="1" parent="6641adef:135055938d4:-7ae5" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="7a2a91ff:134d8462990:-78f0" ordering="2" parent="6641adef:135055938d4:-7ae5" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="7a2a91ff:134d8462990:-78f2" ordering="1" parent="6641adef:135055938d4:-7ae5" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="7a2a91ff:134d8462990:-78ef" parent="7a2a91ff:134d8462990:-7955" source="7a2a91ff:134d8462990:-78b4" target="7a2a91ff:134d8462990:-78f2"><mxGeometry as="geometry" y="40.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="7a2a91ff:134d8462990:-78ee" parent="7a2a91ff:134d8462990:-7955" source="7a2a91ff:134d8462990:-78f1" target="7a2a91ff:134d8462990:-790e"><mxGeometry as="geometry" y="40.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="420.0" y="100.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="7a2a91ff:134d8462990:-78f4" parent="7a2a91ff:134d8462990:-7955" source="7a2a91ff:134d8462990:-78f0" target="7a2a91ff:134d8462990:-78b9"><mxGeometry as="geometry" y="40.0"><mxPoint as="sourcePoint" x="320.0" y="180.0"/><mxPoint as="targetPoint" x="320.0" y="100.0"/></mxGeometry></ImplicitLink><SplitBlock id="6641adef:135055938d4:-7ade" ordering="7" parent="7a2a91ff:134d8462990:-7955" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="317.0" y="257.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="7a2a91ff:134d8462990:-78e9" ordering="1" parent="6641adef:135055938d4:-7ade" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="7a2a91ff:134d8462990:-78e8" ordering="2" parent="6641adef:135055938d4:-7ade" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="7a2a91ff:134d8462990:-78ea" ordering="1" parent="6641adef:135055938d4:-7ade" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="7a2a91ff:134d8462990:-78e6" parent="7a2a91ff:134d8462990:-7955" source="7a2a91ff:134d8462990:-7910" target="7a2a91ff:134d8462990:-78e9"><mxGeometry as="geometry" y="40.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="410.0" y="260.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="7a2a91ff:134d8462990:-78ec" parent="7a2a91ff:134d8462990:-7955" source="7a2a91ff:134d8462990:-78b8" target="7a2a91ff:134d8462990:-78e8"><mxGeometry as="geometry" y="40.0"><mxPoint as="sourcePoint" x="320.0" y="220.0"/><mxPoint as="targetPoint" x="320.0" y="260.0"/></mxGeometry></ImplicitLink><SplitBlock id="6641adef:135055938d4:-7ad8" ordering="8" parent="7a2a91ff:134d8462990:-7955" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="217.0" y="257.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="7a2a91ff:134d8462990:-78e2" ordering="1" parent="6641adef:135055938d4:-7ad8" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="7a2a91ff:134d8462990:-78e1" ordering="2" parent="6641adef:135055938d4:-7ad8" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="7a2a91ff:134d8462990:-78e3" ordering="1" parent="6641adef:135055938d4:-7ad8" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="7a2a91ff:134d8462990:-78e0" parent="7a2a91ff:134d8462990:-7955" source="7a2a91ff:134d8462990:-78b0" target="7a2a91ff:134d8462990:-78e3"><mxGeometry as="geometry" y="40.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="90.0" y="260.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="7a2a91ff:134d8462990:-78df" parent="7a2a91ff:134d8462990:-7955" source="7a2a91ff:134d8462990:-78e2" target="7a2a91ff:134d8462990:-78ea"><mxGeometry as="geometry" y="40.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="7a2a91ff:134d8462990:-78e5" parent="7a2a91ff:134d8462990:-7955" source="7a2a91ff:134d8462990:-78e1" target="7a2a91ff:134d8462990:-792d"><mxGeometry as="geometry" y="40.0"><mxPoint as="sourcePoint" x="220.0" y="300.0"/><mxPoint as="targetPoint" x="220.0" y="260.0"/></mxGeometry></ImplicitLink><BasicBlock dependsOnT="1" id="6641adef:135055938d4:-7acf" interfaceFunctionName="GENSIN_f" ordering="9" parent="7a2a91ff:134d8462990:-7955" simulationFunctionName="gensin" simulationFunctionType="DEFAULT" style="GENSIN_f;flip=false;mirror=false"><ScilabString as="exprs" height="3" width="1"><data column="0" line="0" value="2"/><data column="0" line="1" value="5"/><data column="0" line="2" value="0"/></ScilabString><ScilabDouble as="realParameters" height="3" width="1"><data column="0" line="0" realPart="2.0"/><data column="0" line="1" realPart="5.0"/><data column="0" line="2" realPart="0.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="60.0" width="80.0" x="310.0" y="20.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="7a2a91ff:134d8462990:-78bc" ordering="1" parent="6641adef:135055938d4:-7acf" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="80.0" y="26.0"/></ExplicitOutputPort><ExplicitLink id="7a2a91ff:134d8462990:-78d0" parent="7a2a91ff:134d8462990:-7955" source="7a2a91ff:134d8462990:-78bc" target="7a2a91ff:134d8462990:-790f"><mxGeometry as="geometry" y="10.0"><mxPoint as="sourcePoint" x="400.0" y="50.0"/><mxPoint as="targetPoint" x="400.0" y="150.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="400.0" y="50.0"/></Array></mxGeometry></ExplicitLink><BasicBlock angle="90" dependsOnU="1" id="6641adef:135055938d4:-7acc" interfaceFunctionName="Capacitor" ordering="10" parent="7a2a91ff:134d8462990:-7955" simulationFunctionName="Capacitor" simulationFunctionType="DEFAULT" style="Capacitor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="2" width="1"><data column="0" line="0" value="0.2"/><data column="0" line="1" value="0"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="0.2"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Capacitor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="2"><data column="0" line="0" value="C"/><data column="1" line="0" value="v"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.2"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="180.0" y="480.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="7a2a91ff:134d8462990:-785b" ordering="1" parent="6641adef:135055938d4:-7acc" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="7a2a91ff:134d8462990:-785c" ordering="1" parent="6641adef:135055938d4:-7acc" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><BasicBlock angle="90" dependsOnU="1" id="6641adef:135055938d4:-7ac9" interfaceFunctionName="Capacitor" ordering="11" parent="7a2a91ff:134d8462990:-7955" simulationFunctionName="Capacitor" simulationFunctionType="DEFAULT" style="Capacitor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="2" width="1"><data column="0" line="0" value="0.5"/><data column="0" line="1" value="0"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="0.5"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Capacitor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="2"><data column="0" line="0" value="C"/><data column="1" line="0" value="v"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.5"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="410.0" y="490.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="7a2a91ff:134d8462990:-7858" ordering="1" parent="6641adef:135055938d4:-7ac9" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="7a2a91ff:134d8462990:-7859" ordering="1" parent="6641adef:135055938d4:-7ac9" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><GroundBlock dependsOnU="1" id="6641adef:135055938d4:-7ac6" interfaceFunctionName="Ground" ordering="12" parent="7a2a91ff:134d8462990:-7955" simulationFunctionName="Ground" simulationFunctionType="DEFAULT" style="Ground;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Ground"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="310.0" y="610.0"/></GroundBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="7a2a91ff:134d8462990:-7856" ordering="1" parent="6641adef:135055938d4:-7ac6" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><Orientation as="orientation" value="NORTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="6641adef:135055938d4:-7ac4" interfaceFunctionName="CurrentSensor" ordering="13" parent="7a2a91ff:134d8462990:-7955" simulationFunctionName="CurrentSensor" simulationFunctionType="DEFAULT" style="CurrentSensor;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CurrentSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="i"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="240.0" y="400.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="7a2a91ff:134d8462990:-7853" ordering="2" parent="6641adef:135055938d4:-7ac4" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="26.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="7a2a91ff:134d8462990:-7852" ordering="1" parent="6641adef:135055938d4:-7ac4" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="7a2a91ff:134d8462990:-7854" ordering="1" parent="6641adef:135055938d4:-7ac4" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="6.0"/></ImplicitOutputPort><BasicBlock dependsOnU="1" id="6641adef:135055938d4:-7ac0" interfaceFunctionName="Resistor" ordering="14" parent="7a2a91ff:134d8462990:-7955" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="10"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="10.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="10.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="340.0" y="390.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="7a2a91ff:134d8462990:-784f" ordering="1" parent="6641adef:135055938d4:-7ac0" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="7a2a91ff:134d8462990:-7850" ordering="1" parent="6641adef:135055938d4:-7ac0" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><BasicBlock angle="270" dependsOnT="1" id="6641adef:135055938d4:-7abd" interfaceFunctionName="CCS" ordering="15" parent="7a2a91ff:134d8462990:-7955" simulationFunctionName="CCS" simulationFunctionType="DEFAULT" style="CCS;rotation=270;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CCS"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="Iin"/><data column="0" line="1" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="100.0" y="460.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="7a2a91ff:134d8462990:-784c" ordering="1" parent="6641adef:135055938d4:-7abd" style="ExplicitInputPort;align=center;verticalAlign=bottom;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="6.0" y="40.0"/></ExplicitInputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="7a2a91ff:134d8462990:-784b" ordering="2" parent="6641adef:135055938d4:-7abd" style="ImplicitInputPort;align=center;verticalAlign=bottom;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="26.0" y="40.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="7a2a91ff:134d8462990:-784d" ordering="1" parent="6641adef:135055938d4:-7abd" style="ImplicitOutputPort;align=center;verticalAlign=top;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitOutputPort><ImplicitLink id="7a2a91ff:134d8462990:-7849" parent="7a2a91ff:134d8462990:-7955" source="7a2a91ff:134d8462990:-7854" target="7a2a91ff:134d8462990:-784f"><mxGeometry as="geometry" x="110.0" y="350.0"><mxPoint as="sourcePoint" x="280.0" y="410.0"/><mxPoint as="targetPoint" x="340.0" y="410.0"/></mxGeometry></ImplicitLink><SplitBlock id="6641adef:135055938d4:-7ab8" ordering="16" parent="7a2a91ff:134d8462990:-7955" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="327.0" y="567.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="7a2a91ff:134d8462990:-7839" ordering="1" parent="6641adef:135055938d4:-7ab8" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="7a2a91ff:134d8462990:-7838" ordering="2" parent="6641adef:135055938d4:-7ab8" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="7a2a91ff:134d8462990:-783a" ordering="1" parent="6641adef:135055938d4:-7ab8" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="7a2a91ff:134d8462990:-7835" parent="7a2a91ff:134d8462990:-7955" source="7a2a91ff:134d8462990:-7838" target="7a2a91ff:134d8462990:-7856"><mxGeometry as="geometry" x="110.0" y="350.0"><mxPoint as="sourcePoint" x="330.0" y="610.0"/><mxPoint as="targetPoint" x="330.0" y="570.0"/></mxGeometry></ImplicitLink><BasicBlock dependsOnT="1" id="6641adef:135055938d4:-7ab1" interfaceFunctionName="GENSIN_f" ordering="17" parent="7a2a91ff:134d8462990:-7955" simulationFunctionName="gensin" simulationFunctionType="DEFAULT" style="GENSIN_f;flip=false;mirror=false"><ScilabString as="exprs" height="3" width="1"><data column="0" line="0" value="5"/><data column="0" line="1" value="3"/><data column="0" line="2" value="0"/></ScilabString><ScilabDouble as="realParameters" height="3" width="1"><data column="0" line="0" realPart="5.0"/><data column="0" line="1" realPart="3.0"/><data column="0" line="2" realPart="0.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="60.0" width="80.0" x="10.0" y="510.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="7a2a91ff:134d8462990:-77d6" ordering="1" parent="6641adef:135055938d4:-7ab1" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="80.0" y="26.0"/></ExplicitOutputPort><ImplicitLink id="7a2a91ff:134d8462990:-77f5" parent="7a2a91ff:134d8462990:-7955" source="7a2a91ff:134d8462990:-7850" target="7a2a91ff:134d8462990:-7858"><mxGeometry as="geometry" x="100.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="430.0" y="410.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="7a2a91ff:134d8462990:-77f3" parent="7a2a91ff:134d8462990:-7955" source="7a2a91ff:134d8462990:-7859" target="7a2a91ff:134d8462990:-7839"><mxGeometry as="geometry" x="100.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="430.0" y="570.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="6641adef:135055938d4:-7aad" ordering="18" parent="7a2a91ff:134d8462990:-7955" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="197.0" y="417.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="7a2a91ff:134d8462990:-77e3" ordering="1" parent="6641adef:135055938d4:-7aad" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="7a2a91ff:134d8462990:-77e2" ordering="2" parent="6641adef:135055938d4:-7aad" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="7a2a91ff:134d8462990:-77e4" ordering="1" parent="6641adef:135055938d4:-7aad" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="7a2a91ff:134d8462990:-77e1" parent="7a2a91ff:134d8462990:-7955" source="7a2a91ff:134d8462990:-785b" target="7a2a91ff:134d8462990:-77e4"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="7a2a91ff:134d8462990:-77e0" parent="7a2a91ff:134d8462990:-7955" source="7a2a91ff:134d8462990:-77e3" target="7a2a91ff:134d8462990:-7852"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="7a2a91ff:134d8462990:-77e6" parent="7a2a91ff:134d8462990:-7955" source="7a2a91ff:134d8462990:-784d" target="7a2a91ff:134d8462990:-77e2"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="120.0" y="460.0"/><mxPoint as="targetPoint" x="200.0" y="420.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="120.0" y="420.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="6641adef:135055938d4:-7aa6" ordering="19" parent="7a2a91ff:134d8462990:-7955" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="197.0" y="567.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="7a2a91ff:134d8462990:-77dc" ordering="1" parent="6641adef:135055938d4:-7aa6" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="7a2a91ff:134d8462990:-77db" ordering="2" parent="6641adef:135055938d4:-7aa6" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="7a2a91ff:134d8462990:-77dd" ordering="1" parent="6641adef:135055938d4:-7aa6" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="7a2a91ff:134d8462990:-77da" parent="7a2a91ff:134d8462990:-7955" source="7a2a91ff:134d8462990:-785c" target="7a2a91ff:134d8462990:-77dd"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="7a2a91ff:134d8462990:-77d9" parent="7a2a91ff:134d8462990:-7955" source="7a2a91ff:134d8462990:-77dc" target="7a2a91ff:134d8462990:-783a"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="7a2a91ff:134d8462990:-77df" parent="7a2a91ff:134d8462990:-7955" source="7a2a91ff:134d8462990:-77db" target="7a2a91ff:134d8462990:-784b"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="130.0" y="500.0"/><mxPoint as="targetPoint" x="200.0" y="570.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="130.0" y="570.0"/></Array></mxGeometry></ImplicitLink><ExplicitLink id="7a2a91ff:134d8462990:-77d8" parent="7a2a91ff:134d8462990:-7955" source="7a2a91ff:134d8462990:-77d6" target="7a2a91ff:134d8462990:-784c"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="90.0" y="540.0"/><mxPoint as="targetPoint" x="110.0" y="510.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="110.0" y="540.0"/></Array></mxGeometry></ExplicitLink><BigSom dependsOnU="1" id="6641adef:135055938d4:-7a9e" interfaceFunctionName="BIGSOM_f" ordering="20" parent="7a2a91ff:134d8462990:-7955" simulationFunctionName="sum" simulationFunctionType="TYPE_2" style="BIGSOM_f;flip=false;mirror=false" value="+"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="[1;1]"/></ScilabString><ScilabDouble as="realParameters" height="2" width="1"><data column="0" line="0" realPart="1.0"/><data column="0" line="1" realPart="1.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="590.0" y="240.0"/></BigSom><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="7a2a91ff:134d8462990:-77c0" ordering="1" parent="6641adef:135055938d4:-7a9e" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ExplicitInputPort><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="7a2a91ff:134d8462990:-77bf" ordering="2" parent="6641adef:135055938d4:-7a9e" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="26.0"/></ExplicitInputPort><ExplicitOutputPort dataColumns="1" dataType="REAL_MATRIX" id="7a2a91ff:134d8462990:-77c1" ordering="1" parent="6641adef:135055938d4:-7a9e" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><BasicBlock dependsOnU="1" id="6641adef:135055938d4:-7a9a" interfaceFunctionName="POWBLK_f" ordering="21" parent="7a2a91ff:134d8462990:-7955" simulationFunctionName="powblk" simulationFunctionType="DEFAULT" style="POWBLK_f;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="2"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="50.0" width="50.0" x="670.0" y="240.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="7a2a91ff:134d8462990:-777b" ordering="1" parent="6641adef:135055938d4:-7a9a" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitOutputPort dataColumns="1" dataType="REAL_MATRIX" id="7a2a91ff:134d8462990:-777a" ordering="1" parent="6641adef:135055938d4:-7a9a" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="50.0" y="16.0"/></ExplicitOutputPort><ExplicitLink id="7a2a91ff:134d8462990:-77b2" parent="7a2a91ff:134d8462990:-7955" source="7a2a91ff:134d8462990:-77c1" target="7a2a91ff:134d8462990:-777b"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="630.0" y="260.0"/><mxPoint as="targetPoint" x="670.0" y="260.0"/></mxGeometry></ExplicitLink><BasicBlock dependsOnU="1" id="6641adef:135055938d4:-7a96" interfaceFunctionName="GAINBLK_f" ordering="22" parent="7a2a91ff:134d8462990:-7955" simulationFunctionName="gain" simulationFunctionType="DEFAULT" style="GAINBLK_f;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="10"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="10.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="50.0" width="40.0" x="760.0" y="240.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="7a2a91ff:134d8462990:-7777" ordering="1" parent="6641adef:135055938d4:-7a96" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="7a2a91ff:134d8462990:-7776" ordering="1" parent="6641adef:135055938d4:-7a96" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ExplicitLink id="7a2a91ff:134d8462990:-77a7" parent="7a2a91ff:134d8462990:-7955" source="7a2a91ff:134d8462990:-777a" target="7a2a91ff:134d8462990:-7777"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="720.0" y="260.0"/><mxPoint as="targetPoint" x="750.0" y="260.0"/></mxGeometry></ExplicitLink><BasicBlock dependsOnU="1" id="6641adef:135055938d4:-7a92" interfaceFunctionName="CSCOPE" ordering="23" parent="7a2a91ff:134d8462990:-7955" simulationFunctionName="cscope" simulationFunctionType="C_OR_FORTRAN" style="CSCOPE;flip=false;mirror=false"><ScilabString as="exprs" height="10" width="1"><data column="0" line="0" value="1 3 5 7 9 11 13 15"/><data column="0" line="1" value="-1"/><data column="0" line="2" value="[]"/><data column="0" line="3" value="[600;400]"/><data column="0" line="4" value="-1.5"/><data column="0" line="5" value="10"/><data column="0" line="6" value="30"/><data column="0" line="7" value="20"/><data column="0" line="8" value="0"/><data column="0" line="9" value=""/></ScilabString><ScilabDouble as="realParameters" height="4" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="-1.5"/><data column="0" line="2" realPart="10.0"/><data column="0" line="3" realPart="30.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="15" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="1.0"/><data column="0" line="4" realPart="3.0"/><data column="0" line="5" realPart="5.0"/><data column="0" line="6" realPart="7.0"/><data column="0" line="7" realPart="9.0"/><data column="0" line="8" realPart="11.0"/><data column="0" line="9" realPart="13.0"/><data column="0" line="10" realPart="15.0"/><data column="0" line="11" realPart="-1.0"/><data column="0" line="12" realPart="-1.0"/><data column="0" line="13" realPart="600.0"/><data column="0" line="14" realPart="400.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="890.0" y="240.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="6641adef:135055938d4:-7a22" ordering="1" parent="6641adef:135055938d4:-7a92" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ControlPort dataType="UNKNOW_TYPE" id="6641adef:135055938d4:-7a21" ordering="1" parent="6641adef:135055938d4:-7a92" style="ControlPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><BasicBlock dependsOnU="1" id="6641adef:135055938d4:-7a4d" interfaceFunctionName="MUX" ordering="24" parent="7a2a91ff:134d8462990:-7955" simulationFunctionName="multiplex" simulationFunctionType="C_OR_FORTRAN" style="MUX;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="3"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="20.0" width="30.0" x="830.0" y="250.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="6641adef:135055938d4:-7a48" ordering="1" parent="6641adef:135055938d4:-7a4d" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ExplicitInputPort><ExplicitInputPort dataColumns="1" dataLines="-2" dataType="REAL_MATRIX" id="6641adef:135055938d4:-7a47" ordering="2" parent="6641adef:135055938d4:-7a4d" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ExplicitInputPort><ExplicitInputPort dataColumns="1" dataLines="-3" dataType="REAL_MATRIX" id="6641adef:135055938d4:-7a46" ordering="3" parent="6641adef:135055938d4:-7a4d" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitOutputPort dataColumns="1" dataLines="0" dataType="REAL_MATRIX" id="6641adef:135055938d4:-7a45" ordering="1" parent="6641adef:135055938d4:-7a4d" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="30.0" y="6.0"/></ExplicitOutputPort><ExplicitLink id="6641adef:135055938d4:-7a34" parent="7a2a91ff:134d8462990:-7955" source="6641adef:135055938d4:-7a45" target="6641adef:135055938d4:-7a22"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="860.0" y="260.0"/><mxPoint as="targetPoint" x="880.0" y="260.0"/></mxGeometry></ExplicitLink><ExplicitLink id="6641adef:135055938d4:-7a33" parent="7a2a91ff:134d8462990:-7955" source="7a2a91ff:134d8462990:-7776" target="6641adef:135055938d4:-7a47"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="830.0" y="260.0"/><mxPoint as="targetPoint" x="810.0" y="260.0"/></mxGeometry></ExplicitLink><SplitBlock id="6641adef:135055938d4:-7a31" ordering="25" parent="7a2a91ff:134d8462990:-7955" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="527.0" y="357.0"/></SplitBlock><ExplicitOutputPort dataType="UNKNOW_TYPE" id="6641adef:135055938d4:-7a2f" ordering="1" parent="6641adef:135055938d4:-7a31" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="6641adef:135055938d4:-7a2e" ordering="2" parent="6641adef:135055938d4:-7a31" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ExplicitOutputPort><ExplicitInputPort dataType="UNKNOW_TYPE" id="6641adef:135055938d4:-7a30" ordering="1" parent="6641adef:135055938d4:-7a31" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ExplicitInputPort><ExplicitLink id="6641adef:135055938d4:-7a2d" parent="7a2a91ff:134d8462990:-7955" source="7a2a91ff:134d8462990:-7853" target="6641adef:135055938d4:-7a30"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="530.0" y="430.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="6641adef:135055938d4:-7a2c" parent="7a2a91ff:134d8462990:-7955" source="6641adef:135055938d4:-7a2f" target="7a2a91ff:134d8462990:-77bf"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="530.0" y="270.0"/><mxPoint x="550.0" y="270.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="6641adef:135055938d4:-7a32" parent="7a2a91ff:134d8462990:-7955" source="6641adef:135055938d4:-7a2e" target="6641adef:135055938d4:-7a46"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="830.0" y="270.0"/><mxPoint as="targetPoint" x="530.0" y="360.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="810.0" y="360.0"/><mxPoint x="810.0" y="270.0"/></Array></mxGeometry></ExplicitLink><SplitBlock id="6641adef:135055938d4:-7a2a" ordering="26" parent="7a2a91ff:134d8462990:-7955" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="527.0" y="167.0"/></SplitBlock><ExplicitOutputPort dataType="UNKNOW_TYPE" id="6641adef:135055938d4:-7a28" ordering="1" parent="6641adef:135055938d4:-7a2a" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="6641adef:135055938d4:-7a27" ordering="2" parent="6641adef:135055938d4:-7a2a" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ExplicitOutputPort><ExplicitInputPort dataType="UNKNOW_TYPE" id="6641adef:135055938d4:-7a29" ordering="1" parent="6641adef:135055938d4:-7a2a" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ExplicitInputPort><ExplicitLink id="6641adef:135055938d4:-7a26" parent="7a2a91ff:134d8462990:-7955" source="7a2a91ff:134d8462990:-7921" target="6641adef:135055938d4:-7a29"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="530.0" y="120.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="6641adef:135055938d4:-7a25" parent="7a2a91ff:134d8462990:-7955" source="6641adef:135055938d4:-7a28" target="7a2a91ff:134d8462990:-77c0"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="530.0" y="180.0"/><mxPoint x="530.0" y="250.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="6641adef:135055938d4:-7a2b" parent="7a2a91ff:134d8462990:-7955" source="6641adef:135055938d4:-7a27" target="6641adef:135055938d4:-7a48"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="830.0" y="250.0"/><mxPoint as="targetPoint" x="530.0" y="170.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="810.0" y="170.0"/><mxPoint x="810.0" y="250.0"/></Array></mxGeometry></ExplicitLink><BasicBlock angle="90" dependsOnU="1" id="6641adef:135055938d4:-7afa" interfaceFunctionName="Capacitor" ordering="27" parent="7a2a91ff:134d8462990:-7955" simulationFunctionName="Capacitor" simulationFunctionType="DEFAULT" style="Capacitor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="2" width="1"><data column="0" line="0" value="0.2"/><data column="0" line="1" value="0"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="0.2"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Capacitor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="2"><data column="0" line="0" value="C"/><data column="1" line="0" value="v"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.2"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="70.0" y="170.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="7a2a91ff:134d8462990:-78b1" ordering="1" parent="6641adef:135055938d4:-7afa" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="7a2a91ff:134d8462990:-78b0" ordering="1" parent="6641adef:135055938d4:-7afa" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><BasicBlock blockType="h" id="5635043b:13894cfb31b:-7837" interfaceFunctionName="CLOCK_c" ordering="28" parent="7a2a91ff:134d8462990:-7955" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="119.0"/><data column="1" line="0" realPart="-150.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="188b11dc:1670bf9a1ba:-7f53"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="188b11dc:1670bf9a1ba:-7f53"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.1"/><data column="0" line="1" value="0.1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.1"/><data column="0" line="1" realPart="0.1"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.1"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="188b11dc:1670bf9a1ba:-7f51"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="188b11dc:1670bf9a1ba:-7f51"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="123.3773266666667"/><data column="1" line="0" realPart="-169.33333333333331"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="7.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="5.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="188b11dc:1670bf9a1ba:-7f4e"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="188b11dc:1670bf9a1ba:-7f4e"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="100.0"/><data column="0" line="2" realPart="133.8773266666667"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-44.0"/><data column="0" line="1" realPart="-180.0"/><data column="0" line="2" realPart="-158.33333333333331"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="132.71066000000005"/><data column="0" line="1" realPart="149.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-173.33333333333331"/><data column="0" line="1" realPart="-126.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="135.04399333333336"/><data column="0" line="1" realPart="140.70999999999998"/><data column="0" line="2" realPart="100.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-173.33333333333331"/><data column="0" line="1" realPart="-50.0"/><data column="0" line="2" realPart="-50.0"/><data column="0" line="3" realPart="4.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="890.0" y="170.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="5635043b:13894cfb31b:-7836" ordering="1" parent="5635043b:13894cfb31b:-7837" style="CommandPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><CommandControlLink id="5635043b:13894cfb31b:-7833" parent="7a2a91ff:134d8462990:-7955" source="5635043b:13894cfb31b:-7836" target="6641adef:135055938d4:-7a21"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="910.0" y="214.0"/><mxPoint as="targetPoint" x="910.0" y="230.0"/></mxGeometry></CommandControlLink></root></mxGraphModel><mxCell as="defaultParent" id="7a2a91ff:134d8462990:-7955" parent="7a2a91ff:134d8462990:-7954"/></XcosDiagram>
\ No newline at end of file diff --git a/Working_Examples/215/CH10/EX10.4/ex10_4.sce b/Working_Examples/215/CH10/EX10.4/ex10_4.sce new file mode 100755 index 0000000..0d091c8 --- /dev/null +++ b/Working_Examples/215/CH10/EX10.4/ex10_4.sce @@ -0,0 +1,14 @@ +clc
+//Example 10.4
+//Determine phasor current and time-domain current
+printf("Given")
+disp('Voltage is 8(-50 deg),Frequency is 100rad/s,Inductance is 4H')
+L=4;
+w=100;
+Vamp=8;Vang=-50;
+//Let current be I
+Iamp=Vamp/(w*L)
+Iang=-90+Vang
+printf("I=%3.2f(%d deg) A \n",Iamp,Iang)
+//In time domain
+printf("i(t)=%3.2f *cos(%d*t%d) A",Iamp,w,Iang);
\ No newline at end of file diff --git a/Working_Examples/215/CH10/EX10.6/Figure10_6.jpg b/Working_Examples/215/CH10/EX10.6/Figure10_6.jpg Binary files differnew file mode 100755 index 0000000..a2686fa --- /dev/null +++ b/Working_Examples/215/CH10/EX10.6/Figure10_6.jpg diff --git a/Working_Examples/215/CH10/EX10.6/Figure10_6_xcos.jpg b/Working_Examples/215/CH10/EX10.6/Figure10_6_xcos.jpg Binary files differnew file mode 100755 index 0000000..4ecc4e8 --- /dev/null +++ b/Working_Examples/215/CH10/EX10.6/Figure10_6_xcos.jpg diff --git a/Working_Examples/215/CH10/EX10.6/ex10_6.xcos b/Working_Examples/215/CH10/EX10.6/ex10_6.xcos new file mode 100755 index 0000000..3a58d14 --- /dev/null +++ b/Working_Examples/215/CH10/EX10.6/ex10_6.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" finalIntegrationTime="10.0" title="ex10_6"><!--Xcos - 1.0 - scilab-5.5.2 - 20160406 2040--><mxGraphModel as="model"><root><mxCell id="-1fad1256:134d7ff92c3:-7ef8"/><mxCell id="-1fad1256:134d7ff92c3:-7ef9" parent="-1fad1256:134d7ff92c3:-7ef8"/><GroundBlock dependsOnU="1" id="-1fad1256:134d7ff92c3:-7ed1" interfaceFunctionName="Ground" ordering="2" parent="-1fad1256:134d7ff92c3:-7ef9" simulationFunctionName="Ground" simulationFunctionType="DEFAULT" style="Ground;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Ground"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="250.0" y="290.0"/></GroundBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1fad1256:134d7ff92c3:-7ed0" ordering="1" parent="-1fad1256:134d7ff92c3:-7ed1" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><Orientation as="orientation" value="NORTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock angle="90" dependsOnU="1" id="-1fad1256:134d7ff92c3:-7ec8" interfaceFunctionName="Inductor" ordering="3" parent="-1fad1256:134d7ff92c3:-7ef9" simulationFunctionName="Inductor" simulationFunctionType="DEFAULT" style="Inductor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="0.33333"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="0.33333"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Inductor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="L"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.33333"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="250.0" y="140.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1fad1256:134d7ff92c3:-7e55" ordering="1" parent="-1fad1256:134d7ff92c3:-7ec8" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10.0;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1fad1256:134d7ff92c3:-7e54" ordering="1" parent="-1fad1256:134d7ff92c3:-7ec8" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10.0;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><SplitBlock id="-1fad1256:134d7ff92c3:-7e86" ordering="8" parent="-1fad1256:134d7ff92c3:-7ef9" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="267.0" y="247.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="-1fad1256:134d7ff92c3:-7e85" ordering="1" parent="-1fad1256:134d7ff92c3:-7e86" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-1fad1256:134d7ff92c3:-7e84" ordering="1" parent="-1fad1256:134d7ff92c3:-7e86" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-1fad1256:134d7ff92c3:-7e83" ordering="2" parent="-1fad1256:134d7ff92c3:-7e86" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="-1fad1256:134d7ff92c3:-7e81" parent="-1fad1256:134d7ff92c3:-7ef9" source="-1fad1256:134d7ff92c3:-7eab" target="-1fad1256:134d7ff92c3:-7e84"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="400.0" y="250.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="-1fad1256:134d7ff92c3:-7e7f" ordering="9" parent="-1fad1256:134d7ff92c3:-7ef9" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="267.0" y="247.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="-1fad1256:134d7ff92c3:-7e7e" ordering="1" parent="-1fad1256:134d7ff92c3:-7e7f" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-1fad1256:134d7ff92c3:-7e7d" ordering="1" parent="-1fad1256:134d7ff92c3:-7e7f" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-1fad1256:134d7ff92c3:-7e7c" ordering="2" parent="-1fad1256:134d7ff92c3:-7e7f" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="-1fad1256:134d7ff92c3:-7e7b" parent="-1fad1256:134d7ff92c3:-7ef9" source="-1fad1256:134d7ff92c3:-7e54" target="-1fad1256:134d7ff92c3:-7e7e"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-1fad1256:134d7ff92c3:-7e7a" parent="-1fad1256:134d7ff92c3:-7ef9" source="-1fad1256:134d7ff92c3:-7e83" target="-1fad1256:134d7ff92c3:-7e7d"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-1fad1256:134d7ff92c3:-7e80" parent="-1fad1256:134d7ff92c3:-7ef9" source="-1fad1256:134d7ff92c3:-7e7c" target="-1fad1256:134d7ff92c3:-7ed0"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="270.0" y="290.0"/><mxPoint as="targetPoint" x="270.0" y="250.0"/></mxGeometry></ImplicitLink><BasicBlock dependsOnU="1" id="-1fad1256:134d7ff92c3:-7e72" interfaceFunctionName="CSCOPE" ordering="10" parent="-1fad1256:134d7ff92c3:-7ef9" simulationFunctionName="cscope" simulationFunctionType="C_OR_FORTRAN" style="CSCOPE;flip=false;mirror=false"><ScilabString as="exprs" height="10" width="1"><data column="0" line="0" value="1 3 5 7 9 11 13 15"/><data column="0" line="1" value="-1"/><data column="0" line="2" value="[]"/><data column="0" line="3" value="[600;400]"/><data column="0" line="4" value="-.016"/><data column="0" line="5" value=".016"/><data column="0" line="6" value="10"/><data column="0" line="7" value="20"/><data column="0" line="8" value="0"/><data column="0" line="9" value=""/></ScilabString><ScilabDouble as="realParameters" height="4" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="-0.016"/><data column="0" line="2" realPart="0.016"/><data column="0" line="3" realPart="10.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="15" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="1.0"/><data column="0" line="4" realPart="3.0"/><data column="0" line="5" realPart="5.0"/><data column="0" line="6" realPart="7.0"/><data column="0" line="7" realPart="9.0"/><data column="0" line="8" realPart="11.0"/><data column="0" line="9" realPart="13.0"/><data column="0" line="10" realPart="15.0"/><data column="0" line="11" realPart="-1.0"/><data column="0" line="12" realPart="-1.0"/><data column="0" line="13" realPart="600.0"/><data column="0" line="14" realPart="400.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="450.0" y="90.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="-1fad1256:134d7ff92c3:-7e4d" ordering="1" parent="-1fad1256:134d7ff92c3:-7e72" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ControlPort dataType="UNKNOW_TYPE" id="-1fad1256:134d7ff92c3:-7e4c" ordering="1" parent="-1fad1256:134d7ff92c3:-7e72" style="ControlPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><BasicBlock angle="90" dependsOnU="1" id="-1fad1256:134d7ff92c3:-7ee6" interfaceFunctionName="Capacitor" ordering="11" parent="-1fad1256:134d7ff92c3:-7ef9" simulationFunctionName="Capacitor" simulationFunctionType="DEFAULT" style="Capacitor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="2" width="1"><data column="0" line="0" value="0.16666e-6"/><data column="0" line="1" value="0"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="1.6666E-7"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Capacitor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="2"><data column="0" line="0" value="C"/><data column="1" line="0" value="v"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.6666E-7"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="380.0" y="140.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1fad1256:134d7ff92c3:-7eac" ordering="1" parent="-1fad1256:134d7ff92c3:-7ee6" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1fad1256:134d7ff92c3:-7eab" ordering="1" parent="-1fad1256:134d7ff92c3:-7ee6" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><BasicBlock blockType="h" id="5635043b:13894cfb31b:-7b18" interfaceFunctionName="CLOCK_c" ordering="12" parent="-1fad1256:134d7ff92c3:-7ef9" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="439.0"/><data column="1" line="0" realPart="-470.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-2d357185:1669f6a7491:-7c79"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-2d357185:1669f6a7491:-7c79"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.1"/><data column="0" line="1" value="0.1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.1"/><data column="0" line="1" realPart="0.1"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.1"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-2d357185:1669f6a7491:-7c77"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-2d357185:1669f6a7491:-7c77"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="651.3773266666667"/><data column="1" line="0" realPart="-697.3333333333333"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="7.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="5.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-2d357185:1669f6a7491:-7c74"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-2d357185:1669f6a7491:-7c74"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="740.0"/><data column="0" line="2" realPart="661.8773266666667"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-44.0"/><data column="0" line="1" realPart="-820.0"/><data column="0" line="2" realPart="-686.3333333333333"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="660.7106600000001"/><data column="0" line="1" realPart="469.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-701.3333333333333"/><data column="0" line="1" realPart="-446.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="663.0439933333333"/><data column="0" line="1" realPart="780.71"/><data column="0" line="2" realPart="740.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-701.3333333333333"/><data column="0" line="1" realPart="-690.0"/><data column="0" line="2" realPart="-690.0"/><data column="0" line="3" realPart="4.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="450.0" y="20.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="5635043b:13894cfb31b:-7b17" ordering="1" parent="5635043b:13894cfb31b:-7b18" style="CommandPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><CommandControlLink id="5635043b:13894cfb31b:-7b14" parent="-1fad1256:134d7ff92c3:-7ef9" source="5635043b:13894cfb31b:-7b17" target="-1fad1256:134d7ff92c3:-7e4c"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="470.0" y="64.0"/><mxPoint as="targetPoint" x="470.0" y="80.0"/></mxGeometry></CommandControlLink><BasicBlock angle="90" dependsOnU="1" id="188b11dc:1670bf9a1ba:-7ee4" interfaceFunctionName="SineVoltage" parent="-1fad1256:134d7ff92c3:-7ef9" simulationFunctionName="SineVoltage" simulationFunctionType="DEFAULT" style="SineVoltage;rotation=90"><ScilabString as="exprs" height="5" width="1"><data column="0" line="0" value="40"/><data column="0" line="1" value="0"/><data column="0" line="2" value="3000/6.28"/><data column="0" line="3" value="0"/><data column="0" line="4" value="0"/></ScilabString><ScilabDouble as="realParameters" height="5" width="1"><data column="0" line="0" realPart="40.0"/><data column="0" line="1" realPart="0.0"/><data column="0" line="2" realPart="477.7070063694267"/><data column="0" line="3" realPart="0.0"/><data column="0" line="4" realPart="0.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="SineVoltage"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="5" width="1"><data column="0" line="0" value="V"/><data column="0" line="1" value="phase"/><data column="0" line="2" value="freqHz"/><data column="0" line="3" value="offset"/><data column="0" line="4" value="startTime"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="40.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="477.7070063694267"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="50.0" width="50.0" x="40.0" y="150.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="188b11dc:1670bf9a1ba:-7edd" ordering="1" parent="188b11dc:1670bf9a1ba:-7ee4" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10.0;rotation=90" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="188b11dc:1670bf9a1ba:-7edc" ordering="1" parent="188b11dc:1670bf9a1ba:-7ee4" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10.0;rotation=90" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="50.0"/></ImplicitOutputPort><ImplicitLink id="188b11dc:1670bf9a1ba:-7ed3" parent="-1fad1256:134d7ff92c3:-7ef9" source="188b11dc:1670bf9a1ba:-7edc" target="-1fad1256:134d7ff92c3:-7e85"><mxGeometry as="geometry"><Array as="points" scilabClass=""><mxPoint x="60.0" y="250.0"/></Array></mxGeometry></ImplicitLink><BasicBlock dependsOnU="1" id="188b11dc:1670bf9a1ba:-7ec5" interfaceFunctionName="CurrentSensor" parent="-1fad1256:134d7ff92c3:-7ef9" simulationFunctionName="CurrentSensor" simulationFunctionType="DEFAULT" style="CurrentSensor"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CurrentSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="i"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="100.0" y="80.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="188b11dc:1670bf9a1ba:-7ec4" ordering="1" parent="188b11dc:1670bf9a1ba:-7ec5" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="188b11dc:1670bf9a1ba:-7ec3" ordering="1" parent="188b11dc:1670bf9a1ba:-7ec5" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="6.0"/></ImplicitOutputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="188b11dc:1670bf9a1ba:-7ec2" ordering="2" parent="188b11dc:1670bf9a1ba:-7ec5" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="26.0"/></ExplicitOutputPort><ExplicitLink id="188b11dc:1670bf9a1ba:-7ebc" parent="-1fad1256:134d7ff92c3:-7ef9" source="188b11dc:1670bf9a1ba:-7ec2" target="-1fad1256:134d7ff92c3:-7e4d"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="140.0" y="110.0"/><mxPoint as="targetPoint" x="440.0" y="110.0"/></mxGeometry></ExplicitLink><ImplicitLink id="188b11dc:1670bf9a1ba:-7ebb" parent="-1fad1256:134d7ff92c3:-7ef9" source="188b11dc:1670bf9a1ba:-7ec4" target="188b11dc:1670bf9a1ba:-7edd"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="100.0" y="100.0"/><mxPoint as="targetPoint" x="60.0" y="140.0"/><Array as="points" scilabClass=""><mxPoint x="60.0" y="100.0"/><mxPoint x="60.0" y="150.0"/></Array></mxGeometry></ImplicitLink><BasicBlock dependsOnU="1" id="188b11dc:1670bf9a1ba:-7eb4" interfaceFunctionName="Resistor" parent="-1fad1256:134d7ff92c3:-7ef9" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="1500"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="1500.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1500.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="20.0" width="40.0" x="180.0" y="80.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="188b11dc:1670bf9a1ba:-7ea3" ordering="1" parent="188b11dc:1670bf9a1ba:-7eb4" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="188b11dc:1670bf9a1ba:-7ea2" ordering="1" parent="188b11dc:1670bf9a1ba:-7eb4" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="6.0"/></ImplicitOutputPort><ImplicitLink id="188b11dc:1670bf9a1ba:-7ead" parent="-1fad1256:134d7ff92c3:-7ef9" source="188b11dc:1670bf9a1ba:-7ec3" target="188b11dc:1670bf9a1ba:-7ea3"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="140.0" y="90.0"/><mxPoint as="targetPoint" x="180.0" y="90.0"/></mxGeometry></ImplicitLink><BasicBlock dependsOnU="1" id="188b11dc:1670bf9a1ba:-7e9d" interfaceFunctionName="Resistor" parent="-1fad1256:134d7ff92c3:-7ef9" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="1000"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="1000.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1000.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="20.0" width="40.0" x="310.0" y="80.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="188b11dc:1670bf9a1ba:-7e7f" ordering="1" parent="188b11dc:1670bf9a1ba:-7e9d" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="188b11dc:1670bf9a1ba:-7e7e" ordering="1" parent="188b11dc:1670bf9a1ba:-7e9d" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="6.0"/></ImplicitOutputPort><SplitBlock id="188b11dc:1670bf9a1ba:-7e95" interfaceFunctionName="IMPSPLIT_f" parent="-1fad1256:134d7ff92c3:-7ef9" simulationFunctionType="DEFAULT" style="IMPSPLIT_f"><mxGeometry as="geometry" height="7.0" width="7.0" x="267.0" y="87.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="188b11dc:1670bf9a1ba:-7e94" ordering="1" parent="188b11dc:1670bf9a1ba:-7e95" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="188b11dc:1670bf9a1ba:-7e93" ordering="1" parent="188b11dc:1670bf9a1ba:-7e95" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="188b11dc:1670bf9a1ba:-7e92" ordering="2" parent="188b11dc:1670bf9a1ba:-7e95" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="188b11dc:1670bf9a1ba:-7e91" parent="-1fad1256:134d7ff92c3:-7ef9" source="188b11dc:1670bf9a1ba:-7ea2" target="188b11dc:1670bf9a1ba:-7e94"><mxGeometry as="geometry"><Array as="points" scilabClass=""/></mxGeometry></ImplicitLink><ImplicitLink id="188b11dc:1670bf9a1ba:-7e90" parent="-1fad1256:134d7ff92c3:-7ef9" source="188b11dc:1670bf9a1ba:-7e93" target="-1fad1256:134d7ff92c3:-7e55"><mxGeometry as="geometry"><Array as="points" scilabClass=""><mxPoint x="270.0" y="90.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="188b11dc:1670bf9a1ba:-7e96" parent="-1fad1256:134d7ff92c3:-7ef9" source="188b11dc:1670bf9a1ba:-7e92" target="188b11dc:1670bf9a1ba:-7e7f"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="310.0" y="90.0"/><mxPoint as="targetPoint" x="270.0" y="90.0"/></mxGeometry></ImplicitLink><ImplicitLink id="188b11dc:1670bf9a1ba:-7e8f" parent="-1fad1256:134d7ff92c3:-7ef9" source="188b11dc:1670bf9a1ba:-7e7e" target="-1fad1256:134d7ff92c3:-7eac"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="350.0" y="90.0"/><mxPoint as="targetPoint" x="400.0" y="140.0"/><Array as="points" scilabClass=""><mxPoint x="400.0" y="90.0"/></Array></mxGeometry></ImplicitLink></root></mxGraphModel><mxCell as="defaultParent" id="-1fad1256:134d7ff92c3:-7ef9" parent="-1fad1256:134d7ff92c3:-7ef8"/></XcosDiagram>
\ No newline at end of file diff --git a/Working_Examples/215/CH10/EX10.7/Figure10_7.jpg b/Working_Examples/215/CH10/EX10.7/Figure10_7.jpg Binary files differnew file mode 100755 index 0000000..d7cdd23 --- /dev/null +++ b/Working_Examples/215/CH10/EX10.7/Figure10_7.jpg diff --git a/Working_Examples/215/CH10/EX10.7/Figure10_7_xcos.jpg b/Working_Examples/215/CH10/EX10.7/Figure10_7_xcos.jpg Binary files differnew file mode 100755 index 0000000..6b5f2f0 --- /dev/null +++ b/Working_Examples/215/CH10/EX10.7/Figure10_7_xcos.jpg diff --git a/Working_Examples/215/CH10/EX10.7/ex10_7.xcos b/Working_Examples/215/CH10/EX10.7/ex10_7.xcos new file mode 100755 index 0000000..3850004 --- /dev/null +++ b/Working_Examples/215/CH10/EX10.7/ex10_7.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" finalIntegrationTime="1.0" title="ex10_7"><!--Xcos - 1.0 - scilab-5.5.2 - 20160406 2040--><mxGraphModel as="model"><root><mxCell id="-1fad1256:134d7ff92c3:-7e49"/><mxCell id="-1fad1256:134d7ff92c3:-7e4a" parent="-1fad1256:134d7ff92c3:-7e49"/><BasicBlock angle="270" dependsOnT="1" id="6641adef:135055938d4:-7c71" interfaceFunctionName="CCS" ordering="1" parent="-1fad1256:134d7ff92c3:-7e4a" simulationFunctionName="CCS" simulationFunctionType="DEFAULT" style="CCS;rotation=270;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CCS"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="Iin"/><data column="0" line="1" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="70.0" y="220.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1fad1256:134d7ff92c3:-7e31" ordering="1" parent="6641adef:135055938d4:-7c71" style="ExplicitInputPort;align=center;verticalAlign=bottom;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="6.0" y="40.0"/></ExplicitInputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1fad1256:134d7ff92c3:-7e30" ordering="2" parent="6641adef:135055938d4:-7c71" style="ImplicitInputPort;align=center;verticalAlign=bottom;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="26.0" y="40.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1fad1256:134d7ff92c3:-7e32" ordering="1" parent="6641adef:135055938d4:-7c71" style="ImplicitOutputPort;align=center;verticalAlign=top;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitOutputPort><BasicBlock dependsOnT="1" id="6641adef:135055938d4:-7c6d" interfaceFunctionName="GENSIN_f" ordering="2" parent="-1fad1256:134d7ff92c3:-7e4a" simulationFunctionName="gensin" simulationFunctionType="DEFAULT" style="GENSIN_f;flip=false;mirror=false"><ScilabString as="exprs" height="3" width="1"><data column="0" line="0" value="1"/><data column="0" line="1" value="100"/><data column="0" line="2" value="0"/></ScilabString><ScilabDouble as="realParameters" height="3" width="1"><data column="0" line="0" realPart="1.0"/><data column="0" line="1" realPart="100.0"/><data column="0" line="2" realPart="0.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="60.0" width="80.0" x="-10.0" y="300.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1fad1256:134d7ff92c3:-7ca5" ordering="1" parent="6641adef:135055938d4:-7c6d" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="80.0" y="26.0"/></ExplicitOutputPort><ExplicitLink id="-1fad1256:134d7ff92c3:-7e28" parent="-1fad1256:134d7ff92c3:-7e4a" source="-1fad1256:134d7ff92c3:-7ca5" target="-1fad1256:134d7ff92c3:-7e31"><mxGeometry as="geometry" y="60.0"><mxPoint as="sourcePoint" x="70.0" y="330.0"/><mxPoint as="targetPoint" x="80.0" y="270.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="80.0" y="330.0"/></Array></mxGeometry></ExplicitLink><BasicBlock dependsOnU="1" id="6641adef:135055938d4:-7c6a" interfaceFunctionName="Capacitor" ordering="3" parent="-1fad1256:134d7ff92c3:-7e4a" simulationFunctionName="Capacitor" simulationFunctionType="DEFAULT" style="Capacitor;flip=false;mirror=false"><ScilabString as="exprs" height="2" width="1"><data column="0" line="0" value="1/500"/><data column="0" line="1" value="0"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="0.002"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Capacitor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="2"><data column="0" line="0" value="C"/><data column="1" line="0" value="v"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.002"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="320.0" y="90.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1fad1256:134d7ff92c3:-7c9e" ordering="1" parent="6641adef:135055938d4:-7c6a" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1fad1256:134d7ff92c3:-7c9d" ordering="1" parent="6641adef:135055938d4:-7c6a" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><GroundBlock dependsOnU="1" id="6641adef:135055938d4:-7c67" interfaceFunctionName="Ground" ordering="4" parent="-1fad1256:134d7ff92c3:-7e4a" simulationFunctionName="Ground" simulationFunctionType="DEFAULT" style="Ground;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Ground"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="310.0" y="370.0"/></GroundBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1fad1256:134d7ff92c3:-7e14" ordering="1" parent="6641adef:135055938d4:-7c67" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><Orientation as="orientation" value="NORTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="6641adef:135055938d4:-7c65" interfaceFunctionName="Inductor" ordering="5" parent="-1fad1256:134d7ff92c3:-7e4a" simulationFunctionName="Inductor" simulationFunctionType="DEFAULT" style="Inductor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="0.1"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="0.1"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Inductor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="L"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.1"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="320.0" y="160.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1fad1256:134d7ff92c3:-7c9a" ordering="1" parent="6641adef:135055938d4:-7c65" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1fad1256:134d7ff92c3:-7c99" ordering="1" parent="6641adef:135055938d4:-7c65" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><BasicBlock angle="90" dependsOnU="1" id="6641adef:135055938d4:-7c62" interfaceFunctionName="Resistor" ordering="6" parent="-1fad1256:134d7ff92c3:-7e4a" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="5"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="160.0" y="220.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1fad1256:134d7ff92c3:-7d4d" ordering="1" parent="6641adef:135055938d4:-7c62" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1fad1256:134d7ff92c3:-7d4c" ordering="1" parent="6641adef:135055938d4:-7c62" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><BasicBlock angle="90" dependsOnU="1" id="6641adef:135055938d4:-7c5f" interfaceFunctionName="Capacitor" ordering="7" parent="-1fad1256:134d7ff92c3:-7e4a" simulationFunctionName="Capacitor" simulationFunctionType="DEFAULT" style="Capacitor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="2" width="1"><data column="0" line="0" value="10^-3"/><data column="0" line="1" value="0"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="0.001"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Capacitor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="2"><data column="0" line="0" value="C"/><data column="1" line="0" value="v"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.001"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="230.0" y="220.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1fad1256:134d7ff92c3:-7ca2" ordering="1" parent="6641adef:135055938d4:-7c5f" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1fad1256:134d7ff92c3:-7ca1" ordering="1" parent="6641adef:135055938d4:-7c5f" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><BasicBlock angle="90" dependsOnU="1" id="6641adef:135055938d4:-7c5c" interfaceFunctionName="Inductor" ordering="8" parent="-1fad1256:134d7ff92c3:-7e4a" simulationFunctionName="Inductor" simulationFunctionType="DEFAULT" style="Inductor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="0.05"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="0.05"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Inductor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="L"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.05"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="400.0" y="230.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1fad1256:134d7ff92c3:-7c93" ordering="1" parent="6641adef:135055938d4:-7c5c" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1fad1256:134d7ff92c3:-7c92" ordering="1" parent="6641adef:135055938d4:-7c5c" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><BasicBlock dependsOnU="1" id="6641adef:135055938d4:-7c59" interfaceFunctionName="PotentialSensor" ordering="9" parent="-1fad1256:134d7ff92c3:-7e4a" simulationFunctionName="PotentialSensor" simulationFunctionType="DEFAULT" style="PotentialSensor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="PotentialSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="v"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="200.0" y="110.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1fad1256:134d7ff92c3:-7dde" ordering="1" parent="6641adef:135055938d4:-7c59" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1fad1256:134d7ff92c3:-7ddf" ordering="1" parent="6641adef:135055938d4:-7c59" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><BasicBlock angle="90" dependsOnU="1" id="6641adef:135055938d4:-7c56" interfaceFunctionName="Resistor" ordering="10" parent="-1fad1256:134d7ff92c3:-7e4a" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="10"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="10.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="10.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="500.0" y="230.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1fad1256:134d7ff92c3:-7d39" ordering="1" parent="6641adef:135055938d4:-7c56" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1fad1256:134d7ff92c3:-7d38" ordering="1" parent="6641adef:135055938d4:-7c56" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><BasicBlock angle="90" dependsOnT="1" id="6641adef:135055938d4:-7c53" interfaceFunctionName="CCS" ordering="11" parent="-1fad1256:134d7ff92c3:-7e4a" simulationFunctionName="CCS" simulationFunctionType="DEFAULT" style="CCS;rotation=90;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CCS"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="Iin"/><data column="0" line="1" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="600.0" y="220.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1fad1256:134d7ff92c3:-7dc3" ordering="1" parent="6641adef:135055938d4:-7c53" style="ExplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="6.0" y="-8.0"/></ExplicitInputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1fad1256:134d7ff92c3:-7dc2" ordering="2" parent="6641adef:135055938d4:-7c53" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="26.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1fad1256:134d7ff92c3:-7dc4" ordering="1" parent="6641adef:135055938d4:-7c53" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><SplitBlock id="6641adef:135055938d4:-7c4f" ordering="12" parent="-1fad1256:134d7ff92c3:-7e4a" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="177.0" y="177.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-1fad1256:134d7ff92c3:-7db6" ordering="1" parent="6641adef:135055938d4:-7c4f" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-1fad1256:134d7ff92c3:-7db5" ordering="2" parent="6641adef:135055938d4:-7c4f" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-1fad1256:134d7ff92c3:-7db7" ordering="1" parent="6641adef:135055938d4:-7c4f" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-1fad1256:134d7ff92c3:-7db4" parent="-1fad1256:134d7ff92c3:-7e4a" source="-1fad1256:134d7ff92c3:-7e32" target="-1fad1256:134d7ff92c3:-7db7"><mxGeometry as="geometry" y="60.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="90.0" y="180.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-1fad1256:134d7ff92c3:-7db9" parent="-1fad1256:134d7ff92c3:-7e4a" source="-1fad1256:134d7ff92c3:-7db5" target="-1fad1256:134d7ff92c3:-7d4d"><mxGeometry as="geometry" y="60.0"><mxPoint as="sourcePoint" x="180.0" y="220.0"/><mxPoint as="targetPoint" x="180.0" y="180.0"/></mxGeometry></ImplicitLink><SplitBlock id="6641adef:135055938d4:-7c49" ordering="13" parent="-1fad1256:134d7ff92c3:-7e4a" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="247.0" y="177.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-1fad1256:134d7ff92c3:-7daf" ordering="1" parent="6641adef:135055938d4:-7c49" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-1fad1256:134d7ff92c3:-7dae" ordering="2" parent="6641adef:135055938d4:-7c49" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-1fad1256:134d7ff92c3:-7db0" ordering="1" parent="6641adef:135055938d4:-7c49" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-1fad1256:134d7ff92c3:-7db2" parent="-1fad1256:134d7ff92c3:-7e4a" source="-1fad1256:134d7ff92c3:-7dae" target="-1fad1256:134d7ff92c3:-7ca2"><mxGeometry as="geometry" y="60.0"><mxPoint as="sourcePoint" x="250.0" y="220.0"/><mxPoint as="targetPoint" x="250.0" y="180.0"/></mxGeometry></ImplicitLink><SplitBlock id="6641adef:135055938d4:-7c44" ordering="14" parent="-1fad1256:134d7ff92c3:-7e4a" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="247.0" y="177.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-1fad1256:134d7ff92c3:-7da8" ordering="1" parent="6641adef:135055938d4:-7c44" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-1fad1256:134d7ff92c3:-7da7" ordering="2" parent="6641adef:135055938d4:-7c44" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-1fad1256:134d7ff92c3:-7da9" ordering="1" parent="6641adef:135055938d4:-7c44" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-1fad1256:134d7ff92c3:-7da6" parent="-1fad1256:134d7ff92c3:-7e4a" source="-1fad1256:134d7ff92c3:-7daf" target="-1fad1256:134d7ff92c3:-7da9"><mxGeometry as="geometry" y="60.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-1fad1256:134d7ff92c3:-7da5" parent="-1fad1256:134d7ff92c3:-7e4a" source="-1fad1256:134d7ff92c3:-7da8" target="-1fad1256:134d7ff92c3:-7c9a"><mxGeometry as="geometry" y="60.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-1fad1256:134d7ff92c3:-7dab" parent="-1fad1256:134d7ff92c3:-7e4a" source="-1fad1256:134d7ff92c3:-7da7" target="-1fad1256:134d7ff92c3:-7c9e"><mxGeometry as="geometry" y="60.0"><mxPoint as="sourcePoint" x="320.0" y="110.0"/><mxPoint as="targetPoint" x="250.0" y="180.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="250.0" y="110.0"/><mxPoint x="260.0" y="110.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="6641adef:135055938d4:-7c3d" ordering="15" parent="-1fad1256:134d7ff92c3:-7e4a" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="177.0" y="327.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-1fad1256:134d7ff92c3:-7d9f" ordering="1" parent="6641adef:135055938d4:-7c3d" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-1fad1256:134d7ff92c3:-7d9e" ordering="2" parent="6641adef:135055938d4:-7c3d" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-1fad1256:134d7ff92c3:-7da0" ordering="1" parent="6641adef:135055938d4:-7c3d" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-1fad1256:134d7ff92c3:-7d9c" parent="-1fad1256:134d7ff92c3:-7e4a" source="-1fad1256:134d7ff92c3:-7d9f" target="-1fad1256:134d7ff92c3:-7e30"><mxGeometry as="geometry" y="60.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="100.0" y="330.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-1fad1256:134d7ff92c3:-7da2" parent="-1fad1256:134d7ff92c3:-7e4a" source="-1fad1256:134d7ff92c3:-7d4c" target="-1fad1256:134d7ff92c3:-7d9e"><mxGeometry as="geometry" y="60.0"><mxPoint as="sourcePoint" x="180.0" y="260.0"/><mxPoint as="targetPoint" x="180.0" y="330.0"/></mxGeometry></ImplicitLink><SplitBlock id="6641adef:135055938d4:-7c37" ordering="16" parent="-1fad1256:134d7ff92c3:-7e4a" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="247.0" y="327.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-1fad1256:134d7ff92c3:-7d98" ordering="1" parent="6641adef:135055938d4:-7c37" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-1fad1256:134d7ff92c3:-7d97" ordering="2" parent="6641adef:135055938d4:-7c37" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-1fad1256:134d7ff92c3:-7d99" ordering="1" parent="6641adef:135055938d4:-7c37" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-1fad1256:134d7ff92c3:-7d95" parent="-1fad1256:134d7ff92c3:-7e4a" source="-1fad1256:134d7ff92c3:-7d98" target="-1fad1256:134d7ff92c3:-7da0"><mxGeometry as="geometry" y="60.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-1fad1256:134d7ff92c3:-7d9b" parent="-1fad1256:134d7ff92c3:-7e4a" source="-1fad1256:134d7ff92c3:-7ca1" target="-1fad1256:134d7ff92c3:-7d97"><mxGeometry as="geometry" y="60.0"><mxPoint as="sourcePoint" x="250.0" y="260.0"/><mxPoint as="targetPoint" x="250.0" y="330.0"/></mxGeometry></ImplicitLink><SplitBlock id="6641adef:135055938d4:-7c31" ordering="17" parent="-1fad1256:134d7ff92c3:-7e4a" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="327.0" y="327.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-1fad1256:134d7ff92c3:-7d91" ordering="1" parent="6641adef:135055938d4:-7c31" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-1fad1256:134d7ff92c3:-7d90" ordering="2" parent="6641adef:135055938d4:-7c31" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-1fad1256:134d7ff92c3:-7d92" ordering="1" parent="6641adef:135055938d4:-7c31" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-1fad1256:134d7ff92c3:-7d8e" parent="-1fad1256:134d7ff92c3:-7e4a" source="-1fad1256:134d7ff92c3:-7d91" target="-1fad1256:134d7ff92c3:-7d99"><mxGeometry as="geometry" y="60.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-1fad1256:134d7ff92c3:-7d94" parent="-1fad1256:134d7ff92c3:-7e4a" source="-1fad1256:134d7ff92c3:-7d90" target="-1fad1256:134d7ff92c3:-7e14"><mxGeometry as="geometry" y="60.0"><mxPoint as="sourcePoint" x="330.0" y="390.0"/><mxPoint as="targetPoint" x="330.0" y="330.0"/></mxGeometry></ImplicitLink><SplitBlock id="6641adef:135055938d4:-7c2b" ordering="18" parent="-1fad1256:134d7ff92c3:-7e4a" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="417.0" y="327.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-1fad1256:134d7ff92c3:-7d8a" ordering="1" parent="6641adef:135055938d4:-7c2b" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-1fad1256:134d7ff92c3:-7d89" ordering="2" parent="6641adef:135055938d4:-7c2b" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-1fad1256:134d7ff92c3:-7d8b" ordering="1" parent="6641adef:135055938d4:-7c2b" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-1fad1256:134d7ff92c3:-7d87" parent="-1fad1256:134d7ff92c3:-7e4a" source="-1fad1256:134d7ff92c3:-7d8a" target="-1fad1256:134d7ff92c3:-7d92"><mxGeometry as="geometry" y="60.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-1fad1256:134d7ff92c3:-7d8d" parent="-1fad1256:134d7ff92c3:-7e4a" source="-1fad1256:134d7ff92c3:-7c92" target="-1fad1256:134d7ff92c3:-7d89"><mxGeometry as="geometry" y="60.0"><mxPoint as="sourcePoint" x="420.0" y="260.0"/><mxPoint as="targetPoint" x="420.0" y="330.0"/></mxGeometry></ImplicitLink><SplitBlock id="6641adef:135055938d4:-7c25" ordering="19" parent="-1fad1256:134d7ff92c3:-7e4a" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="517.0" y="327.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-1fad1256:134d7ff92c3:-7d83" ordering="1" parent="6641adef:135055938d4:-7c25" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-1fad1256:134d7ff92c3:-7d82" ordering="2" parent="6641adef:135055938d4:-7c25" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-1fad1256:134d7ff92c3:-7d84" ordering="1" parent="6641adef:135055938d4:-7c25" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-1fad1256:134d7ff92c3:-7d81" parent="-1fad1256:134d7ff92c3:-7e4a" source="-1fad1256:134d7ff92c3:-7dc4" target="-1fad1256:134d7ff92c3:-7d84"><mxGeometry as="geometry" y="60.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="620.0" y="330.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-1fad1256:134d7ff92c3:-7d80" parent="-1fad1256:134d7ff92c3:-7e4a" source="-1fad1256:134d7ff92c3:-7d83" target="-1fad1256:134d7ff92c3:-7d8b"><mxGeometry as="geometry" y="60.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-1fad1256:134d7ff92c3:-7d86" parent="-1fad1256:134d7ff92c3:-7e4a" source="-1fad1256:134d7ff92c3:-7d38" target="-1fad1256:134d7ff92c3:-7d82"><mxGeometry as="geometry" y="60.0"><mxPoint as="sourcePoint" x="520.0" y="260.0"/><mxPoint as="targetPoint" x="520.0" y="330.0"/></mxGeometry></ImplicitLink><SplitBlock id="6641adef:135055938d4:-7c1e" ordering="20" parent="-1fad1256:134d7ff92c3:-7e4a" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="517.0" y="177.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-1fad1256:134d7ff92c3:-7d7c" ordering="1" parent="6641adef:135055938d4:-7c1e" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-1fad1256:134d7ff92c3:-7d7b" ordering="2" parent="6641adef:135055938d4:-7c1e" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-1fad1256:134d7ff92c3:-7d7d" ordering="1" parent="6641adef:135055938d4:-7c1e" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-1fad1256:134d7ff92c3:-7d79" parent="-1fad1256:134d7ff92c3:-7e4a" source="-1fad1256:134d7ff92c3:-7d7c" target="-1fad1256:134d7ff92c3:-7dc2"><mxGeometry as="geometry" y="60.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="630.0" y="180.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="6641adef:135055938d4:-7c19" ordering="21" parent="-1fad1256:134d7ff92c3:-7e4a" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="417.0" y="177.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-1fad1256:134d7ff92c3:-7d75" ordering="1" parent="6641adef:135055938d4:-7c19" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-1fad1256:134d7ff92c3:-7d74" ordering="2" parent="6641adef:135055938d4:-7c19" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-1fad1256:134d7ff92c3:-7d76" ordering="1" parent="6641adef:135055938d4:-7c19" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-1fad1256:134d7ff92c3:-7d72" parent="-1fad1256:134d7ff92c3:-7e4a" source="-1fad1256:134d7ff92c3:-7d75" target="-1fad1256:134d7ff92c3:-7d7d"><mxGeometry as="geometry" y="60.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-1fad1256:134d7ff92c3:-7d78" parent="-1fad1256:134d7ff92c3:-7e4a" source="-1fad1256:134d7ff92c3:-7d74" target="-1fad1256:134d7ff92c3:-7c93"><mxGeometry as="geometry" y="60.0"><mxPoint as="sourcePoint" x="420.0" y="220.0"/><mxPoint as="targetPoint" x="420.0" y="180.0"/></mxGeometry></ImplicitLink><BasicBlock dependsOnT="1" id="6641adef:135055938d4:-7c13" interfaceFunctionName="GENSIN_f" ordering="22" parent="-1fad1256:134d7ff92c3:-7e4a" simulationFunctionName="gensin" simulationFunctionType="DEFAULT" style="GENSIN_f;flip=false;mirror=false"><ScilabString as="exprs" height="3" width="1"><data column="0" line="0" value="0.5"/><data column="0" line="1" value="100"/><data column="0" line="2" value="-%pi/2"/></ScilabString><ScilabDouble as="realParameters" height="3" width="1"><data column="0" line="0" realPart="0.5"/><data column="0" line="1" realPart="100.0"/><data column="0" line="2" realPart="-1.5707963267948966"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="60.0" width="80.0" x="520.0" y="70.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1fad1256:134d7ff92c3:-7c96" ordering="1" parent="6641adef:135055938d4:-7c13" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="80.0" y="26.0"/></ExplicitOutputPort><ExplicitLink id="-1fad1256:134d7ff92c3:-7d6b" parent="-1fad1256:134d7ff92c3:-7e4a" source="-1fad1256:134d7ff92c3:-7c96" target="-1fad1256:134d7ff92c3:-7dc3"><mxGeometry as="geometry" y="30.0"><mxPoint as="sourcePoint" x="600.0" y="100.0"/><mxPoint as="targetPoint" x="610.0" y="190.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="610.0" y="100.0"/></Array></mxGeometry></ExplicitLink><SplitBlock id="6641adef:135055938d4:-7c10" ordering="23" parent="-1fad1256:134d7ff92c3:-7e4a" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="417.0" y="177.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-1fad1256:134d7ff92c3:-7d64" ordering="1" parent="6641adef:135055938d4:-7c10" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-1fad1256:134d7ff92c3:-7d63" ordering="2" parent="6641adef:135055938d4:-7c10" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-1fad1256:134d7ff92c3:-7d65" ordering="1" parent="6641adef:135055938d4:-7c10" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-1fad1256:134d7ff92c3:-7d62" parent="-1fad1256:134d7ff92c3:-7e4a" source="-1fad1256:134d7ff92c3:-7c99" target="-1fad1256:134d7ff92c3:-7d65"><mxGeometry as="geometry" y="60.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-1fad1256:134d7ff92c3:-7d61" parent="-1fad1256:134d7ff92c3:-7e4a" source="-1fad1256:134d7ff92c3:-7d64" target="-1fad1256:134d7ff92c3:-7d76"><mxGeometry as="geometry" y="60.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-1fad1256:134d7ff92c3:-7d67" parent="-1fad1256:134d7ff92c3:-7e4a" source="-1fad1256:134d7ff92c3:-7c9d" target="-1fad1256:134d7ff92c3:-7d63"><mxGeometry as="geometry" y="60.0"><mxPoint as="sourcePoint" x="360.0" y="110.0"/><mxPoint as="targetPoint" x="420.0" y="180.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="420.0" y="110.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="6641adef:135055938d4:-7c09" ordering="24" parent="-1fad1256:134d7ff92c3:-7e4a" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="177.0" y="177.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-1fad1256:134d7ff92c3:-7d5d" ordering="1" parent="6641adef:135055938d4:-7c09" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-1fad1256:134d7ff92c3:-7d5c" ordering="2" parent="6641adef:135055938d4:-7c09" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-1fad1256:134d7ff92c3:-7d5e" ordering="1" parent="6641adef:135055938d4:-7c09" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-1fad1256:134d7ff92c3:-7d5b" parent="-1fad1256:134d7ff92c3:-7e4a" source="-1fad1256:134d7ff92c3:-7db6" target="-1fad1256:134d7ff92c3:-7d5e"><mxGeometry as="geometry" y="60.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-1fad1256:134d7ff92c3:-7d5a" parent="-1fad1256:134d7ff92c3:-7e4a" source="-1fad1256:134d7ff92c3:-7d5d" target="-1fad1256:134d7ff92c3:-7db0"><mxGeometry as="geometry" y="60.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-1fad1256:134d7ff92c3:-7d60" parent="-1fad1256:134d7ff92c3:-7e4a" source="-1fad1256:134d7ff92c3:-7d5c" target="-1fad1256:134d7ff92c3:-7dde"><mxGeometry as="geometry" y="60.0"><mxPoint as="sourcePoint" x="200.0" y="130.0"/><mxPoint as="targetPoint" x="180.0" y="180.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="180.0" y="130.0"/><mxPoint x="190.0" y="130.0"/></Array></mxGeometry></ImplicitLink><BasicBlock dependsOnU="1" id="6641adef:135055938d4:-7bfe" interfaceFunctionName="CSCOPE" ordering="25" parent="-1fad1256:134d7ff92c3:-7e4a" simulationFunctionName="cscope" simulationFunctionType="C_OR_FORTRAN" style="CSCOPE;flip=false;mirror=false"><ScilabString as="exprs" height="10" width="1"><data column="0" line="0" value="1 3 5 7 9 11 13 15"/><data column="0" line="1" value="-1"/><data column="0" line="2" value="[]"/><data column="0" line="3" value="[600;400]"/><data column="0" line="4" value="-5"/><data column="0" line="5" value="5"/><data column="0" line="6" value="1"/><data column="0" line="7" value="20"/><data column="0" line="8" value="0"/><data column="0" line="9" value=""/></ScilabString><ScilabDouble as="realParameters" height="4" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="-5.0"/><data column="0" line="2" realPart="5.0"/><data column="0" line="3" realPart="1.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="15" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="1.0"/><data column="0" line="4" realPart="3.0"/><data column="0" line="5" realPart="5.0"/><data column="0" line="6" realPart="7.0"/><data column="0" line="7" realPart="9.0"/><data column="0" line="8" realPart="11.0"/><data column="0" line="9" realPart="13.0"/><data column="0" line="10" realPart="15.0"/><data column="0" line="11" realPart="-1.0"/><data column="0" line="12" realPart="-1.0"/><data column="0" line="13" realPart="600.0"/><data column="0" line="14" realPart="400.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="770.0" y="120.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="-1fad1256:134d7ff92c3:-7c71" ordering="1" parent="6641adef:135055938d4:-7bfe" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ControlPort dataType="UNKNOW_TYPE" id="-1fad1256:134d7ff92c3:-7c70" ordering="1" parent="6641adef:135055938d4:-7bfe" style="ControlPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><BasicBlock dependsOnU="1" id="6641adef:135055938d4:-7bfa" interfaceFunctionName="PotentialSensor" ordering="26" parent="-1fad1256:134d7ff92c3:-7e4a" simulationFunctionName="PotentialSensor" simulationFunctionType="DEFAULT" style="PotentialSensor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="PotentialSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="v"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="650.0" y="150.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1fad1256:134d7ff92c3:-7ced" ordering="1" parent="6641adef:135055938d4:-7bfa" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1fad1256:134d7ff92c3:-7cee" ordering="1" parent="6641adef:135055938d4:-7bfa" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><SplitBlock id="6641adef:135055938d4:-7bf7" ordering="27" parent="-1fad1256:134d7ff92c3:-7e4a" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="517.0" y="177.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-1fad1256:134d7ff92c3:-7ce6" ordering="1" parent="6641adef:135055938d4:-7bf7" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-1fad1256:134d7ff92c3:-7ce5" ordering="2" parent="6641adef:135055938d4:-7bf7" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-1fad1256:134d7ff92c3:-7ce7" ordering="1" parent="6641adef:135055938d4:-7bf7" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-1fad1256:134d7ff92c3:-7ce4" parent="-1fad1256:134d7ff92c3:-7e4a" source="-1fad1256:134d7ff92c3:-7d7b" target="-1fad1256:134d7ff92c3:-7ce7"><mxGeometry as="geometry" y="60.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-1fad1256:134d7ff92c3:-7ce3" parent="-1fad1256:134d7ff92c3:-7e4a" source="-1fad1256:134d7ff92c3:-7ce6" target="-1fad1256:134d7ff92c3:-7d39"><mxGeometry as="geometry" y="60.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-1fad1256:134d7ff92c3:-7ce9" parent="-1fad1256:134d7ff92c3:-7e4a" source="-1fad1256:134d7ff92c3:-7ce5" target="-1fad1256:134d7ff92c3:-7ced"><mxGeometry as="geometry" y="60.0"><mxPoint as="sourcePoint" x="650.0" y="170.0"/><mxPoint as="targetPoint" x="520.0" y="180.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="520.0" y="170.0"/></Array></mxGeometry></ImplicitLink><TextBlock id="6641adef:135055938d4:-7bef" parent="-1fad1256:134d7ff92c3:-7e4a" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="In this problem omega(w)=100 rad/s is assumed"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="In this problem omega(w)=100 rad/s is assumed"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="In this problem omega(w)=100 rad/s is assumed"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="320.0" y="20.0"/></TextBlock><BasicBlock dependsOnU="1" id="6641adef:135055938d4:-7bc1" interfaceFunctionName="MUX" ordering="28" parent="-1fad1256:134d7ff92c3:-7e4a" simulationFunctionName="multiplex" simulationFunctionType="C_OR_FORTRAN" style="MUX;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="2"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="20.0" width="30.0" x="710.0" y="130.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="6641adef:135055938d4:-7bbf" ordering="1" parent="6641adef:135055938d4:-7bc1" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ExplicitInputPort><ExplicitInputPort dataColumns="1" dataLines="-2" dataType="REAL_MATRIX" id="6641adef:135055938d4:-7bbe" ordering="2" parent="6641adef:135055938d4:-7bc1" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitOutputPort dataColumns="1" dataLines="0" dataType="REAL_MATRIX" id="6641adef:135055938d4:-7bc0" ordering="1" parent="6641adef:135055938d4:-7bc1" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="30.0" y="6.0"/></ExplicitOutputPort><ExplicitLink id="6641adef:135055938d4:-7bb3" parent="-1fad1256:134d7ff92c3:-7e4a" source="-1fad1256:134d7ff92c3:-7ddf" target="6641adef:135055938d4:-7bbf"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="240.0" y="130.0"/><mxPoint as="targetPoint" x="710.0" y="110.0"/></mxGeometry></ExplicitLink><ExplicitLink id="6641adef:135055938d4:-7bb2" parent="-1fad1256:134d7ff92c3:-7e4a" source="-1fad1256:134d7ff92c3:-7cee" target="6641adef:135055938d4:-7bbe"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="710.0" y="150.0"/><mxPoint as="targetPoint" x="690.0" y="170.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="700.0" y="170.0"/><mxPoint x="700.0" y="150.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="6641adef:135055938d4:-7bac" parent="-1fad1256:134d7ff92c3:-7e4a" source="6641adef:135055938d4:-7bc0" target="-1fad1256:134d7ff92c3:-7c71"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="740.0" y="140.0"/><mxPoint as="targetPoint" x="770.0" y="140.0"/></mxGeometry></ExplicitLink><BasicBlock blockType="h" id="5635043b:13894cfb31b:-7a83" interfaceFunctionName="CLOCK_c" ordering="29" parent="-1fad1256:134d7ff92c3:-7e4a" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="159.0"/><data column="1" line="0" realPart="-190.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-3e07f539:168315200c0:-7692"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-3e07f539:168315200c0:-7692"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.1"/><data column="0" line="1" value="0.1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.1"/><data column="0" line="1" realPart="0.1"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.1"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-3e07f539:168315200c0:-7690"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-3e07f539:168315200c0:-7690"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="189.3773266666667"/><data column="1" line="0" realPart="-235.33333333333331"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="7.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="5.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-3e07f539:168315200c0:-768d"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-3e07f539:168315200c0:-768d"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="180.0"/><data column="0" line="2" realPart="199.8773266666667"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-44.0"/><data column="0" line="1" realPart="-260.0"/><data column="0" line="2" realPart="-224.33333333333331"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="198.71066000000005"/><data column="0" line="1" realPart="189.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-239.33333333333331"/><data column="0" line="1" realPart="-166.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="201.04399333333336"/><data column="0" line="1" realPart="220.70999999999998"/><data column="0" line="2" realPart="180.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-239.33333333333331"/><data column="0" line="1" realPart="-130.0"/><data column="0" line="2" realPart="-130.0"/><data column="0" line="3" realPart="4.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="770.0" y="50.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="5635043b:13894cfb31b:-7a82" ordering="1" parent="5635043b:13894cfb31b:-7a83" style="CommandPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><CommandControlLink id="5635043b:13894cfb31b:-7a7f" parent="-1fad1256:134d7ff92c3:-7e4a" source="5635043b:13894cfb31b:-7a82" target="-1fad1256:134d7ff92c3:-7c70"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="790.0" y="94.0"/><mxPoint as="targetPoint" x="790.0" y="110.0"/></mxGeometry></CommandControlLink></root></mxGraphModel><mxCell as="defaultParent" id="-1fad1256:134d7ff92c3:-7e4a" parent="-1fad1256:134d7ff92c3:-7e49"/><mxPoint as="origin" x="-10.0"/></XcosDiagram>
\ No newline at end of file diff --git a/Working_Examples/215/CH10/EX10.8/Figure10_81.jpg b/Working_Examples/215/CH10/EX10.8/Figure10_81.jpg Binary files differnew file mode 100755 index 0000000..f897dbc --- /dev/null +++ b/Working_Examples/215/CH10/EX10.8/Figure10_81.jpg diff --git a/Working_Examples/215/CH10/EX10.8/Figure10_82.jpg b/Working_Examples/215/CH10/EX10.8/Figure10_82.jpg Binary files differnew file mode 100755 index 0000000..67df016 --- /dev/null +++ b/Working_Examples/215/CH10/EX10.8/Figure10_82.jpg diff --git a/Working_Examples/215/CH10/EX10.8/ex10_8.xcos b/Working_Examples/215/CH10/EX10.8/ex10_8.xcos new file mode 100755 index 0000000..cdcf2f5 --- /dev/null +++ b/Working_Examples/215/CH10/EX10.8/ex10_8.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" finalIntegrationTime="0.1" title="ex10_8"><!--Xcos - 1.0 - scilab-5.5.2 - 20160406 2040--><mxGraphModel as="model"><root><mxCell id="7a2a91ff:134d8462990:-7ffd"/><mxCell id="7a2a91ff:134d8462990:-7ffe" parent="7a2a91ff:134d8462990:-7ffd"/><BasicBlock angle="90" dependsOnT="1" id="6641adef:135055938d4:-7ba5" interfaceFunctionName="CVS" ordering="1" parent="7a2a91ff:134d8462990:-7ffe" simulationFunctionName="CVS" simulationFunctionType="DEFAULT" style="CVS;rotation=90;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CVS"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="vin"/><data column="0" line="1" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="420.0" y="160.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="7a2a91ff:134d8462990:-7fd4" ordering="1" parent="6641adef:135055938d4:-7ba5" style="ExplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="6.0" y="-8.0"/></ExplicitInputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="7a2a91ff:134d8462990:-7fd3" ordering="2" parent="6641adef:135055938d4:-7ba5" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="26.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="7a2a91ff:134d8462990:-7fd5" ordering="1" parent="6641adef:135055938d4:-7ba5" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><GroundBlock dependsOnU="1" id="6641adef:135055938d4:-7ba1" interfaceFunctionName="Ground" ordering="2" parent="7a2a91ff:134d8462990:-7ffe" simulationFunctionName="Ground" simulationFunctionType="DEFAULT" style="Ground;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Ground"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="210.0" y="280.0"/></GroundBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="7a2a91ff:134d8462990:-7fcc" ordering="1" parent="6641adef:135055938d4:-7ba1" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><Orientation as="orientation" value="NORTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="6641adef:135055938d4:-7b9f" interfaceFunctionName="CurrentSensor" ordering="3" parent="7a2a91ff:134d8462990:-7ffe" simulationFunctionName="CurrentSensor" simulationFunctionType="DEFAULT" style="CurrentSensor;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CurrentSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="i"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="150.0" y="70.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="7a2a91ff:134d8462990:-7fc0" ordering="2" parent="6641adef:135055938d4:-7b9f" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="26.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="7a2a91ff:134d8462990:-7fbf" ordering="1" parent="6641adef:135055938d4:-7b9f" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="7a2a91ff:134d8462990:-7fc1" ordering="1" parent="6641adef:135055938d4:-7b9f" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="6.0"/></ImplicitOutputPort><BasicBlock dependsOnU="1" id="6641adef:135055938d4:-7b98" interfaceFunctionName="Resistor" ordering="4" parent="7a2a91ff:134d8462990:-7ffe" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="3"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="80.0" y="70.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="7a2a91ff:134d8462990:-7f3b" ordering="1" parent="6641adef:135055938d4:-7b98" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="7a2a91ff:134d8462990:-7f3a" ordering="1" parent="6641adef:135055938d4:-7b98" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><BasicBlock angle="90" dependsOnU="1" id="6641adef:135055938d4:-7b95" interfaceFunctionName="SineVoltage" ordering="5" parent="7a2a91ff:134d8462990:-7ffe" simulationFunctionName="SineVoltage" simulationFunctionType="DEFAULT" style="SineVoltage;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="5" width="1"><data column="0" line="0" value="10"/><data column="0" line="1" value="0"/><data column="0" line="2" value="590/6.28"/><data column="0" line="3" value="0"/><data column="0" line="4" value="0"/></ScilabString><ScilabDouble as="realParameters" height="5" width="1"><data column="0" line="0" realPart="10.0"/><data column="0" line="1" realPart="0.0"/><data column="0" line="2" realPart="93.94904458598725"/><data column="0" line="3" realPart="0.0"/><data column="0" line="4" realPart="0.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="SineVoltage"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="5" width="1"><data column="0" line="0" value="V"/><data column="0" line="1" value="phase"/><data column="0" line="2" value="freqHz"/><data column="0" line="3" value="offset"/><data column="0" line="4" value="startTime"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="10.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="93.94904458598725"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="60.0" width="50.0" x="30.0" y="140.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="7a2a91ff:134d8462990:-7e99" ordering="1" parent="6641adef:135055938d4:-7b95" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="7a2a91ff:134d8462990:-7e98" ordering="1" parent="6641adef:135055938d4:-7b95" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="60.0"/></ImplicitOutputPort><BasicBlock dependsOnU="1" id="6641adef:135055938d4:-7b92" interfaceFunctionName="GAINBLK_f" ordering="6" parent="7a2a91ff:134d8462990:-7ffe" simulationFunctionName="gain" simulationFunctionType="DEFAULT" style="GAINBLK_f;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="2"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="50.0" width="40.0" x="280.0" y="130.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="7a2a91ff:134d8462990:-7f15" ordering="1" parent="6641adef:135055938d4:-7b92" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="7a2a91ff:134d8462990:-7f14" ordering="1" parent="6641adef:135055938d4:-7b92" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ImplicitLink id="7a2a91ff:134d8462990:-7f85" parent="7a2a91ff:134d8462990:-7ffe" source="7a2a91ff:134d8462990:-7e99" target="7a2a91ff:134d8462990:-7f3b"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="50.0" y="160.0"/><mxPoint as="targetPoint" x="80.0" y="90.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="50.0" y="90.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="7a2a91ff:134d8462990:-7f84" parent="7a2a91ff:134d8462990:-7ffe" source="7a2a91ff:134d8462990:-7f3a" target="7a2a91ff:134d8462990:-7fbf"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="120.0" y="90.0"/><mxPoint as="targetPoint" x="150.0" y="90.0"/></mxGeometry></ImplicitLink><BasicBlock dependsOnU="1" id="6641adef:135055938d4:-7b8a" interfaceFunctionName="CurrentSensor" ordering="7" parent="7a2a91ff:134d8462990:-7ffe" simulationFunctionName="CurrentSensor" simulationFunctionType="DEFAULT" style="CurrentSensor;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CurrentSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="i"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="370.0" y="60.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="7a2a91ff:134d8462990:-7f7c" ordering="2" parent="6641adef:135055938d4:-7b8a" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="26.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="7a2a91ff:134d8462990:-7f7b" ordering="1" parent="6641adef:135055938d4:-7b8a" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="7a2a91ff:134d8462990:-7f7d" ordering="1" parent="6641adef:135055938d4:-7b8a" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="6.0"/></ImplicitOutputPort><ImplicitLink id="7a2a91ff:134d8462990:-7f76" parent="7a2a91ff:134d8462990:-7ffe" source="7a2a91ff:134d8462990:-7f3e" target="7a2a91ff:134d8462990:-7f7b"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="330.0" y="80.0"/><mxPoint as="targetPoint" x="360.0" y="80.0"/></mxGeometry></ImplicitLink><ImplicitLink id="7a2a91ff:134d8462990:-7f75" parent="7a2a91ff:134d8462990:-7ffe" source="7a2a91ff:134d8462990:-7f7d" target="7a2a91ff:134d8462990:-7fd3"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="410.0" y="70.0"/><mxPoint as="targetPoint" x="450.0" y="160.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="450.0" y="70.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="6641adef:135055938d4:-7b7b" ordering="8" parent="7a2a91ff:134d8462990:-7ffe" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="227.0" y="247.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="7a2a91ff:134d8462990:-7f66" ordering="1" parent="6641adef:135055938d4:-7b7b" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="7a2a91ff:134d8462990:-7f65" ordering="2" parent="6641adef:135055938d4:-7b7b" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="7a2a91ff:134d8462990:-7f67" ordering="1" parent="6641adef:135055938d4:-7b7b" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="7a2a91ff:134d8462990:-7f64" parent="7a2a91ff:134d8462990:-7ffe" source="7a2a91ff:134d8462990:-7fd5" target="7a2a91ff:134d8462990:-7f67"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="440.0" y="250.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="7a2a91ff:134d8462990:-7f63" parent="7a2a91ff:134d8462990:-7ffe" source="7a2a91ff:134d8462990:-7e98" target="7a2a91ff:134d8462990:-7f66"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="50.0" y="250.0"/></Array></mxGeometry></ImplicitLink><BasicBlock dependsOnU="1" id="6641adef:135055938d4:-7b6e" interfaceFunctionName="CSCOPE" ordering="9" parent="7a2a91ff:134d8462990:-7ffe" simulationFunctionName="cscope" simulationFunctionType="C_OR_FORTRAN" style="CSCOPE;flip=false;mirror=false"><ScilabString as="exprs" height="10" width="1"><data column="0" line="0" value="1 3 5 7 9 11 13 15"/><data column="0" line="1" value="-1"/><data column="0" line="2" value="[]"/><data column="0" line="3" value="[600;400]"/><data column="0" line="4" value="-3"/><data column="0" line="5" value="3"/><data column="0" line="6" value="0.1"/><data column="0" line="7" value="20"/><data column="0" line="8" value="0"/><data column="0" line="9" value=""/></ScilabString><ScilabDouble as="realParameters" height="4" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="-3.0"/><data column="0" line="2" realPart="3.0"/><data column="0" line="3" realPart="0.1"/></ScilabDouble><ScilabDouble as="integerParameters" height="15" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="1.0"/><data column="0" line="4" realPart="3.0"/><data column="0" line="5" realPart="5.0"/><data column="0" line="6" realPart="7.0"/><data column="0" line="7" realPart="9.0"/><data column="0" line="8" realPart="11.0"/><data column="0" line="9" realPart="13.0"/><data column="0" line="10" realPart="15.0"/><data column="0" line="11" realPart="-1.0"/><data column="0" line="12" realPart="-1.0"/><data column="0" line="13" realPart="600.0"/><data column="0" line="14" realPart="400.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="550.0" y="100.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="7a2a91ff:134d8462990:-7eda" ordering="1" parent="6641adef:135055938d4:-7b6e" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ControlPort dataType="UNKNOW_TYPE" id="7a2a91ff:134d8462990:-7ed9" ordering="1" parent="6641adef:135055938d4:-7b6e" style="ControlPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><BasicBlock dependsOnU="1" id="6641adef:135055938d4:-7b13" interfaceFunctionName="MUX" ordering="10" parent="7a2a91ff:134d8462990:-7ffe" simulationFunctionName="multiplex" simulationFunctionType="C_OR_FORTRAN" style="MUX;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="2"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="20.0" width="30.0" x="490.0" y="110.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="6641adef:135055938d4:-7b11" ordering="1" parent="6641adef:135055938d4:-7b13" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ExplicitInputPort><ExplicitInputPort dataColumns="1" dataLines="-2" dataType="REAL_MATRIX" id="6641adef:135055938d4:-7b10" ordering="2" parent="6641adef:135055938d4:-7b13" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitOutputPort dataColumns="1" dataLines="0" dataType="REAL_MATRIX" id="6641adef:135055938d4:-7b12" ordering="1" parent="6641adef:135055938d4:-7b13" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="30.0" y="6.0"/></ExplicitOutputPort><ExplicitLink id="6641adef:135055938d4:-7b0b" parent="7a2a91ff:134d8462990:-7ffe" source="7a2a91ff:134d8462990:-7f7c" target="6641adef:135055938d4:-7b11"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="410.0" y="90.0"/><mxPoint as="targetPoint" x="490.0" y="110.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="460.0" y="90.0"/><mxPoint x="460.0" y="110.0"/></Array></mxGeometry></ExplicitLink><SplitBlock id="6641adef:135055938d4:-7b09" ordering="11" parent="7a2a91ff:134d8462990:-7ffe" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="267.0" y="127.0"/></SplitBlock><ExplicitOutputPort dataType="UNKNOW_TYPE" id="6641adef:135055938d4:-7b07" ordering="1" parent="6641adef:135055938d4:-7b09" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="6641adef:135055938d4:-7b06" ordering="2" parent="6641adef:135055938d4:-7b09" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ExplicitOutputPort><ExplicitInputPort dataType="UNKNOW_TYPE" id="6641adef:135055938d4:-7b08" ordering="1" parent="6641adef:135055938d4:-7b09" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ExplicitInputPort><ExplicitLink id="6641adef:135055938d4:-7b05" parent="7a2a91ff:134d8462990:-7ffe" source="7a2a91ff:134d8462990:-7fc0" target="6641adef:135055938d4:-7b08"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="270.0" y="100.0"/><mxPoint x="270.0" y="120.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="6641adef:135055938d4:-7b04" parent="7a2a91ff:134d8462990:-7ffe" source="6641adef:135055938d4:-7b07" target="7a2a91ff:134d8462990:-7f15"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="270.0" y="150.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="6641adef:135055938d4:-7b0a" parent="7a2a91ff:134d8462990:-7ffe" source="6641adef:135055938d4:-7b06" target="6641adef:135055938d4:-7b10"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="490.0" y="130.0"/><mxPoint as="targetPoint" x="270.0" y="130.0"/></mxGeometry></ExplicitLink><ExplicitLink id="6641adef:135055938d4:-7afe" parent="7a2a91ff:134d8462990:-7ffe" source="6641adef:135055938d4:-7b12" target="7a2a91ff:134d8462990:-7eda"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="520.0" y="120.0"/><mxPoint as="targetPoint" x="540.0" y="120.0"/></mxGeometry></ExplicitLink><BasicBlock dependsOnU="1" id="6641adef:135055938d4:-7ba8" interfaceFunctionName="Capacitor" ordering="12" parent="7a2a91ff:134d8462990:-7ffe" simulationFunctionName="Capacitor" simulationFunctionType="DEFAULT" style="Capacitor;flip=false;mirror=false"><ScilabString as="exprs" height="2" width="1"><data column="0" line="0" value="500e-6"/><data column="0" line="1" value="0"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="5.0E-4"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Capacitor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="2"><data column="0" line="0" value="C"/><data column="1" line="0" value="v"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0E-4"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="290.0" y="60.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="7a2a91ff:134d8462990:-7f3f" ordering="1" parent="6641adef:135055938d4:-7ba8" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="7a2a91ff:134d8462990:-7f3e" ordering="1" parent="6641adef:135055938d4:-7ba8" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><BasicBlock blockType="h" id="5635043b:13894cfb31b:-7a23" interfaceFunctionName="CLOCK_c" ordering="13" parent="7a2a91ff:134d8462990:-7ffe" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="239.0"/><data column="1" line="0" realPart="-270.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-2d357185:1669f6a7491:-7a69"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-2d357185:1669f6a7491:-7a69"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.001"/><data column="0" line="1" value="0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.001"/><data column="0" line="1" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-2d357185:1669f6a7491:-7a67"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-2d357185:1669f6a7491:-7a67"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="321.3773266666667"/><data column="1" line="0" realPart="-367.3333333333333"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="7.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="5.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-2d357185:1669f6a7491:-7a64"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-2d357185:1669f6a7491:-7a64"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="340.0"/><data column="0" line="2" realPart="331.8773266666667"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-44.0"/><data column="0" line="1" realPart="-420.0"/><data column="0" line="2" realPart="-356.3333333333333"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="330.71066"/><data column="0" line="1" realPart="269.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-371.3333333333333"/><data column="0" line="1" realPart="-246.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="333.0439933333334"/><data column="0" line="1" realPart="380.71"/><data column="0" line="2" realPart="340.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-371.3333333333333"/><data column="0" line="1" realPart="-290.0"/><data column="0" line="2" realPart="-290.0"/><data column="0" line="3" realPart="4.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="550.0" y="30.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="5635043b:13894cfb31b:-7a0a" ordering="1" parent="5635043b:13894cfb31b:-7a23" style="CommandPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><CommandControlLink id="5635043b:13894cfb31b:-7a1f" parent="7a2a91ff:134d8462990:-7ffe" source="5635043b:13894cfb31b:-7a0a" target="7a2a91ff:134d8462990:-7ed9"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="570.0" y="74.0"/><mxPoint as="targetPoint" x="570.0" y="90.0"/></mxGeometry></CommandControlLink><BasicBlock blockType="h" id="5635043b:13894cfb31b:-7a13" interfaceFunctionName="DELAY_f" ordering="14" parent="7a2a91ff:134d8462990:-7ffe" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="DELAY_f;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="84.0"/><data column="1" line="0" realPart="-286.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="1"/><data column="0" line="1" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="7.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"IN_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="IN_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="input"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-2.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-2d357185:1669f6a7491:-7a5b"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="IN_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-2d357185:1669f6a7491:-7a5b"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="432.0"/><data column="1" line="0" realPart="-286.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="1"/><data column="0" line="1" value="1"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"OUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="OUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-2.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-2d357185:1669f6a7491:-7a59"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="OUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-2d357185:1669f6a7491:-7a59"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="-10.0"/><data column="1" line="0" realPart="-61.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="50.0"/><data column="1" line="0" realPart="50.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="0;0;0;0;0;0;0;0;0;0"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="7.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="9.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"REGISTER_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="REGISTER_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="delay"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="10" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="0.0"/><data column="0" line="2" realPart="0.0"/><data column="0" line="3" realPart="0.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/><data column="0" line="7" realPart="0.0"/><data column="0" line="8" realPart="0.0"/><data column="0" line="9" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-2d357185:1669f6a7491:-7a57"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="REGISTER_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-2d357185:1669f6a7491:-7a57"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="75.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.1"/><data column="0" line="1" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="10.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.1"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-2d357185:1669f6a7491:-7a53"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-2d357185:1669f6a7491:-7a53"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="355.6666666666667"/><data column="1" line="0" realPart="-332.1333333333334"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="7.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="9.0"/><data column="0" line="1" realPart="10.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-2d357185:1669f6a7491:-7a50"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-2d357185:1669f6a7491:-7a50"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="94.0"/><data column="0" line="1" realPart="448.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-36.0"/><data column="0" line="1" realPart="-276.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="128.0"/><data column="0" line="1" realPart="36.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-276.0"/><data column="0" line="1" realPart="-36.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="135.0"/><data column="0" line="1" realPart="366.1666666666667"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-44.0"/><data column="0" line="1" realPart="-321.1333333333334"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="365.0"/><data column="0" line="1" realPart="65.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-336.1333333333334"/><data column="0" line="1" realPart="-7.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="5" width="1"><data column="0" line="0" realPart="367.33333333333337"/><data column="0" line="1" realPart="460.6"/><data column="0" line="2" realPart="460.6"/><data column="0" line="3" realPart="415.0"/><data column="0" line="4" realPart="135.0"/></ScilabDouble><ScilabDouble height="5" width="1"><data column="0" line="0" realPart="-336.1333333333334"/><data column="0" line="1" realPart="-384.8"/><data column="0" line="2" realPart="-289.0"/><data column="0" line="3" realPart="-289.0"/><data column="0" line="4" realPart="4.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="50.0" width="60.0" x="350.0" y="130.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5635043b:13894cfb31b:-7a12" ordering="1" parent="5635043b:13894cfb31b:-7a13" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="60.0" y="16.0"/></ExplicitOutputPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5635043b:13894cfb31b:-7a11" ordering="1" parent="5635043b:13894cfb31b:-7a13" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitLink id="5635043b:13894cfb31b:-7a0d" parent="7a2a91ff:134d8462990:-7ffe" source="5635043b:13894cfb31b:-7a12" target="7a2a91ff:134d8462990:-7fd4"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="414.0" y="150.0"/><mxPoint as="targetPoint" x="430.0" y="150.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="430.0" y="150.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="5635043b:13894cfb31b:-7a0c" parent="7a2a91ff:134d8462990:-7ffe" source="7a2a91ff:134d8462990:-7f14" target="5635043b:13894cfb31b:-7a11"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="324.0" y="150.0"/><mxPoint as="targetPoint" x="350.0" y="150.0"/></mxGeometry></ExplicitLink><ImplicitLink id="-2d357185:1669f6a7491:-79b2" parent="7a2a91ff:134d8462990:-7ffe" source="7a2a91ff:134d8462990:-7fc1" target="7a2a91ff:134d8462990:-7f3f"><mxGeometry as="geometry"><Array as="points" scilabClass=""><mxPoint x="230.0" y="80.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-2d357185:1669f6a7491:-79b1" parent="7a2a91ff:134d8462990:-7ffe" source="7a2a91ff:134d8462990:-7f65" target="7a2a91ff:134d8462990:-7fcc"><mxGeometry as="geometry"><Array as="points" scilabClass=""><mxPoint x="230.0" y="250.0"/></Array></mxGeometry></ImplicitLink></root></mxGraphModel><mxCell as="defaultParent" id="7a2a91ff:134d8462990:-7ffe" parent="7a2a91ff:134d8462990:-7ffd"/></XcosDiagram>
\ No newline at end of file diff --git a/Working_Examples/215/CH10/EX10.9/Figure10_9.jpg b/Working_Examples/215/CH10/EX10.9/Figure10_9.jpg Binary files differnew file mode 100755 index 0000000..ba9e3d2 --- /dev/null +++ b/Working_Examples/215/CH10/EX10.9/Figure10_9.jpg diff --git a/Working_Examples/215/CH10/EX10.9/Figure10_9_xcos.jpg b/Working_Examples/215/CH10/EX10.9/Figure10_9_xcos.jpg Binary files differnew file mode 100755 index 0000000..b55da17 --- /dev/null +++ b/Working_Examples/215/CH10/EX10.9/Figure10_9_xcos.jpg diff --git a/Working_Examples/215/CH10/EX10.9/ex10_9.xcos b/Working_Examples/215/CH10/EX10.9/ex10_9.xcos new file mode 100755 index 0000000..fcdccc2 --- /dev/null +++ b/Working_Examples/215/CH10/EX10.9/ex10_9.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" finalIntegrationTime="1.0" title="ex10_9"><!--Xcos - 1.0 - scilab-5.5.2 - 20160406 2040--><mxGraphModel as="model"><root><mxCell id="7a2a91ff:134d8462990:-7e87"/><mxCell id="7a2a91ff:134d8462990:-7e88" parent="7a2a91ff:134d8462990:-7e87"/><BasicBlock dependsOnT="1" id="7a2a91ff:134d8462990:-7d47" interfaceFunctionName="GENSIN_f" ordering="2" parent="7a2a91ff:134d8462990:-7e88" simulationFunctionName="gensin" simulationFunctionType="DEFAULT" style="GENSIN_f;flip=false;mirror=false"><ScilabString as="exprs" height="3" width="1"><data column="0" line="0" value="1"/><data column="0" line="1" value="100"/><data column="0" line="2" value="0"/></ScilabString><ScilabDouble as="realParameters" height="3" width="1"><data column="0" line="0" realPart="1.0"/><data column="0" line="1" realPart="100.0"/><data column="0" line="2" realPart="0.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="60.0" width="80.0" x="10.0" y="210.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="7a2a91ff:134d8462990:-7d46" ordering="1" parent="7a2a91ff:134d8462990:-7d47" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="80.0" y="26.0"/></ExplicitOutputPort><BasicBlock dependsOnU="1" id="7a2a91ff:134d8462990:-7d44" interfaceFunctionName="Capacitor" ordering="3" parent="7a2a91ff:134d8462990:-7e88" simulationFunctionName="Capacitor" simulationFunctionType="DEFAULT" style="Capacitor;flip=false;mirror=false"><ScilabString as="exprs" height="2" width="1"><data column="0" line="0" value="1/500"/><data column="0" line="1" value="0"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="0.002"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Capacitor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="2"><data column="0" line="0" value="C"/><data column="1" line="0" value="v"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.002"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="330.0" y="10.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="7a2a91ff:134d8462990:-7d43" ordering="1" parent="7a2a91ff:134d8462990:-7d44" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="7a2a91ff:134d8462990:-7d42" ordering="1" parent="7a2a91ff:134d8462990:-7d44" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><GroundBlock dependsOnU="1" id="7a2a91ff:134d8462990:-7d41" interfaceFunctionName="Ground" ordering="4" parent="7a2a91ff:134d8462990:-7e88" simulationFunctionName="Ground" simulationFunctionType="DEFAULT" style="Ground;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Ground"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="320.0" y="270.0"/></GroundBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="7a2a91ff:134d8462990:-7d40" ordering="1" parent="7a2a91ff:134d8462990:-7d41" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><Orientation as="orientation" value="NORTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="7a2a91ff:134d8462990:-7d3f" interfaceFunctionName="Inductor" ordering="5" parent="7a2a91ff:134d8462990:-7e88" simulationFunctionName="Inductor" simulationFunctionType="DEFAULT" style="Inductor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="0.1"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="0.1"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Inductor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="L"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.1"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="330.0" y="70.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="7a2a91ff:134d8462990:-7d3e" ordering="1" parent="7a2a91ff:134d8462990:-7d3f" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="7a2a91ff:134d8462990:-7d3d" ordering="1" parent="7a2a91ff:134d8462990:-7d3f" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><BasicBlock angle="90" dependsOnU="1" id="7a2a91ff:134d8462990:-7d3c" interfaceFunctionName="Resistor" ordering="6" parent="7a2a91ff:134d8462990:-7e88" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="5"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="170.0" y="130.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="7a2a91ff:134d8462990:-7d3b" ordering="1" parent="7a2a91ff:134d8462990:-7d3c" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="7a2a91ff:134d8462990:-7d3a" ordering="1" parent="7a2a91ff:134d8462990:-7d3c" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock angle="90" dependsOnU="1" id="7a2a91ff:134d8462990:-7d39" interfaceFunctionName="Capacitor" ordering="7" parent="7a2a91ff:134d8462990:-7e88" simulationFunctionName="Capacitor" simulationFunctionType="DEFAULT" style="Capacitor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="2" width="1"><data column="0" line="0" value="10^-3"/><data column="0" line="1" value="0"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="0.001"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Capacitor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="2"><data column="0" line="0" value="C"/><data column="1" line="0" value="v"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.001"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="240.0" y="130.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="7a2a91ff:134d8462990:-7d38" ordering="1" parent="7a2a91ff:134d8462990:-7d39" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="7a2a91ff:134d8462990:-7d37" ordering="1" parent="7a2a91ff:134d8462990:-7d39" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock angle="90" dependsOnU="1" id="7a2a91ff:134d8462990:-7d36" interfaceFunctionName="Inductor" ordering="8" parent="7a2a91ff:134d8462990:-7e88" simulationFunctionName="Inductor" simulationFunctionType="DEFAULT" style="Inductor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="0.05"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="0.05"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Inductor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="L"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.05"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="410.0" y="140.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="7a2a91ff:134d8462990:-7d35" ordering="1" parent="7a2a91ff:134d8462990:-7d36" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="7a2a91ff:134d8462990:-7d34" ordering="1" parent="7a2a91ff:134d8462990:-7d36" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="7a2a91ff:134d8462990:-7d33" interfaceFunctionName="PotentialSensor" ordering="9" parent="7a2a91ff:134d8462990:-7e88" simulationFunctionName="PotentialSensor" simulationFunctionType="DEFAULT" style="PotentialSensor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="PotentialSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="v"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="210.0" y="20.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="7a2a91ff:134d8462990:-7d32" ordering="1" parent="7a2a91ff:134d8462990:-7d33" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="7a2a91ff:134d8462990:-7d31" ordering="1" parent="7a2a91ff:134d8462990:-7d33" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><BasicBlock angle="90" dependsOnU="1" id="7a2a91ff:134d8462990:-7d30" interfaceFunctionName="Resistor" ordering="10" parent="7a2a91ff:134d8462990:-7e88" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="10"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="10.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="10.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="510.0" y="140.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="7a2a91ff:134d8462990:-7d2f" ordering="1" parent="7a2a91ff:134d8462990:-7d30" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="7a2a91ff:134d8462990:-7d2e" ordering="1" parent="7a2a91ff:134d8462990:-7d30" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><SplitBlock id="7a2a91ff:134d8462990:-7d23" ordering="12" parent="7a2a91ff:134d8462990:-7e88" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="257.0" y="87.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="7a2a91ff:134d8462990:-7d20" ordering="2" parent="7a2a91ff:134d8462990:-7d23" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="7a2a91ff:134d8462990:-7d22" ordering="1" parent="7a2a91ff:134d8462990:-7d23" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="7a2a91ff:134d8462990:-7d21" ordering="1" parent="7a2a91ff:134d8462990:-7d23" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="7a2a91ff:134d8462990:-7d1f" parent="7a2a91ff:134d8462990:-7e88" source="7a2a91ff:134d8462990:-7d20" target="7a2a91ff:134d8462990:-7d37"><mxGeometry as="geometry" x="10.0" y="-30.0"><mxPoint as="sourcePoint" x="260.0" y="130.0"/><mxPoint as="targetPoint" x="260.0" y="90.0"/></mxGeometry></ImplicitLink><SplitBlock id="7a2a91ff:134d8462990:-7d1e" ordering="13" parent="7a2a91ff:134d8462990:-7e88" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="257.0" y="87.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="7a2a91ff:134d8462990:-7d1b" ordering="2" parent="7a2a91ff:134d8462990:-7d1e" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="7a2a91ff:134d8462990:-7d1d" ordering="1" parent="7a2a91ff:134d8462990:-7d1e" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="7a2a91ff:134d8462990:-7d1c" ordering="1" parent="7a2a91ff:134d8462990:-7d1e" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="7a2a91ff:134d8462990:-7d1a" parent="7a2a91ff:134d8462990:-7e88" source="7a2a91ff:134d8462990:-7d21" target="7a2a91ff:134d8462990:-7d1d"><mxGeometry as="geometry" x="10.0" y="-30.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="7a2a91ff:134d8462990:-7d19" parent="7a2a91ff:134d8462990:-7e88" source="7a2a91ff:134d8462990:-7d1c" target="7a2a91ff:134d8462990:-7d3d"><mxGeometry as="geometry" x="10.0" y="-30.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="7a2a91ff:134d8462990:-7d18" parent="7a2a91ff:134d8462990:-7e88" source="7a2a91ff:134d8462990:-7d1b" target="7a2a91ff:134d8462990:-7d42"><mxGeometry as="geometry" x="10.0" y="-30.0"><mxPoint as="sourcePoint" x="330.0" y="20.0"/><mxPoint as="targetPoint" x="260.0" y="90.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="260.0" y="20.0"/><mxPoint x="270.0" y="20.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="7a2a91ff:134d8462990:-7d11" ordering="15" parent="7a2a91ff:134d8462990:-7e88" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="257.0" y="237.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="7a2a91ff:134d8462990:-7d0e" ordering="2" parent="7a2a91ff:134d8462990:-7d11" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="7a2a91ff:134d8462990:-7d10" ordering="1" parent="7a2a91ff:134d8462990:-7d11" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="7a2a91ff:134d8462990:-7d0f" ordering="1" parent="7a2a91ff:134d8462990:-7d11" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="7a2a91ff:134d8462990:-7d0c" parent="7a2a91ff:134d8462990:-7e88" source="7a2a91ff:134d8462990:-7d38" target="7a2a91ff:134d8462990:-7d0e"><mxGeometry as="geometry" x="10.0" y="-30.0"><mxPoint as="sourcePoint" x="260.0" y="170.0"/><mxPoint as="targetPoint" x="260.0" y="240.0"/></mxGeometry></ImplicitLink><SplitBlock id="7a2a91ff:134d8462990:-7d0b" ordering="16" parent="7a2a91ff:134d8462990:-7e88" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="337.0" y="237.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="7a2a91ff:134d8462990:-7d08" ordering="2" parent="7a2a91ff:134d8462990:-7d0b" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="7a2a91ff:134d8462990:-7d0a" ordering="1" parent="7a2a91ff:134d8462990:-7d0b" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="7a2a91ff:134d8462990:-7d09" ordering="1" parent="7a2a91ff:134d8462990:-7d0b" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="7a2a91ff:134d8462990:-7d07" parent="7a2a91ff:134d8462990:-7e88" source="7a2a91ff:134d8462990:-7d09" target="7a2a91ff:134d8462990:-7d10"><mxGeometry as="geometry" x="10.0" y="-30.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="7a2a91ff:134d8462990:-7d06" parent="7a2a91ff:134d8462990:-7e88" source="7a2a91ff:134d8462990:-7d08" target="7a2a91ff:134d8462990:-7d40"><mxGeometry as="geometry" x="10.0" y="-30.0"><mxPoint as="sourcePoint" x="340.0" y="300.0"/><mxPoint as="targetPoint" x="340.0" y="240.0"/></mxGeometry></ImplicitLink><SplitBlock id="7a2a91ff:134d8462990:-7d05" ordering="17" parent="7a2a91ff:134d8462990:-7e88" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="427.0" y="237.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="7a2a91ff:134d8462990:-7d02" ordering="2" parent="7a2a91ff:134d8462990:-7d05" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="7a2a91ff:134d8462990:-7d04" ordering="1" parent="7a2a91ff:134d8462990:-7d05" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="7a2a91ff:134d8462990:-7d03" ordering="1" parent="7a2a91ff:134d8462990:-7d05" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="7a2a91ff:134d8462990:-7d01" parent="7a2a91ff:134d8462990:-7e88" source="7a2a91ff:134d8462990:-7d03" target="7a2a91ff:134d8462990:-7d0a"><mxGeometry as="geometry" x="10.0" y="-30.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="7a2a91ff:134d8462990:-7d00" parent="7a2a91ff:134d8462990:-7e88" source="7a2a91ff:134d8462990:-7d35" target="7a2a91ff:134d8462990:-7d02"><mxGeometry as="geometry" x="10.0" y="-30.0"><mxPoint as="sourcePoint" x="430.0" y="170.0"/><mxPoint as="targetPoint" x="430.0" y="240.0"/></mxGeometry></ImplicitLink><SplitBlock id="7a2a91ff:134d8462990:-7cf3" ordering="18" parent="7a2a91ff:134d8462990:-7e88" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="427.0" y="87.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="7a2a91ff:134d8462990:-7cf0" ordering="2" parent="7a2a91ff:134d8462990:-7cf3" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="7a2a91ff:134d8462990:-7cf2" ordering="1" parent="7a2a91ff:134d8462990:-7cf3" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="7a2a91ff:134d8462990:-7cf1" ordering="1" parent="7a2a91ff:134d8462990:-7cf3" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="7a2a91ff:134d8462990:-7cee" parent="7a2a91ff:134d8462990:-7e88" source="7a2a91ff:134d8462990:-7cf0" target="7a2a91ff:134d8462990:-7d34"><mxGeometry as="geometry" x="10.0" y="-30.0"><mxPoint as="sourcePoint" x="430.0" y="130.0"/><mxPoint as="targetPoint" x="430.0" y="90.0"/></mxGeometry></ImplicitLink><SplitBlock id="7a2a91ff:134d8462990:-7cea" ordering="19" parent="7a2a91ff:134d8462990:-7e88" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="427.0" y="87.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="7a2a91ff:134d8462990:-7ce7" ordering="2" parent="7a2a91ff:134d8462990:-7cea" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="7a2a91ff:134d8462990:-7ce9" ordering="1" parent="7a2a91ff:134d8462990:-7cea" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="7a2a91ff:134d8462990:-7ce8" ordering="1" parent="7a2a91ff:134d8462990:-7cea" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="7a2a91ff:134d8462990:-7ce6" parent="7a2a91ff:134d8462990:-7e88" source="7a2a91ff:134d8462990:-7d3e" target="7a2a91ff:134d8462990:-7ce9"><mxGeometry as="geometry" x="10.0" y="-30.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="7a2a91ff:134d8462990:-7ce5" parent="7a2a91ff:134d8462990:-7e88" source="7a2a91ff:134d8462990:-7ce8" target="7a2a91ff:134d8462990:-7cf2"><mxGeometry as="geometry" x="10.0" y="-30.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="7a2a91ff:134d8462990:-7ce4" parent="7a2a91ff:134d8462990:-7e88" source="7a2a91ff:134d8462990:-7d43" target="7a2a91ff:134d8462990:-7ce7"><mxGeometry as="geometry" x="10.0" y="-30.0"><mxPoint as="sourcePoint" x="370.0" y="20.0"/><mxPoint as="targetPoint" x="430.0" y="90.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="430.0" y="20.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="7a2a91ff:134d8462990:-7ce3" ordering="20" parent="7a2a91ff:134d8462990:-7e88" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="187.0" y="87.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="7a2a91ff:134d8462990:-7ce0" ordering="2" parent="7a2a91ff:134d8462990:-7ce3" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="7a2a91ff:134d8462990:-7ce2" ordering="1" parent="7a2a91ff:134d8462990:-7ce3" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="7a2a91ff:134d8462990:-7ce1" ordering="1" parent="7a2a91ff:134d8462990:-7ce3" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="7a2a91ff:134d8462990:-7cde" parent="7a2a91ff:134d8462990:-7e88" source="7a2a91ff:134d8462990:-7ce1" target="7a2a91ff:134d8462990:-7d22"><mxGeometry as="geometry" x="10.0" y="-30.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="7a2a91ff:134d8462990:-7cdd" parent="7a2a91ff:134d8462990:-7e88" source="7a2a91ff:134d8462990:-7ce0" target="7a2a91ff:134d8462990:-7d31"><mxGeometry as="geometry" x="10.0" y="-30.0"><mxPoint as="sourcePoint" x="210.0" y="40.0"/><mxPoint as="targetPoint" x="190.0" y="90.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="190.0" y="40.0"/><mxPoint x="200.0" y="40.0"/></Array></mxGeometry></ImplicitLink><TextBlock id="7a2a91ff:134d8462990:-7cc9" parent="7a2a91ff:134d8462990:-7e88" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="In this problem omega(w)=100 rad/s is assumed"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="In this problem omega(w)=100 rad/s is assumed"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="In this problem omega(w)=100 rad/s is assumed"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="560.0" y="10.0"/></TextBlock><BasicBlock dependsOnU="1" id="7a2a91ff:134d8462990:-7cbc" interfaceFunctionName="Capacitor" ordering="21" parent="7a2a91ff:134d8462990:-7e88" simulationFunctionName="Capacitor" simulationFunctionType="DEFAULT" style="Capacitor;flip=false;mirror=false"><ScilabString as="exprs" height="2" width="1"><data column="0" line="0" value="1/500"/><data column="0" line="1" value="0"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="0.002"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Capacitor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="2"><data column="0" line="0" value="C"/><data column="1" line="0" value="v"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.002"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="320.0" y="320.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="7a2a91ff:134d8462990:-7cbb" ordering="1" parent="7a2a91ff:134d8462990:-7cbc" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="7a2a91ff:134d8462990:-7cba" ordering="1" parent="7a2a91ff:134d8462990:-7cbc" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><GroundBlock dependsOnU="1" id="7a2a91ff:134d8462990:-7cb9" interfaceFunctionName="Ground" ordering="22" parent="7a2a91ff:134d8462990:-7e88" simulationFunctionName="Ground" simulationFunctionType="DEFAULT" style="Ground;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Ground"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="310.0" y="580.0"/></GroundBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="7a2a91ff:134d8462990:-7cb8" ordering="1" parent="7a2a91ff:134d8462990:-7cb9" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><Orientation as="orientation" value="NORTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="7a2a91ff:134d8462990:-7cb7" interfaceFunctionName="Inductor" ordering="23" parent="7a2a91ff:134d8462990:-7e88" simulationFunctionName="Inductor" simulationFunctionType="DEFAULT" style="Inductor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="0.1"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="0.1"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Inductor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="L"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.1"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="320.0" y="390.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="7a2a91ff:134d8462990:-7cb6" ordering="1" parent="7a2a91ff:134d8462990:-7cb7" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="7a2a91ff:134d8462990:-7cb5" ordering="1" parent="7a2a91ff:134d8462990:-7cb7" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><BasicBlock angle="90" dependsOnU="1" id="7a2a91ff:134d8462990:-7cb4" interfaceFunctionName="Resistor" ordering="24" parent="7a2a91ff:134d8462990:-7e88" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="5"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="160.0" y="450.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="7a2a91ff:134d8462990:-7cb3" ordering="1" parent="7a2a91ff:134d8462990:-7cb4" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="7a2a91ff:134d8462990:-7cb2" ordering="1" parent="7a2a91ff:134d8462990:-7cb4" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock angle="90" dependsOnU="1" id="7a2a91ff:134d8462990:-7cb1" interfaceFunctionName="Capacitor" ordering="25" parent="7a2a91ff:134d8462990:-7e88" simulationFunctionName="Capacitor" simulationFunctionType="DEFAULT" style="Capacitor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="2" width="1"><data column="0" line="0" value="10^-3"/><data column="0" line="1" value="0"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="0.001"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Capacitor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="2"><data column="0" line="0" value="C"/><data column="1" line="0" value="v"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.001"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="230.0" y="450.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="7a2a91ff:134d8462990:-7cb0" ordering="1" parent="7a2a91ff:134d8462990:-7cb1" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="7a2a91ff:134d8462990:-7caf" ordering="1" parent="7a2a91ff:134d8462990:-7cb1" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock angle="90" dependsOnU="1" id="7a2a91ff:134d8462990:-7cae" interfaceFunctionName="Inductor" ordering="26" parent="7a2a91ff:134d8462990:-7e88" simulationFunctionName="Inductor" simulationFunctionType="DEFAULT" style="Inductor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="0.05"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="0.05"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Inductor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="L"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.05"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="400.0" y="460.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="7a2a91ff:134d8462990:-7cad" ordering="1" parent="7a2a91ff:134d8462990:-7cae" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="7a2a91ff:134d8462990:-7cac" ordering="1" parent="7a2a91ff:134d8462990:-7cae" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="7a2a91ff:134d8462990:-7cab" interfaceFunctionName="PotentialSensor" ordering="27" parent="7a2a91ff:134d8462990:-7e88" simulationFunctionName="PotentialSensor" simulationFunctionType="DEFAULT" style="PotentialSensor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="PotentialSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="v"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="200.0" y="340.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="7a2a91ff:134d8462990:-7caa" ordering="1" parent="7a2a91ff:134d8462990:-7cab" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="7a2a91ff:134d8462990:-7ca9" ordering="1" parent="7a2a91ff:134d8462990:-7cab" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><BasicBlock angle="90" dependsOnU="1" id="7a2a91ff:134d8462990:-7ca8" interfaceFunctionName="Resistor" ordering="28" parent="7a2a91ff:134d8462990:-7e88" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="10"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="10.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="10.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="500.0" y="460.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="7a2a91ff:134d8462990:-7ca7" ordering="1" parent="7a2a91ff:134d8462990:-7ca8" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="7a2a91ff:134d8462990:-7ca6" ordering="1" parent="7a2a91ff:134d8462990:-7ca8" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock angle="90" dependsOnT="1" id="7a2a91ff:134d8462990:-7ca5" interfaceFunctionName="CCS" ordering="29" parent="7a2a91ff:134d8462990:-7e88" simulationFunctionName="CCS" simulationFunctionType="DEFAULT" style="CCS;rotation=90;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CCS"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="Iin"/><data column="0" line="1" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="600.0" y="450.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="7a2a91ff:134d8462990:-7ca2" ordering="2" parent="7a2a91ff:134d8462990:-7ca5" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="26.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="7a2a91ff:134d8462990:-7ca4" ordering="1" parent="7a2a91ff:134d8462990:-7ca5" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="7a2a91ff:134d8462990:-7ca3" ordering="1" parent="7a2a91ff:134d8462990:-7ca5" style="ExplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="6.0" y="-8.0"/></ExplicitInputPort><SplitBlock id="7a2a91ff:134d8462990:-7c9b" ordering="30" parent="7a2a91ff:134d8462990:-7e88" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="247.0" y="407.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="7a2a91ff:134d8462990:-7c98" ordering="2" parent="7a2a91ff:134d8462990:-7c9b" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="7a2a91ff:134d8462990:-7c9a" ordering="1" parent="7a2a91ff:134d8462990:-7c9b" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="7a2a91ff:134d8462990:-7c99" ordering="1" parent="7a2a91ff:134d8462990:-7c9b" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="7a2a91ff:134d8462990:-7c97" parent="7a2a91ff:134d8462990:-7e88" source="7a2a91ff:134d8462990:-7c98" target="7a2a91ff:134d8462990:-7caf"><mxGeometry as="geometry" y="290.0"><mxPoint as="sourcePoint" x="250.0" y="450.0"/><mxPoint as="targetPoint" x="250.0" y="410.0"/></mxGeometry></ImplicitLink><SplitBlock id="7a2a91ff:134d8462990:-7c96" ordering="31" parent="7a2a91ff:134d8462990:-7e88" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="247.0" y="407.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="7a2a91ff:134d8462990:-7c93" ordering="2" parent="7a2a91ff:134d8462990:-7c96" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="7a2a91ff:134d8462990:-7c95" ordering="1" parent="7a2a91ff:134d8462990:-7c96" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="7a2a91ff:134d8462990:-7c94" ordering="1" parent="7a2a91ff:134d8462990:-7c96" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="7a2a91ff:134d8462990:-7c92" parent="7a2a91ff:134d8462990:-7e88" source="7a2a91ff:134d8462990:-7c99" target="7a2a91ff:134d8462990:-7c95"><mxGeometry as="geometry" y="290.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="7a2a91ff:134d8462990:-7c91" parent="7a2a91ff:134d8462990:-7e88" source="7a2a91ff:134d8462990:-7c94" target="7a2a91ff:134d8462990:-7cb5"><mxGeometry as="geometry" y="290.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="7a2a91ff:134d8462990:-7c90" parent="7a2a91ff:134d8462990:-7e88" source="7a2a91ff:134d8462990:-7c93" target="7a2a91ff:134d8462990:-7cba"><mxGeometry as="geometry" y="290.0"><mxPoint as="sourcePoint" x="320.0" y="340.0"/><mxPoint as="targetPoint" x="250.0" y="410.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="250.0" y="340.0"/><mxPoint x="260.0" y="340.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="7a2a91ff:134d8462990:-7c89" ordering="32" parent="7a2a91ff:134d8462990:-7e88" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="247.0" y="557.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="7a2a91ff:134d8462990:-7c86" ordering="2" parent="7a2a91ff:134d8462990:-7c89" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="7a2a91ff:134d8462990:-7c88" ordering="1" parent="7a2a91ff:134d8462990:-7c89" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="7a2a91ff:134d8462990:-7c87" ordering="1" parent="7a2a91ff:134d8462990:-7c89" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="7a2a91ff:134d8462990:-7c84" parent="7a2a91ff:134d8462990:-7e88" source="7a2a91ff:134d8462990:-7cb0" target="7a2a91ff:134d8462990:-7c86"><mxGeometry as="geometry" y="290.0"><mxPoint as="sourcePoint" x="250.0" y="490.0"/><mxPoint as="targetPoint" x="250.0" y="560.0"/></mxGeometry></ImplicitLink><SplitBlock id="7a2a91ff:134d8462990:-7c83" ordering="33" parent="7a2a91ff:134d8462990:-7e88" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="327.0" y="557.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="7a2a91ff:134d8462990:-7c80" ordering="2" parent="7a2a91ff:134d8462990:-7c83" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="7a2a91ff:134d8462990:-7c82" ordering="1" parent="7a2a91ff:134d8462990:-7c83" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="7a2a91ff:134d8462990:-7c81" ordering="1" parent="7a2a91ff:134d8462990:-7c83" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="7a2a91ff:134d8462990:-7c7f" parent="7a2a91ff:134d8462990:-7e88" source="7a2a91ff:134d8462990:-7c81" target="7a2a91ff:134d8462990:-7c88"><mxGeometry as="geometry" y="290.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="7a2a91ff:134d8462990:-7c7e" parent="7a2a91ff:134d8462990:-7e88" source="7a2a91ff:134d8462990:-7c80" target="7a2a91ff:134d8462990:-7cb8"><mxGeometry as="geometry" y="290.0"><mxPoint as="sourcePoint" x="330.0" y="620.0"/><mxPoint as="targetPoint" x="330.0" y="560.0"/></mxGeometry></ImplicitLink><SplitBlock id="7a2a91ff:134d8462990:-7c7d" ordering="34" parent="7a2a91ff:134d8462990:-7e88" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="417.0" y="557.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="7a2a91ff:134d8462990:-7c7a" ordering="2" parent="7a2a91ff:134d8462990:-7c7d" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="7a2a91ff:134d8462990:-7c7c" ordering="1" parent="7a2a91ff:134d8462990:-7c7d" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="7a2a91ff:134d8462990:-7c7b" ordering="1" parent="7a2a91ff:134d8462990:-7c7d" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="7a2a91ff:134d8462990:-7c79" parent="7a2a91ff:134d8462990:-7e88" source="7a2a91ff:134d8462990:-7c7b" target="7a2a91ff:134d8462990:-7c82"><mxGeometry as="geometry" y="290.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="7a2a91ff:134d8462990:-7c78" parent="7a2a91ff:134d8462990:-7e88" source="7a2a91ff:134d8462990:-7cad" target="7a2a91ff:134d8462990:-7c7a"><mxGeometry as="geometry" y="290.0"><mxPoint as="sourcePoint" x="420.0" y="490.0"/><mxPoint as="targetPoint" x="420.0" y="560.0"/></mxGeometry></ImplicitLink><SplitBlock id="7a2a91ff:134d8462990:-7c77" ordering="35" parent="7a2a91ff:134d8462990:-7e88" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="517.0" y="557.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="7a2a91ff:134d8462990:-7c74" ordering="2" parent="7a2a91ff:134d8462990:-7c77" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="7a2a91ff:134d8462990:-7c76" ordering="1" parent="7a2a91ff:134d8462990:-7c77" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="7a2a91ff:134d8462990:-7c75" ordering="1" parent="7a2a91ff:134d8462990:-7c77" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="7a2a91ff:134d8462990:-7c73" parent="7a2a91ff:134d8462990:-7e88" source="7a2a91ff:134d8462990:-7ca4" target="7a2a91ff:134d8462990:-7c76"><mxGeometry as="geometry" y="290.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="620.0" y="560.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="7a2a91ff:134d8462990:-7c72" parent="7a2a91ff:134d8462990:-7e88" source="7a2a91ff:134d8462990:-7c75" target="7a2a91ff:134d8462990:-7c7c"><mxGeometry as="geometry" y="290.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="7a2a91ff:134d8462990:-7c71" parent="7a2a91ff:134d8462990:-7e88" source="7a2a91ff:134d8462990:-7ca7" target="7a2a91ff:134d8462990:-7c74"><mxGeometry as="geometry" y="290.0"><mxPoint as="sourcePoint" x="520.0" y="490.0"/><mxPoint as="targetPoint" x="520.0" y="560.0"/></mxGeometry></ImplicitLink><SplitBlock id="7a2a91ff:134d8462990:-7c70" ordering="36" parent="7a2a91ff:134d8462990:-7e88" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="517.0" y="407.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="7a2a91ff:134d8462990:-7c6d" ordering="2" parent="7a2a91ff:134d8462990:-7c70" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="7a2a91ff:134d8462990:-7c6f" ordering="1" parent="7a2a91ff:134d8462990:-7c70" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="7a2a91ff:134d8462990:-7c6e" ordering="1" parent="7a2a91ff:134d8462990:-7c70" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="7a2a91ff:134d8462990:-7c6c" parent="7a2a91ff:134d8462990:-7e88" source="7a2a91ff:134d8462990:-7c6e" target="7a2a91ff:134d8462990:-7ca2"><mxGeometry as="geometry" y="290.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="630.0" y="410.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="7a2a91ff:134d8462990:-7c6b" ordering="37" parent="7a2a91ff:134d8462990:-7e88" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="417.0" y="407.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="7a2a91ff:134d8462990:-7c68" ordering="2" parent="7a2a91ff:134d8462990:-7c6b" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="7a2a91ff:134d8462990:-7c6a" ordering="1" parent="7a2a91ff:134d8462990:-7c6b" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="7a2a91ff:134d8462990:-7c69" ordering="1" parent="7a2a91ff:134d8462990:-7c6b" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="7a2a91ff:134d8462990:-7c67" parent="7a2a91ff:134d8462990:-7e88" source="7a2a91ff:134d8462990:-7c69" target="7a2a91ff:134d8462990:-7c6f"><mxGeometry as="geometry" y="290.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="7a2a91ff:134d8462990:-7c66" parent="7a2a91ff:134d8462990:-7e88" source="7a2a91ff:134d8462990:-7c68" target="7a2a91ff:134d8462990:-7cac"><mxGeometry as="geometry" y="290.0"><mxPoint as="sourcePoint" x="420.0" y="450.0"/><mxPoint as="targetPoint" x="420.0" y="410.0"/></mxGeometry></ImplicitLink><BasicBlock dependsOnT="1" id="7a2a91ff:134d8462990:-7c65" interfaceFunctionName="GENSIN_f" ordering="38" parent="7a2a91ff:134d8462990:-7e88" simulationFunctionName="gensin" simulationFunctionType="DEFAULT" style="GENSIN_f;flip=false;mirror=false"><ScilabString as="exprs" height="3" width="1"><data column="0" line="0" value="0.5"/><data column="0" line="1" value="100"/><data column="0" line="2" value="-%pi/2"/></ScilabString><ScilabDouble as="realParameters" height="3" width="1"><data column="0" line="0" realPart="0.5"/><data column="0" line="1" realPart="100.0"/><data column="0" line="2" realPart="-1.5707963267948966"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="60.0" width="80.0" x="520.0" y="300.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="7a2a91ff:134d8462990:-7c64" ordering="1" parent="7a2a91ff:134d8462990:-7c65" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="80.0" y="26.0"/></ExplicitOutputPort><ExplicitLink id="7a2a91ff:134d8462990:-7c63" parent="7a2a91ff:134d8462990:-7e88" source="7a2a91ff:134d8462990:-7c64" target="7a2a91ff:134d8462990:-7ca3"><mxGeometry as="geometry" y="260.0"><mxPoint as="sourcePoint" x="600.0" y="330.0"/><mxPoint as="targetPoint" x="610.0" y="420.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="610.0" y="330.0"/></Array></mxGeometry></ExplicitLink><SplitBlock id="7a2a91ff:134d8462990:-7c62" ordering="39" parent="7a2a91ff:134d8462990:-7e88" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="417.0" y="407.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="7a2a91ff:134d8462990:-7c5f" ordering="2" parent="7a2a91ff:134d8462990:-7c62" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="7a2a91ff:134d8462990:-7c61" ordering="1" parent="7a2a91ff:134d8462990:-7c62" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="7a2a91ff:134d8462990:-7c60" ordering="1" parent="7a2a91ff:134d8462990:-7c62" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="7a2a91ff:134d8462990:-7c5e" parent="7a2a91ff:134d8462990:-7e88" source="7a2a91ff:134d8462990:-7cb6" target="7a2a91ff:134d8462990:-7c61"><mxGeometry as="geometry" y="290.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="7a2a91ff:134d8462990:-7c5d" parent="7a2a91ff:134d8462990:-7e88" source="7a2a91ff:134d8462990:-7c60" target="7a2a91ff:134d8462990:-7c6a"><mxGeometry as="geometry" y="290.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="7a2a91ff:134d8462990:-7c5c" parent="7a2a91ff:134d8462990:-7e88" source="7a2a91ff:134d8462990:-7cbb" target="7a2a91ff:134d8462990:-7c5f"><mxGeometry as="geometry" y="290.0"><mxPoint as="sourcePoint" x="360.0" y="340.0"/><mxPoint as="targetPoint" x="420.0" y="410.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="420.0" y="340.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="7a2a91ff:134d8462990:-7c5b" ordering="40" parent="7a2a91ff:134d8462990:-7e88" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="177.0" y="407.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="7a2a91ff:134d8462990:-7c58" ordering="2" parent="7a2a91ff:134d8462990:-7c5b" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="7a2a91ff:134d8462990:-7c5a" ordering="1" parent="7a2a91ff:134d8462990:-7c5b" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="7a2a91ff:134d8462990:-7c59" ordering="1" parent="7a2a91ff:134d8462990:-7c5b" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="7a2a91ff:134d8462990:-7c56" parent="7a2a91ff:134d8462990:-7e88" source="7a2a91ff:134d8462990:-7c59" target="7a2a91ff:134d8462990:-7c9a"><mxGeometry as="geometry" y="290.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="7a2a91ff:134d8462990:-7c55" parent="7a2a91ff:134d8462990:-7e88" source="7a2a91ff:134d8462990:-7c58" target="7a2a91ff:134d8462990:-7ca9"><mxGeometry as="geometry" y="290.0"><mxPoint as="sourcePoint" x="200.0" y="360.0"/><mxPoint as="targetPoint" x="180.0" y="410.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="180.0" y="360.0"/><mxPoint x="190.0" y="360.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="7a2a91ff:134d8462990:-7bb4" parent="7a2a91ff:134d8462990:-7e88" source="7a2a91ff:134d8462990:-7cf1" target="7a2a91ff:134d8462990:-7d2e"><mxGeometry as="geometry" y="-70.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="530.0" y="90.0"/><mxPoint x="530.0" y="90.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="7a2a91ff:134d8462990:-7bb2" parent="7a2a91ff:134d8462990:-7e88" source="7a2a91ff:134d8462990:-7d2f" target="7a2a91ff:134d8462990:-7d04"><mxGeometry as="geometry" y="-70.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="530.0" y="240.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="7a2a91ff:134d8462990:-7bab" parent="7a2a91ff:134d8462990:-7e88" source="7a2a91ff:134d8462990:-7c6d" target="7a2a91ff:134d8462990:-7ca6"><mxGeometry as="geometry" y="-70.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="520.0" y="410.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="7a2a91ff:134d8462990:-7baa" parent="7a2a91ff:134d8462990:-7e88" source="7a2a91ff:134d8462990:-7c5a" target="7a2a91ff:134d8462990:-7cb2"><mxGeometry as="geometry" y="-70.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="180.0" y="410.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="7a2a91ff:134d8462990:-7ba9" parent="7a2a91ff:134d8462990:-7e88" source="7a2a91ff:134d8462990:-7cb3" target="7a2a91ff:134d8462990:-7c87"><mxGeometry as="geometry" y="-70.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="180.0" y="560.0"/></Array></mxGeometry></ImplicitLink><BigSom dependsOnU="1" id="7a2a91ff:134d8462990:-7b99" interfaceFunctionName="BIGSOM_f" ordering="41" parent="7a2a91ff:134d8462990:-7e88" simulationFunctionName="sum" simulationFunctionType="TYPE_2" style="BIGSOM_f;flip=false;mirror=false" value="+"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="[1;1]"/></ScilabString><ScilabDouble as="realParameters" height="2" width="1"><data column="0" line="0" realPart="1.0"/><data column="0" line="1" realPart="1.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="650.0" y="190.0"/></BigSom><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="7a2a91ff:134d8462990:-7b96" ordering="2" parent="7a2a91ff:134d8462990:-7b99" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="26.0"/></ExplicitInputPort><ExplicitOutputPort dataColumns="1" dataType="REAL_MATRIX" id="7a2a91ff:134d8462990:-7b98" ordering="1" parent="7a2a91ff:134d8462990:-7b99" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="7a2a91ff:134d8462990:-7b97" ordering="1" parent="7a2a91ff:134d8462990:-7b99" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ExplicitInputPort><ExplicitLink id="7a2a91ff:134d8462990:-7b8f" parent="7a2a91ff:134d8462990:-7e88" source="7a2a91ff:134d8462990:-7b98" target="7a2a91ff:134d8462990:-7b83"><mxGeometry as="geometry" y="-70.0"><mxPoint as="sourcePoint" x="690.0" y="100.0"/><mxPoint as="targetPoint" x="790.0" y="200.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="700.0" y="210.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="7a2a91ff:134d8462990:-7b8e" parent="7a2a91ff:134d8462990:-7e88" source="7a2a91ff:134d8462990:-7caa" target="7a2a91ff:134d8462990:-7b96"><mxGeometry as="geometry" y="-70.0"><mxPoint as="sourcePoint" x="240.0" y="360.0"/><mxPoint as="targetPoint" x="640.0" y="110.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="620.0" y="360.0"/><mxPoint x="620.0" y="220.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="7a2a91ff:134d8462990:-7b8d" parent="7a2a91ff:134d8462990:-7e88" source="7a2a91ff:134d8462990:-7d32" target="7a2a91ff:134d8462990:-7b97"><mxGeometry as="geometry" y="-40.0"><mxPoint as="sourcePoint" x="250.0" y="70.0"/><mxPoint as="targetPoint" x="640.0" y="120.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="620.0" y="40.0"/><mxPoint x="620.0" y="200.0"/></Array></mxGeometry></ExplicitLink><BasicBlock dependsOnU="1" id="7a2a91ff:134d8462990:-7d4e" interfaceFunctionName="CSCOPE" ordering="42" parent="7a2a91ff:134d8462990:-7e88" simulationFunctionName="cscope" simulationFunctionType="C_OR_FORTRAN" style="CSCOPE;flip=false;mirror=false"><ScilabString as="exprs" height="10" width="1"><data column="0" line="0" value="1 3 5 7 9 11 13 15"/><data column="0" line="1" value="-1"/><data column="0" line="2" value="[]"/><data column="0" line="3" value="[600;400]"/><data column="0" line="4" value="-2.3"/><data column="0" line="5" value="2.3"/><data column="0" line="6" value="1"/><data column="0" line="7" value="20"/><data column="0" line="8" value="0"/><data column="0" line="9" value=""/></ScilabString><ScilabDouble as="realParameters" height="4" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="-2.3"/><data column="0" line="2" realPart="2.3"/><data column="0" line="3" realPart="1.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="15" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="1.0"/><data column="0" line="4" realPart="3.0"/><data column="0" line="5" realPart="5.0"/><data column="0" line="6" realPart="7.0"/><data column="0" line="7" realPart="9.0"/><data column="0" line="8" realPart="11.0"/><data column="0" line="9" realPart="13.0"/><data column="0" line="10" realPart="15.0"/><data column="0" line="11" realPart="-1.0"/><data column="0" line="12" realPart="-1.0"/><data column="0" line="13" realPart="600.0"/><data column="0" line="14" realPart="400.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="750.0" y="190.0"/></BasicBlock><ControlPort dataType="UNKNOW_TYPE" id="7a2a91ff:134d8462990:-7b82" ordering="1" parent="7a2a91ff:134d8462990:-7d4e" style="ControlPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="7a2a91ff:134d8462990:-7b83" ordering="1" parent="7a2a91ff:134d8462990:-7d4e" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><BasicBlock blockType="h" id="5635043b:13894cfb31b:-7933" interfaceFunctionName="CLOCK_c" ordering="43" parent="7a2a91ff:134d8462990:-7e88" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="139.0"/><data column="1" line="0" realPart="-170.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="188b11dc:1670bf9a1ba:-7da2"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="188b11dc:1670bf9a1ba:-7da2"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.1"/><data column="0" line="1" value="0.1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.1"/><data column="0" line="1" realPart="0.1"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.1"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="188b11dc:1670bf9a1ba:-7da0"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="188b11dc:1670bf9a1ba:-7da0"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="156.3773266666667"/><data column="1" line="0" realPart="-202.33333333333331"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="7.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="5.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="188b11dc:1670bf9a1ba:-7d9d"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="188b11dc:1670bf9a1ba:-7d9d"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="140.0"/><data column="0" line="2" realPart="166.8773266666667"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-44.0"/><data column="0" line="1" realPart="-220.0"/><data column="0" line="2" realPart="-191.33333333333331"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="165.71066000000005"/><data column="0" line="1" realPart="169.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-206.33333333333331"/><data column="0" line="1" realPart="-146.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="168.04399333333336"/><data column="0" line="1" realPart="180.70999999999998"/><data column="0" line="2" realPart="140.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-206.33333333333331"/><data column="0" line="1" realPart="-90.0"/><data column="0" line="2" realPart="-90.0"/><data column="0" line="3" realPart="4.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="750.0" y="120.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="5635043b:13894cfb31b:-7932" ordering="1" parent="5635043b:13894cfb31b:-7933" style="CommandPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><CommandControlLink id="5635043b:13894cfb31b:-792f" parent="7a2a91ff:134d8462990:-7e88" source="5635043b:13894cfb31b:-7932" target="7a2a91ff:134d8462990:-7b82"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="770.0" y="164.0"/><mxPoint as="targetPoint" x="770.0" y="180.0"/></mxGeometry></CommandControlLink><BasicBlock angle="270" dependsOnT="1" id="188b11dc:1670bf9a1ba:-7d7d" interfaceFunctionName="CCS" parent="7a2a91ff:134d8462990:-7e88" simulationFunctionName="CCS" simulationFunctionType="DEFAULT" style="CCS;rotation=270"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CCS"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="Iin"/><data column="0" line="1" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="100.0" y="130.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="188b11dc:1670bf9a1ba:-7d7c" ordering="1" parent="188b11dc:1670bf9a1ba:-7d7d" style="ExplicitInputPort;align=center;verticalAlign=bottom;spacing=10.0;rotation=270" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="6.0" y="40.0"/></ExplicitInputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="188b11dc:1670bf9a1ba:-7d7b" ordering="2" parent="188b11dc:1670bf9a1ba:-7d7d" style="ImplicitInputPort;align=center;verticalAlign=bottom;spacing=10.0;rotation=270" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="26.0" y="40.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="188b11dc:1670bf9a1ba:-7d7a" ordering="1" parent="188b11dc:1670bf9a1ba:-7d7d" style="ImplicitOutputPort;align=center;verticalAlign=top;spacing=10.0;rotation=270" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitOutputPort><ExplicitLink id="188b11dc:1670bf9a1ba:-7d5b" parent="7a2a91ff:134d8462990:-7e88" source="7a2a91ff:134d8462990:-7d46" target="188b11dc:1670bf9a1ba:-7d7c"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="110.0" y="170.0"/><mxPoint as="targetPoint" x="100.0" y="240.0"/><Array as="points" scilabClass=""><mxPoint x="110.0" y="240.0"/></Array></mxGeometry></ExplicitLink><SplitBlock id="188b11dc:1670bf9a1ba:-7d59" interfaceFunctionName="IMPSPLIT_f" parent="7a2a91ff:134d8462990:-7e88" simulationFunctionType="DEFAULT" style="IMPSPLIT_f"><mxGeometry as="geometry" height="7.0" width="7.0" x="187.0" y="87.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="188b11dc:1670bf9a1ba:-7d58" ordering="1" parent="188b11dc:1670bf9a1ba:-7d59" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="188b11dc:1670bf9a1ba:-7d57" ordering="1" parent="188b11dc:1670bf9a1ba:-7d59" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="188b11dc:1670bf9a1ba:-7d56" ordering="2" parent="188b11dc:1670bf9a1ba:-7d59" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="188b11dc:1670bf9a1ba:-7d55" parent="7a2a91ff:134d8462990:-7e88" source="7a2a91ff:134d8462990:-7ce2" target="188b11dc:1670bf9a1ba:-7d58"><mxGeometry as="geometry"><Array as="points" scilabClass=""/></mxGeometry></ImplicitLink><ImplicitLink id="188b11dc:1670bf9a1ba:-7d54" parent="7a2a91ff:134d8462990:-7e88" source="188b11dc:1670bf9a1ba:-7d57" target="7a2a91ff:134d8462990:-7d3a"><mxGeometry as="geometry"><Array as="points" scilabClass=""/></mxGeometry></ImplicitLink><ImplicitLink id="188b11dc:1670bf9a1ba:-7d5a" parent="7a2a91ff:134d8462990:-7e88" source="188b11dc:1670bf9a1ba:-7d7a" target="188b11dc:1670bf9a1ba:-7d56"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="120.0" y="130.0"/><mxPoint as="targetPoint" x="190.0" y="90.0"/><Array as="points" scilabClass=""><mxPoint x="120.0" y="90.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="188b11dc:1670bf9a1ba:-7d52" interfaceFunctionName="IMPSPLIT_f" parent="7a2a91ff:134d8462990:-7e88" simulationFunctionType="DEFAULT" style="IMPSPLIT_f"><mxGeometry as="geometry" height="7.0" width="7.0" x="187.0" y="237.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="188b11dc:1670bf9a1ba:-7d51" ordering="1" parent="188b11dc:1670bf9a1ba:-7d52" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="188b11dc:1670bf9a1ba:-7d50" ordering="1" parent="188b11dc:1670bf9a1ba:-7d52" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="188b11dc:1670bf9a1ba:-7d4f" ordering="2" parent="188b11dc:1670bf9a1ba:-7d52" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="188b11dc:1670bf9a1ba:-7d4e" parent="7a2a91ff:134d8462990:-7e88" source="7a2a91ff:134d8462990:-7d3b" target="188b11dc:1670bf9a1ba:-7d51"><mxGeometry as="geometry"><Array as="points" scilabClass=""><mxPoint x="190.0" y="240.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="188b11dc:1670bf9a1ba:-7d4d" parent="7a2a91ff:134d8462990:-7e88" source="7a2a91ff:134d8462990:-7d0f" target="188b11dc:1670bf9a1ba:-7d50"><mxGeometry as="geometry"><Array as="points" scilabClass=""/></mxGeometry></ImplicitLink><ImplicitLink id="188b11dc:1670bf9a1ba:-7d53" parent="7a2a91ff:134d8462990:-7e88" source="188b11dc:1670bf9a1ba:-7d4f" target="188b11dc:1670bf9a1ba:-7d7b"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="220.0" y="210.0"/><mxPoint as="targetPoint" x="130.0" y="180.0"/><Array as="points" scilabClass=""><mxPoint x="130.0" y="240.0"/></Array></mxGeometry></ImplicitLink></root></mxGraphModel><mxCell as="defaultParent" id="7a2a91ff:134d8462990:-7e88" parent="7a2a91ff:134d8462990:-7e87"/></XcosDiagram>
\ No newline at end of file diff --git a/Working_Examples/215/CH11/EX11.1/ex11_1.sce b/Working_Examples/215/CH11/EX11.1/ex11_1.sce new file mode 100755 index 0000000..57ef313 --- /dev/null +++ b/Working_Examples/215/CH11/EX11.1/ex11_1.sce @@ -0,0 +1,27 @@ +clc
+//Example 11.1
+//Calculate the powerr absorbed by capacitor and resistor
+printf("Given")
+disp('Capacitor 5uF, Resistor 200 ohm, Voltage source is 40+60*u(t)')
+C=5*10^-6;R=200;
+//For t<0 the value of u(t) is zero hence at t=0- the value of voltage is 40V
+//For t=0+ the voltage is 100V
+//At t=0+ the capacitor cannot charge instantaneously hence resistor voltage is 60V
+disp('For t=0+')
+VR=60;
+i0=VR/R
+T=R*C
+t=1.2*10^-3
+disp('The value of current is i(t)=i0*exp(-t/T)')
+ival=i0*exp(-t/T)
+printf("Value of resistor current at 1.2ms=%3.2f mA \n",ival*10^3)
+//Let PR be the power absorbed by the resistor
+PR=ival^2*R
+printf("Value of resistive power at 1.2ms=%3.2f W \n",PR)
+//Out of the 100V available at t>0 the voltage across the capacitor is
+disp('vC(t)=100-60*exp(-t/T)')
+vCval=100-60*exp(-t/T)
+printf("Value of capacitor voltage at 1.2ms=%3.2f V \n",vCval)
+//Let PC be the power absorbed by the capacitor
+PC=ival*vCval
+printf("Value of capacitive power at 1.2ms=%3.2f W \n",PC)
\ No newline at end of file diff --git a/Working_Examples/215/CH11/EX11.2/Figure11_21.jpg b/Working_Examples/215/CH11/EX11.2/Figure11_21.jpg Binary files differnew file mode 100755 index 0000000..9d428ea --- /dev/null +++ b/Working_Examples/215/CH11/EX11.2/Figure11_21.jpg diff --git a/Working_Examples/215/CH11/EX11.2/Figure11_22.jpg b/Working_Examples/215/CH11/EX11.2/Figure11_22.jpg Binary files differnew file mode 100755 index 0000000..64962b8 --- /dev/null +++ b/Working_Examples/215/CH11/EX11.2/Figure11_22.jpg diff --git a/Working_Examples/215/CH11/EX11.2/ex11_2.sce b/Working_Examples/215/CH11/EX11.2/ex11_2.sce new file mode 100755 index 0000000..d9afdb0 --- /dev/null +++ b/Working_Examples/215/CH11/EX11.2/ex11_2.sce @@ -0,0 +1,29 @@ +clc
+//Example 11.2
+//Calculate the average power
+printf("Given")
+disp('v=4*cos(%pi/6*t), V=4(0 deg), Z=2(60 deg)')
+Vamp=4;Vang=0;Zamp=2;Zang=60;
+//Let I be the phasor current
+Iamp=Vamp/Zamp
+Iang=Vang-Zang
+P=0.5*Vamp*Zamp*cos((Zang*%pi)/180)
+printf("P=%d W \n",P);
+t=-1:1:15
+t1=-3:1:12
+v=Vamp*cos(%pi/6*t)
+//i=2*cos((%pi/6)*t-(%pi/3))
+i=Iamp*cos(%pi/6*t+((Iang*%pi)/180))
+figure
+a= gca ();
+plot (t,v,t,i)
+xtitle ('v,i vs t' ,'t' ,'v,i');
+a. thickness = 2;
+//Instantaneous power p=v*i
+//On solving
+p=2+4*cos(%pi/3*t+((Iang*%pi)/180))
+figure
+a= gca ();
+plot (t,p)
+xtitle ('p vs t' ,'t' ,'p');
+a. thickness = 2;
diff --git a/Working_Examples/215/CH11/EX11.3/ex11_3.sce b/Working_Examples/215/CH11/EX11.3/ex11_3.sce new file mode 100755 index 0000000..4fb84d3 --- /dev/null +++ b/Working_Examples/215/CH11/EX11.3/ex11_3.sce @@ -0,0 +1,11 @@ +clc
+//Example 11.3
+//Calculate the Average Power
+printf("Given")
+disp('ZL=8-i*11 ohm, I=5(20 deg)A')
+R=8;Iamp=5;
+//We need to calculate the average power
+//In the calculation of average power the resistance part of impedace only occurs
+//Let P be the average power
+P=0.5*Iamp^2*R
+printf("Average Power=%d W \n",P)
\ No newline at end of file diff --git a/Working_Examples/215/CH11/EX11.4/Figure11_41.jpg b/Working_Examples/215/CH11/EX11.4/Figure11_41.jpg Binary files differnew file mode 100755 index 0000000..626b297 --- /dev/null +++ b/Working_Examples/215/CH11/EX11.4/Figure11_41.jpg diff --git a/Working_Examples/215/CH11/EX11.4/Figure11_42.jpg b/Working_Examples/215/CH11/EX11.4/Figure11_42.jpg Binary files differnew file mode 100755 index 0000000..47abc90 --- /dev/null +++ b/Working_Examples/215/CH11/EX11.4/Figure11_42.jpg diff --git a/Working_Examples/215/CH11/EX11.4/ex11_4.sce b/Working_Examples/215/CH11/EX11.4/ex11_4.sce new file mode 100755 index 0000000..d51e615 --- /dev/null +++ b/Working_Examples/215/CH11/EX11.4/ex11_4.sce @@ -0,0 +1,21 @@ +clc
+//Example 11.4
+//Calculate the Average power absorbed and average power supplied by source
+//From figure 11.6
+//By applying mesh analysis
+I1mag=11.18;I1ang=-63.43;I2mag=7.071;I2ang=-45;R=2;Vleft=20;Vright=10;
+//Current through 2 ohm resistor
+printf("I1-I2=%d(%d ang) A \n",5,-90)
+//Average power absorbed by resistor
+PR=0.5*5^2*R
+printf("Average power absorbed by resistor=%d W \n",PR)
+//Power supplied by left source
+Pleft=0.5*Vleft*I1mag*cos(0-I1ang*%pi/180)
+//Power supplied by right source
+Pright=0.5*Vright*I2mag*cos(0+I2ang*%pi/180)
+printf("Power supplied by sources \t Pleft=%d W \t Pright=%3.1f W",Pleft,Pright);
+
+
+
+
+
diff --git a/Working_Examples/215/CH11/EX11.6/ex11_6.sce b/Working_Examples/215/CH11/EX11.6/ex11_6.sce new file mode 100755 index 0000000..dc3252c --- /dev/null +++ b/Working_Examples/215/CH11/EX11.6/ex11_6.sce @@ -0,0 +1,9 @@ +clc
+//Example 11.6
+//Calculate the Average power
+printf("Given")
+disp('Resistor value is 4 ohm, i1=2*cos(10t)-3*cos(20t) A')
+R=4;im1=2;im2=-3;
+//Let P be the average power delievered
+P=0.5*im1^2*R+0.5*im2^2*R
+printf("Average power=%d W",P)
diff --git a/Working_Examples/215/CH11/EX11.7/ex11_7.sce b/Working_Examples/215/CH11/EX11.7/ex11_7.sce new file mode 100755 index 0000000..d64e258 --- /dev/null +++ b/Working_Examples/215/CH11/EX11.7/ex11_7.sce @@ -0,0 +1,10 @@ +clc
+//Example 11.7
+//Calculate the Average power
+printf("Given")
+disp('Resistor value is 4 ohm, i2=2*cos(10t)-3*cos(10t) A')
+disp('On solving we get i2=-cos(10t)')
+R=4;im=-1
+//Let P be the average power delievered
+P=0.5*im^2*R
+printf("Average power=%d W",P)
\ No newline at end of file diff --git a/Working_Examples/215/CH11/EX11.8/ex11_8.sce b/Working_Examples/215/CH11/EX11.8/ex11_8.sce new file mode 100755 index 0000000..4e38138 --- /dev/null +++ b/Working_Examples/215/CH11/EX11.8/ex11_8.sce @@ -0,0 +1,26 @@ +clc
+//Example 11.8
+//Calculate average power, power supplied by source and the power factor
+printf("Given")
+disp('Voltage source is 60 V,Load values are 2-i ohm and 1+5i ohm')
+Vamp=60;Vang=0;
+//Let Z be the cobined resistance
+Z=2-%i+1+5*%i
+[Zmag Zph]=polar(Z)
+Isamp=Vamp/Zmag;
+Isang=Vang-Zph;
+printf("Ieff=%3.0f A rms and angle of Is is %3.2f degree\n",Isamp,(Isang*180)/%pi);
+//Let Pupper be the power delievered to the upper load
+Rtop=2;
+Pupper=Isamp^2*Rtop
+printf("Average Power delievered to the top load=%3.0f W \n",Pupper)
+//Let Plower be the power delievered to the lower load
+Rright=1;
+Plower=Isamp^2*Rright
+printf("Average Power delievered to the right load=%3.0f W \n",Plower)
+//Let Papp be the apparent power
+Papp=Vamp*Isamp
+printf("Apparent Power =%3.0f VA \n",Papp)
+//Let pf be the power factor
+pf=(Pupper+Plower)/Papp
+printf("power factor=%3.1f lag \n",pf)
\ No newline at end of file diff --git a/Working_Examples/215/CH11/EX11.9/ex11_9.sce b/Working_Examples/215/CH11/EX11.9/ex11_9.sce new file mode 100755 index 0000000..e2aad97 --- /dev/null +++ b/Working_Examples/215/CH11/EX11.9/ex11_9.sce @@ -0,0 +1,34 @@ +clc
+//Example 11.9
+printf("Given")
+disp('Power of induction motor=50kW ,power factor is 0.8 lag,Source voltage is 230V')
+disp('The wish of the consumer is to raise the power factor to 0.95 lag')
+//Let S1 be the complex power supplied to the indiction motor
+V=230;Pmag=50*10^3;pf=0.8;
+Pang=(acos(pf)*180)/%pi
+S1mag=Pmag/pf
+S1ph=Pang
+x=S1mag * cos (( Pang * %pi ) /180) ;
+y=S1mag * sin (( Pang * %pi ) /180) ;
+z= complex (x,y)
+disp(z ,'S1=')
+//To achieve a power factor of 0.95
+pf1=0.95
+//Now the total complex power be S
+P1ang=(acos(pf1)*180)/%pi
+Smag=Pmag/pf1
+Sph=P1ang
+a=Smag * cos (( P1ang * %pi ) /180) ;
+b=Smag * sin (( P1ang * %pi ) /180) ;
+c= complex (a,b)
+disp(c,'S=')
+//Let S2 be the complex power drawn by the corrective load
+S2=c-z
+disp(S2,'S2=')
+disp('Let a phase angle of voltage source selected be 0 degree')
+//Let I2 be the current
+I2=-S2/V
+//Let Z2 be the impedance of corrective load
+Z2=V/I2
+disp(Z2,'Z2=')
+
diff --git a/Working_Examples/215/CH12/EX12.1/Figure12_1_xcos.jpg b/Working_Examples/215/CH12/EX12.1/Figure12_1_xcos.jpg Binary files differnew file mode 100755 index 0000000..1032c88 --- /dev/null +++ b/Working_Examples/215/CH12/EX12.1/Figure12_1_xcos.jpg diff --git a/Working_Examples/215/CH12/EX12.1/ex12_1.xcos b/Working_Examples/215/CH12/EX12.1/ex12_1.xcos new file mode 100755 index 0000000..44a350f --- /dev/null +++ b/Working_Examples/215/CH12/EX12.1/ex12_1.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" finalIntegrationTime="1.0" title="ex12_1"><!--Xcos - 1.0 - scilab-5.5.2 - 20160406 2040--><mxGraphModel as="model"><root><mxCell id="-10514b51:134e53d5ed9:-7ffd"/><mxCell id="-10514b51:134e53d5ed9:-7ffe" parent="-10514b51:134e53d5ed9:-7ffd"/><GroundBlock dependsOnU="1" id="6641adef:135055938d4:-7a19" interfaceFunctionName="Ground" ordering="1" parent="-10514b51:134e53d5ed9:-7ffe" simulationFunctionName="Ground" simulationFunctionType="DEFAULT" style="Ground;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Ground"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="290.0" y="390.0"/></GroundBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-10514b51:134e53d5ed9:-7fd6" ordering="1" parent="6641adef:135055938d4:-7a19" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><Orientation as="orientation" value="NORTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="6641adef:135055938d4:-7a17" interfaceFunctionName="CurrentSensor" ordering="2" parent="-10514b51:134e53d5ed9:-7ffe" simulationFunctionName="CurrentSensor" simulationFunctionType="DEFAULT" style="CurrentSensor;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CurrentSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="i"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="240.0" y="40.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-10514b51:134e53d5ed9:-7fca" ordering="2" parent="6641adef:135055938d4:-7a17" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="26.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-10514b51:134e53d5ed9:-7fc9" ordering="1" parent="6641adef:135055938d4:-7a17" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-10514b51:134e53d5ed9:-7fcb" ordering="1" parent="6641adef:135055938d4:-7a17" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="6.0"/></ImplicitOutputPort><BasicBlock angle="90" dependsOnU="1" id="6641adef:135055938d4:-7a13" interfaceFunctionName="Inductor" ordering="3" parent="-10514b51:134e53d5ed9:-7ffe" simulationFunctionName="Inductor" simulationFunctionType="DEFAULT" style="Inductor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="0.1"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="0.1"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Inductor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="L"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.1"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="410.0" y="250.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-10514b51:134e53d5ed9:-7eba" ordering="1" parent="6641adef:135055938d4:-7a13" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-10514b51:134e53d5ed9:-7eb9" ordering="1" parent="6641adef:135055938d4:-7a13" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><BasicBlock dependsOnU="1" id="6641adef:135055938d4:-7a10" interfaceFunctionName="Resistor" ordering="4" parent="-10514b51:134e53d5ed9:-7ffe" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="3"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="180.0" y="190.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-10514b51:134e53d5ed9:-7eae" ordering="1" parent="6641adef:135055938d4:-7a10" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-10514b51:134e53d5ed9:-7ead" ordering="1" parent="6641adef:135055938d4:-7a10" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><BasicBlock angle="90" dependsOnT="1" id="6641adef:135055938d4:-7a0d" interfaceFunctionName="CVS" ordering="5" parent="-10514b51:134e53d5ed9:-7ffe" simulationFunctionName="CVS" simulationFunctionType="DEFAULT" style="CVS;rotation=90;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CVS"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="vin"/><data column="0" line="1" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="90.0" y="260.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-10514b51:134e53d5ed9:-7fa7" ordering="1" parent="6641adef:135055938d4:-7a0d" style="ExplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="6.0" y="-8.0"/></ExplicitInputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-10514b51:134e53d5ed9:-7fa6" ordering="2" parent="6641adef:135055938d4:-7a0d" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="26.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-10514b51:134e53d5ed9:-7fa8" ordering="1" parent="6641adef:135055938d4:-7a0d" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><BasicBlock dependsOnU="1" id="6641adef:135055938d4:-7a09" interfaceFunctionName="Resistor" ordering="6" parent="-10514b51:134e53d5ed9:-7ffe" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="240.0" y="330.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-10514b51:134e53d5ed9:-7eb2" ordering="1" parent="6641adef:135055938d4:-7a09" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-10514b51:134e53d5ed9:-7eb1" ordering="1" parent="6641adef:135055938d4:-7a09" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><BasicBlock dependsOnU="1" id="6641adef:135055938d4:-7a06" interfaceFunctionName="Resistor" ordering="7" parent="-10514b51:134e53d5ed9:-7ffe" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="170.0" y="40.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-10514b51:134e53d5ed9:-7eaa" ordering="1" parent="6641adef:135055938d4:-7a06" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-10514b51:134e53d5ed9:-7ea9" ordering="1" parent="6641adef:135055938d4:-7a06" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><BasicBlock angle="90" dependsOnU="1" id="6641adef:135055938d4:-7a03" interfaceFunctionName="Resistor" ordering="8" parent="-10514b51:134e53d5ed9:-7ffe" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="50"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="50.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="50.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="290.0" y="100.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-10514b51:134e53d5ed9:-7ea6" ordering="1" parent="6641adef:135055938d4:-7a03" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-10514b51:134e53d5ed9:-7ea5" ordering="1" parent="6641adef:135055938d4:-7a03" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><BasicBlock angle="90" dependsOnU="1" id="6641adef:135055938d4:-7a00" interfaceFunctionName="Resistor" ordering="9" parent="-10514b51:134e53d5ed9:-7ffe" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="100"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="100.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="290.0" y="260.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-10514b51:134e53d5ed9:-7eb6" ordering="1" parent="6641adef:135055938d4:-7a00" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-10514b51:134e53d5ed9:-7eb5" ordering="1" parent="6641adef:135055938d4:-7a00" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><BasicBlock angle="90" dependsOnU="1" id="6641adef:135055938d4:-79fd" interfaceFunctionName="Resistor" ordering="10" parent="-10514b51:134e53d5ed9:-7ffe" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="20"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="20.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="20.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="410.0" y="140.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-10514b51:134e53d5ed9:-7ebe" ordering="1" parent="6641adef:135055938d4:-79fd" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-10514b51:134e53d5ed9:-7ebd" ordering="1" parent="6641adef:135055938d4:-79fd" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><BasicBlock dependsOnT="1" id="6641adef:135055938d4:-79fa" interfaceFunctionName="GENSIN_f" ordering="11" parent="-10514b51:134e53d5ed9:-7ffe" simulationFunctionName="gensin" simulationFunctionType="DEFAULT" style="GENSIN_f;flip=false;mirror=false"><ScilabString as="exprs" height="3" width="1"><data column="0" line="0" value="115"/><data column="0" line="1" value="100"/><data column="0" line="2" value="0"/></ScilabString><ScilabDouble as="realParameters" height="3" width="1"><data column="0" line="0" realPart="115.0"/><data column="0" line="1" realPart="100.0"/><data column="0" line="2" realPart="0.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="60.0" width="80.0" x="10.0" y="10.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-10514b51:134e53d5ed9:-7f20" ordering="1" parent="6641adef:135055938d4:-79fa" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="80.0" y="26.0"/></ExplicitOutputPort><ExplicitLink id="-10514b51:134e53d5ed9:-7f59" parent="-10514b51:134e53d5ed9:-7ffe" source="-10514b51:134e53d5ed9:-7f20" target="-10514b51:134e53d5ed9:-7fde"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="90.0" y="40.0"/><mxPoint as="targetPoint" x="110.0" y="100.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="110.0" y="40.0"/></Array></mxGeometry></ExplicitLink><ImplicitLink id="-10514b51:134e53d5ed9:-7f58" parent="-10514b51:134e53d5ed9:-7ffe" source="-10514b51:134e53d5ed9:-7fdd" target="-10514b51:134e53d5ed9:-7eaa"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="130.0" y="100.0"/><mxPoint as="targetPoint" x="160.0" y="60.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="130.0" y="60.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-10514b51:134e53d5ed9:-7f57" parent="-10514b51:134e53d5ed9:-7ffe" source="-10514b51:134e53d5ed9:-7ea9" target="-10514b51:134e53d5ed9:-7fc9"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="210.0" y="60.0"/><mxPoint as="targetPoint" x="240.0" y="60.0"/></mxGeometry></ImplicitLink><ImplicitLink id="-10514b51:134e53d5ed9:-7f52" parent="-10514b51:134e53d5ed9:-7ffe" source="-10514b51:134e53d5ed9:-7ebd" target="-10514b51:134e53d5ed9:-7eba"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="430.0" y="140.0"/><mxPoint as="targetPoint" x="430.0" y="250.0"/></mxGeometry></ImplicitLink><SplitBlock id="6641adef:135055938d4:-79f4" ordering="12" parent="-10514b51:134e53d5ed9:-7ffe" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="117.0" y="207.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-10514b51:134e53d5ed9:-7f4b" ordering="1" parent="6641adef:135055938d4:-79f4" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-10514b51:134e53d5ed9:-7f4a" ordering="2" parent="6641adef:135055938d4:-79f4" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-10514b51:134e53d5ed9:-7f4c" ordering="1" parent="6641adef:135055938d4:-79f4" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-10514b51:134e53d5ed9:-7f49" parent="-10514b51:134e53d5ed9:-7ffe" source="-10514b51:134e53d5ed9:-7fdf" target="-10514b51:134e53d5ed9:-7f4c"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-10514b51:134e53d5ed9:-7f48" parent="-10514b51:134e53d5ed9:-7ffe" source="-10514b51:134e53d5ed9:-7f4b" target="-10514b51:134e53d5ed9:-7fa6"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-10514b51:134e53d5ed9:-7f4e" parent="-10514b51:134e53d5ed9:-7ffe" source="-10514b51:134e53d5ed9:-7f4a" target="-10514b51:134e53d5ed9:-7eae"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="180.0" y="210.0"/><mxPoint as="targetPoint" x="120.0" y="210.0"/></mxGeometry></ImplicitLink><SplitBlock id="6641adef:135055938d4:-79ed" ordering="13" parent="-10514b51:134e53d5ed9:-7ffe" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="307.0" y="347.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-10514b51:134e53d5ed9:-7f38" ordering="1" parent="6641adef:135055938d4:-79ed" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-10514b51:134e53d5ed9:-7f37" ordering="2" parent="6641adef:135055938d4:-79ed" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-10514b51:134e53d5ed9:-7f39" ordering="1" parent="6641adef:135055938d4:-79ed" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-10514b51:134e53d5ed9:-7f36" parent="-10514b51:134e53d5ed9:-7ffe" source="-10514b51:134e53d5ed9:-7eb1" target="-10514b51:134e53d5ed9:-7f39"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-10514b51:134e53d5ed9:-7f35" parent="-10514b51:134e53d5ed9:-7ffe" source="-10514b51:134e53d5ed9:-7eb9" target="-10514b51:134e53d5ed9:-7f38"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="430.0" y="350.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="6641adef:135055938d4:-79e7" ordering="14" parent="-10514b51:134e53d5ed9:-7ffe" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="307.0" y="207.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-10514b51:134e53d5ed9:-7f31" ordering="1" parent="6641adef:135055938d4:-79e7" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-10514b51:134e53d5ed9:-7f30" ordering="2" parent="6641adef:135055938d4:-79e7" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-10514b51:134e53d5ed9:-7f32" ordering="1" parent="6641adef:135055938d4:-79e7" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-10514b51:134e53d5ed9:-7f2f" parent="-10514b51:134e53d5ed9:-7ffe" source="-10514b51:134e53d5ed9:-7ea5" target="-10514b51:134e53d5ed9:-7f32"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-10514b51:134e53d5ed9:-7f2e" parent="-10514b51:134e53d5ed9:-7ffe" source="-10514b51:134e53d5ed9:-7f31" target="-10514b51:134e53d5ed9:-7eb6"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-10514b51:134e53d5ed9:-7f34" parent="-10514b51:134e53d5ed9:-7ffe" source="-10514b51:134e53d5ed9:-7ead" target="-10514b51:134e53d5ed9:-7f30"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="220.0" y="210.0"/><mxPoint as="targetPoint" x="310.0" y="210.0"/></mxGeometry></ImplicitLink><SplitBlock id="6641adef:135055938d4:-79e0" ordering="15" parent="-10514b51:134e53d5ed9:-7ffe" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="307.0" y="347.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-10514b51:134e53d5ed9:-7f25" ordering="1" parent="6641adef:135055938d4:-79e0" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-10514b51:134e53d5ed9:-7f24" ordering="2" parent="6641adef:135055938d4:-79e0" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-10514b51:134e53d5ed9:-7f26" ordering="1" parent="6641adef:135055938d4:-79e0" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-10514b51:134e53d5ed9:-7f23" parent="-10514b51:134e53d5ed9:-7ffe" source="-10514b51:134e53d5ed9:-7eb5" target="-10514b51:134e53d5ed9:-7f26"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-10514b51:134e53d5ed9:-7f22" parent="-10514b51:134e53d5ed9:-7ffe" source="-10514b51:134e53d5ed9:-7f37" target="-10514b51:134e53d5ed9:-7f25"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-10514b51:134e53d5ed9:-7f28" parent="-10514b51:134e53d5ed9:-7ffe" source="-10514b51:134e53d5ed9:-7f24" target="-10514b51:134e53d5ed9:-7fd6"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="310.0" y="390.0"/><mxPoint as="targetPoint" x="310.0" y="350.0"/></mxGeometry></ImplicitLink><BasicBlock dependsOnT="1" id="6641adef:135055938d4:-79d9" interfaceFunctionName="GENSIN_f" ordering="16" parent="-10514b51:134e53d5ed9:-7ffe" simulationFunctionName="gensin" simulationFunctionType="DEFAULT" style="GENSIN_f;flip=false;mirror=false"><ScilabString as="exprs" height="3" width="1"><data column="0" line="0" value="115"/><data column="0" line="1" value="100"/><data column="0" line="2" value="0"/></ScilabString><ScilabDouble as="realParameters" height="3" width="1"><data column="0" line="0" realPart="115.0"/><data column="0" line="1" realPart="100.0"/><data column="0" line="2" realPart="0.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="60.0" width="80.0" x="10.0" y="180.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-10514b51:134e53d5ed9:-7f1b" ordering="1" parent="6641adef:135055938d4:-79d9" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="80.0" y="26.0"/></ExplicitOutputPort><ExplicitLink id="-10514b51:134e53d5ed9:-7f18" parent="-10514b51:134e53d5ed9:-7ffe" source="-10514b51:134e53d5ed9:-7f1b" target="-10514b51:134e53d5ed9:-7fa7"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="80.0" y="210.0"/><mxPoint as="targetPoint" x="100.0" y="260.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="100.0" y="210.0"/></Array></mxGeometry></ExplicitLink><BasicBlock angle="180" dependsOnU="1" id="6641adef:135055938d4:-79d6" interfaceFunctionName="CurrentSensor" ordering="17" parent="-10514b51:134e53d5ed9:-7ffe" simulationFunctionName="CurrentSensor" simulationFunctionType="DEFAULT" style="CurrentSensor;rotation=180;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CurrentSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="i"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="150.0" y="330.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-10514b51:134e53d5ed9:-7f0c" ordering="2" parent="6641adef:135055938d4:-79d6" style="ExplicitOutputPort;align=left;verticalAlign=middle;spacing=10;rotation=180;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="26.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-10514b51:134e53d5ed9:-7f0b" ordering="1" parent="6641adef:135055938d4:-79d6" style="ImplicitInputPort;align=right;verticalAlign=middle;spacing=10;rotation=180;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-10514b51:134e53d5ed9:-7f0d" ordering="1" parent="6641adef:135055938d4:-79d6" style="ImplicitOutputPort;align=left;verticalAlign=middle;spacing=10;rotation=180;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ImplicitOutputPort><BasicBlock dependsOnU="1" id="6641adef:135055938d4:-79d0" interfaceFunctionName="CurrentSensor" ordering="18" parent="-10514b51:134e53d5ed9:-7ffe" simulationFunctionName="CurrentSensor" simulationFunctionType="DEFAULT" style="CurrentSensor;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CurrentSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="i"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="380.0" y="30.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-10514b51:134e53d5ed9:-7efa" ordering="2" parent="6641adef:135055938d4:-79d0" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="26.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-10514b51:134e53d5ed9:-7ef9" ordering="1" parent="6641adef:135055938d4:-79d0" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-10514b51:134e53d5ed9:-7efb" ordering="1" parent="6641adef:135055938d4:-79d0" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="6.0"/></ImplicitOutputPort><BasicBlock dependsOnU="1" id="6641adef:135055938d4:-79cc" interfaceFunctionName="CSCOPE" ordering="19" parent="-10514b51:134e53d5ed9:-7ffe" simulationFunctionName="cscope" simulationFunctionType="C_OR_FORTRAN" style="CSCOPE;flip=false;mirror=false"><ScilabString as="exprs" height="10" width="1"><data column="0" line="0" value="1 3 5 7 9 11 13 15"/><data column="0" line="1" value="-1"/><data column="0" line="2" value="[]"/><data column="0" line="3" value="[600;400]"/><data column="0" line="4" value="-11.5"/><data column="0" line="5" value="11.5"/><data column="0" line="6" value="1"/><data column="0" line="7" value="20"/><data column="0" line="8" value="0"/><data column="0" line="9" value=""/></ScilabString><ScilabDouble as="realParameters" height="4" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="-11.5"/><data column="0" line="2" realPart="11.5"/><data column="0" line="3" realPart="1.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="15" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="1.0"/><data column="0" line="4" realPart="3.0"/><data column="0" line="5" realPart="5.0"/><data column="0" line="6" realPart="7.0"/><data column="0" line="7" realPart="9.0"/><data column="0" line="8" realPart="11.0"/><data column="0" line="9" realPart="13.0"/><data column="0" line="10" realPart="15.0"/><data column="0" line="11" realPart="-1.0"/><data column="0" line="12" realPart="-1.0"/><data column="0" line="13" realPart="600.0"/><data column="0" line="14" realPart="400.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="560.0" y="90.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="6641adef:135055938d4:-7777" ordering="1" parent="6641adef:135055938d4:-79cc" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ControlPort dataType="UNKNOW_TYPE" id="6641adef:135055938d4:-7776" ordering="1" parent="6641adef:135055938d4:-79cc" style="ControlPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><ImplicitLink id="-10514b51:134e53d5ed9:-7ee0" parent="-10514b51:134e53d5ed9:-7ffe" source="-10514b51:134e53d5ed9:-7f0b" target="-10514b51:134e53d5ed9:-7eb2"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="190.0" y="350.0"/><mxPoint as="targetPoint" x="240.0" y="350.0"/></mxGeometry></ImplicitLink><ImplicitLink id="-10514b51:134e53d5ed9:-7edf" parent="-10514b51:134e53d5ed9:-7ffe" source="-10514b51:134e53d5ed9:-7fa8" target="-10514b51:134e53d5ed9:-7f0d"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="150.0" y="340.0"/><mxPoint as="targetPoint" x="110.0" y="300.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="110.0" y="340.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="6641adef:135055938d4:-79c3" ordering="20" parent="-10514b51:134e53d5ed9:-7ffe" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="307.0" y="47.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-10514b51:134e53d5ed9:-7ecb" ordering="1" parent="6641adef:135055938d4:-79c3" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-10514b51:134e53d5ed9:-7eca" ordering="2" parent="6641adef:135055938d4:-79c3" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-10514b51:134e53d5ed9:-7ecc" ordering="1" parent="6641adef:135055938d4:-79c3" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-10514b51:134e53d5ed9:-7ec9" parent="-10514b51:134e53d5ed9:-7ffe" source="-10514b51:134e53d5ed9:-7fcb" target="-10514b51:134e53d5ed9:-7ecc"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-10514b51:134e53d5ed9:-7ec8" parent="-10514b51:134e53d5ed9:-7ffe" source="-10514b51:134e53d5ed9:-7ecb" target="-10514b51:134e53d5ed9:-7ea6"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-10514b51:134e53d5ed9:-7ece" parent="-10514b51:134e53d5ed9:-7ffe" source="-10514b51:134e53d5ed9:-7eca" target="-10514b51:134e53d5ed9:-7ef9"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="380.0" y="50.0"/><mxPoint as="targetPoint" x="310.0" y="50.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="340.0" y="50.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-10514b51:134e53d5ed9:-7ec7" parent="-10514b51:134e53d5ed9:-7ffe" source="-10514b51:134e53d5ed9:-7efb" target="-10514b51:134e53d5ed9:-7ebe"><mxGeometry as="geometry" x="-10.0"><mxPoint as="sourcePoint" x="410.0" y="40.0"/><mxPoint as="targetPoint" x="420.0" y="150.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="430.0" y="40.0"/></Array></mxGeometry></ImplicitLink><BasicBlock dependsOnU="1" id="6641adef:135055938d4:-7794" interfaceFunctionName="MUX" ordering="21" parent="-10514b51:134e53d5ed9:-7ffe" simulationFunctionName="multiplex" simulationFunctionType="C_OR_FORTRAN" style="MUX;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="3"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="20.0" width="30.0" x="500.0" y="100.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="6641adef:135055938d4:-7787" ordering="1" parent="6641adef:135055938d4:-7794" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ExplicitInputPort><ExplicitInputPort dataColumns="1" dataLines="-2" dataType="REAL_MATRIX" id="6641adef:135055938d4:-7786" ordering="2" parent="6641adef:135055938d4:-7794" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ExplicitInputPort><ExplicitInputPort dataColumns="1" dataLines="-3" dataType="REAL_MATRIX" id="6641adef:135055938d4:-7785" ordering="3" parent="6641adef:135055938d4:-7794" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitOutputPort dataColumns="1" dataLines="0" dataType="REAL_MATRIX" id="6641adef:135055938d4:-7784" ordering="1" parent="6641adef:135055938d4:-7794" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="30.0" y="6.0"/></ExplicitOutputPort><ExplicitLink id="6641adef:135055938d4:-7782" parent="-10514b51:134e53d5ed9:-7ffe" source="-10514b51:134e53d5ed9:-7efa" target="6641adef:135055938d4:-7787"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="420.0" y="60.0"/><mxPoint as="targetPoint" x="490.0" y="100.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="450.0" y="60.0"/><mxPoint x="450.0" y="100.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="6641adef:135055938d4:-7781" parent="-10514b51:134e53d5ed9:-7ffe" source="-10514b51:134e53d5ed9:-7fca" target="6641adef:135055938d4:-7786"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="280.0" y="70.0"/><mxPoint as="targetPoint" x="490.0" y="110.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="350.0" y="70.0"/><mxPoint x="350.0" y="110.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="6641adef:135055938d4:-7780" parent="-10514b51:134e53d5ed9:-7ffe" source="-10514b51:134e53d5ed9:-7f0c" target="6641adef:135055938d4:-7785"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="500.0" y="120.0"/><mxPoint as="targetPoint" x="150.0" y="360.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="450.0" y="360.0"/><mxPoint x="450.0" y="120.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="6641adef:135055938d4:-777a" parent="-10514b51:134e53d5ed9:-7ffe" source="6641adef:135055938d4:-7784" target="6641adef:135055938d4:-7777"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="530.0" y="110.0"/><mxPoint as="targetPoint" x="560.0" y="110.0"/></mxGeometry></ExplicitLink><BasicBlock angle="90" dependsOnT="1" id="6641adef:135055938d4:-7a1d" interfaceFunctionName="CVS" ordering="22" parent="-10514b51:134e53d5ed9:-7ffe" simulationFunctionName="CVS" simulationFunctionType="DEFAULT" style="CVS;rotation=90;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CVS"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="vin"/><data column="0" line="1" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="100.0" y="100.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-10514b51:134e53d5ed9:-7fde" ordering="1" parent="6641adef:135055938d4:-7a1d" style="ExplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="6.0" y="-8.0"/></ExplicitInputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-10514b51:134e53d5ed9:-7fdd" ordering="2" parent="6641adef:135055938d4:-7a1d" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="26.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-10514b51:134e53d5ed9:-7fdf" ordering="1" parent="6641adef:135055938d4:-7a1d" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><BasicBlock blockType="h" id="5635043b:13894cfb31b:-77c1" interfaceFunctionName="CLOCK_c" ordering="23" parent="-10514b51:134e53d5ed9:-7ffe" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="119.0"/><data column="1" line="0" realPart="-150.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="188b11dc:1670bf9a1ba:-7cbe"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="188b11dc:1670bf9a1ba:-7cbe"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.1"/><data column="0" line="1" value="0.1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.1"/><data column="0" line="1" realPart="0.1"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.1"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="188b11dc:1670bf9a1ba:-7cbc"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="188b11dc:1670bf9a1ba:-7cbc"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="123.3773266666667"/><data column="1" line="0" realPart="-169.33333333333331"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="7.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="5.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="188b11dc:1670bf9a1ba:-7cb9"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="188b11dc:1670bf9a1ba:-7cb9"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="100.0"/><data column="0" line="2" realPart="133.8773266666667"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-44.0"/><data column="0" line="1" realPart="-180.0"/><data column="0" line="2" realPart="-158.33333333333331"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="132.71066000000005"/><data column="0" line="1" realPart="149.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-173.33333333333331"/><data column="0" line="1" realPart="-126.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="135.04399333333336"/><data column="0" line="1" realPart="140.70999999999998"/><data column="0" line="2" realPart="100.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-173.33333333333331"/><data column="0" line="1" realPart="-50.0"/><data column="0" line="2" realPart="-50.0"/><data column="0" line="3" realPart="4.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="560.0" y="20.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="5635043b:13894cfb31b:-77c0" ordering="1" parent="5635043b:13894cfb31b:-77c1" style="CommandPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><CommandControlLink id="5635043b:13894cfb31b:-77bd" parent="-10514b51:134e53d5ed9:-7ffe" source="5635043b:13894cfb31b:-77c0" target="6641adef:135055938d4:-7776"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="580.0" y="64.0"/><mxPoint as="targetPoint" x="580.0" y="80.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="580.0" y="80.0"/><mxPoint x="580.0" y="80.0"/></Array></mxGeometry></CommandControlLink></root></mxGraphModel><mxCell as="defaultParent" id="-10514b51:134e53d5ed9:-7ffe" parent="-10514b51:134e53d5ed9:-7ffd"/></XcosDiagram>
\ No newline at end of file diff --git a/Working_Examples/215/CH12/EX12.2/ex12_2.sce b/Working_Examples/215/CH12/EX12.2/ex12_2.sce new file mode 100755 index 0000000..b15fba9 --- /dev/null +++ b/Working_Examples/215/CH12/EX12.2/ex12_2.sce @@ -0,0 +1,29 @@ +clc
+//Example 12.2
+//Calculate total power dissipated
+disp('Given')
+disp('Van=200 with angle 0 degree and Zp=100with angle 60 degree')
+Zpamp=100;Zpang=60
+//Since one of the phase voltage is given, we need to find other phase voltages
+Vanamp=200;Vbnamp=200 ; Vcnamp=200;
+Vanang=0;Vbnang=-120;Vcnang=-240;
+disp('The phase voltages are')
+printf("Van=%d /_%d deg V\tVbn=%d /_%d deg V\tVcn=%d /_%d deg V\t",Vanamp,Vanang,Vbnamp,Vbnang,Vcnamp,Vcnang)
+
+//Now we will find line voltages
+//Let line voltage be Vline
+Vline=200*sqrt(3)
+//By constructing a phasor diagram
+disp('The line voltages are')
+printf("\n Vab=%d /_%d deg V\tVbc=%d /_%d deg V\tVca=%d /_%d deg V\t",Vline,30,Vline,-90,Vline,-210)
+
+//Let the line current be IaA
+IaAamp=Vanamp/Zpamp
+IaAang=Vanang-Zpang
+//Since the given system is a balanced three phase system
+//From phasor diagram as shown in figure 12.16
+disp('The line currents are')
+printf("\n IaA=%d /_%d deg V\tIbB=%d /_%d deg V\tIcC=%d /_%d deg V\t",IaAamp,IaAang,IaAamp,IaAang-120,IaAamp,IaAang-240)
+//Let power absorbeed by phase A is PAN
+PAN=Vanamp*IaAamp*cos(((Vanang+IaAang)*%pi)/180)
+printf("\n Total average power = %d W",3*PAN)
diff --git a/Working_Examples/215/CH12/EX12.3/ex12_3.sce b/Working_Examples/215/CH12/EX12.3/ex12_3.sce new file mode 100755 index 0000000..2f4a0a3 --- /dev/null +++ b/Working_Examples/215/CH12/EX12.3/ex12_3.sce @@ -0,0 +1,16 @@ +clc
+//Example 12.3
+//Calculate the line current and phase impedance
+disp('Given')
+disp('Line voltage = 300V, Power factor=0.8(lead), Phase power = 1200W')
+Vline=300;pf=0.8;PW=1200;
+Vp=Vline/sqrt(3)
+PerPhpower=PW/3;
+//Line current can be found as
+IL=PerPhpower/(pf*Vp)
+printf("Line current= %3.2f A \n",IL)
+//Let Zp be the phase impedance
+Zpmag=Vp/IL
+//Sice power factor is 'leading'
+Zpang=-(acos(0.8)*180)/%pi
+printf("Phase impedance = %d/_%3.2f deg ohm",Zpmag,Zpang);
\ No newline at end of file diff --git a/Working_Examples/215/CH12/EX12.4/ex12_4.sce b/Working_Examples/215/CH12/EX12.4/ex12_4.sce new file mode 100755 index 0000000..69de13e --- /dev/null +++ b/Working_Examples/215/CH12/EX12.4/ex12_4.sce @@ -0,0 +1,21 @@ +clc
+//Example 12.4
+//Calculate the line current
+//Continuing from example 12.3
+Vp=300/sqrt(3);
+IL=2.89;pf=0.8
+disp('A balanced 600W lighting load is added in parallel with the existing load')
+disp('600W if balanced then 200W will be consumed by each phase')
+Vpadd=200;
+//From figure 12.17
+I1=Vpadd/Vp
+disp('Load current is unchanged')
+I2mag=IL
+I2ph=(acos(pf)*180)/%pi
+x=I2mag * cos (( I2ph * %pi ) /180) ;
+y=I2mag * sin (( I2ph * %pi ) /180) ;
+z= complex (x,y)
+disp(z)
+ILnew=I1+z
+[ILmag ILph]=polar(ILnew)
+printf("Line current=%3.2f /_%3.2f deg A \n ",ILmag,ILph*(180/%pi));
\ No newline at end of file diff --git a/Working_Examples/215/CH12/EX12.5/ex12_5.sce b/Working_Examples/215/CH12/EX12.5/ex12_5.sce new file mode 100755 index 0000000..3a8a555 --- /dev/null +++ b/Working_Examples/215/CH12/EX12.5/ex12_5.sce @@ -0,0 +1,18 @@ +clc
+//Example 12.5
+//Calculate amplitude of line current
+disp('Given')
+disp('Line voltage = 300V, Power factor=0.8(lag), Phase power = 1200W')
+Vline=300;pf=0.8;PW=1200;
+disp('1200W will be consumed as 400W in each phase')
+Vp=400
+//Phase current be Ip
+Ip=Vp/(Vline*pf)
+//Let amplitude of line current be IL
+IL=Ip*sqrt(3)
+printf("Line current=%3.2f A \n",IL)
+//Let Zp be the phase impedance
+Zpmag=Vline/Ip
+//Sice power factor is 'lagging'
+Zpang=(acos(0.8)*180)/%pi
+printf("Phase impedance = %d(%3.2f deg)ohm",Zpmag,Zpang);
\ No newline at end of file diff --git a/Working_Examples/215/CH12/EX12.6/ex12_6.sce b/Working_Examples/215/CH12/EX12.6/ex12_6.sce new file mode 100755 index 0000000..acc556e --- /dev/null +++ b/Working_Examples/215/CH12/EX12.6/ex12_6.sce @@ -0,0 +1,20 @@ +clc
+//Example 12.6
+//Calculate amplitude of line current
+disp('Given')
+disp('Line voltage = 300V, Power factor=0.8(lag), Phase power = 1200W')
+Vline=300;pf=0.8;PW=1200;
+Vph=Vline/sqrt(3)
+disp('1200W will be consumed as 400W in each phase')
+Vp=400
+//Let phase current be Ip
+Ip=Vp/(Vph*pf)
+printf("Phase current=%3.2f A \n",Ip)
+//Let Zp be the phase impedance
+Zpmag=Vph/Ip
+//Sice power factor is 'lagging'
+Zpang=(acos(0.8)*180)/%pi
+printf("Phase impedance = %d(%3.2f deg)ohm\n",Zpmag,Zpang);
+//PW=sqrt(3)*VL*IL*pf
+IL=PW/(sqrt(3)*Vline*pf)
+printf("Line current=%3.2f A \n",IL)
\ No newline at end of file diff --git a/Working_Examples/215/CH12/EX12.7/ex12_7.sce b/Working_Examples/215/CH12/EX12.7/ex12_7.sce new file mode 100755 index 0000000..a0ff8e6 --- /dev/null +++ b/Working_Examples/215/CH12/EX12.7/ex12_7.sce @@ -0,0 +1,34 @@ +clc
+//Example 12.7
+//Determine wattmeter reading and total power drawn by the load
+disp('Given')
+disp('Vab=230(0 deg)V')
+Vline=230
+//Since positive phase sequence is used
+disp('The line voltages are')
+printf("\n Vab=%d (%d deg)V\tVbc=%d (%d deg) V\tVca=%d (%d deg)V\t",Vline,0,Vline,-120,Vline,120)
+Vacamp=Vline;
+Vacang=-60;
+Vbcamp=Vline;
+Vbcang=-120;
+//Now we will evaluate phase current
+//Let IaA be the phase current
+Vanamp=Vline/sqrt(3)
+Vanph=-30
+//From figure 12.28
+Zph=4+%i*15
+[Zphmag Zphang]=polar(Zph)
+IaAamp=Vanamp/Zphmag
+IaAang=Vanph-(Zphang*180)/%pi
+IbBang=IaAang+240
+printf("\nIaA=%3.2f(%3.2f deg)A\n",IaAamp,IaAang);
+//Power rating of each wattmeter is now calculated
+//Power measured by wattmeter #1
+P1=Vline*IaAamp*cos(((Vacang-IaAang)*%pi)/180)
+printf("P1=%d W \n",P1)
+//Power measured by wattmeter #2
+P2=Vline*IaAamp*cos(((Vbcang-IbBang)*%pi)/180)
+printf("P2=%3.2f W \n",P2)
+//Net power be P
+P=P1+P2
+printf("P=%3.2f W \n",P)
\ No newline at end of file diff --git a/Working_Examples/215/CH13/EX13.2/ex13_2.sce b/Working_Examples/215/CH13/EX13.2/ex13_2.sce new file mode 100755 index 0000000..ef2b56b --- /dev/null +++ b/Working_Examples/215/CH13/EX13.2/ex13_2.sce @@ -0,0 +1,22 @@ +clc
+//Example 13.2
+disp('Given')
+disp('Input voltage is 10V')
+Viamp=10
+//From figure 13.7
+//Writing the left mesh equations
+disp('(1+10i)*I1-90i*I2=10')
+//Writing the right mesh equations
+disp('(400+1000i)*I2-90i*I1=0')
+i=%i
+A=[1+10*i -90*i;-90*i 400+1000*i]
+i2mat=[1+10*i 10; -90*i 0]
+//Find i2
+i2=det(i2mat)/det(A)
+[mag Theta]=polar(i2)
+Theta=(Theta*180)/%pi
+//The value of resistor is 400 ohm
+R=400;
+//Let V=V2/V1
+Vamp=R*mag/Viamp
+printf("Ratio of output voltage to input is %3.2f with angle %3.2f degrees",Vamp,Theta);
\ No newline at end of file diff --git a/Working_Examples/215/CH13/EX13.4/ex13_4.sce b/Working_Examples/215/CH13/EX13.4/ex13_4.sce new file mode 100755 index 0000000..f342ef2 --- /dev/null +++ b/Working_Examples/215/CH13/EX13.4/ex13_4.sce @@ -0,0 +1,19 @@ +clc
+//Example 13.4
+disp('Given')
+disp('L1=0.4H L2=2.5H k=0.6 i1=4i2=20*cos(500t-20)mA')
+L1=0.4;L2=2.5;k=0.6;
+disp('a)')
+t=0;
+i2=5*cos(500*t-(20*%pi)/180)
+printf("i2(0)=%3.2f mA \n",i2)
+disp('b)')
+M=k*sqrt(L1*L2)
+//v1(t)=L1*d/dt(i1)+M*d/dt(i2)
+v1=-L1*20*500*10^-3*sin(500*t-(20*%pi)/180)-M*5*500*10^-3*sin(500*t-(20*%pi)/180)
+printf("v1(0)=%3.2f V \n",v1)
+disp('c')
+//The total energy can be found as
+w=(L1*(4*i2)^2)/2+ (L2*(i2)^2)/2+M*(4*i2)*(i2)
+printf("w=%3.2f uJ \n",w)
+
diff --git a/Working_Examples/215/CH13/EX13.5/ex13_5.sce b/Working_Examples/215/CH13/EX13.5/ex13_5.sce new file mode 100755 index 0000000..ab7366d --- /dev/null +++ b/Working_Examples/215/CH13/EX13.5/ex13_5.sce @@ -0,0 +1,13 @@ +clc
+//Example 13.5
+printf("Given")
+disp('L1=30 mH L2=60 mH M=40 mH')
+L1=30*10^-3; L2=60*10^-3; M=40*10^-3;
+//The equivalent T network is
+UL=L1-M
+UR=L2-M
+CS=M
+printf("The T network has \n")
+printf("%d mH in the upper left arm\n",UL*10^3)
+printf("%3.0f mH in the upper right arm\n",UR*10^3)
+printf("%d mH in the center stem\n",CS*10^3)
\ No newline at end of file diff --git a/Working_Examples/215/CH13/EX13.6/ex13_6.sce b/Working_Examples/215/CH13/EX13.6/ex13_6.sce new file mode 100755 index 0000000..3fad804 --- /dev/null +++ b/Working_Examples/215/CH13/EX13.6/ex13_6.sce @@ -0,0 +1,15 @@ +clc
+//Example 13.6
+printf("Given")
+disp('L1=30 mH L2=60 mH M=40 mH')
+L1=30*10^-3; L2=60*10^-3; M=40*10^-3;
+//Let X=L1*L2-M^2
+X=L1*L2-M^2
+//The equivalent PI network is
+LA=X/(L2-M)
+LB=X/M
+LC=X/(L1-M)
+printf("The PI network has \n")
+printf("LA=%3.0f mH\n",LA*10^3)
+printf("LB=%3.0f mH \n",LB*10^3)
+printf("LC=%3.0f mH\n",LC*10^3)
\ No newline at end of file diff --git a/Working_Examples/215/CH13/EX13.7/Figure13_7.jpg b/Working_Examples/215/CH13/EX13.7/Figure13_7.jpg Binary files differnew file mode 100755 index 0000000..8f2f461 --- /dev/null +++ b/Working_Examples/215/CH13/EX13.7/Figure13_7.jpg diff --git a/Working_Examples/215/CH13/EX13.7/Figure13_7_xcos.jpg b/Working_Examples/215/CH13/EX13.7/Figure13_7_xcos.jpg Binary files differnew file mode 100755 index 0000000..7a04312 --- /dev/null +++ b/Working_Examples/215/CH13/EX13.7/Figure13_7_xcos.jpg diff --git a/Working_Examples/215/CH13/EX13.7/ex13_7.xcos b/Working_Examples/215/CH13/EX13.7/ex13_7.xcos new file mode 100755 index 0000000..d175425 --- /dev/null +++ b/Working_Examples/215/CH13/EX13.7/ex13_7.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" finalIntegrationTime="30.0" title="ex13_7"><!--Xcos - 1.0 - scilab-5.5.2 - 20160406 2040--><mxGraphModel as="model"><root><mxCell id="26015439:134e2b4e9d8:-7fd8"/><mxCell id="26015439:134e2b4e9d8:-7fd9" parent="26015439:134e2b4e9d8:-7fd8"/><BasicBlock dependsOnU="1" id="26015439:134e2b4e9d8:-7f7c" interfaceFunctionName="CSCOPE" ordering="5" parent="26015439:134e2b4e9d8:-7fd9" simulationFunctionName="cscope" simulationFunctionType="C_OR_FORTRAN" style="CSCOPE;flip=false;mirror=false"><ScilabString as="exprs" height="10" width="1"><data column="0" line="0" value="1 3 5 7 9 11 13 15"/><data column="0" line="1" value="-1"/><data column="0" line="2" value="[]"/><data column="0" line="3" value="[600;400]"/><data column="0" line="4" value="6.2"/><data column="0" line="5" value="6.3"/><data column="0" line="6" value="30"/><data column="0" line="7" value="20"/><data column="0" line="8" value="0"/><data column="0" line="9" value=""/></ScilabString><ScilabDouble as="realParameters" height="4" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="6.2"/><data column="0" line="2" realPart="6.3"/><data column="0" line="3" realPart="30.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="15" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="1.0"/><data column="0" line="4" realPart="3.0"/><data column="0" line="5" realPart="5.0"/><data column="0" line="6" realPart="7.0"/><data column="0" line="7" realPart="9.0"/><data column="0" line="8" realPart="11.0"/><data column="0" line="9" realPart="13.0"/><data column="0" line="10" realPart="15.0"/><data column="0" line="11" realPart="-1.0"/><data column="0" line="12" realPart="-1.0"/><data column="0" line="13" realPart="600.0"/><data column="0" line="14" realPart="400.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="590.0" y="80.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="26015439:134e2b4e9d8:-7eea" ordering="1" parent="26015439:134e2b4e9d8:-7f7c" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ControlPort dataType="UNKNOW_TYPE" id="26015439:134e2b4e9d8:-7ee9" ordering="1" parent="26015439:134e2b4e9d8:-7f7c" style="ControlPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><BasicBlock dependsOnU="1" id="26015439:134e2b4e9d8:-7f0e" interfaceFunctionName="POWBLK_f" ordering="10" parent="26015439:134e2b4e9d8:-7fd9" simulationFunctionName="powblk" simulationFunctionType="DEFAULT" style="POWBLK_f;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="2"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="50.0" width="50.0" x="400.0" y="80.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="26015439:134e2b4e9d8:-7f0a" ordering="1" parent="26015439:134e2b4e9d8:-7f0e" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitOutputPort dataColumns="1" dataType="REAL_MATRIX" id="26015439:134e2b4e9d8:-7f09" ordering="1" parent="26015439:134e2b4e9d8:-7f0e" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="50.0" y="16.0"/></ExplicitOutputPort><BasicBlock dependsOnU="1" id="26015439:134e2b4e9d8:-7ef8" interfaceFunctionName="GAINBLK_f" ordering="11" parent="26015439:134e2b4e9d8:-7fd9" simulationFunctionName="gain" simulationFunctionType="DEFAULT" style="GAINBLK_f;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="10*10^3"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="10000.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="50.0" width="40.0" x="490.0" y="80.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="26015439:134e2b4e9d8:-7eee" ordering="1" parent="26015439:134e2b4e9d8:-7ef8" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="26015439:134e2b4e9d8:-7eed" ordering="1" parent="26015439:134e2b4e9d8:-7ef8" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ExplicitLink id="26015439:134e2b4e9d8:-7ef1" parent="26015439:134e2b4e9d8:-7fd9" source="26015439:134e2b4e9d8:-7f09" target="26015439:134e2b4e9d8:-7eee"><mxGeometry as="geometry" x="-30.0"><mxPoint as="sourcePoint" x="450.0" y="100.0"/><mxPoint as="targetPoint" x="490.0" y="100.0"/></mxGeometry></ExplicitLink><ExplicitLink id="26015439:134e2b4e9d8:-7ef0" parent="26015439:134e2b4e9d8:-7fd9" source="26015439:134e2b4e9d8:-7eed" target="26015439:134e2b4e9d8:-7eea"><mxGeometry as="geometry" x="-30.0"><mxPoint as="sourcePoint" x="530.0" y="100.0"/><mxPoint as="targetPoint" x="580.0" y="150.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="550.0" y="100.0"/></Array></mxGeometry></ExplicitLink><BasicBlock blockType="h" id="-4786dca1:1383aec1f36:-7e8d" interfaceFunctionName="CLOCK_c" ordering="13" parent="26015439:134e2b4e9d8:-7fd9" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="139.0"/><data column="1" line="0" realPart="-170.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="188b11dc:1670bf9a1ba:-7c67"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="188b11dc:1670bf9a1ba:-7c67"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.1"/><data column="0" line="1" value="0.1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.1"/><data column="0" line="1" realPart="0.1"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.1"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="188b11dc:1670bf9a1ba:-7c65"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="188b11dc:1670bf9a1ba:-7c65"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="156.3773266666667"/><data column="1" line="0" realPart="-202.33333333333331"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="7.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="5.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="188b11dc:1670bf9a1ba:-7c62"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="188b11dc:1670bf9a1ba:-7c62"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="140.0"/><data column="0" line="2" realPart="166.8773266666667"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-44.0"/><data column="0" line="1" realPart="-220.0"/><data column="0" line="2" realPart="-191.33333333333331"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="165.71066000000005"/><data column="0" line="1" realPart="169.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-206.33333333333331"/><data column="0" line="1" realPart="-146.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="168.04399333333336"/><data column="0" line="1" realPart="180.70999999999998"/><data column="0" line="2" realPart="140.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-206.33333333333331"/><data column="0" line="1" realPart="-90.0"/><data column="0" line="2" realPart="-90.0"/><data column="0" line="3" realPart="4.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="590.0" y="10.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="-4786dca1:1383aec1f36:-7e8c" ordering="1" parent="-4786dca1:1383aec1f36:-7e8d" style="CommandPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><CommandControlLink id="-4786dca1:1383aec1f36:-7e89" parent="26015439:134e2b4e9d8:-7fd9" source="-4786dca1:1383aec1f36:-7e8c" target="26015439:134e2b4e9d8:-7ee9"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="610.0" y="54.0"/><mxPoint as="targetPoint" x="610.0" y="80.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="610.0" y="80.0"/></Array></mxGeometry></CommandControlLink><BasicBlock angle="90" id="188b11dc:1670bf9a1ba:-7c46" interfaceFunctionName="ConstantVoltage" parent="26015439:134e2b4e9d8:-7fd9" simulationFunctionName="ConstantVoltage" simulationFunctionType="DEFAULT" style="ConstantVoltage;rotation=90"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="50"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="50.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ConstantVoltage"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="V"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="50.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="22.0" width="30.0" x="70.0" y="150.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="188b11dc:1670bf9a1ba:-7c42" ordering="1" parent="188b11dc:1670bf9a1ba:-7c46" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10.0;rotation=90" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="188b11dc:1670bf9a1ba:-7c41" ordering="1" parent="188b11dc:1670bf9a1ba:-7c46" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10.0;rotation=90" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="22.0"/></ImplicitOutputPort><GroundBlock dependsOnU="1" id="188b11dc:1670bf9a1ba:-7c3c" interfaceFunctionName="Ground" parent="26015439:134e2b4e9d8:-7fd9" simulationFunctionName="Ground" simulationFunctionType="DEFAULT" style="Ground"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Ground"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="20.0" width="20.0" x="140.0" y="360.0"/></GroundBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="188b11dc:1670bf9a1ba:-7c3b" ordering="1" parent="188b11dc:1670bf9a1ba:-7c3c" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10.0;rotation=90" value=""><Orientation as="orientation" value="NORTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="6.0" y="-8.0"/></ImplicitInputPort><GroundBlock dependsOnU="1" id="188b11dc:1670bf9a1ba:-7c38" interfaceFunctionName="Ground" parent="26015439:134e2b4e9d8:-7fd9" simulationFunctionName="Ground" simulationFunctionType="DEFAULT" style="Ground"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Ground"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="20.0" width="20.0" x="270.0" y="360.0"/></GroundBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="188b11dc:1670bf9a1ba:-7c37" ordering="1" parent="188b11dc:1670bf9a1ba:-7c38" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10.0;rotation=90" value=""><Orientation as="orientation" value="NORTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="6.0" y="-8.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="188b11dc:1670bf9a1ba:-7c2e" interfaceFunctionName="Resistor" parent="26015439:134e2b4e9d8:-7fd9" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="100"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="100.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="20.0" width="40.0" x="110.0" y="80.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="188b11dc:1670bf9a1ba:-7c27" ordering="1" parent="188b11dc:1670bf9a1ba:-7c2e" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="188b11dc:1670bf9a1ba:-7c26" ordering="1" parent="188b11dc:1670bf9a1ba:-7c2e" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="6.0"/></ImplicitOutputPort><BasicBlock angle="90" dependsOnU="1" id="188b11dc:1670bf9a1ba:-7c22" interfaceFunctionName="Resistor" parent="26015439:134e2b4e9d8:-7fd9" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=90"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="10000"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="10000.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="10000.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="20.0" width="40.0" x="330.0" y="150.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="188b11dc:1670bf9a1ba:-7c1e" ordering="1" parent="188b11dc:1670bf9a1ba:-7c22" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10.0;rotation=90" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="188b11dc:1670bf9a1ba:-7c1d" ordering="1" parent="188b11dc:1670bf9a1ba:-7c22" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10.0;rotation=90" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="20.0"/></ImplicitOutputPort><ImplicitLink id="188b11dc:1670bf9a1ba:-7c12" parent="26015439:134e2b4e9d8:-7fd9" source="188b11dc:1670bf9a1ba:-7c42" target="188b11dc:1670bf9a1ba:-7c27"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="90.0" y="150.0"/><mxPoint as="targetPoint" x="110.0" y="90.0"/><Array as="points" scilabClass=""><mxPoint x="90.0" y="90.0"/></Array></mxGeometry></ImplicitLink><BasicBlock dependsOnT="1" id="188b11dc:1670bf9a1ba:-7c07" interfaceFunctionName="IdealTransformer" parent="26015439:134e2b4e9d8:-7fd9" simulationFunctionName="IdealTransformer" simulationFunctionType="DEFAULT" style="IdealTransformer"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="1/10"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="IdealTransformer"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="p1"/><data column="0" line="1" value="n1"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="p2"/><data column="0" line="1" value="n2"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="N"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.1"/></ScilabDouble></Array><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="210.0" y="130.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="188b11dc:1670bf9a1ba:-7c01" ordering="1" parent="188b11dc:1670bf9a1ba:-7c07" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ImplicitInputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="188b11dc:1670bf9a1ba:-7c00" ordering="2" parent="188b11dc:1670bf9a1ba:-7c07" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="26.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="188b11dc:1670bf9a1ba:-7bff" ordering="1" parent="188b11dc:1670bf9a1ba:-7c07" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="6.0"/></ImplicitOutputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="188b11dc:1670bf9a1ba:-7bfe" ordering="2" parent="188b11dc:1670bf9a1ba:-7c07" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="26.0"/></ImplicitOutputPort><SplitBlock id="188b11dc:1670bf9a1ba:-7bdd" interfaceFunctionName="IMPSPLIT_f" parent="26015439:134e2b4e9d8:-7fd9" simulationFunctionType="DEFAULT" style="IMPSPLIT_f"><mxGeometry as="geometry" height="7.0" width="7.0" x="147.0" y="247.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="188b11dc:1670bf9a1ba:-7bdc" ordering="1" parent="188b11dc:1670bf9a1ba:-7bdd" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="188b11dc:1670bf9a1ba:-7bdb" ordering="1" parent="188b11dc:1670bf9a1ba:-7bdd" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="188b11dc:1670bf9a1ba:-7bda" ordering="2" parent="188b11dc:1670bf9a1ba:-7bdd" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="188b11dc:1670bf9a1ba:-7bd9" parent="26015439:134e2b4e9d8:-7fd9" source="188b11dc:1670bf9a1ba:-7c41" target="188b11dc:1670bf9a1ba:-7bdc"><mxGeometry as="geometry"><Array as="points" scilabClass=""><mxPoint x="90.0" y="250.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="188b11dc:1670bf9a1ba:-7bd8" parent="26015439:134e2b4e9d8:-7fd9" source="188b11dc:1670bf9a1ba:-7bdb" target="188b11dc:1670bf9a1ba:-7c00"><mxGeometry as="geometry"><Array as="points" scilabClass=""><mxPoint x="210.0" y="250.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="188b11dc:1670bf9a1ba:-7bde" parent="26015439:134e2b4e9d8:-7fd9" source="188b11dc:1670bf9a1ba:-7bda" target="188b11dc:1670bf9a1ba:-7c3b"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="150.0" y="360.0"/><mxPoint as="targetPoint" x="150.0" y="250.0"/></mxGeometry></ImplicitLink><ImplicitLink id="188b11dc:1670bf9a1ba:-7bd6" parent="26015439:134e2b4e9d8:-7fd9" source="188b11dc:1670bf9a1ba:-7c26" target="188b11dc:1670bf9a1ba:-7c01"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="150.0" y="90.0"/><mxPoint as="targetPoint" x="210.0" y="140.0"/><Array as="points" scilabClass=""><mxPoint x="200.0" y="90.0"/><mxPoint x="200.0" y="140.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="188b11dc:1670bf9a1ba:-7bc2" interfaceFunctionName="IMPSPLIT_f" parent="26015439:134e2b4e9d8:-7fd9" simulationFunctionType="DEFAULT" style="IMPSPLIT_f"><mxGeometry as="geometry" height="7.0" width="7.0" x="277.0" y="237.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="188b11dc:1670bf9a1ba:-7bc1" ordering="1" parent="188b11dc:1670bf9a1ba:-7bc2" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="188b11dc:1670bf9a1ba:-7bc0" ordering="1" parent="188b11dc:1670bf9a1ba:-7bc2" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="188b11dc:1670bf9a1ba:-7bbf" ordering="2" parent="188b11dc:1670bf9a1ba:-7bc2" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="188b11dc:1670bf9a1ba:-7bbe" parent="26015439:134e2b4e9d8:-7fd9" source="188b11dc:1670bf9a1ba:-7c1d" target="188b11dc:1670bf9a1ba:-7bc1"><mxGeometry as="geometry"><Array as="points" scilabClass=""><mxPoint x="350.0" y="240.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="188b11dc:1670bf9a1ba:-7bbd" parent="26015439:134e2b4e9d8:-7fd9" source="188b11dc:1670bf9a1ba:-7bfe" target="188b11dc:1670bf9a1ba:-7bc0"><mxGeometry as="geometry"><Array as="points" scilabClass=""><mxPoint x="250.0" y="240.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="188b11dc:1670bf9a1ba:-7bc3" parent="26015439:134e2b4e9d8:-7fd9" source="188b11dc:1670bf9a1ba:-7bbf" target="188b11dc:1670bf9a1ba:-7c37"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="280.0" y="360.0"/><mxPoint as="targetPoint" x="280.0" y="240.0"/></mxGeometry></ImplicitLink><BasicBlock dependsOnU="1" id="188b11dc:1670bf9a1ba:-7bb4" interfaceFunctionName="CurrentSensor" parent="26015439:134e2b4e9d8:-7fd9" simulationFunctionName="CurrentSensor" simulationFunctionType="DEFAULT" style="CurrentSensor"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CurrentSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="i"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="290.0" y="70.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="188b11dc:1670bf9a1ba:-7bb3" ordering="1" parent="188b11dc:1670bf9a1ba:-7bb4" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="188b11dc:1670bf9a1ba:-7bb2" ordering="1" parent="188b11dc:1670bf9a1ba:-7bb4" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="6.0"/></ImplicitOutputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="188b11dc:1670bf9a1ba:-7bb1" ordering="2" parent="188b11dc:1670bf9a1ba:-7bb4" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="26.0"/></ExplicitOutputPort><ExplicitLink id="188b11dc:1670bf9a1ba:-7ba8" parent="26015439:134e2b4e9d8:-7fd9" source="188b11dc:1670bf9a1ba:-7bb1" target="26015439:134e2b4e9d8:-7f0a"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="330.0" y="100.0"/><mxPoint as="targetPoint" x="400.0" y="100.0"/></mxGeometry></ExplicitLink><ImplicitLink id="188b11dc:1670bf9a1ba:-7ba7" parent="26015439:134e2b4e9d8:-7fd9" source="188b11dc:1670bf9a1ba:-7bff" target="188b11dc:1670bf9a1ba:-7bb3"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="290.0" y="90.0"/><mxPoint as="targetPoint" x="260.0" y="140.0"/><Array as="points" scilabClass=""><mxPoint x="270.0" y="140.0"/><mxPoint x="270.0" y="90.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="188b11dc:1670bf9a1ba:-7ba2" parent="26015439:134e2b4e9d8:-7fd9" source="188b11dc:1670bf9a1ba:-7bb2" target="188b11dc:1670bf9a1ba:-7c1e"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="330.0" y="80.0"/><mxPoint as="targetPoint" x="350.0" y="150.0"/><Array as="points" scilabClass=""><mxPoint x="350.0" y="80.0"/></Array></mxGeometry></ImplicitLink></root></mxGraphModel><mxCell as="defaultParent" id="26015439:134e2b4e9d8:-7fd9" parent="26015439:134e2b4e9d8:-7fd8"/></XcosDiagram>
\ No newline at end of file diff --git a/Working_Examples/215/CH13/EX13.8/ex13_8.sce b/Working_Examples/215/CH13/EX13.8/ex13_8.sce new file mode 100755 index 0000000..50f1928 --- /dev/null +++ b/Working_Examples/215/CH13/EX13.8/ex13_8.sce @@ -0,0 +1,13 @@ +clc
+//Example 13.8
+disp('Given')
+disp('Vin=50V Zg=100 ohm')
+Vin=50;Zg=100;
+//From figure 13.32
+disp('When the secondary circuit and ideal transformer is replaced by a Thevenin equivalent then the primary circuit sees a 100 ohm impedance')
+//The turns ratio is a
+a=10;
+disp('We place the secondary circuit and ideal transformer by a Thevenin equivalent circuit')
+Vth=-a*Vin
+Zth=(-a)^2*Zg
+printf("The secondary circuit has voltage source %d V rms with %d kohm resistance in series with it along with %d kohm load resistance",Vth,Zth*10^-3,10)
\ No newline at end of file diff --git a/Working_Examples/215/CH14/EX14.10/ex14_10.sce b/Working_Examples/215/CH14/EX14.10/ex14_10.sce new file mode 100755 index 0000000..e3d28c7 --- /dev/null +++ b/Working_Examples/215/CH14/EX14.10/ex14_10.sce @@ -0,0 +1,7 @@ +clc
+//Example 14.10
+//Install Symbolic toolbox
+//Determine the transform of rectangular pulse
+syms t s
+v=integ(exp(-s*t),t,2,%inf)-integ(exp(-s*t),t,5,%inf)
+disp(v,'V(s)=')
\ No newline at end of file diff --git a/Working_Examples/215/CH14/EX14.11/ex14_11.sce b/Working_Examples/215/CH14/EX14.11/ex14_11.sce new file mode 100755 index 0000000..566e19f --- /dev/null +++ b/Working_Examples/215/CH14/EX14.11/ex14_11.sce @@ -0,0 +1,14 @@ +clc
+//Example 14.11
+//Install Symbolic toolbox
+//Calculate f(inf)
+syms s t ;
+disp('Given function is f(t)=1-exp(-a*t)')
+u=laplace(1)
+v=laplace(exp(-2*t))
+F=u-v
+x=s*F
+//From final value theorem
+y=limit(x,s,0)
+disp(y,'f(inf)=')
+
diff --git a/Working_Examples/215/CH14/EX14.2/ex14_2.sce b/Working_Examples/215/CH14/EX14.2/ex14_2.sce new file mode 100755 index 0000000..9ea9a08 --- /dev/null +++ b/Working_Examples/215/CH14/EX14.2/ex14_2.sce @@ -0,0 +1,8 @@ +//Example 14.2
+//Install Symbolic toolbox
+//Find the Laplace transform
+syms t s
+clc
+z=integ(2*exp(-s*t),t,3,%inf)
+//The second term will result in zero
+disp(z,'F(s)=')
\ No newline at end of file diff --git a/Working_Examples/215/CH14/EX14.3/ex14_3.sce b/Working_Examples/215/CH14/EX14.3/ex14_3.sce new file mode 100755 index 0000000..d5e6adb --- /dev/null +++ b/Working_Examples/215/CH14/EX14.3/ex14_3.sce @@ -0,0 +1,11 @@ +clc
+//Example 14.3
+//Install Symbolic toolbox
+//Find the Inverse Laplace transform
+syms s
+a=7/s
+b=31/(s+17)
+x=ilaplace(a)
+y=ilaplace(b)
+g=x-y
+disp(g,'g(t)=')
\ No newline at end of file diff --git a/Working_Examples/215/CH14/EX14.4/ex14_4.sce b/Working_Examples/215/CH14/EX14.4/ex14_4.sce new file mode 100755 index 0000000..40aa3c0 --- /dev/null +++ b/Working_Examples/215/CH14/EX14.4/ex14_4.sce @@ -0,0 +1,12 @@ +clc
+//Example 14.4
+//Install Symbolic toolbox
+//Find the Inverse Laplace transform
+syms s t
+a=2
+b=4/s
+x=ilaplace(b)
+//Inverse laplace transform of a constant is
+disp('inverse laplace(2)=2*delta(t)')
+disp('Answer is')
+disp(x+'2*delta(t)')
diff --git a/Working_Examples/215/CH14/EX14.5/ex14_5.sce b/Working_Examples/215/CH14/EX14.5/ex14_5.sce new file mode 100755 index 0000000..7caf6fe --- /dev/null +++ b/Working_Examples/215/CH14/EX14.5/ex14_5.sce @@ -0,0 +1,12 @@ +clc
+//Example 14.5
+//Install Symbolic toolbox
+//Find the Inverse Laplace transform
+syms s
+s=%s;
+P =(7*s+5)/(s^2+s);
+Pp=pfss (P)
+p1=ilaplace (Pp(1))
+p2=ilaplace (Pp(2))
+p=p1+p2
+disp(p,'p(t)=');
\ No newline at end of file diff --git a/Working_Examples/215/CH14/EX14.6/ex14_6.sce b/Working_Examples/215/CH14/EX14.6/ex14_6.sce new file mode 100755 index 0000000..9155f12 --- /dev/null +++ b/Working_Examples/215/CH14/EX14.6/ex14_6.sce @@ -0,0 +1,12 @@ +clc
+//Example 14.6
+//Install Symbolic toolbox
+//Find the Inverse Laplace transform
+syms s
+s=%s;
+V =2/(s^3+12*s^2+36*s);
+Vp=pfss (V)
+v1=ilaplace (Vp(1))
+v2=ilaplace (Vp(2))
+v=v1+v2
+disp(v,'v(t)=');
\ No newline at end of file diff --git a/Working_Examples/215/CH14/EX14.7/ex14_7.sce b/Working_Examples/215/CH14/EX14.7/ex14_7.sce new file mode 100755 index 0000000..1d50710 --- /dev/null +++ b/Working_Examples/215/CH14/EX14.7/ex14_7.sce @@ -0,0 +1,16 @@ +clc
+//Example 14.7
+//Install Symbolic toolbox
+//Find the current through 5 ohm resistor
+syms s
+s=%s
+//From figure 14.3
+//Writing the KVL equation and taking the Laplace transform
+I=1.5/(s*(s+2))+5/(s+2)
+I1=1.5/(s*(s+2))
+I2=5/(s+2)
+I1p=pfss(I1)
+i1=ilaplace(I1p(1))
+i2=ilaplace(I1p(2)+I2)
+i=i1+i2
+disp(i,'i(t)=')
\ No newline at end of file diff --git a/Working_Examples/215/CH14/EX14.8/ex14_8.sce b/Working_Examples/215/CH14/EX14.8/ex14_8.sce new file mode 100755 index 0000000..d163f8c --- /dev/null +++ b/Working_Examples/215/CH14/EX14.8/ex14_8.sce @@ -0,0 +1,11 @@ +clc
+//Example 14.8
+//Install Symbolic toolbox
+//Find the current for t>0
+syms s
+s=%s
+//From figure 14.5
+//Writing the KVL equation and taking the Laplace transform
+I=-2/(s+4)
+i=ilaplace(I)
+disp(i,'i(t)=')
\ No newline at end of file diff --git a/Working_Examples/215/CH14/EX14.9/ex14_9.sce b/Working_Examples/215/CH14/EX14.9/ex14_9.sce new file mode 100755 index 0000000..0c6166c --- /dev/null +++ b/Working_Examples/215/CH14/EX14.9/ex14_9.sce @@ -0,0 +1,16 @@ +clc
+//Example 14.9
+//Install Symbolic toolbox
+//Find the voltage v(t)
+syms s
+s=%s
+//From figure 14.6
+//Writing the KCL equation and taking the Laplace transform
+V=4/(s*(s+4))+9/(s+4)
+V1=4/(s*(s+4))
+V2=9/(s+4)
+V1p=pfss(V1)
+v1=ilaplace(V1p(1))
+v2=ilaplace(V1p(2)+V2)
+v=v1+v2
+disp(v,'v(t)=')
\ No newline at end of file diff --git a/Working_Examples/215/CH15/EX15.1/ex15_1.sce b/Working_Examples/215/CH15/EX15.1/ex15_1.sce new file mode 100755 index 0000000..c500be9 --- /dev/null +++ b/Working_Examples/215/CH15/EX15.1/ex15_1.sce @@ -0,0 +1,20 @@ +clc
+//Example 15.1
+//Install Symbolic toolbox
+//Calculate the voltage
+//From figure 15.3
+//Writing the KVL equation for the voltage and taking the Laplace transform
+syms s
+s=%s
+disp('V=(2*s*(s+9.5)/((s+8)*(s+0.5)))-2')
+//On solving
+V=(2*s-8)/((s+8)*(s+0.5))
+Vp=pfss (V)
+Vp1=ilaplace(Vp(1))
+Vp2=ilaplace(Vp(2))
+v=Vp1+Vp2
+disp(v,'v(t)=')
+
+
+
+
diff --git a/Working_Examples/215/CH15/EX15.10/ex15_10.sce b/Working_Examples/215/CH15/EX15.10/ex15_10.sce new file mode 100755 index 0000000..c507fa0 --- /dev/null +++ b/Working_Examples/215/CH15/EX15.10/ex15_10.sce @@ -0,0 +1,17 @@ +clc
+//Example 15.10
+//Since the input function is given the Laplace transform is found
+syms s t
+s=%s
+vin=6*exp(-t)
+Vin=laplace(vin)
+//Connecting the impulse voltage pulse to the circuit and converting to s-domain
+//If vin=delta(t)..the impulse source
+V0=2/((2/s)+2)
+//As source voltage is 1V
+H=V0
+V=Vin*H
+Vp=pfss ((6*s)/(s+1)^2)
+Vp1=ilaplace(Vp(1))
+v0=Vp1
+disp(v0,'v0(t)=')
\ No newline at end of file diff --git a/Working_Examples/215/CH15/EX15.2/ex15_2.sce b/Working_Examples/215/CH15/EX15.2/ex15_2.sce new file mode 100755 index 0000000..ff6b08c --- /dev/null +++ b/Working_Examples/215/CH15/EX15.2/ex15_2.sce @@ -0,0 +1,15 @@ +clc
+//Example 15.2
+//Install Symbolic toolbox
+//Calculate the voltage
+//Selecting the current based model
+//From figure 15.6(b)
+//Writing the KCL equation for the voltage and taking the Laplace transform
+syms s
+s=%s
+Vc=-2*(s-3)/(s*(s+2/3))
+Vcp=pfss (Vc)
+Vcp1=ilaplace(Vcp(1))
+Vcp2=ilaplace(Vcp(2))
+vc=Vcp1+Vcp2
+disp(vc,'vc=')
\ No newline at end of file diff --git a/Working_Examples/215/CH15/EX15.4/ex15_4.sce b/Working_Examples/215/CH15/EX15.4/ex15_4.sce new file mode 100755 index 0000000..fe351bf --- /dev/null +++ b/Working_Examples/215/CH15/EX15.4/ex15_4.sce @@ -0,0 +1,14 @@ +clc
+//Example 15.4
+//Install Symbolic toolbox
+//Calculate the voltage
+//From figure 15.9
+//Applying nodal equation and solving for vx
+syms s
+s=%s
+Vx=(10*s^2+4)/(s*(2*s^2+4*s+1))
+Vxp=pfss (Vx)
+Vxp1= ilaplace (Vxp(1))
+Vxp2= ilaplace (Vxp(2))
+vx=Vxp1+Vxp2
+disp(vx,'vx=')
diff --git a/Working_Examples/215/CH15/EX15.6/ex15_6.sce b/Working_Examples/215/CH15/EX15.6/ex15_6.sce new file mode 100755 index 0000000..039494c --- /dev/null +++ b/Working_Examples/215/CH15/EX15.6/ex15_6.sce @@ -0,0 +1,15 @@ +clc
+//Example 15.6
+//Install Symbolic toolbox
+//Calculate the voltage
+//Performing source transformatiom on the s-domain circuit
+//Solving for V(s)
+syms s
+s=%s
+V=(180*s^4)/((s^2+9)*(90*s^3+18*s^2+40*s+4))
+Vp=pfss (V)
+Vp1=ilaplace(Vp(1))
+Vp2=ilaplace(Vp(2))
+Vp3=ilaplace(Vp(3))
+v=Vp1+Vp2+Vp3
+disp(v,'v(t)=')
diff --git a/Working_Examples/215/CH15/EX15.9/ex15_9.sce b/Working_Examples/215/CH15/EX15.9/ex15_9.sce new file mode 100755 index 0000000..a3e04d8 --- /dev/null +++ b/Working_Examples/215/CH15/EX15.9/ex15_9.sce @@ -0,0 +1,14 @@ +clc
+//Example 15.9
+//Install Symbolic toolbox
+//Find the inverse Laplace transform
+syms s
+s=%s
+//Let a=1 and b=3
+a=1;b=3;
+V=1/((s+a)*(s+b))
+Vp=pfss (V)
+Vp1=ilaplace(Vp(1))
+Vp2=ilaplace(Vp(2))
+v=Vp1+Vp2
+disp(v,'v(t)=')
\ No newline at end of file diff --git a/Working_Examples/215/CH16/EX16.1/ex16_1.sce b/Working_Examples/215/CH16/EX16.1/ex16_1.sce new file mode 100755 index 0000000..2a112bd --- /dev/null +++ b/Working_Examples/215/CH16/EX16.1/ex16_1.sce @@ -0,0 +1,14 @@ +clc
+//Example 16.1
+disp('Given')
+disp('L=2.5mH Q0=5 C=0.01uF')
+L=2.5*10^-3; Q0=5; C=0.01*10^-6;
+w0=1/sqrt(L*C)
+printf("w0= %3.1f krad/s \n",w0*10^-3);
+f0=w0/(2*%pi)
+alpha=w0/(2*Q0)
+printf("alpha= %3.1f Np/s \n",alpha);
+wd=sqrt(w0^2-alpha^2)
+printf("wd= %3.1f krad/s \n",wd*10^-3);
+R=Q0/(w0*C)
+printf("R= %3.2f ohm \n",R*10^-3);
\ No newline at end of file diff --git a/Working_Examples/215/CH16/EX16.10/Figure16_10.jpg b/Working_Examples/215/CH16/EX16.10/Figure16_10.jpg Binary files differnew file mode 100755 index 0000000..e3cbf61 --- /dev/null +++ b/Working_Examples/215/CH16/EX16.10/Figure16_10.jpg diff --git a/Working_Examples/215/CH16/EX16.10/ex16_10.sce b/Working_Examples/215/CH16/EX16.10/ex16_10.sce new file mode 100755 index 0000000..323d398 --- /dev/null +++ b/Working_Examples/215/CH16/EX16.10/ex16_10.sce @@ -0,0 +1,11 @@ +clc
+//Example 16.10
+s=poly(0,'s')
+h=syslin('c',(10*s)/((1+s)*(s^2+20*s+10000)))
+disp(h)
+fmin=0.01
+fmax=10^4
+scf(1);clf;
+//Calculate Bode plot
+bode(h,fmin,fmax)
+
diff --git a/Working_Examples/215/CH16/EX16.11/ex16_11.sce b/Working_Examples/215/CH16/EX16.11/ex16_11.sce new file mode 100755 index 0000000..e5676bc --- /dev/null +++ b/Working_Examples/215/CH16/EX16.11/ex16_11.sce @@ -0,0 +1,17 @@ +clc
+//Example 16.11
+disp('Given')
+disp('A high pass filter with cutoff frequency of 3k Hz')
+//Cutoff frequency(wc)=1/(R*C)
+//Let us select some standard value of resistor
+disp('Let R=4.7k ohm')
+fc=3*10^3;R=4.7*10^3;
+wc=2*%pi*fc
+C=1/(R*wc)
+printf("\n C=%3.2f nF ",C*10^9);
+s=poly(0,'s')
+h=syslin('c',(R*C*s)/((1+s*R*C)))
+disp(h)
+HW = frmag(h,512);
+w=0: %pi /511: %pi ;
+plot(w,HW)
diff --git a/Working_Examples/215/CH16/EX16.12/ex16_12.sce b/Working_Examples/215/CH16/EX16.12/ex16_12.sce new file mode 100755 index 0000000..54fcd0b --- /dev/null +++ b/Working_Examples/215/CH16/EX16.12/ex16_12.sce @@ -0,0 +1,26 @@ +clc
+//Example 16.12
+disp('Given')
+disp('Bandwidth = 1M Hz and high frequency cutoff = 1.1M Hz')
+B=10^6;fH=1.1*10^6
+//B=fH-fL
+fL=fH-B
+printf("Low frequency cutoff fL= %d kHz \n",fL*10^-3);
+wL=2*%pi*fL
+printf("wL= %3.2f krad/s \n",wL*10^-3);
+wH=2*%pi*fH
+printf("wH= %3.3f Mrad/s \n",wH*10^-6);
+//Now we need to find values for R,L and C
+//Let X=1/LC
+B=2*%pi*(fH-fL)
+X=(wH-B/2)^2-(B^2/4)
+disp(X)
+disp('Let L=1H')
+L=1;
+C=1/(L*X)
+disp(C,'C=')
+//B=R/L
+R=L*B
+printf("R= %3.3f Mohm \n",R*10^-6);
+
+
diff --git a/Working_Examples/215/CH16/EX16.13/ex16_13.sce b/Working_Examples/215/CH16/EX16.13/ex16_13.sce new file mode 100755 index 0000000..a46d15d --- /dev/null +++ b/Working_Examples/215/CH16/EX16.13/ex16_13.sce @@ -0,0 +1,26 @@ +clc
+//Example 16.13
+disp('Given')
+disp('Voltage gain = 40dB and cutoff frequency = 10k Hz')
+Av_dB=40
+Av=10^(Av_dB/20)
+f=10*10^3
+B=2*%pi*f
+//From figure 16.41(a)
+disp('1+Rf/R1=100(Gain)')
+//From figure 16.41(b)
+//The transfer function is
+disp('V+= Vi*(1/sC)/(1+1/sC)')
+//Combining two transfer functions
+disp('V0 = Vi*(1/sC)/(1+1/sC)*(1+Rf/R1)')
+//The maximum value of the combined transfer function is
+disp('Maximum value is V0 = Vi*(1+Rf/R1)')
+disp('Let R1=1k ohm')
+R1=10^3
+Rf=(Av-1)*R1
+printf("Rf= %d kohm \n",Rf*10^-3);
+disp('C=1 uF')
+C=10^-6
+//B=1/(R2*C)
+R2=1/(C*B)
+printf("R2= %3.2f ohm \n",R2);
\ No newline at end of file diff --git a/Working_Examples/215/CH16/EX16.2/ex16_2.sce b/Working_Examples/215/CH16/EX16.2/ex16_2.sce new file mode 100755 index 0000000..40b43f4 --- /dev/null +++ b/Working_Examples/215/CH16/EX16.2/ex16_2.sce @@ -0,0 +1,21 @@ +clc
+//Example 16.2
+disp('Given')
+disp('R=40Kohm L=1H C=1/64 uF w=8.2krad/s')
+R=40*10^3; L=1; C=1/64 *10^-6; w=8.2*10^3;
+//The value of Q0 must be at least 5
+Q0=5;
+w0=1/sqrt(L*C)
+printf("w0= %3.1f krad/s \n",w0*10^-3);
+f0=w0/(2*%pi)
+B=w0/Q0
+printf("Bandwidth= %3.1f krad/s \n",B*10^-3);
+//Number of half bandwidths be N
+N=2*(w-w0)/B
+disp(N)
+//Admittance Y(s)=(1+i*N)/R
+//Finding the magnitude and angle
+magY=sqrt(1+N^2)/R
+angY=atan(N)*(180/%pi)
+disp(angY,'angY=')
+printf("admittance value=%3.2f uS",magY*10^6)
\ No newline at end of file diff --git a/Working_Examples/215/CH16/EX16.3/ex16_3.sce b/Working_Examples/215/CH16/EX16.3/ex16_3.sce new file mode 100755 index 0000000..f81eeff --- /dev/null +++ b/Working_Examples/215/CH16/EX16.3/ex16_3.sce @@ -0,0 +1,24 @@ +clc
+//Example 16.3
+disp('Given')
+disp('R=10 ohm L=2mH C=200 nF w=48 krad/s vs=100*cos(wt) mV')
+R=10; L=2*10^-3; C=200*10^-9; w=48*10^3;
+vsamp=100;
+w0=1/sqrt(L*C)
+printf("w0= %3.1f krad/s \n",w0*10^-3);
+Q0=w0*L/R
+printf("Q0=%d \n",Q0)
+B=w0/Q0
+printf("Bandwidth= %3.1f krad/s \n",B*10^-3);
+//Number of half bandwidths be N
+N=2*(w-w0)/B
+disp(N)
+//Impedance Z(s)=(1+i*N)*R
+//Finding the magnitude and angle
+magZ=sqrt(1+N^2)*R
+angZ=atan(N)*(180/%pi)
+disp(angZ,'angZ=')
+printf("Equivalent impedance value=%3.2f ohm \n",magZ)
+//Approx current magnitude is
+Iamp=vsamp/magZ
+printf("\n Approx current magnitude= %3.2f mA \n",Iamp);
\ No newline at end of file diff --git a/Working_Examples/215/CH16/EX16.4/ex16_4.sce b/Working_Examples/215/CH16/EX16.4/ex16_4.sce new file mode 100755 index 0000000..3f6628e --- /dev/null +++ b/Working_Examples/215/CH16/EX16.4/ex16_4.sce @@ -0,0 +1,17 @@ +clc
+//Example 16.4
+disp('Given')
+disp('R1=2 ohm R2=3 ohm L=1H C=125mF')
+R1=2;R2=3 ; L=1;C=125*10^-3;
+w0=sqrt(1/(L*C)-(R1/L)^2)
+printf("w0=%d rad/s \n",w0)
+//Input admittance is 1/R2+i*w*C+1/(R+I*w*L)
+Y=1/3+%i/4+1/(2+%i*2)
+printf("Y= %3.4f S \n",Y)
+//Now input impedance at resonance
+Z=1/Y
+printf("Z= %3.4f ohm \n",Z)
+//Resonant frequency f=1/sqrt(L*C)
+f=1/sqrt(L*C)
+printf("f=%3.2f rad/s \n",f);
+
diff --git a/Working_Examples/215/CH16/EX16.5/ex16_5.sce b/Working_Examples/215/CH16/EX16.5/ex16_5.sce new file mode 100755 index 0000000..b3b172d --- /dev/null +++ b/Working_Examples/215/CH16/EX16.5/ex16_5.sce @@ -0,0 +1,13 @@ +clc
+//Example 16.5
+disp('Given')
+disp('R=5 ohm L=100mH w=100 rad/s')
+Rs=5; Ls=100*10^-3 ;w=100;
+//Let Xs be the capacitive and inductive reactance
+Xs=w*Ls
+Q=Xs/Rs
+//As Q is greater than 5 we can approximate as
+Rp=Q^2*Rs
+Lp=Ls
+printf("The parallel equivalent is \n");
+printf("Rp= %d ohm \t Lp=%d mH",Rp,Lp*10^3);
\ No newline at end of file diff --git a/Working_Examples/215/CH16/EX16.6/ex16_6.sce b/Working_Examples/215/CH16/EX16.6/ex16_6.sce new file mode 100755 index 0000000..26c1153 --- /dev/null +++ b/Working_Examples/215/CH16/EX16.6/ex16_6.sce @@ -0,0 +1,26 @@ +clc
+//Example 16.6
+disp('Given')
+disp('Km=20 Kf=50')
+Km=20; Kf=50;
+s=poly(0,'s')
+//From figure 16.20(a)
+C=0.05; L=0.5;
+//Performing magnitude as well as frequency scaling simultaneously
+Cscaled =C/(Km*Kf)
+Lscaled = L*Km/Kf
+printf("Scaled values are \n")
+printf("Cscaled =%d uF \t Lscaled =%d mH \n",Cscaled*10^6,Lscaled*10^3)
+//Converting the Laplace transform of the circuit
+//From figure 16.20(c)
+disp('Vin=V1+0.5s*(1-0.2*V1)')
+disp('V1=20/s')
+//On substituting V1 in equation of Vin
+
+Zin=(s^2-4*s+40)/(2*s)
+disp(Zin,'Zin=')
+//Now we need to scale Zin
+//We will multiply Zin by Km and replace s by s/Kf
+Zinscaled=horner(Km*Zin,s/Kf)
+disp(Zinscaled,'Zinscaled')
+
diff --git a/Working_Examples/215/CH16/EX16.8/Figure16_8.jpg b/Working_Examples/215/CH16/EX16.8/Figure16_8.jpg Binary files differnew file mode 100755 index 0000000..5a397bf --- /dev/null +++ b/Working_Examples/215/CH16/EX16.8/Figure16_8.jpg diff --git a/Working_Examples/215/CH16/EX16.8/ex16_8.sce b/Working_Examples/215/CH16/EX16.8/ex16_8.sce new file mode 100755 index 0000000..0b01847 --- /dev/null +++ b/Working_Examples/215/CH16/EX16.8/ex16_8.sce @@ -0,0 +1,14 @@ +clc
+//Example 16.8
+//From figure 16.26
+disp('Writing the expression for voltage gain')
+disp('Vout/Vin=4000*(-1/200)*(5000*10^8/s)/((5000+10^8/s)*(5000+10^6/20s))')
+//On simplification
+s=poly(0,'s')
+h=syslin('c',(-2*s)/((1+s/10)*(1+s/20000)))
+disp(h)
+fmin=0.01
+fmax=10^7
+scf(1);clf;
+bode(h,fmin,fmax)
+
diff --git a/Working_Examples/215/CH17/EX17.1/ex17_1.sce b/Working_Examples/215/CH17/EX17.1/ex17_1.sce new file mode 100755 index 0000000..d2697fc --- /dev/null +++ b/Working_Examples/215/CH17/EX17.1/ex17_1.sce @@ -0,0 +1,20 @@ +//Example 17.1
+clc
+//From figure 17.3
+disp('The mesh equations are')
+disp('V1=10*I1-10*I2')
+disp('0=-10*I1+17*I2-2*I3-5*I4')
+disp('0=-2*I2+7*I3-I4')
+disp('0=-5*I2-I3+26*I4')
+//We need to find input impedance
+disp('Zin=delz/del11')
+//In matrix form
+A=[10 -10 0 0 ;-10 17 -2 -5; 0 -2 7 -1;0 -5 -1 26]
+delz=det(A)
+printf("\n delz=%f ohm^4",delz);
+//Eliminating first row and first column to find del11
+B=[17 -2 -5;-2 7 -1;-5 -1 26]
+del11=det(B)
+printf("\n del11=%f ohm^3",del11);
+Zin=delz/del11
+printf("\n Zin=%f ohm",Zin);
diff --git a/Working_Examples/215/CH17/EX17.10/ex17_10.sce b/Working_Examples/215/CH17/EX17.10/ex17_10.sce new file mode 100755 index 0000000..9f1c174 --- /dev/null +++ b/Working_Examples/215/CH17/EX17.10/ex17_10.sce @@ -0,0 +1,26 @@ +clc
+//Example 17.10
+//From figure 17.32
+disp('Consider Network A')
+//Writing the mesh equations
+disp('V1=12*I1+10*I2')
+disp('V2=10*I1+14*I2')
+//Arranging in the standard form
+//V1=t11*V2-t12*I2
+//I1=t21*V2-t22*I2
+//Therefore t parameters of Network A is
+t11A=1.2;t12A=6.8;t21A=0.1;t22A=1.4;
+disp('Consider Network B')
+//Writing the mesh equations
+disp('V1=24*I1+20*I2')
+disp('V2=20*I1+28*I2')
+//Arranging in the standard form
+//V1=t11*V2-t12*I2
+//I1=t21*V2-t22*I2
+//Therefore t parameters of Network B is
+t11B=1.2;t12B=13.6;t21B=0.05;t22B=1.4;
+tA=[1.2 6.8;0.1 1.4]
+tB=[1.2 13.6;0.05 1.4]
+disp('t parameters of cascaded network is t=tA*tB')
+t=tA*tB
+disp(t)
\ No newline at end of file diff --git a/Working_Examples/215/CH17/EX17.2/ex17_2.sce b/Working_Examples/215/CH17/EX17.2/ex17_2.sce new file mode 100755 index 0000000..9f7c012 --- /dev/null +++ b/Working_Examples/215/CH17/EX17.2/ex17_2.sce @@ -0,0 +1,20 @@ +//Example 17.2
+clc
+//From figure 17.5
+disp('The mesh equations are')
+disp('V1=10*I1-10*I2')
+disp('0=-10*I1+17*I2-2*I3-5*I4')
+disp('0=-2*I2+7*I3-I4')
+disp('0=-0.5*I3+1.5*I4')
+//We need to find input impedance
+disp('Zin=delz/del11')
+//In matrix form
+A=[10 -10 0 0 ;-10 17 -2 -5; 0 -2 7 -1;0 0 -0.5 1.5]
+delz=det(A)
+printf("\n delz=%f ohm^3",delz);
+//Eliminating first row and first column to find del11
+B=[17 -2 -5;-2 7 -1;0 -0.5 1.5]
+del11=det(B)
+printf("\n del11=%f ohm^2",del11);
+Zin=delz/del11
+printf("\n Zin=%f ohm",Zin);
diff --git a/Working_Examples/215/CH17/EX17.3/ex17_3.sce b/Working_Examples/215/CH17/EX17.3/ex17_3.sce new file mode 100755 index 0000000..dd17bd1 --- /dev/null +++ b/Working_Examples/215/CH17/EX17.3/ex17_3.sce @@ -0,0 +1,22 @@ +//Example 17.3
+clc
+//From figure 17.7
+disp('The nodal equations are')
+disp('I1=0.35*V1-0.2*V2-0.05*V3')
+disp('I2=-0.2*V1+1.7*V2-1*V3')
+disp('I3=-0.05*V1-1*V2+1.3*I3')
+//We need to find input impedance
+disp('Yin=dely/del11')
+disp('Zin=1/Yin')
+//In matrix form
+A=[0.35 -0.2 -0.05;-0.2 1.7 -1;-0.05 -1 1.3]
+dely=det(A)
+printf("\n dely=%f S^3",dely);
+//Eliminating first row and first column to find del11
+B=[1.7 -1;-1 1.3]
+del11=det(B)
+printf("\n del11=%f S^2",del11);
+Yin=dely/del11
+printf("\n Yin=%f S",Yin);
+Zin=1/Yin
+printf("\n Zin=%f ohm",Zin);
diff --git a/Working_Examples/215/CH17/EX17.4/Figure17_4.jpg b/Working_Examples/215/CH17/EX17.4/Figure17_4.jpg Binary files differnew file mode 100755 index 0000000..aa5fa64 --- /dev/null +++ b/Working_Examples/215/CH17/EX17.4/Figure17_4.jpg diff --git a/Working_Examples/215/CH17/EX17.4/Figure17_4_xcos.jpg b/Working_Examples/215/CH17/EX17.4/Figure17_4_xcos.jpg Binary files differnew file mode 100755 index 0000000..b568ea3 --- /dev/null +++ b/Working_Examples/215/CH17/EX17.4/Figure17_4_xcos.jpg diff --git a/Working_Examples/215/CH17/EX17.4/ex17_4.xcos b/Working_Examples/215/CH17/EX17.4/ex17_4.xcos new file mode 100755 index 0000000..5533d44 --- /dev/null +++ b/Working_Examples/215/CH17/EX17.4/ex17_4.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" finalIntegrationTime="30.0" title="ex17_4"><!--Xcos - 1.0 - scilab-5.5.2 - 20160406 2040--><mxGraphModel as="model"><root><mxCell id="-536a7494:134d5b6a3e7:-7ff9"/><mxCell id="-536a7494:134d5b6a3e7:-7ffa" parent="-536a7494:134d5b6a3e7:-7ff9"/><BasicBlock dependsOnU="1" id="6641adef:135055938d4:-798b" interfaceFunctionName="CurrentSensor" ordering="1" parent="-536a7494:134d5b6a3e7:-7ffa" simulationFunctionName="CurrentSensor" simulationFunctionType="DEFAULT" style="CurrentSensor;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CurrentSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="i"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="60.0" y="40.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-536a7494:134d5b6a3e7:-7fd0" ordering="2" parent="6641adef:135055938d4:-798b" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="26.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-536a7494:134d5b6a3e7:-7fcf" ordering="1" parent="6641adef:135055938d4:-798b" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-536a7494:134d5b6a3e7:-7fd1" ordering="1" parent="6641adef:135055938d4:-798b" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="6.0"/></ImplicitOutputPort><GroundBlock dependsOnU="1" id="6641adef:135055938d4:-7987" interfaceFunctionName="Ground" ordering="2" parent="-536a7494:134d5b6a3e7:-7ffa" simulationFunctionName="Ground" simulationFunctionType="DEFAULT" style="Ground;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Ground"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="180.0" y="250.0"/></GroundBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-536a7494:134d5b6a3e7:-7fc8" ordering="1" parent="6641adef:135055938d4:-7987" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><Orientation as="orientation" value="NORTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="6641adef:135055938d4:-7985" interfaceFunctionName="Resistor" ordering="3" parent="-536a7494:134d5b6a3e7:-7ffa" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="10"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="10.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="10.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="180.0" y="30.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-536a7494:134d5b6a3e7:-7f69" ordering="1" parent="6641adef:135055938d4:-7985" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-536a7494:134d5b6a3e7:-7f68" ordering="1" parent="6641adef:135055938d4:-7985" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><BasicBlock angle="90" dependsOnU="1" id="6641adef:135055938d4:-7982" interfaceFunctionName="Resistor" ordering="4" parent="-536a7494:134d5b6a3e7:-7ffa" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="5"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="120.0" y="120.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-536a7494:134d5b6a3e7:-7f61" ordering="1" parent="6641adef:135055938d4:-7982" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-536a7494:134d5b6a3e7:-7f60" ordering="1" parent="6641adef:135055938d4:-7982" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><BasicBlock angle="90" dependsOnU="1" id="6641adef:135055938d4:-797f" interfaceFunctionName="Resistor" ordering="5" parent="-536a7494:134d5b6a3e7:-7ffa" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="20"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="20.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="20.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="250.0" y="120.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-536a7494:134d5b6a3e7:-7f65" ordering="1" parent="6641adef:135055938d4:-797f" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-536a7494:134d5b6a3e7:-7f64" ordering="1" parent="6641adef:135055938d4:-797f" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitLink id="-536a7494:134d5b6a3e7:-7fa8" parent="-536a7494:134d5b6a3e7:-7ffa" source="-536a7494:134d5b6a3e7:-7f5d" target="-536a7494:134d5b6a3e7:-7fcf"><mxGeometry as="geometry" x="-50.0" y="-50.0"><mxPoint as="sourcePoint" x="30.0" y="120.0"/><mxPoint as="targetPoint" x="60.0" y="60.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="30.0" y="60.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="6641adef:135055938d4:-797b" ordering="6" parent="-536a7494:134d5b6a3e7:-7ffa" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="137.0" y="47.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-536a7494:134d5b6a3e7:-7fa1" ordering="1" parent="6641adef:135055938d4:-797b" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-536a7494:134d5b6a3e7:-7fa0" ordering="2" parent="6641adef:135055938d4:-797b" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-536a7494:134d5b6a3e7:-7fa2" ordering="1" parent="6641adef:135055938d4:-797b" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-536a7494:134d5b6a3e7:-7f9f" parent="-536a7494:134d5b6a3e7:-7ffa" source="-536a7494:134d5b6a3e7:-7fd1" target="-536a7494:134d5b6a3e7:-7fa2"><mxGeometry as="geometry" x="-50.0" y="-50.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-536a7494:134d5b6a3e7:-7f9e" parent="-536a7494:134d5b6a3e7:-7ffa" source="-536a7494:134d5b6a3e7:-7fa1" target="-536a7494:134d5b6a3e7:-7f69"><mxGeometry as="geometry" x="-50.0" y="-50.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-536a7494:134d5b6a3e7:-7fa4" parent="-536a7494:134d5b6a3e7:-7ffa" source="-536a7494:134d5b6a3e7:-7fa0" target="-536a7494:134d5b6a3e7:-7f61"><mxGeometry as="geometry" x="-50.0" y="-50.0"><mxPoint as="sourcePoint" x="140.0" y="120.0"/><mxPoint as="targetPoint" x="140.0" y="50.0"/></mxGeometry></ImplicitLink><SplitBlock id="6641adef:135055938d4:-7974" ordering="7" parent="-536a7494:134d5b6a3e7:-7ffa" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="267.0" y="47.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-536a7494:134d5b6a3e7:-7f9a" ordering="1" parent="6641adef:135055938d4:-7974" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-536a7494:134d5b6a3e7:-7f99" ordering="2" parent="6641adef:135055938d4:-7974" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-536a7494:134d5b6a3e7:-7f9b" ordering="1" parent="6641adef:135055938d4:-7974" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-536a7494:134d5b6a3e7:-7f97" parent="-536a7494:134d5b6a3e7:-7ffa" source="-536a7494:134d5b6a3e7:-7f68" target="-536a7494:134d5b6a3e7:-7f9a"><mxGeometry as="geometry" x="-50.0" y="-50.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-536a7494:134d5b6a3e7:-7f9d" parent="-536a7494:134d5b6a3e7:-7ffa" source="-536a7494:134d5b6a3e7:-7f99" target="-536a7494:134d5b6a3e7:-7f65"><mxGeometry as="geometry" x="-50.0" y="-50.0"><mxPoint as="sourcePoint" x="270.0" y="120.0"/><mxPoint as="targetPoint" x="270.0" y="50.0"/></mxGeometry></ImplicitLink><SplitBlock id="6641adef:135055938d4:-796e" ordering="8" parent="-536a7494:134d5b6a3e7:-7ffa" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="267.0" y="207.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-536a7494:134d5b6a3e7:-7f93" ordering="1" parent="6641adef:135055938d4:-796e" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-536a7494:134d5b6a3e7:-7f92" ordering="2" parent="6641adef:135055938d4:-796e" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-536a7494:134d5b6a3e7:-7f94" ordering="1" parent="6641adef:135055938d4:-796e" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-536a7494:134d5b6a3e7:-7f90" parent="-536a7494:134d5b6a3e7:-7ffa" source="-536a7494:134d5b6a3e7:-7f93" target="-536a7494:134d5b6a3e7:-7f9b"><mxGeometry as="geometry" x="-50.0" y="-50.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="370.0" y="210.0"/><mxPoint x="370.0" y="50.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-536a7494:134d5b6a3e7:-7f96" parent="-536a7494:134d5b6a3e7:-7ffa" source="-536a7494:134d5b6a3e7:-7f64" target="-536a7494:134d5b6a3e7:-7f92"><mxGeometry as="geometry" x="-50.0" y="-50.0"><mxPoint as="sourcePoint" x="270.0" y="160.0"/><mxPoint as="targetPoint" x="270.0" y="210.0"/></mxGeometry></ImplicitLink><SplitBlock id="6641adef:135055938d4:-7968" ordering="9" parent="-536a7494:134d5b6a3e7:-7ffa" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="197.0" y="207.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-536a7494:134d5b6a3e7:-7f8c" ordering="1" parent="6641adef:135055938d4:-7968" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-536a7494:134d5b6a3e7:-7f8b" ordering="2" parent="6641adef:135055938d4:-7968" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-536a7494:134d5b6a3e7:-7f8d" ordering="1" parent="6641adef:135055938d4:-7968" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-536a7494:134d5b6a3e7:-7f89" parent="-536a7494:134d5b6a3e7:-7ffa" source="-536a7494:134d5b6a3e7:-7f8c" target="-536a7494:134d5b6a3e7:-7f94"><mxGeometry as="geometry" x="-50.0" y="-50.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-536a7494:134d5b6a3e7:-7f8f" parent="-536a7494:134d5b6a3e7:-7ffa" source="-536a7494:134d5b6a3e7:-7f8b" target="-536a7494:134d5b6a3e7:-7fc8"><mxGeometry as="geometry" x="-50.0" y="-50.0"><mxPoint as="sourcePoint" x="200.0" y="250.0"/><mxPoint as="targetPoint" x="200.0" y="210.0"/></mxGeometry></ImplicitLink><SplitBlock id="6641adef:135055938d4:-7962" ordering="10" parent="-536a7494:134d5b6a3e7:-7ffa" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="137.0" y="207.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-536a7494:134d5b6a3e7:-7f85" ordering="1" parent="6641adef:135055938d4:-7962" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-536a7494:134d5b6a3e7:-7f84" ordering="2" parent="6641adef:135055938d4:-7962" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-536a7494:134d5b6a3e7:-7f86" ordering="1" parent="6641adef:135055938d4:-7962" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-536a7494:134d5b6a3e7:-7f83" parent="-536a7494:134d5b6a3e7:-7ffa" source="-536a7494:134d5b6a3e7:-7f5c" target="-536a7494:134d5b6a3e7:-7f86"><mxGeometry as="geometry" x="-50.0" y="-50.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="30.0" y="210.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-536a7494:134d5b6a3e7:-7f82" parent="-536a7494:134d5b6a3e7:-7ffa" source="-536a7494:134d5b6a3e7:-7f85" target="-536a7494:134d5b6a3e7:-7f8d"><mxGeometry as="geometry" x="-50.0" y="-50.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-536a7494:134d5b6a3e7:-7f88" parent="-536a7494:134d5b6a3e7:-7ffa" source="-536a7494:134d5b6a3e7:-7f60" target="-536a7494:134d5b6a3e7:-7f84"><mxGeometry as="geometry" x="-50.0" y="-50.0"><mxPoint as="sourcePoint" x="140.0" y="160.0"/><mxPoint as="targetPoint" x="140.0" y="210.0"/></mxGeometry></ImplicitLink><TextBlock id="6641adef:135055938d4:-795b" parent="-536a7494:134d5b6a3e7:-7ffa" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="To calculate y11"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="To calculate y11"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="To calculate y11"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="180.0" y="10.0"/></TextBlock><BasicBlock angle="90" id="6641adef:135055938d4:-795a" interfaceFunctionName="ConstantVoltage" ordering="11" parent="-536a7494:134d5b6a3e7:-7ffa" simulationFunctionName="ConstantVoltage" simulationFunctionType="DEFAULT" style="ConstantVoltage;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ConstantVoltage"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="V"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="480.0" y="130.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-536a7494:134d5b6a3e7:-7f1c" ordering="1" parent="6641adef:135055938d4:-795a" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-536a7494:134d5b6a3e7:-7f1d" ordering="1" parent="6641adef:135055938d4:-795a" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><BasicBlock angle="180" dependsOnU="1" id="6641adef:135055938d4:-7957" interfaceFunctionName="CurrentSensor" ordering="12" parent="-536a7494:134d5b6a3e7:-7ffa" simulationFunctionName="CurrentSensor" simulationFunctionType="DEFAULT" style="CurrentSensor;rotation=180;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CurrentSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="i"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="770.0" y="50.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-536a7494:134d5b6a3e7:-7f19" ordering="2" parent="6641adef:135055938d4:-7957" style="ExplicitOutputPort;align=left;verticalAlign=middle;spacing=10;rotation=180;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="26.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-536a7494:134d5b6a3e7:-7f18" ordering="1" parent="6641adef:135055938d4:-7957" style="ImplicitInputPort;align=right;verticalAlign=middle;spacing=10;rotation=180;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-536a7494:134d5b6a3e7:-7f1a" ordering="1" parent="6641adef:135055938d4:-7957" style="ImplicitOutputPort;align=left;verticalAlign=middle;spacing=10;rotation=180;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ImplicitOutputPort><GroundBlock dependsOnU="1" id="6641adef:135055938d4:-7953" interfaceFunctionName="Ground" ordering="13" parent="-536a7494:134d5b6a3e7:-7ffa" simulationFunctionName="Ground" simulationFunctionType="DEFAULT" style="Ground;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Ground"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="650.0" y="260.0"/></GroundBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-536a7494:134d5b6a3e7:-7f16" ordering="1" parent="6641adef:135055938d4:-7953" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><Orientation as="orientation" value="NORTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="6641adef:135055938d4:-7951" interfaceFunctionName="Resistor" ordering="14" parent="-536a7494:134d5b6a3e7:-7ffa" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="10"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="10.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="10.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="650.0" y="40.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-536a7494:134d5b6a3e7:-7f13" ordering="1" parent="6641adef:135055938d4:-7951" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-536a7494:134d5b6a3e7:-7f14" ordering="1" parent="6641adef:135055938d4:-7951" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><BasicBlock angle="90" dependsOnU="1" id="6641adef:135055938d4:-794e" interfaceFunctionName="Resistor" ordering="15" parent="-536a7494:134d5b6a3e7:-7ffa" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="5"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="590.0" y="130.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-536a7494:134d5b6a3e7:-7f10" ordering="1" parent="6641adef:135055938d4:-794e" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-536a7494:134d5b6a3e7:-7f11" ordering="1" parent="6641adef:135055938d4:-794e" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><BasicBlock angle="90" dependsOnU="1" id="6641adef:135055938d4:-794b" interfaceFunctionName="Resistor" ordering="16" parent="-536a7494:134d5b6a3e7:-7ffa" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="20"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="20.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="20.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="720.0" y="130.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-536a7494:134d5b6a3e7:-7f0d" ordering="1" parent="6641adef:135055938d4:-794b" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-536a7494:134d5b6a3e7:-7f0e" ordering="1" parent="6641adef:135055938d4:-794b" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><SplitBlock id="6641adef:135055938d4:-7948" ordering="17" parent="-536a7494:134d5b6a3e7:-7ffa" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="667.0" y="217.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-536a7494:134d5b6a3e7:-7ef6" ordering="1" parent="6641adef:135055938d4:-7948" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-536a7494:134d5b6a3e7:-7ef5" ordering="2" parent="6641adef:135055938d4:-7948" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-536a7494:134d5b6a3e7:-7ef7" ordering="1" parent="6641adef:135055938d4:-7948" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-536a7494:134d5b6a3e7:-7ef3" parent="-536a7494:134d5b6a3e7:-7ffa" source="-536a7494:134d5b6a3e7:-7ef5" target="-536a7494:134d5b6a3e7:-7f16"><mxGeometry as="geometry" x="420.0" y="-40.0"><mxPoint as="sourcePoint" x="670.0" y="260.0"/><mxPoint as="targetPoint" x="670.0" y="220.0"/></mxGeometry></ImplicitLink><SplitBlock id="6641adef:135055938d4:-7943" ordering="18" parent="-536a7494:134d5b6a3e7:-7ffa" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="607.0" y="217.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-536a7494:134d5b6a3e7:-7ef0" ordering="1" parent="6641adef:135055938d4:-7943" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-536a7494:134d5b6a3e7:-7eef" ordering="2" parent="6641adef:135055938d4:-7943" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-536a7494:134d5b6a3e7:-7ef1" ordering="1" parent="6641adef:135055938d4:-7943" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-536a7494:134d5b6a3e7:-7eee" parent="-536a7494:134d5b6a3e7:-7ffa" source="-536a7494:134d5b6a3e7:-7f1d" target="-536a7494:134d5b6a3e7:-7ef1"><mxGeometry as="geometry" x="420.0" y="-40.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="500.0" y="220.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-536a7494:134d5b6a3e7:-7eed" parent="-536a7494:134d5b6a3e7:-7ffa" source="-536a7494:134d5b6a3e7:-7ef0" target="-536a7494:134d5b6a3e7:-7ef7"><mxGeometry as="geometry" x="420.0" y="-40.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-536a7494:134d5b6a3e7:-7eec" parent="-536a7494:134d5b6a3e7:-7ffa" source="-536a7494:134d5b6a3e7:-7f11" target="-536a7494:134d5b6a3e7:-7eef"><mxGeometry as="geometry" x="420.0" y="-40.0"><mxPoint as="sourcePoint" x="610.0" y="170.0"/><mxPoint as="targetPoint" x="610.0" y="220.0"/></mxGeometry></ImplicitLink><TextBlock id="6641adef:135055938d4:-793a" parent="-536a7494:134d5b6a3e7:-7ffa" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="To calculate y21"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="To calculate y21"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="To calculate y21"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="650.0" y="10.0"/></TextBlock><SplitBlock id="6641adef:135055938d4:-7939" ordering="19" parent="-536a7494:134d5b6a3e7:-7ffa" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="607.0" y="57.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-536a7494:134d5b6a3e7:-7e52" ordering="1" parent="6641adef:135055938d4:-7939" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-536a7494:134d5b6a3e7:-7e51" ordering="2" parent="6641adef:135055938d4:-7939" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-536a7494:134d5b6a3e7:-7e53" ordering="1" parent="6641adef:135055938d4:-7939" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-536a7494:134d5b6a3e7:-7e50" parent="-536a7494:134d5b6a3e7:-7ffa" source="-536a7494:134d5b6a3e7:-7f13" target="-536a7494:134d5b6a3e7:-7e53"><mxGeometry as="geometry" x="-50.0" y="-50.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-536a7494:134d5b6a3e7:-7e4f" parent="-536a7494:134d5b6a3e7:-7ffa" source="-536a7494:134d5b6a3e7:-7e52" target="-536a7494:134d5b6a3e7:-7f10"><mxGeometry as="geometry" x="-50.0" y="-50.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-536a7494:134d5b6a3e7:-7e55" parent="-536a7494:134d5b6a3e7:-7ffa" source="-536a7494:134d5b6a3e7:-7e51" target="-536a7494:134d5b6a3e7:-7f1c"><mxGeometry as="geometry" x="-50.0" y="-50.0"><mxPoint as="sourcePoint" x="500.0" y="130.0"/><mxPoint as="targetPoint" x="610.0" y="60.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="500.0" y="60.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="6641adef:135055938d4:-7932" ordering="20" parent="-536a7494:134d5b6a3e7:-7ffa" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="737.0" y="57.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-536a7494:134d5b6a3e7:-7e35" ordering="1" parent="6641adef:135055938d4:-7932" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-536a7494:134d5b6a3e7:-7e34" ordering="2" parent="6641adef:135055938d4:-7932" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-536a7494:134d5b6a3e7:-7e36" ordering="1" parent="6641adef:135055938d4:-7932" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-536a7494:134d5b6a3e7:-7e33" parent="-536a7494:134d5b6a3e7:-7ffa" source="-536a7494:134d5b6a3e7:-7f14" target="-536a7494:134d5b6a3e7:-7e36"><mxGeometry as="geometry" x="-50.0" y="-50.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-536a7494:134d5b6a3e7:-7e32" parent="-536a7494:134d5b6a3e7:-7ffa" source="-536a7494:134d5b6a3e7:-7e35" target="-536a7494:134d5b6a3e7:-7f0d"><mxGeometry as="geometry" x="-50.0" y="-50.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-536a7494:134d5b6a3e7:-7e38" parent="-536a7494:134d5b6a3e7:-7ffa" source="-536a7494:134d5b6a3e7:-7f1a" target="-536a7494:134d5b6a3e7:-7e34"><mxGeometry as="geometry" x="-50.0" y="-50.0"><mxPoint as="sourcePoint" x="770.0" y="60.0"/><mxPoint as="targetPoint" x="740.0" y="60.0"/></mxGeometry></ImplicitLink><SplitBlock id="6641adef:135055938d4:-792b" ordering="21" parent="-536a7494:134d5b6a3e7:-7ffa" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="737.0" y="217.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-536a7494:134d5b6a3e7:-7e2e" ordering="1" parent="6641adef:135055938d4:-792b" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-536a7494:134d5b6a3e7:-7e2d" ordering="2" parent="6641adef:135055938d4:-792b" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-536a7494:134d5b6a3e7:-7e2f" ordering="1" parent="6641adef:135055938d4:-792b" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-536a7494:134d5b6a3e7:-7e2c" parent="-536a7494:134d5b6a3e7:-7ffa" source="-536a7494:134d5b6a3e7:-7f0e" target="-536a7494:134d5b6a3e7:-7e2f"><mxGeometry as="geometry" x="-50.0" y="-50.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-536a7494:134d5b6a3e7:-7e2b" parent="-536a7494:134d5b6a3e7:-7ffa" source="-536a7494:134d5b6a3e7:-7ef6" target="-536a7494:134d5b6a3e7:-7e2e"><mxGeometry as="geometry" x="-50.0" y="-50.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="740.0" y="220.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-536a7494:134d5b6a3e7:-7e31" parent="-536a7494:134d5b6a3e7:-7ffa" source="-536a7494:134d5b6a3e7:-7e2d" target="-536a7494:134d5b6a3e7:-7f18"><mxGeometry as="geometry" x="-50.0" y="-50.0"><mxPoint as="sourcePoint" x="810.0" y="70.0"/><mxPoint as="targetPoint" x="740.0" y="220.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="840.0" y="220.0"/><mxPoint x="840.0" y="70.0"/></Array></mxGeometry></ImplicitLink><BasicBlock angle="90" id="6641adef:135055938d4:-7924" interfaceFunctionName="ConstantVoltage" ordering="22" parent="-536a7494:134d5b6a3e7:-7ffa" simulationFunctionName="ConstantVoltage" simulationFunctionType="DEFAULT" style="ConstantVoltage;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ConstantVoltage"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="V"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="780.0" y="450.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-536a7494:134d5b6a3e7:-7de6" ordering="1" parent="6641adef:135055938d4:-7924" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-536a7494:134d5b6a3e7:-7de7" ordering="1" parent="6641adef:135055938d4:-7924" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><BasicBlock angle="180" dependsOnU="1" id="6641adef:135055938d4:-7921" interfaceFunctionName="CurrentSensor" ordering="23" parent="-536a7494:134d5b6a3e7:-7ffa" simulationFunctionName="CurrentSensor" simulationFunctionType="DEFAULT" style="CurrentSensor;rotation=180;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CurrentSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="i"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="720.0" y="370.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-536a7494:134d5b6a3e7:-7de3" ordering="2" parent="6641adef:135055938d4:-7921" style="ExplicitOutputPort;align=left;verticalAlign=middle;spacing=10;rotation=180;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="26.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-536a7494:134d5b6a3e7:-7de2" ordering="1" parent="6641adef:135055938d4:-7921" style="ImplicitInputPort;align=right;verticalAlign=middle;spacing=10;rotation=180;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-536a7494:134d5b6a3e7:-7de4" ordering="1" parent="6641adef:135055938d4:-7921" style="ImplicitOutputPort;align=left;verticalAlign=middle;spacing=10;rotation=180;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ImplicitOutputPort><GroundBlock dependsOnU="1" id="6641adef:135055938d4:-791d" interfaceFunctionName="Ground" ordering="24" parent="-536a7494:134d5b6a3e7:-7ffa" simulationFunctionName="Ground" simulationFunctionType="DEFAULT" style="Ground;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Ground"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="600.0" y="570.0"/></GroundBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-536a7494:134d5b6a3e7:-7de0" ordering="1" parent="6641adef:135055938d4:-791d" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><Orientation as="orientation" value="NORTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="6641adef:135055938d4:-791b" interfaceFunctionName="Resistor" ordering="25" parent="-536a7494:134d5b6a3e7:-7ffa" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="10"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="10.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="10.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="600.0" y="360.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-536a7494:134d5b6a3e7:-7ddd" ordering="1" parent="6641adef:135055938d4:-791b" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-536a7494:134d5b6a3e7:-7dde" ordering="1" parent="6641adef:135055938d4:-791b" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><BasicBlock angle="90" dependsOnU="1" id="6641adef:135055938d4:-7918" interfaceFunctionName="Resistor" ordering="26" parent="-536a7494:134d5b6a3e7:-7ffa" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="5"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="540.0" y="450.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-536a7494:134d5b6a3e7:-7dda" ordering="1" parent="6641adef:135055938d4:-7918" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-536a7494:134d5b6a3e7:-7ddb" ordering="1" parent="6641adef:135055938d4:-7918" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><BasicBlock angle="90" dependsOnU="1" id="6641adef:135055938d4:-7915" interfaceFunctionName="Resistor" ordering="27" parent="-536a7494:134d5b6a3e7:-7ffa" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="20"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="20.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="20.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="670.0" y="450.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-536a7494:134d5b6a3e7:-7dd7" ordering="1" parent="6641adef:135055938d4:-7915" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-536a7494:134d5b6a3e7:-7dd8" ordering="1" parent="6641adef:135055938d4:-7915" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><SplitBlock id="6641adef:135055938d4:-7912" ordering="28" parent="-536a7494:134d5b6a3e7:-7ffa" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="617.0" y="537.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-536a7494:134d5b6a3e7:-7dd4" ordering="1" parent="6641adef:135055938d4:-7912" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-536a7494:134d5b6a3e7:-7dd3" ordering="2" parent="6641adef:135055938d4:-7912" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-536a7494:134d5b6a3e7:-7dd5" ordering="1" parent="6641adef:135055938d4:-7912" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-536a7494:134d5b6a3e7:-7dd2" parent="-536a7494:134d5b6a3e7:-7ffa" source="-536a7494:134d5b6a3e7:-7dd3" target="-536a7494:134d5b6a3e7:-7de0"><mxGeometry as="geometry" x="370.0" y="280.0"><mxPoint as="sourcePoint" x="620.0" y="580.0"/><mxPoint as="targetPoint" x="620.0" y="540.0"/></mxGeometry></ImplicitLink><TextBlock id="6641adef:135055938d4:-790b" parent="-536a7494:134d5b6a3e7:-7ffa" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="To calculate y22"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="To calculate y22"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="To calculate y22"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="640.0" y="320.0"/></TextBlock><ImplicitLink id="-536a7494:134d5b6a3e7:-7d51" parent="-536a7494:134d5b6a3e7:-7ffa" source="-536a7494:134d5b6a3e7:-7de6" target="-536a7494:134d5b6a3e7:-7de2"><mxGeometry as="geometry" x="-60.0"><mxPoint as="sourcePoint" x="800.0" y="450.0"/><mxPoint as="targetPoint" x="770.0" y="390.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="800.0" y="390.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="6641adef:135055938d4:-7909" ordering="29" parent="-536a7494:134d5b6a3e7:-7ffa" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="687.0" y="377.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-536a7494:134d5b6a3e7:-7d4c" ordering="1" parent="6641adef:135055938d4:-7909" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-536a7494:134d5b6a3e7:-7d4b" ordering="2" parent="6641adef:135055938d4:-7909" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-536a7494:134d5b6a3e7:-7d4d" ordering="1" parent="6641adef:135055938d4:-7909" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-536a7494:134d5b6a3e7:-7d4a" parent="-536a7494:134d5b6a3e7:-7ffa" source="-536a7494:134d5b6a3e7:-7dde" target="-536a7494:134d5b6a3e7:-7d4d"><mxGeometry as="geometry" x="-60.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-536a7494:134d5b6a3e7:-7d49" parent="-536a7494:134d5b6a3e7:-7ffa" source="-536a7494:134d5b6a3e7:-7d4c" target="-536a7494:134d5b6a3e7:-7dd7"><mxGeometry as="geometry" x="-60.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-536a7494:134d5b6a3e7:-7d4f" parent="-536a7494:134d5b6a3e7:-7ffa" source="-536a7494:134d5b6a3e7:-7de4" target="-536a7494:134d5b6a3e7:-7d4b"><mxGeometry as="geometry" x="-60.0"><mxPoint as="sourcePoint" x="720.0" y="380.0"/><mxPoint as="targetPoint" x="690.0" y="380.0"/></mxGeometry></ImplicitLink><SplitBlock id="6641adef:135055938d4:-7902" ordering="30" parent="-536a7494:134d5b6a3e7:-7ffa" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="687.0" y="537.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-536a7494:134d5b6a3e7:-7d45" ordering="1" parent="6641adef:135055938d4:-7902" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-536a7494:134d5b6a3e7:-7d44" ordering="2" parent="6641adef:135055938d4:-7902" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-536a7494:134d5b6a3e7:-7d46" ordering="1" parent="6641adef:135055938d4:-7902" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-536a7494:134d5b6a3e7:-7d43" parent="-536a7494:134d5b6a3e7:-7ffa" source="-536a7494:134d5b6a3e7:-7dd4" target="-536a7494:134d5b6a3e7:-7d46"><mxGeometry as="geometry" x="-60.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-536a7494:134d5b6a3e7:-7d42" parent="-536a7494:134d5b6a3e7:-7ffa" source="-536a7494:134d5b6a3e7:-7dd8" target="-536a7494:134d5b6a3e7:-7d45"><mxGeometry as="geometry" x="-60.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="690.0" y="540.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-536a7494:134d5b6a3e7:-7d48" parent="-536a7494:134d5b6a3e7:-7ffa" source="-536a7494:134d5b6a3e7:-7de7" target="-536a7494:134d5b6a3e7:-7d44"><mxGeometry as="geometry" x="-60.0"><mxPoint as="sourcePoint" x="800.0" y="490.0"/><mxPoint as="targetPoint" x="690.0" y="540.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="800.0" y="540.0"/></Array></mxGeometry></ImplicitLink><BasicBlock angle="90" id="6641adef:135055938d4:-78fb" interfaceFunctionName="ConstantVoltage" ordering="31" parent="-536a7494:134d5b6a3e7:-7ffa" simulationFunctionName="ConstantVoltage" simulationFunctionType="DEFAULT" style="ConstantVoltage;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ConstantVoltage"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="V"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="360.0" y="430.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-536a7494:134d5b6a3e7:-7d0f" ordering="1" parent="6641adef:135055938d4:-78fb" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-536a7494:134d5b6a3e7:-7d10" ordering="1" parent="6641adef:135055938d4:-78fb" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><BasicBlock dependsOnU="1" id="6641adef:135055938d4:-78f8" interfaceFunctionName="CurrentSensor" ordering="32" parent="-536a7494:134d5b6a3e7:-7ffa" simulationFunctionName="CurrentSensor" simulationFunctionType="DEFAULT" style="CurrentSensor;rotation=0;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CurrentSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="i"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="50.0" y="350.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-536a7494:134d5b6a3e7:-7d0c" ordering="2" parent="6641adef:135055938d4:-78f8" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="26.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-536a7494:134d5b6a3e7:-7d0b" ordering="1" parent="6641adef:135055938d4:-78f8" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-536a7494:134d5b6a3e7:-7d0d" ordering="1" parent="6641adef:135055938d4:-78f8" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="6.0"/></ImplicitOutputPort><GroundBlock dependsOnU="1" id="6641adef:135055938d4:-78f4" interfaceFunctionName="Ground" ordering="33" parent="-536a7494:134d5b6a3e7:-7ffa" simulationFunctionName="Ground" simulationFunctionType="DEFAULT" style="Ground;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Ground"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="180.0" y="560.0"/></GroundBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-536a7494:134d5b6a3e7:-7d09" ordering="1" parent="6641adef:135055938d4:-78f4" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><Orientation as="orientation" value="NORTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="6641adef:135055938d4:-78f2" interfaceFunctionName="Resistor" ordering="34" parent="-536a7494:134d5b6a3e7:-7ffa" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="10"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="10.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="10.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="180.0" y="340.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-536a7494:134d5b6a3e7:-7d06" ordering="1" parent="6641adef:135055938d4:-78f2" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-536a7494:134d5b6a3e7:-7d07" ordering="1" parent="6641adef:135055938d4:-78f2" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><BasicBlock angle="90" dependsOnU="1" id="6641adef:135055938d4:-78ef" interfaceFunctionName="Resistor" ordering="35" parent="-536a7494:134d5b6a3e7:-7ffa" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="5"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="120.0" y="430.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-536a7494:134d5b6a3e7:-7d03" ordering="1" parent="6641adef:135055938d4:-78ef" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-536a7494:134d5b6a3e7:-7d04" ordering="1" parent="6641adef:135055938d4:-78ef" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><BasicBlock angle="90" dependsOnU="1" id="6641adef:135055938d4:-78ec" interfaceFunctionName="Resistor" ordering="36" parent="-536a7494:134d5b6a3e7:-7ffa" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="20"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="20.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="20.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="250.0" y="430.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-536a7494:134d5b6a3e7:-7d00" ordering="1" parent="6641adef:135055938d4:-78ec" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-536a7494:134d5b6a3e7:-7d01" ordering="1" parent="6641adef:135055938d4:-78ec" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><SplitBlock id="6641adef:135055938d4:-78e9" ordering="37" parent="-536a7494:134d5b6a3e7:-7ffa" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="197.0" y="517.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-536a7494:134d5b6a3e7:-7cfd" ordering="1" parent="6641adef:135055938d4:-78e9" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-536a7494:134d5b6a3e7:-7cfc" ordering="2" parent="6641adef:135055938d4:-78e9" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-536a7494:134d5b6a3e7:-7cfe" ordering="1" parent="6641adef:135055938d4:-78e9" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-536a7494:134d5b6a3e7:-7cfb" parent="-536a7494:134d5b6a3e7:-7ffa" source="-536a7494:134d5b6a3e7:-7cfc" target="-536a7494:134d5b6a3e7:-7d09"><mxGeometry as="geometry" x="-50.0" y="260.0"><mxPoint as="sourcePoint" x="200.0" y="560.0"/><mxPoint as="targetPoint" x="200.0" y="520.0"/></mxGeometry></ImplicitLink><TextBlock id="6641adef:135055938d4:-78e4" parent="-536a7494:134d5b6a3e7:-7ffa" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="To calculate y12"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="To calculate y12"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="To calculate y12"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="170.0" y="310.0"/></TextBlock><SplitBlock id="6641adef:135055938d4:-78e3" ordering="38" parent="-536a7494:134d5b6a3e7:-7ffa" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="267.0" y="517.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-536a7494:134d5b6a3e7:-7ce6" ordering="1" parent="6641adef:135055938d4:-78e3" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-536a7494:134d5b6a3e7:-7ce5" ordering="2" parent="6641adef:135055938d4:-78e3" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-536a7494:134d5b6a3e7:-7ce7" ordering="1" parent="6641adef:135055938d4:-78e3" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-536a7494:134d5b6a3e7:-7ce4" parent="-536a7494:134d5b6a3e7:-7ffa" source="-536a7494:134d5b6a3e7:-7cfd" target="-536a7494:134d5b6a3e7:-7ce7"><mxGeometry as="geometry" x="-480.0" y="-20.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-536a7494:134d5b6a3e7:-7ce3" parent="-536a7494:134d5b6a3e7:-7ffa" source="-536a7494:134d5b6a3e7:-7d01" target="-536a7494:134d5b6a3e7:-7ce6"><mxGeometry as="geometry" x="-480.0" y="-20.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="270.0" y="520.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-536a7494:134d5b6a3e7:-7ce2" parent="-536a7494:134d5b6a3e7:-7ffa" source="-536a7494:134d5b6a3e7:-7d10" target="-536a7494:134d5b6a3e7:-7ce5"><mxGeometry as="geometry" x="-480.0" y="-20.0"><mxPoint as="sourcePoint" x="380.0" y="470.0"/><mxPoint as="targetPoint" x="270.0" y="520.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="380.0" y="520.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="6641adef:135055938d4:-78dc" ordering="39" parent="-536a7494:134d5b6a3e7:-7ffa" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="137.0" y="357.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-536a7494:134d5b6a3e7:-7ca6" ordering="1" parent="6641adef:135055938d4:-78dc" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-536a7494:134d5b6a3e7:-7ca5" ordering="2" parent="6641adef:135055938d4:-78dc" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-536a7494:134d5b6a3e7:-7ca7" ordering="1" parent="6641adef:135055938d4:-78dc" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-536a7494:134d5b6a3e7:-7ca4" parent="-536a7494:134d5b6a3e7:-7ffa" source="-536a7494:134d5b6a3e7:-7d06" target="-536a7494:134d5b6a3e7:-7ca7"><mxGeometry as="geometry" y="-30.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-536a7494:134d5b6a3e7:-7ca3" parent="-536a7494:134d5b6a3e7:-7ffa" source="-536a7494:134d5b6a3e7:-7ca6" target="-536a7494:134d5b6a3e7:-7d03"><mxGeometry as="geometry" y="-30.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-536a7494:134d5b6a3e7:-7ca9" parent="-536a7494:134d5b6a3e7:-7ffa" source="-536a7494:134d5b6a3e7:-7d0d" target="-536a7494:134d5b6a3e7:-7ca5"><mxGeometry as="geometry" y="-30.0"><mxPoint as="sourcePoint" x="90.0" y="360.0"/><mxPoint as="targetPoint" x="140.0" y="360.0"/></mxGeometry></ImplicitLink><SplitBlock id="6641adef:135055938d4:-78d5" ordering="40" parent="-536a7494:134d5b6a3e7:-7ffa" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="137.0" y="517.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-536a7494:134d5b6a3e7:-7c9f" ordering="1" parent="6641adef:135055938d4:-78d5" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-536a7494:134d5b6a3e7:-7c9e" ordering="2" parent="6641adef:135055938d4:-78d5" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-536a7494:134d5b6a3e7:-7ca0" ordering="1" parent="6641adef:135055938d4:-78d5" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-536a7494:134d5b6a3e7:-7c9d" parent="-536a7494:134d5b6a3e7:-7ffa" source="-536a7494:134d5b6a3e7:-7d04" target="-536a7494:134d5b6a3e7:-7ca0"><mxGeometry as="geometry" y="-30.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-536a7494:134d5b6a3e7:-7c9c" parent="-536a7494:134d5b6a3e7:-7ffa" source="-536a7494:134d5b6a3e7:-7c9f" target="-536a7494:134d5b6a3e7:-7cfe"><mxGeometry as="geometry" y="-30.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-536a7494:134d5b6a3e7:-7ca2" parent="-536a7494:134d5b6a3e7:-7ffa" source="-536a7494:134d5b6a3e7:-7c9e" target="-536a7494:134d5b6a3e7:-7d0b"><mxGeometry as="geometry" y="-30.0"><mxPoint as="sourcePoint" x="50.0" y="370.0"/><mxPoint as="targetPoint" x="140.0" y="520.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="30.0" y="520.0"/><mxPoint x="30.0" y="370.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="6641adef:135055938d4:-78ce" ordering="41" parent="-536a7494:134d5b6a3e7:-7ffa" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="267.0" y="357.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-536a7494:134d5b6a3e7:-7c98" ordering="1" parent="6641adef:135055938d4:-78ce" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-536a7494:134d5b6a3e7:-7c97" ordering="2" parent="6641adef:135055938d4:-78ce" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-536a7494:134d5b6a3e7:-7c99" ordering="1" parent="6641adef:135055938d4:-78ce" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-536a7494:134d5b6a3e7:-7c96" parent="-536a7494:134d5b6a3e7:-7ffa" source="-536a7494:134d5b6a3e7:-7d07" target="-536a7494:134d5b6a3e7:-7c99"><mxGeometry as="geometry" y="-30.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-536a7494:134d5b6a3e7:-7c95" parent="-536a7494:134d5b6a3e7:-7ffa" source="-536a7494:134d5b6a3e7:-7c98" target="-536a7494:134d5b6a3e7:-7d00"><mxGeometry as="geometry" y="-30.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-536a7494:134d5b6a3e7:-7c9b" parent="-536a7494:134d5b6a3e7:-7ffa" source="-536a7494:134d5b6a3e7:-7c97" target="-536a7494:134d5b6a3e7:-7d0f"><mxGeometry as="geometry" y="-30.0"><mxPoint as="sourcePoint" x="380.0" y="430.0"/><mxPoint as="targetPoint" x="270.0" y="360.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="380.0" y="360.0"/><mxPoint x="380.0" y="370.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="6641adef:135055938d4:-78c0" ordering="42" parent="-536a7494:134d5b6a3e7:-7ffa" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="557.0" y="537.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-536a7494:134d5b6a3e7:-7c76" ordering="1" parent="6641adef:135055938d4:-78c0" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-536a7494:134d5b6a3e7:-7c75" ordering="2" parent="6641adef:135055938d4:-78c0" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-536a7494:134d5b6a3e7:-7c77" ordering="1" parent="6641adef:135055938d4:-78c0" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-536a7494:134d5b6a3e7:-7c74" parent="-536a7494:134d5b6a3e7:-7ffa" source="-536a7494:134d5b6a3e7:-7ddb" target="-536a7494:134d5b6a3e7:-7c77"><mxGeometry as="geometry" y="-30.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-536a7494:134d5b6a3e7:-7c73" parent="-536a7494:134d5b6a3e7:-7ffa" source="-536a7494:134d5b6a3e7:-7c76" target="-536a7494:134d5b6a3e7:-7dd5"><mxGeometry as="geometry" y="-30.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><SplitBlock id="6641adef:135055938d4:-78ba" ordering="43" parent="-536a7494:134d5b6a3e7:-7ffa" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="557.0" y="377.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-536a7494:134d5b6a3e7:-7c6b" ordering="1" parent="6641adef:135055938d4:-78ba" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-536a7494:134d5b6a3e7:-7c6a" ordering="2" parent="6641adef:135055938d4:-78ba" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-536a7494:134d5b6a3e7:-7c6c" ordering="1" parent="6641adef:135055938d4:-78ba" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-536a7494:134d5b6a3e7:-7c69" parent="-536a7494:134d5b6a3e7:-7ffa" source="-536a7494:134d5b6a3e7:-7c75" target="-536a7494:134d5b6a3e7:-7c6c"><mxGeometry as="geometry" y="-30.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="500.0" y="540.0"/><mxPoint x="500.0" y="380.0"/><mxPoint x="530.0" y="380.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-536a7494:134d5b6a3e7:-7c68" parent="-536a7494:134d5b6a3e7:-7ffa" source="-536a7494:134d5b6a3e7:-7c6b" target="-536a7494:134d5b6a3e7:-7ddd"><mxGeometry as="geometry" y="-30.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-536a7494:134d5b6a3e7:-7c6e" parent="-536a7494:134d5b6a3e7:-7ffa" source="-536a7494:134d5b6a3e7:-7c6a" target="-536a7494:134d5b6a3e7:-7dda"><mxGeometry as="geometry" y="-30.0"><mxPoint as="sourcePoint" x="560.0" y="450.0"/><mxPoint as="targetPoint" x="560.0" y="380.0"/></mxGeometry></ImplicitLink><BasicBlock dependsOnU="1" id="6641adef:135055938d4:-77c8" interfaceFunctionName="MUX" ordering="44" parent="-536a7494:134d5b6a3e7:-7ffa" simulationFunctionName="multiplex" simulationFunctionType="C_OR_FORTRAN" style="MUX;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="4"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="60.0" width="30.0" x="850.0" y="260.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="6641adef:135055938d4:-77ac" ordering="1" parent="6641adef:135055938d4:-77c8" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ExplicitInputPort><ExplicitInputPort dataColumns="1" dataLines="-2" dataType="REAL_MATRIX" id="6641adef:135055938d4:-77ab" ordering="2" parent="6641adef:135055938d4:-77c8" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitInputPort dataColumns="1" dataLines="-3" dataType="REAL_MATRIX" id="6641adef:135055938d4:-77aa" ordering="3" parent="6641adef:135055938d4:-77c8" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="36.0"/></ExplicitInputPort><ExplicitInputPort dataColumns="1" dataLines="-4" dataType="REAL_MATRIX" id="6641adef:135055938d4:-77a9" ordering="4" parent="6641adef:135055938d4:-77c8" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="46.0"/></ExplicitInputPort><ExplicitOutputPort dataColumns="1" dataLines="0" dataType="REAL_MATRIX" id="6641adef:135055938d4:-77a8" ordering="1" parent="6641adef:135055938d4:-77c8" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="30.0" y="26.0"/></ExplicitOutputPort><BasicBlock dependsOnU="1" id="6641adef:135055938d4:-77bd" interfaceFunctionName="CSCOPE" ordering="45" parent="-536a7494:134d5b6a3e7:-7ffa" simulationFunctionName="cscope" simulationFunctionType="C_OR_FORTRAN" style="CSCOPE;flip=false;mirror=false"><ScilabString as="exprs" height="10" width="1"><data column="0" line="0" value="1 3 5 7 9 11 13 15"/><data column="0" line="1" value="-1"/><data column="0" line="2" value="[]"/><data column="0" line="3" value="[600;400]"/><data column="0" line="4" value="-0.5"/><data column="0" line="5" value="0.5"/><data column="0" line="6" value="30"/><data column="0" line="7" value="20"/><data column="0" line="8" value="0"/><data column="0" line="9" value=""/></ScilabString><ScilabDouble as="realParameters" height="4" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="-0.5"/><data column="0" line="2" realPart="0.5"/><data column="0" line="3" realPart="30.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="15" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="1.0"/><data column="0" line="4" realPart="3.0"/><data column="0" line="5" realPart="5.0"/><data column="0" line="6" realPart="7.0"/><data column="0" line="7" realPart="9.0"/><data column="0" line="8" realPart="11.0"/><data column="0" line="9" realPart="13.0"/><data column="0" line="10" realPart="15.0"/><data column="0" line="11" realPart="-1.0"/><data column="0" line="12" realPart="-1.0"/><data column="0" line="13" realPart="600.0"/><data column="0" line="14" realPart="400.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="910.0" y="270.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="6641adef:135055938d4:-77b0" ordering="1" parent="6641adef:135055938d4:-77bd" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ControlPort dataType="UNKNOW_TYPE" id="6641adef:135055938d4:-77af" ordering="1" parent="6641adef:135055938d4:-77bd" style="ControlPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><ExplicitLink id="6641adef:135055938d4:-77b2" parent="-536a7494:134d5b6a3e7:-7ffa" source="6641adef:135055938d4:-77a8" target="6641adef:135055938d4:-77b0"><mxGeometry as="geometry" y="-30.0"><mxPoint as="sourcePoint" x="880.0" y="270.0"/><mxPoint as="targetPoint" x="900.0" y="270.0"/></mxGeometry></ExplicitLink><ExplicitLink id="6641adef:135055938d4:-77a6" parent="-536a7494:134d5b6a3e7:-7ffa" source="-536a7494:134d5b6a3e7:-7f19" target="6641adef:135055938d4:-77ac"><mxGeometry as="geometry" y="-30.0"><mxPoint as="sourcePoint" x="770.0" y="80.0"/><mxPoint as="targetPoint" x="840.0" y="270.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="760.0" y="80.0"/><mxPoint x="760.0" y="270.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="6641adef:135055938d4:-77a5" parent="-536a7494:134d5b6a3e7:-7ffa" source="-536a7494:134d5b6a3e7:-7fd0" target="6641adef:135055938d4:-77ab"><mxGeometry as="geometry" y="-30.0"><mxPoint as="sourcePoint" x="100.0" y="70.0"/><mxPoint as="targetPoint" x="850.0" y="280.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="450.0" y="70.0"/><mxPoint x="450.0" y="280.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="6641adef:135055938d4:-77a4" parent="-536a7494:134d5b6a3e7:-7ffa" source="-536a7494:134d5b6a3e7:-7de3" target="6641adef:135055938d4:-77a9"><mxGeometry as="geometry" y="-30.0"><mxPoint as="sourcePoint" x="720.0" y="400.0"/><mxPoint as="targetPoint" x="850.0" y="310.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="710.0" y="400.0"/><mxPoint x="710.0" y="310.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="6641adef:135055938d4:-77a3" parent="-536a7494:134d5b6a3e7:-7ffa" source="-536a7494:134d5b6a3e7:-7d0c" target="6641adef:135055938d4:-77aa"><mxGeometry as="geometry" y="-30.0"><mxPoint as="sourcePoint" x="850.0" y="300.0"/><mxPoint as="targetPoint" x="90.0" y="380.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="450.0" y="380.0"/><mxPoint x="450.0" y="300.0"/></Array></mxGeometry></ExplicitLink><BasicBlock angle="90" id="6641adef:135055938d4:-798e" interfaceFunctionName="ConstantVoltage" ordering="46" parent="-536a7494:134d5b6a3e7:-7ffa" simulationFunctionName="ConstantVoltage" simulationFunctionType="DEFAULT" style="ConstantVoltage;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ConstantVoltage"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="V"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="10.0" y="120.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-536a7494:134d5b6a3e7:-7f5d" ordering="1" parent="6641adef:135055938d4:-798e" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-536a7494:134d5b6a3e7:-7f5c" ordering="1" parent="6641adef:135055938d4:-798e" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><BasicBlock blockType="h" id="5635043b:13894cfb31b:-7687" interfaceFunctionName="CLOCK_c" ordering="47" parent="-536a7494:134d5b6a3e7:-7ffa" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="119.0"/><data column="1" line="0" realPart="-150.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="188b11dc:1670bf9a1ba:-7aad"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="188b11dc:1670bf9a1ba:-7aad"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.1"/><data column="0" line="1" value="0.1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.1"/><data column="0" line="1" realPart="0.1"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.1"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="188b11dc:1670bf9a1ba:-7aab"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="188b11dc:1670bf9a1ba:-7aab"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="123.3773266666667"/><data column="1" line="0" realPart="-169.33333333333331"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="7.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="5.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="188b11dc:1670bf9a1ba:-7aa8"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="188b11dc:1670bf9a1ba:-7aa8"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="100.0"/><data column="0" line="2" realPart="133.8773266666667"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-44.0"/><data column="0" line="1" realPart="-180.0"/><data column="0" line="2" realPart="-158.33333333333331"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="132.71066000000005"/><data column="0" line="1" realPart="149.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-173.33333333333331"/><data column="0" line="1" realPart="-126.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="135.04399333333336"/><data column="0" line="1" realPart="140.70999999999998"/><data column="0" line="2" realPart="100.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-173.33333333333331"/><data column="0" line="1" realPart="-50.0"/><data column="0" line="2" realPart="-50.0"/><data column="0" line="3" realPart="4.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="910.0" y="190.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="5635043b:13894cfb31b:-7686" ordering="1" parent="5635043b:13894cfb31b:-7687" style="CommandPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><CommandControlLink id="5635043b:13894cfb31b:-7683" parent="-536a7494:134d5b6a3e7:-7ffa" source="5635043b:13894cfb31b:-7686" target="6641adef:135055938d4:-77af"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="930.0" y="234.0"/><mxPoint as="targetPoint" x="930.0" y="260.0"/></mxGeometry></CommandControlLink></root></mxGraphModel><mxCell as="defaultParent" id="-536a7494:134d5b6a3e7:-7ffa" parent="-536a7494:134d5b6a3e7:-7ff9"/></XcosDiagram>
\ No newline at end of file diff --git a/Working_Examples/215/CH17/EX17.7/ex17_7.sce b/Working_Examples/215/CH17/EX17.7/ex17_7.sce new file mode 100755 index 0000000..91e9fad --- /dev/null +++ b/Working_Examples/215/CH17/EX17.7/ex17_7.sce @@ -0,0 +1,14 @@ +clc
+//Example 17.7
+//From figure 17.16
+disp('Given a linear model of a transistor we need not explicitly find the aadmittance parameters ')
+disp('-y12 corresponds to admittance of 2k ohm resistor')
+disp('y11+y12 corresponds to admittance of 500 ohm resistor')
+disp('y21-y12 correponds to gain of dependent voltage source')
+disp('y22+y12 corresponds to admittance of 10k ohm resistor')
+//Writing down in equation form
+y12=-1/2000
+y11=1/500-y12
+y21=0.0395+y12
+y22=1/10000-y12
+printf("\n y11= %3.2f mS \n y12= %3.2f mS \n y21= %3.2f mS \n y22= %3.2f mS",y11*10^3,y12*10^3,y21*10^3,y22*10^3);
\ No newline at end of file diff --git a/Working_Examples/215/CH17/EX17.8/ex17_8.sce b/Working_Examples/215/CH17/EX17.8/ex17_8.sce new file mode 100755 index 0000000..245234f --- /dev/null +++ b/Working_Examples/215/CH17/EX17.8/ex17_8.sce @@ -0,0 +1,36 @@ +clc +//Example 17.8 +Vs = poly(0,'Vs') +disp('Given') +disp('Z=[10^3 10;-10^6 10^4 ]') +z11=10^3 ; z12=10;z21=-10^6;z22=10^4 +//Using the given matrix we can write the mesh equations as +disp('V1=10^3*I1+10*I2') +disp('V2=-10^6*I1+10^4*I2') +//The input to an two port network is an ideal sinusoidal voltage source in series with 500 ohm +//Mathematically +disp('The characterizing equations are') +disp('Vs=500*I1+V1') +//The output to an two port network is a 10k ohm resistor +//Mathematically +disp('V2=-10^4*I2') +Zg=500; +//Expressing V1,V2,I1,I2 in terms of Vs +V1=0.75*Vs +I1=Vs/2000 +V2=-250*Vs +I2=Vs/40 +disp('Voltage gain Gv=V2/V1') +Gv=V2/V1 +disp(Gv,'Gv=') +disp('Current gain Gi=I2/I1') +Gi=I2/I1 +disp(Gi,'Gi=') +disp('Power gain Gp=Real[-0.5*V2*I2*]/Real[0..5*V1*I1*]') +Gp=(-0.5*V2*I2)/(0.5*V1*I1) +disp(Gp,'Gp=') +disp('Input impedance is Zin=V1/I1') +Zin=V1/I1 +disp('Output impedance is Zout=z22-((z12*z21)/(z11+Zg))') +Zout=z22-((z12*z21)/(z11+Zg)) +printf("\n Zout= %3.2f kohm",Zout*10^-3)
\ No newline at end of file diff --git a/Working_Examples/215/CH17/EX17.9/ex17_9.sce b/Working_Examples/215/CH17/EX17.9/ex17_9.sce new file mode 100755 index 0000000..a8bbcac --- /dev/null +++ b/Working_Examples/215/CH17/EX17.9/ex17_9.sce @@ -0,0 +1,13 @@ +clc
+//Example 17.9
+//From figure 17.27
+//Writing the mesh equations
+disp('V1=5*I1+4*I2')
+disp('V2=4*I1+10*I2')
+//Arranging in the standard form
+//V1=h11*I1+h12*V2
+//I2=h21*I1+h22*V2
+//Therefore h parameters are
+h11=3.4;h12=0.4;h21=-0.4;h22=0.1;
+h=[h11 h12;h21 h22]
+disp(h)
\ No newline at end of file diff --git a/Working_Examples/215/CH18/EX18.1/Figure18_1.jpg b/Working_Examples/215/CH18/EX18.1/Figure18_1.jpg Binary files differnew file mode 100755 index 0000000..c74d5e8 --- /dev/null +++ b/Working_Examples/215/CH18/EX18.1/Figure18_1.jpg diff --git a/Working_Examples/215/CH18/EX18.1/ex18_1.sce b/Working_Examples/215/CH18/EX18.1/ex18_1.sce new file mode 100755 index 0000000..67b8d26 --- /dev/null +++ b/Working_Examples/215/CH18/EX18.1/ex18_1.sce @@ -0,0 +1,45 @@ +clear +close +clc +//Example 18.1 +//From the figure 18.2 +disp('The equation of v(t) considering one period can be written as') +disp('v(t)=Vm*cos(5*%pi*t) for -0.1<=t<=0.1') +disp('v(t)=0 for 0.1<=t<=0.3') +//Assuming the value of Vm is 1 + +//Evaluating the constants an and bn +//bn=0 for all n +//an=(2*Vm*cos(n*%pi/2))/(%pi*(1-n^2)) +//a0=Vm/%pi +t=-1:0.02:1; +Vm=ones(1,length(t)); +v0t=Vm/%pi; +v1t=(Vm.*cos(5*%pi*t)).*0.5; +v0t_v1t=v0t+v1t; +v2t=(2/(3*%pi))*(Vm.*cos(10*%pi*t)); +v0t_v1t_v2t=v0t+v1t+v2t; +v3t=(2/(15*%pi))*(Vm.*cos(20*%pi*t)); +v0t_v1t_v2t_v3t=v0t+v1t+v2t-v3t; +figure +a = gca (); +a. y_location = "origin"; +a. x_location = "origin"; +a. data_bounds =[ -1,0;1 0.5]; +plot (t,v0t) +xtitle('vot vs t','t in s','vot') +figure +a = gca (); +a. y_location = "origin"; +a. x_location = "origin"; +a. data_bounds =[ -1,-0.5;1 0.5]; +plot (t,v0t_v1t) +a. y_location = "origin"; +a. x_location = "origin"; +a. data_bounds =[ -1,-0.5;1 0.5]; +plot (t,v0t_v1t_v2t,'r.->') +a. y_location = "origin"; +a. x_location = "origin"; +a. data_bounds =[ -1,-0.5;1 0.5]; +plot (t,v0t_v1t_v2t_v3t,'d') +xtitle('v(t)','t in s','v(t) in V')
\ No newline at end of file diff --git a/Working_Examples/215/CH18/EX18.2/Figure18_2.jpg b/Working_Examples/215/CH18/EX18.2/Figure18_2.jpg Binary files differnew file mode 100755 index 0000000..16292c9 --- /dev/null +++ b/Working_Examples/215/CH18/EX18.2/Figure18_2.jpg diff --git a/Working_Examples/215/CH18/EX18.2/Figure18_2_xcos.jpg b/Working_Examples/215/CH18/EX18.2/Figure18_2_xcos.jpg Binary files differnew file mode 100755 index 0000000..72970e2 --- /dev/null +++ b/Working_Examples/215/CH18/EX18.2/Figure18_2_xcos.jpg diff --git a/Working_Examples/215/CH18/EX18.2/ex18_2.xcos b/Working_Examples/215/CH18/EX18.2/ex18_2.xcos new file mode 100755 index 0000000..6acbccd --- /dev/null +++ b/Working_Examples/215/CH18/EX18.2/ex18_2.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" finalIntegrationTime="6.5" title="ex18_2"><!--Xcos - 1.0 - scilab-5.5.2 - 20160406 2040--><mxGraphModel as="model"><root><mxCell id="f4a86ca:134efd7fc02:-7ffd"/><mxCell id="f4a86ca:134efd7fc02:-7ffe" parent="f4a86ca:134efd7fc02:-7ffd"/><BasicBlock blockType="d" id="6641adef:135055938d4:-7872" interfaceFunctionName="GENSQR_f" ordering="1" parent="f4a86ca:134efd7fc02:-7ffe" simulationFunctionName="gensqr" simulationFunctionType="DEFAULT" style="GENSQR_f;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="10.8"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="dState" height="1" width="1"><data column="0" line="0" realPart="10.8"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="60.0" width="100.0" x="10.0" y="110.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="f4a86ca:134efd7fc02:-7e78" ordering="1" parent="6641adef:135055938d4:-7872" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="100.0" y="26.0"/></ExplicitOutputPort><ControlPort dataType="UNKNOW_TYPE" id="f4a86ca:134efd7fc02:-7e77" ordering="1" parent="6641adef:135055938d4:-7872" style="ControlPort;align=center;verticalAlign=top;spacing=10.0;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="46.0" y="-8.0"/></ControlPort><BasicBlock blockType="h" id="6641adef:135055938d4:-786f" interfaceFunctionName="CLOCK_c" ordering="2" parent="f4a86ca:134efd7fc02:-7ffe" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="40.0" y="30.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="f4a86ca:134efd7fc02:-7f71" ordering="1" parent="6641adef:135055938d4:-786f" style="CommandPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><CommandControlLink id="f4a86ca:134efd7fc02:-7f77" parent="f4a86ca:134efd7fc02:-7ffe" source="f4a86ca:134efd7fc02:-7f71" target="f4a86ca:134efd7fc02:-7e77"><mxGeometry as="geometry" x="-40.0"><mxPoint as="sourcePoint" x="50.0" y="70.0"/><mxPoint as="targetPoint" x="50.0" y="100.0"/></mxGeometry></CommandControlLink><BasicBlock dependsOnU="1" id="6641adef:135055938d4:-7857" interfaceFunctionName="Resistor" ordering="3" parent="f4a86ca:134efd7fc02:-7ffe" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="4"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="450.0" y="130.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="f4a86ca:134efd7fc02:-7eab" ordering="1" parent="6641adef:135055938d4:-7857" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="f4a86ca:134efd7fc02:-7eac" ordering="1" parent="6641adef:135055938d4:-7857" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><BasicBlock dependsOnU="1" id="6641adef:135055938d4:-7853" interfaceFunctionName="CSCOPE" ordering="4" parent="f4a86ca:134efd7fc02:-7ffe" simulationFunctionName="cscope" simulationFunctionType="C_OR_FORTRAN" style="CSCOPE;flip=false;mirror=false"><ScilabString as="exprs" height="10" width="1"><data column="0" line="0" value="1 3 5 7 9 11 13 15"/><data column="0" line="1" value="-1"/><data column="0" line="2" value="[]"/><data column="0" line="3" value="[600;400]"/><data column="0" line="4" value="0"/><data column="0" line="5" value="3"/><data column="0" line="6" value="6.5"/><data column="0" line="7" value="20"/><data column="0" line="8" value="0"/><data column="0" line="9" value=""/></ScilabString><ScilabDouble as="realParameters" height="4" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="0.0"/><data column="0" line="2" realPart="3.0"/><data column="0" line="3" realPart="6.5"/></ScilabDouble><ScilabDouble as="integerParameters" height="15" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="1.0"/><data column="0" line="4" realPart="3.0"/><data column="0" line="5" realPart="5.0"/><data column="0" line="6" realPart="7.0"/><data column="0" line="7" realPart="9.0"/><data column="0" line="8" realPart="11.0"/><data column="0" line="9" realPart="13.0"/><data column="0" line="10" realPart="15.0"/><data column="0" line="11" realPart="-1.0"/><data column="0" line="12" realPart="-1.0"/><data column="0" line="13" realPart="600.0"/><data column="0" line="14" realPart="400.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="610.0" y="90.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="f4a86ca:134efd7fc02:-7e6e" ordering="1" parent="6641adef:135055938d4:-7853" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ControlPort dataType="UNKNOW_TYPE" id="f4a86ca:134efd7fc02:-7e6d" ordering="1" parent="6641adef:135055938d4:-7853" style="ControlPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><TextBlock id="6641adef:135055938d4:-783f" parent="f4a86ca:134efd7fc02:-7ffe" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="Generate square pulses"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="Generate square pulses"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="Generate square pulses"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="310.0" y="70.0"/></TextBlock><BasicBlock blockType="h" id="5635043b:13894cfb31b:-762d" interfaceFunctionName="CLOCK_c" ordering="5" parent="f4a86ca:134efd7fc02:-7ffe" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="279.0"/><data column="1" line="0" realPart="-310.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="188b11dc:1670bf9a1ba:-7a43"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="188b11dc:1670bf9a1ba:-7a43"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.1"/><data column="0" line="1" value="0.1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.1"/><data column="0" line="1" realPart="0.1"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.1"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="188b11dc:1670bf9a1ba:-7a41"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="188b11dc:1670bf9a1ba:-7a41"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="387.3773266666667"/><data column="1" line="0" realPart="-433.3333333333333"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="7.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="5.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="188b11dc:1670bf9a1ba:-7a3e"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="188b11dc:1670bf9a1ba:-7a3e"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="420.0"/><data column="0" line="2" realPart="397.8773266666667"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-44.0"/><data column="0" line="1" realPart="-500.0"/><data column="0" line="2" realPart="-422.3333333333333"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="396.71066"/><data column="0" line="1" realPart="309.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-437.3333333333333"/><data column="0" line="1" realPart="-286.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="399.0439933333334"/><data column="0" line="1" realPart="460.71"/><data column="0" line="2" realPart="420.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-437.3333333333333"/><data column="0" line="1" realPart="-370.0"/><data column="0" line="2" realPart="-370.0"/><data column="0" line="3" realPart="4.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="610.0" y="20.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="5635043b:13894cfb31b:-762c" ordering="1" parent="5635043b:13894cfb31b:-762d" style="CommandPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><CommandControlLink id="5635043b:13894cfb31b:-7629" parent="f4a86ca:134efd7fc02:-7ffe" source="5635043b:13894cfb31b:-762c" target="f4a86ca:134efd7fc02:-7e6d"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="630.0" y="64.0"/><mxPoint as="targetPoint" x="630.0" y="80.0"/></mxGeometry></CommandControlLink><BasicBlock angle="90" dependsOnT="1" id="188b11dc:1670bf9a1ba:-7a1e" interfaceFunctionName="CVS" ordering="6" parent="f4a86ca:134efd7fc02:-7ffe" simulationFunctionName="CVS" simulationFunctionType="DEFAULT" style="CVS;rotation=90"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CVS"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="vin"/><data column="0" line="1" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/></Array></Array><mxGeometry as="geometry" height="60.0" width="42.0" x="120.0" y="180.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="188b11dc:1670bf9a1ba:-7a1d" ordering="1" parent="188b11dc:1670bf9a1ba:-7a1e" style="ExplicitInputPort;align=center;verticalAlign=top;spacing=10.0;rotation=90" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="6.0" y="-8.0"/></ExplicitInputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="188b11dc:1670bf9a1ba:-7a1c" ordering="2" parent="188b11dc:1670bf9a1ba:-7a1e" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10.0;rotation=90" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="26.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="188b11dc:1670bf9a1ba:-7a1b" ordering="1" parent="188b11dc:1670bf9a1ba:-7a1e" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10.0;rotation=90" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="60.0"/></ImplicitOutputPort><ExplicitLink id="188b11dc:1670bf9a1ba:-7a15" parent="f4a86ca:134efd7fc02:-7ffe" source="f4a86ca:134efd7fc02:-7e78" target="188b11dc:1670bf9a1ba:-7a1d"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="110.0" y="140.0"/><mxPoint as="targetPoint" x="130.0" y="170.0"/><Array as="points" scilabClass=""><mxPoint x="130.0" y="140.0"/></Array></mxGeometry></ExplicitLink><GroundBlock dependsOnU="1" id="188b11dc:1670bf9a1ba:-7a07" interfaceFunctionName="Ground" ordering="7" parent="f4a86ca:134efd7fc02:-7ffe" simulationFunctionName="Ground" simulationFunctionType="DEFAULT" style="Ground"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Ground"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="20.0" width="20.0" x="190.0" y="280.0"/></GroundBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="188b11dc:1670bf9a1ba:-7a06" ordering="1" parent="188b11dc:1670bf9a1ba:-7a07" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10.0;rotation=90" value=""><Orientation as="orientation" value="NORTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="6.0" y="-8.0"/></ImplicitInputPort><BasicBlock angle="90" dependsOnT="1" id="188b11dc:1670bf9a1ba:-7a01" interfaceFunctionName="CVS" ordering="8" parent="f4a86ca:134efd7fc02:-7ffe" simulationFunctionName="CVS" simulationFunctionType="DEFAULT" style="CVS;rotation=90"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CVS"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="vin"/><data column="0" line="1" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/></Array></Array><mxGeometry as="geometry" height="60.0" width="42.0" x="380.0" y="200.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="188b11dc:1670bf9a1ba:-7a00" ordering="1" parent="188b11dc:1670bf9a1ba:-7a01" style="ExplicitInputPort;align=center;verticalAlign=top;spacing=10.0;rotation=90" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="6.0" y="-8.0"/></ExplicitInputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="188b11dc:1670bf9a1ba:-79ff" ordering="2" parent="188b11dc:1670bf9a1ba:-7a01" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10.0;rotation=90" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="26.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="188b11dc:1670bf9a1ba:-79fe" ordering="1" parent="188b11dc:1670bf9a1ba:-7a01" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10.0;rotation=90" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="60.0"/></ImplicitOutputPort><GroundBlock dependsOnU="1" id="188b11dc:1670bf9a1ba:-79f2" interfaceFunctionName="Ground" ordering="9" parent="f4a86ca:134efd7fc02:-7ffe" simulationFunctionName="Ground" simulationFunctionType="DEFAULT" style="Ground"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Ground"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="20.0" width="20.0" x="490.0" y="310.0"/></GroundBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="188b11dc:1670bf9a1ba:-79f1" ordering="1" parent="188b11dc:1670bf9a1ba:-79f2" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10.0;rotation=90" value=""><Orientation as="orientation" value="NORTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="6.0" y="-8.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="188b11dc:1670bf9a1ba:-79d8" interfaceFunctionName="CurrentSensor" ordering="10" parent="f4a86ca:134efd7fc02:-7ffe" simulationFunctionName="CurrentSensor" simulationFunctionType="DEFAULT" style="CurrentSensor;flip=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CurrentSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="i"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="530.0" y="130.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="188b11dc:1670bf9a1ba:-79d7" ordering="1" parent="188b11dc:1670bf9a1ba:-79d8" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="188b11dc:1670bf9a1ba:-79d6" ordering="1" parent="188b11dc:1670bf9a1ba:-79d8" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="6.0"/></ImplicitOutputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="188b11dc:1670bf9a1ba:-79d5" ordering="2" parent="188b11dc:1670bf9a1ba:-79d8" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="26.0"/></ExplicitOutputPort><BasicBlock dependsOnU="1" id="188b11dc:1670bf9a1ba:-79ce" interfaceFunctionName="PotentialSensor" ordering="11" parent="f4a86ca:134efd7fc02:-7ffe" simulationFunctionName="PotentialSensor" simulationFunctionType="DEFAULT" style="PotentialSensor"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="PotentialSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="v"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="320.0" y="120.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="188b11dc:1670bf9a1ba:-79cd" ordering="1" parent="188b11dc:1670bf9a1ba:-79ce" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="188b11dc:1670bf9a1ba:-79cc" ordering="1" parent="188b11dc:1670bf9a1ba:-79ce" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><BasicBlock angle="90" dependsOnU="1" id="188b11dc:1670bf9a1ba:-79c5" interfaceFunctionName="Inductor" ordering="12" parent="f4a86ca:134efd7fc02:-7ffe" simulationFunctionName="Inductor" simulationFunctionType="DEFAULT" style="Inductor;rotation=90"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="2"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Inductor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="L"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="18.0" width="40.0" x="570.0" y="210.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="188b11dc:1670bf9a1ba:-799b" ordering="1" parent="188b11dc:1670bf9a1ba:-79c5" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10.0;rotation=90" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="188b11dc:1670bf9a1ba:-799a" ordering="1" parent="188b11dc:1670bf9a1ba:-79c5" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10.0;rotation=90" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="18.0"/></ImplicitOutputPort><BasicBlock angle="90" dependsOnU="1" id="188b11dc:1670bf9a1ba:-79bc" interfaceFunctionName="Resistor" ordering="13" parent="f4a86ca:134efd7fc02:-7ffe" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=90"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="20.0" width="40.0" x="240.0" y="200.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="188b11dc:1670bf9a1ba:-7986" ordering="1" parent="188b11dc:1670bf9a1ba:-79bc" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10.0;rotation=90" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="188b11dc:1670bf9a1ba:-7985" ordering="1" parent="188b11dc:1670bf9a1ba:-79bc" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10.0;rotation=90" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="20.0"/></ImplicitOutputPort><BasicBlock dependsOnU="1" id="188b11dc:1670bf9a1ba:-79b3" interfaceFunctionName="Diode" ordering="14" parent="f4a86ca:134efd7fc02:-7ffe" simulationFunctionName="Diode" simulationFunctionType="DEFAULT" style="Diode"><ScilabString as="exprs" height="4" width="1"><data column="0" line="0" value="0.000001"/><data column="0" line="1" value="0.04"/><data column="0" line="2" value="15"/><data column="0" line="3" value="1.000D+08"/></ScilabString><ScilabDouble as="realParameters" height="4" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="0.04"/><data column="0" line="2" realPart="15.0"/><data column="0" line="3" realPart="1.0E8"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Diode"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="4"><data column="0" line="0" value="Ids"/><data column="1" line="0" value="Vt"/><data column="2" line="0" value="Maxexp"/><data column="3" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0E-6"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.04"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="15.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0E8"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="20.0" width="40.0" x="180.0" y="130.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="188b11dc:1670bf9a1ba:-79b2" ordering="1" parent="188b11dc:1670bf9a1ba:-79b3" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="188b11dc:1670bf9a1ba:-79b1" ordering="1" parent="188b11dc:1670bf9a1ba:-79b3" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="6.0"/></ImplicitOutputPort><ImplicitLink id="188b11dc:1670bf9a1ba:-79ac" parent="f4a86ca:134efd7fc02:-7ffe" source="188b11dc:1670bf9a1ba:-7a1c" target="188b11dc:1670bf9a1ba:-79b2"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="150.0" y="180.0"/><mxPoint as="targetPoint" x="180.0" y="140.0"/><Array as="points" scilabClass=""><mxPoint x="150.0" y="140.0"/></Array></mxGeometry></ImplicitLink><ExplicitLink id="188b11dc:1670bf9a1ba:-799d" parent="f4a86ca:134efd7fc02:-7ffe" source="188b11dc:1670bf9a1ba:-79cc" target="188b11dc:1670bf9a1ba:-7a00"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="360.0" y="140.0"/><mxPoint as="targetPoint" x="390.0" y="200.0"/><Array as="points" scilabClass=""><mxPoint x="390.0" y="140.0"/></Array></mxGeometry></ExplicitLink><ImplicitLink id="188b11dc:1670bf9a1ba:-7995" parent="f4a86ca:134efd7fc02:-7ffe" source="f4a86ca:134efd7fc02:-7eac" target="188b11dc:1670bf9a1ba:-79d7"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="490.0" y="150.0"/><mxPoint as="targetPoint" x="530.0" y="150.0"/></mxGeometry></ImplicitLink><ExplicitLink id="188b11dc:1670bf9a1ba:-7991" parent="f4a86ca:134efd7fc02:-7ffe" source="188b11dc:1670bf9a1ba:-79d5" target="f4a86ca:134efd7fc02:-7e6e"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="570.0" y="160.0"/><mxPoint as="targetPoint" x="600.0" y="110.0"/><Array as="points" scilabClass=""><mxPoint x="600.0" y="160.0"/><mxPoint x="600.0" y="110.0"/></Array></mxGeometry></ExplicitLink><ImplicitLink id="188b11dc:1670bf9a1ba:-7990" parent="f4a86ca:134efd7fc02:-7ffe" source="188b11dc:1670bf9a1ba:-79d6" target="188b11dc:1670bf9a1ba:-799b"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="570.0" y="140.0"/><mxPoint as="targetPoint" x="590.0" y="210.0"/><Array as="points" scilabClass=""><mxPoint x="590.0" y="140.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="188b11dc:1670bf9a1ba:-798d" interfaceFunctionName="IMPSPLIT_f" ordering="15" parent="f4a86ca:134efd7fc02:-7ffe" simulationFunctionType="DEFAULT" style="IMPSPLIT_f"><mxGeometry as="geometry" height="7.0" width="7.0" x="497.0" y="267.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="188b11dc:1670bf9a1ba:-798c" ordering="1" parent="188b11dc:1670bf9a1ba:-798d" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="188b11dc:1670bf9a1ba:-798b" ordering="1" parent="188b11dc:1670bf9a1ba:-798d" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="188b11dc:1670bf9a1ba:-798a" ordering="2" parent="188b11dc:1670bf9a1ba:-798d" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="188b11dc:1670bf9a1ba:-7989" parent="f4a86ca:134efd7fc02:-7ffe" source="188b11dc:1670bf9a1ba:-799a" target="188b11dc:1670bf9a1ba:-798c"><mxGeometry as="geometry"><Array as="points" scilabClass=""><mxPoint x="590.0" y="270.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="188b11dc:1670bf9a1ba:-7988" parent="f4a86ca:134efd7fc02:-7ffe" source="188b11dc:1670bf9a1ba:-79fe" target="188b11dc:1670bf9a1ba:-798b"><mxGeometry as="geometry"><Array as="points" scilabClass=""><mxPoint x="400.0" y="270.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="188b11dc:1670bf9a1ba:-798e" parent="f4a86ca:134efd7fc02:-7ffe" source="188b11dc:1670bf9a1ba:-798a" target="188b11dc:1670bf9a1ba:-79f1"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="500.0" y="310.0"/><mxPoint as="targetPoint" x="500.0" y="270.0"/></mxGeometry></ImplicitLink><SplitBlock id="188b11dc:1670bf9a1ba:-797e" interfaceFunctionName="IMPSPLIT_f" ordering="16" parent="f4a86ca:134efd7fc02:-7ffe" simulationFunctionType="DEFAULT" style="IMPSPLIT_f"><mxGeometry as="geometry" height="7.0" width="7.0" x="257.0" y="137.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="188b11dc:1670bf9a1ba:-797d" ordering="1" parent="188b11dc:1670bf9a1ba:-797e" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="188b11dc:1670bf9a1ba:-797c" ordering="1" parent="188b11dc:1670bf9a1ba:-797e" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="188b11dc:1670bf9a1ba:-797b" ordering="2" parent="188b11dc:1670bf9a1ba:-797e" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="188b11dc:1670bf9a1ba:-797a" parent="f4a86ca:134efd7fc02:-7ffe" source="188b11dc:1670bf9a1ba:-79b1" target="188b11dc:1670bf9a1ba:-797d"><mxGeometry as="geometry"><Array as="points" scilabClass=""/></mxGeometry></ImplicitLink><ImplicitLink id="188b11dc:1670bf9a1ba:-7979" parent="f4a86ca:134efd7fc02:-7ffe" source="188b11dc:1670bf9a1ba:-797c" target="188b11dc:1670bf9a1ba:-79cd"><mxGeometry as="geometry"><Array as="points" scilabClass=""><mxPoint x="290.0" y="140.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="188b11dc:1670bf9a1ba:-797f" parent="f4a86ca:134efd7fc02:-7ffe" source="188b11dc:1670bf9a1ba:-797b" target="188b11dc:1670bf9a1ba:-7986"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="270.0" y="140.0"/><mxPoint as="targetPoint" x="260.0" y="200.0"/></mxGeometry></ImplicitLink><SplitBlock id="188b11dc:1670bf9a1ba:-7973" interfaceFunctionName="IMPSPLIT_f" ordering="17" parent="f4a86ca:134efd7fc02:-7ffe" simulationFunctionType="DEFAULT" style="IMPSPLIT_f"><mxGeometry as="geometry" height="7.0" width="7.0" x="197.0" y="247.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="188b11dc:1670bf9a1ba:-7972" ordering="1" parent="188b11dc:1670bf9a1ba:-7973" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="188b11dc:1670bf9a1ba:-7971" ordering="1" parent="188b11dc:1670bf9a1ba:-7973" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="188b11dc:1670bf9a1ba:-7970" ordering="2" parent="188b11dc:1670bf9a1ba:-7973" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="188b11dc:1670bf9a1ba:-796f" parent="f4a86ca:134efd7fc02:-7ffe" source="188b11dc:1670bf9a1ba:-7a1b" target="188b11dc:1670bf9a1ba:-7972"><mxGeometry as="geometry"><Array as="points" scilabClass=""><mxPoint x="140.0" y="250.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="188b11dc:1670bf9a1ba:-796e" parent="f4a86ca:134efd7fc02:-7ffe" source="188b11dc:1670bf9a1ba:-7971" target="188b11dc:1670bf9a1ba:-7a06"><mxGeometry as="geometry"><Array as="points" scilabClass=""/></mxGeometry></ImplicitLink><ImplicitLink id="188b11dc:1670bf9a1ba:-7974" parent="f4a86ca:134efd7fc02:-7ffe" source="188b11dc:1670bf9a1ba:-7985" target="188b11dc:1670bf9a1ba:-7970"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="260.0" y="220.0"/><mxPoint as="targetPoint" x="200.0" y="250.0"/><Array as="points" scilabClass=""><mxPoint x="260.0" y="250.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="188b11dc:1670bf9a1ba:-794d" parent="f4a86ca:134efd7fc02:-7ffe" source="188b11dc:1670bf9a1ba:-79ff" target="f4a86ca:134efd7fc02:-7eab"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="410.0" y="200.0"/><mxPoint as="targetPoint" x="450.0" y="150.0"/><Array as="points" scilabClass=""><mxPoint x="410.0" y="150.0"/></Array></mxGeometry></ImplicitLink></root></mxGraphModel><mxCell as="defaultParent" id="f4a86ca:134efd7fc02:-7ffe" parent="f4a86ca:134efd7fc02:-7ffd"/></XcosDiagram>
\ No newline at end of file diff --git a/Working_Examples/215/CH18/EX18.5/Figure18_5.jpg b/Working_Examples/215/CH18/EX18.5/Figure18_5.jpg Binary files differnew file mode 100755 index 0000000..ef0a506 --- /dev/null +++ b/Working_Examples/215/CH18/EX18.5/Figure18_5.jpg diff --git a/Working_Examples/215/CH18/EX18.5/ex18_5.sce b/Working_Examples/215/CH18/EX18.5/ex18_5.sce new file mode 100755 index 0000000..580a1f6 --- /dev/null +++ b/Working_Examples/215/CH18/EX18.5/ex18_5.sce @@ -0,0 +1,34 @@ +clc;
+//Example 18.5
+//Let amplitude be 1
+A=1;
+Dt=0.01;
+T1=4;
+t=0:Dt:T1/4;
+for i=1:length(t)
+ xt(i)=A
+end
+//Calculate Fourier Transform
+Wmax=2*%pi*1;
+K=4;
+k=-(2*K):(K/1000):(2*K);
+W=k*Wmax/K;
+xt=xt';
+XW=xt*exp(-sqrt(-1)*t'*W)*Dt;
+XW_Mag=real(XW);
+W=[-mtlb_fliplr(W),W(2:1001)];
+XW_Mag=[mtlb_fliplr(XW_Mag),XW_Mag(2:1001)];
+subplot(2,1,1);
+a=gca();
+a.data_bounds=[0,0;1,1.5];
+a.y_location="origin";
+plot(t,xt);
+xlabel('t in sec.');
+title('v(t)vs t');
+subplot(2,1,2);
+a=gca();
+a.y_location="origin";
+plot(W*%pi/2,abs (XW_Mag));
+xlabel('Freq in rad/sec');
+ylabel('|F(jw)|')
+title('|F(jw)| vs t');
\ No newline at end of file diff --git a/Working_Examples/215/CH18/EX18.6/ex18_6.sce b/Working_Examples/215/CH18/EX18.6/ex18_6.sce new file mode 100755 index 0000000..91ce75c --- /dev/null +++ b/Working_Examples/215/CH18/EX18.6/ex18_6.sce @@ -0,0 +1,20 @@ +clc
+syms s t
+printf("Given")
+disp('v(t)=4*exp(-3*t)*u(t)')
+v=4*exp(-3*t)
+
+F=4*(integ(exp(-(3+%i*1)*s),s,0,%inf))
+//The secind term tends to zero
+disp(F,'F=')
+//Let W be the total 1 ohm energy in the input signal
+W=integ(v^2,t,0,%inf)
+disp(W,'W=')
+//Let Wo be the total energy
+//As the frequency range is given as 1 Hz<|f|<2 Hz
+//Considering symmetry
+Wo=(1/%pi)*integ((16/(9+s^2)),s,2*%pi,4*%pi)
+disp(Wo,'Wo=')
+
+
+
diff --git a/Working_Examples/215/CH18/EX18.8/Figure18_8.jpg b/Working_Examples/215/CH18/EX18.8/Figure18_8.jpg Binary files differnew file mode 100755 index 0000000..b56b076 --- /dev/null +++ b/Working_Examples/215/CH18/EX18.8/Figure18_8.jpg diff --git a/Working_Examples/215/CH18/EX18.8/Figure18_8_xcos.jpg b/Working_Examples/215/CH18/EX18.8/Figure18_8_xcos.jpg Binary files differnew file mode 100755 index 0000000..9fe790d --- /dev/null +++ b/Working_Examples/215/CH18/EX18.8/Figure18_8_xcos.jpg diff --git a/Working_Examples/215/CH18/EX18.8/ex18_8.xcos b/Working_Examples/215/CH18/EX18.8/ex18_8.xcos new file mode 100755 index 0000000..faf272f --- /dev/null +++ b/Working_Examples/215/CH18/EX18.8/ex18_8.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" finalIntegrationTime="5.0" title="ex18_8"><!--Xcos - 1.0 - scilab-5.5.2 - 20160406 2040--><mxGraphModel as="model"><root><mxCell id="f4a86ca:134efd7fc02:-7e65"/><mxCell id="f4a86ca:134efd7fc02:-7e66" parent="f4a86ca:134efd7fc02:-7e65"/><BasicBlock dependsOnU="1" id="f4a86ca:134efd7fc02:-7e45" interfaceFunctionName="GAINBLK_f" ordering="1" parent="f4a86ca:134efd7fc02:-7e66" simulationFunctionName="gain" simulationFunctionType="DEFAULT" style="GAINBLK_f;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="5"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="50.0" width="40.0" x="220.0" y="90.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="f4a86ca:134efd7fc02:-7db9" ordering="1" parent="f4a86ca:134efd7fc02:-7e45" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="f4a86ca:134efd7fc02:-7db8" ordering="1" parent="f4a86ca:134efd7fc02:-7e45" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><BasicBlock dependsOnU="1" id="f4a86ca:134efd7fc02:-7ddb" interfaceFunctionName="CSCOPE" ordering="2" parent="f4a86ca:134efd7fc02:-7e66" simulationFunctionName="cscope" simulationFunctionType="C_OR_FORTRAN" style="CSCOPE;flip=false;mirror=false"><ScilabString as="exprs" height="10" width="1"><data column="0" line="0" value="1 3 5 7 9 11 13 15"/><data column="0" line="1" value="-1"/><data column="0" line="2" value="[]"/><data column="0" line="3" value="[600;400]"/><data column="0" line="4" value="-1.5"/><data column="0" line="5" value="5.2"/><data column="0" line="6" value="5"/><data column="0" line="7" value="20"/><data column="0" line="8" value="0"/><data column="0" line="9" value=""/></ScilabString><ScilabDouble as="realParameters" height="4" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="-1.5"/><data column="0" line="2" realPart="5.2"/><data column="0" line="3" realPart="5.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="15" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="1.0"/><data column="0" line="4" realPart="3.0"/><data column="0" line="5" realPart="5.0"/><data column="0" line="6" realPart="7.0"/><data column="0" line="7" realPart="9.0"/><data column="0" line="8" realPart="11.0"/><data column="0" line="9" realPart="13.0"/><data column="0" line="10" realPart="15.0"/><data column="0" line="11" realPart="-1.0"/><data column="0" line="12" realPart="-1.0"/><data column="0" line="13" realPart="600.0"/><data column="0" line="14" realPart="400.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="520.0" y="120.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="f4a86ca:134efd7fc02:-7da1" ordering="1" parent="f4a86ca:134efd7fc02:-7ddb" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ControlPort dataType="UNKNOW_TYPE" id="f4a86ca:134efd7fc02:-7da0" ordering="1" parent="f4a86ca:134efd7fc02:-7ddb" style="ControlPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><BasicBlock dependsOnT="1" id="f4a86ca:134efd7fc02:-7e5f" interfaceFunctionName="TIME_f" ordering="4" parent="f4a86ca:134efd7fc02:-7e66" simulationFunctionName="timblk" simulationFunctionType="DEFAULT" style="TIME_f;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="10.0" y="90.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="f4a86ca:134efd7fc02:-7e5e" ordering="1" parent="f4a86ca:134efd7fc02:-7e5f" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><BasicBlock blockType="h" id="5635043b:13894cfb31b:-75ef" interfaceFunctionName="CLOCK_c" ordering="5" parent="f4a86ca:134efd7fc02:-7e66" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="339.0"/><data column="1" line="0" realPart="-370.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="188b11dc:1670bf9a1ba:-7874"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="188b11dc:1670bf9a1ba:-7874"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.1"/><data column="0" line="1" value="0.1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.1"/><data column="0" line="1" realPart="0.1"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.1"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="188b11dc:1670bf9a1ba:-7872"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="188b11dc:1670bf9a1ba:-7872"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="486.3773266666667"/><data column="1" line="0" realPart="-532.3333333333333"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="7.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="5.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="188b11dc:1670bf9a1ba:-786f"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="188b11dc:1670bf9a1ba:-786f"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="540.0"/><data column="0" line="2" realPart="496.8773266666667"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-44.0"/><data column="0" line="1" realPart="-620.0"/><data column="0" line="2" realPart="-521.3333333333333"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="495.71066"/><data column="0" line="1" realPart="369.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-536.3333333333333"/><data column="0" line="1" realPart="-346.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="498.0439933333334"/><data column="0" line="1" realPart="580.71"/><data column="0" line="2" realPart="540.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-536.3333333333333"/><data column="0" line="1" realPart="-490.0"/><data column="0" line="2" realPart="-490.0"/><data column="0" line="3" realPart="4.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="520.0" y="50.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="5635043b:13894cfb31b:-75ee" ordering="1" parent="5635043b:13894cfb31b:-75ef" style="CommandPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><CommandControlLink id="5635043b:13894cfb31b:-75eb" parent="f4a86ca:134efd7fc02:-7e66" source="5635043b:13894cfb31b:-75ee" target="f4a86ca:134efd7fc02:-7da0"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="540.0" y="94.0"/><mxPoint as="targetPoint" x="540.0" y="110.0"/></mxGeometry></CommandControlLink><BasicBlock angle="90" dependsOnT="1" id="188b11dc:1670bf9a1ba:-77ab" interfaceFunctionName="CVS" ordering="6" parent="f4a86ca:134efd7fc02:-7e66" simulationFunctionName="CVS" simulationFunctionType="DEFAULT" style="CVS;rotation=90"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CVS"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="vin"/><data column="0" line="1" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/></Array></Array><mxGeometry as="geometry" height="40.0" width="60.0" x="260.0" y="180.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="188b11dc:1670bf9a1ba:-77aa" ordering="1" parent="188b11dc:1670bf9a1ba:-77ab" style="ExplicitInputPort;align=center;verticalAlign=top;spacing=10.0;rotation=90" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ExplicitInputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="188b11dc:1670bf9a1ba:-77a9" ordering="2" parent="188b11dc:1670bf9a1ba:-77ab" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10.0;rotation=90" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="36.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="188b11dc:1670bf9a1ba:-77a8" ordering="1" parent="188b11dc:1670bf9a1ba:-77ab" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10.0;rotation=90" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="26.0" y="40.0"/></ImplicitOutputPort><ExplicitLink id="188b11dc:1670bf9a1ba:-77a3" parent="f4a86ca:134efd7fc02:-7e66" source="f4a86ca:134efd7fc02:-7db8" target="188b11dc:1670bf9a1ba:-77aa"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="260.0" y="110.0"/><mxPoint as="targetPoint" x="280.0" y="180.0"/><Array as="points" scilabClass=""><mxPoint x="280.0" y="110.0"/></Array></mxGeometry></ExplicitLink><GroundBlock dependsOnU="1" id="188b11dc:1670bf9a1ba:-779e" interfaceFunctionName="Ground" ordering="7" parent="f4a86ca:134efd7fc02:-7e66" simulationFunctionName="Ground" simulationFunctionType="DEFAULT" style="Ground"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Ground"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="20.0" width="20.0" x="350.0" y="310.0"/></GroundBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="188b11dc:1670bf9a1ba:-779d" ordering="1" parent="188b11dc:1670bf9a1ba:-779e" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10.0;rotation=90" value=""><Orientation as="orientation" value="NORTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="6.0" y="-8.0"/></ImplicitInputPort><BasicBlock angle="90" dependsOnU="1" id="188b11dc:1670bf9a1ba:-7795" interfaceFunctionName="Inductor" ordering="8" parent="f4a86ca:134efd7fc02:-7e66" simulationFunctionName="Inductor" simulationFunctionType="DEFAULT" style="Inductor;rotation=90"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="2"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Inductor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="L"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="18.0" width="40.0" x="410.0" y="200.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="188b11dc:1670bf9a1ba:-778f" ordering="1" parent="188b11dc:1670bf9a1ba:-7795" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10.0;rotation=90" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="188b11dc:1670bf9a1ba:-778e" ordering="1" parent="188b11dc:1670bf9a1ba:-7795" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10.0;rotation=90" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="18.0"/></ImplicitOutputPort><SplitBlock id="188b11dc:1670bf9a1ba:-778c" interfaceFunctionName="IMPSPLIT_f" ordering="9" parent="f4a86ca:134efd7fc02:-7e66" simulationFunctionType="DEFAULT" style="IMPSPLIT_f"><mxGeometry as="geometry" height="7.0" width="7.0" x="357.0" y="247.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="188b11dc:1670bf9a1ba:-778b" ordering="1" parent="188b11dc:1670bf9a1ba:-778c" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="188b11dc:1670bf9a1ba:-778a" ordering="1" parent="188b11dc:1670bf9a1ba:-778c" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="188b11dc:1670bf9a1ba:-7789" ordering="2" parent="188b11dc:1670bf9a1ba:-778c" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="188b11dc:1670bf9a1ba:-7788" parent="f4a86ca:134efd7fc02:-7e66" source="188b11dc:1670bf9a1ba:-778e" target="188b11dc:1670bf9a1ba:-778b"><mxGeometry as="geometry"><Array as="points" scilabClass=""><mxPoint x="430.0" y="250.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="188b11dc:1670bf9a1ba:-7787" parent="f4a86ca:134efd7fc02:-7e66" source="188b11dc:1670bf9a1ba:-77a8" target="188b11dc:1670bf9a1ba:-778a"><mxGeometry as="geometry"><Array as="points" scilabClass=""><mxPoint x="290.0" y="250.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="188b11dc:1670bf9a1ba:-778d" parent="f4a86ca:134efd7fc02:-7e66" source="188b11dc:1670bf9a1ba:-7789" target="188b11dc:1670bf9a1ba:-779d"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="360.0" y="310.0"/><mxPoint as="targetPoint" x="360.0" y="250.0"/></mxGeometry></ImplicitLink><BasicBlock dependsOnU="1" id="188b11dc:1670bf9a1ba:-7780" interfaceFunctionName="Resistor" ordering="10" parent="f4a86ca:134efd7fc02:-7e66" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="4"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="20.0" width="40.0" x="350.0" y="130.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="188b11dc:1670bf9a1ba:-7778" ordering="1" parent="188b11dc:1670bf9a1ba:-7780" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="188b11dc:1670bf9a1ba:-7777" ordering="1" parent="188b11dc:1670bf9a1ba:-7780" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="6.0"/></ImplicitOutputPort><ImplicitLink id="188b11dc:1670bf9a1ba:-7776" parent="f4a86ca:134efd7fc02:-7e66" source="188b11dc:1670bf9a1ba:-77a9" target="188b11dc:1670bf9a1ba:-7778"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="300.0" y="180.0"/><mxPoint as="targetPoint" x="350.0" y="140.0"/><Array as="points" scilabClass=""><mxPoint x="300.0" y="140.0"/></Array></mxGeometry></ImplicitLink><BasicBlock dependsOnU="1" id="188b11dc:1670bf9a1ba:-7767" interfaceFunctionName="PotentialSensor" ordering="11" parent="f4a86ca:134efd7fc02:-7e66" simulationFunctionName="PotentialSensor" simulationFunctionType="DEFAULT" style="PotentialSensor"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="PotentialSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="v"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="450.0" y="120.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="188b11dc:1670bf9a1ba:-7766" ordering="1" parent="188b11dc:1670bf9a1ba:-7767" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="188b11dc:1670bf9a1ba:-7765" ordering="1" parent="188b11dc:1670bf9a1ba:-7767" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><SplitBlock id="188b11dc:1670bf9a1ba:-775f" interfaceFunctionName="IMPSPLIT_f" ordering="12" parent="f4a86ca:134efd7fc02:-7e66" simulationFunctionType="DEFAULT" style="IMPSPLIT_f"><mxGeometry as="geometry" height="7.0" width="7.0" x="427.0" y="137.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="188b11dc:1670bf9a1ba:-775e" ordering="1" parent="188b11dc:1670bf9a1ba:-775f" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="188b11dc:1670bf9a1ba:-775d" ordering="1" parent="188b11dc:1670bf9a1ba:-775f" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="188b11dc:1670bf9a1ba:-775c" ordering="2" parent="188b11dc:1670bf9a1ba:-775f" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="188b11dc:1670bf9a1ba:-775b" parent="f4a86ca:134efd7fc02:-7e66" source="188b11dc:1670bf9a1ba:-7777" target="188b11dc:1670bf9a1ba:-775e"><mxGeometry as="geometry"><Array as="points" scilabClass=""/></mxGeometry></ImplicitLink><ImplicitLink id="188b11dc:1670bf9a1ba:-775a" parent="f4a86ca:134efd7fc02:-7e66" source="188b11dc:1670bf9a1ba:-775d" target="188b11dc:1670bf9a1ba:-778f"><mxGeometry as="geometry"><Array as="points" scilabClass=""/></mxGeometry></ImplicitLink><ImplicitLink id="188b11dc:1670bf9a1ba:-7760" parent="f4a86ca:134efd7fc02:-7e66" source="188b11dc:1670bf9a1ba:-775c" target="188b11dc:1670bf9a1ba:-7766"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="450.0" y="140.0"/><mxPoint as="targetPoint" x="430.0" y="140.0"/></mxGeometry></ImplicitLink><ExplicitLink id="188b11dc:1670bf9a1ba:-7759" parent="f4a86ca:134efd7fc02:-7e66" source="188b11dc:1670bf9a1ba:-7765" target="f4a86ca:134efd7fc02:-7da1"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="490.0" y="140.0"/><mxPoint as="targetPoint" x="520.0" y="140.0"/></mxGeometry></ExplicitLink><ExplicitLink id="188b11dc:1670bf9a1ba:-7702" parent="f4a86ca:134efd7fc02:-7e66" source="f4a86ca:134efd7fc02:-7e5e" target="f4a86ca:134efd7fc02:-7db9"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="50.0" y="110.0"/><mxPoint as="targetPoint" x="220.0" y="110.0"/></mxGeometry></ExplicitLink></root></mxGraphModel><mxCell as="defaultParent" id="f4a86ca:134efd7fc02:-7e66" parent="f4a86ca:134efd7fc02:-7e65"/></XcosDiagram>
\ No newline at end of file diff --git a/Working_Examples/215/CH2/EX2.1/ex2_1.sce b/Working_Examples/215/CH2/EX2.1/ex2_1.sce new file mode 100755 index 0000000..b6e0cfd --- /dev/null +++ b/Working_Examples/215/CH2/EX2.1/ex2_1.sce @@ -0,0 +1,35 @@ +//Example 2.1
+//Computation of power absorbed by each part
+//From figure 2.13a
+V=2;I=3;
+//We have Power(P)=V*I
+P=V*I
+printf("a) Power =%dW\n",P)
+if P>0 then
+ printf("Power is absorbed by the element\n")
+else
+ printf("Power is supplied by the element\n");
+end
+
+clear P;
+//From figure 2.13b
+V=-2;I=-3;
+//We have Power(P)=V*I
+P=V*I
+printf("b) Power =%dW\n",P)
+if P>0 then
+ printf("Power is absorbed by the element\n")
+else
+ printf("Power is supplied by the element\n")
+end
+
+//From figure 2.13c
+V=4;I=-5;
+//We have Power(P)=V*I
+P=V*I
+printf("c) Power =%dW\n",P)
+if P>0 then
+ printf("Power is absorbed by the element\n")
+else
+ printf("Power is supplied by the element\n")
+end
diff --git a/Working_Examples/215/CH2/EX2.2/ex2_2.sce b/Working_Examples/215/CH2/EX2.2/ex2_2.sce new file mode 100755 index 0000000..3f56789 --- /dev/null +++ b/Working_Examples/215/CH2/EX2.2/ex2_2.sce @@ -0,0 +1,12 @@ +//Example 2.2
+//Calculate vL
+disp("Given")
+disp("v2=3V")
+v2=3;
+//From figure 2.19b
+disp("Considering the right hand part of the circuit ")
+disp("vL=5v2")
+vL=5*v2;
+disp("On substitution")
+printf("vL=%dV\n",vL);
+
diff --git a/Working_Examples/215/CH2/EX2.3/ex2_3.sce b/Working_Examples/215/CH2/EX2.3/ex2_3.sce new file mode 100755 index 0000000..87a2176 --- /dev/null +++ b/Working_Examples/215/CH2/EX2.3/ex2_3.sce @@ -0,0 +1,15 @@ +//Example 2.3
+//Calculate the voltage and power dissipated acreoss the resistor terminals
+//From figure 2.24b
+disp("Given")
+disp("R=560 ohm ; i=428mA")
+R=560;i=428*10^-3;
+//Voltage across a resistor is
+disp("v=R*i")
+v=R*i;
+printf("Voltage across a resistor=%3.3fV\n",v)
+
+//Power dissipated by the resistor is
+disp("p=v*i")
+p=v*i;
+printf("Power dissipated by the resistor=%3.3fW\n",p)
diff --git a/Working_Examples/215/CH2/EX2.4/ex2_4.sce b/Working_Examples/215/CH2/EX2.4/ex2_4.sce new file mode 100755 index 0000000..6d0448e --- /dev/null +++ b/Working_Examples/215/CH2/EX2.4/ex2_4.sce @@ -0,0 +1,16 @@ +//Example 2.4
+//Calculate the power dissipated within the wire
+//From figure 2.27
+disp("Given")
+disp("Total length of the wire is 4000 feet")
+disp("Current drawn by lamp is 100A")
+//Considering American Wire Gauge system(AWG)
+//Referring Table 2.4
+disp("4AWG=0.2485ohms/1000ft")
+l=4000; i=100 ; rl=0.2485/1000;
+//Let R be the wire resistance
+R=l*rl;
+//Let p be the power dissipated within the wire
+disp("p=i^2*R")
+p=i^2*R
+printf("Power dissipated within the wire=%dW\n",p)
diff --git a/Working_Examples/215/CH3/EX3.1/Figure3_1.jpg b/Working_Examples/215/CH3/EX3.1/Figure3_1.jpg Binary files differnew file mode 100755 index 0000000..e842185 --- /dev/null +++ b/Working_Examples/215/CH3/EX3.1/Figure3_1.jpg diff --git a/Working_Examples/215/CH3/EX3.1/Figure3_1_xcos.jpg b/Working_Examples/215/CH3/EX3.1/Figure3_1_xcos.jpg Binary files differnew file mode 100755 index 0000000..ad928b1 --- /dev/null +++ b/Working_Examples/215/CH3/EX3.1/Figure3_1_xcos.jpg diff --git a/Working_Examples/215/CH3/EX3.1/ex3_1.xcos b/Working_Examples/215/CH3/EX3.1/ex3_1.xcos new file mode 100755 index 0000000..d69979b --- /dev/null +++ b/Working_Examples/215/CH3/EX3.1/ex3_1.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" finalIntegrationTime="30.0" title="ex3_1"><!--Xcos - 1.0 - scilab-5.5.2 - 20160406 2040--><mxGraphModel as="model"><root><mxCell id="-3721b5e:1319cfae9ac:-7fff"/><mxCell id="-3721b5e:1319cfae9ac:-8000" parent="-3721b5e:1319cfae9ac:-7fff"/><BasicBlock angle="270" dependsOnT="1" id="-3721b5e:1319cfae9ac:-7fdc" interfaceFunctionName="CCS" ordering="1" parent="-3721b5e:1319cfae9ac:-8000" simulationFunctionName="CCS" simulationFunctionType="DEFAULT" style="CCS;rotation=270;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CCS"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="Iin"/><data column="0" line="1" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="320.0" y="190.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-3721b5e:1319cfae9ac:-7fdb" ordering="1" parent="-3721b5e:1319cfae9ac:-7fdc" style="ImplicitOutputPort;align=center;verticalAlign=top;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitOutputPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-3721b5e:1319cfae9ac:-7fda" ordering="1" parent="-3721b5e:1319cfae9ac:-7fdc" style="ExplicitInputPort;align=center;verticalAlign=bottom;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="6.0" y="40.0"/></ExplicitInputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-3721b5e:1319cfae9ac:-7fd9" ordering="2" parent="-3721b5e:1319cfae9ac:-7fdc" style="ImplicitInputPort;align=center;verticalAlign=bottom;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="26.0" y="40.0"/></ImplicitInputPort><BasicBlock angle="90" dependsOnU="1" id="-3721b5e:1319cfae9ac:-7fcf" interfaceFunctionName="CurrentSensor" ordering="2" parent="-3721b5e:1319cfae9ac:-8000" simulationFunctionName="CurrentSensor" simulationFunctionType="DEFAULT" style="CurrentSensor;rotation=90;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CurrentSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="i"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="240.0" y="190.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-3721b5e:1319cfae9ac:-7fce" ordering="1" parent="-3721b5e:1319cfae9ac:-7fcf" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="6.0" y="40.0"/></ImplicitOutputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-3721b5e:1319cfae9ac:-7fcd" ordering="2" parent="-3721b5e:1319cfae9ac:-7fcf" style="ExplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="26.0" y="40.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-3721b5e:1319cfae9ac:-7fcc" ordering="1" parent="-3721b5e:1319cfae9ac:-7fcf" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock angle="90" dependsOnT="1" id="-3721b5e:1319cfae9ac:-7fcb" interfaceFunctionName="CCS" ordering="3" parent="-3721b5e:1319cfae9ac:-8000" simulationFunctionName="CCS" simulationFunctionType="DEFAULT" style="CCS;rotation=90;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CCS"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="Iin"/><data column="0" line="1" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="160.0" y="190.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-3721b5e:1319cfae9ac:-7fca" ordering="1" parent="-3721b5e:1319cfae9ac:-7fcb" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-3721b5e:1319cfae9ac:-7fc9" ordering="1" parent="-3721b5e:1319cfae9ac:-7fcb" style="ExplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="6.0" y="-8.0"/></ExplicitInputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-3721b5e:1319cfae9ac:-7fc8" ordering="2" parent="-3721b5e:1319cfae9ac:-7fcb" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="26.0" y="-8.0"/></ImplicitInputPort><BasicBlock angle="270" dependsOnT="1" id="-3721b5e:1319cfae9ac:-7fc7" interfaceFunctionName="CCS" ordering="4" parent="-3721b5e:1319cfae9ac:-8000" simulationFunctionName="CCS" simulationFunctionType="DEFAULT" style="CCS;rotation=270;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CCS"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="Iin"/><data column="0" line="1" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="80.0" y="190.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-3721b5e:1319cfae9ac:-7fc6" ordering="1" parent="-3721b5e:1319cfae9ac:-7fc7" style="ImplicitOutputPort;align=center;verticalAlign=top;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitOutputPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-3721b5e:1319cfae9ac:-7fc5" ordering="1" parent="-3721b5e:1319cfae9ac:-7fc7" style="ExplicitInputPort;align=center;verticalAlign=bottom;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="6.0" y="40.0"/></ExplicitInputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-3721b5e:1319cfae9ac:-7fc4" ordering="2" parent="-3721b5e:1319cfae9ac:-7fc7" style="ImplicitInputPort;align=center;verticalAlign=bottom;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="26.0" y="40.0"/></ImplicitInputPort><SplitBlock id="-3721b5e:1319cfae9ac:-7fc0" ordering="5" parent="-3721b5e:1319cfae9ac:-8000" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="187.0" y="127.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="-3721b5e:1319cfae9ac:-7fbf" ordering="1" parent="-3721b5e:1319cfae9ac:-7fc0" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-3721b5e:1319cfae9ac:-7fbe" ordering="1" parent="-3721b5e:1319cfae9ac:-7fc0" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-3721b5e:1319cfae9ac:-7fbd" ordering="2" parent="-3721b5e:1319cfae9ac:-7fc0" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitLink id="-3721b5e:1319cfae9ac:-7fbb" parent="-3721b5e:1319cfae9ac:-8000" source="-3721b5e:1319cfae9ac:-7fc6" target="-3721b5e:1319cfae9ac:-7fbe"><mxGeometry as="geometry" x="40.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="100.0" y="130.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-3721b5e:1319cfae9ac:-7fc1" parent="-3721b5e:1319cfae9ac:-8000" source="-3721b5e:1319cfae9ac:-7fbd" target="-3721b5e:1319cfae9ac:-7fc8"><mxGeometry as="geometry" x="40.0"><mxPoint as="sourcePoint" x="190.0" y="186.0"/><mxPoint as="targetPoint" x="190.0" y="130.0"/></mxGeometry></ImplicitLink><SplitBlock id="-3721b5e:1319cfae9ac:-7fb9" ordering="6" parent="-3721b5e:1319cfae9ac:-8000" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="257.0" y="127.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="-3721b5e:1319cfae9ac:-7fb8" ordering="1" parent="-3721b5e:1319cfae9ac:-7fb9" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-3721b5e:1319cfae9ac:-7fb7" ordering="1" parent="-3721b5e:1319cfae9ac:-7fb9" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-3721b5e:1319cfae9ac:-7fb6" ordering="2" parent="-3721b5e:1319cfae9ac:-7fb9" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitLink id="-3721b5e:1319cfae9ac:-7fb5" parent="-3721b5e:1319cfae9ac:-8000" source="-3721b5e:1319cfae9ac:-7fdb" target="-3721b5e:1319cfae9ac:-7fb8"><mxGeometry as="geometry" x="40.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="340.0" y="130.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-3721b5e:1319cfae9ac:-7fb4" parent="-3721b5e:1319cfae9ac:-8000" source="-3721b5e:1319cfae9ac:-7fb7" target="-3721b5e:1319cfae9ac:-7fbf"><mxGeometry as="geometry" x="40.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-3721b5e:1319cfae9ac:-7fba" parent="-3721b5e:1319cfae9ac:-8000" source="-3721b5e:1319cfae9ac:-7fb6" target="-3721b5e:1319cfae9ac:-7fcc"><mxGeometry as="geometry" x="40.0"><mxPoint as="sourcePoint" x="260.0" y="186.0"/><mxPoint as="targetPoint" x="260.0" y="130.0"/></mxGeometry></ImplicitLink><SplitBlock id="-3721b5e:1319cfae9ac:-7fb2" ordering="7" parent="-3721b5e:1319cfae9ac:-8000" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="247.0" y="297.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="-3721b5e:1319cfae9ac:-7fb1" ordering="1" parent="-3721b5e:1319cfae9ac:-7fb2" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-3721b5e:1319cfae9ac:-7fb0" ordering="1" parent="-3721b5e:1319cfae9ac:-7fb2" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-3721b5e:1319cfae9ac:-7faf" ordering="2" parent="-3721b5e:1319cfae9ac:-7fb2" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitLink id="-3721b5e:1319cfae9ac:-7fae" parent="-3721b5e:1319cfae9ac:-8000" source="-3721b5e:1319cfae9ac:-7fd9" target="-3721b5e:1319cfae9ac:-7fb1"><mxGeometry as="geometry" x="40.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="350.0" y="300.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-3721b5e:1319cfae9ac:-7fb3" parent="-3721b5e:1319cfae9ac:-8000" source="-3721b5e:1319cfae9ac:-7fce" target="-3721b5e:1319cfae9ac:-7faf"><mxGeometry as="geometry" x="40.0"><mxPoint as="sourcePoint" x="250.0" y="234.0"/><mxPoint as="targetPoint" x="250.0" y="300.0"/></mxGeometry></ImplicitLink><SplitBlock id="-3721b5e:1319cfae9ac:-7fab" ordering="8" parent="-3721b5e:1319cfae9ac:-8000" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="177.0" y="297.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="-3721b5e:1319cfae9ac:-7faa" ordering="1" parent="-3721b5e:1319cfae9ac:-7fab" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-3721b5e:1319cfae9ac:-7fa9" ordering="1" parent="-3721b5e:1319cfae9ac:-7fab" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-3721b5e:1319cfae9ac:-7fa8" ordering="2" parent="-3721b5e:1319cfae9ac:-7fab" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitLink id="-3721b5e:1319cfae9ac:-7fa6" parent="-3721b5e:1319cfae9ac:-8000" source="-3721b5e:1319cfae9ac:-7fa9" target="-3721b5e:1319cfae9ac:-7fc4"><mxGeometry as="geometry" x="40.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="110.0" y="300.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-3721b5e:1319cfae9ac:-7fac" parent="-3721b5e:1319cfae9ac:-8000" source="-3721b5e:1319cfae9ac:-7fca" target="-3721b5e:1319cfae9ac:-7fa8"><mxGeometry as="geometry" x="40.0"><mxPoint as="sourcePoint" x="180.0" y="234.0"/><mxPoint as="targetPoint" x="180.0" y="300.0"/></mxGeometry></ImplicitLink><BasicBlock blockType="d" id="-3721b5e:1319cfae9ac:-7fa0" interfaceFunctionName="CONST_m" ordering="9" parent="-3721b5e:1319cfae9ac:-8000" simulationFunctionName="cstblk4" simulationFunctionType="C_OR_FORTRAN" style="CONST_m;flip=false;mirror=false" value="3"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="3"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble></Array><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="50.0" width="40.0" x="40.0" y="320.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-3721b5e:1319cfae9ac:-7f6f" ordering="1" parent="-3721b5e:1319cfae9ac:-7fa0" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><BasicBlock blockType="d" id="-3721b5e:1319cfae9ac:-7f9c" interfaceFunctionName="CONST_m" ordering="10" parent="-3721b5e:1319cfae9ac:-8000" simulationFunctionName="cstblk4" simulationFunctionType="C_OR_FORTRAN" style="CONST_m;flip=false;mirror=false" value="5"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="5"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble></Array><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="50.0" width="40.0" x="280.0" y="320.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-3721b5e:1319cfae9ac:-7f6c" ordering="1" parent="-3721b5e:1319cfae9ac:-7f9c" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><BasicBlock blockType="d" id="-3721b5e:1319cfae9ac:-7f9a" interfaceFunctionName="CONST_m" ordering="11" parent="-3721b5e:1319cfae9ac:-8000" simulationFunctionName="cstblk4" simulationFunctionType="C_OR_FORTRAN" style="CONST_m;flip=false;mirror=false" value="2"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="2"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble></Array><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="50.0" width="40.0" x="110.0" y="50.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-3721b5e:1319cfae9ac:-7f69" ordering="1" parent="-3721b5e:1319cfae9ac:-7f9a" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ExplicitLink id="-3721b5e:1319cfae9ac:-7f94" parent="-3721b5e:1319cfae9ac:-8000" source="-3721b5e:1319cfae9ac:-7f6f" target="-3721b5e:1319cfae9ac:-7fc5"><mxGeometry as="geometry" x="40.0"><mxPoint as="sourcePoint" x="90.0" y="234.0"/><mxPoint as="targetPoint" x="80.0" y="340.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="90.0" y="340.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="-3721b5e:1319cfae9ac:-7f93" parent="-3721b5e:1319cfae9ac:-8000" source="-3721b5e:1319cfae9ac:-7f69" target="-3721b5e:1319cfae9ac:-7fc9"><mxGeometry as="geometry" x="40.0"><mxPoint as="sourcePoint" x="154.0" y="70.0"/><mxPoint as="targetPoint" x="170.0" y="190.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="170.0" y="70.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="-3721b5e:1319cfae9ac:-7f92" parent="-3721b5e:1319cfae9ac:-8000" source="-3721b5e:1319cfae9ac:-7f6c" target="-3721b5e:1319cfae9ac:-7fda"><mxGeometry as="geometry" x="40.0"><mxPoint as="sourcePoint" x="330.0" y="234.0"/><mxPoint as="targetPoint" x="330.0" y="340.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="330.0" y="340.0"/></Array></mxGeometry></ExplicitLink><BasicBlock blockType="h" id="-3721b5e:1319cfae9ac:-7f8c" interfaceFunctionName="CLOCK_c" ordering="12" parent="-3721b5e:1319cfae9ac:-8000" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="119.0"/><data column="1" line="0" realPart="-150.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="48d7e1f7:16711003a12:-7f87"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="48d7e1f7:16711003a12:-7f87"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.1"/><data column="0" line="1" value="0.1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.1"/><data column="0" line="1" realPart="0.1"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.1"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="48d7e1f7:16711003a12:-7f85"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="48d7e1f7:16711003a12:-7f85"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="123.3773266666667"/><data column="1" line="0" realPart="-169.33333333333331"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="7.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="5.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="48d7e1f7:16711003a12:-7f82"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="48d7e1f7:16711003a12:-7f82"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="100.0"/><data column="0" line="2" realPart="133.8773266666667"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-44.0"/><data column="0" line="1" realPart="-180.0"/><data column="0" line="2" realPart="-158.33333333333331"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="132.71066000000005"/><data column="0" line="1" realPart="149.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-173.33333333333331"/><data column="0" line="1" realPart="-126.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="135.04399333333336"/><data column="0" line="1" realPart="140.70999999999998"/><data column="0" line="2" realPart="100.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-173.33333333333331"/><data column="0" line="1" realPart="-50.0"/><data column="0" line="2" realPart="-50.0"/><data column="0" line="3" realPart="4.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="400.0" y="160.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="-3721b5e:1319cfae9ac:-7f8b" ordering="1" parent="-3721b5e:1319cfae9ac:-7f8c" style="CommandPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><GroundBlock dependsOnU="1" id="-3721b5e:1319cfae9ac:-7f79" interfaceFunctionName="Ground" ordering="13" parent="-3721b5e:1319cfae9ac:-8000" simulationFunctionName="Ground" simulationFunctionType="DEFAULT" style="Ground;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Ground"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="190.0" y="380.0"/></GroundBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-3721b5e:1319cfae9ac:-7f78" ordering="1" parent="-3721b5e:1319cfae9ac:-7f79" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><Orientation as="orientation" value="NORTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><SplitBlock id="-3721b5e:1319cfae9ac:-7f76" ordering="14" parent="-3721b5e:1319cfae9ac:-8000" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="207.0" y="297.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="-3721b5e:1319cfae9ac:-7f75" ordering="1" parent="-3721b5e:1319cfae9ac:-7f76" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-3721b5e:1319cfae9ac:-7f74" ordering="1" parent="-3721b5e:1319cfae9ac:-7f76" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-3721b5e:1319cfae9ac:-7f73" ordering="2" parent="-3721b5e:1319cfae9ac:-7f76" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitLink id="-3721b5e:1319cfae9ac:-7f72" parent="-3721b5e:1319cfae9ac:-8000" source="-3721b5e:1319cfae9ac:-7fb0" target="-3721b5e:1319cfae9ac:-7f75"><mxGeometry as="geometry" x="40.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-3721b5e:1319cfae9ac:-7f71" parent="-3721b5e:1319cfae9ac:-8000" source="-3721b5e:1319cfae9ac:-7f74" target="-3721b5e:1319cfae9ac:-7faa"><mxGeometry as="geometry" x="40.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-3721b5e:1319cfae9ac:-7f77" parent="-3721b5e:1319cfae9ac:-8000" source="-3721b5e:1319cfae9ac:-7f73" target="-3721b5e:1319cfae9ac:-7f78"><mxGeometry as="geometry" x="40.0"><mxPoint as="sourcePoint" x="210.0" y="376.0"/><mxPoint as="targetPoint" x="210.0" y="300.0"/></mxGeometry></ImplicitLink><TextBlock id="-3721b5e:1319cfae9ac:-7f63" parent="-3721b5e:1319cfae9ac:-8000" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="Example 3.1"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="Example 3.1"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="Example 3.1"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="40.0" y="20.0"/></TextBlock><BasicBlock dependsOnU="1" id="-3721b5e:1319cfae9ac:-7f47" interfaceFunctionName="CSCOPE" ordering="15" parent="-3721b5e:1319cfae9ac:-8000" simulationFunctionName="cscope" simulationFunctionType="C_OR_FORTRAN" style="CSCOPE;flip=false;mirror=false"><ScilabString as="exprs" height="10" width="1"><data column="0" line="0" value="1 3 5 7 9 11 13 15"/><data column="0" line="1" value="-1"/><data column="0" line="2" value="[]"/><data column="0" line="3" value="[600;400]"/><data column="0" line="4" value="5"/><data column="0" line="5" value="7"/><data column="0" line="6" value="30"/><data column="0" line="7" value="20"/><data column="0" line="8" value="0"/><data column="0" line="9" value=""/></ScilabString><ScilabDouble as="realParameters" height="4" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="5.0"/><data column="0" line="2" realPart="7.0"/><data column="0" line="3" realPart="30.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="15" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="1.0"/><data column="0" line="4" realPart="3.0"/><data column="0" line="5" realPart="5.0"/><data column="0" line="6" realPart="7.0"/><data column="0" line="7" realPart="9.0"/><data column="0" line="8" realPart="11.0"/><data column="0" line="9" realPart="13.0"/><data column="0" line="10" realPart="15.0"/><data column="0" line="11" realPart="-1.0"/><data column="0" line="12" realPart="-1.0"/><data column="0" line="13" realPart="600.0"/><data column="0" line="14" realPart="400.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="400.0" y="240.0"/></BasicBlock><ControlPort dataType="UNKNOW_TYPE" id="-3721b5e:1319cfae9ac:-7f40" ordering="1" parent="-3721b5e:1319cfae9ac:-7f47" style="ControlPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="-3721b5e:1319cfae9ac:-7f41" ordering="1" parent="-3721b5e:1319cfae9ac:-7f47" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><CommandControlLink id="-3721b5e:1319cfae9ac:-7f44" parent="-3721b5e:1319cfae9ac:-8000" source="-3721b5e:1319cfae9ac:-7f8b" target="-3721b5e:1319cfae9ac:-7f40"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="420.0" y="204.0"/><mxPoint as="targetPoint" x="420.0" y="240.0"/></mxGeometry></CommandControlLink><ExplicitLink id="-3721b5e:1319cfae9ac:-7f43" parent="-3721b5e:1319cfae9ac:-8000" source="-3721b5e:1319cfae9ac:-7fcd" target="-3721b5e:1319cfae9ac:-7f41"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="270.0" y="234.0"/><mxPoint as="targetPoint" x="390.0" y="260.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="270.0" y="260.0"/></Array></mxGeometry></ExplicitLink><TextBlock id="48d7e1f7:16711003a12:-7f8d" parent="-3721b5e:1319cfae9ac:-8000" simulationFunctionType="DEFAULT"><mxGeometry as="geometry" height="40.0" width="40.0" x="230.0" y="260.0"/></TextBlock><TextBlock id="48d7e1f7:16711003a12:-7f8c" parent="-3721b5e:1319cfae9ac:-8000" simulationFunctionType="DEFAULT"><mxGeometry as="geometry" height="40.0" width="40.0" x="230.0" y="260.0"/></TextBlock><TextBlock id="48d7e1f7:16711003a12:-7f8b" parent="-3721b5e:1319cfae9ac:-8000" simulationFunctionType="DEFAULT"><mxGeometry as="geometry" height="40.0" width="40.0" x="230.0" y="260.0"/></TextBlock><TextBlock id="48d7e1f7:16711003a12:-7f8a" parent="-3721b5e:1319cfae9ac:-8000" simulationFunctionType="DEFAULT"><mxGeometry as="geometry" height="40.0" width="40.0" x="230.0" y="260.0"/></TextBlock></root></mxGraphModel><mxCell as="defaultParent" id="-3721b5e:1319cfae9ac:-8000" parent="-3721b5e:1319cfae9ac:-7fff"/></XcosDiagram>
\ No newline at end of file diff --git a/Working_Examples/215/CH3/EX3.11/Figure3_11.jpg b/Working_Examples/215/CH3/EX3.11/Figure3_11.jpg Binary files differnew file mode 100755 index 0000000..259c233 --- /dev/null +++ b/Working_Examples/215/CH3/EX3.11/Figure3_11.jpg diff --git a/Working_Examples/215/CH3/EX3.11/Figure3_11_xcos.jpg b/Working_Examples/215/CH3/EX3.11/Figure3_11_xcos.jpg Binary files differnew file mode 100755 index 0000000..32142ae --- /dev/null +++ b/Working_Examples/215/CH3/EX3.11/Figure3_11_xcos.jpg diff --git a/Working_Examples/215/CH3/EX3.11/ex3_11.xcos b/Working_Examples/215/CH3/EX3.11/ex3_11.xcos new file mode 100755 index 0000000..28321ab --- /dev/null +++ b/Working_Examples/215/CH3/EX3.11/ex3_11.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" finalIntegrationTime="30.0" title="ex3_11"><!--Xcos - 1.0 - scilab-5.5.2 - 20160406 2040--><mxGraphModel as="model"><root><mxCell id="-3b708aba:134ce795dea:-7fff"/><mxCell id="-3b708aba:134ce795dea:-8000" parent="-3b708aba:134ce795dea:-7fff"/><BasicBlock dependsOnU="1" id="-3b708aba:134ce795dea:-7faa" interfaceFunctionName="CSCOPE" ordering="3" parent="-3b708aba:134ce795dea:-8000" simulationFunctionName="cscope" simulationFunctionType="C_OR_FORTRAN" style="CSCOPE;flip=false;mirror=false"><ScilabString as="exprs" height="10" width="1"><data column="0" line="0" value="1 3 5 7 9 11 13 15"/><data column="0" line="1" value="-1"/><data column="0" line="2" value="[]"/><data column="0" line="3" value="[600;400]"/><data column="0" line="4" value="2"/><data column="0" line="5" value="4"/><data column="0" line="6" value="30"/><data column="0" line="7" value="20"/><data column="0" line="8" value="0"/><data column="0" line="9" value=""/></ScilabString><ScilabDouble as="realParameters" height="4" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="2.0"/><data column="0" line="2" realPart="4.0"/><data column="0" line="3" realPart="30.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="15" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="1.0"/><data column="0" line="4" realPart="3.0"/><data column="0" line="5" realPart="5.0"/><data column="0" line="6" realPart="7.0"/><data column="0" line="7" realPart="9.0"/><data column="0" line="8" realPart="11.0"/><data column="0" line="9" realPart="13.0"/><data column="0" line="10" realPart="15.0"/><data column="0" line="11" realPart="-1.0"/><data column="0" line="12" realPart="-1.0"/><data column="0" line="13" realPart="600.0"/><data column="0" line="14" realPart="400.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="250.0" y="110.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="-3b708aba:134ce795dea:-7f3c" ordering="1" parent="-3b708aba:134ce795dea:-7faa" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ControlPort dataType="UNKNOW_TYPE" id="-3b708aba:134ce795dea:-7f3b" ordering="1" parent="-3b708aba:134ce795dea:-7faa" style="ControlPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><BasicBlock blockType="h" id="-13640e5a:13894ab8a5f:-7d1f" interfaceFunctionName="CLOCK_c" ordering="12" parent="-3b708aba:134ce795dea:-8000" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="139.0"/><data column="1" line="0" realPart="-170.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="48d7e1f7:16711003a12:-7f37"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="48d7e1f7:16711003a12:-7f37"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.1"/><data column="0" line="1" value="0.1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.1"/><data column="0" line="1" realPart="0.1"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.1"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="48d7e1f7:16711003a12:-7f35"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="48d7e1f7:16711003a12:-7f35"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="156.3773266666667"/><data column="1" line="0" realPart="-202.33333333333331"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="7.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="5.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="48d7e1f7:16711003a12:-7f32"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="48d7e1f7:16711003a12:-7f32"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="140.0"/><data column="0" line="2" realPart="166.8773266666667"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-44.0"/><data column="0" line="1" realPart="-220.0"/><data column="0" line="2" realPart="-191.33333333333331"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="165.71066000000005"/><data column="0" line="1" realPart="169.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-206.33333333333331"/><data column="0" line="1" realPart="-146.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="168.04399333333336"/><data column="0" line="1" realPart="180.70999999999998"/><data column="0" line="2" realPart="140.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-206.33333333333331"/><data column="0" line="1" realPart="-90.0"/><data column="0" line="2" realPart="-90.0"/><data column="0" line="3" realPart="4.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="250.0" y="20.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="-13640e5a:13894ab8a5f:-7d1e" ordering="1" parent="-13640e5a:13894ab8a5f:-7d1f" style="CommandPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><CommandControlLink id="-13640e5a:13894ab8a5f:-7d1d" parent="-3b708aba:134ce795dea:-8000" source="-13640e5a:13894ab8a5f:-7d1e" target="-3b708aba:134ce795dea:-7f3b"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="270.0" y="64.0"/><mxPoint as="targetPoint" x="270.0" y="110.0"/></mxGeometry></CommandControlLink><BasicBlock angle="180" id="48d7e1f7:16711003a12:-7f16" interfaceFunctionName="ConstantVoltage" parent="-3b708aba:134ce795dea:-8000" simulationFunctionName="ConstantVoltage" simulationFunctionType="DEFAULT" style="ConstantVoltage;rotation=180"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="30"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="30.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ConstantVoltage"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="V"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="30.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="22.0" width="30.0" x="300.0" y="90.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="48d7e1f7:16711003a12:-7ef8" ordering="1" parent="48d7e1f7:16711003a12:-7f16" style="ImplicitInputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=180" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="30.0" y="6.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="48d7e1f7:16711003a12:-7ef7" ordering="1" parent="48d7e1f7:16711003a12:-7f16" style="ImplicitOutputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=180" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ImplicitOutputPort><BasicBlock angle="90" id="48d7e1f7:16711003a12:-7f10" interfaceFunctionName="ConstantVoltage" parent="-3b708aba:134ce795dea:-8000" simulationFunctionName="ConstantVoltage" simulationFunctionType="DEFAULT" style="ConstantVoltage;rotation=90"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="80"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="80.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ConstantVoltage"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="V"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="80.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="22.0" width="30.0" x="50.0" y="190.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="48d7e1f7:16711003a12:-7f02" ordering="1" parent="48d7e1f7:16711003a12:-7f10" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10.0;rotation=90" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="48d7e1f7:16711003a12:-7f01" ordering="1" parent="48d7e1f7:16711003a12:-7f10" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10.0;rotation=90" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="22.0"/></ImplicitOutputPort><BasicBlock angle="90" id="48d7e1f7:16711003a12:-7f0d" interfaceFunctionName="ConstantVoltage" parent="-3b708aba:134ce795dea:-8000" simulationFunctionName="ConstantVoltage" simulationFunctionType="DEFAULT" style="ConstantVoltage;rotation=90"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="20"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="20.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ConstantVoltage"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="V"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="20.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="22.0" width="30.0" x="490.0" y="180.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="48d7e1f7:16711003a12:-7f08" ordering="1" parent="48d7e1f7:16711003a12:-7f0d" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10.0;rotation=90" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="48d7e1f7:16711003a12:-7f07" ordering="1" parent="48d7e1f7:16711003a12:-7f0d" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10.0;rotation=90" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="22.0"/></ImplicitOutputPort><GroundBlock dependsOnU="1" id="48d7e1f7:16711003a12:-7ef2" interfaceFunctionName="Ground" parent="-3b708aba:134ce795dea:-8000" simulationFunctionName="Ground" simulationFunctionType="DEFAULT" style="Ground"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Ground"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="20.0" width="20.0" x="170.0" y="290.0"/></GroundBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="48d7e1f7:16711003a12:-7ef1" ordering="1" parent="48d7e1f7:16711003a12:-7ef2" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10.0;rotation=90" value=""><Orientation as="orientation" value="NORTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="6.0" y="-8.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="48d7e1f7:16711003a12:-7ee8" interfaceFunctionName="CurrentSensor" parent="-3b708aba:134ce795dea:-8000" simulationFunctionName="CurrentSensor" simulationFunctionType="DEFAULT" style="CurrentSensor"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CurrentSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="i"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="110.0" y="90.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="48d7e1f7:16711003a12:-7ee7" ordering="1" parent="48d7e1f7:16711003a12:-7ee8" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="48d7e1f7:16711003a12:-7ee6" ordering="1" parent="48d7e1f7:16711003a12:-7ee8" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="6.0"/></ImplicitOutputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="48d7e1f7:16711003a12:-7ee5" ordering="2" parent="48d7e1f7:16711003a12:-7ee8" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="26.0"/></ExplicitOutputPort><BasicBlock dependsOnU="1" id="48d7e1f7:16711003a12:-7ede" interfaceFunctionName="Resistor" parent="-3b708aba:134ce795dea:-8000" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="8"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="20.0" width="40.0" x="310.0" y="240.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="48d7e1f7:16711003a12:-7ebc" ordering="1" parent="48d7e1f7:16711003a12:-7ede" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="48d7e1f7:16711003a12:-7ebb" ordering="1" parent="48d7e1f7:16711003a12:-7ede" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="6.0"/></ImplicitOutputPort><BasicBlock dependsOnU="1" id="48d7e1f7:16711003a12:-7ed8" interfaceFunctionName="Resistor" parent="-3b708aba:134ce795dea:-8000" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="10"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="10.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="10.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="20.0" width="40.0" x="180.0" y="90.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="48d7e1f7:16711003a12:-7ec2" ordering="1" parent="48d7e1f7:16711003a12:-7ed8" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="48d7e1f7:16711003a12:-7ec1" ordering="1" parent="48d7e1f7:16711003a12:-7ed8" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="6.0"/></ImplicitOutputPort><BasicBlock dependsOnU="1" id="48d7e1f7:16711003a12:-7ecf" interfaceFunctionName="Resistor" parent="-3b708aba:134ce795dea:-8000" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="5"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="20.0" width="40.0" x="440.0" y="90.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="48d7e1f7:16711003a12:-7ec8" ordering="1" parent="48d7e1f7:16711003a12:-7ecf" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="48d7e1f7:16711003a12:-7ec7" ordering="1" parent="48d7e1f7:16711003a12:-7ecf" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="6.0"/></ImplicitOutputPort><SplitBlock id="48d7e1f7:16711003a12:-7ead" interfaceFunctionName="IMPSPLIT_f" parent="-3b708aba:134ce795dea:-8000" simulationFunctionType="DEFAULT" style="IMPSPLIT_f"><mxGeometry as="geometry" height="7.0" width="7.0" x="177.0" y="247.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="48d7e1f7:16711003a12:-7eac" ordering="1" parent="48d7e1f7:16711003a12:-7ead" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="48d7e1f7:16711003a12:-7eab" ordering="1" parent="48d7e1f7:16711003a12:-7ead" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="48d7e1f7:16711003a12:-7eaa" ordering="2" parent="48d7e1f7:16711003a12:-7ead" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="48d7e1f7:16711003a12:-7ea9" parent="-3b708aba:134ce795dea:-8000" source="48d7e1f7:16711003a12:-7f01" target="48d7e1f7:16711003a12:-7eac"><mxGeometry as="geometry"><Array as="points" scilabClass=""><mxPoint x="70.0" y="250.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="48d7e1f7:16711003a12:-7ea8" parent="-3b708aba:134ce795dea:-8000" source="48d7e1f7:16711003a12:-7eab" target="48d7e1f7:16711003a12:-7ebc"><mxGeometry as="geometry"><Array as="points" scilabClass=""/></mxGeometry></ImplicitLink><ImplicitLink id="48d7e1f7:16711003a12:-7eae" parent="-3b708aba:134ce795dea:-8000" source="48d7e1f7:16711003a12:-7eaa" target="48d7e1f7:16711003a12:-7ef1"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="180.0" y="290.0"/><mxPoint as="targetPoint" x="180.0" y="250.0"/></mxGeometry></ImplicitLink><ImplicitLink id="48d7e1f7:16711003a12:-7ea7" parent="-3b708aba:134ce795dea:-8000" source="48d7e1f7:16711003a12:-7ebb" target="48d7e1f7:16711003a12:-7f07"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="550.0" y="200.0"/><mxPoint as="targetPoint" x="360.0" y="250.0"/><Array as="points" scilabClass=""><mxPoint x="510.0" y="250.0"/></Array></mxGeometry></ImplicitLink><BasicBlock dependsOnU="1" id="48d7e1f7:16711003a12:-7e9f" interfaceFunctionName="Resistor" parent="-3b708aba:134ce795dea:-8000" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="7"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="7.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="7.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="20.0" width="40.0" x="360.0" y="90.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="48d7e1f7:16711003a12:-7e98" ordering="1" parent="48d7e1f7:16711003a12:-7e9f" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="48d7e1f7:16711003a12:-7e97" ordering="1" parent="48d7e1f7:16711003a12:-7e9f" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="6.0"/></ImplicitOutputPort><ImplicitLink id="48d7e1f7:16711003a12:-7e93" parent="-3b708aba:134ce795dea:-8000" source="48d7e1f7:16711003a12:-7e97" target="48d7e1f7:16711003a12:-7ec8"><mxGeometry as="geometry" x="-20.0" y="30.0"><mxPoint as="sourcePoint" x="400.0" y="100.0"/><mxPoint as="targetPoint" x="440.0" y="100.0"/></mxGeometry></ImplicitLink><ImplicitLink id="48d7e1f7:16711003a12:-7e8c" parent="-3b708aba:134ce795dea:-8000" source="48d7e1f7:16711003a12:-7ee6" target="48d7e1f7:16711003a12:-7ec2"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="150.0" y="100.0"/><mxPoint as="targetPoint" x="170.0" y="100.0"/></mxGeometry></ImplicitLink><ImplicitLink id="48d7e1f7:16711003a12:-7e8b" parent="-3b708aba:134ce795dea:-8000" source="48d7e1f7:16711003a12:-7ef7" target="48d7e1f7:16711003a12:-7ec1"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="220.0" y="100.0"/><mxPoint as="targetPoint" x="300.0" y="100.0"/></mxGeometry></ImplicitLink><ExplicitLink id="48d7e1f7:16711003a12:-7e8a" parent="-3b708aba:134ce795dea:-8000" source="48d7e1f7:16711003a12:-7ee5" target="-3b708aba:134ce795dea:-7f3c"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="150.0" y="120.0"/><mxPoint as="targetPoint" x="240.0" y="130.0"/><Array as="points" scilabClass=""><mxPoint x="210.0" y="120.0"/><mxPoint x="240.0" y="120.0"/></Array></mxGeometry></ExplicitLink><ImplicitLink id="48d7e1f7:16711003a12:-7e82" parent="-3b708aba:134ce795dea:-8000" source="48d7e1f7:16711003a12:-7ef8" target="48d7e1f7:16711003a12:-7e98"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="330.0" y="100.0"/><mxPoint as="targetPoint" x="350.0" y="100.0"/></mxGeometry></ImplicitLink><ImplicitLink id="48d7e1f7:16711003a12:-7e81" parent="-3b708aba:134ce795dea:-8000" source="48d7e1f7:16711003a12:-7ec7" target="48d7e1f7:16711003a12:-7f08"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="480.0" y="100.0"/><mxPoint as="targetPoint" x="510.0" y="170.0"/><Array as="points" scilabClass=""><mxPoint x="510.0" y="100.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="48d7e1f7:16711003a12:-7e80" parent="-3b708aba:134ce795dea:-8000" source="48d7e1f7:16711003a12:-7f02" target="48d7e1f7:16711003a12:-7ee7"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="70.0" y="190.0"/><mxPoint as="targetPoint" x="110.0" y="110.0"/><Array as="points" scilabClass=""><mxPoint x="70.0" y="110.0"/></Array></mxGeometry></ImplicitLink></root></mxGraphModel><mxCell as="defaultParent" id="-3b708aba:134ce795dea:-8000" parent="-3b708aba:134ce795dea:-7fff"/></XcosDiagram>
\ No newline at end of file diff --git a/Working_Examples/215/CH3/EX3.13/Figure3_13.jpg b/Working_Examples/215/CH3/EX3.13/Figure3_13.jpg Binary files differnew file mode 100755 index 0000000..d04e48e --- /dev/null +++ b/Working_Examples/215/CH3/EX3.13/Figure3_13.jpg diff --git a/Working_Examples/215/CH3/EX3.13/Figure3_13_xcos.jpg b/Working_Examples/215/CH3/EX3.13/Figure3_13_xcos.jpg Binary files differnew file mode 100755 index 0000000..469f35c --- /dev/null +++ b/Working_Examples/215/CH3/EX3.13/Figure3_13_xcos.jpg diff --git a/Working_Examples/215/CH3/EX3.13/ex3_13.xcos b/Working_Examples/215/CH3/EX3.13/ex3_13.xcos new file mode 100755 index 0000000..f713d0e --- /dev/null +++ b/Working_Examples/215/CH3/EX3.13/ex3_13.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" finalIntegrationTime="30.0" title="ex3_13"><!--Xcos - 1.0 - scilab-5.5.2 - 20160406 2040--><mxGraphModel as="model"><root><mxCell id="73523f48:134cd91c16f:-7c18"/><mxCell id="73523f48:134cd91c16f:-7c19" parent="73523f48:134cd91c16f:-7c18"/><BasicBlock dependsOnU="1" id="73523f48:134cd91c16f:-7b7d" interfaceFunctionName="CSCOPE" ordering="6" parent="73523f48:134cd91c16f:-7c19" simulationFunctionName="cscope" simulationFunctionType="C_OR_FORTRAN" style="CSCOPE;flip=false;mirror=false"><ScilabString as="exprs" height="10" width="1"><data column="0" line="0" value="1 3 5 7 9 11 13 15"/><data column="0" line="1" value="-1"/><data column="0" line="2" value="[]"/><data column="0" line="3" value="[600;400]"/><data column="0" line="4" value="-4.2"/><data column="0" line="5" value="4.2"/><data column="0" line="6" value="30"/><data column="0" line="7" value="20"/><data column="0" line="8" value="0"/><data column="0" line="9" value=""/></ScilabString><ScilabDouble as="realParameters" height="4" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="-4.2"/><data column="0" line="2" realPart="4.2"/><data column="0" line="3" realPart="30.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="15" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="1.0"/><data column="0" line="4" realPart="3.0"/><data column="0" line="5" realPart="5.0"/><data column="0" line="6" realPart="7.0"/><data column="0" line="7" realPart="9.0"/><data column="0" line="8" realPart="11.0"/><data column="0" line="9" realPart="13.0"/><data column="0" line="10" realPart="15.0"/><data column="0" line="11" realPart="-1.0"/><data column="0" line="12" realPart="-1.0"/><data column="0" line="13" realPart="600.0"/><data column="0" line="14" realPart="400.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="510.0" y="150.0"/></BasicBlock><ControlPort dataType="UNKNOW_TYPE" id="73523f48:134cd91c16f:-7b40" ordering="1" parent="73523f48:134cd91c16f:-7b7d" style="ControlPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="73523f48:134cd91c16f:-7b41" ordering="1" parent="73523f48:134cd91c16f:-7b7d" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><BasicBlock blockType="h" id="-13640e5a:13894ab8a5f:-7cce" interfaceFunctionName="CLOCK_c" ordering="13" parent="73523f48:134cd91c16f:-7c19" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="139.0"/><data column="1" line="0" realPart="-170.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="48d7e1f7:16711003a12:-7e23"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="48d7e1f7:16711003a12:-7e23"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.1"/><data column="0" line="1" value="0.1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.1"/><data column="0" line="1" realPart="0.1"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.1"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="48d7e1f7:16711003a12:-7e21"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="48d7e1f7:16711003a12:-7e21"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="156.3773266666667"/><data column="1" line="0" realPart="-202.33333333333331"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="7.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="5.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="48d7e1f7:16711003a12:-7e1e"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="48d7e1f7:16711003a12:-7e1e"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="140.0"/><data column="0" line="2" realPart="166.8773266666667"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-44.0"/><data column="0" line="1" realPart="-220.0"/><data column="0" line="2" realPart="-191.33333333333331"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="165.71066000000005"/><data column="0" line="1" realPart="169.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-206.33333333333331"/><data column="0" line="1" realPart="-146.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="168.04399333333336"/><data column="0" line="1" realPart="180.70999999999998"/><data column="0" line="2" realPart="140.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-206.33333333333331"/><data column="0" line="1" realPart="-90.0"/><data column="0" line="2" realPart="-90.0"/><data column="0" line="3" realPart="4.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="510.0" y="70.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="-13640e5a:13894ab8a5f:-7ccd" ordering="1" parent="-13640e5a:13894ab8a5f:-7cce" style="CommandPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><CommandControlLink id="-13640e5a:13894ab8a5f:-7cc9" parent="73523f48:134cd91c16f:-7c19" source="-13640e5a:13894ab8a5f:-7ccd" target="73523f48:134cd91c16f:-7b40"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="530.0" y="114.0"/><mxPoint as="targetPoint" x="530.0" y="150.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="530.0" y="150.0"/></Array></mxGeometry></CommandControlLink><BasicBlock dependsOnU="1" id="48d7e1f7:16711003a12:-7e02" interfaceFunctionName="Resistor" parent="73523f48:134cd91c16f:-7c19" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="4"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="20.0" width="40.0" x="130.0" y="90.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="48d7e1f7:16711003a12:-7dfe" ordering="1" parent="48d7e1f7:16711003a12:-7e02" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="48d7e1f7:16711003a12:-7dfd" ordering="1" parent="48d7e1f7:16711003a12:-7e02" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="6.0"/></ImplicitOutputPort><BasicBlock angle="90" dependsOnU="1" id="48d7e1f7:16711003a12:-7df9" interfaceFunctionName="Resistor" parent="73523f48:134cd91c16f:-7c19" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;flip=true;rotation=90"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="6"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="20.0" width="40.0" x="220.0" y="200.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="48d7e1f7:16711003a12:-7def" ordering="1" parent="48d7e1f7:16711003a12:-7df9" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10.0;rotation=90" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="48d7e1f7:16711003a12:-7dee" ordering="1" parent="48d7e1f7:16711003a12:-7df9" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10.0;rotation=90" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="20.0"/></ImplicitOutputPort><BasicBlock angle="90" dependsOnU="1" id="48d7e1f7:16711003a12:-7dea" interfaceFunctionName="Resistor" parent="73523f48:134cd91c16f:-7c19" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;flip=true;rotation=90"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="3"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="20.0" width="40.0" x="310.0" y="200.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="48d7e1f7:16711003a12:-7de3" ordering="1" parent="48d7e1f7:16711003a12:-7dea" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10.0;rotation=90" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="48d7e1f7:16711003a12:-7de2" ordering="1" parent="48d7e1f7:16711003a12:-7dea" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10.0;rotation=90" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="20.0"/></ImplicitOutputPort><GroundBlock dependsOnU="1" id="48d7e1f7:16711003a12:-7ddd" interfaceFunctionName="Ground" parent="73523f48:134cd91c16f:-7c19" simulationFunctionName="Ground" simulationFunctionType="DEFAULT" style="Ground"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Ground"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="20.0" width="20.0" x="230.0" y="350.0"/></GroundBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="48d7e1f7:16711003a12:-7ddc" ordering="1" parent="48d7e1f7:16711003a12:-7ddd" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10.0;rotation=90" value=""><Orientation as="orientation" value="NORTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="6.0" y="-8.0"/></ImplicitInputPort><BasicBlock angle="270" dependsOnU="1" id="48d7e1f7:16711003a12:-7dd5" interfaceFunctionName="SineVoltage" parent="73523f48:134cd91c16f:-7c19" simulationFunctionName="SineVoltage" simulationFunctionType="DEFAULT" style="SineVoltage;rotation=270"><ScilabString as="exprs" height="5" width="1"><data column="0" line="0" value="12"/><data column="0" line="1" value="0"/><data column="0" line="2" value="0.159"/><data column="0" line="3" value="0"/><data column="0" line="4" value="0"/></ScilabString><ScilabDouble as="realParameters" height="5" width="1"><data column="0" line="0" realPart="12.0"/><data column="0" line="1" realPart="0.0"/><data column="0" line="2" realPart="0.159"/><data column="0" line="3" realPart="0.0"/><data column="0" line="4" realPart="0.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="SineVoltage"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="5" width="1"><data column="0" line="0" value="V"/><data column="0" line="1" value="phase"/><data column="0" line="2" value="freqHz"/><data column="0" line="3" value="offset"/><data column="0" line="4" value="startTime"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="12.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.159"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="60.0" y="160.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="48d7e1f7:16711003a12:-7dd1" ordering="1" parent="48d7e1f7:16711003a12:-7dd5" style="ImplicitInputPort;align=center;verticalAlign=bottom;spacing=10.0;rotation=270" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="48d7e1f7:16711003a12:-7dd0" ordering="1" parent="48d7e1f7:16711003a12:-7dd5" style="ImplicitOutputPort;align=center;verticalAlign=top;spacing=10.0;rotation=270" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitOutputPort><VoltageSensorBlock dependsOnU="1" id="48d7e1f7:16711003a12:-7dc7" interfaceFunctionName="VoltageSensor" parent="73523f48:134cd91c16f:-7c19" simulationFunctionName="VoltageSensor" simulationFunctionType="DEFAULT" style="VoltageSensor"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="VoltageSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="v"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="410.0" y="150.0"/></VoltageSensorBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="48d7e1f7:16711003a12:-7dc6" ordering="1" parent="48d7e1f7:16711003a12:-7dc7" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="48d7e1f7:16711003a12:-7dc5" ordering="1" parent="48d7e1f7:16711003a12:-7dc7" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10.0;rotation=90" value=""><Orientation as="orientation" value="SOUTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="48d7e1f7:16711003a12:-7dc4" ordering="2" parent="48d7e1f7:16711003a12:-7dc7" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ImplicitLink id="48d7e1f7:16711003a12:-7db6" parent="73523f48:134cd91c16f:-7c19" source="48d7e1f7:16711003a12:-7dd0" target="48d7e1f7:16711003a12:-7dfe"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="80.0" y="160.0"/><mxPoint as="targetPoint" x="120.0" y="100.0"/><Array as="points" scilabClass=""><mxPoint x="80.0" y="100.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="48d7e1f7:16711003a12:-7db3" interfaceFunctionName="IMPSPLIT_f" parent="73523f48:134cd91c16f:-7c19" simulationFunctionType="DEFAULT" style="IMPSPLIT_f"><mxGeometry as="geometry" height="7.0" width="7.0" x="237.0" y="97.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="48d7e1f7:16711003a12:-7db2" ordering="1" parent="48d7e1f7:16711003a12:-7db3" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="48d7e1f7:16711003a12:-7db1" ordering="1" parent="48d7e1f7:16711003a12:-7db3" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="48d7e1f7:16711003a12:-7db0" ordering="2" parent="48d7e1f7:16711003a12:-7db3" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="48d7e1f7:16711003a12:-7daf" parent="73523f48:134cd91c16f:-7c19" source="48d7e1f7:16711003a12:-7dfd" target="48d7e1f7:16711003a12:-7db2"><mxGeometry as="geometry"><Array as="points" scilabClass=""/></mxGeometry></ImplicitLink><ImplicitLink id="48d7e1f7:16711003a12:-7dae" parent="73523f48:134cd91c16f:-7c19" source="48d7e1f7:16711003a12:-7db1" target="48d7e1f7:16711003a12:-7def"><mxGeometry as="geometry"><Array as="points" scilabClass=""/></mxGeometry></ImplicitLink><SplitBlock id="48d7e1f7:16711003a12:-7daa" interfaceFunctionName="IMPSPLIT_f" parent="73523f48:134cd91c16f:-7c19" simulationFunctionType="DEFAULT" style="IMPSPLIT_f"><mxGeometry as="geometry" height="7.0" width="7.0" x="237.0" y="297.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="48d7e1f7:16711003a12:-7da9" ordering="1" parent="48d7e1f7:16711003a12:-7daa" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="48d7e1f7:16711003a12:-7da8" ordering="1" parent="48d7e1f7:16711003a12:-7daa" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="48d7e1f7:16711003a12:-7da7" ordering="2" parent="48d7e1f7:16711003a12:-7daa" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="48d7e1f7:16711003a12:-7da5" parent="73523f48:134cd91c16f:-7c19" source="48d7e1f7:16711003a12:-7da8" target="48d7e1f7:16711003a12:-7dd1"><mxGeometry as="geometry"><Array as="points" scilabClass=""><mxPoint x="80.0" y="300.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="48d7e1f7:16711003a12:-7d9e" interfaceFunctionName="IMPSPLIT_f" parent="73523f48:134cd91c16f:-7c19" simulationFunctionType="DEFAULT" style="IMPSPLIT_f"><mxGeometry as="geometry" height="7.0" width="7.0" x="237.0" y="297.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="48d7e1f7:16711003a12:-7d9d" ordering="1" parent="48d7e1f7:16711003a12:-7d9e" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="48d7e1f7:16711003a12:-7d9c" ordering="1" parent="48d7e1f7:16711003a12:-7d9e" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="48d7e1f7:16711003a12:-7d9b" ordering="2" parent="48d7e1f7:16711003a12:-7d9e" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="48d7e1f7:16711003a12:-7d9a" parent="73523f48:134cd91c16f:-7c19" source="48d7e1f7:16711003a12:-7dee" target="48d7e1f7:16711003a12:-7d9d"><mxGeometry as="geometry"><Array as="points" scilabClass=""/></mxGeometry></ImplicitLink><ImplicitLink id="48d7e1f7:16711003a12:-7d99" parent="73523f48:134cd91c16f:-7c19" source="48d7e1f7:16711003a12:-7d9c" target="48d7e1f7:16711003a12:-7da9"><mxGeometry as="geometry"><Array as="points" scilabClass=""/></mxGeometry></ImplicitLink><ImplicitLink id="48d7e1f7:16711003a12:-7d9f" parent="73523f48:134cd91c16f:-7c19" source="48d7e1f7:16711003a12:-7d9b" target="48d7e1f7:16711003a12:-7ddc"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="240.0" y="350.0"/><mxPoint as="targetPoint" x="240.0" y="300.0"/></mxGeometry></ImplicitLink><SplitBlock id="48d7e1f7:16711003a12:-7d92" interfaceFunctionName="IMPSPLIT_f" parent="73523f48:134cd91c16f:-7c19" simulationFunctionType="DEFAULT" style="IMPSPLIT_f"><mxGeometry as="geometry" height="7.0" width="7.0" x="327.0" y="257.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="48d7e1f7:16711003a12:-7d91" ordering="1" parent="48d7e1f7:16711003a12:-7d92" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="48d7e1f7:16711003a12:-7d90" ordering="1" parent="48d7e1f7:16711003a12:-7d92" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="48d7e1f7:16711003a12:-7d8f" ordering="2" parent="48d7e1f7:16711003a12:-7d92" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="48d7e1f7:16711003a12:-7d8e" parent="73523f48:134cd91c16f:-7c19" source="48d7e1f7:16711003a12:-7de2" target="48d7e1f7:16711003a12:-7d91"><mxGeometry as="geometry"><Array as="points" scilabClass=""/></mxGeometry></ImplicitLink><ImplicitLink id="48d7e1f7:16711003a12:-7d8d" parent="73523f48:134cd91c16f:-7c19" source="48d7e1f7:16711003a12:-7da7" target="48d7e1f7:16711003a12:-7d90"><mxGeometry as="geometry"><Array as="points" scilabClass=""><mxPoint x="330.0" y="300.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="48d7e1f7:16711003a12:-7d93" parent="73523f48:134cd91c16f:-7c19" source="48d7e1f7:16711003a12:-7dc5" target="48d7e1f7:16711003a12:-7d8f"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="430.0" y="190.0"/><mxPoint as="targetPoint" x="330.0" y="260.0"/><Array as="points" scilabClass=""><mxPoint x="430.0" y="260.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="48d7e1f7:16711003a12:-7d8b" interfaceFunctionName="IMPSPLIT_f" parent="73523f48:134cd91c16f:-7c19" simulationFunctionType="DEFAULT" style="IMPSPLIT_f"><mxGeometry as="geometry" height="7.0" width="7.0" x="327.0" y="167.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="48d7e1f7:16711003a12:-7d8a" ordering="1" parent="48d7e1f7:16711003a12:-7d8b" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="48d7e1f7:16711003a12:-7d89" ordering="1" parent="48d7e1f7:16711003a12:-7d8b" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="48d7e1f7:16711003a12:-7d88" ordering="2" parent="48d7e1f7:16711003a12:-7d8b" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="48d7e1f7:16711003a12:-7d87" parent="73523f48:134cd91c16f:-7c19" source="48d7e1f7:16711003a12:-7db0" target="48d7e1f7:16711003a12:-7d8a"><mxGeometry as="geometry"><Array as="points" scilabClass=""><mxPoint x="330.0" y="100.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="48d7e1f7:16711003a12:-7d86" parent="73523f48:134cd91c16f:-7c19" source="48d7e1f7:16711003a12:-7d89" target="48d7e1f7:16711003a12:-7de3"><mxGeometry as="geometry"><Array as="points" scilabClass=""/></mxGeometry></ImplicitLink><ImplicitLink id="48d7e1f7:16711003a12:-7d8c" parent="73523f48:134cd91c16f:-7c19" source="48d7e1f7:16711003a12:-7d88" target="48d7e1f7:16711003a12:-7dc6"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="410.0" y="170.0"/><mxPoint as="targetPoint" x="330.0" y="170.0"/></mxGeometry></ImplicitLink><ExplicitLink id="48d7e1f7:16711003a12:-7d85" parent="73523f48:134cd91c16f:-7c19" source="48d7e1f7:16711003a12:-7dc4" target="73523f48:134cd91c16f:-7b41"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="450.0" y="170.0"/><mxPoint as="targetPoint" x="510.0" y="170.0"/></mxGeometry></ExplicitLink></root></mxGraphModel><mxCell as="defaultParent" id="73523f48:134cd91c16f:-7c19" parent="73523f48:134cd91c16f:-7c18"/></XcosDiagram>
\ No newline at end of file diff --git a/Working_Examples/215/CH3/EX3.14/Figure3_14.jpg b/Working_Examples/215/CH3/EX3.14/Figure3_14.jpg Binary files differnew file mode 100755 index 0000000..ccef5cc --- /dev/null +++ b/Working_Examples/215/CH3/EX3.14/Figure3_14.jpg diff --git a/Working_Examples/215/CH3/EX3.14/Figure3_14_xcos.jpg b/Working_Examples/215/CH3/EX3.14/Figure3_14_xcos.jpg Binary files differnew file mode 100755 index 0000000..ba0a361 --- /dev/null +++ b/Working_Examples/215/CH3/EX3.14/Figure3_14_xcos.jpg diff --git a/Working_Examples/215/CH3/EX3.14/ex3_14.xcos b/Working_Examples/215/CH3/EX3.14/ex3_14.xcos new file mode 100755 index 0000000..ae850c6 --- /dev/null +++ b/Working_Examples/215/CH3/EX3.14/ex3_14.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" finalIntegrationTime="30.0" title="ex3_14"><!--Xcos - 1.0 - scilab-5.5.2 - 20160406 2040--><mxGraphModel as="model"><root><mxCell id="73523f48:134cd91c16f:-7cc9"/><mxCell id="73523f48:134cd91c16f:-7cca" parent="73523f48:134cd91c16f:-7cc9"/><BasicBlock dependsOnU="1" id="48d7e1f7:16711003a12:-7c2a" interfaceFunctionName="CSCOPE" ordering="6" parent="73523f48:134cd91c16f:-7cca" simulationFunctionName="cscope" simulationFunctionType="C_OR_FORTRAN" style="CSCOPE;flip=false;mirror=false"><ScilabString as="exprs" height="10" width="1"><data column="0" line="0" value="1 3 5 7 9 11 13 15"/><data column="0" line="1" value="-1"/><data column="0" line="2" value="[]"/><data column="0" line="3" value="[600;400]"/><data column="0" line="4" value="-4.2"/><data column="0" line="5" value="4.2"/><data column="0" line="6" value="30"/><data column="0" line="7" value="20"/><data column="0" line="8" value="0"/><data column="0" line="9" value=""/></ScilabString><ScilabDouble as="realParameters" height="4" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="-4.2"/><data column="0" line="2" realPart="4.2"/><data column="0" line="3" realPart="30.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="15" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="1.0"/><data column="0" line="4" realPart="3.0"/><data column="0" line="5" realPart="5.0"/><data column="0" line="6" realPart="7.0"/><data column="0" line="7" realPart="9.0"/><data column="0" line="8" realPart="11.0"/><data column="0" line="9" realPart="13.0"/><data column="0" line="10" realPart="15.0"/><data column="0" line="11" realPart="-1.0"/><data column="0" line="12" realPart="-1.0"/><data column="0" line="13" realPart="600.0"/><data column="0" line="14" realPart="400.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="400.0" y="100.0"/></BasicBlock><ControlPort dataType="UNKNOW_TYPE" id="48d7e1f7:16711003a12:-7c29" ordering="1" parent="48d7e1f7:16711003a12:-7c2a" style="ControlPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="48d7e1f7:16711003a12:-7c28" ordering="1" parent="48d7e1f7:16711003a12:-7c2a" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><BasicBlock blockType="h" id="48d7e1f7:16711003a12:-7c27" interfaceFunctionName="CLOCK_c" ordering="13" parent="73523f48:134cd91c16f:-7cca" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="219.0"/><data column="1" line="0" realPart="-250.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="48d7e1f7:16711003a12:-7e23"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="48d7e1f7:16711003a12:-7e23"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.1"/><data column="0" line="1" value="0.1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.1"/><data column="0" line="1" realPart="0.1"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.1"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="48d7e1f7:16711003a12:-7e21"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="48d7e1f7:16711003a12:-7e21"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="288.3773266666667"/><data column="1" line="0" realPart="-334.3333333333333"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="7.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="5.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="48d7e1f7:16711003a12:-7e1e"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="48d7e1f7:16711003a12:-7e1e"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="300.0"/><data column="0" line="2" realPart="298.8773266666667"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-44.0"/><data column="0" line="1" realPart="-380.0"/><data column="0" line="2" realPart="-323.3333333333333"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="297.71066"/><data column="0" line="1" realPart="249.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-338.3333333333333"/><data column="0" line="1" realPart="-226.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="300.0439933333334"/><data column="0" line="1" realPart="340.71"/><data column="0" line="2" realPart="300.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-338.3333333333333"/><data column="0" line="1" realPart="-250.0"/><data column="0" line="2" realPart="-250.0"/><data column="0" line="3" realPart="4.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="400.0" y="20.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="48d7e1f7:16711003a12:-7c26" ordering="1" parent="48d7e1f7:16711003a12:-7c27" style="CommandPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><CommandControlLink id="48d7e1f7:16711003a12:-7c25" parent="73523f48:134cd91c16f:-7cca" source="48d7e1f7:16711003a12:-7c26" target="48d7e1f7:16711003a12:-7c29"><mxGeometry as="geometry" x="-110.0" y="-50.0"><mxPoint as="sourcePoint" x="420.0" y="64.0"/><mxPoint as="targetPoint" x="420.0" y="100.0"/><Array as="points" scilabClass=""><mxPoint x="420.0" y="100.0"/></Array></mxGeometry></CommandControlLink><BasicBlock dependsOnU="1" id="48d7e1f7:16711003a12:-7c24" interfaceFunctionName="Resistor" parent="73523f48:134cd91c16f:-7cca" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="4"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="20.0" width="40.0" x="140.0" y="100.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="48d7e1f7:16711003a12:-7c23" ordering="1" parent="48d7e1f7:16711003a12:-7c24" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="48d7e1f7:16711003a12:-7c22" ordering="1" parent="48d7e1f7:16711003a12:-7c24" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="6.0"/></ImplicitOutputPort><BasicBlock angle="90" dependsOnU="1" id="48d7e1f7:16711003a12:-7c21" interfaceFunctionName="Resistor" parent="73523f48:134cd91c16f:-7cca" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;flip=true;rotation=90;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="6"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="20.0" width="40.0" x="230.0" y="210.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="48d7e1f7:16711003a12:-7c20" ordering="1" parent="48d7e1f7:16711003a12:-7c21" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10.0;rotation=90;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="48d7e1f7:16711003a12:-7c1f" ordering="1" parent="48d7e1f7:16711003a12:-7c21" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10.0;rotation=90;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="20.0"/></ImplicitOutputPort><BasicBlock angle="90" dependsOnU="1" id="48d7e1f7:16711003a12:-7c1e" interfaceFunctionName="Resistor" parent="73523f48:134cd91c16f:-7cca" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;flip=true;rotation=90;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="3"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="20.0" width="40.0" x="320.0" y="210.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="48d7e1f7:16711003a12:-7c1d" ordering="1" parent="48d7e1f7:16711003a12:-7c1e" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10.0;rotation=90;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="48d7e1f7:16711003a12:-7c1c" ordering="1" parent="48d7e1f7:16711003a12:-7c1e" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10.0;rotation=90;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="20.0"/></ImplicitOutputPort><GroundBlock dependsOnU="1" id="48d7e1f7:16711003a12:-7c1b" interfaceFunctionName="Ground" parent="73523f48:134cd91c16f:-7cca" simulationFunctionName="Ground" simulationFunctionType="DEFAULT" style="Ground;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Ground"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="20.0" width="20.0" x="240.0" y="360.0"/></GroundBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="48d7e1f7:16711003a12:-7c1a" ordering="1" parent="48d7e1f7:16711003a12:-7c1b" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10.0;rotation=90;flip=false;mirror=false" value=""><Orientation as="orientation" value="NORTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="6.0" y="-8.0"/></ImplicitInputPort><BasicBlock angle="270" dependsOnU="1" id="48d7e1f7:16711003a12:-7c19" interfaceFunctionName="SineVoltage" parent="73523f48:134cd91c16f:-7cca" simulationFunctionName="SineVoltage" simulationFunctionType="DEFAULT" style="SineVoltage;rotation=270;flip=false;mirror=false"><ScilabString as="exprs" height="5" width="1"><data column="0" line="0" value="12"/><data column="0" line="1" value="0"/><data column="0" line="2" value="0.159"/><data column="0" line="3" value="0"/><data column="0" line="4" value="0"/></ScilabString><ScilabDouble as="realParameters" height="5" width="1"><data column="0" line="0" realPart="12.0"/><data column="0" line="1" realPart="0.0"/><data column="0" line="2" realPart="0.159"/><data column="0" line="3" realPart="0.0"/><data column="0" line="4" realPart="0.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="SineVoltage"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="5" width="1"><data column="0" line="0" value="V"/><data column="0" line="1" value="phase"/><data column="0" line="2" value="freqHz"/><data column="0" line="3" value="offset"/><data column="0" line="4" value="startTime"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="12.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.159"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="70.0" y="170.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="48d7e1f7:16711003a12:-7c18" ordering="1" parent="48d7e1f7:16711003a12:-7c19" style="ImplicitInputPort;align=center;verticalAlign=bottom;spacing=10.0;rotation=270;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="48d7e1f7:16711003a12:-7c17" ordering="1" parent="48d7e1f7:16711003a12:-7c19" style="ImplicitOutputPort;align=center;verticalAlign=top;spacing=10.0;rotation=270;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitOutputPort><ImplicitLink id="48d7e1f7:16711003a12:-7c12" parent="73523f48:134cd91c16f:-7cca" source="48d7e1f7:16711003a12:-7c17" target="48d7e1f7:16711003a12:-7c23"><mxGeometry as="geometry" x="10.0" y="10.0"><mxPoint as="sourcePoint" x="90.0" y="170.0"/><mxPoint as="targetPoint" x="130.0" y="110.0"/><Array as="points" scilabClass=""><mxPoint x="90.0" y="110.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="48d7e1f7:16711003a12:-7c0b" interfaceFunctionName="IMPSPLIT_f" parent="73523f48:134cd91c16f:-7cca" simulationFunctionType="DEFAULT" style="IMPSPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="247.0" y="307.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="48d7e1f7:16711003a12:-7c0a" ordering="1" parent="48d7e1f7:16711003a12:-7c0b" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="48d7e1f7:16711003a12:-7c09" ordering="1" parent="48d7e1f7:16711003a12:-7c0b" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="48d7e1f7:16711003a12:-7c08" ordering="2" parent="48d7e1f7:16711003a12:-7c0b" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="48d7e1f7:16711003a12:-7c07" parent="73523f48:134cd91c16f:-7cca" source="48d7e1f7:16711003a12:-7c09" target="48d7e1f7:16711003a12:-7c18"><mxGeometry as="geometry" x="10.0" y="10.0"><Array as="points" scilabClass=""><mxPoint x="90.0" y="310.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="48d7e1f7:16711003a12:-7c06" interfaceFunctionName="IMPSPLIT_f" parent="73523f48:134cd91c16f:-7cca" simulationFunctionType="DEFAULT" style="IMPSPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="247.0" y="307.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="48d7e1f7:16711003a12:-7c05" ordering="1" parent="48d7e1f7:16711003a12:-7c06" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="48d7e1f7:16711003a12:-7c04" ordering="1" parent="48d7e1f7:16711003a12:-7c06" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="48d7e1f7:16711003a12:-7c03" ordering="2" parent="48d7e1f7:16711003a12:-7c06" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="48d7e1f7:16711003a12:-7c02" parent="73523f48:134cd91c16f:-7cca" source="48d7e1f7:16711003a12:-7c1f" target="48d7e1f7:16711003a12:-7c05"><mxGeometry as="geometry" x="10.0" y="10.0"><Array as="points" scilabClass=""/></mxGeometry></ImplicitLink><ImplicitLink id="48d7e1f7:16711003a12:-7c01" parent="73523f48:134cd91c16f:-7cca" source="48d7e1f7:16711003a12:-7c04" target="48d7e1f7:16711003a12:-7c0a"><mxGeometry as="geometry" x="10.0" y="10.0"><Array as="points" scilabClass=""/></mxGeometry></ImplicitLink><ImplicitLink id="48d7e1f7:16711003a12:-7c00" parent="73523f48:134cd91c16f:-7cca" source="48d7e1f7:16711003a12:-7c03" target="48d7e1f7:16711003a12:-7c1a"><mxGeometry as="geometry" x="10.0" y="10.0"><mxPoint as="sourcePoint" x="250.0" y="360.0"/><mxPoint as="targetPoint" x="250.0" y="310.0"/></mxGeometry></ImplicitLink><ImplicitLink id="48d7e1f7:16711003a12:-7bad" parent="73523f48:134cd91c16f:-7cca" source="48d7e1f7:16711003a12:-7c08" target="48d7e1f7:16711003a12:-7c1c"><mxGeometry as="geometry" x="-610.0" y="-50.0"><Array as="points" scilabClass=""><mxPoint x="340.0" y="310.0"/><mxPoint x="340.0" y="310.0"/></Array></mxGeometry></ImplicitLink><BasicBlock dependsOnU="1" id="48d7e1f7:16711003a12:-7b98" interfaceFunctionName="CurrentSensor" parent="73523f48:134cd91c16f:-7cca" simulationFunctionName="CurrentSensor" simulationFunctionType="DEFAULT" style="CurrentSensor"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CurrentSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="i"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="280.0" y="90.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="48d7e1f7:16711003a12:-7b97" ordering="1" parent="48d7e1f7:16711003a12:-7b98" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="48d7e1f7:16711003a12:-7b96" ordering="1" parent="48d7e1f7:16711003a12:-7b98" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="6.0"/></ImplicitOutputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="48d7e1f7:16711003a12:-7b95" ordering="2" parent="48d7e1f7:16711003a12:-7b98" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="26.0"/></ExplicitOutputPort><SplitBlock id="48d7e1f7:16711003a12:-7b87" interfaceFunctionName="IMPSPLIT_f" parent="73523f48:134cd91c16f:-7cca" simulationFunctionType="DEFAULT" style="IMPSPLIT_f"><mxGeometry as="geometry" height="7.0" width="7.0" x="247.0" y="107.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="48d7e1f7:16711003a12:-7b86" ordering="1" parent="48d7e1f7:16711003a12:-7b87" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="48d7e1f7:16711003a12:-7b85" ordering="1" parent="48d7e1f7:16711003a12:-7b87" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="48d7e1f7:16711003a12:-7b84" ordering="2" parent="48d7e1f7:16711003a12:-7b87" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="48d7e1f7:16711003a12:-7b83" parent="73523f48:134cd91c16f:-7cca" source="48d7e1f7:16711003a12:-7c22" target="48d7e1f7:16711003a12:-7b86"><mxGeometry as="geometry" x="-610.0" y="-50.0"><Array as="points" scilabClass=""/></mxGeometry></ImplicitLink><ImplicitLink id="48d7e1f7:16711003a12:-7b82" parent="73523f48:134cd91c16f:-7cca" source="48d7e1f7:16711003a12:-7b85" target="48d7e1f7:16711003a12:-7c20"><mxGeometry as="geometry" x="-610.0" y="-50.0"><Array as="points" scilabClass=""/></mxGeometry></ImplicitLink><ImplicitLink id="48d7e1f7:16711003a12:-7b88" parent="73523f48:134cd91c16f:-7cca" source="48d7e1f7:16711003a12:-7b84" target="48d7e1f7:16711003a12:-7b97"><mxGeometry as="geometry" x="-610.0" y="-50.0"><mxPoint as="sourcePoint" x="280.0" y="110.0"/><mxPoint as="targetPoint" x="250.0" y="110.0"/></mxGeometry></ImplicitLink><ExplicitLink id="48d7e1f7:16711003a12:-7b7b" parent="73523f48:134cd91c16f:-7cca" source="48d7e1f7:16711003a12:-7b95" target="48d7e1f7:16711003a12:-7c28"><mxGeometry as="geometry" x="-610.0" y="-50.0"><mxPoint as="sourcePoint" x="320.0" y="120.0"/><mxPoint as="targetPoint" x="400.0" y="120.0"/></mxGeometry></ExplicitLink><ImplicitLink id="48d7e1f7:16711003a12:-7b7a" parent="73523f48:134cd91c16f:-7cca" source="48d7e1f7:16711003a12:-7b96" target="48d7e1f7:16711003a12:-7c1d"><mxGeometry as="geometry" x="-610.0" y="-50.0"><mxPoint as="sourcePoint" x="320.0" y="100.0"/><mxPoint as="targetPoint" x="340.0" y="210.0"/><Array as="points" scilabClass=""><mxPoint x="340.0" y="100.0"/></Array></mxGeometry></ImplicitLink></root></mxGraphModel><mxCell as="defaultParent" id="73523f48:134cd91c16f:-7cca" parent="73523f48:134cd91c16f:-7cc9"/></XcosDiagram>
\ No newline at end of file diff --git a/Working_Examples/215/CH3/EX3.2/Figure3_2.jpg b/Working_Examples/215/CH3/EX3.2/Figure3_2.jpg Binary files differnew file mode 100755 index 0000000..142e1ee --- /dev/null +++ b/Working_Examples/215/CH3/EX3.2/Figure3_2.jpg diff --git a/Working_Examples/215/CH3/EX3.2/Figure3_2_xcos.jpg b/Working_Examples/215/CH3/EX3.2/Figure3_2_xcos.jpg Binary files differnew file mode 100755 index 0000000..b6e12d6 --- /dev/null +++ b/Working_Examples/215/CH3/EX3.2/Figure3_2_xcos.jpg diff --git a/Working_Examples/215/CH3/EX3.2/ex3_2.xcos b/Working_Examples/215/CH3/EX3.2/ex3_2.xcos new file mode 100755 index 0000000..1812064 --- /dev/null +++ b/Working_Examples/215/CH3/EX3.2/ex3_2.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" finalIntegrationTime="30.0" title="ex3_2"><!--Xcos - 1.0 - scilab-5.5.2 - 20160406 2040--><mxGraphModel as="model"><root><mxCell id="-3721b5e:1319cfae9ac:-7f2f"/><mxCell id="-3721b5e:1319cfae9ac:-7f30" parent="-3721b5e:1319cfae9ac:-7f2f"/><BasicBlock angle="90" dependsOnU="1" id="29345a73:13501d7c6cc:-7fd6" interfaceFunctionName="Resistor" ordering="1" parent="-3721b5e:1319cfae9ac:-7f30" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="100"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="100.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="230.0" y="210.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-3721b5e:1319cfae9ac:-7e9e" ordering="1" parent="29345a73:13501d7c6cc:-7fd6" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-3721b5e:1319cfae9ac:-7e9f" ordering="1" parent="29345a73:13501d7c6cc:-7fd6" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock angle="180" id="29345a73:13501d7c6cc:-7fd3" interfaceFunctionName="ConstantVoltage" ordering="2" parent="-3721b5e:1319cfae9ac:-7f30" simulationFunctionName="ConstantVoltage" simulationFunctionType="DEFAULT" style="ConstantVoltage;rotation=180;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="7"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="7.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ConstantVoltage"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="V"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="7.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="140.0" y="120.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-3721b5e:1319cfae9ac:-7ea2" ordering="1" parent="29345a73:13501d7c6cc:-7fd3" style="ImplicitOutputPort;align=left;verticalAlign=middle;spacing=10;rotation=180;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-3721b5e:1319cfae9ac:-7ea3" ordering="1" parent="29345a73:13501d7c6cc:-7fd3" style="ImplicitInputPort;align=right;verticalAlign=middle;spacing=10;rotation=180;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitInputPort><SplitBlock id="29345a73:13501d7c6cc:-7fd0" ordering="3" parent="-3721b5e:1319cfae9ac:-7f30" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="147.0" y="297.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-3721b5e:1319cfae9ac:-7ef7" ordering="2" parent="29345a73:13501d7c6cc:-7fd0" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-3721b5e:1319cfae9ac:-7ef9" ordering="1" parent="29345a73:13501d7c6cc:-7fd0" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-3721b5e:1319cfae9ac:-7ef8" ordering="1" parent="29345a73:13501d7c6cc:-7fd0" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="-3721b5e:1319cfae9ac:-7ef6" parent="-3721b5e:1319cfae9ac:-7f30" source="-3721b5e:1319cfae9ac:-7ea6" target="-3721b5e:1319cfae9ac:-7ef9"><mxGeometry as="geometry" y="40.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="60.0" y="280.0"/><mxPoint x="60.0" y="300.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-3721b5e:1319cfae9ac:-7ef5" parent="-3721b5e:1319cfae9ac:-7f30" source="-3721b5e:1319cfae9ac:-7e9e" target="-3721b5e:1319cfae9ac:-7ef8"><mxGeometry as="geometry" y="30.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="250.0" y="300.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-3721b5e:1319cfae9ac:-7efb" parent="-3721b5e:1319cfae9ac:-7f30" source="-3721b5e:1319cfae9ac:-7ef7" target="-3721b5e:1319cfae9ac:-7f28"><mxGeometry as="geometry" y="30.0"><mxPoint as="sourcePoint" x="150.0" y="326.0"/><mxPoint as="targetPoint" x="150.0" y="300.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="150.0" y="300.0"/></Array></mxGeometry></ImplicitLink><BasicBlock dependsOnU="1" id="29345a73:13501d7c6cc:-7fc8" interfaceFunctionName="CurrentSensor" ordering="4" parent="-3721b5e:1319cfae9ac:-7f30" simulationFunctionName="CurrentSensor" simulationFunctionType="DEFAULT" style="CurrentSensor;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CurrentSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="i"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="70.0" y="130.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-3721b5e:1319cfae9ac:-7ee8" ordering="1" parent="29345a73:13501d7c6cc:-7fc8" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-3721b5e:1319cfae9ac:-7eea" ordering="1" parent="29345a73:13501d7c6cc:-7fc8" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="6.0"/></ImplicitOutputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-3721b5e:1319cfae9ac:-7ee9" ordering="2" parent="29345a73:13501d7c6cc:-7fc8" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="26.0"/></ExplicitOutputPort><ImplicitLink id="-3721b5e:1319cfae9ac:-7ee3" parent="-3721b5e:1319cfae9ac:-7f30" source="-3721b5e:1319cfae9ac:-7ea7" target="-3721b5e:1319cfae9ac:-7ee8"><mxGeometry as="geometry" y="-10.0"><mxPoint as="sourcePoint" x="60.0" y="206.0"/><mxPoint as="targetPoint" x="60.0" y="150.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="60.0" y="150.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-3721b5e:1319cfae9ac:-7ee2" parent="-3721b5e:1319cfae9ac:-7f30" source="-3721b5e:1319cfae9ac:-7ea2" target="-3721b5e:1319cfae9ac:-7eea"><mxGeometry as="geometry" y="-10.0"><mxPoint as="sourcePoint" x="114.0" y="140.0"/><mxPoint as="targetPoint" x="140.0" y="140.0"/></mxGeometry></ImplicitLink><BasicBlock angle="90" dependsOnU="1" id="29345a73:13501d7c6cc:-7fc2" interfaceFunctionName="PotentialSensor" ordering="5" parent="-3721b5e:1319cfae9ac:-7f30" simulationFunctionName="PotentialSensor" simulationFunctionType="DEFAULT" style="PotentialSensor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="PotentialSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="v"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="290.0" y="210.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-3721b5e:1319cfae9ac:-7ed9" ordering="1" parent="29345a73:13501d7c6cc:-7fc2" style="ExplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-3721b5e:1319cfae9ac:-7ed8" ordering="1" parent="29345a73:13501d7c6cc:-7fc2" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><SplitBlock id="29345a73:13501d7c6cc:-7fbf" ordering="6" parent="-3721b5e:1319cfae9ac:-7f30" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="247.0" y="167.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-3721b5e:1319cfae9ac:-7ed3" ordering="2" parent="29345a73:13501d7c6cc:-7fbf" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-3721b5e:1319cfae9ac:-7ed5" ordering="1" parent="29345a73:13501d7c6cc:-7fbf" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-3721b5e:1319cfae9ac:-7ed4" ordering="1" parent="29345a73:13501d7c6cc:-7fbf" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="-3721b5e:1319cfae9ac:-7ed2" parent="-3721b5e:1319cfae9ac:-7f30" source="-3721b5e:1319cfae9ac:-7ea3" target="-3721b5e:1319cfae9ac:-7ed5"><mxGeometry as="geometry" y="-10.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="250.0" y="140.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-3721b5e:1319cfae9ac:-7ed1" parent="-3721b5e:1319cfae9ac:-7f30" source="-3721b5e:1319cfae9ac:-7ed4" target="-3721b5e:1319cfae9ac:-7e9f"><mxGeometry as="geometry" y="-10.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-3721b5e:1319cfae9ac:-7ed7" parent="-3721b5e:1319cfae9ac:-7f30" source="-3721b5e:1319cfae9ac:-7ed3" target="-3721b5e:1319cfae9ac:-7ed8"><mxGeometry as="geometry" y="-10.0"><mxPoint as="sourcePoint" x="310.0" y="206.0"/><mxPoint as="targetPoint" x="250.0" y="170.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="310.0" y="170.0"/></Array></mxGeometry></ImplicitLink><GroundBlock dependsOnU="1" id="29345a73:13501d7c6cc:-7faa" interfaceFunctionName="Ground" ordering="7" parent="-3721b5e:1319cfae9ac:-7f30" simulationFunctionName="Ground" simulationFunctionType="DEFAULT" style="Ground;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Ground"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="130.0" y="320.0"/></GroundBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-3721b5e:1319cfae9ac:-7f28" ordering="1" parent="29345a73:13501d7c6cc:-7faa" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><Orientation as="orientation" value="NORTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="29345a73:13501d7c6cc:-7f7b" interfaceFunctionName="CMSCOPE" ordering="8" parent="-3721b5e:1319cfae9ac:-7f30" simulationFunctionName="cmscope" simulationFunctionType="C_OR_FORTRAN" style="CMSCOPE;flip=false;mirror=false"><ScilabString as="exprs" height="11" width="1"><data column="0" line="0" value="1 1"/><data column="0" line="1" value="1 3 5 7 9 11 13 15"/><data column="0" line="2" value="-1"/><data column="0" line="3" value="[]"/><data column="0" line="4" value="[]"/><data column="0" line="5" value="0.1 11"/><data column="0" line="6" value=".15 13"/><data column="0" line="7" value="30 30"/><data column="0" line="8" value="20"/><data column="0" line="9" value="0"/><data column="0" line="10" value=""/></ScilabString><ScilabDouble as="realParameters" height="7" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="30.0"/><data column="0" line="2" realPart="30.0"/><data column="0" line="3" realPart="0.1"/><data column="0" line="4" realPart="0.15"/><data column="0" line="5" realPart="11.0"/><data column="0" line="6" realPart="13.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="12" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="2.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="-1.0"/><data column="0" line="4" realPart="-1.0"/><data column="0" line="5" realPart="-1.0"/><data column="0" line="6" realPart="-1.0"/><data column="0" line="7" realPart="1.0"/><data column="0" line="8" realPart="1.0"/><data column="0" line="9" realPart="1.0"/><data column="0" line="10" realPart="3.0"/><data column="0" line="11" realPart="0.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="360.0" y="110.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="29345a73:13501d7c6cc:-7f72" ordering="1" parent="29345a73:13501d7c6cc:-7f7b" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ExplicitInputPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="29345a73:13501d7c6cc:-7f71" ordering="2" parent="29345a73:13501d7c6cc:-7f7b" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="26.0"/></ExplicitInputPort><ControlPort dataType="UNKNOW_TYPE" id="29345a73:13501d7c6cc:-7f70" ordering="1" parent="29345a73:13501d7c6cc:-7f7b" style="ControlPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><ExplicitLink id="29345a73:13501d7c6cc:-7f75" parent="-3721b5e:1319cfae9ac:-7f30" source="-3721b5e:1319cfae9ac:-7ed9" target="29345a73:13501d7c6cc:-7f71"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="310.0" y="250.0"/><mxPoint as="targetPoint" x="350.0" y="140.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="310.0" y="260.0"/><mxPoint x="340.0" y="260.0"/><mxPoint x="340.0" y="140.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="29345a73:13501d7c6cc:-7f74" parent="-3721b5e:1319cfae9ac:-7f30" source="-3721b5e:1319cfae9ac:-7ee9" target="29345a73:13501d7c6cc:-7f72"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="110.0" y="160.0"/><mxPoint as="targetPoint" x="350.0" y="120.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="120.0" y="160.0"/><mxPoint x="120.0" y="120.0"/></Array></mxGeometry></ExplicitLink><BasicBlock angle="90" id="29345a73:13501d7c6cc:-7fd9" interfaceFunctionName="ConstantVoltage" ordering="9" parent="-3721b5e:1319cfae9ac:-7f30" simulationFunctionName="ConstantVoltage" simulationFunctionType="DEFAULT" style="ConstantVoltage;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="5"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ConstantVoltage"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="V"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="40.0" y="210.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-3721b5e:1319cfae9ac:-7ea6" ordering="1" parent="29345a73:13501d7c6cc:-7fd9" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-3721b5e:1319cfae9ac:-7ea7" ordering="1" parent="29345a73:13501d7c6cc:-7fd9" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock blockType="h" id="-13640e5a:13894ab8a5f:-7f44" interfaceFunctionName="CLOCK_c" ordering="10" parent="-3721b5e:1319cfae9ac:-7f30" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="119.0"/><data column="1" line="0" realPart="-150.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="48d7e1f7:16711003a12:-7ad4"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="48d7e1f7:16711003a12:-7ad4"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.1"/><data column="0" line="1" value="0.1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.1"/><data column="0" line="1" realPart="0.1"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.1"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="48d7e1f7:16711003a12:-7ad2"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="48d7e1f7:16711003a12:-7ad2"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="123.3773266666667"/><data column="1" line="0" realPart="-169.33333333333331"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="7.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="5.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="48d7e1f7:16711003a12:-7acf"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="48d7e1f7:16711003a12:-7acf"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="100.0"/><data column="0" line="2" realPart="133.8773266666667"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-44.0"/><data column="0" line="1" realPart="-180.0"/><data column="0" line="2" realPart="-158.33333333333331"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="132.71066000000005"/><data column="0" line="1" realPart="149.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-173.33333333333331"/><data column="0" line="1" realPart="-126.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="135.04399333333336"/><data column="0" line="1" realPart="140.70999999999998"/><data column="0" line="2" realPart="100.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-173.33333333333331"/><data column="0" line="1" realPart="-50.0"/><data column="0" line="2" realPart="-50.0"/><data column="0" line="3" realPart="4.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="360.0" y="30.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="-13640e5a:13894ab8a5f:-7f43" ordering="1" parent="-13640e5a:13894ab8a5f:-7f44" style="CommandPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><CommandControlLink id="-13640e5a:13894ab8a5f:-7f40" parent="-3721b5e:1319cfae9ac:-7f30" source="-13640e5a:13894ab8a5f:-7f43" target="29345a73:13501d7c6cc:-7f70"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="380.0" y="74.0"/><mxPoint as="targetPoint" x="380.0" y="110.0"/></mxGeometry></CommandControlLink></root></mxGraphModel><mxCell as="defaultParent" id="-3721b5e:1319cfae9ac:-7f30" parent="-3721b5e:1319cfae9ac:-7f2f"/></XcosDiagram>
\ No newline at end of file diff --git a/Working_Examples/215/CH3/EX3.3/Figure3_3.jpg b/Working_Examples/215/CH3/EX3.3/Figure3_3.jpg Binary files differnew file mode 100755 index 0000000..51abb1b --- /dev/null +++ b/Working_Examples/215/CH3/EX3.3/Figure3_3.jpg diff --git a/Working_Examples/215/CH3/EX3.3/ex3_3.xcos b/Working_Examples/215/CH3/EX3.3/ex3_3.xcos new file mode 100755 index 0000000..3ecd9b4 --- /dev/null +++ b/Working_Examples/215/CH3/EX3.3/ex3_3.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" finalIntegrationTime="30.0" title="ex3_3"><!--Xcos - 1.0 - scilab-5.5.2 - 20160406 2040--><mxGraphModel as="model"><root><mxCell id="-16593537:1319d63fbbf:-7f7f"/><mxCell id="-16593537:1319d63fbbf:-7f80" parent="-16593537:1319d63fbbf:-7f7f"/><BasicBlock id="25ac1dee:13501c59709:-7f2d" interfaceFunctionName="ConstantVoltage" ordering="1" parent="-16593537:1319d63fbbf:-7f80" simulationFunctionName="ConstantVoltage" simulationFunctionType="DEFAULT" style="ConstantVoltage;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="14"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="14.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ConstantVoltage"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="V"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="14.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="270.0" y="20.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-16593537:1319d63fbbf:-7ee0" ordering="1" parent="25ac1dee:13501c59709:-7f2d" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-16593537:1319d63fbbf:-7ee1" ordering="1" parent="25ac1dee:13501c59709:-7f2d" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><BasicBlock angle="270" id="25ac1dee:13501c59709:-7f2a" interfaceFunctionName="ConstantVoltage" ordering="2" parent="-16593537:1319d63fbbf:-7f80" simulationFunctionName="ConstantVoltage" simulationFunctionType="DEFAULT" style="ConstantVoltage;rotation=270;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="4"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ConstantVoltage"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="V"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="30.0" y="120.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-16593537:1319d63fbbf:-7eec" ordering="1" parent="25ac1dee:13501c59709:-7f2a" style="ImplicitOutputPort;align=center;verticalAlign=top;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-16593537:1319d63fbbf:-7eed" ordering="1" parent="25ac1dee:13501c59709:-7f2a" style="ImplicitInputPort;align=center;verticalAlign=bottom;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitInputPort><BasicBlock id="25ac1dee:13501c59709:-7f27" interfaceFunctionName="ConstantVoltage" ordering="3" parent="-16593537:1319d63fbbf:-7f80" simulationFunctionName="ConstantVoltage" simulationFunctionType="DEFAULT" style="ConstantVoltage;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="12"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="12.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ConstantVoltage"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="V"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="12.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="190.0" y="20.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-16593537:1319d63fbbf:-7ee4" ordering="1" parent="25ac1dee:13501c59709:-7f27" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-16593537:1319d63fbbf:-7ee5" ordering="1" parent="25ac1dee:13501c59709:-7f27" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><VoltageSensorBlock angle="90" dependsOnU="1" id="25ac1dee:13501c59709:-7f24" interfaceFunctionName="VoltageSensor" ordering="4" parent="-16593537:1319d63fbbf:-7f80" simulationFunctionName="VoltageSensor" simulationFunctionType="DEFAULT" style="VoltageSensor;rotation=90;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="VoltageSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="v"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="140.0" y="120.0"/></VoltageSensorBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-16593537:1319d63fbbf:-7f2e" ordering="1" parent="25ac1dee:13501c59709:-7f24" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-16593537:1319d63fbbf:-7f30" ordering="1" parent="25ac1dee:13501c59709:-7f24" style="ImplicitOutputPort;align=left;verticalAlign=middle;spacing=10;rotation=180;flip=false;mirror=false"><Orientation as="orientation" value="SOUTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitOutputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-16593537:1319d63fbbf:-7f2f" ordering="2" parent="25ac1dee:13501c59709:-7f24" style="ExplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ExplicitOutputPort><VoltageSensorBlock angle="90" dependsOnU="1" id="25ac1dee:13501c59709:-7f20" interfaceFunctionName="VoltageSensor" ordering="5" parent="-16593537:1319d63fbbf:-7f80" simulationFunctionName="VoltageSensor" simulationFunctionType="DEFAULT" style="VoltageSensor;rotation=90;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="VoltageSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="v"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="330.0" y="120.0"/></VoltageSensorBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-16593537:1319d63fbbf:-7f26" ordering="1" parent="25ac1dee:13501c59709:-7f20" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-16593537:1319d63fbbf:-7f28" ordering="1" parent="25ac1dee:13501c59709:-7f20" style="ImplicitOutputPort;align=left;verticalAlign=middle;spacing=10;rotation=180;flip=false;mirror=false"><Orientation as="orientation" value="SOUTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitOutputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-16593537:1319d63fbbf:-7f27" ordering="2" parent="25ac1dee:13501c59709:-7f20" style="ExplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ExplicitOutputPort><ImplicitLink id="-16593537:1319d63fbbf:-7f1f" parent="-16593537:1319d63fbbf:-7f80" source="-16593537:1319d63fbbf:-7ee8" target="-16593537:1319d63fbbf:-7eec"><mxGeometry as="geometry" y="-80.0"><mxPoint as="sourcePoint" x="50.0" y="116.0"/><mxPoint as="targetPoint" x="70.0" y="40.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="50.0" y="40.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-16593537:1319d63fbbf:-7f1d" parent="-16593537:1319d63fbbf:-7f80" source="-16593537:1319d63fbbf:-7ee4" target="-16593537:1319d63fbbf:-7ee1"><mxGeometry as="geometry" y="-80.0"><mxPoint as="sourcePoint" x="234.0" y="40.0"/><mxPoint as="targetPoint" x="270.0" y="40.0"/></mxGeometry></ImplicitLink><ImplicitLink id="-16593537:1319d63fbbf:-7f1c" parent="-16593537:1319d63fbbf:-7f80" source="-16593537:1319d63fbbf:-7ee0" target="-16593537:1319d63fbbf:-7f26"><mxGeometry as="geometry" y="-80.0"><mxPoint as="sourcePoint" x="350.0" y="116.0"/><mxPoint as="targetPoint" x="320.0" y="40.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="350.0" y="40.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="25ac1dee:13501c59709:-7f18" ordering="6" parent="-16593537:1319d63fbbf:-7f80" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="157.0" y="37.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-16593537:1319d63fbbf:-7f17" ordering="2" parent="25ac1dee:13501c59709:-7f18" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-16593537:1319d63fbbf:-7f19" ordering="1" parent="25ac1dee:13501c59709:-7f18" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-16593537:1319d63fbbf:-7f18" ordering="1" parent="25ac1dee:13501c59709:-7f18" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="-16593537:1319d63fbbf:-7f16" parent="-16593537:1319d63fbbf:-7f80" source="-16593537:1319d63fbbf:-7ee9" target="-16593537:1319d63fbbf:-7f19"><mxGeometry as="geometry" y="-80.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-16593537:1319d63fbbf:-7f15" parent="-16593537:1319d63fbbf:-7f80" source="-16593537:1319d63fbbf:-7f18" target="-16593537:1319d63fbbf:-7ee5"><mxGeometry as="geometry" y="-80.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-16593537:1319d63fbbf:-7f1b" parent="-16593537:1319d63fbbf:-7f80" source="-16593537:1319d63fbbf:-7f17" target="-16593537:1319d63fbbf:-7f2e"><mxGeometry as="geometry" y="-80.0"><mxPoint as="sourcePoint" x="160.0" y="116.0"/><mxPoint as="targetPoint" x="160.0" y="40.0"/></mxGeometry></ImplicitLink><SplitBlock id="25ac1dee:13501c59709:-7f10" ordering="7" parent="-16593537:1319d63fbbf:-7f80" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="107.0" y="207.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-16593537:1319d63fbbf:-7f0f" ordering="2" parent="25ac1dee:13501c59709:-7f10" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-16593537:1319d63fbbf:-7f11" ordering="1" parent="25ac1dee:13501c59709:-7f10" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-16593537:1319d63fbbf:-7f10" ordering="1" parent="25ac1dee:13501c59709:-7f10" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="-16593537:1319d63fbbf:-7f0d" parent="-16593537:1319d63fbbf:-7f80" source="-16593537:1319d63fbbf:-7f10" target="-16593537:1319d63fbbf:-7eed"><mxGeometry as="geometry" y="-80.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="50.0" y="210.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-16593537:1319d63fbbf:-7f13" parent="-16593537:1319d63fbbf:-7f80" source="-16593537:1319d63fbbf:-7f30" target="-16593537:1319d63fbbf:-7f0f"><mxGeometry as="geometry" y="-80.0"><mxPoint as="sourcePoint" x="136.0" y="140.0"/><mxPoint as="targetPoint" x="110.0" y="210.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="110.0" y="140.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="25ac1dee:13501c59709:-7f0a" ordering="8" parent="-16593537:1319d63fbbf:-7f80" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="157.0" y="207.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-16593537:1319d63fbbf:-7f08" ordering="2" parent="25ac1dee:13501c59709:-7f0a" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-16593537:1319d63fbbf:-7f0a" ordering="1" parent="25ac1dee:13501c59709:-7f0a" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-16593537:1319d63fbbf:-7f09" ordering="1" parent="25ac1dee:13501c59709:-7f0a" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="-16593537:1319d63fbbf:-7f07" parent="-16593537:1319d63fbbf:-7f80" source="-16593537:1319d63fbbf:-7f28" target="-16593537:1319d63fbbf:-7f0a"><mxGeometry as="geometry" y="-80.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="290.0" y="140.0"/><mxPoint x="290.0" y="210.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-16593537:1319d63fbbf:-7f06" parent="-16593537:1319d63fbbf:-7f80" source="-16593537:1319d63fbbf:-7f09" target="-16593537:1319d63fbbf:-7f11"><mxGeometry as="geometry" y="-80.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-16593537:1319d63fbbf:-7f0c" parent="-16593537:1319d63fbbf:-7f80" source="-16593537:1319d63fbbf:-7f08" target="-16593537:1319d63fbbf:-7f6e"><mxGeometry as="geometry" y="-80.0"><mxPoint as="sourcePoint" x="160.0" y="246.0"/><mxPoint as="targetPoint" x="160.0" y="210.0"/></mxGeometry></ImplicitLink><BasicBlock dependsOnU="1" id="25ac1dee:13501c59709:-7f03" interfaceFunctionName="CMSCOPE" ordering="9" parent="-16593537:1319d63fbbf:-7f80" simulationFunctionName="cmscope" simulationFunctionType="C_OR_FORTRAN" style="CMSCOPE;flip=false;mirror=false"><ScilabString as="exprs" height="11" width="1"><data column="0" line="0" value="1 1"/><data column="0" line="1" value="1 3 5 7 9 11 13 15"/><data column="0" line="2" value="-1"/><data column="0" line="3" value="[]"/><data column="0" line="4" value="[]"/><data column="0" line="5" value="5 31"/><data column="0" line="6" value="7 33"/><data column="0" line="7" value="30 30"/><data column="0" line="8" value="20"/><data column="0" line="9" value="0"/><data column="0" line="10" value=""/></ScilabString><ScilabDouble as="realParameters" height="7" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="30.0"/><data column="0" line="2" realPart="30.0"/><data column="0" line="3" realPart="5.0"/><data column="0" line="4" realPart="7.0"/><data column="0" line="5" realPart="31.0"/><data column="0" line="6" realPart="33.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="12" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="2.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="-1.0"/><data column="0" line="4" realPart="-1.0"/><data column="0" line="5" realPart="-1.0"/><data column="0" line="6" realPart="-1.0"/><data column="0" line="7" realPart="1.0"/><data column="0" line="8" realPart="1.0"/><data column="0" line="9" realPart="1.0"/><data column="0" line="10" realPart="3.0"/><data column="0" line="11" realPart="0.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="320.0" y="280.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-16593537:1319d63fbbf:-7edc" ordering="2" parent="25ac1dee:13501c59709:-7f03" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="26.0"/></ExplicitInputPort><ControlPort dataType="UNKNOW_TYPE" id="-16593537:1319d63fbbf:-7edb" ordering="1" parent="25ac1dee:13501c59709:-7f03" style="ControlPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-16593537:1319d63fbbf:-7edd" ordering="1" parent="25ac1dee:13501c59709:-7f03" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ExplicitInputPort><ExplicitLink id="-16593537:1319d63fbbf:-7ef8" parent="-16593537:1319d63fbbf:-7f80" source="-16593537:1319d63fbbf:-7f27" target="-16593537:1319d63fbbf:-7edd"><mxGeometry as="geometry" y="-80.0"><mxPoint as="sourcePoint" x="350.0" y="164.0"/><mxPoint as="targetPoint" x="310.0" y="290.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="350.0" y="250.0"/><mxPoint x="290.0" y="250.0"/><mxPoint x="290.0" y="290.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="-16593537:1319d63fbbf:-7ef7" parent="-16593537:1319d63fbbf:-7f80" source="-16593537:1319d63fbbf:-7f2f" target="-16593537:1319d63fbbf:-7edc"><mxGeometry as="geometry" y="-80.0"><mxPoint as="sourcePoint" x="160.0" y="164.0"/><mxPoint as="targetPoint" x="320.0" y="310.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="160.0" y="190.0"/><mxPoint x="250.0" y="190.0"/><mxPoint x="250.0" y="310.0"/><mxPoint x="320.0" y="310.0"/></Array></mxGeometry></ExplicitLink><BasicBlock angle="180" id="25ac1dee:13501c59709:-7efa" interfaceFunctionName="ConstantVoltage" ordering="10" parent="-16593537:1319d63fbbf:-7f80" simulationFunctionName="ConstantVoltage" simulationFunctionType="DEFAULT" style="ConstantVoltage;rotation=180;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="36"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="36.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ConstantVoltage"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="V"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="36.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="80.0" y="20.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-16593537:1319d63fbbf:-7ee8" ordering="1" parent="25ac1dee:13501c59709:-7efa" style="ImplicitOutputPort;align=left;verticalAlign=middle;spacing=10;rotation=180;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-16593537:1319d63fbbf:-7ee9" ordering="1" parent="25ac1dee:13501c59709:-7efa" style="ImplicitInputPort;align=right;verticalAlign=middle;spacing=10;rotation=180;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitInputPort><GroundBlock dependsOnU="1" id="25ac1dee:13501c59709:-7f2f" interfaceFunctionName="Ground" ordering="11" parent="-16593537:1319d63fbbf:-7f80" simulationFunctionName="Ground" simulationFunctionType="DEFAULT" style="Ground;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Ground"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="140.0" y="250.0"/></GroundBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-16593537:1319d63fbbf:-7f6e" ordering="1" parent="25ac1dee:13501c59709:-7f2f" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><Orientation as="orientation" value="NORTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock blockType="h" id="-13640e5a:13894ab8a5f:-7f03" interfaceFunctionName="CLOCK_c" ordering="12" parent="-16593537:1319d63fbbf:-7f80" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="119.0"/><data column="1" line="0" realPart="-150.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="48d7e1f7:16711003a12:-7a7e"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="48d7e1f7:16711003a12:-7a7e"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.1"/><data column="0" line="1" value="0.1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.1"/><data column="0" line="1" realPart="0.1"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.1"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="48d7e1f7:16711003a12:-7a7c"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="48d7e1f7:16711003a12:-7a7c"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="123.3773266666667"/><data column="1" line="0" realPart="-169.33333333333331"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="7.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="5.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="48d7e1f7:16711003a12:-7a79"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="48d7e1f7:16711003a12:-7a79"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="100.0"/><data column="0" line="2" realPart="133.8773266666667"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-44.0"/><data column="0" line="1" realPart="-180.0"/><data column="0" line="2" realPart="-158.33333333333331"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="132.71066000000005"/><data column="0" line="1" realPart="149.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-173.33333333333331"/><data column="0" line="1" realPart="-126.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="135.04399333333336"/><data column="0" line="1" realPart="140.70999999999998"/><data column="0" line="2" realPart="100.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-173.33333333333331"/><data column="0" line="1" realPart="-50.0"/><data column="0" line="2" realPart="-50.0"/><data column="0" line="3" realPart="4.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="320.0" y="200.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="-13640e5a:13894ab8a5f:-7f02" ordering="1" parent="-13640e5a:13894ab8a5f:-7f03" style="CommandPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><CommandControlLink id="-13640e5a:13894ab8a5f:-7eff" parent="-16593537:1319d63fbbf:-7f80" source="-13640e5a:13894ab8a5f:-7f02" target="-16593537:1319d63fbbf:-7edb"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="340.0" y="244.0"/><mxPoint as="targetPoint" x="340.0" y="280.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="340.0" y="280.0"/></Array></mxGeometry></CommandControlLink></root></mxGraphModel><mxCell as="defaultParent" id="-16593537:1319d63fbbf:-7f80" parent="-16593537:1319d63fbbf:-7f7f"/></XcosDiagram>
\ No newline at end of file diff --git a/Working_Examples/215/CH3/EX3.3/figure3_3_xcos.jpg b/Working_Examples/215/CH3/EX3.3/figure3_3_xcos.jpg Binary files differnew file mode 100755 index 0000000..edc0a3e --- /dev/null +++ b/Working_Examples/215/CH3/EX3.3/figure3_3_xcos.jpg diff --git a/Working_Examples/215/CH3/EX3.4/Figure3_4.jpg b/Working_Examples/215/CH3/EX3.4/Figure3_4.jpg Binary files differnew file mode 100755 index 0000000..54797de --- /dev/null +++ b/Working_Examples/215/CH3/EX3.4/Figure3_4.jpg diff --git a/Working_Examples/215/CH3/EX3.4/Figure3_4_xcos.jpg b/Working_Examples/215/CH3/EX3.4/Figure3_4_xcos.jpg Binary files differnew file mode 100755 index 0000000..8e9f2ed --- /dev/null +++ b/Working_Examples/215/CH3/EX3.4/Figure3_4_xcos.jpg diff --git a/Working_Examples/215/CH3/EX3.4/ex3_4.xcos b/Working_Examples/215/CH3/EX3.4/ex3_4.xcos new file mode 100755 index 0000000..265f03d --- /dev/null +++ b/Working_Examples/215/CH3/EX3.4/ex3_4.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" finalIntegrationTime="30.0" title="ex3_4"><!--Xcos - 1.0 - scilab-5.5.2 - 20160406 2040--><mxGraphModel as="model"><root><mxCell id="-5fcba885:134ccedce1f:-7fff"/><mxCell id="-5fcba885:134ccedce1f:-8000" parent="-5fcba885:134ccedce1f:-7fff"/><GroundBlock dependsOnU="1" id="25ac1dee:13501c59709:-7e34" interfaceFunctionName="Ground" ordering="1" parent="-5fcba885:134ccedce1f:-8000" simulationFunctionName="Ground" simulationFunctionType="DEFAULT" style="Ground;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Ground"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="180.0" y="300.0"/></GroundBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5fcba885:134ccedce1f:-7fd5" ordering="1" parent="25ac1dee:13501c59709:-7e34" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><Orientation as="orientation" value="NORTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="25ac1dee:13501c59709:-7e32" interfaceFunctionName="Resistor" ordering="2" parent="-5fcba885:134ccedce1f:-8000" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="8"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="130.0" y="50.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5fcba885:134ccedce1f:-7f4a" ordering="1" parent="25ac1dee:13501c59709:-7e32" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5fcba885:134ccedce1f:-7f49" ordering="1" parent="25ac1dee:13501c59709:-7e32" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><BasicBlock angle="90" dependsOnU="1" id="25ac1dee:13501c59709:-7e2f" interfaceFunctionName="Resistor" ordering="3" parent="-5fcba885:134ccedce1f:-8000" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="2.6666666"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="2.6666666"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="2.6666666"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="330.0" y="150.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5fcba885:134ccedce1f:-7d31" ordering="1" parent="25ac1dee:13501c59709:-7e2f" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5fcba885:134ccedce1f:-7d30" ordering="1" parent="25ac1dee:13501c59709:-7e2f" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><BasicBlock angle="90" dependsOnU="1" id="25ac1dee:13501c59709:-7e2c" interfaceFunctionName="Resistor" ordering="4" parent="-5fcba885:134ccedce1f:-8000" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="10"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="10.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="10.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="180.0" y="160.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5fcba885:134ccedce1f:-7f46" ordering="1" parent="25ac1dee:13501c59709:-7e2c" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5fcba885:134ccedce1f:-7f45" ordering="1" parent="25ac1dee:13501c59709:-7e2c" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><BasicBlock dependsOnU="1" id="25ac1dee:13501c59709:-7e29" interfaceFunctionName="Resistor" ordering="5" parent="-5fcba885:134ccedce1f:-8000" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="4"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="260.0" y="50.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5fcba885:134ccedce1f:-7d35" ordering="1" parent="25ac1dee:13501c59709:-7e29" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5fcba885:134ccedce1f:-7d34" ordering="1" parent="25ac1dee:13501c59709:-7e29" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><SplitBlock id="25ac1dee:13501c59709:-7e26" ordering="6" parent="-5fcba885:134ccedce1f:-8000" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="197.0" y="257.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5fcba885:134ccedce1f:-7f8a" ordering="1" parent="25ac1dee:13501c59709:-7e26" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5fcba885:134ccedce1f:-7f89" ordering="2" parent="25ac1dee:13501c59709:-7e26" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-5fcba885:134ccedce1f:-7f8b" ordering="1" parent="25ac1dee:13501c59709:-7e26" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-5fcba885:134ccedce1f:-7f88" parent="-5fcba885:134ccedce1f:-8000" source="-5fcba885:134ccedce1f:-7f4d" target="-5fcba885:134ccedce1f:-7f8b"><mxGeometry as="geometry" x="40.0" y="-40.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="90.0" y="210.0"/><mxPoint x="90.0" y="260.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="25ac1dee:13501c59709:-7e21" ordering="7" parent="-5fcba885:134ccedce1f:-8000" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="197.0" y="257.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5fcba885:134ccedce1f:-7f81" ordering="1" parent="25ac1dee:13501c59709:-7e21" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5fcba885:134ccedce1f:-7f80" ordering="2" parent="25ac1dee:13501c59709:-7e21" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-5fcba885:134ccedce1f:-7f82" ordering="1" parent="25ac1dee:13501c59709:-7e21" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-5fcba885:134ccedce1f:-7f7e" parent="-5fcba885:134ccedce1f:-8000" source="-5fcba885:134ccedce1f:-7f89" target="-5fcba885:134ccedce1f:-7f81"><mxGeometry as="geometry" x="40.0" y="-40.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-5fcba885:134ccedce1f:-7f84" parent="-5fcba885:134ccedce1f:-8000" source="-5fcba885:134ccedce1f:-7f80" target="-5fcba885:134ccedce1f:-7fd5"><mxGeometry as="geometry" x="40.0" y="-40.0"><mxPoint as="sourcePoint" x="210.0" y="306.0"/><mxPoint as="targetPoint" x="200.0" y="260.0"/></mxGeometry></ImplicitLink><BasicBlock dependsOnU="1" id="25ac1dee:13501c59709:-7e1a" interfaceFunctionName="PotentialSensor" ordering="8" parent="-5fcba885:134ccedce1f:-8000" simulationFunctionName="PotentialSensor" simulationFunctionType="DEFAULT" style="PotentialSensor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="PotentialSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="v"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="380.0" y="50.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5fcba885:134ccedce1f:-7f6a" ordering="1" parent="25ac1dee:13501c59709:-7e1a" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5fcba885:134ccedce1f:-7f6b" ordering="1" parent="25ac1dee:13501c59709:-7e1a" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><BasicBlock dependsOnU="1" id="25ac1dee:13501c59709:-7e17" interfaceFunctionName="CSCOPE" ordering="9" parent="-5fcba885:134ccedce1f:-8000" simulationFunctionName="cscope" simulationFunctionType="C_OR_FORTRAN" style="CSCOPE;flip=false;mirror=false"><ScilabString as="exprs" height="10" width="1"><data column="0" line="0" value="1 3 5 7 9 11 13 15"/><data column="0" line="1" value="-1"/><data column="0" line="2" value="[]"/><data column="0" line="3" value="[600;400]"/><data column="0" line="4" value="5"/><data column="0" line="5" value="10"/><data column="0" line="6" value="30"/><data column="0" line="7" value="20"/><data column="0" line="8" value="0"/><data column="0" line="9" value=""/></ScilabString><ScilabDouble as="realParameters" height="4" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="5.0"/><data column="0" line="2" realPart="10.0"/><data column="0" line="3" realPart="30.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="15" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="1.0"/><data column="0" line="4" realPart="3.0"/><data column="0" line="5" realPart="5.0"/><data column="0" line="6" realPart="7.0"/><data column="0" line="7" realPart="9.0"/><data column="0" line="8" realPart="11.0"/><data column="0" line="9" realPart="13.0"/><data column="0" line="10" realPart="15.0"/><data column="0" line="11" realPart="-1.0"/><data column="0" line="12" realPart="-1.0"/><data column="0" line="13" realPart="600.0"/><data column="0" line="14" realPart="400.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="460.0" y="130.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="-5fcba885:134ccedce1f:-7d23" ordering="1" parent="25ac1dee:13501c59709:-7e17" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ControlPort dataType="UNKNOW_TYPE" id="-5fcba885:134ccedce1f:-7d22" ordering="1" parent="25ac1dee:13501c59709:-7e17" style="ControlPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><BasicBlock blockType="d" id="25ac1dee:13501c59709:-7e12" interfaceFunctionName="CONST_m" ordering="10" parent="-5fcba885:134ccedce1f:-8000" simulationFunctionName="cstblk4" simulationFunctionType="C_OR_FORTRAN" style="CONST_m;flip=false;mirror=false" value="5"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="5"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble></Array><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="50.0" width="40.0" x="30.0" y="150.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5fcba885:134ccedce1f:-7f10" ordering="1" parent="25ac1dee:13501c59709:-7e12" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><BasicBlock angle="270" dependsOnT="1" id="25ac1dee:13501c59709:-7e10" interfaceFunctionName="CCS" ordering="11" parent="-5fcba885:134ccedce1f:-8000" simulationFunctionName="CCS" simulationFunctionType="DEFAULT" style="CCS;rotation=270;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CCS"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="Iin"/><data column="0" line="1" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="60.0" y="90.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5fcba885:134ccedce1f:-7f28" ordering="1" parent="25ac1dee:13501c59709:-7e10" style="ExplicitInputPort;align=center;verticalAlign=bottom;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="6.0" y="40.0"/></ExplicitInputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5fcba885:134ccedce1f:-7f27" ordering="2" parent="25ac1dee:13501c59709:-7e10" style="ImplicitInputPort;align=center;verticalAlign=bottom;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="26.0" y="40.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5fcba885:134ccedce1f:-7f29" ordering="1" parent="25ac1dee:13501c59709:-7e10" style="ImplicitOutputPort;align=center;verticalAlign=top;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitOutputPort><ImplicitLink id="-5fcba885:134ccedce1f:-7eff" parent="-5fcba885:134ccedce1f:-8000" source="-5fcba885:134ccedce1f:-7f27" target="-5fcba885:134ccedce1f:-7f4e"><mxGeometry as="geometry" x="40.0" y="-40.0"><mxPoint as="sourcePoint" x="90.0" y="114.0"/><mxPoint as="targetPoint" x="90.0" y="160.0"/></mxGeometry></ImplicitLink><ExplicitLink id="-5fcba885:134ccedce1f:-7efb" parent="-5fcba885:134ccedce1f:-8000" source="-5fcba885:134ccedce1f:-7f10" target="-5fcba885:134ccedce1f:-7f28"><mxGeometry as="geometry" x="40.0" y="-40.0"><mxPoint as="sourcePoint" x="84.0" y="40.0"/><mxPoint as="targetPoint" x="70.0" y="130.0"/></mxGeometry></ExplicitLink><ImplicitLink id="-5fcba885:134ccedce1f:-7e5a" parent="-5fcba885:134ccedce1f:-8000" source="-5fcba885:134ccedce1f:-7f8a" target="-5fcba885:134ccedce1f:-7d30"><mxGeometry as="geometry" x="40.0" y="-40.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="350.0" y="260.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="25ac1dee:13501c59709:-7e08" ordering="12" parent="-5fcba885:134ccedce1f:-8000" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="347.0" y="67.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5fcba885:134ccedce1f:-7e56" ordering="1" parent="25ac1dee:13501c59709:-7e08" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5fcba885:134ccedce1f:-7e55" ordering="2" parent="25ac1dee:13501c59709:-7e08" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-5fcba885:134ccedce1f:-7e57" ordering="1" parent="25ac1dee:13501c59709:-7e08" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-5fcba885:134ccedce1f:-7e53" parent="-5fcba885:134ccedce1f:-8000" source="-5fcba885:134ccedce1f:-7e56" target="-5fcba885:134ccedce1f:-7d31"><mxGeometry as="geometry" x="40.0" y="-40.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-5fcba885:134ccedce1f:-7e59" parent="-5fcba885:134ccedce1f:-8000" source="-5fcba885:134ccedce1f:-7e55" target="-5fcba885:134ccedce1f:-7f6a"><mxGeometry as="geometry" x="40.0" y="-40.0"><mxPoint as="sourcePoint" x="446.0" y="70.0"/><mxPoint as="targetPoint" x="350.0" y="70.0"/></mxGeometry></ImplicitLink><ImplicitLink id="-5fcba885:134ccedce1f:-7da6" parent="-5fcba885:134ccedce1f:-8000" source="-5fcba885:134ccedce1f:-7f29" target="-5fcba885:134ccedce1f:-7f4a"><mxGeometry as="geometry" x="40.0" y="-40.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="80.0" y="70.0"/><mxPoint x="100.0" y="70.0"/><mxPoint x="110.0" y="70.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="25ac1dee:13501c59709:-7e01" ordering="13" parent="-5fcba885:134ccedce1f:-8000" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="197.0" y="67.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5fcba885:134ccedce1f:-7da2" ordering="1" parent="25ac1dee:13501c59709:-7e01" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5fcba885:134ccedce1f:-7da1" ordering="2" parent="25ac1dee:13501c59709:-7e01" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-5fcba885:134ccedce1f:-7da3" ordering="1" parent="25ac1dee:13501c59709:-7e01" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-5fcba885:134ccedce1f:-7da0" parent="-5fcba885:134ccedce1f:-8000" source="-5fcba885:134ccedce1f:-7f49" target="-5fcba885:134ccedce1f:-7da3"><mxGeometry as="geometry" x="40.0" y="-40.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="190.0" y="70.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-5fcba885:134ccedce1f:-7d2e" parent="-5fcba885:134ccedce1f:-8000" source="-5fcba885:134ccedce1f:-7f45" target="-5fcba885:134ccedce1f:-7f82"><mxGeometry as="geometry" x="40.0" y="-40.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="200.0" y="230.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-5fcba885:134ccedce1f:-7d2d" parent="-5fcba885:134ccedce1f:-8000" source="-5fcba885:134ccedce1f:-7da2" target="-5fcba885:134ccedce1f:-7f46"><mxGeometry as="geometry" x="40.0" y="-40.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="200.0" y="120.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-5fcba885:134ccedce1f:-7d2c" parent="-5fcba885:134ccedce1f:-8000" source="-5fcba885:134ccedce1f:-7d34" target="-5fcba885:134ccedce1f:-7e57"><mxGeometry as="geometry" x="40.0" y="-40.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="320.0" y="70.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-5fcba885:134ccedce1f:-7d2b" parent="-5fcba885:134ccedce1f:-8000" source="-5fcba885:134ccedce1f:-7da1" target="-5fcba885:134ccedce1f:-7d35"><mxGeometry as="geometry" x="40.0" y="-40.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="230.0" y="70.0"/></Array></mxGeometry></ImplicitLink><ExplicitLink id="-5fcba885:134ccedce1f:-7d05" parent="-5fcba885:134ccedce1f:-8000" source="-5fcba885:134ccedce1f:-7f6b" target="-5fcba885:134ccedce1f:-7d23"><mxGeometry as="geometry" y="-40.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="450.0" y="70.0"/><mxPoint x="450.0" y="150.0"/></Array></mxGeometry></ExplicitLink><BasicBlock angle="90" id="25ac1dee:13501c59709:-7e37" interfaceFunctionName="ConstantVoltage" ordering="14" parent="-5fcba885:134ccedce1f:-8000" simulationFunctionName="ConstantVoltage" simulationFunctionType="DEFAULT" style="ConstantVoltage;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="60"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="60.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ConstantVoltage"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="V"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="60.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="70.0" y="160.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5fcba885:134ccedce1f:-7f4e" ordering="1" parent="25ac1dee:13501c59709:-7e37" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5fcba885:134ccedce1f:-7f4d" ordering="1" parent="25ac1dee:13501c59709:-7e37" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><BasicBlock blockType="h" id="-13640e5a:13894ab8a5f:-7eb9" interfaceFunctionName="CLOCK_c" ordering="15" parent="-5fcba885:134ccedce1f:-8000" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="99.0"/><data column="1" line="0" realPart="-160.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="48d7e1f7:16711003a12:-79f1"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="48d7e1f7:16711003a12:-79f1"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-70.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.1"/><data column="0" line="1" value="0.1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.1"/><data column="0" line="1" realPart="0.1"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.1"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="48d7e1f7:16711003a12:-79ef"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="48d7e1f7:16711003a12:-79ef"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="90.3773266666667"/><data column="1" line="0" realPart="-166.33333333333331"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="7.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="5.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="48d7e1f7:16711003a12:-79ec"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="48d7e1f7:16711003a12:-79ec"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="60.0"/><data column="0" line="2" realPart="97.54399333333338"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-74.0"/><data column="0" line="1" realPart="-170.0"/><data column="0" line="2" realPart="-155.33333333333331"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="97.48843777777782"/><data column="0" line="1" realPart="129.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-163.66666666666666"/><data column="0" line="1" realPart="-136.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="97.59954888888893"/><data column="0" line="1" realPart="100.70999999999998"/><data column="0" line="2" realPart="60.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-163.66666666666666"/><data column="0" line="1" realPart="-40.0"/><data column="0" line="2" realPart="-40.0"/><data column="0" line="3" realPart="-26.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="460.0" y="60.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="-13640e5a:13894ab8a5f:-7eb8" ordering="1" parent="-13640e5a:13894ab8a5f:-7eb9" style="CommandPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><CommandControlLink id="-13640e5a:13894ab8a5f:-7eb5" parent="-5fcba885:134ccedce1f:-8000" source="-13640e5a:13894ab8a5f:-7eb8" target="-5fcba885:134ccedce1f:-7d22"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="480.0" y="104.0"/><mxPoint as="targetPoint" x="480.0" y="130.0"/></mxGeometry></CommandControlLink></root></mxGraphModel><mxCell as="defaultParent" id="-5fcba885:134ccedce1f:-8000" parent="-5fcba885:134ccedce1f:-7fff"/></XcosDiagram>
\ No newline at end of file diff --git a/Working_Examples/215/CH3/EX3.5/Figure3_5.jpg b/Working_Examples/215/CH3/EX3.5/Figure3_5.jpg Binary files differnew file mode 100755 index 0000000..28317f8 --- /dev/null +++ b/Working_Examples/215/CH3/EX3.5/Figure3_5.jpg diff --git a/Working_Examples/215/CH3/EX3.5/Figure3_5_xcos.jpg b/Working_Examples/215/CH3/EX3.5/Figure3_5_xcos.jpg Binary files differnew file mode 100755 index 0000000..e1c1b27 --- /dev/null +++ b/Working_Examples/215/CH3/EX3.5/Figure3_5_xcos.jpg diff --git a/Working_Examples/215/CH3/EX3.5/ex3_5.xcos b/Working_Examples/215/CH3/EX3.5/ex3_5.xcos new file mode 100755 index 0000000..83c9a25 --- /dev/null +++ b/Working_Examples/215/CH3/EX3.5/ex3_5.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" finalIntegrationTime="30.0" title="ex3_5"><!--Xcos - 1.0 - scilab-5.5.2 - 20160406 2040--><mxGraphModel as="model"><root><mxCell id="-5fcba885:134ccedce1f:-7cf5"/><mxCell id="-5fcba885:134ccedce1f:-7cf6" parent="-5fcba885:134ccedce1f:-7cf5"/><BasicBlock angle="90" dependsOnU="1" id="-5fcba885:134ccedce1f:-7cc9" interfaceFunctionName="Resistor" ordering="1" parent="-5fcba885:134ccedce1f:-7cf6" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="15"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="15.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="15.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="330.0" y="200.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5fcba885:134ccedce1f:-7c68" ordering="1" parent="-5fcba885:134ccedce1f:-7cc9" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5fcba885:134ccedce1f:-7c67" ordering="1" parent="-5fcba885:134ccedce1f:-7cc9" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><BasicBlock angle="270" dependsOnU="1" id="-5fcba885:134ccedce1f:-7c39" interfaceFunctionName="CurrentSensor" ordering="2" parent="-5fcba885:134ccedce1f:-7cf6" simulationFunctionName="CurrentSensor" simulationFunctionType="DEFAULT" style="CurrentSensor;rotation=270;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CurrentSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="i"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="40.0" y="150.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5fcba885:134ccedce1f:-7c38" ordering="1" parent="-5fcba885:134ccedce1f:-7c39" style="ImplicitOutputPort;align=center;verticalAlign=top;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="6.0" y="-8.0"/></ImplicitOutputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5fcba885:134ccedce1f:-7c37" ordering="2" parent="-5fcba885:134ccedce1f:-7c39" style="ExplicitOutputPort;align=center;verticalAlign=top;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="26.0" y="-8.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5fcba885:134ccedce1f:-7c36" ordering="1" parent="-5fcba885:134ccedce1f:-7c39" style="ImplicitInputPort;align=center;verticalAlign=bottom;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitInputPort><ImplicitLink id="-5fcba885:134ccedce1f:-7c34" parent="-5fcba885:134ccedce1f:-7cf6" source="-5fcba885:134ccedce1f:-7c38" target="-5fcba885:134ccedce1f:-7c70"><mxGeometry as="geometry" y="30.0"><mxPoint as="sourcePoint" x="50.0" y="146.0"/><mxPoint as="targetPoint" x="110.0" y="140.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="50.0" y="130.0"/></Array></mxGeometry></ImplicitLink><BasicBlock dependsOnT="1" id="-5fcba885:134ccedce1f:-7c13" interfaceFunctionName="CVS" ordering="3" parent="-5fcba885:134ccedce1f:-7cf6" simulationFunctionName="CVS" simulationFunctionType="DEFAULT" style="CVS;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CVS"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="vin"/><data column="0" line="1" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="210.0" y="100.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5fcba885:134ccedce1f:-7c12" ordering="1" parent="-5fcba885:134ccedce1f:-7c13" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5fcba885:134ccedce1f:-7c11" ordering="1" parent="-5fcba885:134ccedce1f:-7c13" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ExplicitInputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5fcba885:134ccedce1f:-7c10" ordering="2" parent="-5fcba885:134ccedce1f:-7c13" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="26.0"/></ImplicitInputPort><BasicBlock angle="90" id="-5fcba885:134ccedce1f:-7ced" interfaceFunctionName="ConstantVoltage" ordering="4" parent="-5fcba885:134ccedce1f:-7cf6" simulationFunctionName="ConstantVoltage" simulationFunctionType="DEFAULT" style="ConstantVoltage;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="120"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="120.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ConstantVoltage"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="V"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="120.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="40.0" y="220.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5fcba885:134ccedce1f:-7c6c" ordering="1" parent="-5fcba885:134ccedce1f:-7ced" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5fcba885:134ccedce1f:-7c6b" ordering="1" parent="-5fcba885:134ccedce1f:-7ced" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><BasicBlock dependsOnU="1" id="73523f48:134cd91c16f:-7eae" interfaceFunctionName="CurrentSensor" ordering="5" parent="-5fcba885:134ccedce1f:-7cf6" simulationFunctionName="CurrentSensor" simulationFunctionType="DEFAULT" style="CurrentSensor;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CurrentSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="i"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="290.0" y="100.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="73523f48:134cd91c16f:-7eab" ordering="1" parent="73523f48:134cd91c16f:-7eae" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="73523f48:134cd91c16f:-7ead" ordering="1" parent="73523f48:134cd91c16f:-7eae" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="6.0"/></ImplicitOutputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="73523f48:134cd91c16f:-7eac" ordering="2" parent="73523f48:134cd91c16f:-7eae" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="26.0"/></ExplicitOutputPort><ImplicitLink id="73523f48:134cd91c16f:-7ea9" parent="-5fcba885:134ccedce1f:-7cf6" source="73523f48:134cd91c16f:-7ead" target="-5fcba885:134ccedce1f:-7c68"><mxGeometry as="geometry" y="20.0"><mxPoint as="sourcePoint" x="334.0" y="110.0"/><mxPoint as="targetPoint" x="330.0" y="190.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="350.0" y="110.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="73523f48:134cd91c16f:-7ea7" ordering="6" parent="-5fcba885:134ccedce1f:-7cf6" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="167.0" y="287.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="73523f48:134cd91c16f:-7ea4" ordering="2" parent="73523f48:134cd91c16f:-7ea7" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="73523f48:134cd91c16f:-7ea6" ordering="1" parent="73523f48:134cd91c16f:-7ea7" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="73523f48:134cd91c16f:-7ea5" ordering="1" parent="73523f48:134cd91c16f:-7ea7" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="73523f48:134cd91c16f:-7ea2" parent="-5fcba885:134ccedce1f:-7cf6" source="73523f48:134cd91c16f:-7ea5" target="-5fcba885:134ccedce1f:-7ce4"><mxGeometry as="geometry" y="30.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="73523f48:134cd91c16f:-7ea8" parent="-5fcba885:134ccedce1f:-7cf6" source="-5fcba885:134ccedce1f:-7c67" target="73523f48:134cd91c16f:-7ea4"><mxGeometry as="geometry" y="30.0"><mxPoint as="sourcePoint" x="350.0" y="254.0"/><mxPoint as="targetPoint" x="170.0" y="290.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="350.0" y="290.0"/></Array></mxGeometry></ImplicitLink><BasicBlock angle="180" dependsOnU="1" id="73523f48:134cd91c16f:-7e9a" interfaceFunctionName="GAINBLK_f" ordering="7" parent="-5fcba885:134ccedce1f:-7cf6" simulationFunctionName="gain" simulationFunctionType="DEFAULT" style="GAINBLK_f;rotation=180;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="-30"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="-30.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="50.0" width="40.0" x="240.0" y="160.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="73523f48:134cd91c16f:-7e1c" ordering="1" parent="73523f48:134cd91c16f:-7e9a" style="ExplicitOutputPort;align=left;verticalAlign=middle;spacing=10;rotation=180;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitOutputPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="73523f48:134cd91c16f:-7e1d" ordering="1" parent="73523f48:134cd91c16f:-7e9a" style="ExplicitInputPort;align=right;verticalAlign=middle;spacing=10;rotation=180;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitInputPort><ExplicitLink id="73523f48:134cd91c16f:-7e97" parent="-5fcba885:134ccedce1f:-7cf6" source="73523f48:134cd91c16f:-7eac" target="73523f48:134cd91c16f:-7e1d"><mxGeometry as="geometry" y="20.0"><mxPoint as="sourcePoint" x="334.0" y="130.0"/><mxPoint as="targetPoint" x="280.0" y="170.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="340.0" y="130.0"/><mxPoint x="340.0" y="180.0"/><mxPoint x="290.0" y="180.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="73523f48:134cd91c16f:-7e96" parent="-5fcba885:134ccedce1f:-7cf6" source="73523f48:134cd91c16f:-7e1c" target="-5fcba885:134ccedce1f:-7c11"><mxGeometry as="geometry" y="20.0"><mxPoint as="sourcePoint" x="206.0" y="110.0"/><mxPoint as="targetPoint" x="240.0" y="170.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="180.0" y="180.0"/><mxPoint x="180.0" y="110.0"/></Array></mxGeometry></ExplicitLink><VoltageSensorBlock angle="180" dependsOnU="1" id="73523f48:134cd91c16f:-7e14" interfaceFunctionName="VoltageSensor" ordering="8" parent="-5fcba885:134ccedce1f:-7cf6" simulationFunctionName="VoltageSensor" simulationFunctionType="DEFAULT" style="VoltageSensor;rotation=180;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="VoltageSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="v"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="100.0" y="220.0"/></VoltageSensorBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="73523f48:134cd91c16f:-7e11" ordering="1" parent="73523f48:134cd91c16f:-7e14" style="ImplicitInputPort;align=right;verticalAlign=middle;spacing=10;rotation=180;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="73523f48:134cd91c16f:-7e13" ordering="1" parent="73523f48:134cd91c16f:-7e14" style="ImplicitOutputPort;align=center;verticalAlign=top;spacing=10;rotation=270;flip=false;mirror=false"><Orientation as="orientation" value="SOUTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitOutputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="73523f48:134cd91c16f:-7e12" ordering="2" parent="73523f48:134cd91c16f:-7e14" style="ExplicitOutputPort;align=left;verticalAlign=middle;spacing=10;rotation=180;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitOutputPort><RoundBlock dependsOnU="1" id="73523f48:134cd91c16f:-7df1" interfaceFunctionName="PROD_f" ordering="9" parent="-5fcba885:134ccedce1f:-7cf6" simulationFunctionName="prod" simulationFunctionType="TYPE_2" style="PROD_f;flip=false;mirror=false" value="×"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="50.0" width="40.0" x="420.0" y="120.0"/></RoundBlock><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="73523f48:134cd91c16f:-7dee" ordering="2" parent="73523f48:134cd91c16f:-7df1" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitOutputPort dataColumns="1" dataType="REAL_MATRIX" id="73523f48:134cd91c16f:-7df0" ordering="1" parent="73523f48:134cd91c16f:-7df1" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="73523f48:134cd91c16f:-7def" ordering="1" parent="73523f48:134cd91c16f:-7df1" style="ExplicitInputPort;align=center;verticalAlign=bottom;spacing=10;rotation=270;flip=false;mirror=false" value=""><Orientation as="orientation" value="SOUTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="50.0"/></ExplicitInputPort><SplitBlock id="73523f48:134cd91c16f:-7dd9" ordering="10" parent="-5fcba885:134ccedce1f:-7cf6" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="57.0" y="207.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="73523f48:134cd91c16f:-7dd6" ordering="2" parent="73523f48:134cd91c16f:-7dd9" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="73523f48:134cd91c16f:-7dd8" ordering="1" parent="73523f48:134cd91c16f:-7dd9" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="73523f48:134cd91c16f:-7dd7" ordering="1" parent="73523f48:134cd91c16f:-7dd9" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="73523f48:134cd91c16f:-7dd5" parent="-5fcba885:134ccedce1f:-7cf6" source="-5fcba885:134ccedce1f:-7c6c" target="73523f48:134cd91c16f:-7dd8"><mxGeometry as="geometry" y="30.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="73523f48:134cd91c16f:-7dd4" parent="-5fcba885:134ccedce1f:-7cf6" source="73523f48:134cd91c16f:-7dd7" target="-5fcba885:134ccedce1f:-7c36"><mxGeometry as="geometry" y="30.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="73523f48:134cd91c16f:-7dda" parent="-5fcba885:134ccedce1f:-7cf6" source="73523f48:134cd91c16f:-7e13" target="73523f48:134cd91c16f:-7dd6"><mxGeometry as="geometry" y="30.0"><mxPoint as="sourcePoint" x="120.0" y="216.0"/><mxPoint as="targetPoint" x="60.0" y="210.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="120.0" y="210.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="73523f48:134cd91c16f:-7dd2" ordering="11" parent="-5fcba885:134ccedce1f:-7cf6" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="57.0" y="277.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="73523f48:134cd91c16f:-7dcf" ordering="2" parent="73523f48:134cd91c16f:-7dd2" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="73523f48:134cd91c16f:-7dd1" ordering="1" parent="73523f48:134cd91c16f:-7dd2" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="73523f48:134cd91c16f:-7dd0" ordering="1" parent="73523f48:134cd91c16f:-7dd2" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="73523f48:134cd91c16f:-7dce" parent="-5fcba885:134ccedce1f:-7cf6" source="-5fcba885:134ccedce1f:-7c6b" target="73523f48:134cd91c16f:-7dd1"><mxGeometry as="geometry" y="30.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="73523f48:134cd91c16f:-7dcd" parent="-5fcba885:134ccedce1f:-7cf6" source="73523f48:134cd91c16f:-7dd0" target="73523f48:134cd91c16f:-7ea6"><mxGeometry as="geometry" y="30.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="60.0" y="290.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="73523f48:134cd91c16f:-7dd3" parent="-5fcba885:134ccedce1f:-7cf6" source="73523f48:134cd91c16f:-7dcf" target="73523f48:134cd91c16f:-7e11"><mxGeometry as="geometry" y="30.0"><mxPoint as="sourcePoint" x="144.0" y="240.0"/><mxPoint as="targetPoint" x="60.0" y="280.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="150.0" y="280.0"/><mxPoint x="150.0" y="240.0"/></Array></mxGeometry></ImplicitLink><ExplicitLink id="73523f48:134cd91c16f:-7dcc" parent="-5fcba885:134ccedce1f:-7cf6" source="73523f48:134cd91c16f:-7e12" target="73523f48:134cd91c16f:-7def"><mxGeometry as="geometry" y="30.0"><mxPoint as="sourcePoint" x="96.0" y="240.0"/><mxPoint as="targetPoint" x="440.0" y="180.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="90.0" y="240.0"/><mxPoint x="90.0" y="180.0"/><mxPoint x="440.0" y="180.0"/></Array></mxGeometry></ExplicitLink><BasicBlock dependsOnU="1" id="73523f48:134cd91c16f:-7dc4" interfaceFunctionName="POWBLK_f" ordering="12" parent="-5fcba885:134ccedce1f:-7cf6" simulationFunctionName="powblk" simulationFunctionType="DEFAULT" style="POWBLK_f;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="2"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="50.0" width="50.0" x="420.0" y="230.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataType="REAL_MATRIX" id="73523f48:134cd91c16f:-7db5" ordering="1" parent="73523f48:134cd91c16f:-7dc4" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="50.0" y="16.0"/></ExplicitOutputPort><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="73523f48:134cd91c16f:-7db6" ordering="1" parent="73523f48:134cd91c16f:-7dc4" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><SplitBlock id="73523f48:134cd91c16f:-7dc0" ordering="13" parent="-5fcba885:134ccedce1f:-7cf6" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="387.0" y="137.0"/></SplitBlock><ExplicitOutputPort dataType="UNKNOW_TYPE" id="73523f48:134cd91c16f:-7dbd" ordering="2" parent="73523f48:134cd91c16f:-7dc0" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ExplicitOutputPort><ExplicitInputPort dataType="UNKNOW_TYPE" id="73523f48:134cd91c16f:-7dbf" ordering="1" parent="73523f48:134cd91c16f:-7dc0" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ExplicitInputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="73523f48:134cd91c16f:-7dbe" ordering="1" parent="73523f48:134cd91c16f:-7dc0" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitLink id="73523f48:134cd91c16f:-7dbc" parent="-5fcba885:134ccedce1f:-7cf6" source="-5fcba885:134ccedce1f:-7c37" target="73523f48:134cd91c16f:-7dbf"><mxGeometry as="geometry" y="30.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="70.0" y="140.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="73523f48:134cd91c16f:-7dbb" parent="-5fcba885:134ccedce1f:-7cf6" source="73523f48:134cd91c16f:-7dbe" target="73523f48:134cd91c16f:-7dee"><mxGeometry as="geometry" y="30.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="420.0" y="140.0"/></Array></mxGeometry></ExplicitLink><BasicBlock dependsOnU="1" id="73523f48:134cd91c16f:-7dac" interfaceFunctionName="GAINBLK_f" ordering="14" parent="-5fcba885:134ccedce1f:-7cf6" simulationFunctionName="gain" simulationFunctionType="DEFAULT" style="GAINBLK_f;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="30"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="30.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="50.0" width="40.0" x="500.0" y="230.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="73523f48:134cd91c16f:-7da6" ordering="1" parent="73523f48:134cd91c16f:-7dac" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="73523f48:134cd91c16f:-7da7" ordering="1" parent="73523f48:134cd91c16f:-7dac" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitLink id="73523f48:134cd91c16f:-7da9" parent="-5fcba885:134ccedce1f:-7cf6" source="73523f48:134cd91c16f:-7db5" target="73523f48:134cd91c16f:-7da7"><mxGeometry as="geometry" y="30.0"><mxPoint as="sourcePoint" x="474.0" y="250.0"/><mxPoint as="targetPoint" x="500.0" y="250.0"/></mxGeometry></ExplicitLink><ImplicitLink id="73523f48:134cd91c16f:-7d6a" parent="-5fcba885:134ccedce1f:-7cf6" source="-5fcba885:134ccedce1f:-7c6f" target="-5fcba885:134ccedce1f:-7c10"><mxGeometry as="geometry" y="30.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="180.0" y="130.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="73523f48:134cd91c16f:-7d68" parent="-5fcba885:134ccedce1f:-7cf6" source="-5fcba885:134ccedce1f:-7c12" target="73523f48:134cd91c16f:-7eab"><mxGeometry as="geometry" y="30.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="270.0" y="120.0"/></Array></mxGeometry></ImplicitLink><TextBlock id="73523f48:134cd91c16f:-7d67" parent="-5fcba885:134ccedce1f:-7cf6" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="Power in 30 ohm reeistor"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="Power in 30 ohm reeistor"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="Power in 30 ohm reeistor"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="470.0" y="200.0"/></TextBlock><ExplicitLink id="73523f48:134cd91c16f:-7d56" parent="-5fcba885:134ccedce1f:-7cf6"><!--Invalid source--><!--Invalid target--><mxGeometry as="geometry" y="140.0"><mxPoint as="sourcePoint" x="468.0" y="250.0"/><mxPoint as="targetPoint" x="492.0" y="250.0"/></mxGeometry></ExplicitLink><BasicBlock dependsOnU="1" id="73523f48:134cd91c16f:-7d55" interfaceFunctionName="POWBLK_f" ordering="15" parent="-5fcba885:134ccedce1f:-7cf6" simulationFunctionName="powblk" simulationFunctionType="DEFAULT" style="POWBLK_f;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="2"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="50.0" width="50.0" x="420.0" y="340.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataType="REAL_MATRIX" id="73523f48:134cd91c16f:-7d54" ordering="1" parent="73523f48:134cd91c16f:-7d55" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="50.0" y="16.0"/></ExplicitOutputPort><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="73523f48:134cd91c16f:-7d53" ordering="1" parent="73523f48:134cd91c16f:-7d55" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><BasicBlock dependsOnU="1" id="73523f48:134cd91c16f:-7d52" interfaceFunctionName="GAINBLK_f" ordering="16" parent="-5fcba885:134ccedce1f:-7cf6" simulationFunctionName="gain" simulationFunctionType="DEFAULT" style="GAINBLK_f;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="15"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="15.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="50.0" width="40.0" x="500.0" y="340.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="73523f48:134cd91c16f:-7d2c" ordering="1" parent="73523f48:134cd91c16f:-7d52" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="73523f48:134cd91c16f:-7d2d" ordering="1" parent="73523f48:134cd91c16f:-7d52" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitLink id="73523f48:134cd91c16f:-7d4f" parent="-5fcba885:134ccedce1f:-7cf6" source="73523f48:134cd91c16f:-7d54" target="73523f48:134cd91c16f:-7d2d"><mxGeometry as="geometry" y="140.0"><mxPoint as="sourcePoint" x="474.0" y="360.0"/><mxPoint as="targetPoint" x="500.0" y="360.0"/></mxGeometry></ExplicitLink><TextBlock id="73523f48:134cd91c16f:-7d47" parent="-5fcba885:134ccedce1f:-7cf6" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="Power in 15 ohm reeistor"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="Power in 15 ohm reeistor"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="Power in 15 ohm reeistor"/></ScilabString><mxGeometry as="geometry" height="40.0" width="120.0" x="430.0" y="310.0"/></TextBlock><SplitBlock id="73523f48:134cd91c16f:-7d34" ordering="17" parent="-5fcba885:134ccedce1f:-7cf6" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="387.0" y="247.0"/></SplitBlock><ExplicitOutputPort dataType="UNKNOW_TYPE" id="73523f48:134cd91c16f:-7d31" ordering="2" parent="73523f48:134cd91c16f:-7d34" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ExplicitOutputPort><ExplicitInputPort dataType="UNKNOW_TYPE" id="73523f48:134cd91c16f:-7d33" ordering="1" parent="73523f48:134cd91c16f:-7d34" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ExplicitInputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="73523f48:134cd91c16f:-7d32" ordering="1" parent="73523f48:134cd91c16f:-7d34" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitLink id="73523f48:134cd91c16f:-7d2f" parent="-5fcba885:134ccedce1f:-7cf6" source="73523f48:134cd91c16f:-7d32" target="73523f48:134cd91c16f:-7db6"><mxGeometry as="geometry" y="30.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ExplicitLink><ExplicitLink id="73523f48:134cd91c16f:-7d35" parent="-5fcba885:134ccedce1f:-7cf6" source="73523f48:134cd91c16f:-7d31" target="73523f48:134cd91c16f:-7d53"><mxGeometry as="geometry" y="30.0"><mxPoint as="sourcePoint" x="416.0" y="360.0"/><mxPoint as="targetPoint" x="390.0" y="250.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="390.0" y="360.0"/></Array></mxGeometry></ExplicitLink><TextBlock id="73523f48:134cd91c16f:-7d0f" parent="-5fcba885:134ccedce1f:-7cf6" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="Power in 120V voltage source"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="Power in 120V voltage source"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="Power in 120V voltage source"/></ScilabString><mxGeometry as="geometry" height="40.0" width="90.0" x="410.0" y="90.0"/></TextBlock><BasicBlock dependsOnU="1" id="73523f48:134cd91c16f:-7d0b" interfaceFunctionName="GAINBLK_f" ordering="18" parent="-5fcba885:134ccedce1f:-7cf6" simulationFunctionName="gain" simulationFunctionType="DEFAULT" style="GAINBLK_f;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="-240"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="-240.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="50.0" width="50.0" x="420.0" y="50.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="73523f48:134cd91c16f:-7cd6" ordering="1" parent="73523f48:134cd91c16f:-7d0b" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="50.0" y="16.0"/></ExplicitOutputPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="73523f48:134cd91c16f:-7cd7" ordering="1" parent="73523f48:134cd91c16f:-7d0b" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><SplitBlock id="73523f48:134cd91c16f:-7cfb" ordering="19" parent="-5fcba885:134ccedce1f:-7cf6" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="387.0" y="137.0"/></SplitBlock><ExplicitOutputPort dataType="UNKNOW_TYPE" id="73523f48:134cd91c16f:-7cf8" ordering="2" parent="73523f48:134cd91c16f:-7cfb" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ExplicitOutputPort><ExplicitInputPort dataType="UNKNOW_TYPE" id="73523f48:134cd91c16f:-7cfa" ordering="1" parent="73523f48:134cd91c16f:-7cfb" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ExplicitInputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="73523f48:134cd91c16f:-7cf9" ordering="1" parent="73523f48:134cd91c16f:-7cfb" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitLink id="73523f48:134cd91c16f:-7cf7" parent="-5fcba885:134ccedce1f:-7cf6" source="73523f48:134cd91c16f:-7dbd" target="73523f48:134cd91c16f:-7cfa"><mxGeometry as="geometry" y="30.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ExplicitLink><ExplicitLink id="73523f48:134cd91c16f:-7cf6" parent="-5fcba885:134ccedce1f:-7cf6" source="73523f48:134cd91c16f:-7cf9" target="73523f48:134cd91c16f:-7d33"><mxGeometry as="geometry" y="30.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ExplicitLink><ExplicitLink id="73523f48:134cd91c16f:-7cfc" parent="-5fcba885:134ccedce1f:-7cf6" source="73523f48:134cd91c16f:-7cf8" target="73523f48:134cd91c16f:-7cd7"><mxGeometry as="geometry" y="30.0"><mxPoint as="sourcePoint" x="416.0" y="70.0"/><mxPoint as="targetPoint" x="390.0" y="140.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="390.0" y="70.0"/></Array></mxGeometry></ExplicitLink><TextBlock id="73523f48:134cd91c16f:-7ce4" parent="-5fcba885:134ccedce1f:-7cf6" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="Power in dependent voltage source"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="Power in dependent voltage source"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="Power in dependent voltage source"/></ScilabString><mxGeometry as="geometry" height="40.0" width="90.0" x="410.0" y="20.0"/></TextBlock><GroundBlock dependsOnU="1" id="-5fcba885:134ccedce1f:-7ce5" interfaceFunctionName="Ground" ordering="20" parent="-5fcba885:134ccedce1f:-7cf6" simulationFunctionName="Ground" simulationFunctionType="DEFAULT" style="Ground;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Ground"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="150.0" y="350.0"/></GroundBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5fcba885:134ccedce1f:-7ce4" ordering="1" parent="-5fcba885:134ccedce1f:-7ce5" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><Orientation as="orientation" value="NORTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="-20c185b4:13501df43da:-7f30" interfaceFunctionName="MUX" ordering="21" parent="-5fcba885:134ccedce1f:-7cf6" simulationFunctionName="multiplex" simulationFunctionType="C_OR_FORTRAN" style="MUX;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="2"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="20.0" width="30.0" x="540.0" y="100.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="-20c185b4:13501df43da:-7f2e" ordering="1" parent="-20c185b4:13501df43da:-7f30" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ExplicitInputPort><ExplicitInputPort dataColumns="1" dataLines="-2" dataType="REAL_MATRIX" id="-20c185b4:13501df43da:-7f2d" ordering="2" parent="-20c185b4:13501df43da:-7f30" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitOutputPort dataColumns="1" dataLines="0" dataType="REAL_MATRIX" id="-20c185b4:13501df43da:-7f2f" ordering="1" parent="-20c185b4:13501df43da:-7f30" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="30.0" y="6.0"/></ExplicitOutputPort><ExplicitLink id="-20c185b4:13501df43da:-7f20" parent="-5fcba885:134ccedce1f:-7cf6" source="73523f48:134cd91c16f:-7cd6" target="-20c185b4:13501df43da:-7f2e"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="474.0" y="70.0"/><mxPoint as="targetPoint" x="530.0" y="100.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="530.0" y="100.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="-20c185b4:13501df43da:-7f1f" parent="-5fcba885:134ccedce1f:-7cf6" source="73523f48:134cd91c16f:-7df0" target="-20c185b4:13501df43da:-7f2d"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="464.0" y="140.0"/><mxPoint as="targetPoint" x="530.0" y="120.0"/></mxGeometry></ExplicitLink><BasicBlock dependsOnU="1" id="-20c185b4:13501df43da:-7f13" interfaceFunctionName="MUX" ordering="22" parent="-5fcba885:134ccedce1f:-7cf6" simulationFunctionName="multiplex" simulationFunctionType="C_OR_FORTRAN" style="MUX;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="2"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="20.0" width="30.0" x="560.0" y="290.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="-20c185b4:13501df43da:-7f11" ordering="1" parent="-20c185b4:13501df43da:-7f13" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ExplicitInputPort><ExplicitInputPort dataColumns="1" dataLines="-2" dataType="REAL_MATRIX" id="-20c185b4:13501df43da:-7f10" ordering="2" parent="-20c185b4:13501df43da:-7f13" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitOutputPort dataColumns="1" dataLines="0" dataType="REAL_MATRIX" id="-20c185b4:13501df43da:-7f12" ordering="1" parent="-20c185b4:13501df43da:-7f13" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="30.0" y="6.0"/></ExplicitOutputPort><ExplicitLink id="-20c185b4:13501df43da:-7f02" parent="-5fcba885:134ccedce1f:-7cf6" source="73523f48:134cd91c16f:-7da6" target="-20c185b4:13501df43da:-7f11"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="544.0" y="250.0"/><mxPoint as="targetPoint" x="560.0" y="290.0"/></mxGeometry></ExplicitLink><ExplicitLink id="-20c185b4:13501df43da:-7f01" parent="-5fcba885:134ccedce1f:-7cf6" source="73523f48:134cd91c16f:-7d2c" target="-20c185b4:13501df43da:-7f10"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="556.0" y="310.0"/><mxPoint as="targetPoint" x="550.0" y="360.0"/></mxGeometry></ExplicitLink><BasicBlock dependsOnU="1" id="-20c185b4:13501df43da:-7ede" interfaceFunctionName="CSCOPE" ordering="23" parent="-5fcba885:134ccedce1f:-7cf6" simulationFunctionName="cscope" simulationFunctionType="C_OR_FORTRAN" style="CSCOPE;flip=false;mirror=false"><ScilabString as="exprs" height="10" width="1"><data column="0" line="0" value="1 3 5 7 9 11 13 15"/><data column="0" line="1" value="-1"/><data column="0" line="2" value="[]"/><data column="0" line="3" value="[600;400]"/><data column="0" line="4" value="-2000"/><data column="0" line="5" value="2000"/><data column="0" line="6" value="30"/><data column="0" line="7" value="20"/><data column="0" line="8" value="0"/><data column="0" line="9" value=""/></ScilabString><ScilabDouble as="realParameters" height="4" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="-2000.0"/><data column="0" line="2" realPart="2000.0"/><data column="0" line="3" realPart="30.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="15" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="1.0"/><data column="0" line="4" realPart="3.0"/><data column="0" line="5" realPart="5.0"/><data column="0" line="6" realPart="7.0"/><data column="0" line="7" realPart="9.0"/><data column="0" line="8" realPart="11.0"/><data column="0" line="9" realPart="13.0"/><data column="0" line="10" realPart="15.0"/><data column="0" line="11" realPart="-1.0"/><data column="0" line="12" realPart="-1.0"/><data column="0" line="13" realPart="600.0"/><data column="0" line="14" realPart="400.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="680.0" y="190.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="-20c185b4:13501df43da:-7ec5" ordering="1" parent="-20c185b4:13501df43da:-7ede" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ControlPort dataType="UNKNOW_TYPE" id="-20c185b4:13501df43da:-7ec4" ordering="1" parent="-20c185b4:13501df43da:-7ede" style="ControlPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><BasicBlock dependsOnU="1" id="-20c185b4:13501df43da:-7ed7" interfaceFunctionName="MUX" ordering="24" parent="-5fcba885:134ccedce1f:-7cf6" simulationFunctionName="multiplex" simulationFunctionType="C_OR_FORTRAN" style="MUX;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="2"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="20.0" width="30.0" x="620.0" y="200.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="-20c185b4:13501df43da:-7ed5" ordering="1" parent="-20c185b4:13501df43da:-7ed7" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ExplicitInputPort><ExplicitInputPort dataColumns="1" dataLines="-2" dataType="REAL_MATRIX" id="-20c185b4:13501df43da:-7ed4" ordering="2" parent="-20c185b4:13501df43da:-7ed7" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitOutputPort dataColumns="1" dataLines="0" dataType="REAL_MATRIX" id="-20c185b4:13501df43da:-7ed6" ordering="1" parent="-20c185b4:13501df43da:-7ed7" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="30.0" y="6.0"/></ExplicitOutputPort><ExplicitLink id="-20c185b4:13501df43da:-7eca" parent="-5fcba885:134ccedce1f:-7cf6" source="-20c185b4:13501df43da:-7f2f" target="-20c185b4:13501df43da:-7ed5"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="574.0" y="110.0"/><mxPoint as="targetPoint" x="610.0" y="200.0"/></mxGeometry></ExplicitLink><ExplicitLink id="-20c185b4:13501df43da:-7ec9" parent="-5fcba885:134ccedce1f:-7cf6" source="-20c185b4:13501df43da:-7f12" target="-20c185b4:13501df43da:-7ed4"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="594.0" y="300.0"/><mxPoint as="targetPoint" x="610.0" y="220.0"/></mxGeometry></ExplicitLink><ExplicitLink id="-20c185b4:13501df43da:-7ec8" parent="-5fcba885:134ccedce1f:-7cf6" source="-20c185b4:13501df43da:-7ed6" target="-20c185b4:13501df43da:-7ec5"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="654.0" y="210.0"/><mxPoint as="targetPoint" x="670.0" y="210.0"/></mxGeometry></ExplicitLink><BasicBlock dependsOnU="1" id="-5fcba885:134ccedce1f:-7ccf" interfaceFunctionName="Resistor" ordering="25" parent="-5fcba885:134ccedce1f:-7cf6" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="30"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="30.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="30.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="110.0" y="110.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5fcba885:134ccedce1f:-7c70" ordering="1" parent="-5fcba885:134ccedce1f:-7ccf" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5fcba885:134ccedce1f:-7c6f" ordering="1" parent="-5fcba885:134ccedce1f:-7ccf" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><BasicBlock blockType="h" id="-13640e5a:13894ab8a5f:-7e21" interfaceFunctionName="CLOCK_c" ordering="26" parent="-5fcba885:134ccedce1f:-7cf6" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="99.0"/><data column="1" line="0" realPart="-160.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-1448c655:1671be28b59:-7eef"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-1448c655:1671be28b59:-7eef"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-70.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.1"/><data column="0" line="1" value="0.1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.1"/><data column="0" line="1" realPart="0.1"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.1"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-1448c655:1671be28b59:-7eed"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-1448c655:1671be28b59:-7eed"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="90.3773266666667"/><data column="1" line="0" realPart="-166.33333333333331"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="7.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="5.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-1448c655:1671be28b59:-7eea"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-1448c655:1671be28b59:-7eea"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="60.0"/><data column="0" line="2" realPart="97.54399333333338"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-74.0"/><data column="0" line="1" realPart="-170.0"/><data column="0" line="2" realPart="-155.33333333333331"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="97.48843777777782"/><data column="0" line="1" realPart="129.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-163.66666666666666"/><data column="0" line="1" realPart="-136.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="97.59954888888893"/><data column="0" line="1" realPart="100.70999999999998"/><data column="0" line="2" realPart="60.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-163.66666666666666"/><data column="0" line="1" realPart="-40.0"/><data column="0" line="2" realPart="-40.0"/><data column="0" line="3" realPart="-26.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="680.0" y="120.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="-13640e5a:13894ab8a5f:-7e20" ordering="1" parent="-13640e5a:13894ab8a5f:-7e21" style="CommandPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><CommandControlLink id="-13640e5a:13894ab8a5f:-7e1f" parent="-5fcba885:134ccedce1f:-7cf6" source="-13640e5a:13894ab8a5f:-7e20" target="-20c185b4:13501df43da:-7ec4"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="700.0" y="164.0"/><mxPoint as="targetPoint" x="700.0" y="190.0"/></mxGeometry></CommandControlLink></root></mxGraphModel><mxCell as="defaultParent" id="-5fcba885:134ccedce1f:-7cf6" parent="-5fcba885:134ccedce1f:-7cf5"/></XcosDiagram>
\ No newline at end of file diff --git a/Working_Examples/215/CH3/EX3.6/Figure3_6.jpg b/Working_Examples/215/CH3/EX3.6/Figure3_6.jpg Binary files differnew file mode 100755 index 0000000..7fcfbde --- /dev/null +++ b/Working_Examples/215/CH3/EX3.6/Figure3_6.jpg diff --git a/Working_Examples/215/CH3/EX3.6/Figure3_6_xcos.jpg b/Working_Examples/215/CH3/EX3.6/Figure3_6_xcos.jpg Binary files differnew file mode 100755 index 0000000..5ae477e --- /dev/null +++ b/Working_Examples/215/CH3/EX3.6/Figure3_6_xcos.jpg diff --git a/Working_Examples/215/CH3/EX3.6/ex3_6.xcos b/Working_Examples/215/CH3/EX3.6/ex3_6.xcos new file mode 100755 index 0000000..cb900d1 --- /dev/null +++ b/Working_Examples/215/CH3/EX3.6/ex3_6.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" finalIntegrationTime="30.0" title="ex3_6"><!--Xcos - 1.0 - scilab-5.5.2 - 20160406 2040--><mxGraphModel as="model"><root><mxCell id="-5005d4b1:131a4cd73b3:-7eb7"/><mxCell id="-5005d4b1:131a4cd73b3:-7eb8" parent="-5005d4b1:131a4cd73b3:-7eb7"/><BasicBlock angle="90" dependsOnU="1" id="-5005d4b1:131a4cd73b3:-7dd3" interfaceFunctionName="Resistor" ordering="1" parent="-5005d4b1:131a4cd73b3:-7eb8" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;flip=false;mirror=false;rotation=90"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="1/15"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="0.06666666666666667"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.06666666666666667"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="310.0" y="160.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5005d4b1:131a4cd73b3:-7d05" ordering="1" parent="-5005d4b1:131a4cd73b3:-7dd3" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5005d4b1:131a4cd73b3:-7d04" ordering="1" parent="-5005d4b1:131a4cd73b3:-7dd3" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><BasicBlock angle="90" dependsOnT="1" id="-5005d4b1:131a4cd73b3:-7dba" interfaceFunctionName="CCS" ordering="2" parent="-5005d4b1:131a4cd73b3:-7eb8" simulationFunctionName="CCS" simulationFunctionType="DEFAULT" style="CCS;rotation=90;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CCS"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="Iin"/><data column="0" line="1" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="230.0" y="170.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5005d4b1:131a4cd73b3:-7db9" ordering="1" parent="-5005d4b1:131a4cd73b3:-7dba" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5005d4b1:131a4cd73b3:-7db8" ordering="1" parent="-5005d4b1:131a4cd73b3:-7dba" style="ExplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="6.0" y="-8.0"/></ExplicitInputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5005d4b1:131a4cd73b3:-7db7" ordering="2" parent="-5005d4b1:131a4cd73b3:-7dba" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="26.0" y="-8.0"/></ImplicitInputPort><BasicBlock blockType="d" id="-5005d4b1:131a4cd73b3:-7da1" interfaceFunctionName="CONST_m" ordering="3" parent="-5005d4b1:131a4cd73b3:-7eb8" simulationFunctionName="cstblk4" simulationFunctionType="C_OR_FORTRAN" style="CONST_m;flip=false;mirror=false" value="30"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="30"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="30.0"/></ScilabDouble></Array><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="50.0" width="40.0" x="190.0" y="90.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5005d4b1:131a4cd73b3:-7d08" ordering="1" parent="-5005d4b1:131a4cd73b3:-7da1" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><SplitBlock id="-5005d4b1:131a4cd73b3:-7d7a" ordering="4" parent="-5005d4b1:131a4cd73b3:-7eb8" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="137.0" y="67.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="-5005d4b1:131a4cd73b3:-7d79" ordering="1" parent="-5005d4b1:131a4cd73b3:-7d7a" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5005d4b1:131a4cd73b3:-7d78" ordering="1" parent="-5005d4b1:131a4cd73b3:-7d7a" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5005d4b1:131a4cd73b3:-7d77" ordering="2" parent="-5005d4b1:131a4cd73b3:-7d7a" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitLink id="-5005d4b1:131a4cd73b3:-7d76" parent="-5005d4b1:131a4cd73b3:-7eb8" source="-5005d4b1:131a4cd73b3:-7e5a" target="-5005d4b1:131a4cd73b3:-7d79"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="60.0" y="70.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-5005d4b1:131a4cd73b3:-7d7b" parent="-5005d4b1:131a4cd73b3:-7eb8" source="-5005d4b1:131a4cd73b3:-7d77" target="-5005d4b1:131a4cd73b3:-7d0c"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="150.0" y="136.0"/><mxPoint as="targetPoint" x="150.0" y="70.0"/></mxGeometry></ImplicitLink><SplitBlock id="-5005d4b1:131a4cd73b3:-7d73" ordering="5" parent="-5005d4b1:131a4cd73b3:-7eb8" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="257.0" y="67.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="-5005d4b1:131a4cd73b3:-7d72" ordering="1" parent="-5005d4b1:131a4cd73b3:-7d73" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5005d4b1:131a4cd73b3:-7d71" ordering="1" parent="-5005d4b1:131a4cd73b3:-7d73" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5005d4b1:131a4cd73b3:-7d70" ordering="2" parent="-5005d4b1:131a4cd73b3:-7d73" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitLink id="-5005d4b1:131a4cd73b3:-7d6f" parent="-5005d4b1:131a4cd73b3:-7eb8" source="-5005d4b1:131a4cd73b3:-7d78" target="-5005d4b1:131a4cd73b3:-7d72"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-5005d4b1:131a4cd73b3:-7d74" parent="-5005d4b1:131a4cd73b3:-7eb8" source="-5005d4b1:131a4cd73b3:-7d70" target="-5005d4b1:131a4cd73b3:-7db7"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="260.0" y="166.0"/><mxPoint as="targetPoint" x="260.0" y="70.0"/></mxGeometry></ImplicitLink><SplitBlock id="-5005d4b1:131a4cd73b3:-7d65" ordering="6" parent="-5005d4b1:131a4cd73b3:-7eb8" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="137.0" y="327.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="-5005d4b1:131a4cd73b3:-7d64" ordering="1" parent="-5005d4b1:131a4cd73b3:-7d65" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5005d4b1:131a4cd73b3:-7d63" ordering="1" parent="-5005d4b1:131a4cd73b3:-7d65" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5005d4b1:131a4cd73b3:-7d62" ordering="2" parent="-5005d4b1:131a4cd73b3:-7d65" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitLink id="-5005d4b1:131a4cd73b3:-7d60" parent="-5005d4b1:131a4cd73b3:-7eb8" source="-5005d4b1:131a4cd73b3:-7d63" target="-5005d4b1:131a4cd73b3:-7e58"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="70.0" y="330.0"/></Array></mxGeometry></ImplicitLink><ExplicitLink id="-5005d4b1:131a4cd73b3:-7d40" parent="-5005d4b1:131a4cd73b3:-7eb8" source="-5005d4b1:131a4cd73b3:-7d08" target="-5005d4b1:131a4cd73b3:-7db8"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="234.0" y="110.0"/><mxPoint as="targetPoint" x="240.0" y="160.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="240.0" y="110.0"/></Array></mxGeometry></ExplicitLink><BasicBlock blockType="d" id="-5005d4b1:131a4cd73b3:-7d3d" interfaceFunctionName="CONST_m" ordering="7" parent="-5005d4b1:131a4cd73b3:-7eb8" simulationFunctionName="cstblk4" simulationFunctionType="C_OR_FORTRAN" style="CONST_m;flip=false;mirror=false" value="120"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="120"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="120.0"/></ScilabDouble></Array><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="50.0" width="40.0" x="10.0" y="230.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5005d4b1:131a4cd73b3:-7d0f" ordering="1" parent="-5005d4b1:131a4cd73b3:-7d3d" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ExplicitLink id="-5005d4b1:131a4cd73b3:-7d39" parent="-5005d4b1:131a4cd73b3:-7eb8" source="-5005d4b1:131a4cd73b3:-7d0f" target="-5005d4b1:131a4cd73b3:-7e59"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="44.0" y="250.0"/><mxPoint as="targetPoint" x="50.0" y="210.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="50.0" y="250.0"/></Array></mxGeometry></ExplicitLink><BasicBlock dependsOnU="1" id="-5005d4b1:131a4cd73b3:-7d21" interfaceFunctionName="PotentialSensor" ordering="8" parent="-5005d4b1:131a4cd73b3:-7eb8" simulationFunctionName="PotentialSensor" simulationFunctionType="DEFAULT" style="PotentialSensor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="PotentialSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="v"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="380.0" y="50.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5005d4b1:131a4cd73b3:-7d1f" ordering="1" parent="-5005d4b1:131a4cd73b3:-7d21" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5005d4b1:131a4cd73b3:-7d20" ordering="1" parent="-5005d4b1:131a4cd73b3:-7d21" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><SplitBlock id="-5005d4b1:131a4cd73b3:-7d1d" ordering="9" parent="-5005d4b1:131a4cd73b3:-7eb8" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="327.0" y="67.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="-5005d4b1:131a4cd73b3:-7d1c" ordering="1" parent="-5005d4b1:131a4cd73b3:-7d1d" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5005d4b1:131a4cd73b3:-7d1b" ordering="1" parent="-5005d4b1:131a4cd73b3:-7d1d" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5005d4b1:131a4cd73b3:-7d1a" ordering="2" parent="-5005d4b1:131a4cd73b3:-7d1d" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitLink id="-5005d4b1:131a4cd73b3:-7d19" parent="-5005d4b1:131a4cd73b3:-7eb8" source="-5005d4b1:131a4cd73b3:-7d71" target="-5005d4b1:131a4cd73b3:-7d1c"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-5005d4b1:131a4cd73b3:-7d18" parent="-5005d4b1:131a4cd73b3:-7eb8" source="-5005d4b1:131a4cd73b3:-7d1b" target="-5005d4b1:131a4cd73b3:-7d05"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-5005d4b1:131a4cd73b3:-7d1e" parent="-5005d4b1:131a4cd73b3:-7eb8" source="-5005d4b1:131a4cd73b3:-7d1a" target="-5005d4b1:131a4cd73b3:-7d1f"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="376.0" y="70.0"/><mxPoint as="targetPoint" x="330.0" y="70.0"/></mxGeometry></ImplicitLink><BasicBlock dependsOnU="1" id="-5005d4b1:131a4cd73b3:-7cf2" interfaceFunctionName="GAINBLK_f" ordering="10" parent="-5005d4b1:131a4cd73b3:-7eb8" simulationFunctionName="gain" simulationFunctionType="DEFAULT" style="GAINBLK_f;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="30"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="30.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="50.0" width="40.0" x="560.0" y="50.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5005d4b1:131a4cd73b3:-7c3f" ordering="1" parent="-5005d4b1:131a4cd73b3:-7cf2" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5005d4b1:131a4cd73b3:-7c3e" ordering="1" parent="-5005d4b1:131a4cd73b3:-7cf2" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><BasicBlock dependsOnU="1" id="-5005d4b1:131a4cd73b3:-7ce8" interfaceFunctionName="POWBLK_f" ordering="11" parent="-5005d4b1:131a4cd73b3:-7eb8" simulationFunctionName="powblk" simulationFunctionType="DEFAULT" style="POWBLK_f;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="2"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="50.0" width="50.0" x="460.0" y="50.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="-5005d4b1:131a4cd73b3:-7cda" ordering="1" parent="-5005d4b1:131a4cd73b3:-7ce8" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitOutputPort dataColumns="1" dataType="REAL_MATRIX" id="-5005d4b1:131a4cd73b3:-7cd9" ordering="1" parent="-5005d4b1:131a4cd73b3:-7ce8" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="50.0" y="16.0"/></ExplicitOutputPort><ExplicitLink id="-5005d4b1:131a4cd73b3:-7ccd" parent="-5005d4b1:131a4cd73b3:-7eb8" source="-5005d4b1:131a4cd73b3:-7cd9" target="-5005d4b1:131a4cd73b3:-7c3f"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="514.0" y="70.0"/><mxPoint as="targetPoint" x="560.0" y="70.0"/></mxGeometry></ExplicitLink><BasicBlock dependsOnU="1" id="-5005d4b1:131a4cd73b3:-7cc5" interfaceFunctionName="GAINBLK_f" ordering="12" parent="-5005d4b1:131a4cd73b3:-7eb8" simulationFunctionName="gain" simulationFunctionType="DEFAULT" style="GAINBLK_f;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="15"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="15.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="50.0" width="40.0" x="560.0" y="130.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5005d4b1:131a4cd73b3:-7c3b" ordering="1" parent="-5005d4b1:131a4cd73b3:-7cc5" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5005d4b1:131a4cd73b3:-7c3a" ordering="1" parent="-5005d4b1:131a4cd73b3:-7cc5" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><BasicBlock dependsOnU="1" id="-5005d4b1:131a4cd73b3:-7cc2" interfaceFunctionName="POWBLK_f" ordering="13" parent="-5005d4b1:131a4cd73b3:-7eb8" simulationFunctionName="powblk" simulationFunctionType="DEFAULT" style="POWBLK_f;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="2"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="50.0" width="50.0" x="460.0" y="130.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="-5005d4b1:131a4cd73b3:-7cc0" ordering="1" parent="-5005d4b1:131a4cd73b3:-7cc2" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitOutputPort dataColumns="1" dataType="REAL_MATRIX" id="-5005d4b1:131a4cd73b3:-7cc1" ordering="1" parent="-5005d4b1:131a4cd73b3:-7cc2" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="50.0" y="16.0"/></ExplicitOutputPort><ExplicitLink id="-5005d4b1:131a4cd73b3:-7cbf" parent="-5005d4b1:131a4cd73b3:-7eb8" source="-5005d4b1:131a4cd73b3:-7cc1" target="-5005d4b1:131a4cd73b3:-7c3b"><mxGeometry as="geometry" y="80.0"><mxPoint as="sourcePoint" x="514.0" y="150.0"/><mxPoint as="targetPoint" x="560.0" y="150.0"/></mxGeometry></ExplicitLink><SplitBlock id="-5005d4b1:131a4cd73b3:-7cb6" ordering="14" parent="-5005d4b1:131a4cd73b3:-7eb8" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="427.0" y="67.0"/></SplitBlock><ExplicitInputPort dataType="UNKNOW_TYPE" id="-5005d4b1:131a4cd73b3:-7cb5" ordering="1" parent="-5005d4b1:131a4cd73b3:-7cb6" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ExplicitInputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="-5005d4b1:131a4cd73b3:-7cb4" ordering="1" parent="-5005d4b1:131a4cd73b3:-7cb6" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="-5005d4b1:131a4cd73b3:-7cb3" ordering="2" parent="-5005d4b1:131a4cd73b3:-7cb6" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ExplicitOutputPort><ExplicitLink id="-5005d4b1:131a4cd73b3:-7cb2" parent="-5005d4b1:131a4cd73b3:-7eb8" source="-5005d4b1:131a4cd73b3:-7d20" target="-5005d4b1:131a4cd73b3:-7cb5"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ExplicitLink><ExplicitLink id="-5005d4b1:131a4cd73b3:-7cb1" parent="-5005d4b1:131a4cd73b3:-7eb8" source="-5005d4b1:131a4cd73b3:-7cb4" target="-5005d4b1:131a4cd73b3:-7cda"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ExplicitLink><BasicBlock dependsOnU="1" id="-5005d4b1:131a4cd73b3:-7ca4" interfaceFunctionName="GAINBLK_f" ordering="15" parent="-5005d4b1:131a4cd73b3:-7eb8" simulationFunctionName="gain" simulationFunctionType="DEFAULT" style="GAINBLK_f;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="-120"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="-120.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="50.0" width="40.0" x="560.0" y="200.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5005d4b1:131a4cd73b3:-7c37" ordering="1" parent="-5005d4b1:131a4cd73b3:-7ca4" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5005d4b1:131a4cd73b3:-7c36" ordering="1" parent="-5005d4b1:131a4cd73b3:-7ca4" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><BasicBlock dependsOnU="1" id="-5005d4b1:131a4cd73b3:-7ca1" interfaceFunctionName="GAINBLK_f" ordering="16" parent="-5005d4b1:131a4cd73b3:-7eb8" simulationFunctionName="gain" simulationFunctionType="DEFAULT" style="GAINBLK_f;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="30"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="30.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="50.0" width="40.0" x="560.0" y="280.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5005d4b1:131a4cd73b3:-7c33" ordering="1" parent="-5005d4b1:131a4cd73b3:-7ca1" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5005d4b1:131a4cd73b3:-7c32" ordering="1" parent="-5005d4b1:131a4cd73b3:-7ca1" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><SplitBlock id="-5005d4b1:131a4cd73b3:-7c91" ordering="17" parent="-5005d4b1:131a4cd73b3:-7eb8" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="427.0" y="147.0"/></SplitBlock><ExplicitInputPort dataType="UNKNOW_TYPE" id="-5005d4b1:131a4cd73b3:-7c90" ordering="1" parent="-5005d4b1:131a4cd73b3:-7c91" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ExplicitInputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="-5005d4b1:131a4cd73b3:-7c8f" ordering="1" parent="-5005d4b1:131a4cd73b3:-7c91" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="-5005d4b1:131a4cd73b3:-7c8e" ordering="2" parent="-5005d4b1:131a4cd73b3:-7c91" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ExplicitOutputPort><ExplicitLink id="-5005d4b1:131a4cd73b3:-7c8d" parent="-5005d4b1:131a4cd73b3:-7eb8" source="-5005d4b1:131a4cd73b3:-7cb3" target="-5005d4b1:131a4cd73b3:-7c90"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ExplicitLink><ExplicitLink id="-5005d4b1:131a4cd73b3:-7c8c" parent="-5005d4b1:131a4cd73b3:-7eb8" source="-5005d4b1:131a4cd73b3:-7c8f" target="-5005d4b1:131a4cd73b3:-7cc0"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ExplicitLink><SplitBlock id="-5005d4b1:131a4cd73b3:-7c8a" ordering="18" parent="-5005d4b1:131a4cd73b3:-7eb8" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="427.0" y="217.0"/></SplitBlock><ExplicitInputPort dataType="UNKNOW_TYPE" id="-5005d4b1:131a4cd73b3:-7c89" ordering="1" parent="-5005d4b1:131a4cd73b3:-7c8a" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ExplicitInputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="-5005d4b1:131a4cd73b3:-7c88" ordering="1" parent="-5005d4b1:131a4cd73b3:-7c8a" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="-5005d4b1:131a4cd73b3:-7c87" ordering="2" parent="-5005d4b1:131a4cd73b3:-7c8a" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ExplicitOutputPort><ExplicitLink id="-5005d4b1:131a4cd73b3:-7c86" parent="-5005d4b1:131a4cd73b3:-7eb8" source="-5005d4b1:131a4cd73b3:-7c8e" target="-5005d4b1:131a4cd73b3:-7c89"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ExplicitLink><ExplicitLink id="-5005d4b1:131a4cd73b3:-7c85" parent="-5005d4b1:131a4cd73b3:-7eb8" source="-5005d4b1:131a4cd73b3:-7c88" target="-5005d4b1:131a4cd73b3:-7c37"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ExplicitLink><ExplicitLink id="-5005d4b1:131a4cd73b3:-7c8b" parent="-5005d4b1:131a4cd73b3:-7eb8" source="-5005d4b1:131a4cd73b3:-7c87" target="-5005d4b1:131a4cd73b3:-7c33"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="546.0" y="300.0"/><mxPoint as="targetPoint" x="430.0" y="220.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="430.0" y="300.0"/></Array></mxGeometry></ExplicitLink><BasicBlock dependsOnU="1" id="-5005d4b1:131a4cd73b3:-7c7b" interfaceFunctionName="MUX" ordering="19" parent="-5005d4b1:131a4cd73b3:-7eb8" simulationFunctionName="multiplex" simulationFunctionType="C_OR_FORTRAN" style="MUX;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="2"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="20.0" width="30.0" x="650.0" y="90.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="0" dataType="REAL_MATRIX" id="-5005d4b1:131a4cd73b3:-7c7a" ordering="1" parent="-5005d4b1:131a4cd73b3:-7c7b" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="30.0" y="6.0"/></ExplicitOutputPort><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="-5005d4b1:131a4cd73b3:-7c79" ordering="1" parent="-5005d4b1:131a4cd73b3:-7c7b" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ExplicitInputPort><ExplicitInputPort dataColumns="1" dataLines="-2" dataType="REAL_MATRIX" id="-5005d4b1:131a4cd73b3:-7c78" ordering="2" parent="-5005d4b1:131a4cd73b3:-7c7b" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitLink id="-5005d4b1:131a4cd73b3:-7c77" parent="-5005d4b1:131a4cd73b3:-7eb8" source="-5005d4b1:131a4cd73b3:-7c3e" target="-5005d4b1:131a4cd73b3:-7c79"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="604.0" y="70.0"/><mxPoint as="targetPoint" x="640.0" y="90.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="620.0" y="70.0"/><mxPoint x="620.0" y="90.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="-5005d4b1:131a4cd73b3:-7c76" parent="-5005d4b1:131a4cd73b3:-7eb8" source="-5005d4b1:131a4cd73b3:-7c3a" target="-5005d4b1:131a4cd73b3:-7c78"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="604.0" y="150.0"/><mxPoint as="targetPoint" x="650.0" y="110.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="620.0" y="150.0"/><mxPoint x="620.0" y="110.0"/><mxPoint x="650.0" y="110.0"/></Array></mxGeometry></ExplicitLink><BasicBlock dependsOnU="1" id="-5005d4b1:131a4cd73b3:-7c71" interfaceFunctionName="MUX" ordering="20" parent="-5005d4b1:131a4cd73b3:-7eb8" simulationFunctionName="multiplex" simulationFunctionType="C_OR_FORTRAN" style="MUX;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="2"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="20.0" width="30.0" x="650.0" y="240.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="0" dataType="REAL_MATRIX" id="-5005d4b1:131a4cd73b3:-7c70" ordering="1" parent="-5005d4b1:131a4cd73b3:-7c71" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="30.0" y="6.0"/></ExplicitOutputPort><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="-5005d4b1:131a4cd73b3:-7c6f" ordering="1" parent="-5005d4b1:131a4cd73b3:-7c71" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ExplicitInputPort><ExplicitInputPort dataColumns="1" dataLines="-2" dataType="REAL_MATRIX" id="-5005d4b1:131a4cd73b3:-7c6e" ordering="2" parent="-5005d4b1:131a4cd73b3:-7c71" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitLink id="-5005d4b1:131a4cd73b3:-7c69" parent="-5005d4b1:131a4cd73b3:-7eb8" source="-5005d4b1:131a4cd73b3:-7c36" target="-5005d4b1:131a4cd73b3:-7c6f"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="604.0" y="220.0"/><mxPoint as="targetPoint" x="640.0" y="240.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="620.0" y="220.0"/><mxPoint x="620.0" y="240.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="-5005d4b1:131a4cd73b3:-7c68" parent="-5005d4b1:131a4cd73b3:-7eb8" source="-5005d4b1:131a4cd73b3:-7c32" target="-5005d4b1:131a4cd73b3:-7c6e"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="646.0" y="260.0"/><mxPoint as="targetPoint" x="600.0" y="300.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="620.0" y="300.0"/><mxPoint x="620.0" y="260.0"/></Array></mxGeometry></ExplicitLink><BasicBlock angle="270" dependsOnT="1" id="-5005d4b1:131a4cd73b3:-7e5b" interfaceFunctionName="CCS" ordering="21" parent="-5005d4b1:131a4cd73b3:-7eb8" simulationFunctionName="CCS" simulationFunctionType="DEFAULT" style="CCS;rotation=270;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CCS"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="Iin"/><data column="0" line="1" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="40.0" y="170.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5005d4b1:131a4cd73b3:-7e5a" ordering="1" parent="-5005d4b1:131a4cd73b3:-7e5b" style="ImplicitOutputPort;align=center;verticalAlign=top;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitOutputPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5005d4b1:131a4cd73b3:-7e59" ordering="1" parent="-5005d4b1:131a4cd73b3:-7e5b" style="ExplicitInputPort;align=center;verticalAlign=bottom;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="6.0" y="40.0"/></ExplicitInputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5005d4b1:131a4cd73b3:-7e58" ordering="2" parent="-5005d4b1:131a4cd73b3:-7e5b" style="ImplicitInputPort;align=center;verticalAlign=bottom;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="26.0" y="40.0"/></ImplicitInputPort><BasicBlock angle="90" dependsOnU="1" id="-5005d4b1:131a4cd73b3:-7e02" interfaceFunctionName="Resistor" ordering="22" parent="-5005d4b1:131a4cd73b3:-7eb8" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;flip=false;mirror=false;rotation=90"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="1/30"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="0.03333333333333333"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.03333333333333333"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="120.0" y="160.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5005d4b1:131a4cd73b3:-7d0c" ordering="1" parent="-5005d4b1:131a4cd73b3:-7e02" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5005d4b1:131a4cd73b3:-7d0b" ordering="1" parent="-5005d4b1:131a4cd73b3:-7e02" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><BasicBlock dependsOnU="1" id="-20c185b4:13501df43da:-7e00" interfaceFunctionName="MUX" ordering="23" parent="-5005d4b1:131a4cd73b3:-7eb8" simulationFunctionName="multiplex" simulationFunctionType="C_OR_FORTRAN" style="MUX;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="2"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="20.0" width="30.0" x="710.0" y="160.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="0" dataType="REAL_MATRIX" id="-20c185b4:13501df43da:-7dfe" ordering="1" parent="-20c185b4:13501df43da:-7e00" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="30.0" y="6.0"/></ExplicitOutputPort><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="-20c185b4:13501df43da:-7dfd" ordering="1" parent="-20c185b4:13501df43da:-7e00" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ExplicitInputPort><ExplicitInputPort dataColumns="1" dataLines="-2" dataType="REAL_MATRIX" id="-20c185b4:13501df43da:-7dff" ordering="2" parent="-20c185b4:13501df43da:-7e00" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><BasicBlock dependsOnU="1" id="-20c185b4:13501df43da:-7df8" interfaceFunctionName="CSCOPE" ordering="24" parent="-5005d4b1:131a4cd73b3:-7eb8" simulationFunctionName="cscope" simulationFunctionType="C_OR_FORTRAN" style="CSCOPE;flip=false;mirror=false"><ScilabString as="exprs" height="10" width="1"><data column="0" line="0" value="1 3 5 7 9 11 13 15"/><data column="0" line="1" value="-1"/><data column="0" line="2" value="[]"/><data column="0" line="3" value="[600;400]"/><data column="0" line="4" value="-250"/><data column="0" line="5" value="150"/><data column="0" line="6" value="30"/><data column="0" line="7" value="20"/><data column="0" line="8" value="0"/><data column="0" line="9" value=""/></ScilabString><ScilabDouble as="realParameters" height="4" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="-250.0"/><data column="0" line="2" realPart="150.0"/><data column="0" line="3" realPart="30.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="15" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="1.0"/><data column="0" line="4" realPart="3.0"/><data column="0" line="5" realPart="5.0"/><data column="0" line="6" realPart="7.0"/><data column="0" line="7" realPart="9.0"/><data column="0" line="8" realPart="11.0"/><data column="0" line="9" realPart="13.0"/><data column="0" line="10" realPart="15.0"/><data column="0" line="11" realPart="-1.0"/><data column="0" line="12" realPart="-1.0"/><data column="0" line="13" realPart="600.0"/><data column="0" line="14" realPart="400.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="780.0" y="150.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="-20c185b4:13501df43da:-7df0" ordering="1" parent="-20c185b4:13501df43da:-7df8" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ControlPort dataType="UNKNOW_TYPE" id="-20c185b4:13501df43da:-7def" ordering="1" parent="-20c185b4:13501df43da:-7df8" style="ControlPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><ExplicitLink id="-20c185b4:13501df43da:-7df4" parent="-5005d4b1:131a4cd73b3:-7eb8" source="-20c185b4:13501df43da:-7dfe" target="-20c185b4:13501df43da:-7df0"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="744.0" y="170.0"/><mxPoint as="targetPoint" x="770.0" y="170.0"/></mxGeometry></ExplicitLink><ExplicitLink id="-20c185b4:13501df43da:-7df3" parent="-5005d4b1:131a4cd73b3:-7eb8" source="-5005d4b1:131a4cd73b3:-7c7a" target="-20c185b4:13501df43da:-7dfd"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="684.0" y="100.0"/><mxPoint as="targetPoint" x="700.0" y="160.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="690.0" y="100.0"/><mxPoint x="690.0" y="160.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="-20c185b4:13501df43da:-7df2" parent="-5005d4b1:131a4cd73b3:-7eb8" source="-5005d4b1:131a4cd73b3:-7c70" target="-20c185b4:13501df43da:-7dff"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="684.0" y="250.0"/><mxPoint as="targetPoint" x="700.0" y="180.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="690.0" y="250.0"/><mxPoint x="690.0" y="180.0"/></Array></mxGeometry></ExplicitLink><SplitBlock id="-20c185b4:13501df43da:-7dea" ordering="25" parent="-5005d4b1:131a4cd73b3:-7eb8" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="247.0" y="327.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-20c185b4:13501df43da:-7de8" ordering="1" parent="-20c185b4:13501df43da:-7dea" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-20c185b4:13501df43da:-7de7" ordering="2" parent="-20c185b4:13501df43da:-7dea" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-20c185b4:13501df43da:-7de9" ordering="1" parent="-20c185b4:13501df43da:-7dea" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-20c185b4:13501df43da:-7de6" parent="-5005d4b1:131a4cd73b3:-7eb8" source="-5005d4b1:131a4cd73b3:-7db9" target="-20c185b4:13501df43da:-7de9"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-20c185b4:13501df43da:-7de5" parent="-5005d4b1:131a4cd73b3:-7eb8" source="-20c185b4:13501df43da:-7de8" target="-5005d4b1:131a4cd73b3:-7d64"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-20c185b4:13501df43da:-7deb" parent="-5005d4b1:131a4cd73b3:-7eb8" source="-5005d4b1:131a4cd73b3:-7d04" target="-20c185b4:13501df43da:-7de7"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="330.0" y="204.0"/><mxPoint as="targetPoint" x="250.0" y="330.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="330.0" y="330.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="-20c185b4:13501df43da:-7de3" ordering="26" parent="-5005d4b1:131a4cd73b3:-7eb8" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="137.0" y="327.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-20c185b4:13501df43da:-7de1" ordering="1" parent="-20c185b4:13501df43da:-7de3" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-20c185b4:13501df43da:-7de0" ordering="2" parent="-20c185b4:13501df43da:-7de3" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-20c185b4:13501df43da:-7de2" ordering="1" parent="-20c185b4:13501df43da:-7de3" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-20c185b4:13501df43da:-7ddf" parent="-5005d4b1:131a4cd73b3:-7eb8" source="-5005d4b1:131a4cd73b3:-7d62" target="-20c185b4:13501df43da:-7de2"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-20c185b4:13501df43da:-7dde" parent="-5005d4b1:131a4cd73b3:-7eb8" source="-20c185b4:13501df43da:-7de1" target="-5005d4b1:131a4cd73b3:-7dea"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-20c185b4:13501df43da:-7de4" parent="-5005d4b1:131a4cd73b3:-7eb8" source="-5005d4b1:131a4cd73b3:-7d0b" target="-20c185b4:13501df43da:-7de0"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="150.0" y="204.0"/><mxPoint as="targetPoint" x="140.0" y="330.0"/></mxGeometry></ImplicitLink><GroundBlock dependsOnU="1" id="-5005d4b1:131a4cd73b3:-7deb" interfaceFunctionName="Ground" ordering="27" parent="-5005d4b1:131a4cd73b3:-7eb8" simulationFunctionName="Ground" simulationFunctionType="DEFAULT" style="Ground;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Ground"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="120.0" y="390.0"/></GroundBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5005d4b1:131a4cd73b3:-7dea" ordering="1" parent="-5005d4b1:131a4cd73b3:-7deb" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><Orientation as="orientation" value="NORTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock blockType="h" id="-13640e5a:13894ab8a5f:-7d8b" interfaceFunctionName="CLOCK_c" ordering="28" parent="-5005d4b1:131a4cd73b3:-7eb8" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="139.0"/><data column="1" line="0" realPart="-170.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="48d7e1f7:16711003a12:-7950"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="48d7e1f7:16711003a12:-7950"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.1"/><data column="0" line="1" value="0.1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.1"/><data column="0" line="1" realPart="0.1"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.1"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="48d7e1f7:16711003a12:-794e"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="48d7e1f7:16711003a12:-794e"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="156.3773266666667"/><data column="1" line="0" realPart="-202.33333333333331"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="7.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="5.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="48d7e1f7:16711003a12:-794b"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="48d7e1f7:16711003a12:-794b"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="140.0"/><data column="0" line="2" realPart="166.8773266666667"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-44.0"/><data column="0" line="1" realPart="-220.0"/><data column="0" line="2" realPart="-191.33333333333331"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="165.71066000000005"/><data column="0" line="1" realPart="169.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-206.33333333333331"/><data column="0" line="1" realPart="-146.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="168.04399333333336"/><data column="0" line="1" realPart="180.70999999999998"/><data column="0" line="2" realPart="140.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-206.33333333333331"/><data column="0" line="1" realPart="-90.0"/><data column="0" line="2" realPart="-90.0"/><data column="0" line="3" realPart="4.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="780.0" y="80.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="-13640e5a:13894ab8a5f:-7d8a" ordering="1" parent="-13640e5a:13894ab8a5f:-7d8b" style="CommandPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><CommandControlLink id="-13640e5a:13894ab8a5f:-7d89" parent="-5005d4b1:131a4cd73b3:-7eb8" source="-13640e5a:13894ab8a5f:-7d8a" target="-20c185b4:13501df43da:-7def"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="800.0" y="124.0"/><mxPoint as="targetPoint" x="800.0" y="150.0"/></mxGeometry></CommandControlLink></root></mxGraphModel><mxCell as="defaultParent" id="-5005d4b1:131a4cd73b3:-7eb8" parent="-5005d4b1:131a4cd73b3:-7eb7"/></XcosDiagram>
\ No newline at end of file diff --git a/Working_Examples/215/CH3/EX3.9/Figure3_9.jpg b/Working_Examples/215/CH3/EX3.9/Figure3_9.jpg Binary files differnew file mode 100755 index 0000000..656d554 --- /dev/null +++ b/Working_Examples/215/CH3/EX3.9/Figure3_9.jpg diff --git a/Working_Examples/215/CH3/EX3.9/Figure3_9_xcos.jpg b/Working_Examples/215/CH3/EX3.9/Figure3_9_xcos.jpg Binary files differnew file mode 100755 index 0000000..6b0b87e --- /dev/null +++ b/Working_Examples/215/CH3/EX3.9/Figure3_9_xcos.jpg diff --git a/Working_Examples/215/CH3/EX3.9/ex3_9.xcos b/Working_Examples/215/CH3/EX3.9/ex3_9.xcos new file mode 100755 index 0000000..f2182e7 --- /dev/null +++ b/Working_Examples/215/CH3/EX3.9/ex3_9.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" finalIntegrationTime="30.0" title="ex3_9"><!--Xcos - 1.0 - scilab-5.5.2 - 20160406 2040--><mxGraphModel as="model"><root><mxCell id="-5005d4b1:131a4cd73b3:-7f83"/><mxCell id="-5005d4b1:131a4cd73b3:-7f84" parent="-5005d4b1:131a4cd73b3:-7f83"/><BasicBlock dependsOnU="1" id="25ac1dee:13501c59709:-7c89" interfaceFunctionName="CSCOPE" ordering="2" parent="-5005d4b1:131a4cd73b3:-7f84" simulationFunctionName="cscope" simulationFunctionType="C_OR_FORTRAN" style="CSCOPE;flip=false;mirror=false"><ScilabString as="exprs" height="10" width="1"><data column="0" line="0" value="1 3 5 7 9 11 13 15"/><data column="0" line="1" value="-1"/><data column="0" line="2" value="[]"/><data column="0" line="3" value="[600;400]"/><data column="0" line="4" value="0.01"/><data column="0" line="5" value="0.02"/><data column="0" line="6" value="30"/><data column="0" line="7" value="20"/><data column="0" line="8" value="0"/><data column="0" line="9" value=""/></ScilabString><ScilabDouble as="realParameters" height="4" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="0.01"/><data column="0" line="2" realPart="0.02"/><data column="0" line="3" realPart="30.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="15" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="1.0"/><data column="0" line="4" realPart="3.0"/><data column="0" line="5" realPart="5.0"/><data column="0" line="6" realPart="7.0"/><data column="0" line="7" realPart="9.0"/><data column="0" line="8" realPart="11.0"/><data column="0" line="9" realPart="13.0"/><data column="0" line="10" realPart="15.0"/><data column="0" line="11" realPart="-1.0"/><data column="0" line="12" realPart="-1.0"/><data column="0" line="13" realPart="600.0"/><data column="0" line="14" realPart="400.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="345.0" y="110.0"/></BasicBlock><ControlPort dataType="UNKNOW_TYPE" id="-5005d4b1:131a4cd73b3:-7eba" ordering="1" parent="25ac1dee:13501c59709:-7c89" style="ControlPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="-5005d4b1:131a4cd73b3:-7ebb" ordering="1" parent="25ac1dee:13501c59709:-7c89" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><BasicBlock blockType="h" id="-13640e5a:13894ab8a5f:-7d66" interfaceFunctionName="CLOCK_c" ordering="7" parent="-5005d4b1:131a4cd73b3:-7f84" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="159.0"/><data column="1" line="0" realPart="-190.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="48d7e1f7:16711003a12:-7906"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="48d7e1f7:16711003a12:-7906"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.1"/><data column="0" line="1" value="0.1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.1"/><data column="0" line="1" realPart="0.1"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.1"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="48d7e1f7:16711003a12:-7904"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="48d7e1f7:16711003a12:-7904"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="189.3773266666667"/><data column="1" line="0" realPart="-235.33333333333331"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="7.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="5.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="48d7e1f7:16711003a12:-7901"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="48d7e1f7:16711003a12:-7901"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="180.0"/><data column="0" line="2" realPart="199.8773266666667"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-44.0"/><data column="0" line="1" realPart="-260.0"/><data column="0" line="2" realPart="-224.33333333333331"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="198.71066000000005"/><data column="0" line="1" realPart="189.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-239.33333333333331"/><data column="0" line="1" realPart="-166.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="201.04399333333336"/><data column="0" line="1" realPart="220.70999999999998"/><data column="0" line="2" realPart="180.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-239.33333333333331"/><data column="0" line="1" realPart="-130.0"/><data column="0" line="2" realPart="-130.0"/><data column="0" line="3" realPart="4.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="340.0" y="30.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="-13640e5a:13894ab8a5f:-7d65" ordering="1" parent="-13640e5a:13894ab8a5f:-7d66" style="CommandPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><CommandControlLink id="-13640e5a:13894ab8a5f:-7d64" parent="-5005d4b1:131a4cd73b3:-7f84" source="-13640e5a:13894ab8a5f:-7d65" target="-5005d4b1:131a4cd73b3:-7eba"><mxGeometry as="geometry" y="-10.0"><mxPoint as="sourcePoint" x="360.0" y="74.0"/><mxPoint as="targetPoint" x="370.0" y="110.0"/></mxGeometry></CommandControlLink><BasicBlock angle="90" id="48d7e1f7:16711003a12:-78d6" interfaceFunctionName="ConstantVoltage" parent="-5005d4b1:131a4cd73b3:-7f84" simulationFunctionName="ConstantVoltage" simulationFunctionType="DEFAULT" style="ConstantVoltage;rotation=90"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="9"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="9.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ConstantVoltage"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="V"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="9.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="22.0" width="30.0" x="100.0" y="190.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="48d7e1f7:16711003a12:-78b4" ordering="1" parent="48d7e1f7:16711003a12:-78d6" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10.0;rotation=90" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="48d7e1f7:16711003a12:-78b3" ordering="1" parent="48d7e1f7:16711003a12:-78d6" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10.0;rotation=90" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="22.0"/></ImplicitOutputPort><BasicBlock dependsOnU="1" id="48d7e1f7:16711003a12:-78cb" interfaceFunctionName="CurrentSensor" parent="-5005d4b1:131a4cd73b3:-7f84" simulationFunctionName="CurrentSensor" simulationFunctionType="DEFAULT" style="CurrentSensor"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CurrentSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="i"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="150.0" y="100.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="48d7e1f7:16711003a12:-78ca" ordering="1" parent="48d7e1f7:16711003a12:-78cb" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="48d7e1f7:16711003a12:-78c9" ordering="1" parent="48d7e1f7:16711003a12:-78cb" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="6.0"/></ImplicitOutputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="48d7e1f7:16711003a12:-78c8" ordering="2" parent="48d7e1f7:16711003a12:-78cb" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="26.0"/></ExplicitOutputPort><GroundBlock dependsOnU="1" id="48d7e1f7:16711003a12:-78c3" interfaceFunctionName="Ground" parent="-5005d4b1:131a4cd73b3:-7f84" simulationFunctionName="Ground" simulationFunctionType="DEFAULT" style="Ground"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Ground"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="20.0" width="20.0" x="210.0" y="280.0"/></GroundBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="48d7e1f7:16711003a12:-78c2" ordering="1" parent="48d7e1f7:16711003a12:-78c3" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10.0;rotation=90" value=""><Orientation as="orientation" value="NORTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="6.0" y="-8.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="48d7e1f7:16711003a12:-78bb" interfaceFunctionName="Resistor" parent="-5005d4b1:131a4cd73b3:-7f84" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="470"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="470.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="470.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="20.0" width="40.0" x="240.0" y="100.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="48d7e1f7:16711003a12:-78b7" ordering="1" parent="48d7e1f7:16711003a12:-78bb" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="48d7e1f7:16711003a12:-78b6" ordering="1" parent="48d7e1f7:16711003a12:-78bb" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="6.0"/></ImplicitOutputPort><ImplicitLink id="48d7e1f7:16711003a12:-78a7" parent="-5005d4b1:131a4cd73b3:-7f84" source="48d7e1f7:16711003a12:-78b4" target="48d7e1f7:16711003a12:-78ca"><mxGeometry as="geometry" y="20.0"><mxPoint as="sourcePoint" x="120.0" y="190.0"/><mxPoint as="targetPoint" x="150.0" y="120.0"/><Array as="points" scilabClass=""><mxPoint x="120.0" y="120.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="48d7e1f7:16711003a12:-78a3" parent="-5005d4b1:131a4cd73b3:-7f84" source="48d7e1f7:16711003a12:-78c9" target="48d7e1f7:16711003a12:-78b7"><mxGeometry as="geometry" y="20.0"><mxPoint as="sourcePoint" x="190.0" y="110.0"/><mxPoint as="targetPoint" x="230.0" y="110.0"/></mxGeometry></ImplicitLink><SplitBlock id="48d7e1f7:16711003a12:-7899" interfaceFunctionName="IMPSPLIT_f" parent="-5005d4b1:131a4cd73b3:-7f84" simulationFunctionType="DEFAULT" style="IMPSPLIT_f"><mxGeometry as="geometry" height="7.0" width="7.0" x="217.0" y="247.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="48d7e1f7:16711003a12:-7898" ordering="1" parent="48d7e1f7:16711003a12:-7899" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="48d7e1f7:16711003a12:-7897" ordering="1" parent="48d7e1f7:16711003a12:-7899" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="48d7e1f7:16711003a12:-7896" ordering="2" parent="48d7e1f7:16711003a12:-7899" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="48d7e1f7:16711003a12:-7895" parent="-5005d4b1:131a4cd73b3:-7f84" source="48d7e1f7:16711003a12:-78b3" target="48d7e1f7:16711003a12:-7898"><mxGeometry as="geometry" y="20.0"><Array as="points" scilabClass=""><mxPoint x="120.0" y="250.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="48d7e1f7:16711003a12:-7894" parent="-5005d4b1:131a4cd73b3:-7f84" source="48d7e1f7:16711003a12:-78b6" target="48d7e1f7:16711003a12:-7897"><mxGeometry as="geometry" y="20.0"><Array as="points" scilabClass=""><mxPoint x="310.0" y="110.0"/><mxPoint x="310.0" y="250.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="48d7e1f7:16711003a12:-789a" parent="-5005d4b1:131a4cd73b3:-7f84" source="48d7e1f7:16711003a12:-7896" target="48d7e1f7:16711003a12:-78c2"><mxGeometry as="geometry" y="20.0"><mxPoint as="sourcePoint" x="210.0" y="360.0"/><mxPoint as="targetPoint" x="220.0" y="250.0"/></mxGeometry></ImplicitLink><ExplicitLink id="48d7e1f7:16711003a12:-7879" parent="-5005d4b1:131a4cd73b3:-7f84" source="48d7e1f7:16711003a12:-78c8" target="-5005d4b1:131a4cd73b3:-7ebb"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="190.0" y="130.0"/><mxPoint as="targetPoint" x="340.0" y="140.0"/></mxGeometry></ExplicitLink></root></mxGraphModel><mxCell as="defaultParent" id="-5005d4b1:131a4cd73b3:-7f84" parent="-5005d4b1:131a4cd73b3:-7f83"/></XcosDiagram>
\ No newline at end of file diff --git a/Working_Examples/215/CH4/EX4.1/Figure4_1.jpg b/Working_Examples/215/CH4/EX4.1/Figure4_1.jpg Binary files differnew file mode 100755 index 0000000..99daf4e --- /dev/null +++ b/Working_Examples/215/CH4/EX4.1/Figure4_1.jpg diff --git a/Working_Examples/215/CH4/EX4.1/Figure4_1_xcos.jpg b/Working_Examples/215/CH4/EX4.1/Figure4_1_xcos.jpg Binary files differnew file mode 100755 index 0000000..92dcd2a --- /dev/null +++ b/Working_Examples/215/CH4/EX4.1/Figure4_1_xcos.jpg diff --git a/Working_Examples/215/CH4/EX4.1/ex4_1.xcos b/Working_Examples/215/CH4/EX4.1/ex4_1.xcos new file mode 100755 index 0000000..b7e524d --- /dev/null +++ b/Working_Examples/215/CH4/EX4.1/ex4_1.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" finalIntegrationTime="30.0" title="ex4_1"><!--Xcos - 1.0 - scilab-5.5.2 - 20160406 2040--><mxGraphModel as="model"><root><mxCell id="-16b82e93:131e810ab25:-7fff"/><mxCell id="-16b82e93:131e810ab25:-8000" parent="-16b82e93:131e810ab25:-7fff"/><GroundBlock angle="90" dependsOnU="1" id="-16b82e93:131e810ab25:-7fd3" interfaceFunctionName="Ground" ordering="1" parent="-16b82e93:131e810ab25:-8000" simulationFunctionName="Ground" simulationFunctionType="DEFAULT" style="Ground;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Ground"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="210.0" y="320.0"/></GroundBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-16b82e93:131e810ab25:-7fd2" ordering="1" parent="-16b82e93:131e810ab25:-7fd3" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=90;spacingTop=5;flip=false;mirror=false"><Orientation as="orientation" value="NORTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock angle="90" dependsOnU="1" id="-16b82e93:131e810ab25:-7fca" interfaceFunctionName="Resistor" ordering="2" parent="-16b82e93:131e810ab25:-8000" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="10"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="10.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="10.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="110.0" y="180.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-16b82e93:131e810ab25:-7f3e" ordering="1" parent="-16b82e93:131e810ab25:-7fca" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;spacingTop=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-16b82e93:131e810ab25:-7f3d" ordering="1" parent="-16b82e93:131e810ab25:-7fca" style="ImplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;spacingBottom=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><BasicBlock angle="90" dependsOnU="1" id="-16b82e93:131e810ab25:-7fc1" interfaceFunctionName="Resistor" ordering="3" parent="-16b82e93:131e810ab25:-8000" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="5"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="310.0" y="180.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-16b82e93:131e810ab25:-7f36" ordering="1" parent="-16b82e93:131e810ab25:-7fc1" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;spacingTop=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-16b82e93:131e810ab25:-7f35" ordering="1" parent="-16b82e93:131e810ab25:-7fc1" style="ImplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;spacingBottom=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><BasicBlock dependsOnU="1" id="-16b82e93:131e810ab25:-7fbe" interfaceFunctionName="Resistor" ordering="4" parent="-16b82e93:131e810ab25:-8000" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=0;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="15"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="15.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="15.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="250.0" y="90.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-16b82e93:131e810ab25:-7f3a" ordering="1" parent="-16b82e93:131e810ab25:-7fbe" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-16b82e93:131e810ab25:-7f39" ordering="1" parent="-16b82e93:131e810ab25:-7fbe" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><BasicBlock angle="270" dependsOnT="1" id="-16b82e93:131e810ab25:-7faf" interfaceFunctionName="CCS" ordering="5" parent="-16b82e93:131e810ab25:-8000" simulationFunctionName="CCS" simulationFunctionType="DEFAULT" style="CCS;rotation=270;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CCS"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="Iin"/><data column="0" line="1" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="400.0" y="180.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-16b82e93:131e810ab25:-7fad" ordering="1" parent="-16b82e93:131e810ab25:-7faf" style="ExplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=top;rotation=270;spacingBottom=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="6.0" y="40.0"/></ExplicitInputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-16b82e93:131e810ab25:-7fac" ordering="2" parent="-16b82e93:131e810ab25:-7faf" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=top;rotation=270;spacingBottom=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="26.0" y="40.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-16b82e93:131e810ab25:-7fae" ordering="1" parent="-16b82e93:131e810ab25:-7faf" style="ImplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=270;spacingTop=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitOutputPort><BasicBlock blockType="d" id="-16b82e93:131e810ab25:-7f9c" interfaceFunctionName="CONST_m" ordering="6" parent="-16b82e93:131e810ab25:-8000" simulationFunctionName="cstblk4" simulationFunctionType="C_OR_FORTRAN" style="CONST_m;flip=false;mirror=false" value="2"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="2"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble></Array><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="50.0" width="40.0" x="10.0" y="332.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-16b82e93:131e810ab25:-7f41" ordering="1" parent="-16b82e93:131e810ab25:-7f9c" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><BasicBlock blockType="d" id="-16b82e93:131e810ab25:-7f98" interfaceFunctionName="CONST_m" ordering="7" parent="-16b82e93:131e810ab25:-8000" simulationFunctionName="cstblk4" simulationFunctionType="C_OR_FORTRAN" style="CONST_m;flip=false;mirror=false" value="4"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="4"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="50.0" width="40.0" x="360.0" y="330.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-16b82e93:131e810ab25:-7f32" ordering="1" parent="-16b82e93:131e810ab25:-7f98" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><BasicBlock blockType="h" id="-16b82e93:131e810ab25:-7f8f" interfaceFunctionName="CLOCK_c" ordering="8" parent="-16b82e93:131e810ab25:-8000" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="199.0"/><data column="1" line="0" realPart="-230.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-7ca3f8c0:131f25d7805:-7f8e"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-7ca3f8c0:131f25d7805:-7f8e"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.1"/><data column="0" line="1" value="0.1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.1"/><data column="0" line="1" realPart="0.1"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.1"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-7ca3f8c0:131f25d7805:-7f8a"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-7ca3f8c0:131f25d7805:-7f8a"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="252.71066000000002"/><data column="1" line="0" realPart="-292.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="8.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="4.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-7ca3f8c0:131f25d7805:-7f85"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-7ca3f8c0:131f25d7805:-7f85"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="266.0"/><data column="0" line="2" realPart="263.3773266666667"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="4.0"/><data column="0" line="1" realPart="-364.0"/><data column="0" line="2" realPart="-296.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="264.71066"/><data column="0" line="1" realPart="229.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-280.0"/><data column="0" line="1" realPart="-206.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="266.04399333333333"/><data column="0" line="1" realPart="311.71"/><data column="0" line="2" realPart="271.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-296.0"/><data column="0" line="1" realPart="-218.0"/><data column="0" line="2" realPart="-218.0"/><data column="0" line="3" realPart="-44.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="480.0" y="20.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="-16b82e93:131e810ab25:-7f8e" ordering="1" parent="-16b82e93:131e810ab25:-7f8f" style="CommandPort;align=center;labelPosition=center;verticalLabelPosition=top;rotation=90;spacingBottom=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><BasicBlock dependsOnU="1" id="-16b82e93:131e810ab25:-7f7a" interfaceFunctionName="CurrentSensor" ordering="9" parent="-16b82e93:131e810ab25:-8000" simulationFunctionName="CurrentSensor" simulationFunctionType="DEFAULT" style="CurrentSensor;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CurrentSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="i"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="170.0" y="102.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-16b82e93:131e810ab25:-7f78" ordering="2" parent="-16b82e93:131e810ab25:-7f7a" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="26.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-16b82e93:131e810ab25:-7f77" ordering="1" parent="-16b82e93:131e810ab25:-7f7a" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-16b82e93:131e810ab25:-7f79" ordering="1" parent="-16b82e93:131e810ab25:-7f7a" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="6.0"/></ImplicitOutputPort><ImplicitLink id="-16b82e93:131e810ab25:-7f71" parent="-16b82e93:131e810ab25:-8000" source="-16b82e93:131e810ab25:-7f79" target="-16b82e93:131e810ab25:-7f3a"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="214.0" y="112.0"/><mxPoint as="targetPoint" x="250.0" y="110.0"/></mxGeometry></ImplicitLink><SplitBlock id="-16b82e93:131e810ab25:-7f6d" ordering="10" parent="-16b82e93:131e810ab25:-8000" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="127.0" y="117.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-16b82e93:131e810ab25:-7f6b" ordering="1" parent="-16b82e93:131e810ab25:-7f6d" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-16b82e93:131e810ab25:-7f6a" ordering="2" parent="-16b82e93:131e810ab25:-7f6d" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-16b82e93:131e810ab25:-7f6c" ordering="1" parent="-16b82e93:131e810ab25:-7f6d" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-16b82e93:131e810ab25:-7f69" parent="-16b82e93:131e810ab25:-8000" source="-16b82e93:131e810ab25:-7fdb" target="-16b82e93:131e810ab25:-7f6c"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="60.0" y="120.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-16b82e93:131e810ab25:-7f68" parent="-16b82e93:131e810ab25:-8000" source="-16b82e93:131e810ab25:-7f6b" target="-16b82e93:131e810ab25:-7f77"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-16b82e93:131e810ab25:-7f6e" parent="-16b82e93:131e810ab25:-8000" source="-16b82e93:131e810ab25:-7f6a" target="-16b82e93:131e810ab25:-7f3e"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="130.0" y="176.0"/><mxPoint as="targetPoint" x="130.0" y="120.0"/></mxGeometry></ImplicitLink><SplitBlock id="-16b82e93:131e810ab25:-7f66" ordering="11" parent="-16b82e93:131e810ab25:-8000" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="127.0" y="287.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-16b82e93:131e810ab25:-7f64" ordering="1" parent="-16b82e93:131e810ab25:-7f66" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-16b82e93:131e810ab25:-7f63" ordering="2" parent="-16b82e93:131e810ab25:-7f66" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-16b82e93:131e810ab25:-7f65" ordering="1" parent="-16b82e93:131e810ab25:-7f66" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-16b82e93:131e810ab25:-7f61" parent="-16b82e93:131e810ab25:-8000" source="-16b82e93:131e810ab25:-7f64" target="-16b82e93:131e810ab25:-7fd9"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="70.0" y="290.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-16b82e93:131e810ab25:-7f67" parent="-16b82e93:131e810ab25:-8000" source="-16b82e93:131e810ab25:-7f3d" target="-16b82e93:131e810ab25:-7f63"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="130.0" y="224.0"/><mxPoint as="targetPoint" x="130.0" y="290.0"/></mxGeometry></ImplicitLink><SplitBlock id="-16b82e93:131e810ab25:-7f5f" ordering="12" parent="-16b82e93:131e810ab25:-8000" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="227.0" y="287.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-16b82e93:131e810ab25:-7f5d" ordering="1" parent="-16b82e93:131e810ab25:-7f5f" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-16b82e93:131e810ab25:-7f5c" ordering="2" parent="-16b82e93:131e810ab25:-7f5f" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-16b82e93:131e810ab25:-7f5e" ordering="1" parent="-16b82e93:131e810ab25:-7f5f" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-16b82e93:131e810ab25:-7f5a" parent="-16b82e93:131e810ab25:-8000" source="-16b82e93:131e810ab25:-7f5d" target="-16b82e93:131e810ab25:-7f65"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-16b82e93:131e810ab25:-7f60" parent="-16b82e93:131e810ab25:-8000" source="-16b82e93:131e810ab25:-7f5c" target="-16b82e93:131e810ab25:-7fd2"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="230.0" y="316.0"/><mxPoint as="targetPoint" x="230.0" y="290.0"/></mxGeometry></ImplicitLink><BasicBlock dependsOnU="1" id="-16b82e93:131e810ab25:-7f86" interfaceFunctionName="CSCOPE" ordering="13" parent="-16b82e93:131e810ab25:-8000" simulationFunctionName="cscope" simulationFunctionType="C_OR_FORTRAN" style="CSCOPE;flip=false;mirror=false"><ScilabString as="exprs" height="10" width="1"><data column="0" line="0" value="1 3 5 7 9 11 13 15"/><data column="0" line="1" value="-1"/><data column="0" line="2" value="[]"/><data column="0" line="3" value="[600;400]"/><data column="0" line="4" value="-1"/><data column="0" line="5" value="1"/><data column="0" line="6" value="30"/><data column="0" line="7" value="20"/><data column="0" line="8" value="0"/><data column="0" line="9" value=""/></ScilabString><ScilabDouble as="realParameters" height="4" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="-1.0"/><data column="0" line="2" realPart="1.0"/><data column="0" line="3" realPart="30.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="15" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="1.0"/><data column="0" line="4" realPart="3.0"/><data column="0" line="5" realPart="5.0"/><data column="0" line="6" realPart="7.0"/><data column="0" line="7" realPart="9.0"/><data column="0" line="8" realPart="11.0"/><data column="0" line="9" realPart="13.0"/><data column="0" line="10" realPart="15.0"/><data column="0" line="11" realPart="-1.0"/><data column="0" line="12" realPart="-1.0"/><data column="0" line="13" realPart="600.0"/><data column="0" line="14" realPart="400.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="480.0" y="110.0"/></BasicBlock><ControlPort dataType="UNKNOW_TYPE" id="-16b82e93:131e810ab25:-7f2e" ordering="1" parent="-16b82e93:131e810ab25:-7f86" style="ControlPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=90;spacingTop=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="-16b82e93:131e810ab25:-7f2f" ordering="1" parent="-16b82e93:131e810ab25:-7f86" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><SplitBlock id="-16b82e93:131e810ab25:-7f55" ordering="14" parent="-16b82e93:131e810ab25:-8000" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="327.0" y="107.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-16b82e93:131e810ab25:-7f53" ordering="1" parent="-16b82e93:131e810ab25:-7f55" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-16b82e93:131e810ab25:-7f52" ordering="2" parent="-16b82e93:131e810ab25:-7f55" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-16b82e93:131e810ab25:-7f54" ordering="1" parent="-16b82e93:131e810ab25:-7f55" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-16b82e93:131e810ab25:-7f51" parent="-16b82e93:131e810ab25:-8000" source="-16b82e93:131e810ab25:-7f39" target="-16b82e93:131e810ab25:-7f54"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-16b82e93:131e810ab25:-7f50" parent="-16b82e93:131e810ab25:-8000" source="-16b82e93:131e810ab25:-7f53" target="-16b82e93:131e810ab25:-7f36"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="330.0" y="110.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-16b82e93:131e810ab25:-7f56" parent="-16b82e93:131e810ab25:-8000" source="-16b82e93:131e810ab25:-7fae" target="-16b82e93:131e810ab25:-7f52"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="420.0" y="176.0"/><mxPoint as="targetPoint" x="330.0" y="110.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="420.0" y="110.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="-16b82e93:131e810ab25:-7f4e" ordering="15" parent="-16b82e93:131e810ab25:-8000" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="327.0" y="287.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-16b82e93:131e810ab25:-7f4c" ordering="1" parent="-16b82e93:131e810ab25:-7f4e" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-16b82e93:131e810ab25:-7f4b" ordering="2" parent="-16b82e93:131e810ab25:-7f4e" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-16b82e93:131e810ab25:-7f4d" ordering="1" parent="-16b82e93:131e810ab25:-7f4e" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-16b82e93:131e810ab25:-7f4a" parent="-16b82e93:131e810ab25:-8000" source="-16b82e93:131e810ab25:-7f35" target="-16b82e93:131e810ab25:-7f4d"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-16b82e93:131e810ab25:-7f49" parent="-16b82e93:131e810ab25:-8000" source="-16b82e93:131e810ab25:-7f4c" target="-16b82e93:131e810ab25:-7f5e"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="330.0" y="290.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-16b82e93:131e810ab25:-7f4f" parent="-16b82e93:131e810ab25:-8000" source="-16b82e93:131e810ab25:-7f4b" target="-16b82e93:131e810ab25:-7fac"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="430.0" y="224.0"/><mxPoint as="targetPoint" x="330.0" y="290.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="430.0" y="290.0"/></Array></mxGeometry></ImplicitLink><ExplicitLink id="-16b82e93:131e810ab25:-7f48" parent="-16b82e93:131e810ab25:-8000" source="-16b82e93:131e810ab25:-7f32" target="-16b82e93:131e810ab25:-7fad"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="410.0" y="224.0"/><mxPoint as="targetPoint" x="400.0" y="350.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="410.0" y="350.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="-16b82e93:131e810ab25:-7f47" parent="-16b82e93:131e810ab25:-8000" source="-16b82e93:131e810ab25:-7f41" target="-16b82e93:131e810ab25:-7fda"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="50.0" y="226.0"/><mxPoint as="targetPoint" x="40.0" y="350.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="50.0" y="350.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="-16b82e93:131e810ab25:-7f46" parent="-16b82e93:131e810ab25:-8000" source="-16b82e93:131e810ab25:-7f78" target="-16b82e93:131e810ab25:-7f2f"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="214.0" y="132.0"/><mxPoint as="targetPoint" x="470.0" y="130.0"/></mxGeometry></ExplicitLink><CommandControlLink id="-16b82e93:131e810ab25:-7f43" parent="-16b82e93:131e810ab25:-8000" source="-16b82e93:131e810ab25:-7f8e" target="-16b82e93:131e810ab25:-7f2e"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="500.0" y="64.0"/><mxPoint as="targetPoint" x="500.0" y="110.0"/></mxGeometry></CommandControlLink><BasicBlock angle="270" dependsOnT="1" id="-16b82e93:131e810ab25:-7fdc" interfaceFunctionName="CCS" ordering="16" parent="-16b82e93:131e810ab25:-8000" simulationFunctionName="CCS" simulationFunctionType="DEFAULT" style="CCS;rotation=270;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CCS"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="Iin"/><data column="0" line="1" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="40.0" y="182.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-16b82e93:131e810ab25:-7fda" ordering="1" parent="-16b82e93:131e810ab25:-7fdc" style="ExplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=top;rotation=270;spacingBottom=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="6.0" y="40.0"/></ExplicitInputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-16b82e93:131e810ab25:-7fd9" ordering="2" parent="-16b82e93:131e810ab25:-7fdc" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=top;rotation=270;spacingBottom=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="26.0" y="40.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-16b82e93:131e810ab25:-7fdb" ordering="1" parent="-16b82e93:131e810ab25:-7fdc" style="ImplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=270;spacingTop=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitOutputPort><TextBlock id="-7ca3f8c0:131f25d7805:-7f81" parent="-16b82e93:131e810ab25:-8000" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="Nodal Analysis<br>Example 4.1"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="Nodal Analysis<br>Example 4.1"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="Nodal Analysis<br>Example 4.1"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="100.0" y="10.0"/></TextBlock></root></mxGraphModel><mxCell as="defaultParent" id="-16b82e93:131e810ab25:-8000" parent="-16b82e93:131e810ab25:-7fff"/></XcosDiagram>
\ No newline at end of file diff --git a/Working_Examples/215/CH4/EX4.10/Figure4_10.jpg b/Working_Examples/215/CH4/EX4.10/Figure4_10.jpg Binary files differnew file mode 100755 index 0000000..38cead7 --- /dev/null +++ b/Working_Examples/215/CH4/EX4.10/Figure4_10.jpg diff --git a/Working_Examples/215/CH4/EX4.10/Figure4_10_xcos.jpg b/Working_Examples/215/CH4/EX4.10/Figure4_10_xcos.jpg Binary files differnew file mode 100755 index 0000000..7c37beb --- /dev/null +++ b/Working_Examples/215/CH4/EX4.10/Figure4_10_xcos.jpg diff --git a/Working_Examples/215/CH4/EX4.10/ex4_10.xcos b/Working_Examples/215/CH4/EX4.10/ex4_10.xcos new file mode 100755 index 0000000..40b61ec --- /dev/null +++ b/Working_Examples/215/CH4/EX4.10/ex4_10.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" finalIntegrationTime="30.0" title="ex4_10"><!--Xcos - 1.0 - scilab-5.5.2 - 20160406 2040--><mxGraphModel as="model"><root><mxCell id="-5f02711f:131ec3f74c9:-7b97"/><mxCell id="-5f02711f:131ec3f74c9:-7b98" parent="-5f02711f:131ec3f74c9:-7b97"/><BasicBlock angle="90" id="-5f02711f:131ec3f74c9:-7af9" interfaceFunctionName="ConstantVoltage" ordering="2" parent="-5f02711f:131ec3f74c9:-7b98" simulationFunctionName="ConstantVoltage" simulationFunctionType="DEFAULT" style="ConstantVoltage;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="3"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ConstantVoltage"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="V"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="440.0" y="252.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-7af7" ordering="1" parent="-5f02711f:131ec3f74c9:-7af9" style="ImplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;spacingBottom=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-7af8" ordering="1" parent="-5f02711f:131ec3f74c9:-7af9" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;spacingTop=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><GroundBlock angle="90" dependsOnU="1" id="-5f02711f:131ec3f74c9:-7af6" interfaceFunctionName="Ground" ordering="3" parent="-5f02711f:131ec3f74c9:-7b98" simulationFunctionName="Ground" simulationFunctionType="DEFAULT" style="Ground;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Ground"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="210.0" y="410.0"/></GroundBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-7af5" ordering="1" parent="-5f02711f:131ec3f74c9:-7af6" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=90;spacingTop=5;flip=false;mirror=false"><Orientation as="orientation" value="NORTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="-5f02711f:131ec3f74c9:-7af4" interfaceFunctionName="Resistor" ordering="4" parent="-5f02711f:131ec3f74c9:-7b98" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="2"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="290.0" y="150.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-7af2" ordering="1" parent="-5f02711f:131ec3f74c9:-7af4" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-7af3" ordering="1" parent="-5f02711f:131ec3f74c9:-7af4" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="-5f02711f:131ec3f74c9:-7af1" interfaceFunctionName="Resistor" ordering="5" parent="-5f02711f:131ec3f74c9:-7b98" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="4"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="120.0" y="330.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-7aef" ordering="1" parent="-5f02711f:131ec3f74c9:-7af1" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-7af0" ordering="1" parent="-5f02711f:131ec3f74c9:-7af1" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><BasicBlock angle="90" dependsOnU="1" id="-5f02711f:131ec3f74c9:-7aee" interfaceFunctionName="Resistor" ordering="6" parent="-5f02711f:131ec3f74c9:-7b98" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="4"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="210.0" y="242.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-7aec" ordering="1" parent="-5f02711f:131ec3f74c9:-7aee" style="ImplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;spacingBottom=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-7aed" ordering="1" parent="-5f02711f:131ec3f74c9:-7aee" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;spacingTop=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitLink id="-5f02711f:131ec3f74c9:-7ae5" parent="-5f02711f:131ec3f74c9:-7b98" source="-5f02711f:131ec3f74c9:-7abc" target="-5f02711f:131ec3f74c9:-7af0"><mxGeometry as="geometry" x="10.0" y="60.0"><mxPoint as="sourcePoint" x="116.0" y="350.0"/><mxPoint as="targetPoint" x="60.0" y="300.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="60.0" y="350.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-5f02711f:131ec3f74c9:-7ae4" parent="-5f02711f:131ec3f74c9:-7b98" source="-5f02711f:131ec3f74c9:-7afa" target="-5f02711f:131ec3f74c9:-7abd"><mxGeometry as="geometry" x="10.0" y="50.0"><mxPoint as="sourcePoint" x="60.0" y="238.0"/><mxPoint as="targetPoint" x="120.0" y="160.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="60.0" y="160.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="-5f02711f:131ec3f74c9:-7ae3" ordering="7" parent="-5f02711f:131ec3f74c9:-7b98" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="226.5" y="166.5"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5f02711f:131ec3f74c9:-7ae1" ordering="2" parent="-5f02711f:131ec3f74c9:-7ae3" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-5f02711f:131ec3f74c9:-7ae0" ordering="1" parent="-5f02711f:131ec3f74c9:-7ae3" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5f02711f:131ec3f74c9:-7ae2" ordering="1" parent="-5f02711f:131ec3f74c9:-7ae3" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="-5f02711f:131ec3f74c9:-7adf" parent="-5f02711f:131ec3f74c9:-7b98" source="-5f02711f:131ec3f74c9:-7afb" target="-5f02711f:131ec3f74c9:-7ae0"><mxGeometry as="geometry" height="80.0" width="80.0" x="10.0" y="60.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-5f02711f:131ec3f74c9:-7ade" parent="-5f02711f:131ec3f74c9:-7b98" source="-5f02711f:131ec3f74c9:-7ae2" target="-5f02711f:131ec3f74c9:-7af3"><mxGeometry as="geometry" height="80.0" width="80.0" x="10.0" y="60.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><SplitBlock id="-5f02711f:131ec3f74c9:-7adc" ordering="8" parent="-5f02711f:131ec3f74c9:-7b98" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="226.5" y="346.5"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5f02711f:131ec3f74c9:-7ada" ordering="2" parent="-5f02711f:131ec3f74c9:-7adc" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-5f02711f:131ec3f74c9:-7ad9" ordering="1" parent="-5f02711f:131ec3f74c9:-7adc" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5f02711f:131ec3f74c9:-7adb" ordering="1" parent="-5f02711f:131ec3f74c9:-7adc" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="-5f02711f:131ec3f74c9:-7ad8" parent="-5f02711f:131ec3f74c9:-7b98" source="-5f02711f:131ec3f74c9:-7aef" target="-5f02711f:131ec3f74c9:-7ad9"><mxGeometry as="geometry" height="80.0" width="80.0" x="10.0" y="60.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-5f02711f:131ec3f74c9:-7ad7" parent="-5f02711f:131ec3f74c9:-7b98" source="-5f02711f:131ec3f74c9:-7af7" target="-5f02711f:131ec3f74c9:-7adb"><mxGeometry as="geometry" height="80.0" width="80.0" x="10.0" y="60.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="460.0" y="350.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="-5f02711f:131ec3f74c9:-7ad6" ordering="9" parent="-5f02711f:131ec3f74c9:-7b98" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="226.5" y="346.5"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5f02711f:131ec3f74c9:-7ad4" ordering="2" parent="-5f02711f:131ec3f74c9:-7ad6" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-5f02711f:131ec3f74c9:-7ad3" ordering="1" parent="-5f02711f:131ec3f74c9:-7ad6" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5f02711f:131ec3f74c9:-7ad5" ordering="1" parent="-5f02711f:131ec3f74c9:-7ad6" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="-5f02711f:131ec3f74c9:-7ad1" parent="-5f02711f:131ec3f74c9:-7b98" source="-5f02711f:131ec3f74c9:-7ada" target="-5f02711f:131ec3f74c9:-7ad5"><mxGeometry as="geometry" height="80.0" width="80.0" x="10.0" y="60.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-5f02711f:131ec3f74c9:-7ad0" parent="-5f02711f:131ec3f74c9:-7b98" source="-5f02711f:131ec3f74c9:-7ad4" target="-5f02711f:131ec3f74c9:-7af5"><mxGeometry as="geometry" x="10.0" y="60.0"><mxPoint as="sourcePoint" x="230.0" y="406.0"/><mxPoint as="targetPoint" x="230.0" y="340.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="230.0" y="350.0"/></Array></mxGeometry></ImplicitLink><BasicBlock angle="180" dependsOnU="1" id="-5f02711f:131ec3f74c9:-7acf" interfaceFunctionName="GAINBLK_f" ordering="10" parent="-5f02711f:131ec3f74c9:-7b98" simulationFunctionName="gain" simulationFunctionType="DEFAULT" style="GAINBLK_f;rotation=180;flip=false;mirror=false" value="2"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="2"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="50.0" width="40.0" x="270.0" y="62.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-7a9c" ordering="1" parent="-5f02711f:131ec3f74c9:-7acf" style="ExplicitOutputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=180;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitOutputPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-7a9d" ordering="1" parent="-5f02711f:131ec3f74c9:-7acf" style="ExplicitInputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=180;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitInputPort><ExplicitLink id="-5f02711f:131ec3f74c9:-7acc" parent="-5f02711f:131ec3f74c9:-7b98" source="-5f02711f:131ec3f74c9:-7a9c" target="-5f02711f:131ec3f74c9:-7afc"><mxGeometry as="geometry" x="10.0" y="10.0"><mxPoint as="sourcePoint" x="266.0" y="82.0"/><mxPoint as="targetPoint" x="160.0" y="150.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="170.0" y="80.0"/><mxPoint x="170.0" y="150.0"/></Array></mxGeometry></ExplicitLink><BasicBlock blockType="h" id="-5f02711f:131ec3f74c9:-7acb" interfaceFunctionName="CLOCK_c" ordering="11" parent="-5f02711f:131ec3f74c9:-7b98" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="99.0"/><data column="1" line="0" realPart="-144.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-7ca3f8c0:131f25d7805:-7ca2"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-7ca3f8c0:131f25d7805:-7ca2"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-54.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.1"/><data column="0" line="1" value="0.1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.1"/><data column="0" line="1" realPart="0.1"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.1"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-7ca3f8c0:131f25d7805:-7c9e"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-7ca3f8c0:131f25d7805:-7c9e"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="92.71066000000002"/><data column="1" line="0" realPart="-146.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="8.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="5.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-7ca3f8c0:131f25d7805:-7c99"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-7ca3f8c0:131f25d7805:-7c99"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="72.0"/><data column="0" line="2" realPart="104.71066000000002"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-58.0"/><data column="0" line="1" realPart="-186.0"/><data column="0" line="2" realPart="-134.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="103.37732666666669"/><data column="0" line="1" realPart="129.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-150.0"/><data column="0" line="1" realPart="-120.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="106.04399333333335"/><data column="0" line="1" realPart="122.70999999999998"/><data column="0" line="2" realPart="82.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-150.0"/><data column="0" line="1" realPart="-40.0"/><data column="0" line="2" realPart="-40.0"/><data column="0" line="3" realPart="-10.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="520.0" y="80.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="-5f02711f:131ec3f74c9:-7aca" ordering="1" parent="-5f02711f:131ec3f74c9:-7acb" style="CommandPort;align=center;labelPosition=center;verticalLabelPosition=top;rotation=90;spacingBottom=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><BasicBlock dependsOnU="1" id="-5f02711f:131ec3f74c9:-7ac9" interfaceFunctionName="CSCOPE" ordering="12" parent="-5f02711f:131ec3f74c9:-7b98" simulationFunctionName="cscope" simulationFunctionType="C_OR_FORTRAN" style="CSCOPE;flip=false;mirror=false"><ScilabString as="exprs" height="10" width="1"><data column="0" line="0" value="1 3 5 7 9 11 13 15"/><data column="0" line="1" value="-1"/><data column="0" line="2" value="[]"/><data column="0" line="3" value="[600;400]"/><data column="0" line="4" value="1.2"/><data column="0" line="5" value="1.3"/><data column="0" line="6" value="30"/><data column="0" line="7" value="20"/><data column="0" line="8" value="0"/><data column="0" line="9" value=""/></ScilabString><ScilabDouble as="realParameters" height="4" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="1.2"/><data column="0" line="2" realPart="1.3"/><data column="0" line="3" realPart="30.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="15" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="1.0"/><data column="0" line="4" realPart="3.0"/><data column="0" line="5" realPart="5.0"/><data column="0" line="6" realPart="7.0"/><data column="0" line="7" realPart="9.0"/><data column="0" line="8" realPart="11.0"/><data column="0" line="9" realPart="13.0"/><data column="0" line="10" realPart="15.0"/><data column="0" line="11" realPart="-1.0"/><data column="0" line="12" realPart="-1.0"/><data column="0" line="13" realPart="600.0"/><data column="0" line="14" realPart="400.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="520.0" y="160.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-7a7f" ordering="1" parent="-5f02711f:131ec3f74c9:-7ac9" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ControlPort dataType="UNKNOW_TYPE" id="-5f02711f:131ec3f74c9:-7a7e" ordering="1" parent="-5f02711f:131ec3f74c9:-7ac9" style="ControlPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=90;spacingTop=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><CommandControlLink id="-5f02711f:131ec3f74c9:-7abf" parent="-5f02711f:131ec3f74c9:-7b98" source="-5f02711f:131ec3f74c9:-7aca" target="-5f02711f:131ec3f74c9:-7a7e"><mxGeometry as="geometry" x="-10.0" y="48.0"><mxPoint as="sourcePoint" x="540.0" y="124.0"/><mxPoint as="targetPoint" x="540.0" y="158.0"/></mxGeometry></CommandControlLink><BasicBlock angle="90" id="-5f02711f:131ec3f74c9:-7abe" interfaceFunctionName="ConstantVoltage" ordering="13" parent="-5f02711f:131ec3f74c9:-7b98" simulationFunctionName="ConstantVoltage" simulationFunctionType="DEFAULT" style="ConstantVoltage;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="5"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ConstantVoltage"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="V"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="40.0" y="252.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-7abc" ordering="1" parent="-5f02711f:131ec3f74c9:-7abe" style="ImplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;spacingBottom=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-7abd" ordering="1" parent="-5f02711f:131ec3f74c9:-7abe" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;spacingTop=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><VoltageSensorBlock angle="90" dependsOnU="1" id="-5f02711f:131ec3f74c9:-7ab1" interfaceFunctionName="VoltageSensor" ordering="14" parent="-5f02711f:131ec3f74c9:-7b98" simulationFunctionName="VoltageSensor" simulationFunctionType="DEFAULT" style="VoltageSensor;rotation=90;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="VoltageSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="v"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="300.0" y="242.0"/></VoltageSensorBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-7aaf" ordering="2" parent="-5f02711f:131ec3f74c9:-7ab1" style="ExplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;rotation=90;spacingBottom=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="26.0" y="40.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-7aae" ordering="1" parent="-5f02711f:131ec3f74c9:-7ab1" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=90;spacingTop=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-7ab0" ordering="1" parent="-5f02711f:131ec3f74c9:-7ab1" style="ImplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;rotation=90;spacingBottom=5;flip=false;mirror=false"><Orientation as="orientation" value="SOUTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="6.0" y="40.0"/></ImplicitOutputPort><SplitBlock id="-5f02711f:131ec3f74c9:-7aac" ordering="15" parent="-5f02711f:131ec3f74c9:-7b98" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="227.0" y="207.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5f02711f:131ec3f74c9:-7aaa" ordering="1" parent="-5f02711f:131ec3f74c9:-7aac" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5f02711f:131ec3f74c9:-7aa9" ordering="2" parent="-5f02711f:131ec3f74c9:-7aac" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-5f02711f:131ec3f74c9:-7aab" ordering="1" parent="-5f02711f:131ec3f74c9:-7aac" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-5f02711f:131ec3f74c9:-7aa8" parent="-5f02711f:131ec3f74c9:-7b98" source="-5f02711f:131ec3f74c9:-7ae1" target="-5f02711f:131ec3f74c9:-7aab"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-5f02711f:131ec3f74c9:-7aa7" parent="-5f02711f:131ec3f74c9:-7b98" source="-5f02711f:131ec3f74c9:-7aaa" target="-5f02711f:131ec3f74c9:-7aed"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-5f02711f:131ec3f74c9:-7aad" parent="-5f02711f:131ec3f74c9:-7b98" source="-5f02711f:131ec3f74c9:-7aa9" target="-5f02711f:131ec3f74c9:-7aae"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="320.0" y="238.0"/><mxPoint as="targetPoint" x="230.0" y="210.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="320.0" y="210.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="-5f02711f:131ec3f74c9:-7aa5" ordering="16" parent="-5f02711f:131ec3f74c9:-7b98" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="227.0" y="317.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5f02711f:131ec3f74c9:-7aa3" ordering="1" parent="-5f02711f:131ec3f74c9:-7aa5" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5f02711f:131ec3f74c9:-7aa2" ordering="2" parent="-5f02711f:131ec3f74c9:-7aa5" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-5f02711f:131ec3f74c9:-7aa4" ordering="1" parent="-5f02711f:131ec3f74c9:-7aa5" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-5f02711f:131ec3f74c9:-7aa1" parent="-5f02711f:131ec3f74c9:-7b98" source="-5f02711f:131ec3f74c9:-7aec" target="-5f02711f:131ec3f74c9:-7aa4"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-5f02711f:131ec3f74c9:-7aa0" parent="-5f02711f:131ec3f74c9:-7b98" source="-5f02711f:131ec3f74c9:-7aa3" target="-5f02711f:131ec3f74c9:-7ad3"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-5f02711f:131ec3f74c9:-7aa6" parent="-5f02711f:131ec3f74c9:-7b98" source="-5f02711f:131ec3f74c9:-7ab0" target="-5f02711f:131ec3f74c9:-7aa2"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="310.0" y="286.0"/><mxPoint as="targetPoint" x="230.0" y="320.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="310.0" y="320.0"/></Array></mxGeometry></ImplicitLink><ExplicitLink id="-5f02711f:131ec3f74c9:-7a9f" parent="-5f02711f:131ec3f74c9:-7b98" source="-5f02711f:131ec3f74c9:-7aaf" target="-5f02711f:131ec3f74c9:-7a9d"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="330.0" y="286.0"/><mxPoint as="targetPoint" x="320.0" y="80.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="330.0" y="310.0"/><mxPoint x="380.0" y="310.0"/><mxPoint x="380.0" y="80.0"/><mxPoint x="320.0" y="80.0"/><mxPoint x="320.0" y="80.0"/><mxPoint x="310.0" y="80.0"/></Array></mxGeometry></ExplicitLink><BasicBlock dependsOnU="1" id="-5f02711f:131ec3f74c9:-7a91" interfaceFunctionName="CurrentSensor" ordering="17" parent="-5f02711f:131ec3f74c9:-7b98" simulationFunctionName="CurrentSensor" simulationFunctionType="DEFAULT" style="CurrentSensor;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CurrentSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="i"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="390.0" y="152.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-7a8f" ordering="2" parent="-5f02711f:131ec3f74c9:-7a91" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="26.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-7a8e" ordering="1" parent="-5f02711f:131ec3f74c9:-7a91" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-7a90" ordering="1" parent="-5f02711f:131ec3f74c9:-7a91" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="6.0"/></ImplicitOutputPort><ImplicitLink id="-5f02711f:131ec3f74c9:-7a8d" parent="-5f02711f:131ec3f74c9:-7b98" source="-5f02711f:131ec3f74c9:-7a90" target="-5f02711f:131ec3f74c9:-7af8"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="434.0" y="162.0"/><mxPoint as="targetPoint" x="460.0" y="250.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="460.0" y="160.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-5f02711f:131ec3f74c9:-7a8c" parent="-5f02711f:131ec3f74c9:-7b98" source="-5f02711f:131ec3f74c9:-7af2" target="-5f02711f:131ec3f74c9:-7a8e"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="386.0" y="172.0"/><mxPoint as="targetPoint" x="340.0" y="170.0"/></mxGeometry></ImplicitLink><ExplicitLink id="-5f02711f:131ec3f74c9:-7a85" parent="-5f02711f:131ec3f74c9:-7b98" source="-5f02711f:131ec3f74c9:-7a8f" target="-5f02711f:131ec3f74c9:-7a7f"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="434.0" y="182.0"/><mxPoint as="targetPoint" x="520.0" y="180.0"/></mxGeometry></ExplicitLink><BasicBlock angle="180" dependsOnT="1" id="-5f02711f:131ec3f74c9:-7afd" interfaceFunctionName="CVS" ordering="1" parent="-5f02711f:131ec3f74c9:-7b98" simulationFunctionName="CVS" simulationFunctionType="DEFAULT" style="CVS;rotation=180;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CVS"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="vin"/><data column="0" line="1" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="120.0" y="142.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-7afb" ordering="2" parent="-5f02711f:131ec3f74c9:-7afd" style="ImplicitInputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=180;spacingRight=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="26.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-7afa" ordering="1" parent="-5f02711f:131ec3f74c9:-7afd" style="ImplicitOutputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=180;spacingLeft=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitOutputPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-7afc" ordering="1" parent="-5f02711f:131ec3f74c9:-7afd" style="ExplicitInputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=180;spacingRight=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="6.0"/></ExplicitInputPort><TextBlock id="-7ca3f8c0:131f25d7805:-7c95" parent="-5f02711f:131ec3f74c9:-7b98" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="Mesh Analysis<br>Example 4.10"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="Mesh Analysis<br>Example 4.10"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="Mesh Analysis<br>Example 4.10"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="90.0" y="30.0"/></TextBlock></root></mxGraphModel><mxCell as="defaultParent" id="-5f02711f:131ec3f74c9:-7b98" parent="-5f02711f:131ec3f74c9:-7b97"/></XcosDiagram>
\ No newline at end of file diff --git a/Working_Examples/215/CH4/EX4.11/Figure4_11.jpg b/Working_Examples/215/CH4/EX4.11/Figure4_11.jpg Binary files differnew file mode 100755 index 0000000..e788731 --- /dev/null +++ b/Working_Examples/215/CH4/EX4.11/Figure4_11.jpg diff --git a/Working_Examples/215/CH4/EX4.11/Figure4_11_xcos.jpg b/Working_Examples/215/CH4/EX4.11/Figure4_11_xcos.jpg Binary files differnew file mode 100755 index 0000000..17ea0a2 --- /dev/null +++ b/Working_Examples/215/CH4/EX4.11/Figure4_11_xcos.jpg diff --git a/Working_Examples/215/CH4/EX4.11/ex4_11.xcos b/Working_Examples/215/CH4/EX4.11/ex4_11.xcos new file mode 100755 index 0000000..16a0e96 --- /dev/null +++ b/Working_Examples/215/CH4/EX4.11/ex4_11.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" finalIntegrationTime="30.0" title="ex4_11"><!--Xcos - 1.0 - scilab-5.5.2 - 20160406 2040--><mxGraphModel as="model"><root><mxCell id="-5f02711f:131ec3f74c9:-7a7b"/><mxCell id="-5f02711f:131ec3f74c9:-7a7c" parent="-5f02711f:131ec3f74c9:-7a7b"/><BasicBlock dependsOnU="1" id="-44770f3d:13503faa17d:-7d8b" interfaceFunctionName="Resistor" ordering="1" parent="-5f02711f:131ec3f74c9:-7a7c" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=0;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="3"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="350.0" y="200.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-799a" ordering="1" parent="-44770f3d:13503faa17d:-7d8b" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;flip=false;mirror=false;spacingLeft=5"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-7999" ordering="1" parent="-44770f3d:13503faa17d:-7d8b" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;flip=false;mirror=false;spacingRight=5"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><BasicBlock angle="90" dependsOnU="1" id="-44770f3d:13503faa17d:-7d88" interfaceFunctionName="Resistor" ordering="2" parent="-5f02711f:131ec3f74c9:-7a7c" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="2"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="430.0" y="120.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-7997" ordering="1" parent="-44770f3d:13503faa17d:-7d88" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;spacingTop=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-7996" ordering="1" parent="-44770f3d:13503faa17d:-7d88" style="ImplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;spacingBottom=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><BasicBlock angle="90" dependsOnU="1" id="-44770f3d:13503faa17d:-7d85" interfaceFunctionName="Resistor" ordering="3" parent="-5f02711f:131ec3f74c9:-7a7c" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="2"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="270.0" y="350.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-7991" ordering="1" parent="-44770f3d:13503faa17d:-7d85" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=90;flip=false;mirror=false;spacingTop=5"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-7990" ordering="1" parent="-44770f3d:13503faa17d:-7d85" style="ImplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;rotation=90;flip=false;mirror=false;spacingBottom=5"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><BasicBlock angle="90" dependsOnU="1" id="-44770f3d:13503faa17d:-7d82" interfaceFunctionName="Resistor" ordering="4" parent="-5f02711f:131ec3f74c9:-7a7c" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="420.0" y="330.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-798e" ordering="1" parent="-44770f3d:13503faa17d:-7d82" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;spacingTop=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-798d" ordering="1" parent="-44770f3d:13503faa17d:-7d82" style="ImplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;spacingBottom=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><BasicBlock dependsOnU="1" id="-44770f3d:13503faa17d:-7d7f" interfaceFunctionName="CurrentSensor" ordering="5" parent="-5f02711f:131ec3f74c9:-7a7c" simulationFunctionName="CurrentSensor" simulationFunctionType="DEFAULT" style="CurrentSensor;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CurrentSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="i"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="160.0" y="70.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-7989" ordering="1" parent="-44770f3d:13503faa17d:-7d7f" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="6.0"/></ImplicitOutputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-798b" ordering="2" parent="-44770f3d:13503faa17d:-7d7f" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="26.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-798a" ordering="1" parent="-44770f3d:13503faa17d:-7d7f" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="-44770f3d:13503faa17d:-7d7b" interfaceFunctionName="CurrentSensor" ordering="6" parent="-5f02711f:131ec3f74c9:-7a7c" simulationFunctionName="CurrentSensor" simulationFunctionType="DEFAULT" style="CurrentSensor;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CurrentSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="i"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="340.0" y="60.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-7985" ordering="1" parent="-44770f3d:13503faa17d:-7d7b" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="6.0"/></ImplicitOutputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-7987" ordering="2" parent="-44770f3d:13503faa17d:-7d7b" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="26.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-7986" ordering="1" parent="-44770f3d:13503faa17d:-7d7b" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><BasicBlock angle="90" dependsOnU="1" id="-44770f3d:13503faa17d:-7d77" interfaceFunctionName="CurrentSensor" ordering="7" parent="-5f02711f:131ec3f74c9:-7a7c" simulationFunctionName="CurrentSensor" simulationFunctionType="DEFAULT" style="CurrentSensor;rotation=90;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CurrentSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="i"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="430.0" y="250.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-7981" ordering="1" parent="-44770f3d:13503faa17d:-7d77" style="ImplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;rotation=90;spacingBottom=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="6.0" y="40.0"/></ImplicitOutputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-7983" ordering="2" parent="-44770f3d:13503faa17d:-7d77" style="ExplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;rotation=90;spacingBottom=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="26.0" y="40.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-7982" ordering="1" parent="-44770f3d:13503faa17d:-7d77" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=90;spacingTop=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitLink id="-5f02711f:131ec3f74c9:-7980" parent="-5f02711f:131ec3f74c9:-7a7c" source="-5f02711f:131ec3f74c9:-7949" target="-5f02711f:131ec3f74c9:-798a"><mxGeometry as="geometry" x="70.0" y="40.0"><mxPoint as="sourcePoint" x="130.0" y="236.0"/><mxPoint as="targetPoint" x="160.0" y="90.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="130.0" y="90.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-5f02711f:131ec3f74c9:-797f" parent="-5f02711f:131ec3f74c9:-7a7c" source="-5f02711f:131ec3f74c9:-7985" target="-5f02711f:131ec3f74c9:-7997"><mxGeometry as="geometry" x="70.0" y="40.0"><mxPoint as="sourcePoint" x="384.0" y="70.0"/><mxPoint as="targetPoint" x="450.0" y="120.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="440.0" y="70.0"/><mxPoint x="450.0" y="70.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="-44770f3d:13503faa17d:-7d70" ordering="8" parent="-5f02711f:131ec3f74c9:-7a7c" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="297.0" y="77.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="-5f02711f:131ec3f74c9:-797b" ordering="1" parent="-44770f3d:13503faa17d:-7d70" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5f02711f:131ec3f74c9:-797d" ordering="1" parent="-44770f3d:13503faa17d:-7d70" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5f02711f:131ec3f74c9:-797c" ordering="2" parent="-44770f3d:13503faa17d:-7d70" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="-5f02711f:131ec3f74c9:-797a" parent="-5f02711f:131ec3f74c9:-7a7c" source="-5f02711f:131ec3f74c9:-7989" target="-5f02711f:131ec3f74c9:-797b"><mxGeometry as="geometry" height="80.0" width="80.0" x="70.0" y="40.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-5f02711f:131ec3f74c9:-7979" parent="-5f02711f:131ec3f74c9:-7a7c" source="-5f02711f:131ec3f74c9:-797d" target="-5f02711f:131ec3f74c9:-7986"><mxGeometry as="geometry" height="80.0" width="80.0" x="70.0" y="40.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-5f02711f:131ec3f74c9:-7978" parent="-5f02711f:131ec3f74c9:-7a7c" source="-5f02711f:131ec3f74c9:-797c" target="-5f02711f:131ec3f74c9:-799d"><mxGeometry as="geometry" x="70.0" y="40.0"><mxPoint as="sourcePoint" x="290.0" y="116.0"/><mxPoint as="targetPoint" x="290.0" y="80.0"/></mxGeometry></ImplicitLink><ImplicitLink id="-5f02711f:131ec3f74c9:-7977" parent="-5f02711f:131ec3f74c9:-7a7c" source="-5f02711f:131ec3f74c9:-7981" target="-5f02711f:131ec3f74c9:-798e"><mxGeometry as="geometry" x="70.0" y="40.0"><mxPoint as="sourcePoint" x="440.0" y="294.0"/><mxPoint as="targetPoint" x="440.0" y="330.0"/></mxGeometry></ImplicitLink><SplitBlock id="-44770f3d:13503faa17d:-7d68" ordering="9" parent="-5f02711f:131ec3f74c9:-7a7c" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="447.0" y="217.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="-5f02711f:131ec3f74c9:-7973" ordering="1" parent="-44770f3d:13503faa17d:-7d68" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;flip=false;mirror=false;spacingLeft=5" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5f02711f:131ec3f74c9:-7975" ordering="1" parent="-44770f3d:13503faa17d:-7d68" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;flip=false;mirror=false;spacingRight=5" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5f02711f:131ec3f74c9:-7974" ordering="2" parent="-44770f3d:13503faa17d:-7d68" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;flip=false;mirror=false;spacingRight=5" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitLink id="-5f02711f:131ec3f74c9:-7972" parent="-5f02711f:131ec3f74c9:-7a7c" source="-5f02711f:131ec3f74c9:-7996" target="-5f02711f:131ec3f74c9:-7973"><mxGeometry as="geometry" height="80.0" width="80.0" x="70.0" y="40.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-5f02711f:131ec3f74c9:-7971" parent="-5f02711f:131ec3f74c9:-7a7c" source="-5f02711f:131ec3f74c9:-7975" target="-5f02711f:131ec3f74c9:-7982"><mxGeometry as="geometry" height="80.0" width="80.0" x="70.0" y="40.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-5f02711f:131ec3f74c9:-7970" parent="-5f02711f:131ec3f74c9:-7a7c" source="-5f02711f:131ec3f74c9:-7999" target="-5f02711f:131ec3f74c9:-7974"><mxGeometry as="geometry" x="70.0" y="40.0"><mxPoint as="sourcePoint" x="394.0" y="220.0"/><mxPoint as="targetPoint" x="450.0" y="220.0"/></mxGeometry></ImplicitLink><SplitBlock id="-44770f3d:13503faa17d:-7d61" ordering="10" parent="-5f02711f:131ec3f74c9:-7a7c" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="287.0" y="427.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="-5f02711f:131ec3f74c9:-7964" ordering="1" parent="-44770f3d:13503faa17d:-7d61" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;flip=false;mirror=false;spacingLeft=5" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5f02711f:131ec3f74c9:-7966" ordering="1" parent="-44770f3d:13503faa17d:-7d61" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;flip=false;mirror=false;spacingRight=5" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5f02711f:131ec3f74c9:-7965" ordering="2" parent="-44770f3d:13503faa17d:-7d61" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;flip=false;mirror=false;spacingRight=5" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitLink id="-5f02711f:131ec3f74c9:-7963" parent="-5f02711f:131ec3f74c9:-7a7c" source="-5f02711f:131ec3f74c9:-7948" target="-5f02711f:131ec3f74c9:-7964"><mxGeometry as="geometry" height="80.0" width="80.0" x="70.0" y="40.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="130.0" y="430.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-5f02711f:131ec3f74c9:-7962" parent="-5f02711f:131ec3f74c9:-7a7c" source="-5f02711f:131ec3f74c9:-798d" target="-5f02711f:131ec3f74c9:-7966"><mxGeometry as="geometry" height="80.0" width="80.0" x="70.0" y="40.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="440.0" y="430.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="-44770f3d:13503faa17d:-7d5a" ordering="11" parent="-5f02711f:131ec3f74c9:-7a7c" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="287.0" y="427.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="-5f02711f:131ec3f74c9:-795e" ordering="1" parent="-44770f3d:13503faa17d:-7d5a" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;flip=false;mirror=false;spacingLeft=5" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5f02711f:131ec3f74c9:-7960" ordering="1" parent="-44770f3d:13503faa17d:-7d5a" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;flip=false;mirror=false;spacingRight=5" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5f02711f:131ec3f74c9:-795f" ordering="2" parent="-44770f3d:13503faa17d:-7d5a" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;flip=false;mirror=false;spacingRight=5" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitLink id="-5f02711f:131ec3f74c9:-795d" parent="-5f02711f:131ec3f74c9:-7a7c" source="-5f02711f:131ec3f74c9:-7990" target="-5f02711f:131ec3f74c9:-795e"><mxGeometry as="geometry" height="80.0" width="80.0" x="70.0" y="40.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-5f02711f:131ec3f74c9:-795c" parent="-5f02711f:131ec3f74c9:-7a7c" source="-5f02711f:131ec3f74c9:-7965" target="-5f02711f:131ec3f74c9:-7960"><mxGeometry as="geometry" height="80.0" width="80.0" x="70.0" y="40.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="290.0" y="430.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-5f02711f:131ec3f74c9:-795b" parent="-5f02711f:131ec3f74c9:-7a7c" source="-5f02711f:131ec3f74c9:-795f" target="-5f02711f:131ec3f74c9:-799f"><mxGeometry as="geometry" x="70.0" y="40.0"><mxPoint as="sourcePoint" x="290.0" y="466.0"/><mxPoint as="targetPoint" x="290.0" y="430.0"/></mxGeometry></ImplicitLink><BasicBlock dependsOnU="1" id="-44770f3d:13503faa17d:-7d4e" interfaceFunctionName="CSCOPE" ordering="12" parent="-5f02711f:131ec3f74c9:-7a7c" simulationFunctionName="cscope" simulationFunctionType="C_OR_FORTRAN" style="CSCOPE;flip=false;mirror=false"><ScilabString as="exprs" height="10" width="1"><data column="0" line="0" value="1 3 5 7 9 11 13 15"/><data column="0" line="1" value="-1"/><data column="0" line="2" value="[]"/><data column="0" line="3" value="[600;400]"/><data column="0" line="4" value="0"/><data column="0" line="5" value="11"/><data column="0" line="6" value="30"/><data column="0" line="7" value="20"/><data column="0" line="8" value="0"/><data column="0" line="9" value=""/></ScilabString><ScilabDouble as="realParameters" height="4" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="0.0"/><data column="0" line="2" realPart="11.0"/><data column="0" line="3" realPart="30.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="15" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="1.0"/><data column="0" line="4" realPart="3.0"/><data column="0" line="5" realPart="5.0"/><data column="0" line="6" realPart="7.0"/><data column="0" line="7" realPart="9.0"/><data column="0" line="8" realPart="11.0"/><data column="0" line="9" realPart="13.0"/><data column="0" line="10" realPart="15.0"/><data column="0" line="11" realPart="-1.0"/><data column="0" line="12" realPart="-1.0"/><data column="0" line="13" realPart="600.0"/><data column="0" line="14" realPart="400.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="560.0" y="220.0"/></BasicBlock><ControlPort dataType="UNKNOW_TYPE" id="-44770f3d:13503faa17d:-7ce4" ordering="1" parent="-44770f3d:13503faa17d:-7d4e" style="ControlPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="-44770f3d:13503faa17d:-7ce5" ordering="1" parent="-44770f3d:13503faa17d:-7d4e" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><BasicBlock angle="90" id="-44770f3d:13503faa17d:-7d42" interfaceFunctionName="ConstantVoltage" ordering="13" parent="-5f02711f:131ec3f74c9:-7a7c" simulationFunctionName="ConstantVoltage" simulationFunctionType="DEFAULT" style="ConstantVoltage;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="7"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="7.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ConstantVoltage"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="V"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="7.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="110.0" y="240.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-7949" ordering="1" parent="-44770f3d:13503faa17d:-7d42" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;spacingTop=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-7948" ordering="1" parent="-44770f3d:13503faa17d:-7d42" style="ImplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;spacingBottom=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitLink id="-5f02711f:131ec3f74c9:-7900" parent="-5f02711f:131ec3f74c9:-7a7c" source="-5f02711f:131ec3f74c9:-796e" target="-5f02711f:131ec3f74c9:-796c"><!--Invalid source parent--><!--Invalid target parent--><mxGeometry as="geometry" height="80.0" width="80.0" x="60.0" y="30.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="290.0" y="220.0"/></Array></mxGeometry></ImplicitLink><BasicBlock angle="90" dependsOnT="1" id="-44770f3d:13503faa17d:-7d3e" interfaceFunctionName="CCS" ordering="14" parent="-5f02711f:131ec3f74c9:-7a7c" simulationFunctionName="CCS" simulationFunctionType="DEFAULT" style="CCS;rotation=90;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CCS"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="Iin"/><data column="0" line="1" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="270.0" y="270.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-78f0" ordering="2" parent="-44770f3d:13503faa17d:-7d3e" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=90;spacingTop=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="26.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-78f2" ordering="1" parent="-44770f3d:13503faa17d:-7d3e" style="ImplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;rotation=90;spacingBottom=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-78f1" ordering="1" parent="-44770f3d:13503faa17d:-7d3e" style="ExplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=90;spacingTop=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="6.0" y="-8.0"/></ExplicitInputPort><SplitBlock id="-44770f3d:13503faa17d:-7d3a" ordering="15" parent="-5f02711f:131ec3f74c9:-7a7c" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="297.0" y="217.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5f02711f:131ec3f74c9:-78e6" ordering="2" parent="-44770f3d:13503faa17d:-7d3a" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-5f02711f:131ec3f74c9:-78e8" ordering="1" parent="-44770f3d:13503faa17d:-7d3a" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5f02711f:131ec3f74c9:-78e7" ordering="1" parent="-44770f3d:13503faa17d:-7d3a" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="-5f02711f:131ec3f74c9:-78e5" parent="-5f02711f:131ec3f74c9:-7a7c" source="-5f02711f:131ec3f74c9:-799c" target="-5f02711f:131ec3f74c9:-78e8"><mxGeometry as="geometry" height="80.0" width="80.0" x="80.0" y="30.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-5f02711f:131ec3f74c9:-78e4" parent="-5f02711f:131ec3f74c9:-7a7c" source="-5f02711f:131ec3f74c9:-78e7" target="-5f02711f:131ec3f74c9:-78f0"><mxGeometry as="geometry" height="80.0" width="80.0" x="60.0" y="30.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-5f02711f:131ec3f74c9:-78ea" parent="-5f02711f:131ec3f74c9:-7a7c" source="-5f02711f:131ec3f74c9:-78e6" target="-5f02711f:131ec3f74c9:-799a"><mxGeometry as="geometry" x="60.0" y="30.0"><mxPoint as="sourcePoint" x="346.0" y="220.0"/><mxPoint as="targetPoint" x="290.0" y="220.0"/></mxGeometry></ImplicitLink><ImplicitLink id="-5f02711f:131ec3f74c9:-78e3" parent="-5f02711f:131ec3f74c9:-7a7c" source="-5f02711f:131ec3f74c9:-78f2" target="-5f02711f:131ec3f74c9:-7991"><mxGeometry as="geometry" x="60.0" y="30.0"><mxPoint as="sourcePoint" x="290.0" y="314.0"/><mxPoint as="targetPoint" x="290.0" y="340.0"/></mxGeometry></ImplicitLink><BasicBlock blockType="d" id="-44770f3d:13503faa17d:-7d32" interfaceFunctionName="CONST_m" ordering="16" parent="-5f02711f:131ec3f74c9:-7a7c" simulationFunctionName="cstblk4" simulationFunctionType="C_OR_FORTRAN" style="CONST_m;flip=false;mirror=false" value="7"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="7"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="7.0"/></ScilabDouble></Array><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="50.0" width="40.0" x="180.0" y="230.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-78ce" ordering="1" parent="-44770f3d:13503faa17d:-7d32" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ExplicitLink id="-5f02711f:131ec3f74c9:-78ca" parent="-5f02711f:131ec3f74c9:-7a7c" source="-5f02711f:131ec3f74c9:-78ce" target="-5f02711f:131ec3f74c9:-78f1"><mxGeometry as="geometry" x="60.0" y="30.0"><mxPoint as="sourcePoint" x="224.0" y="250.0"/><mxPoint as="targetPoint" x="280.0" y="260.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="280.0" y="250.0"/></Array></mxGeometry></ExplicitLink><GroundBlock angle="90" dependsOnU="1" id="-44770f3d:13503faa17d:-7d2f" interfaceFunctionName="Ground" ordering="17" parent="-5f02711f:131ec3f74c9:-7a7c" simulationFunctionName="Ground" simulationFunctionType="DEFAULT" style="Ground;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Ground"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="270.0" y="470.0"/></GroundBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-799f" ordering="1" parent="-44770f3d:13503faa17d:-7d2f" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=90;flip=false;mirror=false;spacingTop=5"><Orientation as="orientation" value="NORTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><TextBlock id="-44770f3d:13503faa17d:-7d2e" parent="-5f02711f:131ec3f74c9:-7a7c" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="The Supermesh<br>Example 4.11"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="The Supermesh<br>Example 4.11"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="The Supermesh<br>Example 4.11"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="70.0" y="30.0"/></TextBlock><BasicBlock dependsOnU="1" id="-44770f3d:13503faa17d:-7cf7" interfaceFunctionName="MUX" ordering="18" parent="-5f02711f:131ec3f74c9:-7a7c" simulationFunctionName="multiplex" simulationFunctionType="C_OR_FORTRAN" style="MUX;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="3"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="20.0" width="30.0" x="500.0" y="230.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="-44770f3d:13503faa17d:-7cf2" ordering="1" parent="-44770f3d:13503faa17d:-7cf7" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ExplicitInputPort><ExplicitInputPort dataColumns="1" dataLines="-2" dataType="REAL_MATRIX" id="-44770f3d:13503faa17d:-7cf1" ordering="2" parent="-44770f3d:13503faa17d:-7cf7" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ExplicitInputPort><ExplicitInputPort dataColumns="1" dataLines="-3" dataType="REAL_MATRIX" id="-44770f3d:13503faa17d:-7cf0" ordering="3" parent="-44770f3d:13503faa17d:-7cf7" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitOutputPort dataColumns="1" dataLines="0" dataType="REAL_MATRIX" id="-44770f3d:13503faa17d:-7cef" ordering="1" parent="-44770f3d:13503faa17d:-7cf7" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="30.0" y="6.0"/></ExplicitOutputPort><ExplicitLink id="-44770f3d:13503faa17d:-7ced" parent="-5f02711f:131ec3f74c9:-7a7c" source="-5f02711f:131ec3f74c9:-7987" target="-44770f3d:13503faa17d:-7cf2"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="380.0" y="90.0"/><mxPoint as="targetPoint" x="490.0" y="230.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="470.0" y="90.0"/><mxPoint x="470.0" y="220.0"/><mxPoint x="470.0" y="230.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="-44770f3d:13503faa17d:-7cec" parent="-5f02711f:131ec3f74c9:-7a7c" source="-5f02711f:131ec3f74c9:-798b" target="-44770f3d:13503faa17d:-7cf1"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="200.0" y="100.0"/><mxPoint as="targetPoint" x="500.0" y="240.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="220.0" y="100.0"/><mxPoint x="220.0" y="220.0"/><mxPoint x="220.0" y="240.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="-44770f3d:13503faa17d:-7ceb" parent="-5f02711f:131ec3f74c9:-7a7c" source="-5f02711f:131ec3f74c9:-7983" target="-44770f3d:13503faa17d:-7cf0"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="460.0" y="290.0"/><mxPoint as="targetPoint" x="490.0" y="250.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="460.0" y="300.0"/><mxPoint x="480.0" y="300.0"/><mxPoint x="480.0" y="250.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="-44770f3d:13503faa17d:-7ce9" parent="-5f02711f:131ec3f74c9:-7a7c" source="-44770f3d:13503faa17d:-7cef" target="-44770f3d:13503faa17d:-7ce5"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="530.0" y="240.0"/><mxPoint as="targetPoint" x="550.0" y="240.0"/></mxGeometry></ExplicitLink><BasicBlock angle="90" dependsOnU="1" id="-44770f3d:13503faa17d:-7d8e" interfaceFunctionName="Resistor" ordering="19" parent="-5f02711f:131ec3f74c9:-7a7c" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="280.0" y="120.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-799d" ordering="1" parent="-44770f3d:13503faa17d:-7d8e" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;spacingTop=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-799c" ordering="1" parent="-44770f3d:13503faa17d:-7d8e" style="ImplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;spacingBottom=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><BasicBlock blockType="h" id="128c18ea:1383ab8277c:-7a06" interfaceFunctionName="CLOCK_c" ordering="20" parent="-5f02711f:131ec3f74c9:-7a7c" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="119.0"/><data column="1" line="0" realPart="-150.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-7d786674:1672f942e6b:-7eed"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-7d786674:1672f942e6b:-7eed"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.1"/><data column="0" line="1" value="0.1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.1"/><data column="0" line="1" realPart="0.1"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.1"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-7d786674:1672f942e6b:-7eeb"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-7d786674:1672f942e6b:-7eeb"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="123.3773266666667"/><data column="1" line="0" realPart="-169.33333333333331"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="7.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="5.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-7d786674:1672f942e6b:-7ee8"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-7d786674:1672f942e6b:-7ee8"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="100.0"/><data column="0" line="2" realPart="133.8773266666667"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-44.0"/><data column="0" line="1" realPart="-180.0"/><data column="0" line="2" realPart="-158.33333333333331"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="132.71066000000005"/><data column="0" line="1" realPart="149.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-173.33333333333331"/><data column="0" line="1" realPart="-126.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="135.04399333333336"/><data column="0" line="1" realPart="140.70999999999998"/><data column="0" line="2" realPart="100.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-173.33333333333331"/><data column="0" line="1" realPart="-50.0"/><data column="0" line="2" realPart="-50.0"/><data column="0" line="3" realPart="4.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="560.0" y="130.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="128c18ea:1383ab8277c:-7a05" ordering="1" parent="128c18ea:1383ab8277c:-7a06" style="CommandPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><CommandControlLink id="128c18ea:1383ab8277c:-7a03" parent="-5f02711f:131ec3f74c9:-7a7c" source="128c18ea:1383ab8277c:-7a05" target="-44770f3d:13503faa17d:-7ce4"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="580.0" y="216.0"/><mxPoint as="targetPoint" x="584.0" y="174.0"/></mxGeometry></CommandControlLink></root></mxGraphModel><mxCell as="defaultParent" id="-5f02711f:131ec3f74c9:-7a7c" parent="-5f02711f:131ec3f74c9:-7a7b"/><mxPoint as="origin" x="-6.0" y="-6.0"/></XcosDiagram>
\ No newline at end of file diff --git a/Working_Examples/215/CH4/EX4.12/Figure4_12.jpg b/Working_Examples/215/CH4/EX4.12/Figure4_12.jpg Binary files differnew file mode 100755 index 0000000..04f0fb5 --- /dev/null +++ b/Working_Examples/215/CH4/EX4.12/Figure4_12.jpg diff --git a/Working_Examples/215/CH4/EX4.12/Figure4_12_xcos.jpg b/Working_Examples/215/CH4/EX4.12/Figure4_12_xcos.jpg Binary files differnew file mode 100755 index 0000000..c412811 --- /dev/null +++ b/Working_Examples/215/CH4/EX4.12/Figure4_12_xcos.jpg diff --git a/Working_Examples/215/CH4/EX4.12/ex4_12.xcos b/Working_Examples/215/CH4/EX4.12/ex4_12.xcos new file mode 100755 index 0000000..4c34b57 --- /dev/null +++ b/Working_Examples/215/CH4/EX4.12/ex4_12.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" finalIntegrationTime="30.0" title="ex4_12"><!--Xcos - 1.0 - scilab-5.5.2 - 20160406 2040--><mxGraphModel as="model"><root><mxCell id="5e6a3066:134dff9ba34:-7ffd"/><mxCell id="5e6a3066:134dff9ba34:-7ffe" parent="5e6a3066:134dff9ba34:-7ffd"/><BasicBlock angle="270" dependsOnT="1" id="-44770f3d:13503faa17d:-7e6b" interfaceFunctionName="CCS" ordering="1" parent="5e6a3066:134dff9ba34:-7ffe" simulationFunctionName="CCS" simulationFunctionType="DEFAULT" style="CCS;rotation=270;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CCS"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="Iin"/><data column="0" line="1" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="170.0" y="190.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5e6a3066:134dff9ba34:-7fda" ordering="1" parent="-44770f3d:13503faa17d:-7e6b" style="ExplicitInputPort;align=center;verticalAlign=bottom;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="6.0" y="40.0"/></ExplicitInputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5e6a3066:134dff9ba34:-7fd9" ordering="2" parent="-44770f3d:13503faa17d:-7e6b" style="ImplicitInputPort;align=center;verticalAlign=bottom;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="26.0" y="40.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5e6a3066:134dff9ba34:-7fdb" ordering="1" parent="-44770f3d:13503faa17d:-7e6b" style="ImplicitOutputPort;align=center;verticalAlign=top;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitOutputPort><GroundBlock dependsOnU="1" id="-44770f3d:13503faa17d:-7e67" interfaceFunctionName="Ground" ordering="2" parent="5e6a3066:134dff9ba34:-7ffe" simulationFunctionName="Ground" simulationFunctionType="DEFAULT" style="Ground;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Ground"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="180.0" y="350.0"/></GroundBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5e6a3066:134dff9ba34:-7fd2" ordering="1" parent="-44770f3d:13503faa17d:-7e67" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><Orientation as="orientation" value="NORTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="-44770f3d:13503faa17d:-7e65" interfaceFunctionName="CurrentSensor" ordering="3" parent="5e6a3066:134dff9ba34:-7ffe" simulationFunctionName="CurrentSensor" simulationFunctionType="DEFAULT" style="CurrentSensor;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CurrentSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="i"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="290.0" y="10.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5e6a3066:134dff9ba34:-7fc6" ordering="2" parent="-44770f3d:13503faa17d:-7e65" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="26.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5e6a3066:134dff9ba34:-7fc5" ordering="1" parent="-44770f3d:13503faa17d:-7e65" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5e6a3066:134dff9ba34:-7fc7" ordering="1" parent="-44770f3d:13503faa17d:-7e65" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="6.0"/></ImplicitOutputPort><BasicBlock dependsOnU="1" id="-44770f3d:13503faa17d:-7e61" interfaceFunctionName="Resistor" ordering="4" parent="5e6a3066:134dff9ba34:-7ffe" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="3"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="280.0" y="130.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5e6a3066:134dff9ba34:-7ee9" ordering="1" parent="-44770f3d:13503faa17d:-7e61" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5e6a3066:134dff9ba34:-7ee8" ordering="1" parent="-44770f3d:13503faa17d:-7e61" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><BasicBlock angle="90" dependsOnU="1" id="-44770f3d:13503faa17d:-7e5e" interfaceFunctionName="Resistor" ordering="5" parent="5e6a3066:134dff9ba34:-7ffe" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="170.0" y="60.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5e6a3066:134dff9ba34:-7ef9" ordering="1" parent="-44770f3d:13503faa17d:-7e5e" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5e6a3066:134dff9ba34:-7ef8" ordering="1" parent="-44770f3d:13503faa17d:-7e5e" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><BasicBlock angle="90" dependsOnU="1" id="-44770f3d:13503faa17d:-7e5b" interfaceFunctionName="Resistor" ordering="6" parent="5e6a3066:134dff9ba34:-7ffe" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="2"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="380.0" y="60.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5e6a3066:134dff9ba34:-7edc" ordering="1" parent="-44770f3d:13503faa17d:-7e5b" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5e6a3066:134dff9ba34:-7edb" ordering="1" parent="-44770f3d:13503faa17d:-7e5b" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><BasicBlock angle="90" dependsOnU="1" id="-44770f3d:13503faa17d:-7e58" interfaceFunctionName="Resistor" ordering="7" parent="5e6a3066:134dff9ba34:-7ffe" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="2"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="180.0" y="260.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5e6a3066:134dff9ba34:-7ef5" ordering="1" parent="-44770f3d:13503faa17d:-7e58" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5e6a3066:134dff9ba34:-7ef4" ordering="1" parent="-44770f3d:13503faa17d:-7e58" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><BasicBlock angle="90" dependsOnU="1" id="-44770f3d:13503faa17d:-7e55" interfaceFunctionName="Resistor" ordering="8" parent="5e6a3066:134dff9ba34:-7ffe" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="380.0" y="190.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5e6a3066:134dff9ba34:-7ed8" ordering="1" parent="-44770f3d:13503faa17d:-7e55" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5e6a3066:134dff9ba34:-7ed7" ordering="1" parent="-44770f3d:13503faa17d:-7e55" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitLink id="5e6a3066:134dff9ba34:-7f91" parent="5e6a3066:134dff9ba34:-7ffe" source="5e6a3066:134dff9ba34:-7fc7" target="5e6a3066:134dff9ba34:-7edc"><mxGeometry as="geometry" y="-10.0"><mxPoint as="sourcePoint" x="330.0" y="20.0"/><mxPoint as="targetPoint" x="400.0" y="50.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="400.0" y="20.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="-44770f3d:13503faa17d:-7e51" ordering="9" parent="5e6a3066:134dff9ba34:-7ffe" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="187.0" y="147.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="5e6a3066:134dff9ba34:-7f85" ordering="1" parent="-44770f3d:13503faa17d:-7e51" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="5e6a3066:134dff9ba34:-7f84" ordering="2" parent="-44770f3d:13503faa17d:-7e51" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="5e6a3066:134dff9ba34:-7f86" ordering="1" parent="-44770f3d:13503faa17d:-7e51" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="5e6a3066:134dff9ba34:-7f83" parent="5e6a3066:134dff9ba34:-7ffe" source="5e6a3066:134dff9ba34:-7ef8" target="5e6a3066:134dff9ba34:-7f86"><mxGeometry as="geometry" y="-10.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="5e6a3066:134dff9ba34:-7f82" parent="5e6a3066:134dff9ba34:-7ffe" source="5e6a3066:134dff9ba34:-7fdb" target="5e6a3066:134dff9ba34:-7f85"><mxGeometry as="geometry" y="-10.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><SplitBlock id="-44770f3d:13503faa17d:-7e4b" ordering="10" parent="5e6a3066:134dff9ba34:-7ffe" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="397.0" y="147.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="5e6a3066:134dff9ba34:-7f7b" ordering="1" parent="-44770f3d:13503faa17d:-7e4b" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="5e6a3066:134dff9ba34:-7f7a" ordering="2" parent="-44770f3d:13503faa17d:-7e4b" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="5e6a3066:134dff9ba34:-7f7c" ordering="1" parent="-44770f3d:13503faa17d:-7e4b" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="5e6a3066:134dff9ba34:-7f79" parent="5e6a3066:134dff9ba34:-7ffe" source="5e6a3066:134dff9ba34:-7edb" target="5e6a3066:134dff9ba34:-7f7c"><mxGeometry as="geometry" y="-10.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="5e6a3066:134dff9ba34:-7f78" parent="5e6a3066:134dff9ba34:-7ffe" source="5e6a3066:134dff9ba34:-7f7b" target="5e6a3066:134dff9ba34:-7ed8"><mxGeometry as="geometry" y="-10.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="5e6a3066:134dff9ba34:-7f77" parent="5e6a3066:134dff9ba34:-7ffe" source="5e6a3066:134dff9ba34:-7ef5" target="5e6a3066:134dff9ba34:-7fd9"><mxGeometry as="geometry" y="-10.0"><mxPoint as="sourcePoint" x="200.0" y="260.0"/><mxPoint as="targetPoint" x="200.0" y="230.0"/></mxGeometry></ImplicitLink><VoltageSensorBlock dependsOnU="1" id="-44770f3d:13503faa17d:-7e44" interfaceFunctionName="VoltageSensor" ordering="11" parent="5e6a3066:134dff9ba34:-7ffe" simulationFunctionName="VoltageSensor" simulationFunctionType="DEFAULT" style="VoltageSensor;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="VoltageSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="v"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="320.0" y="80.0"/></VoltageSensorBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5e6a3066:134dff9ba34:-7f5a" ordering="2" parent="-44770f3d:13503faa17d:-7e44" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5e6a3066:134dff9ba34:-7f59" ordering="1" parent="-44770f3d:13503faa17d:-7e44" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5e6a3066:134dff9ba34:-7f5b" ordering="1" parent="-44770f3d:13503faa17d:-7e44" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><Orientation as="orientation" value="SOUTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><SplitBlock id="-44770f3d:13503faa17d:-7e40" ordering="12" parent="5e6a3066:134dff9ba34:-7ffe" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="337.0" y="147.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="5e6a3066:134dff9ba34:-7f55" ordering="1" parent="-44770f3d:13503faa17d:-7e40" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="5e6a3066:134dff9ba34:-7f54" ordering="2" parent="-44770f3d:13503faa17d:-7e40" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="5e6a3066:134dff9ba34:-7f56" ordering="1" parent="-44770f3d:13503faa17d:-7e40" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="5e6a3066:134dff9ba34:-7f53" parent="5e6a3066:134dff9ba34:-7ffe" source="5e6a3066:134dff9ba34:-7ee8" target="5e6a3066:134dff9ba34:-7f56"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="5e6a3066:134dff9ba34:-7f52" parent="5e6a3066:134dff9ba34:-7ffe" source="5e6a3066:134dff9ba34:-7f7a" target="5e6a3066:134dff9ba34:-7f55"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="5e6a3066:134dff9ba34:-7f58" parent="5e6a3066:134dff9ba34:-7ffe" source="5e6a3066:134dff9ba34:-7f5b" target="5e6a3066:134dff9ba34:-7f54"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="340.0" y="120.0"/><mxPoint as="targetPoint" x="350.0" y="150.0"/></mxGeometry></ImplicitLink><SplitBlock id="-44770f3d:13503faa17d:-7e39" ordering="13" parent="5e6a3066:134dff9ba34:-7ffe" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="237.0" y="147.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="5e6a3066:134dff9ba34:-7f4e" ordering="1" parent="-44770f3d:13503faa17d:-7e39" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="5e6a3066:134dff9ba34:-7f4d" ordering="2" parent="-44770f3d:13503faa17d:-7e39" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="5e6a3066:134dff9ba34:-7f4f" ordering="1" parent="-44770f3d:13503faa17d:-7e39" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="5e6a3066:134dff9ba34:-7f4c" parent="5e6a3066:134dff9ba34:-7ffe" source="5e6a3066:134dff9ba34:-7f84" target="5e6a3066:134dff9ba34:-7f4f"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="5e6a3066:134dff9ba34:-7f4b" parent="5e6a3066:134dff9ba34:-7ffe" source="5e6a3066:134dff9ba34:-7f4e" target="5e6a3066:134dff9ba34:-7ee9"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="5e6a3066:134dff9ba34:-7f51" parent="5e6a3066:134dff9ba34:-7ffe" source="5e6a3066:134dff9ba34:-7f4d" target="5e6a3066:134dff9ba34:-7f59"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="320.0" y="100.0"/><mxPoint as="targetPoint" x="240.0" y="150.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="240.0" y="150.0"/><mxPoint x="240.0" y="100.0"/></Array></mxGeometry></ImplicitLink><BasicBlock angle="180" dependsOnU="1" id="-44770f3d:13503faa17d:-7e2e" interfaceFunctionName="GAINBLK_f" ordering="14" parent="5e6a3066:134dff9ba34:-7ffe" simulationFunctionName="gain" simulationFunctionType="DEFAULT" style="GAINBLK_f;rotation=180;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="1/9"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="0.1111111111111111"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="50.0" width="40.0" x="260.0" y="230.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5e6a3066:134dff9ba34:-7ee5" ordering="1" parent="-44770f3d:13503faa17d:-7e2e" style="ExplicitInputPort;align=right;verticalAlign=middle;spacing=10;rotation=180;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitInputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5e6a3066:134dff9ba34:-7ee4" ordering="1" parent="-44770f3d:13503faa17d:-7e2e" style="ExplicitOutputPort;align=left;verticalAlign=middle;spacing=10;rotation=180;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitOutputPort><ExplicitLink id="5e6a3066:134dff9ba34:-7f34" parent="5e6a3066:134dff9ba34:-7ffe" source="5e6a3066:134dff9ba34:-7ee4" target="5e6a3066:134dff9ba34:-7fda"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="260.0" y="250.0"/><mxPoint as="targetPoint" x="180.0" y="240.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="180.0" y="250.0"/></Array></mxGeometry></ExplicitLink><BasicBlock dependsOnU="1" id="-44770f3d:13503faa17d:-7e21" interfaceFunctionName="CurrentSensor" ordering="15" parent="5e6a3066:134dff9ba34:-7ffe" simulationFunctionName="CurrentSensor" simulationFunctionType="DEFAULT" style="CurrentSensor;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CurrentSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="i"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="90.0" y="20.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5e6a3066:134dff9ba34:-7f15" ordering="2" parent="-44770f3d:13503faa17d:-7e21" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="26.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5e6a3066:134dff9ba34:-7f14" ordering="1" parent="-44770f3d:13503faa17d:-7e21" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5e6a3066:134dff9ba34:-7f16" ordering="1" parent="-44770f3d:13503faa17d:-7e21" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="6.0"/></ImplicitOutputPort><SplitBlock id="-44770f3d:13503faa17d:-7e1d" ordering="16" parent="5e6a3066:134dff9ba34:-7ffe" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="187.0" y="27.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="5e6a3066:134dff9ba34:-7f0c" ordering="1" parent="-44770f3d:13503faa17d:-7e1d" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="5e6a3066:134dff9ba34:-7f0b" ordering="2" parent="-44770f3d:13503faa17d:-7e1d" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="5e6a3066:134dff9ba34:-7f0d" ordering="1" parent="-44770f3d:13503faa17d:-7e1d" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="5e6a3066:134dff9ba34:-7f0a" parent="5e6a3066:134dff9ba34:-7ffe" source="5e6a3066:134dff9ba34:-7fc5" target="5e6a3066:134dff9ba34:-7f0d"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="5e6a3066:134dff9ba34:-7f09" parent="5e6a3066:134dff9ba34:-7ffe" source="5e6a3066:134dff9ba34:-7f0c" target="5e6a3066:134dff9ba34:-7ef9"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="5e6a3066:134dff9ba34:-7f0f" parent="5e6a3066:134dff9ba34:-7ffe" source="5e6a3066:134dff9ba34:-7f16" target="5e6a3066:134dff9ba34:-7f0b"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="130.0" y="30.0"/><mxPoint as="targetPoint" x="190.0" y="30.0"/></mxGeometry></ImplicitLink><ImplicitLink id="5e6a3066:134dff9ba34:-7f08" parent="5e6a3066:134dff9ba34:-7ffe" source="5e6a3066:134dff9ba34:-7fdf" target="5e6a3066:134dff9ba34:-7f14"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="90.0" y="40.0"/><mxPoint as="targetPoint" x="60.0" y="150.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="60.0" y="40.0"/></Array></mxGeometry></ImplicitLink><BasicBlock blockType="d" id="-44770f3d:13503faa17d:-7e14" interfaceFunctionName="CONST_m" ordering="17" parent="5e6a3066:134dff9ba34:-7ffe" simulationFunctionName="cstblk4_m" simulationFunctionType="C_OR_FORTRAN" style="CONST_m;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="15"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="15.0"/></ScilabDouble></Array><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="50.0" width="40.0" x="10.0" y="220.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5e6a3066:134dff9ba34:-7efc" ordering="1" parent="-44770f3d:13503faa17d:-7e14" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ExplicitLink id="5e6a3066:134dff9ba34:-7efe" parent="5e6a3066:134dff9ba34:-7ffe" source="5e6a3066:134dff9ba34:-7efc" target="5e6a3066:134dff9ba34:-7fde"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="50.0" y="190.0"/><mxPoint as="targetPoint" x="50.0" y="240.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="50.0" y="240.0"/></Array></mxGeometry></ExplicitLink><BasicBlock angle="90" dependsOnU="1" id="-44770f3d:13503faa17d:-7e11" interfaceFunctionName="CurrentSensor" ordering="18" parent="5e6a3066:134dff9ba34:-7ffe" simulationFunctionName="CurrentSensor" simulationFunctionType="DEFAULT" style="CurrentSensor;rotation=90;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CurrentSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="i"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="380.0" y="260.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5e6a3066:134dff9ba34:-7eca" ordering="2" parent="-44770f3d:13503faa17d:-7e11" style="ExplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="26.0" y="40.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5e6a3066:134dff9ba34:-7ec9" ordering="1" parent="-44770f3d:13503faa17d:-7e11" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5e6a3066:134dff9ba34:-7ecb" ordering="1" parent="-44770f3d:13503faa17d:-7e11" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="6.0" y="40.0"/></ImplicitOutputPort><ImplicitLink id="5e6a3066:134dff9ba34:-7ec4" parent="5e6a3066:134dff9ba34:-7ffe" source="5e6a3066:134dff9ba34:-7ed7" target="5e6a3066:134dff9ba34:-7ec9"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="400.0" y="230.0"/><mxPoint as="targetPoint" x="400.0" y="260.0"/></mxGeometry></ImplicitLink><SplitBlock id="-44770f3d:13503faa17d:-7e0c" ordering="19" parent="5e6a3066:134dff9ba34:-7ffe" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="197.0" y="327.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="5e6a3066:134dff9ba34:-7ec0" ordering="1" parent="-44770f3d:13503faa17d:-7e0c" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="5e6a3066:134dff9ba34:-7ebf" ordering="2" parent="-44770f3d:13503faa17d:-7e0c" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="5e6a3066:134dff9ba34:-7ec1" ordering="1" parent="-44770f3d:13503faa17d:-7e0c" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="5e6a3066:134dff9ba34:-7ebe" parent="5e6a3066:134dff9ba34:-7ffe" source="5e6a3066:134dff9ba34:-7ef4" target="5e6a3066:134dff9ba34:-7ec1"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="200.0" y="320.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="5e6a3066:134dff9ba34:-7ec3" parent="5e6a3066:134dff9ba34:-7ffe" source="5e6a3066:134dff9ba34:-7ecb" target="5e6a3066:134dff9ba34:-7ebf"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="390.0" y="300.0"/><mxPoint as="targetPoint" x="200.0" y="330.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="390.0" y="330.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="-44770f3d:13503faa17d:-7e04" ordering="20" parent="5e6a3066:134dff9ba34:-7ffe" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="197.0" y="327.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="5e6a3066:134dff9ba34:-7eb3" ordering="1" parent="-44770f3d:13503faa17d:-7e04" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="5e6a3066:134dff9ba34:-7eb2" ordering="2" parent="-44770f3d:13503faa17d:-7e04" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="5e6a3066:134dff9ba34:-7eb4" ordering="1" parent="-44770f3d:13503faa17d:-7e04" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="5e6a3066:134dff9ba34:-7eb1" parent="5e6a3066:134dff9ba34:-7ffe" source="5e6a3066:134dff9ba34:-7ec0" target="5e6a3066:134dff9ba34:-7eb4"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="5e6a3066:134dff9ba34:-7eb0" parent="5e6a3066:134dff9ba34:-7ffe" source="5e6a3066:134dff9ba34:-7eb3" target="5e6a3066:134dff9ba34:-7fd2"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="5e6a3066:134dff9ba34:-7eb6" parent="5e6a3066:134dff9ba34:-7ffe" source="5e6a3066:134dff9ba34:-7eb2" target="5e6a3066:134dff9ba34:-7fdd"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="70.0" y="190.0"/><mxPoint as="targetPoint" x="200.0" y="330.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="200.0" y="330.0"/><mxPoint x="70.0" y="330.0"/></Array></mxGeometry></ImplicitLink><BasicBlock dependsOnU="1" id="-44770f3d:13503faa17d:-7dad" interfaceFunctionName="MUX" ordering="21" parent="5e6a3066:134dff9ba34:-7ffe" simulationFunctionName="multiplex" simulationFunctionType="C_OR_FORTRAN" style="MUX;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="3"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="20.0" width="30.0" x="500.0" y="170.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="-44770f3d:13503faa17d:-7da8" ordering="1" parent="-44770f3d:13503faa17d:-7dad" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ExplicitInputPort><ExplicitInputPort dataColumns="1" dataLines="-2" dataType="REAL_MATRIX" id="-44770f3d:13503faa17d:-7da7" ordering="2" parent="-44770f3d:13503faa17d:-7dad" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ExplicitInputPort><ExplicitInputPort dataColumns="1" dataLines="-3" dataType="REAL_MATRIX" id="-44770f3d:13503faa17d:-7da6" ordering="3" parent="-44770f3d:13503faa17d:-7dad" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitOutputPort dataColumns="1" dataLines="0" dataType="REAL_MATRIX" id="-44770f3d:13503faa17d:-7da5" ordering="1" parent="-44770f3d:13503faa17d:-7dad" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="30.0" y="6.0"/></ExplicitOutputPort><ExplicitLink id="-44770f3d:13503faa17d:-7da3" parent="5e6a3066:134dff9ba34:-7ffe" source="5e6a3066:134dff9ba34:-7fc6" target="-44770f3d:13503faa17d:-7da8"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="330.0" y="40.0"/><mxPoint as="targetPoint" x="490.0" y="170.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="450.0" y="40.0"/><mxPoint x="450.0" y="170.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="-44770f3d:13503faa17d:-7da2" parent="5e6a3066:134dff9ba34:-7ffe" source="5e6a3066:134dff9ba34:-7f15" target="-44770f3d:13503faa17d:-7da7"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="130.0" y="50.0"/><mxPoint as="targetPoint" x="500.0" y="180.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="150.0" y="50.0"/><mxPoint x="150.0" y="180.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="-44770f3d:13503faa17d:-7da1" parent="5e6a3066:134dff9ba34:-7ffe" source="5e6a3066:134dff9ba34:-7eca" target="-44770f3d:13503faa17d:-7da6"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="410.0" y="300.0"/><mxPoint as="targetPoint" x="490.0" y="190.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="410.0" y="320.0"/><mxPoint x="450.0" y="320.0"/><mxPoint x="450.0" y="190.0"/></Array></mxGeometry></ExplicitLink><BasicBlock dependsOnU="1" id="-44770f3d:13503faa17d:-7d99" interfaceFunctionName="CSCOPE" ordering="22" parent="5e6a3066:134dff9ba34:-7ffe" simulationFunctionName="cscope" simulationFunctionType="C_OR_FORTRAN" style="CSCOPE;flip=false;mirror=false"><ScilabString as="exprs" height="10" width="1"><data column="0" line="0" value="1 3 5 7 9 11 13 15"/><data column="0" line="1" value="-1"/><data column="0" line="2" value="[]"/><data column="0" line="3" value="[600;400]"/><data column="0" line="4" value="9"/><data column="0" line="5" value="19"/><data column="0" line="6" value="30"/><data column="0" line="7" value="20"/><data column="0" line="8" value="0"/><data column="0" line="9" value=""/></ScilabString><ScilabDouble as="realParameters" height="4" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="9.0"/><data column="0" line="2" realPart="19.0"/><data column="0" line="3" realPart="30.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="15" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="1.0"/><data column="0" line="4" realPart="3.0"/><data column="0" line="5" realPart="5.0"/><data column="0" line="6" realPart="7.0"/><data column="0" line="7" realPart="9.0"/><data column="0" line="8" realPart="11.0"/><data column="0" line="9" realPart="13.0"/><data column="0" line="10" realPart="15.0"/><data column="0" line="11" realPart="-1.0"/><data column="0" line="12" realPart="-1.0"/><data column="0" line="13" realPart="600.0"/><data column="0" line="14" realPart="400.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="560.0" y="160.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="-44770f3d:13503faa17d:-7d93" ordering="1" parent="-44770f3d:13503faa17d:-7d99" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ControlPort dataType="UNKNOW_TYPE" id="-44770f3d:13503faa17d:-7d92" ordering="1" parent="-44770f3d:13503faa17d:-7d99" style="ControlPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><ExplicitLink id="-44770f3d:13503faa17d:-7d96" parent="5e6a3066:134dff9ba34:-7ffe" source="-44770f3d:13503faa17d:-7da5" target="-44770f3d:13503faa17d:-7d93"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="530.0" y="180.0"/><mxPoint as="targetPoint" x="560.0" y="180.0"/></mxGeometry></ExplicitLink><BasicBlock angle="270" dependsOnT="1" id="-44770f3d:13503faa17d:-7e6f" interfaceFunctionName="CCS" ordering="23" parent="5e6a3066:134dff9ba34:-7ffe" simulationFunctionName="CCS" simulationFunctionType="DEFAULT" style="CCS;rotation=270;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CCS"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="Iin"/><data column="0" line="1" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="40.0" y="150.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5e6a3066:134dff9ba34:-7fde" ordering="1" parent="-44770f3d:13503faa17d:-7e6f" style="ExplicitInputPort;align=center;verticalAlign=bottom;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="6.0" y="40.0"/></ExplicitInputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5e6a3066:134dff9ba34:-7fdd" ordering="2" parent="-44770f3d:13503faa17d:-7e6f" style="ImplicitInputPort;align=center;verticalAlign=bottom;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="26.0" y="40.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5e6a3066:134dff9ba34:-7fdf" ordering="1" parent="-44770f3d:13503faa17d:-7e6f" style="ImplicitOutputPort;align=center;verticalAlign=top;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitOutputPort><BasicBlock angle="90" blockType="h" id="128c18ea:1383ab8277c:-769e" interfaceFunctionName="DELAY_f" ordering="24" parent="5e6a3066:134dff9ba34:-7ffe" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="DELAY_f;rotation=90;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="84.0"/><data column="1" line="0" realPart="-286.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="1"/><data column="0" line="1" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="7.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"IN_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="IN_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="input"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-2.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-42e9dc95:1669b52f66e:-7e66"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="IN_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-42e9dc95:1669b52f66e:-7e66"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="432.0"/><data column="1" line="0" realPart="-286.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="1"/><data column="0" line="1" value="1"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"OUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="OUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-2.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-42e9dc95:1669b52f66e:-7e64"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="OUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-42e9dc95:1669b52f66e:-7e64"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="-10.0"/><data column="1" line="0" realPart="-61.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="50.0"/><data column="1" line="0" realPart="50.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="0;0;0;0;0;0;0;0;0;0"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="7.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="9.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"REGISTER_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="REGISTER_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="delay"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="10" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="0.0"/><data column="0" line="2" realPart="0.0"/><data column="0" line="3" realPart="0.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/><data column="0" line="7" realPart="0.0"/><data column="0" line="8" realPart="0.0"/><data column="0" line="9" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-42e9dc95:1669b52f66e:-7e62"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="REGISTER_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-42e9dc95:1669b52f66e:-7e62"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="75.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.001"/><data column="0" line="1" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="10.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.001"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-42e9dc95:1669b52f66e:-7e5e"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-42e9dc95:1669b52f66e:-7e5e"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="355.6666666666667"/><data column="1" line="0" realPart="-332.1333333333334"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="7.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="9.0"/><data column="0" line="1" realPart="10.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-42e9dc95:1669b52f66e:-7e5b"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-42e9dc95:1669b52f66e:-7e5b"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="94.0"/><data column="0" line="1" realPart="448.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-36.0"/><data column="0" line="1" realPart="-276.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="128.0"/><data column="0" line="1" realPart="36.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-276.0"/><data column="0" line="1" realPart="-36.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="135.0"/><data column="0" line="1" realPart="366.1666666666667"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-44.0"/><data column="0" line="1" realPart="-321.1333333333334"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="365.0"/><data column="0" line="1" realPart="65.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-336.1333333333334"/><data column="0" line="1" realPart="-7.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="5" width="1"><data column="0" line="0" realPart="367.33333333333337"/><data column="0" line="1" realPart="460.6"/><data column="0" line="2" realPart="460.6"/><data column="0" line="3" realPart="415.0"/><data column="0" line="4" realPart="135.0"/></ScilabDouble><ScilabDouble height="5" width="1"><data column="0" line="0" realPart="-336.1333333333334"/><data column="0" line="1" realPart="-384.8"/><data column="0" line="2" realPart="-289.0"/><data column="0" line="3" realPart="-289.0"/><data column="0" line="4" realPart="4.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="50.0" width="60.0" x="330.0" y="180.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="128c18ea:1383ab8277c:-7678" ordering="1" parent="128c18ea:1383ab8277c:-769e" style="ExplicitInputPort;align=center;verticalAlign=top;spacing=10.0;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="26.0" y="-8.0"/></ExplicitInputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="128c18ea:1383ab8277c:-7677" ordering="1" parent="128c18ea:1383ab8277c:-769e" style="ExplicitOutputPort;align=center;verticalAlign=bottom;spacing=10.0;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="26.0" y="50.0"/></ExplicitOutputPort><ExplicitLink id="128c18ea:1383ab8277c:-7698" parent="5e6a3066:134dff9ba34:-7ffe" source="5e6a3066:134dff9ba34:-7f5a" target="128c18ea:1383ab8277c:-7678"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="360.0" y="176.0"/><mxPoint as="targetPoint" x="360.0" y="100.0"/></mxGeometry></ExplicitLink><ExplicitLink id="128c18ea:1383ab8277c:-7697" parent="5e6a3066:134dff9ba34:-7ffe" source="128c18ea:1383ab8277c:-7677" target="5e6a3066:134dff9ba34:-7ee5"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="360.0" y="234.0"/><mxPoint as="targetPoint" x="300.0" y="250.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="360.0" y="250.0"/></Array></mxGeometry></ExplicitLink><BasicBlock blockType="h" id="128c18ea:1383ab8277c:-7691" interfaceFunctionName="CLOCK_c" ordering="25" parent="5e6a3066:134dff9ba34:-7ffe" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="219.0"/><data column="1" line="0" realPart="-250.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-42e9dc95:1669b52f66e:-7e50"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-42e9dc95:1669b52f66e:-7e50"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.01"/><data column="0" line="1" value="0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.01"/><data column="0" line="1" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-42e9dc95:1669b52f66e:-7e4e"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-42e9dc95:1669b52f66e:-7e4e"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="288.3773266666667"/><data column="1" line="0" realPart="-334.3333333333333"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="7.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="5.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-42e9dc95:1669b52f66e:-7e4b"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-42e9dc95:1669b52f66e:-7e4b"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="300.0"/><data column="0" line="2" realPart="298.8773266666667"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-44.0"/><data column="0" line="1" realPart="-380.0"/><data column="0" line="2" realPart="-323.3333333333333"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="297.71066"/><data column="0" line="1" realPart="249.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-338.3333333333333"/><data column="0" line="1" realPart="-226.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="300.0439933333334"/><data column="0" line="1" realPart="340.71"/><data column="0" line="2" realPart="300.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-338.3333333333333"/><data column="0" line="1" realPart="-250.0"/><data column="0" line="2" realPart="-250.0"/><data column="0" line="3" realPart="4.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="560.0" y="80.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="128c18ea:1383ab8277c:-767b" ordering="1" parent="128c18ea:1383ab8277c:-7691" style="CommandPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><CommandControlLink id="128c18ea:1383ab8277c:-768d" parent="5e6a3066:134dff9ba34:-7ffe" source="128c18ea:1383ab8277c:-767b" target="-44770f3d:13503faa17d:-7d92"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="580.0" y="124.0"/><mxPoint as="targetPoint" x="580.0" y="150.0"/></mxGeometry></CommandControlLink></root></mxGraphModel><mxCell as="defaultParent" id="5e6a3066:134dff9ba34:-7ffe" parent="5e6a3066:134dff9ba34:-7ffd"/></XcosDiagram>
\ No newline at end of file diff --git a/Working_Examples/215/CH4/EX4.2/Figure4_2.jpg b/Working_Examples/215/CH4/EX4.2/Figure4_2.jpg Binary files differnew file mode 100755 index 0000000..10f8b9c --- /dev/null +++ b/Working_Examples/215/CH4/EX4.2/Figure4_2.jpg diff --git a/Working_Examples/215/CH4/EX4.2/Figure4_2_xcos.jpg b/Working_Examples/215/CH4/EX4.2/Figure4_2_xcos.jpg Binary files differnew file mode 100755 index 0000000..0a288a4 --- /dev/null +++ b/Working_Examples/215/CH4/EX4.2/Figure4_2_xcos.jpg diff --git a/Working_Examples/215/CH4/EX4.2/ex4_2.xcos b/Working_Examples/215/CH4/EX4.2/ex4_2.xcos new file mode 100755 index 0000000..f80a9a3 --- /dev/null +++ b/Working_Examples/215/CH4/EX4.2/ex4_2.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" finalIntegrationTime="30.0" title="ex4_2"><!--Xcos - 1.0 - scilab-5.5.2 - 20160406 2040--><mxGraphModel as="model"><root><mxCell id="-16b82e93:131e810ab25:-7f1d"/><mxCell id="-16b82e93:131e810ab25:-7f1e" parent="-16b82e93:131e810ab25:-7f1d"/><GroundBlock angle="90" dependsOnU="1" id="-16b82e93:131e810ab25:-7f0a" interfaceFunctionName="Ground" ordering="1" parent="-16b82e93:131e810ab25:-7f1e" simulationFunctionName="Ground" simulationFunctionType="DEFAULT" style="Ground;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Ground"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="230.0" y="382.0"/></GroundBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-16b82e93:131e810ab25:-7f09" ordering="1" parent="-16b82e93:131e810ab25:-7f0a" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=90;spacingTop=5;flip=false;mirror=false"><Orientation as="orientation" value="NORTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="-16b82e93:131e810ab25:-7f01" interfaceFunctionName="Resistor" ordering="2" parent="-16b82e93:131e810ab25:-7f1e" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="3"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="140.0" y="200.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-16b82e93:131e810ab25:-7e6c" ordering="1" parent="-16b82e93:131e810ab25:-7f01" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-16b82e93:131e810ab25:-7e6b" ordering="1" parent="-16b82e93:131e810ab25:-7f01" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><BasicBlock dependsOnU="1" id="-16b82e93:131e810ab25:-7ef5" interfaceFunctionName="Resistor" ordering="3" parent="-16b82e93:131e810ab25:-7f1e" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="7"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="7.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="7.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="320.0" y="200.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-16b82e93:131e810ab25:-7e70" ordering="1" parent="-16b82e93:131e810ab25:-7ef5" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-16b82e93:131e810ab25:-7e6f" ordering="1" parent="-16b82e93:131e810ab25:-7ef5" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><BasicBlock dependsOnU="1" id="-16b82e93:131e810ab25:-7ef2" interfaceFunctionName="Resistor" ordering="4" parent="-16b82e93:131e810ab25:-7f1e" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="5"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="360.0" y="300.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-16b82e93:131e810ab25:-7e74" ordering="1" parent="-16b82e93:131e810ab25:-7ef2" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-16b82e93:131e810ab25:-7e73" ordering="1" parent="-16b82e93:131e810ab25:-7ef2" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><BasicBlock angle="90" dependsOnU="1" id="-16b82e93:131e810ab25:-7eef" interfaceFunctionName="Resistor" ordering="5" parent="-16b82e93:131e810ab25:-7f1e" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="230.0" y="260.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-16b82e93:131e810ab25:-7e78" ordering="1" parent="-16b82e93:131e810ab25:-7eef" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;spacingTop=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-16b82e93:131e810ab25:-7e77" ordering="1" parent="-16b82e93:131e810ab25:-7eef" style="ImplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;spacingBottom=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><BasicBlock dependsOnT="1" id="-16b82e93:131e810ab25:-7edc" interfaceFunctionName="CCS" ordering="6" parent="-16b82e93:131e810ab25:-7f1e" simulationFunctionName="CCS" simulationFunctionType="DEFAULT" style="CCS;rotation=0;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CCS"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="Iin"/><data column="0" line="1" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="140.0" y="300.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-16b82e93:131e810ab25:-7eda" ordering="1" parent="-16b82e93:131e810ab25:-7edc" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ExplicitInputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-16b82e93:131e810ab25:-7ed9" ordering="2" parent="-16b82e93:131e810ab25:-7edc" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="26.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-16b82e93:131e810ab25:-7edb" ordering="1" parent="-16b82e93:131e810ab25:-7edc" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><BasicBlock angle="270" dependsOnT="1" id="-16b82e93:131e810ab25:-7ed8" interfaceFunctionName="CCS" ordering="7" parent="-16b82e93:131e810ab25:-7f1e" simulationFunctionName="CCS" simulationFunctionType="DEFAULT" style="CCS;rotation=270;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CCS"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="Iin"/><data column="0" line="1" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="460.0" y="290.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-16b82e93:131e810ab25:-7ed6" ordering="1" parent="-16b82e93:131e810ab25:-7ed8" style="ExplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=top;rotation=270;spacingBottom=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="6.0" y="40.0"/></ExplicitInputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-16b82e93:131e810ab25:-7ed5" ordering="2" parent="-16b82e93:131e810ab25:-7ed8" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=top;rotation=270;spacingBottom=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="26.0" y="40.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-16b82e93:131e810ab25:-7ed7" ordering="1" parent="-16b82e93:131e810ab25:-7ed8" style="ImplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=270;spacingTop=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitOutputPort><SplitBlock id="-16b82e93:131e810ab25:-7eca" ordering="8" parent="-16b82e93:131e810ab25:-7f1e" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="247.0" y="217.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-16b82e93:131e810ab25:-7ec8" ordering="1" parent="-16b82e93:131e810ab25:-7eca" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-16b82e93:131e810ab25:-7ec7" ordering="2" parent="-16b82e93:131e810ab25:-7eca" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-16b82e93:131e810ab25:-7ec9" ordering="1" parent="-16b82e93:131e810ab25:-7eca" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-16b82e93:131e810ab25:-7ec5" parent="-16b82e93:131e810ab25:-7f1e" source="-16b82e93:131e810ab25:-7ec8" target="-16b82e93:131e810ab25:-7e70"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-16b82e93:131e810ab25:-7ecb" parent="-16b82e93:131e810ab25:-7f1e" source="-16b82e93:131e810ab25:-7ec7" target="-16b82e93:131e810ab25:-7e78"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="250.0" y="266.0"/><mxPoint as="targetPoint" x="250.0" y="220.0"/></mxGeometry></ImplicitLink><SplitBlock id="-16b82e93:131e810ab25:-7ec2" ordering="9" parent="-16b82e93:131e810ab25:-7f1e" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="246.5" y="216.5"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-16b82e93:131e810ab25:-7ec0" ordering="1" parent="-16b82e93:131e810ab25:-7ec2" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-16b82e93:131e810ab25:-7ebf" ordering="2" parent="-16b82e93:131e810ab25:-7ec2" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-16b82e93:131e810ab25:-7ec1" ordering="1" parent="-16b82e93:131e810ab25:-7ec2" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-16b82e93:131e810ab25:-7ebe" parent="-16b82e93:131e810ab25:-7f1e" source="-16b82e93:131e810ab25:-7e6b" target="-16b82e93:131e810ab25:-7ec1"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><SplitBlock id="-16b82e93:131e810ab25:-7eb2" ordering="10" parent="-16b82e93:131e810ab25:-7f1e" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="247.0" y="317.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-16b82e93:131e810ab25:-7eb0" ordering="1" parent="-16b82e93:131e810ab25:-7eb2" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-16b82e93:131e810ab25:-7eaf" ordering="2" parent="-16b82e93:131e810ab25:-7eb2" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-16b82e93:131e810ab25:-7eb1" ordering="1" parent="-16b82e93:131e810ab25:-7eb2" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-16b82e93:131e810ab25:-7eae" parent="-16b82e93:131e810ab25:-7f1e" source="-16b82e93:131e810ab25:-7e77" target="-16b82e93:131e810ab25:-7eb1"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-16b82e93:131e810ab25:-7eb3" parent="-16b82e93:131e810ab25:-7f1e" source="-16b82e93:131e810ab25:-7eaf" target="-16b82e93:131e810ab25:-7e74"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="316.0" y="320.0"/><mxPoint as="targetPoint" x="250.0" y="320.0"/></mxGeometry></ImplicitLink><BasicBlock blockType="d" id="-16b82e93:131e810ab25:-7e91" interfaceFunctionName="CONST_m" ordering="11" parent="-16b82e93:131e810ab25:-7f1e" simulationFunctionName="cstblk4" simulationFunctionType="C_OR_FORTRAN" style="CONST_m;flip=false;mirror=false" value="25"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="25"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="25.0"/></ScilabDouble></Array><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="50.0" width="40.0" x="430.0" y="380.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-16b82e93:131e810ab25:-7dd5" ordering="1" parent="-16b82e93:131e810ab25:-7e91" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><BasicBlock angle="180" blockType="d" id="-16b82e93:131e810ab25:-7e8d" interfaceFunctionName="CONST_m" ordering="12" parent="-16b82e93:131e810ab25:-7f1e" simulationFunctionName="cstblk4" simulationFunctionType="C_OR_FORTRAN" style="CONST_m;rotation=180;flip=false;mirror=false" value="8"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="8"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="50.0" width="40.0" x="140.0" y="240.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-16b82e93:131e810ab25:-7d8f" ordering="1" parent="-16b82e93:131e810ab25:-7e8d" style="ExplicitOutputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=180;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitOutputPort><BasicBlock angle="180" blockType="d" id="-16b82e93:131e810ab25:-7e8b" interfaceFunctionName="CONST_m" ordering="13" parent="-16b82e93:131e810ab25:-7f1e" simulationFunctionName="cstblk4" simulationFunctionType="C_OR_FORTRAN" style="CONST_m;rotation=180;flip=false;mirror=false" value="3"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="3"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble></Array><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="50.0" width="40.0" x="130.0" y="60.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-16b82e93:131e810ab25:-7da4" ordering="1" parent="-16b82e93:131e810ab25:-7e8b" style="ExplicitOutputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=180;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitOutputPort><BasicBlock blockType="h" id="-16b82e93:131e810ab25:-7e60" interfaceFunctionName="CLOCK_c" ordering="14" parent="-16b82e93:131e810ab25:-7f1e" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="179.0"/><data column="1" line="0" realPart="-210.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-7ca3f8c0:131f25d7805:-7ede"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-7ca3f8c0:131f25d7805:-7ede"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.1"/><data column="0" line="1" value="0.1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.1"/><data column="0" line="1" realPart="0.1"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.1"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-7ca3f8c0:131f25d7805:-7eda"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-7ca3f8c0:131f25d7805:-7eda"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="220.71066000000002"/><data column="1" line="0" realPart="-260.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="8.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="4.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-7ca3f8c0:131f25d7805:-7ed5"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-7ca3f8c0:131f25d7805:-7ed5"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="226.0"/><data column="0" line="2" realPart="231.37732666666668"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="4.0"/><data column="0" line="1" realPart="-324.0"/><data column="0" line="2" realPart="-264.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="232.71066000000002"/><data column="0" line="1" realPart="209.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-248.0"/><data column="0" line="1" realPart="-186.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="234.04399333333336"/><data column="0" line="1" realPart="271.71"/><data column="0" line="2" realPart="231.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-264.0"/><data column="0" line="1" realPart="-178.0"/><data column="0" line="2" realPart="-178.0"/><data column="0" line="3" realPart="-44.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="570.0" y="110.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="-16b82e93:131e810ab25:-7e5f" ordering="1" parent="-16b82e93:131e810ab25:-7e60" style="CommandPort;align=center;labelPosition=center;verticalLabelPosition=top;rotation=90;spacingBottom=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><BasicBlock dependsOnU="1" id="-16b82e93:131e810ab25:-7e4d" interfaceFunctionName="PotentialSensor" ordering="15" parent="-16b82e93:131e810ab25:-7f1e" simulationFunctionName="PotentialSensor" simulationFunctionType="DEFAULT" style="PotentialSensor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="PotentialSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="v"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="480.0" y="202.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-16b82e93:131e810ab25:-7e4b" ordering="1" parent="-16b82e93:131e810ab25:-7e4d" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-16b82e93:131e810ab25:-7e4c" ordering="1" parent="-16b82e93:131e810ab25:-7e4d" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><BasicBlock blockType="h" id="-16b82e93:131e810ab25:-7e2c" interfaceFunctionName="CLOCK_c" ordering="16" parent="-16b82e93:131e810ab25:-7f1e" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="179.0"/><data column="1" line="0" realPart="-210.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-7ca3f8c0:131f25d7805:-7ecc"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-7ca3f8c0:131f25d7805:-7ecc"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.1"/><data column="0" line="1" value="0.1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.1"/><data column="0" line="1" realPart="0.1"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.1"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-7ca3f8c0:131f25d7805:-7ec8"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-7ca3f8c0:131f25d7805:-7ec8"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="220.71066000000002"/><data column="1" line="0" realPart="-260.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="8.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="4.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-7ca3f8c0:131f25d7805:-7ec3"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-7ca3f8c0:131f25d7805:-7ec3"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="226.0"/><data column="0" line="2" realPart="231.37732666666668"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="4.0"/><data column="0" line="1" realPart="-324.0"/><data column="0" line="2" realPart="-264.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="232.71066000000002"/><data column="0" line="1" realPart="209.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-248.0"/><data column="0" line="1" realPart="-186.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="234.04399333333336"/><data column="0" line="1" realPart="271.71"/><data column="0" line="2" realPart="231.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-264.0"/><data column="0" line="1" realPart="-178.0"/><data column="0" line="2" realPart="-178.0"/><data column="0" line="3" realPart="-44.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="80.0" y="330.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="-16b82e93:131e810ab25:-7e2b" ordering="1" parent="-16b82e93:131e810ab25:-7e2c" style="CommandPort;align=center;labelPosition=center;verticalLabelPosition=top;rotation=90;spacingBottom=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><BasicBlock dependsOnU="1" id="-16b82e93:131e810ab25:-7e2a" interfaceFunctionName="PotentialSensor" ordering="17" parent="-16b82e93:131e810ab25:-7f1e" simulationFunctionName="PotentialSensor" simulationFunctionType="DEFAULT" style="PotentialSensor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="PotentialSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="v"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="320.0" y="122.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-16b82e93:131e810ab25:-7e28" ordering="1" parent="-16b82e93:131e810ab25:-7e2a" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-16b82e93:131e810ab25:-7e29" ordering="1" parent="-16b82e93:131e810ab25:-7e2a" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><BasicBlock dependsOnU="1" id="-16b82e93:131e810ab25:-7e00" interfaceFunctionName="CSCOPE" ordering="18" parent="-16b82e93:131e810ab25:-7f1e" simulationFunctionName="cscope" simulationFunctionType="C_OR_FORTRAN" style="CSCOPE;flip=false;mirror=false"><ScilabString as="exprs" height="10" width="1"><data column="0" line="0" value="1 3 5 7 9 11 13 15"/><data column="0" line="1" value="-1"/><data column="0" line="2" value="[]"/><data column="0" line="3" value="[600;400]"/><data column="0" line="4" value="5"/><data column="0" line="5" value="6"/><data column="0" line="6" value="30"/><data column="0" line="7" value="20"/><data column="0" line="8" value="0"/><data column="0" line="9" value=""/></ScilabString><ScilabDouble as="realParameters" height="4" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="5.0"/><data column="0" line="2" realPart="6.0"/><data column="0" line="3" realPart="30.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="15" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="1.0"/><data column="0" line="4" realPart="3.0"/><data column="0" line="5" realPart="5.0"/><data column="0" line="6" realPart="7.0"/><data column="0" line="7" realPart="9.0"/><data column="0" line="8" realPart="11.0"/><data column="0" line="9" realPart="13.0"/><data column="0" line="10" realPart="15.0"/><data column="0" line="11" realPart="-1.0"/><data column="0" line="12" realPart="-1.0"/><data column="0" line="13" realPart="600.0"/><data column="0" line="14" realPart="400.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="80.0" y="410.0"/></BasicBlock><ControlPort dataType="UNKNOW_TYPE" id="-16b82e93:131e810ab25:-7d38" ordering="1" parent="-16b82e93:131e810ab25:-7e00" style="ControlPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=90;spacingTop=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="-16b82e93:131e810ab25:-7d39" ordering="1" parent="-16b82e93:131e810ab25:-7e00" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><CommandControlLink id="-16b82e93:131e810ab25:-7df7" parent="-16b82e93:131e810ab25:-7f1e" source="-16b82e93:131e810ab25:-7e2b" target="-16b82e93:131e810ab25:-7d38"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="100.0" y="374.0"/><mxPoint as="targetPoint" x="100.0" y="410.0"/></mxGeometry></CommandControlLink><BasicBlock dependsOnU="1" id="-16b82e93:131e810ab25:-7ded" interfaceFunctionName="CMSCOPE" ordering="19" parent="-16b82e93:131e810ab25:-7f1e" simulationFunctionName="cmscope" simulationFunctionType="C_OR_FORTRAN" style="CMSCOPE;flip=false;mirror=false"><ScilabString as="exprs" height="11" width="1"><data column="0" line="0" value="1 1"/><data column="0" line="1" value="1 3 5 7 9 11 13 15"/><data column="0" line="2" value="-1"/><data column="0" line="3" value="[]"/><data column="0" line="4" value="[]"/><data column="0" line="5" value="7 46"/><data column="0" line="6" value="8 47"/><data column="0" line="7" value="30 30"/><data column="0" line="8" value="20"/><data column="0" line="9" value="0"/><data column="0" line="10" value=""/></ScilabString><ScilabDouble as="realParameters" height="7" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="30.0"/><data column="0" line="2" realPart="30.0"/><data column="0" line="3" realPart="7.0"/><data column="0" line="4" realPart="8.0"/><data column="0" line="5" realPart="46.0"/><data column="0" line="6" realPart="47.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="12" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="2.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="-1.0"/><data column="0" line="4" realPart="-1.0"/><data column="0" line="5" realPart="-1.0"/><data column="0" line="6" realPart="-1.0"/><data column="0" line="7" realPart="1.0"/><data column="0" line="8" realPart="1.0"/><data column="0" line="9" realPart="1.0"/><data column="0" line="10" realPart="3.0"/><data column="0" line="11" realPart="0.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="570.0" y="190.0"/></BasicBlock><ControlPort dataType="UNKNOW_TYPE" id="-16b82e93:131e810ab25:-7d33" ordering="1" parent="-16b82e93:131e810ab25:-7ded" style="ControlPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=90;spacingTop=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-16b82e93:131e810ab25:-7d34" ordering="2" parent="-16b82e93:131e810ab25:-7ded" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="26.0"/></ExplicitInputPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-16b82e93:131e810ab25:-7d35" ordering="1" parent="-16b82e93:131e810ab25:-7ded" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ExplicitInputPort><ExplicitLink id="-16b82e93:131e810ab25:-7de5" parent="-16b82e93:131e810ab25:-7f1e" source="-16b82e93:131e810ab25:-7e4c" target="-16b82e93:131e810ab25:-7d34"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="524.0" y="222.0"/><mxPoint as="targetPoint" x="570.0" y="220.0"/></mxGeometry></ExplicitLink><ExplicitLink id="-16b82e93:131e810ab25:-7de4" parent="-16b82e93:131e810ab25:-7f1e" source="-16b82e93:131e810ab25:-7e29" target="-16b82e93:131e810ab25:-7d35"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="364.0" y="142.0"/><mxPoint as="targetPoint" x="570.0" y="200.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="530.0" y="140.0"/><mxPoint x="530.0" y="200.0"/></Array></mxGeometry></ExplicitLink><CommandControlLink id="-16b82e93:131e810ab25:-7de3" parent="-16b82e93:131e810ab25:-7f1e" source="-16b82e93:131e810ab25:-7e5f" target="-16b82e93:131e810ab25:-7d33"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="590.0" y="154.0"/><mxPoint as="targetPoint" x="590.0" y="190.0"/></mxGeometry></CommandControlLink><ImplicitLink id="-16b82e93:131e810ab25:-7dd3" parent="-16b82e93:131e810ab25:-7f1e" source="-16b82e93:131e810ab25:-7ebf" target="-16b82e93:131e810ab25:-7e28"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="250.0" y="220.0"/><mxPoint x="260.0" y="190.0"/><mxPoint x="310.0" y="190.0"/><mxPoint x="310.0" y="140.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="-16b82e93:131e810ab25:-7dce" ordering="20" parent="-16b82e93:131e810ab25:-7f1e" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="247.0" y="217.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-16b82e93:131e810ab25:-7dcc" ordering="1" parent="-16b82e93:131e810ab25:-7dce" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-16b82e93:131e810ab25:-7dcb" ordering="2" parent="-16b82e93:131e810ab25:-7dce" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-16b82e93:131e810ab25:-7dcd" ordering="1" parent="-16b82e93:131e810ab25:-7dce" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-16b82e93:131e810ab25:-7dca" parent="-16b82e93:131e810ab25:-7f1e" source="-16b82e93:131e810ab25:-7ec0" target="-16b82e93:131e810ab25:-7dcd"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-16b82e93:131e810ab25:-7dc9" parent="-16b82e93:131e810ab25:-7f1e" source="-16b82e93:131e810ab25:-7dcc" target="-16b82e93:131e810ab25:-7ec9"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-16b82e93:131e810ab25:-7dcf" parent="-16b82e93:131e810ab25:-7f1e" source="-16b82e93:131e810ab25:-7f12" target="-16b82e93:131e810ab25:-7dcb"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="184.0" y="152.0"/><mxPoint as="targetPoint" x="250.0" y="220.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="250.0" y="150.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="-16b82e93:131e810ab25:-7dc7" ordering="21" parent="-16b82e93:131e810ab25:-7f1e" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="67.0" y="217.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-16b82e93:131e810ab25:-7dc5" ordering="1" parent="-16b82e93:131e810ab25:-7dc7" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-16b82e93:131e810ab25:-7dc4" ordering="2" parent="-16b82e93:131e810ab25:-7dc7" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-16b82e93:131e810ab25:-7dc6" ordering="1" parent="-16b82e93:131e810ab25:-7dc7" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="-16b82e93:131e810ab25:-7dbd" interfaceFunctionName="Resistor" ordering="22" parent="-16b82e93:131e810ab25:-7f1e" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="4"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="250.0" y="40.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-16b82e93:131e810ab25:-7dbb" ordering="1" parent="-16b82e93:131e810ab25:-7dbd" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-16b82e93:131e810ab25:-7dbc" ordering="1" parent="-16b82e93:131e810ab25:-7dbd" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><SplitBlock id="-16b82e93:131e810ab25:-7db6" ordering="23" parent="-16b82e93:131e810ab25:-7f1e" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="437.0" y="217.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-16b82e93:131e810ab25:-7db4" ordering="1" parent="-16b82e93:131e810ab25:-7db6" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-16b82e93:131e810ab25:-7db3" ordering="2" parent="-16b82e93:131e810ab25:-7db6" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-16b82e93:131e810ab25:-7db5" ordering="1" parent="-16b82e93:131e810ab25:-7db6" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-16b82e93:131e810ab25:-7db2" parent="-16b82e93:131e810ab25:-7f1e" source="-16b82e93:131e810ab25:-7e6f" target="-16b82e93:131e810ab25:-7db5"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-16b82e93:131e810ab25:-7db7" parent="-16b82e93:131e810ab25:-7f1e" source="-16b82e93:131e810ab25:-7dbc" target="-16b82e93:131e810ab25:-7db3"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="294.0" y="60.0"/><mxPoint as="targetPoint" x="440.0" y="220.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="440.0" y="60.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="-16b82e93:131e810ab25:-7dae" ordering="24" parent="-16b82e93:131e810ab25:-7f1e" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="66.5" y="156.5"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-16b82e93:131e810ab25:-7dac" ordering="1" parent="-16b82e93:131e810ab25:-7dae" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-16b82e93:131e810ab25:-7dab" ordering="2" parent="-16b82e93:131e810ab25:-7dae" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-16b82e93:131e810ab25:-7dad" ordering="1" parent="-16b82e93:131e810ab25:-7dae" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-16b82e93:131e810ab25:-7daa" parent="-16b82e93:131e810ab25:-7f1e" source="-16b82e93:131e810ab25:-7dc4" target="-16b82e93:131e810ab25:-7dad"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="70.0" y="160.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-16b82e93:131e810ab25:-7da9" parent="-16b82e93:131e810ab25:-7f1e" source="-16b82e93:131e810ab25:-7dac" target="-16b82e93:131e810ab25:-7f10"><mxGeometry as="geometry" height="80.0" width="80.0" y="10.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="70.0" y="160.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-16b82e93:131e810ab25:-7daf" parent="-16b82e93:131e810ab25:-7f1e" source="-16b82e93:131e810ab25:-7dab" target="-16b82e93:131e810ab25:-7dbb"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="246.0" y="60.0"/><mxPoint as="targetPoint" x="70.0" y="150.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="70.0" y="60.0"/></Array></mxGeometry></ImplicitLink><ExplicitLink id="-16b82e93:131e810ab25:-7da6" parent="-16b82e93:131e810ab25:-7f1e" source="-16b82e93:131e810ab25:-7da4" target="-16b82e93:131e810ab25:-7f11"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="126.0" y="80.0"/><mxPoint as="targetPoint" x="140.0" y="140.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="110.0" y="80.0"/><mxPoint x="110.0" y="140.0"/></Array></mxGeometry></ExplicitLink><SplitBlock id="-16b82e93:131e810ab25:-7da0" ordering="25" parent="-16b82e93:131e810ab25:-7f1e" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="247.0" y="317.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-16b82e93:131e810ab25:-7d9e" ordering="1" parent="-16b82e93:131e810ab25:-7da0" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-16b82e93:131e810ab25:-7d9d" ordering="2" parent="-16b82e93:131e810ab25:-7da0" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-16b82e93:131e810ab25:-7d9f" ordering="1" parent="-16b82e93:131e810ab25:-7da0" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-16b82e93:131e810ab25:-7d9c" parent="-16b82e93:131e810ab25:-7f1e" source="-16b82e93:131e810ab25:-7eb0" target="-16b82e93:131e810ab25:-7d9f"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-16b82e93:131e810ab25:-7da1" parent="-16b82e93:131e810ab25:-7f1e" source="-16b82e93:131e810ab25:-7edb" target="-16b82e93:131e810ab25:-7d9d"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="184.0" y="320.0"/><mxPoint as="targetPoint" x="250.0" y="320.0"/></mxGeometry></ImplicitLink><SplitBlock id="-16b82e93:131e810ab25:-7d99" ordering="26" parent="-16b82e93:131e810ab25:-7f1e" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="67.0" y="217.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-16b82e93:131e810ab25:-7d97" ordering="1" parent="-16b82e93:131e810ab25:-7d99" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-16b82e93:131e810ab25:-7d96" ordering="2" parent="-16b82e93:131e810ab25:-7d99" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-16b82e93:131e810ab25:-7d98" ordering="1" parent="-16b82e93:131e810ab25:-7d99" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-16b82e93:131e810ab25:-7d95" parent="-16b82e93:131e810ab25:-7f1e" source="-16b82e93:131e810ab25:-7dc5" target="-16b82e93:131e810ab25:-7d98"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-16b82e93:131e810ab25:-7d9a" parent="-16b82e93:131e810ab25:-7f1e" source="-16b82e93:131e810ab25:-7d96" target="-16b82e93:131e810ab25:-7ed9"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="136.0" y="330.0"/><mxPoint as="targetPoint" x="70.0" y="220.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="70.0" y="330.0"/></Array></mxGeometry></ImplicitLink><ExplicitLink id="-16b82e93:131e810ab25:-7d91" parent="-16b82e93:131e810ab25:-7f1e" source="-16b82e93:131e810ab25:-7d8f" target="-16b82e93:131e810ab25:-7eda"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="136.0" y="260.0"/><mxPoint as="targetPoint" x="140.0" y="310.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="110.0" y="260.0"/><mxPoint x="110.0" y="310.0"/></Array></mxGeometry></ExplicitLink><VoltageSensorBlock angle="90" dependsOnU="1" id="-16b82e93:131e810ab25:-7d84" interfaceFunctionName="VoltageSensor" ordering="27" parent="-16b82e93:131e810ab25:-7f1e" simulationFunctionName="VoltageSensor" simulationFunctionType="DEFAULT" style="VoltageSensor;rotation=90;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="VoltageSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="v"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="20.0" y="250.0"/></VoltageSensorBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-16b82e93:131e810ab25:-7d82" ordering="2" parent="-16b82e93:131e810ab25:-7d84" style="ExplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;rotation=90;spacingBottom=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="26.0" y="40.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-16b82e93:131e810ab25:-7d81" ordering="1" parent="-16b82e93:131e810ab25:-7d84" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=90;spacingTop=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-16b82e93:131e810ab25:-7d83" ordering="1" parent="-16b82e93:131e810ab25:-7d84" style="ImplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;rotation=90;spacingBottom=5;flip=false;mirror=false"><Orientation as="orientation" value="SOUTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="6.0" y="40.0"/></ImplicitOutputPort><SplitBlock id="-16b82e93:131e810ab25:-7d7b" ordering="28" parent="-16b82e93:131e810ab25:-7f1e" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="67.0" y="217.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-16b82e93:131e810ab25:-7d79" ordering="1" parent="-16b82e93:131e810ab25:-7d7b" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-16b82e93:131e810ab25:-7d78" ordering="2" parent="-16b82e93:131e810ab25:-7d7b" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-16b82e93:131e810ab25:-7d7a" ordering="1" parent="-16b82e93:131e810ab25:-7d7b" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-16b82e93:131e810ab25:-7d77" parent="-16b82e93:131e810ab25:-7f1e" source="-16b82e93:131e810ab25:-7d97" target="-16b82e93:131e810ab25:-7d7a"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-16b82e93:131e810ab25:-7d76" parent="-16b82e93:131e810ab25:-7f1e" source="-16b82e93:131e810ab25:-7d79" target="-16b82e93:131e810ab25:-7e6c"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="70.0" y="220.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-16b82e93:131e810ab25:-7d7c" parent="-16b82e93:131e810ab25:-7f1e" source="-16b82e93:131e810ab25:-7d78" target="-16b82e93:131e810ab25:-7d81"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="40.0" y="246.0"/><mxPoint as="targetPoint" x="70.0" y="220.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="40.0" y="220.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="-16b82e93:131e810ab25:-7d74" ordering="29" parent="-16b82e93:131e810ab25:-7f1e" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="247.0" y="347.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-16b82e93:131e810ab25:-7d72" ordering="1" parent="-16b82e93:131e810ab25:-7d74" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-16b82e93:131e810ab25:-7d71" ordering="2" parent="-16b82e93:131e810ab25:-7d74" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-16b82e93:131e810ab25:-7d73" ordering="1" parent="-16b82e93:131e810ab25:-7d74" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-16b82e93:131e810ab25:-7d6f" parent="-16b82e93:131e810ab25:-7f1e" source="-16b82e93:131e810ab25:-7d72" target="-16b82e93:131e810ab25:-7f09"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-16b82e93:131e810ab25:-7d75" parent="-16b82e93:131e810ab25:-7f1e" source="-16b82e93:131e810ab25:-7d83" target="-16b82e93:131e810ab25:-7d71"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="30.0" y="294.0"/><mxPoint as="targetPoint" x="250.0" y="350.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="30.0" y="350.0"/></Array></mxGeometry></ImplicitLink><ExplicitLink id="-16b82e93:131e810ab25:-7d6e" parent="-16b82e93:131e810ab25:-7f1e" source="-16b82e93:131e810ab25:-7d82" target="-16b82e93:131e810ab25:-7d39"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="50.0" y="294.0"/><mxPoint as="targetPoint" x="70.0" y="430.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="50.0" y="430.0"/></Array></mxGeometry></ExplicitLink><SplitBlock id="-16b82e93:131e810ab25:-7d66" ordering="30" parent="-16b82e93:131e810ab25:-7f1e" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="437.0" y="217.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-16b82e93:131e810ab25:-7d64" ordering="1" parent="-16b82e93:131e810ab25:-7d66" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-16b82e93:131e810ab25:-7d63" ordering="2" parent="-16b82e93:131e810ab25:-7d66" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-16b82e93:131e810ab25:-7d65" ordering="1" parent="-16b82e93:131e810ab25:-7d66" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-16b82e93:131e810ab25:-7d62" parent="-16b82e93:131e810ab25:-7f1e" source="-16b82e93:131e810ab25:-7db4" target="-16b82e93:131e810ab25:-7d65"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-16b82e93:131e810ab25:-7d67" parent="-16b82e93:131e810ab25:-7f1e" source="-16b82e93:131e810ab25:-7e73" target="-16b82e93:131e810ab25:-7d63"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="364.0" y="320.0"/><mxPoint as="targetPoint" x="440.0" y="220.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="440.0" y="320.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="-16b82e93:131e810ab25:-7d59" ordering="31" parent="-16b82e93:131e810ab25:-7f1e" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="437.0" y="217.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-16b82e93:131e810ab25:-7d57" ordering="1" parent="-16b82e93:131e810ab25:-7d59" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-16b82e93:131e810ab25:-7d56" ordering="2" parent="-16b82e93:131e810ab25:-7d59" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-16b82e93:131e810ab25:-7d58" ordering="1" parent="-16b82e93:131e810ab25:-7d59" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-16b82e93:131e810ab25:-7d55" parent="-16b82e93:131e810ab25:-7f1e" source="-16b82e93:131e810ab25:-7d64" target="-16b82e93:131e810ab25:-7d58"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-16b82e93:131e810ab25:-7d54" parent="-16b82e93:131e810ab25:-7f1e" source="-16b82e93:131e810ab25:-7d57" target="-16b82e93:131e810ab25:-7e4b"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="440.0" y="220.0"/><mxPoint x="440.0" y="220.0"/><mxPoint x="440.0" y="220.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-16b82e93:131e810ab25:-7d5a" parent="-16b82e93:131e810ab25:-7f1e" source="-16b82e93:131e810ab25:-7ed7" target="-16b82e93:131e810ab25:-7d56"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="480.0" y="286.0"/><mxPoint as="targetPoint" x="440.0" y="220.0"/></mxGeometry></ImplicitLink><ExplicitLink id="-16b82e93:131e810ab25:-7d4a" parent="-16b82e93:131e810ab25:-7f1e" source="-16b82e93:131e810ab25:-7dd5" target="-16b82e93:131e810ab25:-7ed6"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="470.0" y="334.0"/><mxPoint as="targetPoint" x="470.0" y="400.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="470.0" y="400.0"/><mxPoint x="470.0" y="400.0"/></Array></mxGeometry></ExplicitLink><SplitBlock id="-16b82e93:131e810ab25:-7d45" ordering="32" parent="-16b82e93:131e810ab25:-7f1e" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="247.0" y="317.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-16b82e93:131e810ab25:-7d43" ordering="1" parent="-16b82e93:131e810ab25:-7d45" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-16b82e93:131e810ab25:-7d42" ordering="2" parent="-16b82e93:131e810ab25:-7d45" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-16b82e93:131e810ab25:-7d44" ordering="1" parent="-16b82e93:131e810ab25:-7d45" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-16b82e93:131e810ab25:-7d41" parent="-16b82e93:131e810ab25:-7f1e" source="-16b82e93:131e810ab25:-7d9e" target="-16b82e93:131e810ab25:-7d44"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-16b82e93:131e810ab25:-7d40" parent="-16b82e93:131e810ab25:-7f1e" source="-16b82e93:131e810ab25:-7d43" target="-16b82e93:131e810ab25:-7d73"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="250.0" y="320.0"/><mxPoint x="250.0" y="320.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-16b82e93:131e810ab25:-7d46" parent="-16b82e93:131e810ab25:-7f1e" source="-16b82e93:131e810ab25:-7d42" target="-16b82e93:131e810ab25:-7ed5"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="490.0" y="334.0"/><mxPoint as="targetPoint" x="250.0" y="320.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="270.0" y="370.0"/><mxPoint x="490.0" y="370.0"/></Array></mxGeometry></ImplicitLink><BasicBlock dependsOnT="1" id="-16b82e93:131e810ab25:-7f13" interfaceFunctionName="CCS" ordering="33" parent="-16b82e93:131e810ab25:-7f1e" simulationFunctionName="CCS" simulationFunctionType="DEFAULT" style="CCS;rotation=0;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CCS"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="Iin"/><data column="0" line="1" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="140.0" y="132.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-16b82e93:131e810ab25:-7f11" ordering="1" parent="-16b82e93:131e810ab25:-7f13" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ExplicitInputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-16b82e93:131e810ab25:-7f10" ordering="2" parent="-16b82e93:131e810ab25:-7f13" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="26.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-16b82e93:131e810ab25:-7f12" ordering="1" parent="-16b82e93:131e810ab25:-7f13" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><TextBlock id="-7ca3f8c0:131f25d7805:-7ebf" parent="-16b82e93:131e810ab25:-7f1e" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="Nodal Analysis<br>Example 4.2"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="Nodal Analysis<br>Example 4.2"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="Nodal Analysis<br>Example 4.2"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="60.0" y="10.0"/></TextBlock></root></mxGraphModel><mxCell as="defaultParent" id="-16b82e93:131e810ab25:-7f1e" parent="-16b82e93:131e810ab25:-7f1d"/></XcosDiagram>
\ No newline at end of file diff --git a/Working_Examples/215/CH4/EX4.5/Figure4_5.jpg b/Working_Examples/215/CH4/EX4.5/Figure4_5.jpg Binary files differnew file mode 100755 index 0000000..a40618f --- /dev/null +++ b/Working_Examples/215/CH4/EX4.5/Figure4_5.jpg diff --git a/Working_Examples/215/CH4/EX4.5/Figure4_5_xcos.jpg b/Working_Examples/215/CH4/EX4.5/Figure4_5_xcos.jpg Binary files differnew file mode 100755 index 0000000..46baa33 --- /dev/null +++ b/Working_Examples/215/CH4/EX4.5/Figure4_5_xcos.jpg diff --git a/Working_Examples/215/CH4/EX4.5/ex4_5.xcos b/Working_Examples/215/CH4/EX4.5/ex4_5.xcos new file mode 100755 index 0000000..16263d2 --- /dev/null +++ b/Working_Examples/215/CH4/EX4.5/ex4_5.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" finalIntegrationTime="30.0" title="ex4_5"><!--Xcos - 1.0 - scilab-5.5.2 - 20160406 2040--><mxGraphModel as="model"><root><mxCell id="-5f02711f:131ec3f74c9:-7fff"/><mxCell id="-5f02711f:131ec3f74c9:-8000" parent="-5f02711f:131ec3f74c9:-7fff"/><BasicBlock dependsOnT="1" id="-5f02711f:131ec3f74c9:-7fd2" interfaceFunctionName="CCS" ordering="1" parent="-5f02711f:131ec3f74c9:-8000" simulationFunctionName="CCS" simulationFunctionType="DEFAULT" style="CCS;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CCS"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="Iin"/><data column="0" line="1" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="210.0" y="132.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-7fd0" ordering="1" parent="-5f02711f:131ec3f74c9:-7fd2" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ExplicitInputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-7fcf" ordering="2" parent="-5f02711f:131ec3f74c9:-7fd2" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="26.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-7fd1" ordering="1" parent="-5f02711f:131ec3f74c9:-7fd2" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><GroundBlock angle="90" dependsOnU="1" id="-5f02711f:131ec3f74c9:-7fc9" interfaceFunctionName="Ground" ordering="2" parent="-5f02711f:131ec3f74c9:-8000" simulationFunctionName="Ground" simulationFunctionType="DEFAULT" style="Ground;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Ground"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="380.0" y="380.0"/></GroundBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-7fc8" ordering="1" parent="-5f02711f:131ec3f74c9:-7fc9" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=90;spacingTop=5;flip=false;mirror=false"><Orientation as="orientation" value="NORTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="-5f02711f:131ec3f74c9:-7fc0" interfaceFunctionName="Resistor" ordering="3" parent="-5f02711f:131ec3f74c9:-8000" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="3"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="210.0" y="192.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-7efb" ordering="1" parent="-5f02711f:131ec3f74c9:-7fc0" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-7efa" ordering="1" parent="-5f02711f:131ec3f74c9:-7fc0" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><BasicBlock dependsOnU="1" id="-5f02711f:131ec3f74c9:-7fba" interfaceFunctionName="Resistor" ordering="4" parent="-5f02711f:131ec3f74c9:-8000" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="4"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="290.0" y="40.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-7ef7" ordering="1" parent="-5f02711f:131ec3f74c9:-7fba" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-7ef6" ordering="1" parent="-5f02711f:131ec3f74c9:-7fba" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><BasicBlock angle="90" dependsOnU="1" id="-5f02711f:131ec3f74c9:-7fb7" interfaceFunctionName="Resistor" ordering="5" parent="-5f02711f:131ec3f74c9:-8000" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="5"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="460.0" y="270.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-7f03" ordering="1" parent="-5f02711f:131ec3f74c9:-7fb7" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;spacingTop=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-7f02" ordering="1" parent="-5f02711f:131ec3f74c9:-7fb7" style="ImplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;spacingBottom=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><BasicBlock angle="90" dependsOnU="1" id="-5f02711f:131ec3f74c9:-7fb4" interfaceFunctionName="Resistor" ordering="6" parent="-5f02711f:131ec3f74c9:-8000" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="300.0" y="270.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-7eff" ordering="1" parent="-5f02711f:131ec3f74c9:-7fb4" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;spacingTop=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-7efe" ordering="1" parent="-5f02711f:131ec3f74c9:-7fb4" style="ImplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;spacingBottom=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><BasicBlock dependsOnT="1" id="-5f02711f:131ec3f74c9:-7fa4" interfaceFunctionName="CCS" ordering="7" parent="-5f02711f:131ec3f74c9:-8000" simulationFunctionName="CCS" simulationFunctionType="DEFAULT" style="CCS;rotation=0;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CCS"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="Iin"/><data column="0" line="1" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="210.0" y="320.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-7fa2" ordering="1" parent="-5f02711f:131ec3f74c9:-7fa4" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ExplicitInputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-7fa1" ordering="2" parent="-5f02711f:131ec3f74c9:-7fa4" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="26.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-7fa3" ordering="1" parent="-5f02711f:131ec3f74c9:-7fa4" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><BasicBlock angle="270" dependsOnT="1" id="-5f02711f:131ec3f74c9:-7fa0" interfaceFunctionName="CCS" ordering="8" parent="-5f02711f:131ec3f74c9:-8000" simulationFunctionName="CCS" simulationFunctionType="DEFAULT" style="CCS;rotation=270;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CCS"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="Iin"/><data column="0" line="1" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="540.0" y="270.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-7f9e" ordering="1" parent="-5f02711f:131ec3f74c9:-7fa0" style="ExplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=top;rotation=270;spacingBottom=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="6.0" y="40.0"/></ExplicitInputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-7f9d" ordering="2" parent="-5f02711f:131ec3f74c9:-7fa0" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=top;rotation=270;spacingBottom=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="26.0" y="40.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-7f9f" ordering="1" parent="-5f02711f:131ec3f74c9:-7fa0" style="ImplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=270;spacingTop=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitOutputPort><SplitBlock id="-5f02711f:131ec3f74c9:-7f8e" ordering="9" parent="-5f02711f:131ec3f74c9:-8000" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="556.5" y="206.5"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5f02711f:131ec3f74c9:-7f8c" ordering="1" parent="-5f02711f:131ec3f74c9:-7f8e" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5f02711f:131ec3f74c9:-7f8b" ordering="2" parent="-5f02711f:131ec3f74c9:-7f8e" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-5f02711f:131ec3f74c9:-7f8d" ordering="1" parent="-5f02711f:131ec3f74c9:-7f8e" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-5f02711f:131ec3f74c9:-7f8a" parent="-5f02711f:131ec3f74c9:-8000" source="-5f02711f:131ec3f74c9:-7f9f" target="-5f02711f:131ec3f74c9:-7f8d"><mxGeometry as="geometry" height="80.0" width="80.0" x="110.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-5f02711f:131ec3f74c9:-7f89" parent="-5f02711f:131ec3f74c9:-8000" source="-5f02711f:131ec3f74c9:-7ef6" target="-5f02711f:131ec3f74c9:-7f8c"><mxGeometry as="geometry" height="80.0" width="80.0" x="110.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="560.0" y="60.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="-5f02711f:131ec3f74c9:-7f87" ordering="10" parent="-5f02711f:131ec3f74c9:-8000" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="476.5" y="206.5"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5f02711f:131ec3f74c9:-7f85" ordering="1" parent="-5f02711f:131ec3f74c9:-7f87" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5f02711f:131ec3f74c9:-7f84" ordering="2" parent="-5f02711f:131ec3f74c9:-7f87" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-5f02711f:131ec3f74c9:-7f86" ordering="1" parent="-5f02711f:131ec3f74c9:-7f87" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-5f02711f:131ec3f74c9:-7f83" parent="-5f02711f:131ec3f74c9:-8000" source="-5f02711f:131ec3f74c9:-7f8b" target="-5f02711f:131ec3f74c9:-7f86"><mxGeometry as="geometry" height="80.0" width="80.0" x="110.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-5f02711f:131ec3f74c9:-7f82" parent="-5f02711f:131ec3f74c9:-8000" source="-5f02711f:131ec3f74c9:-7f85" target="-5f02711f:131ec3f74c9:-7ef3"><mxGeometry as="geometry" height="80.0" width="80.0" x="110.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-5f02711f:131ec3f74c9:-7f88" parent="-5f02711f:131ec3f74c9:-8000" source="-5f02711f:131ec3f74c9:-7f84" target="-5f02711f:131ec3f74c9:-7f03"><mxGeometry as="geometry" x="110.0"><mxPoint as="sourcePoint" x="480.0" y="266.0"/><mxPoint as="targetPoint" x="480.0" y="210.0"/></mxGeometry></ImplicitLink><SplitBlock id="-5f02711f:131ec3f74c9:-7f80" ordering="11" parent="-5f02711f:131ec3f74c9:-8000" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="476.5" y="336.5"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5f02711f:131ec3f74c9:-7f7e" ordering="1" parent="-5f02711f:131ec3f74c9:-7f80" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5f02711f:131ec3f74c9:-7f7d" ordering="2" parent="-5f02711f:131ec3f74c9:-7f80" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-5f02711f:131ec3f74c9:-7f7f" ordering="1" parent="-5f02711f:131ec3f74c9:-7f80" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-5f02711f:131ec3f74c9:-7f7b" parent="-5f02711f:131ec3f74c9:-8000" source="-5f02711f:131ec3f74c9:-7f7e" target="-5f02711f:131ec3f74c9:-7f9d"><mxGeometry as="geometry" height="80.0" width="80.0" x="110.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="570.0" y="340.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-5f02711f:131ec3f74c9:-7f81" parent="-5f02711f:131ec3f74c9:-8000" source="-5f02711f:131ec3f74c9:-7f02" target="-5f02711f:131ec3f74c9:-7f7d"><mxGeometry as="geometry" x="110.0"><mxPoint as="sourcePoint" x="480.0" y="314.0"/><mxPoint as="targetPoint" x="470.0" y="340.0"/></mxGeometry></ImplicitLink><SplitBlock id="-5f02711f:131ec3f74c9:-7f76" ordering="12" parent="-5f02711f:131ec3f74c9:-8000" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="316.5" y="206.5"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5f02711f:131ec3f74c9:-7f74" ordering="1" parent="-5f02711f:131ec3f74c9:-7f76" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5f02711f:131ec3f74c9:-7f73" ordering="2" parent="-5f02711f:131ec3f74c9:-7f76" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-5f02711f:131ec3f74c9:-7f75" ordering="1" parent="-5f02711f:131ec3f74c9:-7f76" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-5f02711f:131ec3f74c9:-7f72" parent="-5f02711f:131ec3f74c9:-8000" source="-5f02711f:131ec3f74c9:-7ef2" target="-5f02711f:131ec3f74c9:-7f75"><mxGeometry as="geometry" height="80.0" width="80.0" x="110.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-5f02711f:131ec3f74c9:-7f77" parent="-5f02711f:131ec3f74c9:-8000" source="-5f02711f:131ec3f74c9:-7f73" target="-5f02711f:131ec3f74c9:-7eff"><mxGeometry as="geometry" x="110.0"><mxPoint as="sourcePoint" x="320.0" y="266.0"/><mxPoint as="targetPoint" x="320.0" y="210.0"/></mxGeometry></ImplicitLink><SplitBlock id="-5f02711f:131ec3f74c9:-7f6f" ordering="13" parent="-5f02711f:131ec3f74c9:-8000" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="316.5" y="336.5"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5f02711f:131ec3f74c9:-7f6d" ordering="1" parent="-5f02711f:131ec3f74c9:-7f6f" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5f02711f:131ec3f74c9:-7f6c" ordering="2" parent="-5f02711f:131ec3f74c9:-7f6f" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-5f02711f:131ec3f74c9:-7f6e" ordering="1" parent="-5f02711f:131ec3f74c9:-7f6f" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-5f02711f:131ec3f74c9:-7f6b" parent="-5f02711f:131ec3f74c9:-8000" source="-5f02711f:131ec3f74c9:-7fa3" target="-5f02711f:131ec3f74c9:-7f6e"><mxGeometry as="geometry" height="80.0" width="80.0" x="110.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-5f02711f:131ec3f74c9:-7f70" parent="-5f02711f:131ec3f74c9:-8000" source="-5f02711f:131ec3f74c9:-7efe" target="-5f02711f:131ec3f74c9:-7f6c"><mxGeometry as="geometry" x="110.0"><mxPoint as="sourcePoint" x="320.0" y="314.0"/><mxPoint as="targetPoint" x="320.0" y="340.0"/></mxGeometry></ImplicitLink><SplitBlock id="-5f02711f:131ec3f74c9:-7f68" ordering="14" parent="-5f02711f:131ec3f74c9:-8000" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="396.5" y="336.5"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5f02711f:131ec3f74c9:-7f66" ordering="1" parent="-5f02711f:131ec3f74c9:-7f68" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5f02711f:131ec3f74c9:-7f65" ordering="2" parent="-5f02711f:131ec3f74c9:-7f68" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-5f02711f:131ec3f74c9:-7f67" ordering="1" parent="-5f02711f:131ec3f74c9:-7f68" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-5f02711f:131ec3f74c9:-7f64" parent="-5f02711f:131ec3f74c9:-8000" source="-5f02711f:131ec3f74c9:-7f6d" target="-5f02711f:131ec3f74c9:-7f67"><mxGeometry as="geometry" height="80.0" width="80.0" x="110.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-5f02711f:131ec3f74c9:-7f63" parent="-5f02711f:131ec3f74c9:-8000" source="-5f02711f:131ec3f74c9:-7f66" target="-5f02711f:131ec3f74c9:-7f7f"><mxGeometry as="geometry" height="80.0" width="80.0" x="110.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-5f02711f:131ec3f74c9:-7f69" parent="-5f02711f:131ec3f74c9:-8000" source="-5f02711f:131ec3f74c9:-7f65" target="-5f02711f:131ec3f74c9:-7fc8"><mxGeometry as="geometry" x="110.0"><mxPoint as="sourcePoint" x="400.0" y="376.0"/><mxPoint as="targetPoint" x="400.0" y="340.0"/></mxGeometry></ImplicitLink><SplitBlock id="-5f02711f:131ec3f74c9:-7f61" ordering="15" parent="-5f02711f:131ec3f74c9:-8000" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="136.5" y="206.5"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5f02711f:131ec3f74c9:-7f5f" ordering="1" parent="-5f02711f:131ec3f74c9:-7f61" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5f02711f:131ec3f74c9:-7f5e" ordering="2" parent="-5f02711f:131ec3f74c9:-7f61" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-5f02711f:131ec3f74c9:-7f60" ordering="1" parent="-5f02711f:131ec3f74c9:-7f61" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-5f02711f:131ec3f74c9:-7f5d" parent="-5f02711f:131ec3f74c9:-8000" source="-5f02711f:131ec3f74c9:-7fa1" target="-5f02711f:131ec3f74c9:-7f60"><mxGeometry as="geometry" height="80.0" width="80.0" x="110.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="140.0" y="350.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="-5f02711f:131ec3f74c9:-7f5a" ordering="16" parent="-5f02711f:131ec3f74c9:-8000" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="316.5" y="206.5"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5f02711f:131ec3f74c9:-7f58" ordering="1" parent="-5f02711f:131ec3f74c9:-7f5a" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5f02711f:131ec3f74c9:-7f57" ordering="2" parent="-5f02711f:131ec3f74c9:-7f5a" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-5f02711f:131ec3f74c9:-7f59" ordering="1" parent="-5f02711f:131ec3f74c9:-7f5a" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-5f02711f:131ec3f74c9:-7f56" parent="-5f02711f:131ec3f74c9:-8000" source="-5f02711f:131ec3f74c9:-7efa" target="-5f02711f:131ec3f74c9:-7f59"><mxGeometry as="geometry" height="80.0" width="80.0" x="110.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-5f02711f:131ec3f74c9:-7f55" parent="-5f02711f:131ec3f74c9:-8000" source="-5f02711f:131ec3f74c9:-7f74" target="-5f02711f:131ec3f74c9:-7f58"><mxGeometry as="geometry" height="80.0" width="80.0" x="110.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-5f02711f:131ec3f74c9:-7f5b" parent="-5f02711f:131ec3f74c9:-8000" source="-5f02711f:131ec3f74c9:-7fd1" target="-5f02711f:131ec3f74c9:-7f57"><mxGeometry as="geometry" x="110.0"><mxPoint as="sourcePoint" x="254.0" y="152.0"/><mxPoint as="targetPoint" x="320.0" y="210.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="320.0" y="150.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="-5f02711f:131ec3f74c9:-7f53" ordering="17" parent="-5f02711f:131ec3f74c9:-8000" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="136.5" y="156.5"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5f02711f:131ec3f74c9:-7f51" ordering="1" parent="-5f02711f:131ec3f74c9:-7f53" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5f02711f:131ec3f74c9:-7f50" ordering="2" parent="-5f02711f:131ec3f74c9:-7f53" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-5f02711f:131ec3f74c9:-7f52" ordering="1" parent="-5f02711f:131ec3f74c9:-7f53" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-5f02711f:131ec3f74c9:-7f4f" parent="-5f02711f:131ec3f74c9:-8000" source="-5f02711f:131ec3f74c9:-7f5f" target="-5f02711f:131ec3f74c9:-7f52"><mxGeometry as="geometry" height="80.0" width="80.0" x="110.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-5f02711f:131ec3f74c9:-7f4e" parent="-5f02711f:131ec3f74c9:-8000" source="-5f02711f:131ec3f74c9:-7f51" target="-5f02711f:131ec3f74c9:-7ef7"><mxGeometry as="geometry" height="80.0" width="80.0" x="110.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="140.0" y="60.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-5f02711f:131ec3f74c9:-7f54" parent="-5f02711f:131ec3f74c9:-8000" source="-5f02711f:131ec3f74c9:-7f50" target="-5f02711f:131ec3f74c9:-7fcf"><mxGeometry as="geometry" x="110.0"><mxPoint as="sourcePoint" x="206.0" y="162.0"/><mxPoint as="targetPoint" x="140.0" y="160.0"/></mxGeometry></ImplicitLink><BasicBlock blockType="d" id="-5f02711f:131ec3f74c9:-7f48" interfaceFunctionName="CONST_m" ordering="18" parent="-5f02711f:131ec3f74c9:-8000" simulationFunctionName="cstblk4" simulationFunctionType="C_OR_FORTRAN" style="CONST_m;flip=false;mirror=false" value="25"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="25"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="25.0"/></ScilabDouble></Array><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="50.0" width="40.0" x="500.0" y="392.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-7f06" ordering="1" parent="-5f02711f:131ec3f74c9:-7f48" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><BasicBlock blockType="d" id="-5f02711f:131ec3f74c9:-7f44" interfaceFunctionName="CONST_m" ordering="19" parent="-5f02711f:131ec3f74c9:-8000" simulationFunctionName="cstblk4" simulationFunctionType="C_OR_FORTRAN" style="CONST_m;flip=false;mirror=false" value="3"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="3"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble></Array><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="50.0" width="40.0" x="130.0" y="120.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-7f09" ordering="1" parent="-5f02711f:131ec3f74c9:-7f44" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><BasicBlock blockType="d" id="-5f02711f:131ec3f74c9:-7f42" interfaceFunctionName="CONST_m" ordering="20" parent="-5f02711f:131ec3f74c9:-8000" simulationFunctionName="cstblk4" simulationFunctionType="C_OR_FORTRAN" style="CONST_m;flip=false;mirror=false" value="8"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="8"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="50.0" width="40.0" x="120.0" y="310.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-7f0c" ordering="1" parent="-5f02711f:131ec3f74c9:-7f42" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ExplicitLink id="-5f02711f:131ec3f74c9:-7f3e" parent="-5f02711f:131ec3f74c9:-8000" source="-5f02711f:131ec3f74c9:-7f0c" target="-5f02711f:131ec3f74c9:-7fa2"><mxGeometry as="geometry" x="110.0"><mxPoint as="sourcePoint" x="164.0" y="330.0"/><mxPoint as="targetPoint" x="210.0" y="330.0"/></mxGeometry></ExplicitLink><ExplicitLink id="-5f02711f:131ec3f74c9:-7f3b" parent="-5f02711f:131ec3f74c9:-8000" source="-5f02711f:131ec3f74c9:-7f09" target="-5f02711f:131ec3f74c9:-7fd0"><mxGeometry as="geometry" x="110.0"><mxPoint as="sourcePoint" x="174.0" y="140.0"/><mxPoint as="targetPoint" x="210.0" y="140.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="210.0" y="140.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="-5f02711f:131ec3f74c9:-7f3a" parent="-5f02711f:131ec3f74c9:-8000" source="-5f02711f:131ec3f74c9:-7f06" target="-5f02711f:131ec3f74c9:-7f9e"><mxGeometry as="geometry" x="110.0"><mxPoint as="sourcePoint" x="550.0" y="314.0"/><mxPoint as="targetPoint" x="550.0" y="410.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="550.0" y="410.0"/></Array></mxGeometry></ExplicitLink><BasicBlock blockType="h" id="-5f02711f:131ec3f74c9:-7f34" interfaceFunctionName="CLOCK_c" ordering="21" parent="-5f02711f:131ec3f74c9:-8000" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="119.0"/><data column="1" line="0" realPart="-150.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-7ca3f8c0:131f25d7805:-7e45"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-7ca3f8c0:131f25d7805:-7e45"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.1"/><data column="0" line="1" value="0.1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.1"/><data column="0" line="1" realPart="0.1"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.1"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-7ca3f8c0:131f25d7805:-7e41"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-7ca3f8c0:131f25d7805:-7e41"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="124.71066000000002"/><data column="1" line="0" realPart="-164.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="8.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="4.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-7ca3f8c0:131f25d7805:-7e3c"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-7ca3f8c0:131f25d7805:-7e3c"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="106.0"/><data column="0" line="2" realPart="135.37732666666668"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="4.0"/><data column="0" line="1" realPart="-204.0"/><data column="0" line="2" realPart="-168.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="136.71066000000002"/><data column="0" line="1" realPart="149.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-152.0"/><data column="0" line="1" realPart="-126.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="138.04399333333336"/><data column="0" line="1" realPart="151.70999999999998"/><data column="0" line="2" realPart="111.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-168.0"/><data column="0" line="1" realPart="-58.0"/><data column="0" line="2" realPart="-58.0"/><data column="0" line="3" realPart="-44.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="70.0" y="320.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="-5f02711f:131ec3f74c9:-7f33" ordering="1" parent="-5f02711f:131ec3f74c9:-7f34" style="CommandPort;align=center;labelPosition=center;verticalLabelPosition=top;rotation=90;spacingBottom=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><BasicBlock dependsOnU="1" id="-5f02711f:131ec3f74c9:-7f2b" interfaceFunctionName="CSCOPE" ordering="22" parent="-5f02711f:131ec3f74c9:-8000" simulationFunctionName="cscope" simulationFunctionType="C_OR_FORTRAN" style="CSCOPE;flip=false;mirror=false"><ScilabString as="exprs" height="10" width="1"><data column="0" line="0" value="1 3 5 7 9 11 13 15"/><data column="0" line="1" value="-1"/><data column="0" line="2" value="[]"/><data column="0" line="3" value="[600;400]"/><data column="0" line="4" value="1"/><data column="0" line="5" value="1.1"/><data column="0" line="6" value="30"/><data column="0" line="7" value="20"/><data column="0" line="8" value="0"/><data column="0" line="9" value=""/></ScilabString><ScilabDouble as="realParameters" height="4" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="1.1"/><data column="0" line="3" realPart="30.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="15" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="1.0"/><data column="0" line="4" realPart="3.0"/><data column="0" line="5" realPart="5.0"/><data column="0" line="6" realPart="7.0"/><data column="0" line="7" realPart="9.0"/><data column="0" line="8" realPart="11.0"/><data column="0" line="9" realPart="13.0"/><data column="0" line="10" realPart="15.0"/><data column="0" line="11" realPart="-1.0"/><data column="0" line="12" realPart="-1.0"/><data column="0" line="13" realPart="600.0"/><data column="0" line="14" realPart="400.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="70.0" y="410.0"/></BasicBlock><ControlPort dataType="UNKNOW_TYPE" id="-5f02711f:131ec3f74c9:-7eea" ordering="1" parent="-5f02711f:131ec3f74c9:-7f2b" style="ControlPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=90;spacingTop=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-7eeb" ordering="1" parent="-5f02711f:131ec3f74c9:-7f2b" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><BasicBlock angle="90" dependsOnU="1" id="-5f02711f:131ec3f74c9:-7f21" interfaceFunctionName="PotentialSensor" ordering="23" parent="-5f02711f:131ec3f74c9:-8000" simulationFunctionName="PotentialSensor" simulationFunctionType="DEFAULT" style="PotentialSensor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="PotentialSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="v"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="30.0" y="250.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-7f1f" ordering="1" parent="-5f02711f:131ec3f74c9:-7f21" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=90;spacingTop=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-7f20" ordering="1" parent="-5f02711f:131ec3f74c9:-7f21" style="ExplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;rotation=90;spacingBottom=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ExplicitOutputPort><SplitBlock id="-5f02711f:131ec3f74c9:-7f1a" ordering="24" parent="-5f02711f:131ec3f74c9:-8000" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="137.0" y="207.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5f02711f:131ec3f74c9:-7f18" ordering="1" parent="-5f02711f:131ec3f74c9:-7f1a" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5f02711f:131ec3f74c9:-7f17" ordering="2" parent="-5f02711f:131ec3f74c9:-7f1a" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-5f02711f:131ec3f74c9:-7f19" ordering="1" parent="-5f02711f:131ec3f74c9:-7f1a" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-5f02711f:131ec3f74c9:-7f16" parent="-5f02711f:131ec3f74c9:-8000" source="-5f02711f:131ec3f74c9:-7f5e" target="-5f02711f:131ec3f74c9:-7f19"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-5f02711f:131ec3f74c9:-7f15" parent="-5f02711f:131ec3f74c9:-8000" source="-5f02711f:131ec3f74c9:-7f18" target="-5f02711f:131ec3f74c9:-7efb"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="140.0" y="210.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-5f02711f:131ec3f74c9:-7f1b" parent="-5f02711f:131ec3f74c9:-8000" source="-5f02711f:131ec3f74c9:-7f17" target="-5f02711f:131ec3f74c9:-7f1f"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="50.0" y="246.0"/><mxPoint as="targetPoint" x="140.0" y="210.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="50.0" y="210.0"/></Array></mxGeometry></ImplicitLink><CommandControlLink id="-5f02711f:131ec3f74c9:-7f0f" parent="-5f02711f:131ec3f74c9:-8000" source="-5f02711f:131ec3f74c9:-7f33" target="-5f02711f:131ec3f74c9:-7eea"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="90.0" y="364.0"/><mxPoint as="targetPoint" x="90.0" y="410.0"/></mxGeometry></CommandControlLink><ExplicitLink id="-5f02711f:131ec3f74c9:-7f0e" parent="-5f02711f:131ec3f74c9:-8000" source="-5f02711f:131ec3f74c9:-7f20" target="-5f02711f:131ec3f74c9:-7eeb"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="50.0" y="294.0"/><mxPoint as="targetPoint" x="70.0" y="430.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="50.0" y="430.0"/></Array></mxGeometry></ExplicitLink><BasicBlock angle="180" id="-5f02711f:131ec3f74c9:-7fde" interfaceFunctionName="ConstantVoltage" ordering="25" parent="-5f02711f:131ec3f74c9:-8000" simulationFunctionName="ConstantVoltage" simulationFunctionType="DEFAULT" style="ConstantVoltage;rotation=180;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="22"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="22.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ConstantVoltage"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="V"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="22.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="390.0" y="192.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-7ef3" ordering="1" parent="-5f02711f:131ec3f74c9:-7fde" style="ImplicitInputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=180;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-7ef2" ordering="1" parent="-5f02711f:131ec3f74c9:-7fde" style="ImplicitOutputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=180;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitOutputPort><TextBlock id="-7ca3f8c0:131f25d7805:-7e38" parent="-5f02711f:131ec3f74c9:-8000" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="The Supernode<br>Example 4.5"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="The Supernode<br>Example 4.5"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="The Supernode<br>Example 4.5"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="70.0" y="10.0"/></TextBlock></root></mxGraphModel><mxCell as="defaultParent" id="-5f02711f:131ec3f74c9:-8000" parent="-5f02711f:131ec3f74c9:-7fff"/></XcosDiagram>
\ No newline at end of file diff --git a/Working_Examples/215/CH4/EX4.6/Figure4_6.jpg b/Working_Examples/215/CH4/EX4.6/Figure4_6.jpg Binary files differnew file mode 100755 index 0000000..44e7f58 --- /dev/null +++ b/Working_Examples/215/CH4/EX4.6/Figure4_6.jpg diff --git a/Working_Examples/215/CH4/EX4.6/Figure4_6_xcos.jpg b/Working_Examples/215/CH4/EX4.6/Figure4_6_xcos.jpg Binary files differnew file mode 100755 index 0000000..fddde8b --- /dev/null +++ b/Working_Examples/215/CH4/EX4.6/Figure4_6_xcos.jpg diff --git a/Working_Examples/215/CH4/EX4.6/ex4_6.xcos b/Working_Examples/215/CH4/EX4.6/ex4_6.xcos new file mode 100755 index 0000000..21cadce --- /dev/null +++ b/Working_Examples/215/CH4/EX4.6/ex4_6.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" finalIntegrationTime="30.0" title="ex4_6"><!--Xcos - 1.0 - scilab-5.5.2 - 20160406 2040--><mxGraphModel as="model"><root><mxCell id="5e6a3066:134dff9ba34:-7e88"/><mxCell id="5e6a3066:134dff9ba34:-7e89" parent="5e6a3066:134dff9ba34:-7e88"/><BasicBlock angle="180" id="-44770f3d:13503faa17d:-7fd1" interfaceFunctionName="ConstantVoltage" ordering="1" parent="5e6a3066:134dff9ba34:-7e89" simulationFunctionName="ConstantVoltage" simulationFunctionType="DEFAULT" style="ConstantVoltage;rotation=180;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="12"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="12.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ConstantVoltage"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="V"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="12.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="250.0" y="230.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5e6a3066:134dff9ba34:-7ce1" ordering="1" parent="-44770f3d:13503faa17d:-7fd1" style="ImplicitOutputPort;align=left;verticalAlign=middle;spacing=10;rotation=180;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5e6a3066:134dff9ba34:-7ce2" ordering="1" parent="-44770f3d:13503faa17d:-7fd1" style="ImplicitInputPort;align=right;verticalAlign=middle;spacing=10;rotation=180;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitInputPort><GroundBlock dependsOnU="1" id="-44770f3d:13503faa17d:-7fce" interfaceFunctionName="Ground" ordering="2" parent="5e6a3066:134dff9ba34:-7e89" simulationFunctionName="Ground" simulationFunctionType="DEFAULT" style="Ground;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Ground"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="250.0" y="310.0"/></GroundBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5e6a3066:134dff9ba34:-7e5d" ordering="1" parent="-44770f3d:13503faa17d:-7fce" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><Orientation as="orientation" value="NORTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock angle="180" dependsOnU="1" id="-44770f3d:13503faa17d:-7fcc" interfaceFunctionName="Resistor" ordering="3" parent="5e6a3066:134dff9ba34:-7e89" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=180;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="0.5"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="0.5"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.5"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="220.0" y="80.0"/></BasicBlock><mxCell connectable="0" id="-44770f3d:13503faa17d:-7fcc#identifier" parent="-44770f3d:13503faa17d:-7fcc" style="noLabel=0;opacity=0;" vertex="1"><mxGeometry as="geometry" relative="1" x="0.5" y="1.1"/></mxCell><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5e6a3066:134dff9ba34:-7d51" ordering="1" parent="-44770f3d:13503faa17d:-7fcc" style="ImplicitOutputPort;align=left;verticalAlign=middle;spacing=10;rotation=180;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5e6a3066:134dff9ba34:-7d52" ordering="1" parent="-44770f3d:13503faa17d:-7fcc" style="ImplicitInputPort;align=right;verticalAlign=middle;spacing=10;rotation=180;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitInputPort><BasicBlock dependsOnT="1" id="-44770f3d:13503faa17d:-7fc9" interfaceFunctionName="CCS" ordering="4" parent="5e6a3066:134dff9ba34:-7e89" simulationFunctionName="CCS" simulationFunctionType="DEFAULT" style="CCS;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CCS"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="Iin"/><data column="0" line="1" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="380.0" y="220.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5e6a3066:134dff9ba34:-7e4b" ordering="2" parent="-44770f3d:13503faa17d:-7fc9" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="26.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5e6a3066:134dff9ba34:-7e4d" ordering="1" parent="-44770f3d:13503faa17d:-7fc9" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5e6a3066:134dff9ba34:-7e4c" ordering="1" parent="-44770f3d:13503faa17d:-7fc9" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ExplicitInputPort><BasicBlock angle="270" dependsOnU="1" id="-44770f3d:13503faa17d:-7fc5" interfaceFunctionName="Resistor" ordering="5" parent="5e6a3066:134dff9ba34:-7e89" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=270;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="2.5"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="2.5"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="2.5"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="150.0" y="300.0"/></BasicBlock><mxCell connectable="0" id="-44770f3d:13503faa17d:-7fc5#identifier" parent="-44770f3d:13503faa17d:-7fc5" style="noLabel=0;opacity=0;" vertex="1"><mxGeometry as="geometry" relative="1" x="0.5" y="1.1"/></mxCell><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5e6a3066:134dff9ba34:-7d61" ordering="1" parent="-44770f3d:13503faa17d:-7fc5" style="ImplicitOutputPort;align=center;verticalAlign=top;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5e6a3066:134dff9ba34:-7d62" ordering="1" parent="-44770f3d:13503faa17d:-7fc5" style="ImplicitInputPort;align=center;verticalAlign=bottom;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="-44770f3d:13503faa17d:-7fc2" interfaceFunctionName="Resistor" ordering="6" parent="5e6a3066:134dff9ba34:-7e89" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="2"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="390.0" y="80.0"/></BasicBlock><mxCell connectable="0" id="-44770f3d:13503faa17d:-7fc2#identifier" parent="-44770f3d:13503faa17d:-7fc2" style="noLabel=0;opacity=0;" vertex="1"><mxGeometry as="geometry" relative="1" x="0.5" y="1.1"/></mxCell><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5e6a3066:134dff9ba34:-7d4d" ordering="1" parent="-44770f3d:13503faa17d:-7fc2" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5e6a3066:134dff9ba34:-7d4e" ordering="1" parent="-44770f3d:13503faa17d:-7fc2" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><SplitBlock id="-44770f3d:13503faa17d:-7fbf" ordering="7" parent="5e6a3066:134dff9ba34:-7e89" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="317.0" y="97.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="5e6a3066:134dff9ba34:-7e28" ordering="2" parent="-44770f3d:13503faa17d:-7fbf" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="5e6a3066:134dff9ba34:-7e2a" ordering="1" parent="-44770f3d:13503faa17d:-7fbf" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="5e6a3066:134dff9ba34:-7e29" ordering="1" parent="-44770f3d:13503faa17d:-7fbf" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="5e6a3066:134dff9ba34:-7e26" parent="5e6a3066:134dff9ba34:-7e89" source="5e6a3066:134dff9ba34:-7e29" target="5e6a3066:134dff9ba34:-7d4e"><mxGeometry as="geometry" x="100.0" y="50.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="5e6a3066:134dff9ba34:-7e2c" parent="5e6a3066:134dff9ba34:-7e89" source="5e6a3066:134dff9ba34:-7e7d" target="5e6a3066:134dff9ba34:-7e28"><mxGeometry as="geometry" x="100.0" y="50.0"><mxPoint as="sourcePoint" x="320.0" y="150.0"/><mxPoint as="targetPoint" x="320.0" y="100.0"/></mxGeometry></ImplicitLink><BasicBlock angle="90" dependsOnU="1" id="-44770f3d:13503faa17d:-7fb9" interfaceFunctionName="Resistor" ordering="8" parent="5e6a3066:134dff9ba34:-7e89" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="310.0" y="310.0"/></BasicBlock><mxCell connectable="0" id="-44770f3d:13503faa17d:-7fb9#identifier" parent="-44770f3d:13503faa17d:-7fb9" style="noLabel=0;opacity=0;" vertex="1"><mxGeometry as="geometry" relative="1" x="0.5" y="1.1"/></mxCell><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5e6a3066:134dff9ba34:-7d5d" ordering="1" parent="-44770f3d:13503faa17d:-7fb9" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5e6a3066:134dff9ba34:-7d5e" ordering="1" parent="-44770f3d:13503faa17d:-7fb9" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><SplitBlock id="-44770f3d:13503faa17d:-7fb6" ordering="9" parent="5e6a3066:134dff9ba34:-7e89" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="327.0" y="247.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="5e6a3066:134dff9ba34:-7e18" ordering="2" parent="-44770f3d:13503faa17d:-7fb6" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="5e6a3066:134dff9ba34:-7e1a" ordering="1" parent="-44770f3d:13503faa17d:-7fb6" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="5e6a3066:134dff9ba34:-7e19" ordering="1" parent="-44770f3d:13503faa17d:-7fb6" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="5e6a3066:134dff9ba34:-7e1c" parent="5e6a3066:134dff9ba34:-7e89" source="5e6a3066:134dff9ba34:-7e18" target="5e6a3066:134dff9ba34:-7d5e"><mxGeometry as="geometry" x="100.0" y="50.0"><mxPoint as="sourcePoint" x="330.0" y="320.0"/><mxPoint as="targetPoint" x="330.0" y="250.0"/></mxGeometry></ImplicitLink><SplitBlock id="-44770f3d:13503faa17d:-7fb1" ordering="10" parent="5e6a3066:134dff9ba34:-7e89" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="167.0" y="247.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="5e6a3066:134dff9ba34:-7e10" ordering="2" parent="-44770f3d:13503faa17d:-7fb1" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="5e6a3066:134dff9ba34:-7e12" ordering="1" parent="-44770f3d:13503faa17d:-7fb1" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="5e6a3066:134dff9ba34:-7e11" ordering="1" parent="-44770f3d:13503faa17d:-7fb1" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><SplitBlock id="-44770f3d:13503faa17d:-7fad" ordering="11" parent="5e6a3066:134dff9ba34:-7e89" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="477.0" y="237.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="5e6a3066:134dff9ba34:-7e08" ordering="2" parent="-44770f3d:13503faa17d:-7fad" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="5e6a3066:134dff9ba34:-7e0a" ordering="1" parent="-44770f3d:13503faa17d:-7fad" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="5e6a3066:134dff9ba34:-7e09" ordering="1" parent="-44770f3d:13503faa17d:-7fad" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="5e6a3066:134dff9ba34:-7e07" parent="5e6a3066:134dff9ba34:-7e89" source="5e6a3066:134dff9ba34:-7d4d" target="5e6a3066:134dff9ba34:-7e0a"><mxGeometry as="geometry" x="100.0" y="50.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="480.0" y="100.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="-44770f3d:13503faa17d:-7fa8" ordering="12" parent="5e6a3066:134dff9ba34:-7e89" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="327.0" y="387.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="5e6a3066:134dff9ba34:-7e00" ordering="2" parent="-44770f3d:13503faa17d:-7fa8" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="5e6a3066:134dff9ba34:-7e02" ordering="1" parent="-44770f3d:13503faa17d:-7fa8" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="5e6a3066:134dff9ba34:-7e01" ordering="1" parent="-44770f3d:13503faa17d:-7fa8" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="5e6a3066:134dff9ba34:-7dff" parent="5e6a3066:134dff9ba34:-7e89" source="5e6a3066:134dff9ba34:-7e70" target="5e6a3066:134dff9ba34:-7e02"><mxGeometry as="geometry" x="100.0" y="50.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="470.0" y="390.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="-44770f3d:13503faa17d:-7fa3" ordering="13" parent="5e6a3066:134dff9ba34:-7e89" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="327.0" y="247.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="5e6a3066:134dff9ba34:-7df9" ordering="2" parent="-44770f3d:13503faa17d:-7fa3" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="5e6a3066:134dff9ba34:-7dfb" ordering="1" parent="-44770f3d:13503faa17d:-7fa3" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="5e6a3066:134dff9ba34:-7dfa" ordering="1" parent="-44770f3d:13503faa17d:-7fa3" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="5e6a3066:134dff9ba34:-7df8" parent="5e6a3066:134dff9ba34:-7e89" source="5e6a3066:134dff9ba34:-7e19" target="5e6a3066:134dff9ba34:-7dfb"><mxGeometry as="geometry" x="100.0" y="50.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="5e6a3066:134dff9ba34:-7df7" parent="5e6a3066:134dff9ba34:-7e89" source="5e6a3066:134dff9ba34:-7dfa" target="5e6a3066:134dff9ba34:-7e4b"><mxGeometry as="geometry" x="100.0" y="50.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="5e6a3066:134dff9ba34:-7dfd" parent="5e6a3066:134dff9ba34:-7e89" source="5e6a3066:134dff9ba34:-7df9" target="5e6a3066:134dff9ba34:-7e7b"><mxGeometry as="geometry" x="100.0" y="50.0"><mxPoint as="sourcePoint" x="330.0" y="190.0"/><mxPoint as="targetPoint" x="330.0" y="250.0"/></mxGeometry></ImplicitLink><BasicBlock blockType="d" id="-44770f3d:13503faa17d:-7f9c" interfaceFunctionName="CONST_m" ordering="14" parent="5e6a3066:134dff9ba34:-7e89" simulationFunctionName="cstblk4_m" simulationFunctionType="C_OR_FORTRAN" style="CONST_m;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="14"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="14.0"/></ScilabDouble></Array><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="50.0" width="40.0" x="250.0" y="170.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5e6a3066:134dff9ba34:-7d65" ordering="1" parent="-44770f3d:13503faa17d:-7f9c" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ExplicitLink id="5e6a3066:134dff9ba34:-7ded" parent="5e6a3066:134dff9ba34:-7e89" source="5e6a3066:134dff9ba34:-7d65" target="5e6a3066:134dff9ba34:-7e7c"><mxGeometry as="geometry" x="100.0" y="40.0"><mxPoint as="sourcePoint" x="280.0" y="190.0"/><mxPoint as="targetPoint" x="310.0" y="180.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="310.0" y="190.0"/></Array></mxGeometry></ExplicitLink><VoltageSensorBlock angle="180" dependsOnU="1" id="-44770f3d:13503faa17d:-7f99" interfaceFunctionName="VoltageSensor" ordering="15" parent="5e6a3066:134dff9ba34:-7e89" simulationFunctionName="VoltageSensor" simulationFunctionType="DEFAULT" style="VoltageSensor;rotation=180;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="VoltageSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="v"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="180.0" y="130.0"/></VoltageSensorBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5e6a3066:134dff9ba34:-7de0" ordering="1" parent="-44770f3d:13503faa17d:-7f99" style="ImplicitInputPort;align=right;verticalAlign=middle;spacing=10;rotation=180;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5e6a3066:134dff9ba34:-7de2" ordering="1" parent="-44770f3d:13503faa17d:-7f99" style="ImplicitOutputPort;align=center;verticalAlign=top;spacing=10;rotation=270;flip=false;mirror=false"><Orientation as="orientation" value="SOUTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitOutputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5e6a3066:134dff9ba34:-7de1" ordering="2" parent="-44770f3d:13503faa17d:-7f99" style="ExplicitOutputPort;align=left;verticalAlign=middle;spacing=10;rotation=180;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitOutputPort><VoltageSensorBlock angle="270" dependsOnU="1" id="-44770f3d:13503faa17d:-7f95" interfaceFunctionName="VoltageSensor" ordering="16" parent="5e6a3066:134dff9ba34:-7e89" simulationFunctionName="VoltageSensor" simulationFunctionType="DEFAULT" style="VoltageSensor;rotation=270;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="VoltageSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="v"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="110.0" y="260.0"/></VoltageSensorBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5e6a3066:134dff9ba34:-7dd8" ordering="1" parent="-44770f3d:13503faa17d:-7f95" style="ImplicitInputPort;align=center;verticalAlign=bottom;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5e6a3066:134dff9ba34:-7dda" ordering="1" parent="-44770f3d:13503faa17d:-7f95" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><Orientation as="orientation" value="SOUTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5e6a3066:134dff9ba34:-7dd9" ordering="2" parent="-44770f3d:13503faa17d:-7f95" style="ExplicitOutputPort;align=center;verticalAlign=top;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ExplicitOutputPort><SplitBlock id="-44770f3d:13503faa17d:-7f91" ordering="17" parent="5e6a3066:134dff9ba34:-7e89" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="167.0" y="277.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="5e6a3066:134dff9ba34:-7dcb" ordering="2" parent="-44770f3d:13503faa17d:-7f91" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="5e6a3066:134dff9ba34:-7dcd" ordering="1" parent="-44770f3d:13503faa17d:-7f91" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="5e6a3066:134dff9ba34:-7dcc" ordering="1" parent="-44770f3d:13503faa17d:-7f91" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="5e6a3066:134dff9ba34:-7dca" parent="5e6a3066:134dff9ba34:-7e89" source="5e6a3066:134dff9ba34:-7d61" target="5e6a3066:134dff9ba34:-7dcd"><mxGeometry as="geometry" x="100.0" y="50.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="5e6a3066:134dff9ba34:-7dc9" parent="5e6a3066:134dff9ba34:-7e89" source="5e6a3066:134dff9ba34:-7e11" target="5e6a3066:134dff9ba34:-7dcc"><mxGeometry as="geometry" x="100.0" y="50.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="5e6a3066:134dff9ba34:-7dcf" parent="5e6a3066:134dff9ba34:-7e89" source="5e6a3066:134dff9ba34:-7dda" target="5e6a3066:134dff9ba34:-7dcb"><mxGeometry as="geometry" x="100.0" y="50.0"><mxPoint as="sourcePoint" x="150.0" y="280.0"/><mxPoint as="targetPoint" x="170.0" y="280.0"/></mxGeometry></ImplicitLink><SplitBlock id="-44770f3d:13503faa17d:-7f8a" ordering="18" parent="5e6a3066:134dff9ba34:-7e89" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="167.0" y="367.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="5e6a3066:134dff9ba34:-7dc4" ordering="2" parent="-44770f3d:13503faa17d:-7f8a" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="5e6a3066:134dff9ba34:-7dc6" ordering="1" parent="-44770f3d:13503faa17d:-7f8a" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="5e6a3066:134dff9ba34:-7dc5" ordering="1" parent="-44770f3d:13503faa17d:-7f8a" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="5e6a3066:134dff9ba34:-7dc3" parent="5e6a3066:134dff9ba34:-7e89" source="5e6a3066:134dff9ba34:-7e01" target="5e6a3066:134dff9ba34:-7dc6"><mxGeometry as="geometry" x="100.0" y="50.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="170.0" y="390.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="5e6a3066:134dff9ba34:-7dc2" parent="5e6a3066:134dff9ba34:-7e89" source="5e6a3066:134dff9ba34:-7dc5" target="5e6a3066:134dff9ba34:-7d62"><mxGeometry as="geometry" x="100.0" y="50.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="5e6a3066:134dff9ba34:-7dc8" parent="5e6a3066:134dff9ba34:-7e89" source="5e6a3066:134dff9ba34:-7dc4" target="5e6a3066:134dff9ba34:-7dd8"><mxGeometry as="geometry" x="100.0" y="50.0"><mxPoint as="sourcePoint" x="130.0" y="300.0"/><mxPoint as="targetPoint" x="170.0" y="370.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="130.0" y="370.0"/></Array></mxGeometry></ImplicitLink><BasicBlock dependsOnU="1" id="-44770f3d:13503faa17d:-7f83" interfaceFunctionName="GAINBLK_f" ordering="19" parent="5e6a3066:134dff9ba34:-7e89" simulationFunctionName="gain" simulationFunctionType="DEFAULT" style="GAINBLK_f;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="0.2"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="0.2"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="50.0" width="40.0" x="300.0" y="200.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5e6a3066:134dff9ba34:-7d59" ordering="1" parent="-44770f3d:13503faa17d:-7f83" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5e6a3066:134dff9ba34:-7d5a" ordering="1" parent="-44770f3d:13503faa17d:-7f83" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitLink id="5e6a3066:134dff9ba34:-7da4" parent="5e6a3066:134dff9ba34:-7e89" source="5e6a3066:134dff9ba34:-7d59" target="5e6a3066:134dff9ba34:-7e6f"><mxGeometry as="geometry" x="100.0" y="50.0"><mxPoint as="sourcePoint" x="340.0" y="230.0"/><mxPoint as="targetPoint" x="460.0" y="310.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="350.0" y="220.0"/><mxPoint x="350.0" y="290.0"/><mxPoint x="460.0" y="290.0"/></Array></mxGeometry></ExplicitLink><SplitBlock id="-44770f3d:13503faa17d:-7f7a" ordering="20" parent="5e6a3066:134dff9ba34:-7e89" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="197.0" y="97.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="5e6a3066:134dff9ba34:-7d97" ordering="2" parent="-44770f3d:13503faa17d:-7f7a" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="5e6a3066:134dff9ba34:-7d99" ordering="1" parent="-44770f3d:13503faa17d:-7f7a" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="5e6a3066:134dff9ba34:-7d98" ordering="1" parent="-44770f3d:13503faa17d:-7f7a" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="5e6a3066:134dff9ba34:-7d96" parent="5e6a3066:134dff9ba34:-7e89" source="5e6a3066:134dff9ba34:-7d51" target="5e6a3066:134dff9ba34:-7d99"><mxGeometry as="geometry" x="100.0" y="50.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="5e6a3066:134dff9ba34:-7d95" parent="5e6a3066:134dff9ba34:-7e89" source="5e6a3066:134dff9ba34:-7d98" target="5e6a3066:134dff9ba34:-7e12"><mxGeometry as="geometry" x="100.0" y="50.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="170.0" y="100.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="5e6a3066:134dff9ba34:-7d9b" parent="5e6a3066:134dff9ba34:-7e89" source="5e6a3066:134dff9ba34:-7de2" target="5e6a3066:134dff9ba34:-7d97"><mxGeometry as="geometry" x="100.0" y="50.0"><mxPoint as="sourcePoint" x="200.0" y="130.0"/><mxPoint as="targetPoint" x="200.0" y="100.0"/></mxGeometry></ImplicitLink><SplitBlock id="-44770f3d:13503faa17d:-7f73" ordering="21" parent="5e6a3066:134dff9ba34:-7e89" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="277.0" y="97.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="5e6a3066:134dff9ba34:-7d90" ordering="2" parent="-44770f3d:13503faa17d:-7f73" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="5e6a3066:134dff9ba34:-7d92" ordering="1" parent="-44770f3d:13503faa17d:-7f73" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="5e6a3066:134dff9ba34:-7d91" ordering="1" parent="-44770f3d:13503faa17d:-7f73" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="5e6a3066:134dff9ba34:-7d8f" parent="5e6a3066:134dff9ba34:-7e89" source="5e6a3066:134dff9ba34:-7d52" target="5e6a3066:134dff9ba34:-7d92"><mxGeometry as="geometry" x="100.0" y="50.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="5e6a3066:134dff9ba34:-7d94" parent="5e6a3066:134dff9ba34:-7e89" source="5e6a3066:134dff9ba34:-7d90" target="5e6a3066:134dff9ba34:-7de0"><mxGeometry as="geometry" x="100.0" y="50.0"><mxPoint as="sourcePoint" x="220.0" y="150.0"/><mxPoint as="targetPoint" x="280.0" y="100.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="280.0" y="150.0"/></Array></mxGeometry></ImplicitLink><BasicBlock dependsOnU="1" id="-44770f3d:13503faa17d:-7f6a" interfaceFunctionName="GAINBLK_f" ordering="22" parent="5e6a3066:134dff9ba34:-7e89" simulationFunctionName="gain" simulationFunctionType="DEFAULT" style="GAINBLK_f;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="0.5"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="0.5"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="50.0" width="40.0" x="300.0" y="150.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5e6a3066:134dff9ba34:-7d55" ordering="1" parent="-44770f3d:13503faa17d:-7f6a" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5e6a3066:134dff9ba34:-7d56" ordering="1" parent="-44770f3d:13503faa17d:-7f6a" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitLink id="5e6a3066:134dff9ba34:-7d7b" parent="5e6a3066:134dff9ba34:-7e89" source="5e6a3066:134dff9ba34:-7d55" target="5e6a3066:134dff9ba34:-7e4c"><mxGeometry as="geometry" x="100.0" y="50.0"><mxPoint as="sourcePoint" x="340.0" y="180.0"/><mxPoint as="targetPoint" x="370.0" y="230.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="370.0" y="170.0"/><mxPoint x="370.0" y="230.0"/></Array></mxGeometry></ExplicitLink><SplitBlock id="-44770f3d:13503faa17d:-7f64" ordering="23" parent="5e6a3066:134dff9ba34:-7e89" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="327.0" y="247.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="5e6a3066:134dff9ba34:-7d69" ordering="2" parent="-44770f3d:13503faa17d:-7f64" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="5e6a3066:134dff9ba34:-7d6b" ordering="1" parent="-44770f3d:13503faa17d:-7f64" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="5e6a3066:134dff9ba34:-7d6a" ordering="1" parent="-44770f3d:13503faa17d:-7f64" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="5e6a3066:134dff9ba34:-7d68" parent="5e6a3066:134dff9ba34:-7e89" source="5e6a3066:134dff9ba34:-7ce2" target="5e6a3066:134dff9ba34:-7d6b"><mxGeometry as="geometry" x="100.0" y="50.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="5e6a3066:134dff9ba34:-7d67" parent="5e6a3066:134dff9ba34:-7e89" source="5e6a3066:134dff9ba34:-7d6a" target="5e6a3066:134dff9ba34:-7e1a"><mxGeometry as="geometry" x="100.0" y="50.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="5e6a3066:134dff9ba34:-7d04" parent="5e6a3066:134dff9ba34:-7e89" source="5e6a3066:134dff9ba34:-7e4d" target="5e6a3066:134dff9ba34:-7e08"><mxGeometry as="geometry" x="100.0" y="50.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="480.0" y="240.0"/></Array></mxGeometry></ImplicitLink><BasicBlock dependsOnU="1" id="-44770f3d:13503faa17d:-7f5b" interfaceFunctionName="PotentialSensor" ordering="24" parent="5e6a3066:134dff9ba34:-7e89" simulationFunctionName="PotentialSensor" simulationFunctionType="DEFAULT" style="PotentialSensor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="PotentialSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="v"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="510.0" y="220.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5e6a3066:134dff9ba34:-7ca6" ordering="1" parent="-44770f3d:13503faa17d:-7f5b" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5e6a3066:134dff9ba34:-7ca5" ordering="1" parent="-44770f3d:13503faa17d:-7f5b" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><SplitBlock id="-44770f3d:13503faa17d:-7f58" ordering="25" parent="5e6a3066:134dff9ba34:-7e89" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="477.0" y="237.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="5e6a3066:134dff9ba34:-7c9d" ordering="2" parent="-44770f3d:13503faa17d:-7f58" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="5e6a3066:134dff9ba34:-7c9f" ordering="1" parent="-44770f3d:13503faa17d:-7f58" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="5e6a3066:134dff9ba34:-7c9e" ordering="1" parent="-44770f3d:13503faa17d:-7f58" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="5e6a3066:134dff9ba34:-7c9c" parent="5e6a3066:134dff9ba34:-7e89" source="5e6a3066:134dff9ba34:-7e09" target="5e6a3066:134dff9ba34:-7c9f"><mxGeometry as="geometry" y="50.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="5e6a3066:134dff9ba34:-7c9b" parent="5e6a3066:134dff9ba34:-7e89" source="5e6a3066:134dff9ba34:-7c9e" target="5e6a3066:134dff9ba34:-7e6e"><mxGeometry as="geometry" y="50.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="5e6a3066:134dff9ba34:-7ca1" parent="5e6a3066:134dff9ba34:-7e89" source="5e6a3066:134dff9ba34:-7c9d" target="5e6a3066:134dff9ba34:-7ca5"><mxGeometry as="geometry" y="50.0"><mxPoint as="sourcePoint" x="510.0" y="240.0"/><mxPoint as="targetPoint" x="480.0" y="240.0"/></mxGeometry></ImplicitLink><ImplicitLink id="5e6a3066:134dff9ba34:-7c94" parent="5e6a3066:134dff9ba34:-7e89" source="5e6a3066:134dff9ba34:-7d69" target="5e6a3066:134dff9ba34:-7e5d"><mxGeometry as="geometry" y="50.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="310.0" y="270.0"/><mxPoint x="270.0" y="290.0"/><mxPoint x="270.0" y="300.0"/></Array></mxGeometry></ImplicitLink><BasicBlock angle="180" dependsOnU="1" id="-44770f3d:13503faa17d:-7f50" interfaceFunctionName="PotentialSensor" ordering="26" parent="5e6a3066:134dff9ba34:-7e89" simulationFunctionName="PotentialSensor" simulationFunctionType="DEFAULT" style="PotentialSensor;rotation=180;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="PotentialSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="v"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="40.0" y="230.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5e6a3066:134dff9ba34:-7c8e" ordering="1" parent="-44770f3d:13503faa17d:-7f50" style="ExplicitOutputPort;align=left;verticalAlign=middle;spacing=10;rotation=180;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5e6a3066:134dff9ba34:-7c8d" ordering="1" parent="-44770f3d:13503faa17d:-7f50" style="ImplicitInputPort;align=right;verticalAlign=middle;spacing=10;rotation=180;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitInputPort><SplitBlock id="-44770f3d:13503faa17d:-7f4d" ordering="27" parent="5e6a3066:134dff9ba34:-7e89" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="167.0" y="247.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="5e6a3066:134dff9ba34:-7c85" ordering="2" parent="-44770f3d:13503faa17d:-7f4d" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="5e6a3066:134dff9ba34:-7c87" ordering="1" parent="-44770f3d:13503faa17d:-7f4d" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="5e6a3066:134dff9ba34:-7c86" ordering="1" parent="-44770f3d:13503faa17d:-7f4d" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="5e6a3066:134dff9ba34:-7c84" parent="5e6a3066:134dff9ba34:-7e89" source="5e6a3066:134dff9ba34:-7e10" target="5e6a3066:134dff9ba34:-7c87"><mxGeometry as="geometry" y="50.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="5e6a3066:134dff9ba34:-7c83" parent="5e6a3066:134dff9ba34:-7e89" source="5e6a3066:134dff9ba34:-7ce1" target="5e6a3066:134dff9ba34:-7c86"><mxGeometry as="geometry" y="50.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="5e6a3066:134dff9ba34:-7c89" parent="5e6a3066:134dff9ba34:-7e89" source="5e6a3066:134dff9ba34:-7c85" target="5e6a3066:134dff9ba34:-7c8d"><mxGeometry as="geometry" y="50.0"><mxPoint as="sourcePoint" x="80.0" y="250.0"/><mxPoint as="targetPoint" x="170.0" y="250.0"/></mxGeometry></ImplicitLink><BasicBlock dependsOnU="1" id="-44770f3d:13503faa17d:-7f44" interfaceFunctionName="PotentialSensor" ordering="28" parent="5e6a3066:134dff9ba34:-7e89" simulationFunctionName="PotentialSensor" simulationFunctionType="DEFAULT" style="PotentialSensor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="PotentialSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="v"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="340.0" y="440.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5e6a3066:134dff9ba34:-7c66" ordering="1" parent="-44770f3d:13503faa17d:-7f44" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5e6a3066:134dff9ba34:-7c65" ordering="1" parent="-44770f3d:13503faa17d:-7f44" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><SplitBlock id="-44770f3d:13503faa17d:-7f41" ordering="29" parent="5e6a3066:134dff9ba34:-7e89" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="327.0" y="387.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="5e6a3066:134dff9ba34:-7c55" ordering="2" parent="-44770f3d:13503faa17d:-7f41" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="5e6a3066:134dff9ba34:-7c57" ordering="1" parent="-44770f3d:13503faa17d:-7f41" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="5e6a3066:134dff9ba34:-7c56" ordering="1" parent="-44770f3d:13503faa17d:-7f41" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="5e6a3066:134dff9ba34:-7c54" parent="5e6a3066:134dff9ba34:-7e89" source="5e6a3066:134dff9ba34:-7d5d" target="5e6a3066:134dff9ba34:-7c57"><mxGeometry as="geometry" y="50.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="5e6a3066:134dff9ba34:-7c53" parent="5e6a3066:134dff9ba34:-7e89" source="5e6a3066:134dff9ba34:-7e00" target="5e6a3066:134dff9ba34:-7c56"><mxGeometry as="geometry" y="50.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="5e6a3066:134dff9ba34:-7c59" parent="5e6a3066:134dff9ba34:-7e89" source="5e6a3066:134dff9ba34:-7c55" target="5e6a3066:134dff9ba34:-7c65"><mxGeometry as="geometry" x="10.0" y="50.0"><mxPoint as="sourcePoint" x="340.0" y="460.0"/><mxPoint as="targetPoint" x="340.0" y="390.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="330.0" y="460.0"/></Array></mxGeometry></ImplicitLink><BasicBlock dependsOnU="1" id="-44770f3d:13503faa17d:-7f3a" interfaceFunctionName="PotentialSensor" ordering="30" parent="5e6a3066:134dff9ba34:-7e89" simulationFunctionName="PotentialSensor" simulationFunctionType="DEFAULT" style="PotentialSensor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="PotentialSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="v"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="510.0" y="20.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5e6a3066:134dff9ba34:-7c4a" ordering="1" parent="-44770f3d:13503faa17d:-7f3a" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5e6a3066:134dff9ba34:-7c49" ordering="1" parent="-44770f3d:13503faa17d:-7f3a" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><SplitBlock id="-44770f3d:13503faa17d:-7f37" ordering="31" parent="5e6a3066:134dff9ba34:-7e89" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="317.0" y="97.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="5e6a3066:134dff9ba34:-7c39" ordering="2" parent="-44770f3d:13503faa17d:-7f37" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="5e6a3066:134dff9ba34:-7c3b" ordering="1" parent="-44770f3d:13503faa17d:-7f37" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="5e6a3066:134dff9ba34:-7c3a" ordering="1" parent="-44770f3d:13503faa17d:-7f37" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="5e6a3066:134dff9ba34:-7c38" parent="5e6a3066:134dff9ba34:-7e89" source="5e6a3066:134dff9ba34:-7d91" target="5e6a3066:134dff9ba34:-7c3b"><mxGeometry as="geometry" y="-60.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="5e6a3066:134dff9ba34:-7c37" parent="5e6a3066:134dff9ba34:-7e89" source="5e6a3066:134dff9ba34:-7c3a" target="5e6a3066:134dff9ba34:-7e2a"><mxGeometry as="geometry" y="-60.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="5e6a3066:134dff9ba34:-7c3d" parent="5e6a3066:134dff9ba34:-7e89" source="5e6a3066:134dff9ba34:-7c39" target="5e6a3066:134dff9ba34:-7c49"><mxGeometry as="geometry" y="-60.0"><mxPoint as="sourcePoint" x="340.0" y="40.0"/><mxPoint as="targetPoint" x="320.0" y="100.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="320.0" y="40.0"/></Array></mxGeometry></ImplicitLink><BasicBlock dependsOnU="1" id="-44770f3d:13503faa17d:-7eba" interfaceFunctionName="MUX" ordering="32" parent="5e6a3066:134dff9ba34:-7e89" simulationFunctionName="multiplex" simulationFunctionType="C_OR_FORTRAN" style="MUX;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="4"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="90.0" width="30.0" x="620.0" y="210.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="-2" dataType="REAL_MATRIX" id="-44770f3d:13503faa17d:-7e8c" ordering="2" parent="-44770f3d:13503faa17d:-7eba" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="26.0"/></ExplicitInputPort><ExplicitInputPort dataColumns="1" dataLines="-3" dataType="REAL_MATRIX" id="-44770f3d:13503faa17d:-7e8b" ordering="3" parent="-44770f3d:13503faa17d:-7eba" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="56.0"/></ExplicitInputPort><ExplicitInputPort dataColumns="1" dataLines="-4" dataType="REAL_MATRIX" id="-44770f3d:13503faa17d:-7e8a" ordering="4" parent="-44770f3d:13503faa17d:-7eba" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="76.0"/></ExplicitInputPort><ExplicitOutputPort dataColumns="1" dataLines="0" dataType="REAL_MATRIX" id="-44770f3d:13503faa17d:-7e89" ordering="1" parent="-44770f3d:13503faa17d:-7eba" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="30.0" y="36.0"/></ExplicitOutputPort><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="-44770f3d:13503faa17d:-7e8d" ordering="1" parent="-44770f3d:13503faa17d:-7eba" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ExplicitInputPort><BasicBlock dependsOnU="1" id="-44770f3d:13503faa17d:-7eaf" interfaceFunctionName="CSCOPE" ordering="33" parent="5e6a3066:134dff9ba34:-7e89" simulationFunctionName="cscope" simulationFunctionType="C_OR_FORTRAN" style="CSCOPE;flip=false;mirror=false"><ScilabString as="exprs" height="10" width="1"><data column="0" line="0" value="1 3 5 7 9 11 13 15"/><data column="0" line="1" value="-1"/><data column="0" line="2" value="[]"/><data column="0" line="3" value="[600;400]"/><data column="0" line="4" value="-15"/><data column="0" line="5" value="3"/><data column="0" line="6" value="30"/><data column="0" line="7" value="20"/><data column="0" line="8" value="0"/><data column="0" line="9" value=""/></ScilabString><ScilabDouble as="realParameters" height="4" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="-15.0"/><data column="0" line="2" realPart="3.0"/><data column="0" line="3" realPart="30.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="15" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="1.0"/><data column="0" line="4" realPart="3.0"/><data column="0" line="5" realPart="5.0"/><data column="0" line="6" realPart="7.0"/><data column="0" line="7" realPart="9.0"/><data column="0" line="8" realPart="11.0"/><data column="0" line="9" realPart="13.0"/><data column="0" line="10" realPart="15.0"/><data column="0" line="11" realPart="-1.0"/><data column="0" line="12" realPart="-1.0"/><data column="0" line="13" realPart="600.0"/><data column="0" line="14" realPart="400.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="700.0" y="230.0"/></BasicBlock><ControlPort dataType="UNKNOW_TYPE" id="-44770f3d:13503faa17d:-7e73" ordering="1" parent="-44770f3d:13503faa17d:-7eaf" style="ControlPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="-44770f3d:13503faa17d:-7e74" ordering="1" parent="-44770f3d:13503faa17d:-7eaf" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitLink id="-44770f3d:13503faa17d:-7e87" parent="5e6a3066:134dff9ba34:-7e89" source="5e6a3066:134dff9ba34:-7c4a" target="-44770f3d:13503faa17d:-7e8d"><mxGeometry as="geometry" y="40.0"><mxPoint as="sourcePoint" x="550.0" y="80.0"/><mxPoint as="targetPoint" x="620.0" y="220.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="570.0" y="40.0"/><mxPoint x="570.0" y="220.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="-44770f3d:13503faa17d:-7e80" parent="5e6a3066:134dff9ba34:-7e89" source="5e6a3066:134dff9ba34:-7ca6" target="-44770f3d:13503faa17d:-7e8c"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="550.0" y="240.0"/><mxPoint as="targetPoint" x="610.0" y="240.0"/></mxGeometry></ExplicitLink><ExplicitLink id="-44770f3d:13503faa17d:-7e7e" parent="5e6a3066:134dff9ba34:-7e89" source="5e6a3066:134dff9ba34:-7c66" target="-44770f3d:13503faa17d:-7e8b"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="380.0" y="460.0"/><mxPoint as="targetPoint" x="620.0" y="270.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="570.0" y="460.0"/><mxPoint x="570.0" y="270.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="-44770f3d:13503faa17d:-7e7d" parent="5e6a3066:134dff9ba34:-7e89" source="5e6a3066:134dff9ba34:-7c8e" target="-44770f3d:13503faa17d:-7e8a"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="620.0" y="290.0"/><mxPoint as="targetPoint" x="40.0" y="250.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="20.0" y="250.0"/><mxPoint x="20.0" y="500.0"/><mxPoint x="590.0" y="500.0"/><mxPoint x="590.0" y="290.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="-44770f3d:13503faa17d:-7e77" parent="5e6a3066:134dff9ba34:-7e89" source="-44770f3d:13503faa17d:-7e89" target="-44770f3d:13503faa17d:-7e74"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="650.0" y="250.0"/><mxPoint as="targetPoint" x="700.0" y="250.0"/></mxGeometry></ExplicitLink><BasicBlock angle="270" dependsOnT="1" id="-44770f3d:13503faa17d:-7fd9" interfaceFunctionName="CCS" ordering="34" parent="5e6a3066:134dff9ba34:-7e89" simulationFunctionName="CCS" simulationFunctionType="DEFAULT" style="CCS;rotation=270;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CCS"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="Iin"/><data column="0" line="1" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="300.0" y="140.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5e6a3066:134dff9ba34:-7e7b" ordering="2" parent="-44770f3d:13503faa17d:-7fd9" style="ImplicitInputPort;align=center;verticalAlign=bottom;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="26.0" y="40.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5e6a3066:134dff9ba34:-7e7d" ordering="1" parent="-44770f3d:13503faa17d:-7fd9" style="ImplicitOutputPort;align=center;verticalAlign=top;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitOutputPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5e6a3066:134dff9ba34:-7e7c" ordering="1" parent="-44770f3d:13503faa17d:-7fd9" style="ExplicitInputPort;align=center;verticalAlign=bottom;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="6.0" y="40.0"/></ExplicitInputPort><TextBlock id="128c18ea:1383ab8277c:-7dcc" parent="5e6a3066:134dff9ba34:-7e89" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="Example 4.6"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="Example 4.6"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="Example 4.6"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="40.0" y="20.0"/></TextBlock><BasicBlock angle="90" dependsOnT="1" id="-44770f3d:13503faa17d:-7fd5" interfaceFunctionName="CVS" ordering="35" parent="5e6a3066:134dff9ba34:-7e89" simulationFunctionName="CVS" simulationFunctionType="DEFAULT" style="CVS;rotation=90;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CVS"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="vin"/><data column="0" line="1" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="450.0" y="310.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5e6a3066:134dff9ba34:-7e6e" ordering="2" parent="-44770f3d:13503faa17d:-7fd5" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="26.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5e6a3066:134dff9ba34:-7e70" ordering="1" parent="-44770f3d:13503faa17d:-7fd5" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5e6a3066:134dff9ba34:-7e6f" ordering="1" parent="-44770f3d:13503faa17d:-7fd5" style="ExplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="6.0" y="-8.0"/></ExplicitInputPort><BasicBlock blockType="h" id="128c18ea:1383ab8277c:-74f3" interfaceFunctionName="DELAY_f" ordering="36" parent="5e6a3066:134dff9ba34:-7e89" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="DELAY_f;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="-166.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="1"/><data column="0" line="1" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="7.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"IN_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="IN_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="input"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-2.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-185f5cfa:16739fa449f:-7db5"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="IN_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-185f5cfa:16739fa449f:-7db5"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="368.0"/><data column="1" line="0" realPart="-166.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="1"/><data column="0" line="1" value="1"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"OUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="OUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-2.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-185f5cfa:16739fa449f:-7db3"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="OUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-185f5cfa:16739fa449f:-7db3"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="106.0"/><data column="1" line="0" realPart="-121.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="50.0"/><data column="1" line="0" realPart="50.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="0;0;0;0;0;0;0;0;0;0"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="7.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="9.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"REGISTER_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="REGISTER_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="delay"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="10" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="0.0"/><data column="0" line="2" realPart="0.0"/><data column="0" line="3" realPart="0.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/><data column="0" line="7" realPart="0.0"/><data column="0" line="8" realPart="0.0"/><data column="0" line="9" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-185f5cfa:16739fa449f:-7db1"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="REGISTER_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-185f5cfa:16739fa449f:-7db1"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="131.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.01"/><data column="0" line="1" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="10.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.01"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-185f5cfa:16739fa449f:-7dad"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-185f5cfa:16739fa449f:-7dad"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="213.66666666666669"/><data column="1" line="0" realPart="-134.13333333333338"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="7.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="9.0"/><data column="0" line="1" realPart="10.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-185f5cfa:16739fa449f:-7daa"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-185f5cfa:16739fa449f:-7daa"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="210.0"/><data column="0" line="1" realPart="384.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-96.0"/><data column="0" line="1" realPart="-156.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="64.0"/><data column="0" line="1" realPart="152.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-156.0"/><data column="0" line="1" realPart="-96.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="191.0"/><data column="0" line="1" realPart="224.16666666666669"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-44.0"/><data column="0" line="1" realPart="-123.13333333333338"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="223.00000000000003"/><data column="0" line="1" realPart="181.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-138.13333333333338"/><data column="0" line="1" realPart="-67.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="5" width="1"><data column="0" line="0" realPart="225.33333333333334"/><data column="0" line="1" realPart="276.6"/><data column="0" line="2" realPart="276.6"/><data column="0" line="3" realPart="231.0"/><data column="0" line="4" realPart="191.0"/></ScilabDouble><ScilabDouble height="5" width="1"><data column="0" line="0" realPart="-138.13333333333338"/><data column="0" line="1" realPart="-144.8"/><data column="0" line="2" realPart="-49.0"/><data column="0" line="3" realPart="-49.0"/><data column="0" line="4" realPart="4.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="50.0" width="60.0" x="180.0" y="160.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="128c18ea:1383ab8277c:-74cf" ordering="1" parent="128c18ea:1383ab8277c:-74f3" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="60.0" y="16.0"/></ExplicitOutputPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="128c18ea:1383ab8277c:-74d0" ordering="1" parent="128c18ea:1383ab8277c:-74f3" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><BasicBlock blockType="h" id="128c18ea:1383ab8277c:-74e7" interfaceFunctionName="DELAY_f" ordering="37" parent="5e6a3066:134dff9ba34:-7e89" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="DELAY_f;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="-166.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="1"/><data column="0" line="1" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="7.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"IN_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="IN_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="input"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-2.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-185f5cfa:16739fa449f:-7d9f"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="IN_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-185f5cfa:16739fa449f:-7d9f"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="368.0"/><data column="1" line="0" realPart="-166.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="1"/><data column="0" line="1" value="1"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"OUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="OUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-2.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-185f5cfa:16739fa449f:-7d9d"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="OUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-185f5cfa:16739fa449f:-7d9d"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="106.0"/><data column="1" line="0" realPart="-121.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="50.0"/><data column="1" line="0" realPart="50.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="0;0;0;0;0;0;0;0;0;0"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="7.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="9.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"REGISTER_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="REGISTER_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="delay"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="10" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="0.0"/><data column="0" line="2" realPart="0.0"/><data column="0" line="3" realPart="0.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/><data column="0" line="7" realPart="0.0"/><data column="0" line="8" realPart="0.0"/><data column="0" line="9" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-185f5cfa:16739fa449f:-7d9b"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="REGISTER_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-185f5cfa:16739fa449f:-7d9b"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="131.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.01"/><data column="0" line="1" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="10.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.01"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-185f5cfa:16739fa449f:-7d97"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-185f5cfa:16739fa449f:-7d97"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="213.66666666666669"/><data column="1" line="0" realPart="-134.13333333333338"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="7.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="9.0"/><data column="0" line="1" realPart="10.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-185f5cfa:16739fa449f:-7d94"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-185f5cfa:16739fa449f:-7d94"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="210.0"/><data column="0" line="1" realPart="384.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-96.0"/><data column="0" line="1" realPart="-156.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="64.0"/><data column="0" line="1" realPart="152.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-156.0"/><data column="0" line="1" realPart="-96.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="191.0"/><data column="0" line="1" realPart="224.16666666666669"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-44.0"/><data column="0" line="1" realPart="-123.13333333333338"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="223.00000000000003"/><data column="0" line="1" realPart="181.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-138.13333333333338"/><data column="0" line="1" realPart="-67.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="5" width="1"><data column="0" line="0" realPart="225.33333333333334"/><data column="0" line="1" realPart="276.6"/><data column="0" line="2" realPart="276.6"/><data column="0" line="3" realPart="231.0"/><data column="0" line="4" realPart="191.0"/></ScilabDouble><ScilabDouble height="5" width="1"><data column="0" line="0" realPart="-138.13333333333338"/><data column="0" line="1" realPart="-144.8"/><data column="0" line="2" realPart="-49.0"/><data column="0" line="3" realPart="-49.0"/><data column="0" line="4" realPart="4.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="50.0" width="60.0" x="180.0" y="200.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="128c18ea:1383ab8277c:-74cb" ordering="1" parent="128c18ea:1383ab8277c:-74e7" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="60.0" y="16.0"/></ExplicitOutputPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="128c18ea:1383ab8277c:-74cc" ordering="1" parent="128c18ea:1383ab8277c:-74e7" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitLink id="128c18ea:1383ab8277c:-74de" parent="5e6a3066:134dff9ba34:-7e89" source="128c18ea:1383ab8277c:-74cf" target="5e6a3066:134dff9ba34:-7d56"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="244.0" y="180.0"/><mxPoint as="targetPoint" x="290.0" y="170.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="290.0" y="180.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="128c18ea:1383ab8277c:-74dd" parent="5e6a3066:134dff9ba34:-7e89" source="5e6a3066:134dff9ba34:-7de1" target="128c18ea:1383ab8277c:-74d0"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="176.0" y="150.0"/><mxPoint as="targetPoint" x="170.0" y="180.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="170.0" y="150.0"/><mxPoint x="140.0" y="150.0"/><mxPoint x="140.0" y="180.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="128c18ea:1383ab8277c:-74dc" parent="5e6a3066:134dff9ba34:-7e89" source="128c18ea:1383ab8277c:-74cb" target="5e6a3066:134dff9ba34:-7d5a"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="244.0" y="220.0"/><mxPoint as="targetPoint" x="300.0" y="220.0"/></mxGeometry></ExplicitLink><ExplicitLink id="128c18ea:1383ab8277c:-74da" parent="5e6a3066:134dff9ba34:-7e89" source="5e6a3066:134dff9ba34:-7dd9" target="128c18ea:1383ab8277c:-74cc"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="176.0" y="220.0"/><mxPoint as="targetPoint" x="130.0" y="260.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="130.0" y="220.0"/></Array></mxGeometry></ExplicitLink><BasicBlock blockType="h" id="128c18ea:1383ab8277c:-74d4" interfaceFunctionName="CLOCK_c" ordering="38" parent="5e6a3066:134dff9ba34:-7e89" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="119.0"/><data column="1" line="0" realPart="-150.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-185f5cfa:16739fa449f:-7d89"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-185f5cfa:16739fa449f:-7d89"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.1"/><data column="0" line="1" value="0.1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.1"/><data column="0" line="1" realPart="0.1"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.1"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-185f5cfa:16739fa449f:-7d87"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-185f5cfa:16739fa449f:-7d87"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="123.3773266666667"/><data column="1" line="0" realPart="-169.33333333333331"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="7.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="5.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-185f5cfa:16739fa449f:-7d84"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-185f5cfa:16739fa449f:-7d84"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="100.0"/><data column="0" line="2" realPart="133.8773266666667"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-44.0"/><data column="0" line="1" realPart="-180.0"/><data column="0" line="2" realPart="-158.33333333333331"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="132.71066000000005"/><data column="0" line="1" realPart="149.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-173.33333333333331"/><data column="0" line="1" realPart="-126.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="135.04399333333336"/><data column="0" line="1" realPart="140.70999999999998"/><data column="0" line="2" realPart="100.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-173.33333333333331"/><data column="0" line="1" realPart="-50.0"/><data column="0" line="2" realPart="-50.0"/><data column="0" line="3" realPart="4.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="700.0" y="160.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="128c18ea:1383ab8277c:-74d3" ordering="1" parent="128c18ea:1383ab8277c:-74d4" style="CommandPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><CommandControlLink id="128c18ea:1383ab8277c:-74d2" parent="5e6a3066:134dff9ba34:-7e89" source="128c18ea:1383ab8277c:-74d3" target="-44770f3d:13503faa17d:-7e73"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="720.0" y="204.0"/><mxPoint as="targetPoint" x="720.0" y="230.0"/></mxGeometry></CommandControlLink></root></mxGraphModel><mxCell as="defaultParent" id="5e6a3066:134dff9ba34:-7e89" parent="5e6a3066:134dff9ba34:-7e88"/></XcosDiagram>
\ No newline at end of file diff --git a/Working_Examples/215/CH4/EX4.7/Figure4_7.jpg b/Working_Examples/215/CH4/EX4.7/Figure4_7.jpg Binary files differnew file mode 100755 index 0000000..f089088 --- /dev/null +++ b/Working_Examples/215/CH4/EX4.7/Figure4_7.jpg diff --git a/Working_Examples/215/CH4/EX4.7/Figure4_7_xcos.jpg b/Working_Examples/215/CH4/EX4.7/Figure4_7_xcos.jpg Binary files differnew file mode 100755 index 0000000..a7e1686 --- /dev/null +++ b/Working_Examples/215/CH4/EX4.7/Figure4_7_xcos.jpg diff --git a/Working_Examples/215/CH4/EX4.7/ex4_7.xcos b/Working_Examples/215/CH4/EX4.7/ex4_7.xcos new file mode 100755 index 0000000..f4df90f --- /dev/null +++ b/Working_Examples/215/CH4/EX4.7/ex4_7.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" finalIntegrationTime="30.0" title="ex4_7"><!--Xcos - 1.0 - scilab-5.5.2 - 20160406 2040--><mxGraphModel as="model"><root><mxCell id="-5f02711f:131ec3f74c9:-7da0"/><mxCell id="-5f02711f:131ec3f74c9:-7da1" parent="-5f02711f:131ec3f74c9:-7da0"/><GroundBlock angle="90" dependsOnU="1" id="-5f02711f:131ec3f74c9:-7d90" interfaceFunctionName="Ground" ordering="2" parent="-5f02711f:131ec3f74c9:-7da1" simulationFunctionName="Ground" simulationFunctionType="DEFAULT" style="Ground;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Ground"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="190.0" y="400.0"/></GroundBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-7d8f" ordering="1" parent="-5f02711f:131ec3f74c9:-7d90" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=90;spacingTop=5;flip=false;mirror=false"><Orientation as="orientation" value="NORTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="-5f02711f:131ec3f74c9:-7d87" interfaceFunctionName="Resistor" ordering="3" parent="-5f02711f:131ec3f74c9:-7da1" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="4"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="110.0" y="42.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-7d1c" ordering="1" parent="-5f02711f:131ec3f74c9:-7d87" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-7d1b" ordering="1" parent="-5f02711f:131ec3f74c9:-7d87" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><BasicBlock dependsOnU="1" id="-5f02711f:131ec3f74c9:-7d74" interfaceFunctionName="Resistor" ordering="4" parent="-5f02711f:131ec3f74c9:-7da1" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="5"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="280.0" y="40.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-7d18" ordering="1" parent="-5f02711f:131ec3f74c9:-7d74" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-7d17" ordering="1" parent="-5f02711f:131ec3f74c9:-7d74" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><BasicBlock angle="90" dependsOnU="1" id="-5f02711f:131ec3f74c9:-7d6e" interfaceFunctionName="Resistor" ordering="5" parent="-5f02711f:131ec3f74c9:-7da1" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="2"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="200.0" y="110.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-7d14" ordering="1" parent="-5f02711f:131ec3f74c9:-7d6e" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;spacingTop=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-7d13" ordering="1" parent="-5f02711f:131ec3f74c9:-7d6e" style="ImplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;spacingBottom=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><BasicBlock angle="90" id="-5f02711f:131ec3f74c9:-7d61" interfaceFunctionName="ConstantVoltage" ordering="6" parent="-5f02711f:131ec3f74c9:-7da1" simulationFunctionName="ConstantVoltage" simulationFunctionType="DEFAULT" style="ConstantVoltage;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ConstantVoltage"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="V"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="370.0" y="190.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-7d0c" ordering="1" parent="-5f02711f:131ec3f74c9:-7d61" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;spacingTop=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-7d0b" ordering="1" parent="-5f02711f:131ec3f74c9:-7d61" style="ImplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;spacingBottom=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><BasicBlock angle="270" id="-5f02711f:131ec3f74c9:-7d5e" interfaceFunctionName="ConstantVoltage" ordering="7" parent="-5f02711f:131ec3f74c9:-7da1" simulationFunctionName="ConstantVoltage" simulationFunctionType="DEFAULT" style="ConstantVoltage;rotation=270;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="2"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ConstantVoltage"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="V"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="190.0" y="270.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-7d10" ordering="1" parent="-5f02711f:131ec3f74c9:-7d5e" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=top;spacingBottom=5;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-7d0f" ordering="1" parent="-5f02711f:131ec3f74c9:-7d5e" style="ImplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;spacingTop=5;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitOutputPort><ImplicitLink id="-5f02711f:131ec3f74c9:-7d4f" parent="-5f02711f:131ec3f74c9:-7da1" source="-5f02711f:131ec3f74c9:-7d20" target="-5f02711f:131ec3f74c9:-7d1c"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="70.0" y="188.0"/><mxPoint as="targetPoint" x="110.0" y="60.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="70.0" y="60.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-5f02711f:131ec3f74c9:-7d4d" parent="-5f02711f:131ec3f74c9:-7da1" source="-5f02711f:131ec3f74c9:-7d17" target="-5f02711f:131ec3f74c9:-7d0c"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="324.0" y="60.0"/><mxPoint as="targetPoint" x="390.0" y="190.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="390.0" y="60.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="-5f02711f:131ec3f74c9:-7d4a" ordering="8" parent="-5f02711f:131ec3f74c9:-7da1" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="207.0" y="357.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5f02711f:131ec3f74c9:-7d48" ordering="1" parent="-5f02711f:131ec3f74c9:-7d4a" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5f02711f:131ec3f74c9:-7d47" ordering="2" parent="-5f02711f:131ec3f74c9:-7d4a" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-5f02711f:131ec3f74c9:-7d49" ordering="1" parent="-5f02711f:131ec3f74c9:-7d4a" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-5f02711f:131ec3f74c9:-7d46" parent="-5f02711f:131ec3f74c9:-7da1" source="-5f02711f:131ec3f74c9:-7d1f" target="-5f02711f:131ec3f74c9:-7d49"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="70.0" y="360.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-5f02711f:131ec3f74c9:-7d45" parent="-5f02711f:131ec3f74c9:-7da1" source="-5f02711f:131ec3f74c9:-7d0b" target="-5f02711f:131ec3f74c9:-7d48"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="390.0" y="360.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="-5f02711f:131ec3f74c9:-7d43" ordering="9" parent="-5f02711f:131ec3f74c9:-7da1" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="207.0" y="357.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5f02711f:131ec3f74c9:-7d41" ordering="1" parent="-5f02711f:131ec3f74c9:-7d43" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5f02711f:131ec3f74c9:-7d40" ordering="2" parent="-5f02711f:131ec3f74c9:-7d43" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-5f02711f:131ec3f74c9:-7d42" ordering="1" parent="-5f02711f:131ec3f74c9:-7d43" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-5f02711f:131ec3f74c9:-7d3f" parent="-5f02711f:131ec3f74c9:-7da1" source="-5f02711f:131ec3f74c9:-7d47" target="-5f02711f:131ec3f74c9:-7d42"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-5f02711f:131ec3f74c9:-7d44" parent="-5f02711f:131ec3f74c9:-7da1" source="-5f02711f:131ec3f74c9:-7d40" target="-5f02711f:131ec3f74c9:-7d8f"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="210.0" y="396.0"/><mxPoint as="targetPoint" x="210.0" y="360.0"/></mxGeometry></ImplicitLink><SplitBlock id="-5f02711f:131ec3f74c9:-7d3a" ordering="10" parent="-5f02711f:131ec3f74c9:-7da1" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="217.0" y="57.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5f02711f:131ec3f74c9:-7d38" ordering="1" parent="-5f02711f:131ec3f74c9:-7d3a" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5f02711f:131ec3f74c9:-7d37" ordering="2" parent="-5f02711f:131ec3f74c9:-7d3a" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-5f02711f:131ec3f74c9:-7d39" ordering="1" parent="-5f02711f:131ec3f74c9:-7d3a" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-5f02711f:131ec3f74c9:-7d36" parent="-5f02711f:131ec3f74c9:-7da1" source="-5f02711f:131ec3f74c9:-7d1b" target="-5f02711f:131ec3f74c9:-7d39"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-5f02711f:131ec3f74c9:-7d35" parent="-5f02711f:131ec3f74c9:-7da1" source="-5f02711f:131ec3f74c9:-7d38" target="-5f02711f:131ec3f74c9:-7d18"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-5f02711f:131ec3f74c9:-7d3b" parent="-5f02711f:131ec3f74c9:-7da1" source="-5f02711f:131ec3f74c9:-7d37" target="-5f02711f:131ec3f74c9:-7d14"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="220.0" y="106.0"/><mxPoint as="targetPoint" x="220.0" y="60.0"/></mxGeometry></ImplicitLink><BasicBlock dependsOnU="1" id="-5f02711f:131ec3f74c9:-7d2d" interfaceFunctionName="CSCOPE" ordering="11" parent="-5f02711f:131ec3f74c9:-7da1" simulationFunctionName="cscope" simulationFunctionType="C_OR_FORTRAN" style="CSCOPE;flip=false;mirror=false"><ScilabString as="exprs" height="10" width="1"><data column="0" line="0" value="1 3 5 7 9 11 13 15"/><data column="0" line="1" value="-1"/><data column="0" line="2" value="[]"/><data column="0" line="3" value="[600;400]"/><data column="0" line="4" value="2.3"/><data column="0" line="5" value="2.5"/><data column="0" line="6" value="30"/><data column="0" line="7" value="20"/><data column="0" line="8" value="0"/><data column="0" line="9" value=""/></ScilabString><ScilabDouble as="realParameters" height="4" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="2.3"/><data column="0" line="2" realPart="2.5"/><data column="0" line="3" realPart="30.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="15" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="1.0"/><data column="0" line="4" realPart="3.0"/><data column="0" line="5" realPart="5.0"/><data column="0" line="6" realPart="7.0"/><data column="0" line="7" realPart="9.0"/><data column="0" line="8" realPart="11.0"/><data column="0" line="9" realPart="13.0"/><data column="0" line="10" realPart="15.0"/><data column="0" line="11" realPart="-1.0"/><data column="0" line="12" realPart="-1.0"/><data column="0" line="13" realPart="600.0"/><data column="0" line="14" realPart="400.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="510.0" y="230.0"/></BasicBlock><ControlPort dataType="UNKNOW_TYPE" id="-5f02711f:131ec3f74c9:-7c8f" ordering="1" parent="-5f02711f:131ec3f74c9:-7d2d" style="ControlPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=90;spacingTop=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-7c90" ordering="1" parent="-5f02711f:131ec3f74c9:-7d2d" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><BasicBlock blockType="h" id="-5f02711f:131ec3f74c9:-7d25" interfaceFunctionName="CLOCK_c" ordering="12" parent="-5f02711f:131ec3f74c9:-7da1" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="119.0"/><data column="1" line="0" realPart="-150.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-7ca3f8c0:131f25d7805:-7de1"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-7ca3f8c0:131f25d7805:-7de1"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.1"/><data column="0" line="1" value="0.1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.1"/><data column="0" line="1" realPart="0.1"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.1"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-7ca3f8c0:131f25d7805:-7ddd"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-7ca3f8c0:131f25d7805:-7ddd"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="124.71066000000002"/><data column="1" line="0" realPart="-164.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="8.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="4.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-7ca3f8c0:131f25d7805:-7dd8"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-7ca3f8c0:131f25d7805:-7dd8"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="106.0"/><data column="0" line="2" realPart="135.37732666666668"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="4.0"/><data column="0" line="1" realPart="-204.0"/><data column="0" line="2" realPart="-168.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="136.71066000000002"/><data column="0" line="1" realPart="149.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-152.0"/><data column="0" line="1" realPart="-126.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="138.04399333333336"/><data column="0" line="1" realPart="151.70999999999998"/><data column="0" line="2" realPart="111.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-168.0"/><data column="0" line="1" realPart="-58.0"/><data column="0" line="2" realPart="-58.0"/><data column="0" line="3" realPart="-44.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="510.0" y="150.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="-5f02711f:131ec3f74c9:-7d24" ordering="1" parent="-5f02711f:131ec3f74c9:-7d25" style="CommandPort;align=center;labelPosition=center;verticalLabelPosition=top;rotation=90;spacingBottom=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><CommandControlLink id="-5f02711f:131ec3f74c9:-7d23" parent="-5f02711f:131ec3f74c9:-7da1" source="-5f02711f:131ec3f74c9:-7d24" target="-5f02711f:131ec3f74c9:-7c8f"><mxGeometry as="geometry" x="180.0" y="-62.0"><mxPoint as="sourcePoint" x="530.0" y="194.0"/><mxPoint as="targetPoint" x="530.0" y="228.0"/></mxGeometry></CommandControlLink><VoltageSensorBlock angle="270" dependsOnU="1" id="-5f02711f:131ec3f74c9:-7cfa" interfaceFunctionName="VoltageSensor" ordering="13" parent="-5f02711f:131ec3f74c9:-7da1" simulationFunctionName="VoltageSensor" simulationFunctionType="DEFAULT" style="VoltageSensor;rotation=270;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="VoltageSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="v"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="260.0" y="270.0"/></VoltageSensorBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-7cf8" ordering="2" parent="-5f02711f:131ec3f74c9:-7cfa" style="ExplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=270;spacingTop=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="26.0" y="-8.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-7cf7" ordering="1" parent="-5f02711f:131ec3f74c9:-7cfa" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=top;rotation=270;spacingBottom=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-7cf9" ordering="1" parent="-5f02711f:131ec3f74c9:-7cfa" style="ImplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=90;spacingTop=5;flip=false;mirror=false"><Orientation as="orientation" value="SOUTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="6.0" y="-8.0"/></ImplicitOutputPort><BasicBlock angle="90" dependsOnU="1" id="-5f02711f:131ec3f74c9:-7cc7" interfaceFunctionName="CurrentSensor" ordering="14" parent="-5f02711f:131ec3f74c9:-7da1" simulationFunctionName="CurrentSensor" simulationFunctionType="DEFAULT" style="CurrentSensor;rotation=90;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CurrentSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="i"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="200.0" y="190.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-7cc5" ordering="2" parent="-5f02711f:131ec3f74c9:-7cc7" style="ExplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;rotation=90;spacingBottom=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="26.0" y="40.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-7cc4" ordering="1" parent="-5f02711f:131ec3f74c9:-7cc7" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=90;spacingTop=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-7cc6" ordering="1" parent="-5f02711f:131ec3f74c9:-7cc7" style="ImplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;rotation=90;spacingBottom=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="6.0" y="40.0"/></ImplicitOutputPort><ImplicitLink id="-5f02711f:131ec3f74c9:-7cbb" parent="-5f02711f:131ec3f74c9:-7da1" source="-5f02711f:131ec3f74c9:-7d13" target="-5f02711f:131ec3f74c9:-7cc4"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="220.0" y="186.0"/><mxPoint as="targetPoint" x="220.0" y="150.0"/></mxGeometry></ImplicitLink><SplitBlock id="-5f02711f:131ec3f74c9:-7cb8" ordering="15" parent="-5f02711f:131ec3f74c9:-7da1" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="207.0" y="247.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5f02711f:131ec3f74c9:-7cb6" ordering="1" parent="-5f02711f:131ec3f74c9:-7cb8" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5f02711f:131ec3f74c9:-7cb5" ordering="2" parent="-5f02711f:131ec3f74c9:-7cb8" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-5f02711f:131ec3f74c9:-7cb7" ordering="1" parent="-5f02711f:131ec3f74c9:-7cb8" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-5f02711f:131ec3f74c9:-7cb4" parent="-5f02711f:131ec3f74c9:-7da1" source="-5f02711f:131ec3f74c9:-7d0f" target="-5f02711f:131ec3f74c9:-7cb7"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-5f02711f:131ec3f74c9:-7cb3" parent="-5f02711f:131ec3f74c9:-7da1" source="-5f02711f:131ec3f74c9:-7cc6" target="-5f02711f:131ec3f74c9:-7cb6"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-5f02711f:131ec3f74c9:-7cb9" parent="-5f02711f:131ec3f74c9:-7da1" source="-5f02711f:131ec3f74c9:-7cf9" target="-5f02711f:131ec3f74c9:-7cb5"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="270.0" y="266.0"/><mxPoint as="targetPoint" x="210.0" y="250.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="270.0" y="250.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="-5f02711f:131ec3f74c9:-7cb1" ordering="16" parent="-5f02711f:131ec3f74c9:-7da1" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="207.0" y="337.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5f02711f:131ec3f74c9:-7caf" ordering="1" parent="-5f02711f:131ec3f74c9:-7cb1" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5f02711f:131ec3f74c9:-7cae" ordering="2" parent="-5f02711f:131ec3f74c9:-7cb1" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-5f02711f:131ec3f74c9:-7cb0" ordering="1" parent="-5f02711f:131ec3f74c9:-7cb1" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-5f02711f:131ec3f74c9:-7cad" parent="-5f02711f:131ec3f74c9:-7da1" source="-5f02711f:131ec3f74c9:-7d41" target="-5f02711f:131ec3f74c9:-7cb0"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-5f02711f:131ec3f74c9:-7cac" parent="-5f02711f:131ec3f74c9:-7da1" source="-5f02711f:131ec3f74c9:-7caf" target="-5f02711f:131ec3f74c9:-7d10"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="210.0" y="340.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-5f02711f:131ec3f74c9:-7cb2" parent="-5f02711f:131ec3f74c9:-7da1" source="-5f02711f:131ec3f74c9:-7cae" target="-5f02711f:131ec3f74c9:-7cf7"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="280.0" y="314.0"/><mxPoint as="targetPoint" x="210.0" y="340.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="280.0" y="340.0"/></Array></mxGeometry></ImplicitLink><RoundBlock dependsOnU="1" id="-5f02711f:131ec3f74c9:-7ca2" interfaceFunctionName="PROD_f" ordering="17" parent="-5f02711f:131ec3f74c9:-7da1" simulationFunctionName="prod" simulationFunctionType="TYPE_2" style="PROD_f;flip=false;mirror=false" value="×"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="60.0" width="40.0" x="430.0" y="220.0"/></RoundBlock><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-7ca0" ordering="1" parent="-5f02711f:131ec3f74c9:-7ca2" style="ExplicitInputPort;align=center;rotation=270;flip=false;mirror=false;verticalAlign=bottom;spacing=10.0" value=""><Orientation as="orientation" value="SOUTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="60.0"/></ExplicitInputPort><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-7c9f" ordering="2" parent="-5f02711f:131ec3f74c9:-7ca2" style="ExplicitInputPort;align=left;rotation=0;flip=false;mirror=false;verticalAlign=middle;spacing=10.0" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="26.0"/></ExplicitInputPort><ExplicitOutputPort dataColumns="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-7ca1" ordering="1" parent="-5f02711f:131ec3f74c9:-7ca2" style="ExplicitOutputPort;align=right;rotation=0;flip=false;mirror=false;verticalAlign=middle;spacing=10.0"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="26.0"/></ExplicitOutputPort><ExplicitLink id="-5f02711f:131ec3f74c9:-7c9a" parent="-5f02711f:131ec3f74c9:-7da1" source="-5f02711f:131ec3f74c9:-7cf8" target="-5f02711f:131ec3f74c9:-7c9f"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="290.0" y="266.0"/><mxPoint as="targetPoint" x="420.0" y="270.0"/><Array as="points" scilabClass=""><mxPoint x="290.0" y="250.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="-5f02711f:131ec3f74c9:-7c99" parent="-5f02711f:131ec3f74c9:-7da1" source="-5f02711f:131ec3f74c9:-7cc5" target="-5f02711f:131ec3f74c9:-7ca0"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="230.0" y="234.0"/><mxPoint as="targetPoint" x="420.0" y="240.0"/><Array as="points" scilabClass=""><mxPoint x="340.0" y="240.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="-5f02711f:131ec3f74c9:-7c92" parent="-5f02711f:131ec3f74c9:-7da1" source="-5f02711f:131ec3f74c9:-7ca1" target="-5f02711f:131ec3f74c9:-7c90"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="464.0" y="250.0"/><mxPoint as="targetPoint" x="500.0" y="250.0"/></mxGeometry></ExplicitLink><BasicBlock angle="90" id="-5f02711f:131ec3f74c9:-7d98" interfaceFunctionName="ConstantVoltage" ordering="1" parent="-5f02711f:131ec3f74c9:-7da1" simulationFunctionName="ConstantVoltage" simulationFunctionType="DEFAULT" style="ConstantVoltage;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="5"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ConstantVoltage"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="V"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="50.0" y="192.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-7d20" ordering="1" parent="-5f02711f:131ec3f74c9:-7d98" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;spacingTop=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-7d1f" ordering="1" parent="-5f02711f:131ec3f74c9:-7d98" style="ImplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;spacingBottom=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><TextBlock id="-7ca3f8c0:131f25d7805:-7dd4" parent="-5f02711f:131ec3f74c9:-7da1" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="Mesh Analysis<br>Example 4.7"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="Mesh Analysis<br>Example 4.7"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="Mesh Analysis<br>Example 4.7"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="50.0" y="10.0"/></TextBlock></root></mxGraphModel><mxCell as="defaultParent" id="-5f02711f:131ec3f74c9:-7da1" parent="-5f02711f:131ec3f74c9:-7da0"/></XcosDiagram>
\ No newline at end of file diff --git a/Working_Examples/215/CH4/EX4.8/Figure4_8.jpg b/Working_Examples/215/CH4/EX4.8/Figure4_8.jpg Binary files differnew file mode 100755 index 0000000..ffc615a --- /dev/null +++ b/Working_Examples/215/CH4/EX4.8/Figure4_8.jpg diff --git a/Working_Examples/215/CH4/EX4.8/Figure4_8_xcos.jpg b/Working_Examples/215/CH4/EX4.8/Figure4_8_xcos.jpg Binary files differnew file mode 100755 index 0000000..60246fa --- /dev/null +++ b/Working_Examples/215/CH4/EX4.8/Figure4_8_xcos.jpg diff --git a/Working_Examples/215/CH4/EX4.8/ex4_8.xcos b/Working_Examples/215/CH4/EX4.8/ex4_8.xcos new file mode 100755 index 0000000..77c79e4 --- /dev/null +++ b/Working_Examples/215/CH4/EX4.8/ex4_8.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" finalIntegrationTime="30.0" title="ex4_8"><!--Xcos - 1.0 - scilab-5.5.2 - 20160406 2040--><mxGraphModel as="model"><root><mxCell id="-5f02711f:131ec3f74c9:-7c8c"/><mxCell id="-5f02711f:131ec3f74c9:-7c8d" parent="-5f02711f:131ec3f74c9:-7c8c"/><GroundBlock angle="90" dependsOnU="1" id="-5f02711f:131ec3f74c9:-7c7c" interfaceFunctionName="Ground" ordering="1" parent="-5f02711f:131ec3f74c9:-7c8d" simulationFunctionName="Ground" simulationFunctionType="DEFAULT" style="Ground;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Ground"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="270.0" y="470.0"/></GroundBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-7c7b" ordering="1" parent="-5f02711f:131ec3f74c9:-7c7c" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=90;spacingTop=5;flip=false;mirror=false"><Orientation as="orientation" value="NORTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock angle="90" dependsOnU="1" id="-5f02711f:131ec3f74c9:-7c73" interfaceFunctionName="Resistor" ordering="2" parent="-5f02711f:131ec3f74c9:-7c8d" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="270.0" y="120.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-7bb3" ordering="1" parent="-5f02711f:131ec3f74c9:-7c73" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;spacingTop=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-7bb2" ordering="1" parent="-5f02711f:131ec3f74c9:-7c73" style="ImplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;spacingBottom=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><BasicBlock dependsOnU="1" id="-5f02711f:131ec3f74c9:-7c67" interfaceFunctionName="Resistor" ordering="3" parent="-5f02711f:131ec3f74c9:-7c8d" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=0;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="3"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="350.0" y="200.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-7baf" ordering="1" parent="-5f02711f:131ec3f74c9:-7c67" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-7bae" ordering="1" parent="-5f02711f:131ec3f74c9:-7c67" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><BasicBlock angle="90" dependsOnU="1" id="-5f02711f:131ec3f74c9:-7c64" interfaceFunctionName="Resistor" ordering="4" parent="-5f02711f:131ec3f74c9:-7c8d" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="2"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="430.0" y="120.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-7bab" ordering="1" parent="-5f02711f:131ec3f74c9:-7c64" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;spacingTop=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-7baa" ordering="1" parent="-5f02711f:131ec3f74c9:-7c64" style="ImplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;spacingBottom=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><BasicBlock angle="90" id="-5f02711f:131ec3f74c9:-7c58" interfaceFunctionName="ConstantVoltage" ordering="5" parent="-5f02711f:131ec3f74c9:-7c8d" simulationFunctionName="ConstantVoltage" simulationFunctionType="DEFAULT" style="ConstantVoltage;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="6"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ConstantVoltage"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="V"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="270.0" y="260.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-7ba3" ordering="1" parent="-5f02711f:131ec3f74c9:-7c58" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;spacingTop=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-7ba2" ordering="1" parent="-5f02711f:131ec3f74c9:-7c58" style="ImplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;spacingBottom=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><BasicBlock angle="90" dependsOnU="1" id="-5f02711f:131ec3f74c9:-7c4f" interfaceFunctionName="Resistor" ordering="6" parent="-5f02711f:131ec3f74c9:-7c8d" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="2"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="270.0" y="350.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-7b9f" ordering="1" parent="-5f02711f:131ec3f74c9:-7c4f" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;spacingTop=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-7b9e" ordering="1" parent="-5f02711f:131ec3f74c9:-7c4f" style="ImplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;spacingBottom=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><BasicBlock angle="90" dependsOnU="1" id="-5f02711f:131ec3f74c9:-7c4c" interfaceFunctionName="Resistor" ordering="7" parent="-5f02711f:131ec3f74c9:-7c8d" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="420.0" y="330.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-7ba7" ordering="1" parent="-5f02711f:131ec3f74c9:-7c4c" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;spacingTop=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-7ba6" ordering="1" parent="-5f02711f:131ec3f74c9:-7c4c" style="ImplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;spacingBottom=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><BasicBlock dependsOnU="1" id="-5f02711f:131ec3f74c9:-7c35" interfaceFunctionName="CurrentSensor" ordering="8" parent="-5f02711f:131ec3f74c9:-7c8d" simulationFunctionName="CurrentSensor" simulationFunctionType="DEFAULT" style="CurrentSensor;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CurrentSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="i"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="160.0" y="70.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-7c33" ordering="2" parent="-5f02711f:131ec3f74c9:-7c35" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="26.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-7c32" ordering="1" parent="-5f02711f:131ec3f74c9:-7c35" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-7c34" ordering="1" parent="-5f02711f:131ec3f74c9:-7c35" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="6.0"/></ImplicitOutputPort><BasicBlock dependsOnU="1" id="-5f02711f:131ec3f74c9:-7c29" interfaceFunctionName="CurrentSensor" ordering="9" parent="-5f02711f:131ec3f74c9:-7c8d" simulationFunctionName="CurrentSensor" simulationFunctionType="DEFAULT" style="CurrentSensor;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CurrentSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="i"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="340.0" y="60.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-7c27" ordering="2" parent="-5f02711f:131ec3f74c9:-7c29" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="26.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-7c26" ordering="1" parent="-5f02711f:131ec3f74c9:-7c29" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-7c28" ordering="1" parent="-5f02711f:131ec3f74c9:-7c29" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="6.0"/></ImplicitOutputPort><BasicBlock angle="90" dependsOnU="1" id="-5f02711f:131ec3f74c9:-7c25" interfaceFunctionName="CurrentSensor" ordering="10" parent="-5f02711f:131ec3f74c9:-7c8d" simulationFunctionName="CurrentSensor" simulationFunctionType="DEFAULT" style="CurrentSensor;rotation=90;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CurrentSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="i"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="430.0" y="250.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-7c23" ordering="2" parent="-5f02711f:131ec3f74c9:-7c25" style="ExplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;rotation=90;spacingBottom=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="26.0" y="40.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-7c22" ordering="1" parent="-5f02711f:131ec3f74c9:-7c25" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=90;spacingTop=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-7c24" ordering="1" parent="-5f02711f:131ec3f74c9:-7c25" style="ImplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;rotation=90;spacingBottom=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="6.0" y="40.0"/></ImplicitOutputPort><ImplicitLink id="-5f02711f:131ec3f74c9:-7c15" parent="-5f02711f:131ec3f74c9:-7c8d" source="-5f02711f:131ec3f74c9:-7bb7" target="-5f02711f:131ec3f74c9:-7c32"><mxGeometry as="geometry" x="70.0" y="40.0"><mxPoint as="sourcePoint" x="130.0" y="236.0"/><mxPoint as="targetPoint" x="160.0" y="90.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="130.0" y="90.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-5f02711f:131ec3f74c9:-7c13" parent="-5f02711f:131ec3f74c9:-7c8d" source="-5f02711f:131ec3f74c9:-7c28" target="-5f02711f:131ec3f74c9:-7bab"><mxGeometry as="geometry" x="70.0" y="40.0"><mxPoint as="sourcePoint" x="384.0" y="70.0"/><mxPoint as="targetPoint" x="450.0" y="120.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="440.0" y="70.0"/><mxPoint x="450.0" y="70.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="-5f02711f:131ec3f74c9:-7c11" ordering="11" parent="-5f02711f:131ec3f74c9:-7c8d" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="287.0" y="77.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5f02711f:131ec3f74c9:-7c0f" ordering="1" parent="-5f02711f:131ec3f74c9:-7c11" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5f02711f:131ec3f74c9:-7c0e" ordering="2" parent="-5f02711f:131ec3f74c9:-7c11" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-5f02711f:131ec3f74c9:-7c10" ordering="1" parent="-5f02711f:131ec3f74c9:-7c11" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-5f02711f:131ec3f74c9:-7c0d" parent="-5f02711f:131ec3f74c9:-7c8d" source="-5f02711f:131ec3f74c9:-7c34" target="-5f02711f:131ec3f74c9:-7c10"><mxGeometry as="geometry" height="80.0" width="80.0" x="70.0" y="40.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-5f02711f:131ec3f74c9:-7c0c" parent="-5f02711f:131ec3f74c9:-7c8d" source="-5f02711f:131ec3f74c9:-7c0f" target="-5f02711f:131ec3f74c9:-7c26"><mxGeometry as="geometry" height="80.0" width="80.0" x="70.0" y="40.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-5f02711f:131ec3f74c9:-7c12" parent="-5f02711f:131ec3f74c9:-7c8d" source="-5f02711f:131ec3f74c9:-7c0e" target="-5f02711f:131ec3f74c9:-7bb3"><mxGeometry as="geometry" x="70.0" y="40.0"><mxPoint as="sourcePoint" x="290.0" y="116.0"/><mxPoint as="targetPoint" x="290.0" y="80.0"/></mxGeometry></ImplicitLink><ImplicitLink id="-5f02711f:131ec3f74c9:-7c0a" parent="-5f02711f:131ec3f74c9:-7c8d" source="-5f02711f:131ec3f74c9:-7c24" target="-5f02711f:131ec3f74c9:-7ba7"><mxGeometry as="geometry" x="70.0" y="40.0"><mxPoint as="sourcePoint" x="440.0" y="294.0"/><mxPoint as="targetPoint" x="440.0" y="330.0"/></mxGeometry></ImplicitLink><SplitBlock id="-5f02711f:131ec3f74c9:-7c08" ordering="12" parent="-5f02711f:131ec3f74c9:-7c8d" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="447.0" y="217.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5f02711f:131ec3f74c9:-7c06" ordering="1" parent="-5f02711f:131ec3f74c9:-7c08" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5f02711f:131ec3f74c9:-7c05" ordering="2" parent="-5f02711f:131ec3f74c9:-7c08" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-5f02711f:131ec3f74c9:-7c07" ordering="1" parent="-5f02711f:131ec3f74c9:-7c08" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-5f02711f:131ec3f74c9:-7c04" parent="-5f02711f:131ec3f74c9:-7c8d" source="-5f02711f:131ec3f74c9:-7baa" target="-5f02711f:131ec3f74c9:-7c07"><mxGeometry as="geometry" height="80.0" width="80.0" x="70.0" y="40.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-5f02711f:131ec3f74c9:-7c03" parent="-5f02711f:131ec3f74c9:-7c8d" source="-5f02711f:131ec3f74c9:-7c06" target="-5f02711f:131ec3f74c9:-7c22"><mxGeometry as="geometry" height="80.0" width="80.0" x="70.0" y="40.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-5f02711f:131ec3f74c9:-7c09" parent="-5f02711f:131ec3f74c9:-7c8d" source="-5f02711f:131ec3f74c9:-7bae" target="-5f02711f:131ec3f74c9:-7c05"><mxGeometry as="geometry" x="70.0" y="40.0"><mxPoint as="sourcePoint" x="394.0" y="220.0"/><mxPoint as="targetPoint" x="450.0" y="220.0"/></mxGeometry></ImplicitLink><SplitBlock id="-5f02711f:131ec3f74c9:-7c00" ordering="13" parent="-5f02711f:131ec3f74c9:-7c8d" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="287.0" y="217.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5f02711f:131ec3f74c9:-7bfe" ordering="1" parent="-5f02711f:131ec3f74c9:-7c00" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5f02711f:131ec3f74c9:-7bfd" ordering="2" parent="-5f02711f:131ec3f74c9:-7c00" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-5f02711f:131ec3f74c9:-7bff" ordering="1" parent="-5f02711f:131ec3f74c9:-7c00" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-5f02711f:131ec3f74c9:-7bfc" parent="-5f02711f:131ec3f74c9:-7c8d" source="-5f02711f:131ec3f74c9:-7bb2" target="-5f02711f:131ec3f74c9:-7bff"><mxGeometry as="geometry" height="80.0" width="80.0" x="70.0" y="40.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-5f02711f:131ec3f74c9:-7bfb" parent="-5f02711f:131ec3f74c9:-7c8d" source="-5f02711f:131ec3f74c9:-7bfe" target="-5f02711f:131ec3f74c9:-7ba3"><mxGeometry as="geometry" height="80.0" width="80.0" x="70.0" y="40.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-5f02711f:131ec3f74c9:-7c01" parent="-5f02711f:131ec3f74c9:-7c8d" source="-5f02711f:131ec3f74c9:-7bfd" target="-5f02711f:131ec3f74c9:-7baf"><mxGeometry as="geometry" x="70.0" y="40.0"><mxPoint as="sourcePoint" x="346.0" y="220.0"/><mxPoint as="targetPoint" x="290.0" y="220.0"/></mxGeometry></ImplicitLink><ImplicitLink id="-5f02711f:131ec3f74c9:-7bfa" parent="-5f02711f:131ec3f74c9:-7c8d" source="-5f02711f:131ec3f74c9:-7ba2" target="-5f02711f:131ec3f74c9:-7b9f"><mxGeometry as="geometry" x="70.0" y="40.0"><mxPoint as="sourcePoint" x="290.0" y="304.0"/><mxPoint as="targetPoint" x="290.0" y="350.0"/></mxGeometry></ImplicitLink><SplitBlock id="-5f02711f:131ec3f74c9:-7bf7" ordering="14" parent="-5f02711f:131ec3f74c9:-7c8d" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="287.0" y="427.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5f02711f:131ec3f74c9:-7bf5" ordering="1" parent="-5f02711f:131ec3f74c9:-7bf7" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5f02711f:131ec3f74c9:-7bf4" ordering="2" parent="-5f02711f:131ec3f74c9:-7bf7" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-5f02711f:131ec3f74c9:-7bf6" ordering="1" parent="-5f02711f:131ec3f74c9:-7bf7" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-5f02711f:131ec3f74c9:-7bf3" parent="-5f02711f:131ec3f74c9:-7c8d" source="-5f02711f:131ec3f74c9:-7bb6" target="-5f02711f:131ec3f74c9:-7bf6"><mxGeometry as="geometry" height="80.0" width="80.0" x="70.0" y="40.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="130.0" y="430.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-5f02711f:131ec3f74c9:-7bf2" parent="-5f02711f:131ec3f74c9:-7c8d" source="-5f02711f:131ec3f74c9:-7ba6" target="-5f02711f:131ec3f74c9:-7bf5"><mxGeometry as="geometry" height="80.0" width="80.0" x="70.0" y="40.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="440.0" y="430.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="-5f02711f:131ec3f74c9:-7bf0" ordering="15" parent="-5f02711f:131ec3f74c9:-7c8d" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="287.0" y="427.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5f02711f:131ec3f74c9:-7bee" ordering="1" parent="-5f02711f:131ec3f74c9:-7bf0" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5f02711f:131ec3f74c9:-7bed" ordering="2" parent="-5f02711f:131ec3f74c9:-7bf0" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-5f02711f:131ec3f74c9:-7bef" ordering="1" parent="-5f02711f:131ec3f74c9:-7bf0" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-5f02711f:131ec3f74c9:-7bec" parent="-5f02711f:131ec3f74c9:-7c8d" source="-5f02711f:131ec3f74c9:-7b9e" target="-5f02711f:131ec3f74c9:-7bef"><mxGeometry as="geometry" height="80.0" width="80.0" x="70.0" y="40.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-5f02711f:131ec3f74c9:-7beb" parent="-5f02711f:131ec3f74c9:-7c8d" source="-5f02711f:131ec3f74c9:-7bf4" target="-5f02711f:131ec3f74c9:-7bee"><mxGeometry as="geometry" height="80.0" width="80.0" x="70.0" y="40.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="290.0" y="430.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-5f02711f:131ec3f74c9:-7bf1" parent="-5f02711f:131ec3f74c9:-7c8d" source="-5f02711f:131ec3f74c9:-7bed" target="-5f02711f:131ec3f74c9:-7c7b"><mxGeometry as="geometry" x="70.0" y="40.0"><mxPoint as="sourcePoint" x="290.0" y="466.0"/><mxPoint as="targetPoint" x="290.0" y="430.0"/></mxGeometry></ImplicitLink><BasicBlock dependsOnU="1" id="-5f02711f:131ec3f74c9:-7be1" interfaceFunctionName="CMSCOPE" ordering="16" parent="-5f02711f:131ec3f74c9:-7c8d" simulationFunctionName="cmscope" simulationFunctionType="C_OR_FORTRAN" style="CMSCOPE;flip=false;mirror=false"><ScilabString as="exprs" height="11" width="1"><data column="0" line="0" value="1 1"/><data column="0" line="1" value="1 3 5 7 9 11 13 15"/><data column="0" line="2" value="-1"/><data column="0" line="3" value="[]"/><data column="0" line="4" value="[]"/><data column="0" line="5" value="-1 -5"/><data column="0" line="6" value="1 5"/><data column="0" line="7" value="30 30"/><data column="0" line="8" value="20"/><data column="0" line="9" value="0"/><data column="0" line="10" value=""/></ScilabString><ScilabDouble as="realParameters" height="7" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="30.0"/><data column="0" line="2" realPart="30.0"/><data column="0" line="3" realPart="-1.0"/><data column="0" line="4" realPart="1.0"/><data column="0" line="5" realPart="-5.0"/><data column="0" line="6" realPart="5.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="11" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="2.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="-1.0"/><data column="0" line="4" realPart="-1.0"/><data column="0" line="5" realPart="-1.0"/><data column="0" line="6" realPart="-1.0"/><data column="0" line="7" realPart="1.0"/><data column="0" line="8" realPart="1.0"/><data column="0" line="9" realPart="1.0"/><data column="0" line="10" realPart="3.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="530.0" y="210.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-7bdf" ordering="2" parent="-5f02711f:131ec3f74c9:-7be1" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="26.0"/></ExplicitInputPort><ControlPort dataType="UNKNOW_TYPE" id="-5f02711f:131ec3f74c9:-7bde" ordering="1" parent="-5f02711f:131ec3f74c9:-7be1" style="ControlPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=90;spacingTop=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-7be0" ordering="1" parent="-5f02711f:131ec3f74c9:-7be1" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ExplicitInputPort><BasicBlock dependsOnU="1" id="-5f02711f:131ec3f74c9:-7bd6" interfaceFunctionName="CSCOPE" ordering="17" parent="-5f02711f:131ec3f74c9:-7c8d" simulationFunctionName="cscope" simulationFunctionType="C_OR_FORTRAN" style="CSCOPE;flip=false;mirror=false"><ScilabString as="exprs" height="10" width="1"><data column="0" line="0" value="1 3 5 7 9 11 13 15"/><data column="0" line="1" value="-1"/><data column="0" line="2" value="[]"/><data column="0" line="3" value="[600;400]"/><data column="0" line="4" value="2"/><data column="0" line="5" value="4"/><data column="0" line="6" value="30"/><data column="0" line="7" value="20"/><data column="0" line="8" value="0"/><data column="0" line="9" value=""/></ScilabString><ScilabDouble as="realParameters" height="4" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="2.0"/><data column="0" line="2" realPart="4.0"/><data column="0" line="3" realPart="30.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="15" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="1.0"/><data column="0" line="4" realPart="3.0"/><data column="0" line="5" realPart="5.0"/><data column="0" line="6" realPart="7.0"/><data column="0" line="7" realPart="9.0"/><data column="0" line="8" realPart="11.0"/><data column="0" line="9" realPart="13.0"/><data column="0" line="10" realPart="15.0"/><data column="0" line="11" realPart="-1.0"/><data column="0" line="12" realPart="-1.0"/><data column="0" line="13" realPart="600.0"/><data column="0" line="14" realPart="400.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="210.0" y="220.0"/></BasicBlock><ControlPort dataType="UNKNOW_TYPE" id="-5f02711f:131ec3f74c9:-7b9a" ordering="1" parent="-5f02711f:131ec3f74c9:-7bd6" style="ControlPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=90;spacingTop=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-7b9b" ordering="1" parent="-5f02711f:131ec3f74c9:-7bd6" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><BasicBlock blockType="h" id="-5f02711f:131ec3f74c9:-7bce" interfaceFunctionName="CLOCK_c" ordering="18" parent="-5f02711f:131ec3f74c9:-7c8d" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="119.0"/><data column="1" line="0" realPart="-150.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-7ca3f8c0:131f25d7805:-7d71"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-7ca3f8c0:131f25d7805:-7d71"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.1"/><data column="0" line="1" value="0.1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.1"/><data column="0" line="1" realPart="0.1"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.1"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-7ca3f8c0:131f25d7805:-7d6d"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-7ca3f8c0:131f25d7805:-7d6d"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="124.71066000000002"/><data column="1" line="0" realPart="-164.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="8.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="4.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-7ca3f8c0:131f25d7805:-7d68"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-7ca3f8c0:131f25d7805:-7d68"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="106.0"/><data column="0" line="2" realPart="135.37732666666668"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="4.0"/><data column="0" line="1" realPart="-204.0"/><data column="0" line="2" realPart="-168.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="136.71066000000002"/><data column="0" line="1" realPart="149.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-152.0"/><data column="0" line="1" realPart="-126.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="138.04399333333336"/><data column="0" line="1" realPart="151.70999999999998"/><data column="0" line="2" realPart="111.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-168.0"/><data column="0" line="1" realPart="-58.0"/><data column="0" line="2" realPart="-58.0"/><data column="0" line="3" realPart="-44.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="210.0" y="130.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="-5f02711f:131ec3f74c9:-7bcd" ordering="1" parent="-5f02711f:131ec3f74c9:-7bce" style="CommandPort;align=center;labelPosition=center;verticalLabelPosition=top;rotation=90;spacingBottom=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><BasicBlock blockType="h" id="-5f02711f:131ec3f74c9:-7bc3" interfaceFunctionName="CLOCK_c" ordering="19" parent="-5f02711f:131ec3f74c9:-7c8d" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="119.0"/><data column="1" line="0" realPart="-150.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-7ca3f8c0:131f25d7805:-7d5f"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-7ca3f8c0:131f25d7805:-7d5f"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.1"/><data column="0" line="1" value="0.1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.1"/><data column="0" line="1" realPart="0.1"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.1"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-7ca3f8c0:131f25d7805:-7d5b"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-7ca3f8c0:131f25d7805:-7d5b"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="124.71066000000002"/><data column="1" line="0" realPart="-164.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="8.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="4.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-7ca3f8c0:131f25d7805:-7d56"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-7ca3f8c0:131f25d7805:-7d56"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="106.0"/><data column="0" line="2" realPart="135.37732666666668"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="4.0"/><data column="0" line="1" realPart="-204.0"/><data column="0" line="2" realPart="-168.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="136.71066000000002"/><data column="0" line="1" realPart="149.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-152.0"/><data column="0" line="1" realPart="-126.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="138.04399333333336"/><data column="0" line="1" realPart="151.70999999999998"/><data column="0" line="2" realPart="111.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-168.0"/><data column="0" line="1" realPart="-58.0"/><data column="0" line="2" realPart="-58.0"/><data column="0" line="3" realPart="-44.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="530.0" y="120.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="-5f02711f:131ec3f74c9:-7bc2" ordering="1" parent="-5f02711f:131ec3f74c9:-7bc3" style="CommandPort;align=center;labelPosition=center;verticalLabelPosition=top;rotation=90;spacingBottom=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><ExplicitLink id="-5f02711f:131ec3f74c9:-7bbd" parent="-5f02711f:131ec3f74c9:-7c8d" source="-5f02711f:131ec3f74c9:-7c33" target="-5f02711f:131ec3f74c9:-7b9b"><mxGeometry as="geometry" x="70.0" y="40.0"><mxPoint as="sourcePoint" x="204.0" y="100.0"/><mxPoint as="targetPoint" x="200.0" y="240.0"/></mxGeometry></ExplicitLink><CommandControlLink id="-5f02711f:131ec3f74c9:-7bbc" parent="-5f02711f:131ec3f74c9:-7c8d" source="-5f02711f:131ec3f74c9:-7bcd" target="-5f02711f:131ec3f74c9:-7b9a"><mxGeometry as="geometry" x="70.0" y="40.0"><mxPoint as="sourcePoint" x="230.0" y="174.0"/><mxPoint as="targetPoint" x="230.0" y="210.0"/></mxGeometry></CommandControlLink><ExplicitLink id="-5f02711f:131ec3f74c9:-7bbb" parent="-5f02711f:131ec3f74c9:-7c8d" source="-5f02711f:131ec3f74c9:-7c27" target="-5f02711f:131ec3f74c9:-7be0"><mxGeometry as="geometry" x="70.0" y="40.0"><mxPoint as="sourcePoint" x="384.0" y="90.0"/><mxPoint as="targetPoint" x="530.0" y="220.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="480.0" y="90.0"/><mxPoint x="480.0" y="220.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="-5f02711f:131ec3f74c9:-7bba" parent="-5f02711f:131ec3f74c9:-7c8d" source="-5f02711f:131ec3f74c9:-7c23" target="-5f02711f:131ec3f74c9:-7bdf"><mxGeometry as="geometry" x="70.0" y="40.0"><mxPoint as="sourcePoint" x="460.0" y="294.0"/><mxPoint as="targetPoint" x="520.0" y="240.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="460.0" y="310.0"/><mxPoint x="480.0" y="310.0"/><mxPoint x="480.0" y="240.0"/><mxPoint x="530.0" y="240.0"/></Array></mxGeometry></ExplicitLink><CommandControlLink id="-5f02711f:131ec3f74c9:-7bb9" parent="-5f02711f:131ec3f74c9:-7c8d" source="-5f02711f:131ec3f74c9:-7bc2" target="-5f02711f:131ec3f74c9:-7bde"><mxGeometry as="geometry" x="70.0" y="40.0"><mxPoint as="sourcePoint" x="550.0" y="164.0"/><mxPoint as="targetPoint" x="550.0" y="210.0"/></mxGeometry></CommandControlLink><BasicBlock angle="90" id="-5f02711f:131ec3f74c9:-7c84" interfaceFunctionName="ConstantVoltage" ordering="20" parent="-5f02711f:131ec3f74c9:-7c8d" simulationFunctionName="ConstantVoltage" simulationFunctionType="DEFAULT" style="ConstantVoltage;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="7"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="7.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ConstantVoltage"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="V"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="7.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="110.0" y="240.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-7bb7" ordering="1" parent="-5f02711f:131ec3f74c9:-7c84" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;spacingTop=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-7bb6" ordering="1" parent="-5f02711f:131ec3f74c9:-7c84" style="ImplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;spacingBottom=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><TextBlock id="-7ca3f8c0:131f25d7805:-7d52" parent="-5f02711f:131ec3f74c9:-7c8d" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="Mesh Analysis<br>Example 4.8"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="Mesh Analysis<br>Example 4.8"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="Mesh Analysis<br>Example 4.8"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="70.0" y="20.0"/></TextBlock></root></mxGraphModel><mxCell as="defaultParent" id="-5f02711f:131ec3f74c9:-7c8d" parent="-5f02711f:131ec3f74c9:-7c8c"/></XcosDiagram>
\ No newline at end of file diff --git a/Working_Examples/215/CH4/EX4.9/Figure4_9.jpg b/Working_Examples/215/CH4/EX4.9/Figure4_9.jpg Binary files differnew file mode 100755 index 0000000..4c8912b --- /dev/null +++ b/Working_Examples/215/CH4/EX4.9/Figure4_9.jpg diff --git a/Working_Examples/215/CH4/EX4.9/Figure4_9_xcos.jpg b/Working_Examples/215/CH4/EX4.9/Figure4_9_xcos.jpg Binary files differnew file mode 100755 index 0000000..a3be4e0 --- /dev/null +++ b/Working_Examples/215/CH4/EX4.9/Figure4_9_xcos.jpg diff --git a/Working_Examples/215/CH4/EX4.9/ex4_9.xcos b/Working_Examples/215/CH4/EX4.9/ex4_9.xcos new file mode 100755 index 0000000..85f9d96 --- /dev/null +++ b/Working_Examples/215/CH4/EX4.9/ex4_9.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" finalIntegrationTime="30.0" title="ex4_9"><!--Xcos - 1.0 - scilab-5.5.2 - 20160406 2040--><mxGraphModel as="model"><root><mxCell id="-5f02711f:131ec3f74c9:-7e52"/><mxCell id="-5f02711f:131ec3f74c9:-7e53" parent="-5f02711f:131ec3f74c9:-7e52"/><BasicBlock angle="180" dependsOnT="1" id="-5f02711f:131ec3f74c9:-7e3e" interfaceFunctionName="CVS" ordering="2" parent="-5f02711f:131ec3f74c9:-7e53" simulationFunctionName="CVS" simulationFunctionType="DEFAULT" style="CVS;rotation=180;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CVS"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="vin"/><data column="0" line="1" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="110.0" y="132.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-7e3c" ordering="1" parent="-5f02711f:131ec3f74c9:-7e3e" style="ExplicitInputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=180;spacingRight=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="6.0"/></ExplicitInputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-7e3b" ordering="2" parent="-5f02711f:131ec3f74c9:-7e3e" style="ImplicitInputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=180;spacingRight=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="26.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-7e3d" ordering="1" parent="-5f02711f:131ec3f74c9:-7e3e" style="ImplicitOutputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=180;spacingLeft=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitOutputPort><BasicBlock angle="90" id="-5f02711f:131ec3f74c9:-7e3a" interfaceFunctionName="ConstantVoltage" ordering="3" parent="-5f02711f:131ec3f74c9:-7e53" simulationFunctionName="ConstantVoltage" simulationFunctionType="DEFAULT" style="ConstantVoltage;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="3"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ConstantVoltage"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="V"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="430.0" y="242.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-7db0" ordering="1" parent="-5f02711f:131ec3f74c9:-7e3a" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;spacingTop=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-7daf" ordering="1" parent="-5f02711f:131ec3f74c9:-7e3a" style="ImplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;spacingBottom=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><GroundBlock angle="90" dependsOnU="1" id="-5f02711f:131ec3f74c9:-7e32" interfaceFunctionName="Ground" ordering="4" parent="-5f02711f:131ec3f74c9:-7e53" simulationFunctionName="Ground" simulationFunctionType="DEFAULT" style="Ground;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Ground"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="200.0" y="400.0"/></GroundBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-7e31" ordering="1" parent="-5f02711f:131ec3f74c9:-7e32" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=90;spacingTop=5;flip=false;mirror=false"><Orientation as="orientation" value="NORTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="-5f02711f:131ec3f74c9:-7e29" interfaceFunctionName="Resistor" ordering="5" parent="-5f02711f:131ec3f74c9:-7e53" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="2"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="280.0" y="140.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-7db4" ordering="1" parent="-5f02711f:131ec3f74c9:-7e29" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-7db3" ordering="1" parent="-5f02711f:131ec3f74c9:-7e29" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><BasicBlock dependsOnU="1" id="-5f02711f:131ec3f74c9:-7e1f" interfaceFunctionName="Resistor" ordering="6" parent="-5f02711f:131ec3f74c9:-7e53" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="4"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="110.0" y="320.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-7dbc" ordering="1" parent="-5f02711f:131ec3f74c9:-7e1f" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-7dbb" ordering="1" parent="-5f02711f:131ec3f74c9:-7e1f" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><BasicBlock angle="90" dependsOnU="1" id="-5f02711f:131ec3f74c9:-7e16" interfaceFunctionName="Resistor" ordering="7" parent="-5f02711f:131ec3f74c9:-7e53" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="4"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="200.0" y="242.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-7db8" ordering="1" parent="-5f02711f:131ec3f74c9:-7e16" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;spacingTop=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-7db7" ordering="1" parent="-5f02711f:131ec3f74c9:-7e16" style="ImplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;spacingBottom=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><BasicBlock dependsOnU="1" id="-5f02711f:131ec3f74c9:-7e08" interfaceFunctionName="CurrentSensor" ordering="8" parent="-5f02711f:131ec3f74c9:-7e53" simulationFunctionName="CurrentSensor" simulationFunctionType="DEFAULT" style="CurrentSensor;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CurrentSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="i"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="370.0" y="140.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-7e06" ordering="2" parent="-5f02711f:131ec3f74c9:-7e08" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="26.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-7e05" ordering="1" parent="-5f02711f:131ec3f74c9:-7e08" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-7e07" ordering="1" parent="-5f02711f:131ec3f74c9:-7e08" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="6.0"/></ImplicitOutputPort><ImplicitLink id="-5f02711f:131ec3f74c9:-7e04" parent="-5f02711f:131ec3f74c9:-7e53" source="-5f02711f:131ec3f74c9:-7db3" target="-5f02711f:131ec3f74c9:-7e05"><mxGeometry as="geometry" y="50.0"><mxPoint as="sourcePoint" x="366.0" y="160.0"/><mxPoint as="targetPoint" x="320.0" y="160.0"/></mxGeometry></ImplicitLink><ImplicitLink id="-5f02711f:131ec3f74c9:-7e03" parent="-5f02711f:131ec3f74c9:-7e53" source="-5f02711f:131ec3f74c9:-7e07" target="-5f02711f:131ec3f74c9:-7db0"><mxGeometry as="geometry" y="50.0"><mxPoint as="sourcePoint" x="414.0" y="150.0"/><mxPoint as="targetPoint" x="450.0" y="240.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="450.0" y="150.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-5f02711f:131ec3f74c9:-7e01" parent="-5f02711f:131ec3f74c9:-7e53" source="-5f02711f:131ec3f74c9:-7dbf" target="-5f02711f:131ec3f74c9:-7dbc"><mxGeometry as="geometry" y="50.0"><mxPoint as="sourcePoint" x="106.0" y="340.0"/><mxPoint as="targetPoint" x="50.0" y="290.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="50.0" y="340.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-5f02711f:131ec3f74c9:-7e00" parent="-5f02711f:131ec3f74c9:-7e53" source="-5f02711f:131ec3f74c9:-7e3d" target="-5f02711f:131ec3f74c9:-7dc0"><mxGeometry as="geometry" y="40.0"><mxPoint as="sourcePoint" x="50.0" y="228.0"/><mxPoint as="targetPoint" x="110.0" y="150.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="50.0" y="150.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="-5f02711f:131ec3f74c9:-7dfa" ordering="9" parent="-5f02711f:131ec3f74c9:-7e53" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="216.5" y="156.5"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5f02711f:131ec3f74c9:-7df8" ordering="1" parent="-5f02711f:131ec3f74c9:-7dfa" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5f02711f:131ec3f74c9:-7df7" ordering="2" parent="-5f02711f:131ec3f74c9:-7dfa" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-5f02711f:131ec3f74c9:-7df9" ordering="1" parent="-5f02711f:131ec3f74c9:-7dfa" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-5f02711f:131ec3f74c9:-7df6" parent="-5f02711f:131ec3f74c9:-7e53" source="-5f02711f:131ec3f74c9:-7e3b" target="-5f02711f:131ec3f74c9:-7df9"><mxGeometry as="geometry" height="80.0" width="80.0" y="50.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-5f02711f:131ec3f74c9:-7df5" parent="-5f02711f:131ec3f74c9:-7e53" source="-5f02711f:131ec3f74c9:-7df8" target="-5f02711f:131ec3f74c9:-7db4"><mxGeometry as="geometry" height="80.0" width="80.0" y="50.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-5f02711f:131ec3f74c9:-7dfb" parent="-5f02711f:131ec3f74c9:-7e53" source="-5f02711f:131ec3f74c9:-7df7" target="-5f02711f:131ec3f74c9:-7db8"><mxGeometry as="geometry" y="50.0"><mxPoint as="sourcePoint" x="220.0" y="238.0"/><mxPoint as="targetPoint" x="220.0" y="160.0"/></mxGeometry></ImplicitLink><SplitBlock id="-5f02711f:131ec3f74c9:-7df3" ordering="10" parent="-5f02711f:131ec3f74c9:-7e53" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="216.5" y="336.5"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5f02711f:131ec3f74c9:-7df1" ordering="1" parent="-5f02711f:131ec3f74c9:-7df3" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5f02711f:131ec3f74c9:-7df0" ordering="2" parent="-5f02711f:131ec3f74c9:-7df3" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-5f02711f:131ec3f74c9:-7df2" ordering="1" parent="-5f02711f:131ec3f74c9:-7df3" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-5f02711f:131ec3f74c9:-7def" parent="-5f02711f:131ec3f74c9:-7e53" source="-5f02711f:131ec3f74c9:-7dbb" target="-5f02711f:131ec3f74c9:-7df2"><mxGeometry as="geometry" height="80.0" width="80.0" y="50.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-5f02711f:131ec3f74c9:-7dee" parent="-5f02711f:131ec3f74c9:-7e53" source="-5f02711f:131ec3f74c9:-7daf" target="-5f02711f:131ec3f74c9:-7df1"><mxGeometry as="geometry" height="80.0" width="80.0" y="50.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="450.0" y="340.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="-5f02711f:131ec3f74c9:-7dec" ordering="11" parent="-5f02711f:131ec3f74c9:-7e53" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="216.5" y="336.5"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5f02711f:131ec3f74c9:-7dea" ordering="1" parent="-5f02711f:131ec3f74c9:-7dec" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5f02711f:131ec3f74c9:-7de9" ordering="2" parent="-5f02711f:131ec3f74c9:-7dec" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-5f02711f:131ec3f74c9:-7deb" ordering="1" parent="-5f02711f:131ec3f74c9:-7dec" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-5f02711f:131ec3f74c9:-7de8" parent="-5f02711f:131ec3f74c9:-7e53" source="-5f02711f:131ec3f74c9:-7db7" target="-5f02711f:131ec3f74c9:-7deb"><mxGeometry as="geometry" height="80.0" width="80.0" y="50.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-5f02711f:131ec3f74c9:-7de7" parent="-5f02711f:131ec3f74c9:-7e53" source="-5f02711f:131ec3f74c9:-7df0" target="-5f02711f:131ec3f74c9:-7dea"><mxGeometry as="geometry" height="80.0" width="80.0" y="50.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-5f02711f:131ec3f74c9:-7ded" parent="-5f02711f:131ec3f74c9:-7e53" source="-5f02711f:131ec3f74c9:-7de9" target="-5f02711f:131ec3f74c9:-7e31"><mxGeometry as="geometry" y="50.0"><mxPoint as="sourcePoint" x="220.0" y="396.0"/><mxPoint as="targetPoint" x="220.0" y="330.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="220.0" y="340.0"/></Array></mxGeometry></ImplicitLink><BasicBlock angle="180" dependsOnU="1" id="-5f02711f:131ec3f74c9:-7ddf" interfaceFunctionName="GAINBLK_f" ordering="12" parent="-5f02711f:131ec3f74c9:-7e53" simulationFunctionName="gain" simulationFunctionType="DEFAULT" style="GAINBLK_f;rotation=180;flip=false;mirror=false" value="4"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="4"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="50.0" width="40.0" x="260.0" y="52.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-7dac" ordering="1" parent="-5f02711f:131ec3f74c9:-7ddf" style="ExplicitInputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=180;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitInputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-7dab" ordering="1" parent="-5f02711f:131ec3f74c9:-7ddf" style="ExplicitOutputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=180;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitOutputPort><ExplicitLink id="-5f02711f:131ec3f74c9:-7ddb" parent="-5f02711f:131ec3f74c9:-7e53" source="-5f02711f:131ec3f74c9:-7dab" target="-5f02711f:131ec3f74c9:-7e3c"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="256.0" y="72.0"/><mxPoint as="targetPoint" x="150.0" y="140.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="160.0" y="70.0"/><mxPoint x="160.0" y="140.0"/></Array></mxGeometry></ExplicitLink><BasicBlock blockType="h" id="-5f02711f:131ec3f74c9:-7dd5" interfaceFunctionName="CLOCK_c" ordering="13" parent="-5f02711f:131ec3f74c9:-7e53" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="99.0"/><data column="1" line="0" realPart="-152.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-7ca3f8c0:131f25d7805:-7d06"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-7ca3f8c0:131f25d7805:-7d06"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-62.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.1"/><data column="0" line="1" value="0.1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.1"/><data column="0" line="1" realPart="0.1"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.1"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-7ca3f8c0:131f25d7805:-7d02"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-7ca3f8c0:131f25d7805:-7d02"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="92.71066000000002"/><data column="1" line="0" realPart="-154.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="8.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="4.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-7ca3f8c0:131f25d7805:-7cfd"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-7ca3f8c0:131f25d7805:-7cfd"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="66.0"/><data column="0" line="2" realPart="103.37732666666669"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-18.0"/><data column="0" line="1" realPart="-186.0"/><data column="0" line="2" realPart="-158.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="104.71066000000002"/><data column="0" line="1" realPart="129.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-142.0"/><data column="0" line="1" realPart="-128.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="106.04399333333335"/><data column="0" line="1" realPart="111.70999999999998"/><data column="0" line="2" realPart="71.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-158.0"/><data column="0" line="1" realPart="-40.0"/><data column="0" line="2" realPart="-40.0"/><data column="0" line="3" realPart="-66.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="530.0" y="32.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="-5f02711f:131ec3f74c9:-7dd4" ordering="1" parent="-5f02711f:131ec3f74c9:-7dd5" style="CommandPort;align=center;labelPosition=center;verticalLabelPosition=top;rotation=90;spacingBottom=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><BasicBlock dependsOnU="1" id="-5f02711f:131ec3f74c9:-7dcc" interfaceFunctionName="CSCOPE" ordering="14" parent="-5f02711f:131ec3f74c9:-7e53" simulationFunctionName="cscope" simulationFunctionType="C_OR_FORTRAN" style="CSCOPE;flip=false;mirror=false"><ScilabString as="exprs" height="10" width="1"><data column="0" line="0" value="1 3 5 7 9 11 13 15"/><data column="0" line="1" value="-1"/><data column="0" line="2" value="[]"/><data column="0" line="3" value="[600;400]"/><data column="0" line="4" value="-0.3"/><data column="0" line="5" value="-0.2"/><data column="0" line="6" value="30"/><data column="0" line="7" value="20"/><data column="0" line="8" value="0"/><data column="0" line="9" value=""/></ScilabString><ScilabDouble as="realParameters" height="4" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="-0.3"/><data column="0" line="2" realPart="-0.2"/><data column="0" line="3" realPart="30.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="15" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="1.0"/><data column="0" line="4" realPart="3.0"/><data column="0" line="5" realPart="5.0"/><data column="0" line="6" realPart="7.0"/><data column="0" line="7" realPart="9.0"/><data column="0" line="8" realPart="11.0"/><data column="0" line="9" realPart="13.0"/><data column="0" line="10" realPart="15.0"/><data column="0" line="11" realPart="-1.0"/><data column="0" line="12" realPart="-1.0"/><data column="0" line="13" realPart="600.0"/><data column="0" line="14" realPart="400.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="530.0" y="112.0"/></BasicBlock><ControlPort dataType="UNKNOW_TYPE" id="-5f02711f:131ec3f74c9:-7da3" ordering="1" parent="-5f02711f:131ec3f74c9:-7dcc" style="ControlPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=90;spacingTop=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-7da4" ordering="1" parent="-5f02711f:131ec3f74c9:-7dcc" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><SplitBlock id="-5f02711f:131ec3f74c9:-7dc8" ordering="15" parent="-5f02711f:131ec3f74c9:-7e53" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="427.0" y="127.0"/></SplitBlock><ExplicitOutputPort dataType="UNKNOW_TYPE" id="-5f02711f:131ec3f74c9:-7dc6" ordering="1" parent="-5f02711f:131ec3f74c9:-7dc8" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="-5f02711f:131ec3f74c9:-7dc5" ordering="2" parent="-5f02711f:131ec3f74c9:-7dc8" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitInputPort dataType="UNKNOW_TYPE" id="-5f02711f:131ec3f74c9:-7dc7" ordering="1" parent="-5f02711f:131ec3f74c9:-7dc8" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ExplicitInputPort><ExplicitLink id="-5f02711f:131ec3f74c9:-7dc4" parent="-5f02711f:131ec3f74c9:-7e53" source="-5f02711f:131ec3f74c9:-7e06" target="-5f02711f:131ec3f74c9:-7dc7"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="430.0" y="170.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="-5f02711f:131ec3f74c9:-7dc3" parent="-5f02711f:131ec3f74c9:-7e53" source="-5f02711f:131ec3f74c9:-7dc6" target="-5f02711f:131ec3f74c9:-7dac"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="430.0" y="70.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="-5f02711f:131ec3f74c9:-7dc9" parent="-5f02711f:131ec3f74c9:-7e53" source="-5f02711f:131ec3f74c9:-7dc5" target="-5f02711f:131ec3f74c9:-7da4"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="526.0" y="132.0"/><mxPoint as="targetPoint" x="430.0" y="130.0"/></mxGeometry></ExplicitLink><CommandControlLink id="-5f02711f:131ec3f74c9:-7dc2" parent="-5f02711f:131ec3f74c9:-7e53" source="-5f02711f:131ec3f74c9:-7dd4" target="-5f02711f:131ec3f74c9:-7da3"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="550.0" y="76.0"/><mxPoint as="targetPoint" x="550.0" y="110.0"/></mxGeometry></CommandControlLink><BasicBlock angle="90" id="-5f02711f:131ec3f74c9:-7e4a" interfaceFunctionName="ConstantVoltage" ordering="1" parent="-5f02711f:131ec3f74c9:-7e53" simulationFunctionName="ConstantVoltage" simulationFunctionType="DEFAULT" style="ConstantVoltage;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="5"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ConstantVoltage"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="V"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="30.0" y="242.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-7dc0" ordering="1" parent="-5f02711f:131ec3f74c9:-7e4a" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;spacingTop=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5f02711f:131ec3f74c9:-7dbf" ordering="1" parent="-5f02711f:131ec3f74c9:-7e4a" style="ImplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;spacingBottom=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><TextBlock id="-7ca3f8c0:131f25d7805:-7cf9" parent="-5f02711f:131ec3f74c9:-7e53" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="Mesh Analysis<br>Example 4.9"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="Mesh Analysis<br>Example 4.9"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="Mesh Analysis<br>Example 4.9"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="70.0" y="20.0"/></TextBlock></root></mxGraphModel><mxCell as="defaultParent" id="-5f02711f:131ec3f74c9:-7e53" parent="-5f02711f:131ec3f74c9:-7e52"/></XcosDiagram>
\ No newline at end of file diff --git a/Working_Examples/215/CH6/EX6.1/Figure6_1.jpg b/Working_Examples/215/CH6/EX6.1/Figure6_1.jpg Binary files differnew file mode 100755 index 0000000..f5d702d --- /dev/null +++ b/Working_Examples/215/CH6/EX6.1/Figure6_1.jpg diff --git a/Working_Examples/215/CH6/EX6.1/Figure6_1_xcos.jpg b/Working_Examples/215/CH6/EX6.1/Figure6_1_xcos.jpg Binary files differnew file mode 100755 index 0000000..71fda4e --- /dev/null +++ b/Working_Examples/215/CH6/EX6.1/Figure6_1_xcos.jpg diff --git a/Working_Examples/215/CH6/EX6.1/ex6_1.xcos b/Working_Examples/215/CH6/EX6.1/ex6_1.xcos new file mode 100755 index 0000000..f319b79 --- /dev/null +++ b/Working_Examples/215/CH6/EX6.1/ex6_1.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" finalIntegrationTime="30.0" title="ex6_1"><!--Xcos - 1.0 - scilab-5.5.2 - 20160406 2040--><mxGraphModel as="model"><root><mxCell id="-5872192d:1324f245276:-7fff"/><mxCell id="-5872192d:1324f245276:-8000" parent="-5872192d:1324f245276:-7fff"/><BasicBlock angle="90" id="-5872192d:1324f245276:-7fde" interfaceFunctionName="ConstantVoltage" ordering="1" parent="-5872192d:1324f245276:-8000" simulationFunctionName="ConstantVoltage" simulationFunctionType="DEFAULT" style="ConstantVoltage;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="3"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ConstantVoltage"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="V"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="10.0" y="230.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-7f03" ordering="1" parent="-5872192d:1324f245276:-7fde" style="ImplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;spacingBottom=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-7f04" ordering="1" parent="-5872192d:1324f245276:-7fde" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;spacingTop=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><GroundBlock angle="90" dependsOnU="1" id="-5872192d:1324f245276:-7fd6" interfaceFunctionName="Ground" ordering="2" parent="-5872192d:1324f245276:-8000" simulationFunctionName="Ground" simulationFunctionType="DEFAULT" style="Ground;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Ground"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="110.0" y="360.0"/></GroundBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-7fd5" ordering="1" parent="-5872192d:1324f245276:-7fd6" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=90;spacingTop=5;flip=false;mirror=false"><Orientation as="orientation" value="NORTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="-5872192d:1324f245276:-7fcb" interfaceFunctionName="CurrentSensor" ordering="3" parent="-5872192d:1324f245276:-8000" simulationFunctionName="CurrentSensor" simulationFunctionType="DEFAULT" style="CurrentSensor;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CurrentSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="i"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="140.0" y="120.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-7fca" ordering="1" parent="-5872192d:1324f245276:-7fcb" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="6.0"/></ImplicitOutputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-7fc9" ordering="2" parent="-5872192d:1324f245276:-7fcb" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="26.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-7fc8" ordering="1" parent="-5872192d:1324f245276:-7fcb" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="-5872192d:1324f245276:-7fc0" interfaceFunctionName="Resistor" ordering="4" parent="-5872192d:1324f245276:-8000" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="6"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="60.0" y="120.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-7f0b" ordering="1" parent="-5872192d:1324f245276:-7fc0" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-7f0c" ordering="1" parent="-5872192d:1324f245276:-7fc0" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><BasicBlock angle="90" dependsOnU="1" id="-5872192d:1324f245276:-7fb4" interfaceFunctionName="Resistor" ordering="5" parent="-5872192d:1324f245276:-8000" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="9"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="9.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="9.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="190.0" y="230.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-7f07" ordering="1" parent="-5872192d:1324f245276:-7fb4" style="ImplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;spacingBottom=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-7f08" ordering="1" parent="-5872192d:1324f245276:-7fb4" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;spacingTop=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitLink id="-5872192d:1324f245276:-7fa8" parent="-5872192d:1324f245276:-8000" source="-5872192d:1324f245276:-7f04" target="-5872192d:1324f245276:-7f0c"><mxGeometry as="geometry" x="-30.0"><mxPoint as="sourcePoint" x="30.0" y="226.0"/><mxPoint as="targetPoint" x="60.0" y="140.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="30.0" y="140.0"/><mxPoint x="60.0" y="140.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-5872192d:1324f245276:-7fa7" parent="-5872192d:1324f245276:-8000" source="-5872192d:1324f245276:-7f0b" target="-5872192d:1324f245276:-7fc8"><mxGeometry as="geometry" x="-30.0"><mxPoint as="sourcePoint" x="104.0" y="140.0"/><mxPoint as="targetPoint" x="140.0" y="140.0"/></mxGeometry></ImplicitLink><ImplicitLink id="-5872192d:1324f245276:-7fa6" parent="-5872192d:1324f245276:-8000" source="-5872192d:1324f245276:-7fca" target="-5872192d:1324f245276:-7f08"><mxGeometry as="geometry" x="-30.0"><mxPoint as="sourcePoint" x="184.0" y="130.0"/><mxPoint as="targetPoint" x="210.0" y="230.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="210.0" y="130.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="-5872192d:1324f245276:-7fa3" ordering="6" parent="-5872192d:1324f245276:-8000" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="126.5" y="316.5"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="-5872192d:1324f245276:-7fa2" ordering="1" parent="-5872192d:1324f245276:-7fa3" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5872192d:1324f245276:-7fa1" ordering="1" parent="-5872192d:1324f245276:-7fa3" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5872192d:1324f245276:-7fa0" ordering="2" parent="-5872192d:1324f245276:-7fa3" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="-5872192d:1324f245276:-7f9f" parent="-5872192d:1324f245276:-8000" source="-5872192d:1324f245276:-7f03" target="-5872192d:1324f245276:-7fa2"><mxGeometry as="geometry" height="80.0" width="80.0" x="-30.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="30.0" y="320.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-5872192d:1324f245276:-7f9e" parent="-5872192d:1324f245276:-8000" source="-5872192d:1324f245276:-7f07" target="-5872192d:1324f245276:-7fa1"><mxGeometry as="geometry" height="80.0" width="80.0" x="-30.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="210.0" y="320.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-5872192d:1324f245276:-7fa4" parent="-5872192d:1324f245276:-8000" source="-5872192d:1324f245276:-7fa0" target="-5872192d:1324f245276:-7fd5"><mxGeometry as="geometry" x="-30.0"><mxPoint as="sourcePoint" x="130.0" y="356.0"/><mxPoint as="targetPoint" x="130.0" y="320.0"/></mxGeometry></ImplicitLink><BasicBlock angle="90" dependsOnU="1" id="-5872192d:1324f245276:-7f9d" interfaceFunctionName="Resistor" ordering="7" parent="-5872192d:1324f245276:-8000" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="9"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="9.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="9.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="360.0" y="250.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-7efb" ordering="1" parent="-5872192d:1324f245276:-7f9d" style="ImplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;spacingBottom=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-7efc" ordering="1" parent="-5872192d:1324f245276:-7f9d" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;spacingTop=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock angle="90" dependsOnU="1" id="-5872192d:1324f245276:-7f9a" interfaceFunctionName="Resistor" ordering="8" parent="-5872192d:1324f245276:-8000" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="6"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="290.0" y="220.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-7eff" ordering="1" parent="-5872192d:1324f245276:-7f9a" style="ImplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;spacingBottom=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-7f00" ordering="1" parent="-5872192d:1324f245276:-7f9a" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;spacingTop=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock angle="270" dependsOnT="1" id="-5872192d:1324f245276:-7f88" interfaceFunctionName="CCS" ordering="9" parent="-5872192d:1324f245276:-8000" simulationFunctionName="CCS" simulationFunctionType="DEFAULT" style="CCS;rotation=270;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CCS"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="Iin"/><data column="0" line="1" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="450.0" y="210.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-7f87" ordering="1" parent="-5872192d:1324f245276:-7f88" style="ImplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=270;spacingTop=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitOutputPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-7f86" ordering="1" parent="-5872192d:1324f245276:-7f88" style="ExplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=top;rotation=270;spacingBottom=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="6.0" y="40.0"/></ExplicitInputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-7f85" ordering="2" parent="-5872192d:1324f245276:-7f88" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=top;rotation=270;spacingBottom=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="26.0" y="40.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="-5872192d:1324f245276:-7f74" interfaceFunctionName="CSCOPE" ordering="10" parent="-5872192d:1324f245276:-8000" simulationFunctionName="cscope" simulationFunctionType="C_OR_FORTRAN" style="CSCOPE;flip=false;mirror=false"><ScilabString as="exprs" height="10" width="1"><data column="0" line="0" value="1 3 5 7 9 11 13 15"/><data column="0" line="1" value="-1"/><data column="0" line="2" value="[]"/><data column="0" line="3" value="[600;400]"/><data column="0" line="4" value="0.5"/><data column="0" line="5" value="1.5"/><data column="0" line="6" value="30"/><data column="0" line="7" value="20"/><data column="0" line="8" value="0"/><data column="0" line="9" value=""/></ScilabString><ScilabDouble as="realParameters" height="4" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="0.5"/><data column="0" line="2" realPart="1.5"/><data column="0" line="3" realPart="30.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="15" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="1.0"/><data column="0" line="4" realPart="3.0"/><data column="0" line="5" realPart="5.0"/><data column="0" line="6" realPart="7.0"/><data column="0" line="7" realPart="9.0"/><data column="0" line="8" realPart="11.0"/><data column="0" line="9" realPart="13.0"/><data column="0" line="10" realPart="15.0"/><data column="0" line="11" realPart="-1.0"/><data column="0" line="12" realPart="-1.0"/><data column="0" line="13" realPart="600.0"/><data column="0" line="14" realPart="400.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="580.0" y="170.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-7ef5" ordering="1" parent="-5872192d:1324f245276:-7f74" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ControlPort dataType="UNKNOW_TYPE" id="-5872192d:1324f245276:-7ef4" ordering="1" parent="-5872192d:1324f245276:-7f74" style="ControlPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=90;spacingTop=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><BasicBlock blockType="d" id="-5872192d:1324f245276:-7f6c" interfaceFunctionName="CONST_m" ordering="11" parent="-5872192d:1324f245276:-8000" simulationFunctionName="cstblk4" simulationFunctionType="C_OR_FORTRAN" style="CONST_m;flip=false;mirror=false" value="2"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="2"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble></Array><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="50.0" width="40.0" x="410.0" y="280.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-7ef8" ordering="1" parent="-5872192d:1324f245276:-7f6c" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><BasicBlock blockType="h" id="-5872192d:1324f245276:-7f65" interfaceFunctionName="CLOCK_c" ordering="12" parent="-5872192d:1324f245276:-8000" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="139.0"/><data column="1" line="0" realPart="-170.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-4ffe9184:1674e807b56:-7f84"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-4ffe9184:1674e807b56:-7f84"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.1"/><data column="0" line="1" value="0.1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.1"/><data column="0" line="1" realPart="0.1"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.1"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-4ffe9184:1674e807b56:-7f82"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-4ffe9184:1674e807b56:-7f82"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="156.3773266666667"/><data column="1" line="0" realPart="-202.33333333333331"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="7.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="5.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-4ffe9184:1674e807b56:-7f7f"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-4ffe9184:1674e807b56:-7f7f"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="140.0"/><data column="0" line="2" realPart="166.8773266666667"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-44.0"/><data column="0" line="1" realPart="-220.0"/><data column="0" line="2" realPart="-191.33333333333331"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="165.71066000000005"/><data column="0" line="1" realPart="169.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-206.33333333333331"/><data column="0" line="1" realPart="-146.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="168.04399333333336"/><data column="0" line="1" realPart="180.70999999999998"/><data column="0" line="2" realPart="140.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-206.33333333333331"/><data column="0" line="1" realPart="-90.0"/><data column="0" line="2" realPart="-90.0"/><data column="0" line="3" realPart="4.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="580.0" y="90.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="-5872192d:1324f245276:-7f64" ordering="1" parent="-5872192d:1324f245276:-7f65" style="CommandPort;align=center;labelPosition=center;verticalLabelPosition=top;rotation=90;spacingBottom=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><BasicBlock angle="90" dependsOnU="1" id="-5872192d:1324f245276:-7f55" interfaceFunctionName="CurrentSensor" ordering="13" parent="-5872192d:1324f245276:-8000" simulationFunctionName="CurrentSensor" simulationFunctionType="DEFAULT" style="CurrentSensor;rotation=90;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CurrentSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="i"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="370.0" y="170.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-7f54" ordering="1" parent="-5872192d:1324f245276:-7f55" style="ImplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;rotation=90;spacingBottom=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="6.0" y="40.0"/></ImplicitOutputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-7f53" ordering="2" parent="-5872192d:1324f245276:-7f55" style="ExplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;rotation=90;spacingBottom=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="26.0" y="40.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-7f52" ordering="1" parent="-5872192d:1324f245276:-7f55" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=90;spacingTop=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitLink id="-5872192d:1324f245276:-7f47" parent="-5872192d:1324f245276:-8000" source="-5872192d:1324f245276:-7f54" target="-5872192d:1324f245276:-7efc"><mxGeometry as="geometry" x="-30.0"><mxPoint as="sourcePoint" x="380.0" y="246.0"/><mxPoint as="targetPoint" x="380.0" y="210.0"/></mxGeometry></ImplicitLink><SplitBlock id="-5872192d:1324f245276:-7f45" ordering="14" parent="-5872192d:1324f245276:-8000" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="386.5" y="126.5"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="-5872192d:1324f245276:-7f44" ordering="1" parent="-5872192d:1324f245276:-7f45" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5872192d:1324f245276:-7f43" ordering="1" parent="-5872192d:1324f245276:-7f45" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5872192d:1324f245276:-7f42" ordering="2" parent="-5872192d:1324f245276:-7f45" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="-5872192d:1324f245276:-7f41" parent="-5872192d:1324f245276:-8000" source="-5872192d:1324f245276:-7f87" target="-5872192d:1324f245276:-7f44"><mxGeometry as="geometry" height="80.0" width="80.0" x="-30.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="470.0" y="130.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-5872192d:1324f245276:-7f40" parent="-5872192d:1324f245276:-8000" source="-5872192d:1324f245276:-7f43" target="-5872192d:1324f245276:-7f00"><mxGeometry as="geometry" height="80.0" width="80.0" x="-30.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="310.0" y="130.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-5872192d:1324f245276:-7f46" parent="-5872192d:1324f245276:-8000" source="-5872192d:1324f245276:-7f42" target="-5872192d:1324f245276:-7f52"><mxGeometry as="geometry" x="-30.0"><mxPoint as="sourcePoint" x="390.0" y="166.0"/><mxPoint as="targetPoint" x="390.0" y="130.0"/></mxGeometry></ImplicitLink><SplitBlock id="-5872192d:1324f245276:-7f3e" ordering="15" parent="-5872192d:1324f245276:-8000" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="376.5" y="356.5"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="-5872192d:1324f245276:-7f3d" ordering="1" parent="-5872192d:1324f245276:-7f3e" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5872192d:1324f245276:-7f3c" ordering="1" parent="-5872192d:1324f245276:-7f3e" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5872192d:1324f245276:-7f3b" ordering="2" parent="-5872192d:1324f245276:-7f3e" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="-5872192d:1324f245276:-7f3a" parent="-5872192d:1324f245276:-8000" source="-5872192d:1324f245276:-7eff" target="-5872192d:1324f245276:-7f3d"><mxGeometry as="geometry" height="80.0" width="80.0" x="-30.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="310.0" y="360.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-5872192d:1324f245276:-7f39" parent="-5872192d:1324f245276:-8000" source="-5872192d:1324f245276:-7f3c" target="-5872192d:1324f245276:-7f85"><mxGeometry as="geometry" height="80.0" width="80.0" x="-30.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="480.0" y="360.0"/></Array></mxGeometry></ImplicitLink><GroundBlock angle="90" dependsOnU="1" id="-5872192d:1324f245276:-7f36" interfaceFunctionName="Ground" ordering="16" parent="-5872192d:1324f245276:-8000" simulationFunctionName="Ground" simulationFunctionType="DEFAULT" style="Ground;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Ground"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="360.0" y="400.0"/></GroundBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-7f35" ordering="1" parent="-5872192d:1324f245276:-7f36" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=90;spacingTop=5;flip=false;mirror=false"><Orientation as="orientation" value="NORTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><SplitBlock id="-5872192d:1324f245276:-7f31" ordering="17" parent="-5872192d:1324f245276:-8000" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="376.5" y="356.5"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="-5872192d:1324f245276:-7f30" ordering="1" parent="-5872192d:1324f245276:-7f31" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5872192d:1324f245276:-7f2f" ordering="1" parent="-5872192d:1324f245276:-7f31" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5872192d:1324f245276:-7f2e" ordering="2" parent="-5872192d:1324f245276:-7f31" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="-5872192d:1324f245276:-7f2d" parent="-5872192d:1324f245276:-8000" source="-5872192d:1324f245276:-7efb" target="-5872192d:1324f245276:-7f30"><mxGeometry as="geometry" height="80.0" width="80.0" x="-30.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-5872192d:1324f245276:-7f2c" parent="-5872192d:1324f245276:-8000" source="-5872192d:1324f245276:-7f3b" target="-5872192d:1324f245276:-7f2f"><mxGeometry as="geometry" height="80.0" width="80.0" x="-30.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-5872192d:1324f245276:-7f32" parent="-5872192d:1324f245276:-8000" source="-5872192d:1324f245276:-7f2e" target="-5872192d:1324f245276:-7f35"><mxGeometry as="geometry" x="-30.0"><mxPoint as="sourcePoint" x="380.0" y="396.0"/><mxPoint as="targetPoint" x="380.0" y="360.0"/></mxGeometry></ImplicitLink><ExplicitLink id="-5872192d:1324f245276:-7f29" parent="-5872192d:1324f245276:-8000" source="-5872192d:1324f245276:-7ef8" target="-5872192d:1324f245276:-7f86"><mxGeometry as="geometry" x="-30.0"><mxPoint as="sourcePoint" x="460.0" y="254.0"/><mxPoint as="targetPoint" x="450.0" y="300.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="460.0" y="300.0"/></Array></mxGeometry></ExplicitLink><BigSom dependsOnU="1" id="-5872192d:1324f245276:-7f1a" interfaceFunctionName="BIGSOM_f" ordering="18" parent="-5872192d:1324f245276:-8000" simulationFunctionName="sum" simulationFunctionType="TYPE_2" style="BIGSOM_f;flip=false;mirror=false" value="+"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="[1;1]"/></ScilabString><ScilabDouble as="realParameters" height="2" width="1"><data column="0" line="0" realPart="1.0"/><data column="0" line="1" realPart="1.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="510.0" y="172.0"/></BigSom><ExplicitOutputPort dataColumns="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-7f19" ordering="1" parent="-5872192d:1324f245276:-7f1a" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-7f18" ordering="1" parent="-5872192d:1324f245276:-7f1a" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ExplicitInputPort><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-7f17" ordering="2" parent="-5872192d:1324f245276:-7f1a" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="26.0"/></ExplicitInputPort><ExplicitLink id="-5872192d:1324f245276:-7f16" parent="-5872192d:1324f245276:-8000" source="-5872192d:1324f245276:-7fc9" target="-5872192d:1324f245276:-7f18"><mxGeometry as="geometry" x="-30.0"><mxPoint as="sourcePoint" x="184.0" y="150.0"/><mxPoint as="targetPoint" x="500.0" y="180.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="490.0" y="150.0"/><mxPoint x="490.0" y="180.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="-5872192d:1324f245276:-7f15" parent="-5872192d:1324f245276:-8000" source="-5872192d:1324f245276:-7f53" target="-5872192d:1324f245276:-7f17"><mxGeometry as="geometry" x="-30.0"><mxPoint as="sourcePoint" x="506.0" y="202.0"/><mxPoint as="targetPoint" x="400.0" y="210.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="490.0" y="210.0"/><mxPoint x="490.0" y="200.0"/></Array></mxGeometry></ExplicitLink><CommandControlLink id="-5872192d:1324f245276:-7f0f" parent="-5872192d:1324f245276:-8000" source="-5872192d:1324f245276:-7f64" target="-5872192d:1324f245276:-7ef4"><mxGeometry as="geometry" x="-30.0"><mxPoint as="sourcePoint" x="590.0" y="134.0"/><mxPoint as="targetPoint" x="590.0" y="160.0"/></mxGeometry></CommandControlLink><ExplicitLink id="-5872192d:1324f245276:-7f0e" parent="-5872192d:1324f245276:-8000" source="-5872192d:1324f245276:-7f19" target="-5872192d:1324f245276:-7ef5"><mxGeometry as="geometry" x="-30.0"><mxPoint as="sourcePoint" x="566.0" y="190.0"/><mxPoint as="targetPoint" x="550.0" y="190.0"/></mxGeometry></ExplicitLink></root></mxGraphModel><mxCell as="defaultParent" id="-5872192d:1324f245276:-8000" parent="-5872192d:1324f245276:-7fff"/></XcosDiagram>
\ No newline at end of file diff --git a/Working_Examples/215/CH6/EX6.10/ex6_10.sce b/Working_Examples/215/CH6/EX6.10/ex6_10.sce new file mode 100755 index 0000000..f0225a8 --- /dev/null +++ b/Working_Examples/215/CH6/EX6.10/ex6_10.sce @@ -0,0 +1,31 @@ +clc
+//Example 6.10
+//Calculate the voltage across 20 ohm capacitor
+//Consider the circuit to be solved by superposition principle
+disp('Consider the current source 2(90 deg)only')
+//From figure 6.32
+//Let I1 be the current through -i*4 capacitive reactance
+Imag=2;Iph=90;
+i=%i
+x=Imag * cos (( Iph * %pi ) /180) ;
+y=Imag * sin (( Iph * %pi ) /180) ;
+I= complex (x,y)
+I1=(I*(i*15))/(i*5+i*15-i*4)
+//Let V20 be the voltage across -i*4 capacitive reactance
+V200=(-i*4)*I1
+printf("V20=%3.2fV \n",V200)
+disp('Consider the 20 V voltage source only')
+V=20;
+//From figure 6.35
+//let V201 be the voltage across -i*5 capacitive reactance
+V201=-V
+printf("V201=%d V \n",V201)
+disp('Consider the current source 1(90 deg)only')
+I1mag=1;I1ang=90;
+//From figure 6.37
+//Let V202 be the voltage across -i*5 capacitive reactance
+V202=(-i*5)*I1mag*i
+printf("V202=%3.2fV \n",V202)
+//Let V20 be the voltage across -i*20 capacitive reactance
+V20=V200+V201+V202
+printf("\n V20=%3.2fV \n",V20)
diff --git a/Working_Examples/215/CH6/EX6.11/Figure6_11.jpg b/Working_Examples/215/CH6/EX6.11/Figure6_11.jpg Binary files differnew file mode 100755 index 0000000..712bcf3 --- /dev/null +++ b/Working_Examples/215/CH6/EX6.11/Figure6_11.jpg diff --git a/Working_Examples/215/CH6/EX6.11/Figure6_11_xcos.jpg b/Working_Examples/215/CH6/EX6.11/Figure6_11_xcos.jpg Binary files differnew file mode 100755 index 0000000..868e43b --- /dev/null +++ b/Working_Examples/215/CH6/EX6.11/Figure6_11_xcos.jpg diff --git a/Working_Examples/215/CH6/EX6.11/ex6_11.xcos b/Working_Examples/215/CH6/EX6.11/ex6_11.xcos new file mode 100755 index 0000000..54e6293 --- /dev/null +++ b/Working_Examples/215/CH6/EX6.11/ex6_11.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" finalIntegrationTime="30.0" title="ex6_11"><!--Xcos - 1.0 - scilab-5.5.2 - 20160406 2040--><mxGraphModel as="model"><root><mxCell id="2602728:132d47c9ecc:-7fff"/><mxCell id="2602728:132d47c9ecc:-8000" parent="2602728:132d47c9ecc:-7fff"/><BasicBlock angle="90" id="2602728:132d47c9ecc:-7fde" interfaceFunctionName="ConstantVoltage" ordering="1" parent="2602728:132d47c9ecc:-8000" simulationFunctionName="ConstantVoltage" simulationFunctionType="DEFAULT" style="ConstantVoltage;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="12"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="12.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ConstantVoltage"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="V"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="12.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="40.0" y="212.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="2602728:132d47c9ecc:-7f7a" ordering="1" parent="2602728:132d47c9ecc:-7fde" style="ImplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;spacingBottom=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="2602728:132d47c9ecc:-7f7b" ordering="1" parent="2602728:132d47c9ecc:-7fde" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;spacingTop=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><GroundBlock angle="90" dependsOnU="1" id="2602728:132d47c9ecc:-7fd6" interfaceFunctionName="Ground" ordering="2" parent="2602728:132d47c9ecc:-8000" simulationFunctionName="Ground" simulationFunctionType="DEFAULT" style="Ground;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Ground"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="90.0" y="350.0"/></GroundBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="2602728:132d47c9ecc:-7fd5" ordering="1" parent="2602728:132d47c9ecc:-7fd6" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=90;spacingTop=5;flip=false;mirror=false"><Orientation as="orientation" value="NORTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="2602728:132d47c9ecc:-7fcd" interfaceFunctionName="Resistor" ordering="3" parent="2602728:132d47c9ecc:-8000" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="3"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="90.0" y="120.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="2602728:132d47c9ecc:-7f76" ordering="1" parent="2602728:132d47c9ecc:-7fcd" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="2602728:132d47c9ecc:-7f77" ordering="1" parent="2602728:132d47c9ecc:-7fcd" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><BasicBlock angle="90" dependsOnU="1" id="2602728:132d47c9ecc:-7fbe" interfaceFunctionName="Resistor" ordering="4" parent="2602728:132d47c9ecc:-8000" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="6"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="150.0" y="210.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="2602728:132d47c9ecc:-7f6f" ordering="1" parent="2602728:132d47c9ecc:-7fbe" style="ImplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;spacingBottom=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="2602728:132d47c9ecc:-7f70" ordering="1" parent="2602728:132d47c9ecc:-7fbe" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;spacingTop=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitLink id="2602728:132d47c9ecc:-7fb6" parent="2602728:132d47c9ecc:-8000" source="2602728:132d47c9ecc:-7f7b" target="2602728:132d47c9ecc:-7f77"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="60.0" y="208.0"/><mxPoint as="targetPoint" x="80.0" y="140.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="60.0" y="140.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="2602728:132d47c9ecc:-7fa8" ordering="5" parent="2602728:132d47c9ecc:-8000" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="107.0" y="297.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="2602728:132d47c9ecc:-7fa7" ordering="1" parent="2602728:132d47c9ecc:-7fa8" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="2602728:132d47c9ecc:-7fa6" ordering="1" parent="2602728:132d47c9ecc:-7fa8" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="2602728:132d47c9ecc:-7fa5" ordering="2" parent="2602728:132d47c9ecc:-7fa8" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="2602728:132d47c9ecc:-7fa4" parent="2602728:132d47c9ecc:-8000" source="2602728:132d47c9ecc:-7f6f" target="2602728:132d47c9ecc:-7fa7"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="170.0" y="250.0"/><mxPoint x="170.0" y="300.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="2602728:132d47c9ecc:-7fa3" parent="2602728:132d47c9ecc:-8000" source="2602728:132d47c9ecc:-7f7a" target="2602728:132d47c9ecc:-7fa6"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="60.0" y="300.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="2602728:132d47c9ecc:-7fa9" parent="2602728:132d47c9ecc:-8000" source="2602728:132d47c9ecc:-7fa5" target="2602728:132d47c9ecc:-7fd5"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="110.0" y="346.0"/><mxPoint as="targetPoint" x="110.0" y="300.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="110.0" y="300.0"/></Array></mxGeometry></ImplicitLink><BasicBlock dependsOnU="1" id="2602728:132d47c9ecc:-7f99" interfaceFunctionName="PotentialSensor" ordering="6" parent="2602728:132d47c9ecc:-8000" simulationFunctionName="PotentialSensor" simulationFunctionType="DEFAULT" style="PotentialSensor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="PotentialSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="v"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="210.0" y="112.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="2602728:132d47c9ecc:-7f98" ordering="1" parent="2602728:132d47c9ecc:-7f99" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="2602728:132d47c9ecc:-7f97" ordering="1" parent="2602728:132d47c9ecc:-7f99" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><SplitBlock id="2602728:132d47c9ecc:-7f95" ordering="7" parent="2602728:132d47c9ecc:-8000" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="167.0" y="137.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="2602728:132d47c9ecc:-7f94" ordering="1" parent="2602728:132d47c9ecc:-7f95" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="2602728:132d47c9ecc:-7f93" ordering="1" parent="2602728:132d47c9ecc:-7f95" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="2602728:132d47c9ecc:-7f92" ordering="2" parent="2602728:132d47c9ecc:-7f95" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="2602728:132d47c9ecc:-7f91" parent="2602728:132d47c9ecc:-8000" source="2602728:132d47c9ecc:-7f76" target="2602728:132d47c9ecc:-7f94"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="2602728:132d47c9ecc:-7f90" parent="2602728:132d47c9ecc:-8000" source="2602728:132d47c9ecc:-7f93" target="2602728:132d47c9ecc:-7f70"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="170.0" y="140.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="2602728:132d47c9ecc:-7f96" parent="2602728:132d47c9ecc:-8000" source="2602728:132d47c9ecc:-7f92" target="2602728:132d47c9ecc:-7f97"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="206.0" y="132.0"/><mxPoint as="targetPoint" x="170.0" y="140.0"/></mxGeometry></ImplicitLink><BasicBlock dependsOnU="1" id="2602728:132d47c9ecc:-7f88" interfaceFunctionName="CSCOPE" ordering="8" parent="2602728:132d47c9ecc:-8000" simulationFunctionName="cscope" simulationFunctionType="C_OR_FORTRAN" style="CSCOPE;flip=false;mirror=false"><ScilabString as="exprs" height="10" width="1"><data column="0" line="0" value="1 3 5 7 9 11 13 15"/><data column="0" line="1" value="-1"/><data column="0" line="2" value="[]"/><data column="0" line="3" value="[600;400]"/><data column="0" line="4" value="7"/><data column="0" line="5" value="9"/><data column="0" line="6" value="30"/><data column="0" line="7" value="20"/><data column="0" line="8" value="0"/><data column="0" line="9" value=""/></ScilabString><ScilabDouble as="realParameters" height="4" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="7.0"/><data column="0" line="2" realPart="9.0"/><data column="0" line="3" realPart="30.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="15" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="1.0"/><data column="0" line="4" realPart="3.0"/><data column="0" line="5" realPart="5.0"/><data column="0" line="6" realPart="7.0"/><data column="0" line="7" realPart="9.0"/><data column="0" line="8" realPart="11.0"/><data column="0" line="9" realPart="13.0"/><data column="0" line="10" realPart="15.0"/><data column="0" line="11" realPart="-1.0"/><data column="0" line="12" realPart="-1.0"/><data column="0" line="13" realPart="600.0"/><data column="0" line="14" realPart="400.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="300.0" y="112.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="2602728:132d47c9ecc:-7f6c" ordering="1" parent="2602728:132d47c9ecc:-7f88" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ControlPort dataType="UNKNOW_TYPE" id="2602728:132d47c9ecc:-7f6b" ordering="1" parent="2602728:132d47c9ecc:-7f88" style="ControlPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=90;spacingTop=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><BasicBlock blockType="h" id="2602728:132d47c9ecc:-7f80" interfaceFunctionName="CLOCK_c" ordering="9" parent="2602728:132d47c9ecc:-8000" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="119.0"/><data column="1" line="0" realPart="-150.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-4ffe9184:1674e807b56:-7f31"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-4ffe9184:1674e807b56:-7f31"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.1"/><data column="0" line="1" value="0.1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.1"/><data column="0" line="1" realPart="0.1"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.1"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-4ffe9184:1674e807b56:-7f2f"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-4ffe9184:1674e807b56:-7f2f"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="123.3773266666667"/><data column="1" line="0" realPart="-169.33333333333331"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="7.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="5.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-4ffe9184:1674e807b56:-7f2c"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-4ffe9184:1674e807b56:-7f2c"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="100.0"/><data column="0" line="2" realPart="133.8773266666667"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-44.0"/><data column="0" line="1" realPart="-180.0"/><data column="0" line="2" realPart="-158.33333333333331"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="132.71066000000005"/><data column="0" line="1" realPart="149.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-173.33333333333331"/><data column="0" line="1" realPart="-126.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="135.04399333333336"/><data column="0" line="1" realPart="140.70999999999998"/><data column="0" line="2" realPart="100.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-173.33333333333331"/><data column="0" line="1" realPart="-50.0"/><data column="0" line="2" realPart="-50.0"/><data column="0" line="3" realPart="4.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="300.0" y="32.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="2602728:132d47c9ecc:-7f7f" ordering="1" parent="2602728:132d47c9ecc:-7f80" style="CommandPort;align=center;labelPosition=center;verticalLabelPosition=top;rotation=90;spacingBottom=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><ExplicitLink id="2602728:132d47c9ecc:-7f7e" parent="2602728:132d47c9ecc:-8000" source="2602728:132d47c9ecc:-7f98" target="2602728:132d47c9ecc:-7f6c"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="296.0" y="132.0"/><mxPoint as="targetPoint" x="250.0" y="130.0"/></mxGeometry></ExplicitLink><CommandControlLink id="2602728:132d47c9ecc:-7f7d" parent="2602728:132d47c9ecc:-8000" source="2602728:132d47c9ecc:-7f7f" target="2602728:132d47c9ecc:-7f6b"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="320.0" y="76.0"/><mxPoint as="targetPoint" x="320.0" y="100.0"/></mxGeometry></CommandControlLink></root></mxGraphModel><mxCell as="defaultParent" id="2602728:132d47c9ecc:-8000" parent="2602728:132d47c9ecc:-7fff"/></XcosDiagram>
\ No newline at end of file diff --git a/Working_Examples/215/CH6/EX6.13/Figure6_13.jpg b/Working_Examples/215/CH6/EX6.13/Figure6_13.jpg Binary files differnew file mode 100755 index 0000000..7e26dda --- /dev/null +++ b/Working_Examples/215/CH6/EX6.13/Figure6_13.jpg diff --git a/Working_Examples/215/CH6/EX6.13/Figure6_13_xcos.jpg b/Working_Examples/215/CH6/EX6.13/Figure6_13_xcos.jpg Binary files differnew file mode 100755 index 0000000..35f9785 --- /dev/null +++ b/Working_Examples/215/CH6/EX6.13/Figure6_13_xcos.jpg diff --git a/Working_Examples/215/CH6/EX6.13/ex6_13.xcos b/Working_Examples/215/CH6/EX6.13/ex6_13.xcos new file mode 100755 index 0000000..81a17d4 --- /dev/null +++ b/Working_Examples/215/CH6/EX6.13/ex6_13.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" finalIntegrationTime="30.0" title="ex6_13"><!--Xcos - 1.0 - scilab-5.5.2 - 20160406 2040--><mxGraphModel as="model"><root><mxCell id="2602728:132d47c9ecc:-7f5a"/><mxCell id="2602728:132d47c9ecc:-7f5b" parent="2602728:132d47c9ecc:-7f5a"/><BasicBlock angle="90" id="77dfe223:134ebbf1891:-7f34" interfaceFunctionName="ConstantVoltage" ordering="1" parent="2602728:132d47c9ecc:-7f5b" simulationFunctionName="ConstantVoltage" simulationFunctionType="DEFAULT" style="ConstantVoltage;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="4"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ConstantVoltage"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="V"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="50.0" y="192.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="2602728:132d47c9ecc:-7f1a" ordering="1" parent="77dfe223:134ebbf1891:-7f34" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;spacingTop=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="2602728:132d47c9ecc:-7f19" ordering="1" parent="77dfe223:134ebbf1891:-7f34" style="ImplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;spacingBottom=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><GroundBlock angle="90" dependsOnU="1" id="77dfe223:134ebbf1891:-7f31" interfaceFunctionName="Ground" ordering="2" parent="2602728:132d47c9ecc:-7f5b" simulationFunctionName="Ground" simulationFunctionType="DEFAULT" style="Ground;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Ground"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="130.0" y="350.0"/></GroundBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="2602728:132d47c9ecc:-7f42" ordering="1" parent="77dfe223:134ebbf1891:-7f31" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=90;spacingTop=5;flip=false;mirror=false"><Orientation as="orientation" value="NORTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock angle="270" dependsOnT="1" id="77dfe223:134ebbf1891:-7f2f" interfaceFunctionName="CCS" ordering="3" parent="2602728:132d47c9ecc:-7f5b" simulationFunctionName="CCS" simulationFunctionType="DEFAULT" style="CCS;rotation=270;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CCS"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="Iin"/><data column="0" line="1" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="220.0" y="192.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="2602728:132d47c9ecc:-7f36" ordering="1" parent="77dfe223:134ebbf1891:-7f2f" style="ExplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=top;rotation=270;spacingBottom=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="6.0" y="40.0"/></ExplicitInputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="2602728:132d47c9ecc:-7f35" ordering="2" parent="77dfe223:134ebbf1891:-7f2f" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=top;rotation=270;spacingBottom=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="26.0" y="40.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="2602728:132d47c9ecc:-7f37" ordering="1" parent="77dfe223:134ebbf1891:-7f2f" style="ImplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=270;spacingTop=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitOutputPort><BasicBlock dependsOnU="1" id="77dfe223:134ebbf1891:-7f2b" interfaceFunctionName="Resistor" ordering="4" parent="2602728:132d47c9ecc:-7f5b" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="2000"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="2000.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="2000.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="130.0" y="112.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="2602728:132d47c9ecc:-7f13" ordering="1" parent="77dfe223:134ebbf1891:-7f2b" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="2602728:132d47c9ecc:-7f12" ordering="1" parent="77dfe223:134ebbf1891:-7f2b" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><ExplicitLink id="2602728:132d47c9ecc:-7f28" parent="2602728:132d47c9ecc:-7f5b" source="2602728:132d47c9ecc:-7f16" target="2602728:132d47c9ecc:-7f36"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="230.0" y="236.0"/><mxPoint as="targetPoint" x="210.0" y="270.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="210.0" y="270.0"/><mxPoint x="230.0" y="270.0"/></Array></mxGeometry></ExplicitLink><ImplicitLink id="2602728:132d47c9ecc:-7f26" parent="2602728:132d47c9ecc:-7f5b" source="2602728:132d47c9ecc:-7f1a" target="2602728:132d47c9ecc:-7f13"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="70.0" y="188.0"/><mxPoint as="targetPoint" x="130.0" y="130.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="70.0" y="130.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="77dfe223:134ebbf1891:-7f26" ordering="5" parent="2602728:132d47c9ecc:-7f5b" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="147.0" y="297.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="2602728:132d47c9ecc:-7f1f" ordering="1" parent="77dfe223:134ebbf1891:-7f26" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="2602728:132d47c9ecc:-7f1e" ordering="2" parent="77dfe223:134ebbf1891:-7f26" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="2602728:132d47c9ecc:-7f20" ordering="1" parent="77dfe223:134ebbf1891:-7f26" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="2602728:132d47c9ecc:-7f1d" parent="2602728:132d47c9ecc:-7f5b" source="2602728:132d47c9ecc:-7f19" target="2602728:132d47c9ecc:-7f20"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="70.0" y="300.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="2602728:132d47c9ecc:-7f1c" parent="2602728:132d47c9ecc:-7f5b" source="2602728:132d47c9ecc:-7f1f" target="2602728:132d47c9ecc:-7f35"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="250.0" y="300.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="2602728:132d47c9ecc:-7f22" parent="2602728:132d47c9ecc:-7f5b" source="2602728:132d47c9ecc:-7f1e" target="2602728:132d47c9ecc:-7f42"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="150.0" y="346.0"/><mxPoint as="targetPoint" x="150.0" y="300.0"/></mxGeometry></ImplicitLink><BasicBlock dependsOnU="1" id="77dfe223:134ebbf1891:-7f1f" interfaceFunctionName="PotentialSensor" ordering="6" parent="2602728:132d47c9ecc:-7f5b" simulationFunctionName="PotentialSensor" simulationFunctionType="DEFAULT" style="PotentialSensor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="PotentialSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="v"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="280.0" y="112.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="2602728:132d47c9ecc:-7f07" ordering="1" parent="77dfe223:134ebbf1891:-7f1f" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="2602728:132d47c9ecc:-7f08" ordering="1" parent="77dfe223:134ebbf1891:-7f1f" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><SplitBlock id="77dfe223:134ebbf1891:-7f1c" ordering="7" parent="2602728:132d47c9ecc:-7f5b" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="237.0" y="127.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="2602728:132d47c9ecc:-7f03" ordering="1" parent="77dfe223:134ebbf1891:-7f1c" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="2602728:132d47c9ecc:-7f02" ordering="2" parent="77dfe223:134ebbf1891:-7f1c" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="2602728:132d47c9ecc:-7f04" ordering="1" parent="77dfe223:134ebbf1891:-7f1c" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="2602728:132d47c9ecc:-7f01" parent="2602728:132d47c9ecc:-7f5b" source="2602728:132d47c9ecc:-7f37" target="2602728:132d47c9ecc:-7f04"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="2602728:132d47c9ecc:-7f00" parent="2602728:132d47c9ecc:-7f5b" source="2602728:132d47c9ecc:-7f12" target="2602728:132d47c9ecc:-7f03"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="240.0" y="130.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="2602728:132d47c9ecc:-7f06" parent="2602728:132d47c9ecc:-7f5b" source="2602728:132d47c9ecc:-7f02" target="2602728:132d47c9ecc:-7f07"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="276.0" y="132.0"/><mxPoint as="targetPoint" x="240.0" y="130.0"/></mxGeometry></ImplicitLink><BasicBlock blockType="d" id="77dfe223:134ebbf1891:-7ed4" interfaceFunctionName="CONST_m" ordering="8" parent="2602728:132d47c9ecc:-7f5b" simulationFunctionName="cstblk4" simulationFunctionType="C_OR_FORTRAN" style="CONST_m;flip=false;mirror=false" value="0.002"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="0.002"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.002"/></ScilabDouble></Array><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="50.0" width="40.0" x="530.0" y="258.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="77dfe223:134ebbf1891:-7ed3" ordering="1" parent="77dfe223:134ebbf1891:-7ed4" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><BasicBlock angle="90" id="77dfe223:134ebbf1891:-7ed2" interfaceFunctionName="ConstantVoltage" ordering="9" parent="2602728:132d47c9ecc:-7f5b" simulationFunctionName="ConstantVoltage" simulationFunctionType="DEFAULT" style="ConstantVoltage;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="4"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ConstantVoltage"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="V"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="410.0" y="200.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="77dfe223:134ebbf1891:-7ed0" ordering="1" parent="77dfe223:134ebbf1891:-7ed2" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;spacingTop=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="77dfe223:134ebbf1891:-7ed1" ordering="1" parent="77dfe223:134ebbf1891:-7ed2" style="ImplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;spacingBottom=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><GroundBlock angle="90" dependsOnU="1" id="77dfe223:134ebbf1891:-7ecf" interfaceFunctionName="Ground" ordering="10" parent="2602728:132d47c9ecc:-7f5b" simulationFunctionName="Ground" simulationFunctionType="DEFAULT" style="Ground;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Ground"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="490.0" y="358.0"/></GroundBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="77dfe223:134ebbf1891:-7ece" ordering="1" parent="77dfe223:134ebbf1891:-7ecf" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=90;spacingTop=5;flip=false;mirror=false"><Orientation as="orientation" value="NORTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock angle="270" dependsOnT="1" id="77dfe223:134ebbf1891:-7ecd" interfaceFunctionName="CCS" ordering="11" parent="2602728:132d47c9ecc:-7f5b" simulationFunctionName="CCS" simulationFunctionType="DEFAULT" style="CCS;rotation=270;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CCS"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="Iin"/><data column="0" line="1" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="580.0" y="200.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="77dfe223:134ebbf1891:-7ecb" ordering="1" parent="77dfe223:134ebbf1891:-7ecd" style="ExplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=top;rotation=270;spacingBottom=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="6.0" y="40.0"/></ExplicitInputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="77dfe223:134ebbf1891:-7eca" ordering="2" parent="77dfe223:134ebbf1891:-7ecd" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=top;rotation=270;spacingBottom=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="26.0" y="40.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="77dfe223:134ebbf1891:-7ecc" ordering="1" parent="77dfe223:134ebbf1891:-7ecd" style="ImplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=270;spacingTop=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitOutputPort><BasicBlock dependsOnU="1" id="77dfe223:134ebbf1891:-7ec9" interfaceFunctionName="Resistor" ordering="12" parent="2602728:132d47c9ecc:-7f5b" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="2000"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="2000.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="2000.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="490.0" y="120.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="77dfe223:134ebbf1891:-7ec7" ordering="1" parent="77dfe223:134ebbf1891:-7ec9" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="77dfe223:134ebbf1891:-7ec8" ordering="1" parent="77dfe223:134ebbf1891:-7ec9" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><ExplicitLink id="77dfe223:134ebbf1891:-7ec6" parent="2602728:132d47c9ecc:-7f5b" source="77dfe223:134ebbf1891:-7ed3" target="77dfe223:134ebbf1891:-7ecb"><mxGeometry as="geometry" x="360.0" y="8.0"><mxPoint as="sourcePoint" x="590.0" y="244.0"/><mxPoint as="targetPoint" x="570.0" y="278.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="570.0" y="278.0"/><mxPoint x="590.0" y="278.0"/></Array></mxGeometry></ExplicitLink><ImplicitLink id="77dfe223:134ebbf1891:-7ec5" parent="2602728:132d47c9ecc:-7f5b" source="77dfe223:134ebbf1891:-7ed0" target="77dfe223:134ebbf1891:-7ec7"><mxGeometry as="geometry" x="360.0" y="8.0"><mxPoint as="sourcePoint" x="430.0" y="196.0"/><mxPoint as="targetPoint" x="490.0" y="138.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="430.0" y="138.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="77dfe223:134ebbf1891:-7ec4" ordering="13" parent="2602728:132d47c9ecc:-7f5b" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="507.0" y="307.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="77dfe223:134ebbf1891:-7ec2" ordering="1" parent="77dfe223:134ebbf1891:-7ec4" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="77dfe223:134ebbf1891:-7ec1" ordering="2" parent="77dfe223:134ebbf1891:-7ec4" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="77dfe223:134ebbf1891:-7ec3" ordering="1" parent="77dfe223:134ebbf1891:-7ec4" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="77dfe223:134ebbf1891:-7ec0" parent="2602728:132d47c9ecc:-7f5b" source="77dfe223:134ebbf1891:-7ed1" target="77dfe223:134ebbf1891:-7ec3"><mxGeometry as="geometry" height="80.0" width="80.0" x="360.0" y="8.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="430.0" y="308.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="77dfe223:134ebbf1891:-7ebe" parent="2602728:132d47c9ecc:-7f5b" source="77dfe223:134ebbf1891:-7ec1" target="77dfe223:134ebbf1891:-7ece"><mxGeometry as="geometry" x="360.0" y="8.0"><mxPoint as="sourcePoint" x="510.0" y="354.0"/><mxPoint as="targetPoint" x="510.0" y="308.0"/></mxGeometry></ImplicitLink><BasicBlock angle="90" dependsOnU="1" id="77dfe223:134ebbf1891:-7e79" interfaceFunctionName="CurrentSensor" ordering="14" parent="2602728:132d47c9ecc:-7f5b" simulationFunctionName="CurrentSensor" simulationFunctionType="DEFAULT" style="CurrentSensor;rotation=90;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CurrentSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="i"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="660.0" y="170.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="77dfe223:134ebbf1891:-7e77" ordering="2" parent="77dfe223:134ebbf1891:-7e79" style="ExplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="26.0" y="40.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="77dfe223:134ebbf1891:-7e76" ordering="1" parent="77dfe223:134ebbf1891:-7e79" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="77dfe223:134ebbf1891:-7e78" ordering="1" parent="77dfe223:134ebbf1891:-7e79" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="6.0" y="40.0"/></ImplicitOutputPort><SplitBlock id="77dfe223:134ebbf1891:-7e69" ordering="15" parent="2602728:132d47c9ecc:-7f5b" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="607.0" y="307.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="77dfe223:134ebbf1891:-7e67" ordering="1" parent="77dfe223:134ebbf1891:-7e69" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="77dfe223:134ebbf1891:-7e66" ordering="2" parent="77dfe223:134ebbf1891:-7e69" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="77dfe223:134ebbf1891:-7e68" ordering="1" parent="77dfe223:134ebbf1891:-7e69" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="77dfe223:134ebbf1891:-7e65" parent="2602728:132d47c9ecc:-7f5b" source="77dfe223:134ebbf1891:-7ec2" target="77dfe223:134ebbf1891:-7e68"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="77dfe223:134ebbf1891:-7e64" parent="2602728:132d47c9ecc:-7f5b" source="77dfe223:134ebbf1891:-7e67" target="77dfe223:134ebbf1891:-7eca"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="610.0" y="308.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="77dfe223:134ebbf1891:-7e6a" parent="2602728:132d47c9ecc:-7f5b" source="77dfe223:134ebbf1891:-7e78" target="77dfe223:134ebbf1891:-7e66"><mxGeometry as="geometry" x="10.0"><mxPoint as="sourcePoint" x="670.0" y="210.0"/><mxPoint as="targetPoint" x="620.0" y="310.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="670.0" y="310.0"/></Array></mxGeometry></ImplicitLink><BasicBlock dependsOnU="1" id="77dfe223:134ebbf1891:-7e53" interfaceFunctionName="Resistor" ordering="16" parent="2602728:132d47c9ecc:-7f5b" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="3000"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="3000.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="3000.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="620.0" y="120.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="77dfe223:134ebbf1891:-7e42" ordering="1" parent="77dfe223:134ebbf1891:-7e53" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="77dfe223:134ebbf1891:-7e41" ordering="1" parent="77dfe223:134ebbf1891:-7e53" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><SplitBlock id="77dfe223:134ebbf1891:-7e4a" ordering="17" parent="2602728:132d47c9ecc:-7f5b" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="597.0" y="137.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="77dfe223:134ebbf1891:-7e48" ordering="1" parent="77dfe223:134ebbf1891:-7e4a" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="77dfe223:134ebbf1891:-7e47" ordering="2" parent="77dfe223:134ebbf1891:-7e4a" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="77dfe223:134ebbf1891:-7e49" ordering="1" parent="77dfe223:134ebbf1891:-7e4a" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="77dfe223:134ebbf1891:-7e46" parent="2602728:132d47c9ecc:-7f5b" source="77dfe223:134ebbf1891:-7ecc" target="77dfe223:134ebbf1891:-7e49"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="77dfe223:134ebbf1891:-7e45" parent="2602728:132d47c9ecc:-7f5b" source="77dfe223:134ebbf1891:-7ec8" target="77dfe223:134ebbf1891:-7e48"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="600.0" y="138.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="77dfe223:134ebbf1891:-7e4b" parent="2602728:132d47c9ecc:-7f5b" source="77dfe223:134ebbf1891:-7e47" target="77dfe223:134ebbf1891:-7e42"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="620.0" y="140.0"/><mxPoint as="targetPoint" x="600.0" y="140.0"/></mxGeometry></ImplicitLink><ImplicitLink id="77dfe223:134ebbf1891:-7e44" parent="2602728:132d47c9ecc:-7f5b" source="77dfe223:134ebbf1891:-7e41" target="77dfe223:134ebbf1891:-7e76"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="660.0" y="140.0"/><mxPoint as="targetPoint" x="680.0" y="160.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="680.0" y="140.0"/></Array></mxGeometry></ImplicitLink><BasicBlock dependsOnU="1" id="77dfe223:134ebbf1891:-7e29" interfaceFunctionName="CMSCOPE" ordering="18" parent="2602728:132d47c9ecc:-7f5b" simulationFunctionName="cmscope" simulationFunctionType="C_OR_FORTRAN" style="CMSCOPE;flip=false;mirror=false"><ScilabString as="exprs" height="11" width="1"><data column="0" line="0" value="1 1"/><data column="0" line="1" value="1 3 5 7 9 11 13 15"/><data column="0" line="2" value="-1"/><data column="0" line="3" value="[]"/><data column="0" line="4" value="[]"/><data column="0" line="5" value="0.001 7"/><data column="0" line="6" value="0.002 9"/><data column="0" line="7" value="30 30"/><data column="0" line="8" value="20"/><data column="0" line="9" value="0"/><data column="0" line="10" value=""/></ScilabString><ScilabDouble as="realParameters" height="7" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="30.0"/><data column="0" line="2" realPart="30.0"/><data column="0" line="3" realPart="0.001"/><data column="0" line="4" realPart="0.002"/><data column="0" line="5" realPart="7.0"/><data column="0" line="6" realPart="9.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="12" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="2.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="-1.0"/><data column="0" line="4" realPart="-1.0"/><data column="0" line="5" realPart="-1.0"/><data column="0" line="6" realPart="-1.0"/><data column="0" line="7" realPart="1.0"/><data column="0" line="8" realPart="1.0"/><data column="0" line="9" realPart="1.0"/><data column="0" line="10" realPart="3.0"/><data column="0" line="11" realPart="0.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="760.0" y="250.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="77dfe223:134ebbf1891:-7e16" ordering="1" parent="77dfe223:134ebbf1891:-7e29" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ExplicitInputPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="77dfe223:134ebbf1891:-7e15" ordering="2" parent="77dfe223:134ebbf1891:-7e29" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="26.0"/></ExplicitInputPort><ControlPort dataType="UNKNOW_TYPE" id="77dfe223:134ebbf1891:-7e14" ordering="1" parent="77dfe223:134ebbf1891:-7e29" style="ControlPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><ExplicitLink id="77dfe223:134ebbf1891:-7e1b" parent="2602728:132d47c9ecc:-7f5b" source="2602728:132d47c9ecc:-7f08" target="77dfe223:134ebbf1891:-7e15"><mxGeometry as="geometry" y="-10.0"><mxPoint as="sourcePoint" x="320.0" y="120.0"/><mxPoint as="targetPoint" x="760.0" y="270.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="350.0" y="130.0"/><mxPoint x="350.0" y="280.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="77dfe223:134ebbf1891:-7e1a" parent="2602728:132d47c9ecc:-7f5b" source="77dfe223:134ebbf1891:-7e77" target="77dfe223:134ebbf1891:-7e16"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="690.0" y="210.0"/><mxPoint as="targetPoint" x="760.0" y="260.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="690.0" y="260.0"/></Array></mxGeometry></ExplicitLink><BasicBlock blockType="d" id="77dfe223:134ebbf1891:-7f36" interfaceFunctionName="CONST_m" ordering="19" parent="2602728:132d47c9ecc:-7f5b" simulationFunctionName="cstblk4" simulationFunctionType="C_OR_FORTRAN" style="CONST_m;flip=false;mirror=false" value="0.002"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="0.002"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.002"/></ScilabDouble></Array><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="50.0" width="40.0" x="170.0" y="250.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="2602728:132d47c9ecc:-7f16" ordering="1" parent="77dfe223:134ebbf1891:-7f36" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><BasicBlock blockType="h" id="-13640e5a:13894ab8a5f:-73e1" interfaceFunctionName="CLOCK_c" ordering="20" parent="2602728:132d47c9ecc:-7f5b" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="119.0"/><data column="1" line="0" realPart="-150.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-4ffe9184:1674e807b56:-7ebb"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-4ffe9184:1674e807b56:-7ebb"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.1"/><data column="0" line="1" value="0.1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.1"/><data column="0" line="1" realPart="0.1"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.1"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-4ffe9184:1674e807b56:-7eb9"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-4ffe9184:1674e807b56:-7eb9"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="123.3773266666667"/><data column="1" line="0" realPart="-169.33333333333331"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="7.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="5.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-4ffe9184:1674e807b56:-7eb6"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-4ffe9184:1674e807b56:-7eb6"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="100.0"/><data column="0" line="2" realPart="133.8773266666667"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-44.0"/><data column="0" line="1" realPart="-180.0"/><data column="0" line="2" realPart="-158.33333333333331"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="132.71066000000005"/><data column="0" line="1" realPart="149.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-173.33333333333331"/><data column="0" line="1" realPart="-126.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="135.04399333333336"/><data column="0" line="1" realPart="140.70999999999998"/><data column="0" line="2" realPart="100.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-173.33333333333331"/><data column="0" line="1" realPart="-50.0"/><data column="0" line="2" realPart="-50.0"/><data column="0" line="3" realPart="4.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="760.0" y="170.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="-13640e5a:13894ab8a5f:-73e0" ordering="1" parent="-13640e5a:13894ab8a5f:-73e1" style="CommandPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><CommandControlLink id="-13640e5a:13894ab8a5f:-73dd" parent="2602728:132d47c9ecc:-7f5b" source="-13640e5a:13894ab8a5f:-73e0" target="77dfe223:134ebbf1891:-7e14"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="780.0" y="214.0"/><mxPoint as="targetPoint" x="780.0" y="240.0"/></mxGeometry></CommandControlLink></root></mxGraphModel><mxCell as="defaultParent" id="2602728:132d47c9ecc:-7f5b" parent="2602728:132d47c9ecc:-7f5a"/></XcosDiagram>
\ No newline at end of file diff --git a/Working_Examples/215/CH6/EX6.14/Figure6_14.jpg b/Working_Examples/215/CH6/EX6.14/Figure6_14.jpg Binary files differnew file mode 100755 index 0000000..d1407ad --- /dev/null +++ b/Working_Examples/215/CH6/EX6.14/Figure6_14.jpg diff --git a/Working_Examples/215/CH6/EX6.14/Figure6_14_xcos.jpg b/Working_Examples/215/CH6/EX6.14/Figure6_14_xcos.jpg Binary files differnew file mode 100755 index 0000000..4042fe5 --- /dev/null +++ b/Working_Examples/215/CH6/EX6.14/Figure6_14_xcos.jpg diff --git a/Working_Examples/215/CH6/EX6.14/ex6_14.xcos b/Working_Examples/215/CH6/EX6.14/ex6_14.xcos new file mode 100755 index 0000000..9d397af --- /dev/null +++ b/Working_Examples/215/CH6/EX6.14/ex6_14.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" finalIntegrationTime="30.0" title="ex6_14"><!--Xcos - 1.0 - scilab-5.5.2 - 20160406 2040--><mxGraphModel as="model"><root><mxCell id="-1f470ada:134d070a228:-7f32"/><mxCell id="-1f470ada:134d070a228:-7f33" parent="-1f470ada:134d070a228:-7f32"/><BasicBlock angle="90" id="-1f470ada:134d070a228:-7f2a" interfaceFunctionName="ConstantVoltage" ordering="1" parent="-1f470ada:134d070a228:-7f33" simulationFunctionName="ConstantVoltage" simulationFunctionType="DEFAULT" style="ConstantVoltage;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="4"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ConstantVoltage"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="V"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="40.0" y="180.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1f470ada:134d070a228:-7e7a" ordering="1" parent="-1f470ada:134d070a228:-7f2a" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1f470ada:134d070a228:-7e7b" ordering="1" parent="-1f470ada:134d070a228:-7f2a" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock angle="270" dependsOnT="1" id="-1f470ada:134d070a228:-7f1e" interfaceFunctionName="CCS" ordering="2" parent="-1f470ada:134d070a228:-7f33" simulationFunctionName="CCS" simulationFunctionType="DEFAULT" style="CCS;rotation=270;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CCS"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="Iin"/><data column="0" line="1" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="190.0" y="180.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1f470ada:134d070a228:-7f1d" ordering="1" parent="-1f470ada:134d070a228:-7f1e" style="ImplicitOutputPort;align=center;verticalAlign=top;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitOutputPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1f470ada:134d070a228:-7f1c" ordering="1" parent="-1f470ada:134d070a228:-7f1e" style="ExplicitInputPort;align=center;verticalAlign=bottom;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="6.0" y="40.0"/></ExplicitInputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1f470ada:134d070a228:-7f1b" ordering="2" parent="-1f470ada:134d070a228:-7f1e" style="ImplicitInputPort;align=center;verticalAlign=bottom;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="26.0" y="40.0"/></ImplicitInputPort><GroundBlock dependsOnU="1" id="-1f470ada:134d070a228:-7f15" interfaceFunctionName="Ground" ordering="3" parent="-1f470ada:134d070a228:-7f33" simulationFunctionName="Ground" simulationFunctionType="DEFAULT" style="Ground;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Ground"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="170.0" y="320.0"/></GroundBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1f470ada:134d070a228:-7f14" ordering="1" parent="-1f470ada:134d070a228:-7f15" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><Orientation as="orientation" value="NORTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="-1f470ada:134d070a228:-7f0c" interfaceFunctionName="Resistor" ordering="4" parent="-1f470ada:134d070a228:-7f33" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="2000"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="2000.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="2000.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="110.0" y="110.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1f470ada:134d070a228:-7e76" ordering="1" parent="-1f470ada:134d070a228:-7f0c" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1f470ada:134d070a228:-7e77" ordering="1" parent="-1f470ada:134d070a228:-7f0c" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitLink id="-1f470ada:134d070a228:-7ef3" parent="-1f470ada:134d070a228:-7f33" source="-1f470ada:134d070a228:-7e7b" target="-1f470ada:134d070a228:-7e77"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="60.0" y="176.0"/><mxPoint as="targetPoint" x="110.0" y="130.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="60.0" y="130.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="-1f470ada:134d070a228:-7ee5" ordering="5" parent="-1f470ada:134d070a228:-7f33" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="187.0" y="287.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="-1f470ada:134d070a228:-7ee4" ordering="1" parent="-1f470ada:134d070a228:-7ee5" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-1f470ada:134d070a228:-7ee3" ordering="1" parent="-1f470ada:134d070a228:-7ee5" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-1f470ada:134d070a228:-7ee2" ordering="2" parent="-1f470ada:134d070a228:-7ee5" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitLink id="-1f470ada:134d070a228:-7ee1" parent="-1f470ada:134d070a228:-7f33" source="-1f470ada:134d070a228:-7e7a" target="-1f470ada:134d070a228:-7ee4"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="60.0" y="290.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-1f470ada:134d070a228:-7ee6" parent="-1f470ada:134d070a228:-7f33" source="-1f470ada:134d070a228:-7ee2" target="-1f470ada:134d070a228:-7f14"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="190.0" y="316.0"/><mxPoint as="targetPoint" x="190.0" y="290.0"/></mxGeometry></ImplicitLink><BasicBlock angle="180" dependsOnU="1" id="-1f470ada:134d070a228:-7ed1" interfaceFunctionName="GAINBLK_f" ordering="6" parent="-1f470ada:134d070a228:-7f33" simulationFunctionName="gain" simulationFunctionType="DEFAULT" style="GAINBLK_f;rotation=180;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="1/4000"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="2.5E-4"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="50.0" width="40.0" x="270.0" y="230.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1f470ada:134d070a228:-7e72" ordering="1" parent="-1f470ada:134d070a228:-7ed1" style="ExplicitOutputPort;align=left;verticalAlign=middle;spacing=10;rotation=180;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitOutputPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1f470ada:134d070a228:-7e73" ordering="1" parent="-1f470ada:134d070a228:-7ed1" style="ExplicitInputPort;align=right;verticalAlign=middle;spacing=10;rotation=180;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitInputPort><ExplicitLink id="-1f470ada:134d070a228:-7ecd" parent="-1f470ada:134d070a228:-7f33" source="-1f470ada:134d070a228:-7e72" target="-1f470ada:134d070a228:-7f1c"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="266.0" y="250.0"/><mxPoint as="targetPoint" x="200.0" y="230.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="200.0" y="250.0"/></Array></mxGeometry></ExplicitLink><ImplicitLink id="-1f470ada:134d070a228:-7eac" parent="-1f470ada:134d070a228:-7f33" source="-1f470ada:134d070a228:-7ee3" target="-1f470ada:134d070a228:-7f1b"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="220.0" y="290.0"/></Array></mxGeometry></ImplicitLink><BasicBlock dependsOnU="1" id="-1f470ada:134d070a228:-7e96" interfaceFunctionName="PotentialSensor" ordering="7" parent="-1f470ada:134d070a228:-7f33" simulationFunctionName="PotentialSensor" simulationFunctionType="DEFAULT" style="PotentialSensor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="PotentialSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="v"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="270.0" y="110.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1f470ada:134d070a228:-7e95" ordering="1" parent="-1f470ada:134d070a228:-7e96" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1f470ada:134d070a228:-7e94" ordering="1" parent="-1f470ada:134d070a228:-7e96" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><SplitBlock id="-1f470ada:134d070a228:-7e92" ordering="8" parent="-1f470ada:134d070a228:-7f33" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="207.0" y="127.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="-1f470ada:134d070a228:-7e91" ordering="1" parent="-1f470ada:134d070a228:-7e92" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-1f470ada:134d070a228:-7e90" ordering="1" parent="-1f470ada:134d070a228:-7e92" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-1f470ada:134d070a228:-7e8f" ordering="2" parent="-1f470ada:134d070a228:-7e92" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitLink id="-1f470ada:134d070a228:-7e8e" parent="-1f470ada:134d070a228:-7f33" source="-1f470ada:134d070a228:-7f1d" target="-1f470ada:134d070a228:-7e91"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-1f470ada:134d070a228:-7e8d" parent="-1f470ada:134d070a228:-7f33" source="-1f470ada:134d070a228:-7e76" target="-1f470ada:134d070a228:-7e90"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-1f470ada:134d070a228:-7e93" parent="-1f470ada:134d070a228:-7f33" source="-1f470ada:134d070a228:-7e8f" target="-1f470ada:134d070a228:-7e94"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="266.0" y="130.0"/><mxPoint as="targetPoint" x="210.0" y="130.0"/></mxGeometry></ImplicitLink><BasicBlock angle="90" blockType="h" id="-1f470ada:134d070a228:-7e84" interfaceFunctionName="DELAY_f" ordering="9" parent="-1f470ada:134d070a228:-7f33" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="DELAY_f;rotation=90;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="-166.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="1"/><data column="0" line="1" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="7.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"IN_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="IN_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="input"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-2.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-4ffe9184:1674e807b56:-7e68"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="IN_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-4ffe9184:1674e807b56:-7e68"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="368.0"/><data column="1" line="0" realPart="-166.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="1"/><data column="0" line="1" value="1"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"OUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="OUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-2.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-4ffe9184:1674e807b56:-7e66"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="OUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-4ffe9184:1674e807b56:-7e66"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="106.0"/><data column="1" line="0" realPart="-121.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="50.0"/><data column="1" line="0" realPart="50.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="0;0;0;0;0;0;0;0;0;0"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="7.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="9.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"REGISTER_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="REGISTER_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="delay"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="10" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="0.0"/><data column="0" line="2" realPart="0.0"/><data column="0" line="3" realPart="0.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/><data column="0" line="7" realPart="0.0"/><data column="0" line="8" realPart="0.0"/><data column="0" line="9" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-4ffe9184:1674e807b56:-7e64"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="REGISTER_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-4ffe9184:1674e807b56:-7e64"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="131.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.001"/><data column="0" line="1" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="10.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.001"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-4ffe9184:1674e807b56:-7e60"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-4ffe9184:1674e807b56:-7e60"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="213.66666666666669"/><data column="1" line="0" realPart="-134.13333333333338"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="7.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="9.0"/><data column="0" line="1" realPart="10.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-4ffe9184:1674e807b56:-7e5d"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-4ffe9184:1674e807b56:-7e5d"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="210.0"/><data column="0" line="1" realPart="384.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-96.0"/><data column="0" line="1" realPart="-156.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="64.0"/><data column="0" line="1" realPart="152.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-156.0"/><data column="0" line="1" realPart="-96.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="191.0"/><data column="0" line="1" realPart="224.16666666666669"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-44.0"/><data column="0" line="1" realPart="-123.13333333333338"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="223.00000000000003"/><data column="0" line="1" realPart="181.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-138.13333333333338"/><data column="0" line="1" realPart="-67.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="5" width="1"><data column="0" line="0" realPart="225.33333333333334"/><data column="0" line="1" realPart="276.6"/><data column="0" line="2" realPart="276.6"/><data column="0" line="3" realPart="231.0"/><data column="0" line="4" realPart="191.0"/></ScilabDouble><ScilabDouble height="5" width="1"><data column="0" line="0" realPart="-138.13333333333338"/><data column="0" line="1" realPart="-144.8"/><data column="0" line="2" realPart="-49.0"/><data column="0" line="3" realPart="-49.0"/><data column="0" line="4" realPart="4.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="50.0" width="60.0" x="340.0" y="150.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1f470ada:134d070a228:-7e37" ordering="1" parent="-1f470ada:134d070a228:-7e84" style="ExplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="26.0" y="50.0"/></ExplicitOutputPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1f470ada:134d070a228:-7e38" ordering="1" parent="-1f470ada:134d070a228:-7e84" style="ExplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="26.0" y="-8.0"/></ExplicitInputPort><ExplicitLink id="-1f470ada:134d070a228:-7e7d" parent="-1f470ada:134d070a228:-7f33" source="-1f470ada:134d070a228:-7e37" target="-1f470ada:134d070a228:-7e73"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="370.0" y="204.0"/><mxPoint as="targetPoint" x="310.0" y="250.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="370.0" y="250.0"/></Array></mxGeometry></ExplicitLink><BasicBlock dependsOnU="1" id="-1f470ada:134d070a228:-7e69" interfaceFunctionName="CSCOPE" ordering="10" parent="-1f470ada:134d070a228:-7f33" simulationFunctionName="cscope" simulationFunctionType="C_OR_FORTRAN" style="CSCOPE;flip=false;mirror=false"><ScilabString as="exprs" height="10" width="1"><data column="0" line="0" value="1 3 5 7 9 11 13 15"/><data column="0" line="1" value="-1"/><data column="0" line="2" value="[]"/><data column="0" line="3" value="[600;400]"/><data column="0" line="4" value="7"/><data column="0" line="5" value="9"/><data column="0" line="6" value="30"/><data column="0" line="7" value="20"/><data column="0" line="8" value="0"/><data column="0" line="9" value=""/></ScilabString><ScilabDouble as="realParameters" height="4" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="7.0"/><data column="0" line="2" realPart="9.0"/><data column="0" line="3" realPart="30.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="15" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="1.0"/><data column="0" line="4" realPart="3.0"/><data column="0" line="5" realPart="5.0"/><data column="0" line="6" realPart="7.0"/><data column="0" line="7" realPart="9.0"/><data column="0" line="8" realPart="11.0"/><data column="0" line="9" realPart="13.0"/><data column="0" line="10" realPart="15.0"/><data column="0" line="11" realPart="-1.0"/><data column="0" line="12" realPart="-1.0"/><data column="0" line="13" realPart="600.0"/><data column="0" line="14" realPart="400.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="380.0" y="80.0"/></BasicBlock><ControlPort dataType="UNKNOW_TYPE" id="-1f470ada:134d070a228:-7e4e" ordering="1" parent="-1f470ada:134d070a228:-7e69" style="ControlPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="-1f470ada:134d070a228:-7e4f" ordering="1" parent="-1f470ada:134d070a228:-7e69" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><BasicBlock blockType="h" id="-1f470ada:134d070a228:-7e61" interfaceFunctionName="CLOCK_c" ordering="11" parent="-1f470ada:134d070a228:-7f33" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="119.0"/><data column="1" line="0" realPart="-150.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-4ffe9184:1674e807b56:-7e52"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-4ffe9184:1674e807b56:-7e52"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.1"/><data column="0" line="1" value="0.1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.1"/><data column="0" line="1" realPart="0.1"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.1"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-4ffe9184:1674e807b56:-7e50"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-4ffe9184:1674e807b56:-7e50"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="123.3773266666667"/><data column="1" line="0" realPart="-169.33333333333331"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="7.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="5.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-4ffe9184:1674e807b56:-7e4d"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-4ffe9184:1674e807b56:-7e4d"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="100.0"/><data column="0" line="2" realPart="133.8773266666667"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-44.0"/><data column="0" line="1" realPart="-180.0"/><data column="0" line="2" realPart="-158.33333333333331"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="132.71066000000005"/><data column="0" line="1" realPart="149.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-173.33333333333331"/><data column="0" line="1" realPart="-126.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="135.04399333333336"/><data column="0" line="1" realPart="140.70999999999998"/><data column="0" line="2" realPart="100.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-173.33333333333331"/><data column="0" line="1" realPart="-50.0"/><data column="0" line="2" realPart="-50.0"/><data column="0" line="3" realPart="4.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="380.0" y="10.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="-1f470ada:134d070a228:-7e34" ordering="1" parent="-1f470ada:134d070a228:-7e61" style="CommandPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><SplitBlock id="-1f470ada:134d070a228:-7e57" ordering="12" parent="-1f470ada:134d070a228:-7f33" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="337.0" y="127.0"/></SplitBlock><ExplicitInputPort dataType="UNKNOW_TYPE" id="-1f470ada:134d070a228:-7e56" ordering="1" parent="-1f470ada:134d070a228:-7e57" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ExplicitInputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="-1f470ada:134d070a228:-7e55" ordering="1" parent="-1f470ada:134d070a228:-7e57" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="-1f470ada:134d070a228:-7e54" ordering="2" parent="-1f470ada:134d070a228:-7e57" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ExplicitOutputPort><ExplicitLink id="-1f470ada:134d070a228:-7e53" parent="-1f470ada:134d070a228:-7f33" source="-1f470ada:134d070a228:-7e95" target="-1f470ada:134d070a228:-7e56"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ExplicitLink><ExplicitLink id="-1f470ada:134d070a228:-7e52" parent="-1f470ada:134d070a228:-7f33" source="-1f470ada:134d070a228:-7e55" target="-1f470ada:134d070a228:-7e38"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="370.0" y="130.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="-1f470ada:134d070a228:-7e58" parent="-1f470ada:134d070a228:-7f33" source="-1f470ada:134d070a228:-7e54" target="-1f470ada:134d070a228:-7e4f"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="376.0" y="100.0"/><mxPoint as="targetPoint" x="340.0" y="130.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="340.0" y="100.0"/></Array></mxGeometry></ExplicitLink><CommandControlLink id="-1f470ada:134d070a228:-7e51" parent="-1f470ada:134d070a228:-7f33" source="-1f470ada:134d070a228:-7e34" target="-1f470ada:134d070a228:-7e4e"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="400.0" y="44.0"/><mxPoint as="targetPoint" x="400.0" y="70.0"/></mxGeometry></CommandControlLink></root></mxGraphModel><mxCell as="defaultParent" id="-1f470ada:134d070a228:-7f33" parent="-1f470ada:134d070a228:-7f32"/></XcosDiagram>
\ No newline at end of file diff --git a/Working_Examples/215/CH6/EX6.15/Figure6_15.jpg b/Working_Examples/215/CH6/EX6.15/Figure6_15.jpg Binary files differnew file mode 100755 index 0000000..95fd53d --- /dev/null +++ b/Working_Examples/215/CH6/EX6.15/Figure6_15.jpg diff --git a/Working_Examples/215/CH6/EX6.15/Figure6_15_xcos.jpg b/Working_Examples/215/CH6/EX6.15/Figure6_15_xcos.jpg Binary files differnew file mode 100755 index 0000000..df93512 --- /dev/null +++ b/Working_Examples/215/CH6/EX6.15/Figure6_15_xcos.jpg diff --git a/Working_Examples/215/CH6/EX6.15/ex6_15.xcos b/Working_Examples/215/CH6/EX6.15/ex6_15.xcos new file mode 100755 index 0000000..ce5a5a3 --- /dev/null +++ b/Working_Examples/215/CH6/EX6.15/ex6_15.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" finalIntegrationTime="30.0" title="ex6_15"><!--Xcos - 1.0 - scilab-5.5.2 - 20160406 2040--><mxGraphModel as="model"><root><mxCell id="-1f470ada:134d070a228:-7fff"/><mxCell id="-1f470ada:134d070a228:-8000" parent="-1f470ada:134d070a228:-7fff"/><BasicBlock angle="90" dependsOnT="1" id="-1f470ada:134d070a228:-7fdc" interfaceFunctionName="CVS" ordering="1" parent="-1f470ada:134d070a228:-8000" simulationFunctionName="CVS" simulationFunctionType="DEFAULT" style="CVS;rotation=90;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CVS"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="vin"/><data column="0" line="1" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="50.0" y="190.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1f470ada:134d070a228:-7fdb" ordering="1" parent="-1f470ada:134d070a228:-7fdc" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1f470ada:134d070a228:-7fda" ordering="1" parent="-1f470ada:134d070a228:-7fdc" style="ExplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="6.0" y="-8.0"/></ExplicitInputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1f470ada:134d070a228:-7fd9" ordering="2" parent="-1f470ada:134d070a228:-7fdc" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="26.0" y="-8.0"/></ImplicitInputPort><GroundBlock dependsOnU="1" id="-1f470ada:134d070a228:-7fd3" interfaceFunctionName="Ground" ordering="2" parent="-1f470ada:134d070a228:-8000" simulationFunctionName="Ground" simulationFunctionType="DEFAULT" style="Ground;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Ground"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="130.0" y="320.0"/></GroundBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1f470ada:134d070a228:-7fd2" ordering="1" parent="-1f470ada:134d070a228:-7fd3" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><Orientation as="orientation" value="NORTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="-1f470ada:134d070a228:-7fca" interfaceFunctionName="Resistor" ordering="3" parent="-1f470ada:134d070a228:-8000" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="3"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="120.0" y="110.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1f470ada:134d070a228:-7f85" ordering="1" parent="-1f470ada:134d070a228:-7fca" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1f470ada:134d070a228:-7f86" ordering="1" parent="-1f470ada:134d070a228:-7fca" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><BasicBlock angle="90" dependsOnU="1" id="-1f470ada:134d070a228:-7fc1" interfaceFunctionName="Resistor" ordering="4" parent="-1f470ada:134d070a228:-8000" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="2"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="200.0" y="190.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1f470ada:134d070a228:-7f81" ordering="1" parent="-1f470ada:134d070a228:-7fc1" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1f470ada:134d070a228:-7f82" ordering="1" parent="-1f470ada:134d070a228:-7fc1" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitLink id="-1f470ada:134d070a228:-7f9f" parent="-1f470ada:134d070a228:-8000" source="-1f470ada:134d070a228:-7fd9" target="-1f470ada:134d070a228:-7f86"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="80.0" y="186.0"/><mxPoint as="targetPoint" x="120.0" y="130.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="80.0" y="130.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="-1f470ada:134d070a228:-7f9b" ordering="5" parent="-1f470ada:134d070a228:-8000" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="147.0" y="277.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="-1f470ada:134d070a228:-7f9a" ordering="1" parent="-1f470ada:134d070a228:-7f9b" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-1f470ada:134d070a228:-7f99" ordering="1" parent="-1f470ada:134d070a228:-7f9b" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-1f470ada:134d070a228:-7f98" ordering="2" parent="-1f470ada:134d070a228:-7f9b" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitLink id="-1f470ada:134d070a228:-7f97" parent="-1f470ada:134d070a228:-8000" source="-1f470ada:134d070a228:-7fdb" target="-1f470ada:134d070a228:-7f9a"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="70.0" y="280.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-1f470ada:134d070a228:-7f9c" parent="-1f470ada:134d070a228:-8000" source="-1f470ada:134d070a228:-7f98" target="-1f470ada:134d070a228:-7fd2"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="150.0" y="316.0"/><mxPoint as="targetPoint" x="150.0" y="280.0"/></mxGeometry></ImplicitLink><BasicBlock blockType="d" id="-1f470ada:134d070a228:-7f90" interfaceFunctionName="CONST_m" ordering="6" parent="-1f470ada:134d070a228:-8000" simulationFunctionName="cstblk4" simulationFunctionType="C_OR_FORTRAN" style="CONST_m;flip=false;mirror=false" value="1.5"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="1.5"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.5"/></ScilabDouble></Array><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="50.0" width="40.0" x="10.0" y="120.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1f470ada:134d070a228:-7f47" ordering="1" parent="-1f470ada:134d070a228:-7f90" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ExplicitLink id="-1f470ada:134d070a228:-7f8e" parent="-1f470ada:134d070a228:-8000" source="-1f470ada:134d070a228:-7f47" target="-1f470ada:134d070a228:-7fda"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="54.0" y="140.0"/><mxPoint as="targetPoint" x="60.0" y="190.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="60.0" y="140.0"/></Array></mxGeometry></ExplicitLink><BasicBlock blockType="h" id="-1f470ada:134d070a228:-7f7a" interfaceFunctionName="CLOCK_c" ordering="7" parent="-1f470ada:134d070a228:-8000" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="119.0"/><data column="1" line="0" realPart="-150.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-73e75f0:167968eb73f:-7e27"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-73e75f0:167968eb73f:-7e27"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.1"/><data column="0" line="1" value="0.1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.1"/><data column="0" line="1" realPart="0.1"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.1"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-73e75f0:167968eb73f:-7e25"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-73e75f0:167968eb73f:-7e25"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="123.3773266666667"/><data column="1" line="0" realPart="-169.33333333333331"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="7.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="5.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-73e75f0:167968eb73f:-7e22"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-73e75f0:167968eb73f:-7e22"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="100.0"/><data column="0" line="2" realPart="133.8773266666667"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-44.0"/><data column="0" line="1" realPart="-180.0"/><data column="0" line="2" realPart="-158.33333333333331"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="132.71066000000005"/><data column="0" line="1" realPart="149.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-173.33333333333331"/><data column="0" line="1" realPart="-126.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="135.04399333333336"/><data column="0" line="1" realPart="140.70999999999998"/><data column="0" line="2" realPart="100.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-173.33333333333331"/><data column="0" line="1" realPart="-50.0"/><data column="0" line="2" realPart="-50.0"/><data column="0" line="3" realPart="4.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="350.0" y="80.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="-1f470ada:134d070a228:-7f79" ordering="1" parent="-1f470ada:134d070a228:-7f7a" style="CommandPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><BasicBlock dependsOnU="1" id="-1f470ada:134d070a228:-7f71" interfaceFunctionName="CSCOPE" ordering="8" parent="-1f470ada:134d070a228:-8000" simulationFunctionName="cscope" simulationFunctionType="C_OR_FORTRAN" style="CSCOPE;flip=false;mirror=false"><ScilabString as="exprs" height="10" width="1"><data column="0" line="0" value="1 3 5 7 9 11 13 15"/><data column="0" line="1" value="-1"/><data column="0" line="2" value="[]"/><data column="0" line="3" value="[600;400]"/><data column="0" line="4" value="0.5"/><data column="0" line="5" value="0.7"/><data column="0" line="6" value="30"/><data column="0" line="7" value="20"/><data column="0" line="8" value="0"/><data column="0" line="9" value=""/></ScilabString><ScilabDouble as="realParameters" height="4" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="0.5"/><data column="0" line="2" realPart="0.7"/><data column="0" line="3" realPart="30.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="15" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="1.0"/><data column="0" line="4" realPart="3.0"/><data column="0" line="5" realPart="5.0"/><data column="0" line="6" realPart="7.0"/><data column="0" line="7" realPart="9.0"/><data column="0" line="8" realPart="11.0"/><data column="0" line="9" realPart="13.0"/><data column="0" line="10" realPart="15.0"/><data column="0" line="11" realPart="-1.0"/><data column="0" line="12" realPart="-1.0"/><data column="0" line="13" realPart="600.0"/><data column="0" line="14" realPart="400.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="350.0" y="150.0"/></BasicBlock><ControlPort dataType="UNKNOW_TYPE" id="-1f470ada:134d070a228:-7f43" ordering="1" parent="-1f470ada:134d070a228:-7f71" style="ControlPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="-1f470ada:134d070a228:-7f44" ordering="1" parent="-1f470ada:134d070a228:-7f71" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><VoltageSensorBlock dependsOnU="1" id="-1f470ada:134d070a228:-7f65" interfaceFunctionName="VoltageSensor" ordering="9" parent="-1f470ada:134d070a228:-8000" simulationFunctionName="VoltageSensor" simulationFunctionType="DEFAULT" style="VoltageSensor;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="VoltageSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="v"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="260.0" y="150.0"/></VoltageSensorBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1f470ada:134d070a228:-7f64" ordering="1" parent="-1f470ada:134d070a228:-7f65" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><Orientation as="orientation" value="SOUTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1f470ada:134d070a228:-7f63" ordering="2" parent="-1f470ada:134d070a228:-7f65" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1f470ada:134d070a228:-7f62" ordering="1" parent="-1f470ada:134d070a228:-7f65" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><SplitBlock id="-1f470ada:134d070a228:-7f57" ordering="10" parent="-1f470ada:134d070a228:-8000" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="217.0" y="167.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="-1f470ada:134d070a228:-7f56" ordering="1" parent="-1f470ada:134d070a228:-7f57" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-1f470ada:134d070a228:-7f55" ordering="1" parent="-1f470ada:134d070a228:-7f57" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-1f470ada:134d070a228:-7f54" ordering="2" parent="-1f470ada:134d070a228:-7f57" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitLink id="-1f470ada:134d070a228:-7f53" parent="-1f470ada:134d070a228:-8000" source="-1f470ada:134d070a228:-7f85" target="-1f470ada:134d070a228:-7f56"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="220.0" y="130.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-1f470ada:134d070a228:-7f52" parent="-1f470ada:134d070a228:-8000" source="-1f470ada:134d070a228:-7f55" target="-1f470ada:134d070a228:-7f82"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-1f470ada:134d070a228:-7f58" parent="-1f470ada:134d070a228:-8000" source="-1f470ada:134d070a228:-7f54" target="-1f470ada:134d070a228:-7f62"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="256.0" y="170.0"/><mxPoint as="targetPoint" x="220.0" y="170.0"/></mxGeometry></ImplicitLink><SplitBlock id="-1f470ada:134d070a228:-7f50" ordering="11" parent="-1f470ada:134d070a228:-8000" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="217.0" y="247.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="-1f470ada:134d070a228:-7f4f" ordering="1" parent="-1f470ada:134d070a228:-7f50" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-1f470ada:134d070a228:-7f4e" ordering="1" parent="-1f470ada:134d070a228:-7f50" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-1f470ada:134d070a228:-7f4d" ordering="2" parent="-1f470ada:134d070a228:-7f50" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitLink id="-1f470ada:134d070a228:-7f4c" parent="-1f470ada:134d070a228:-8000" source="-1f470ada:134d070a228:-7f81" target="-1f470ada:134d070a228:-7f4f"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-1f470ada:134d070a228:-7f4b" parent="-1f470ada:134d070a228:-8000" source="-1f470ada:134d070a228:-7f99" target="-1f470ada:134d070a228:-7f4e"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="220.0" y="280.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-1f470ada:134d070a228:-7f51" parent="-1f470ada:134d070a228:-8000" source="-1f470ada:134d070a228:-7f64" target="-1f470ada:134d070a228:-7f4d"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="280.0" y="194.0"/><mxPoint as="targetPoint" x="220.0" y="250.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="280.0" y="250.0"/></Array></mxGeometry></ImplicitLink><ExplicitLink id="-1f470ada:134d070a228:-7f4a" parent="-1f470ada:134d070a228:-8000" source="-1f470ada:134d070a228:-7f63" target="-1f470ada:134d070a228:-7f44"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="304.0" y="170.0"/><mxPoint as="targetPoint" x="340.0" y="170.0"/></mxGeometry></ExplicitLink><CommandControlLink id="-1f470ada:134d070a228:-7f49" parent="-1f470ada:134d070a228:-8000" source="-1f470ada:134d070a228:-7f79" target="-1f470ada:134d070a228:-7f43"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="370.0" y="124.0"/><mxPoint as="targetPoint" x="370.0" y="150.0"/></mxGeometry></CommandControlLink></root></mxGraphModel><mxCell as="defaultParent" id="-1f470ada:134d070a228:-8000" parent="-1f470ada:134d070a228:-7fff"/></XcosDiagram>
\ No newline at end of file diff --git a/Working_Examples/215/CH6/EX6.16/Figure6_16.jpg b/Working_Examples/215/CH6/EX6.16/Figure6_16.jpg Binary files differnew file mode 100755 index 0000000..b985e27 --- /dev/null +++ b/Working_Examples/215/CH6/EX6.16/Figure6_16.jpg diff --git a/Working_Examples/215/CH6/EX6.16/Figure6_16_xcos.jpg b/Working_Examples/215/CH6/EX6.16/Figure6_16_xcos.jpg Binary files differnew file mode 100755 index 0000000..25156bb --- /dev/null +++ b/Working_Examples/215/CH6/EX6.16/Figure6_16_xcos.jpg diff --git a/Working_Examples/215/CH6/EX6.16/ex6_16.xcos b/Working_Examples/215/CH6/EX6.16/ex6_16.xcos new file mode 100755 index 0000000..f7c9058 --- /dev/null +++ b/Working_Examples/215/CH6/EX6.16/ex6_16.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" finalIntegrationTime="30.0" title="ex6_16"><!--Xcos - 1.0 - scilab-5.5.2 - 20160406 2040--><mxGraphModel as="model"><root><mxCell id="6611b517:134eb867750:-7b60"/><mxCell id="6611b517:134eb867750:-7b61" parent="6611b517:134eb867750:-7b60"/><BasicBlock dependsOnU="1" id="77dfe223:134ebbf1891:-7fd7" interfaceFunctionName="CSCOPE" ordering="1" parent="6611b517:134eb867750:-7b61" simulationFunctionName="cscope" simulationFunctionType="C_OR_FORTRAN" style="CSCOPE;flip=false;mirror=false"><ScilabString as="exprs" height="10" width="1"><data column="0" line="0" value="1 3 5 7 9 11 13 15"/><data column="0" line="1" value="-1"/><data column="0" line="2" value="[]"/><data column="0" line="3" value="[600;400]"/><data column="0" line="4" value="0"/><data column="0" line="5" value="0.0013"/><data column="0" line="6" value="30"/><data column="0" line="7" value="20"/><data column="0" line="8" value="0"/><data column="0" line="9" value=""/></ScilabString><ScilabDouble as="realParameters" height="4" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="0.0"/><data column="0" line="2" realPart="0.0013"/><data column="0" line="3" realPart="30.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="15" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="1.0"/><data column="0" line="4" realPart="3.0"/><data column="0" line="5" realPart="5.0"/><data column="0" line="6" realPart="7.0"/><data column="0" line="7" realPart="9.0"/><data column="0" line="8" realPart="11.0"/><data column="0" line="9" realPart="13.0"/><data column="0" line="10" realPart="15.0"/><data column="0" line="11" realPart="-1.0"/><data column="0" line="12" realPart="-1.0"/><data column="0" line="13" realPart="600.0"/><data column="0" line="14" realPart="400.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="770.0" y="150.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="6611b517:134eb867750:-79ef" ordering="1" parent="77dfe223:134ebbf1891:-7fd7" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ControlPort dataType="UNKNOW_TYPE" id="6611b517:134eb867750:-79ee" ordering="1" parent="77dfe223:134ebbf1891:-7fd7" style="ControlPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><BasicBlock angle="90" dependsOnT="1" id="77dfe223:134ebbf1891:-7fd4" interfaceFunctionName="CCS" ordering="2" parent="6611b517:134eb867750:-7b61" simulationFunctionName="CCS" simulationFunctionType="DEFAULT" style="CCS;rotation=90;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CCS"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="Iin"/><data column="0" line="1" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="430.0" y="210.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="6611b517:134eb867750:-7b48" ordering="1" parent="77dfe223:134ebbf1891:-7fd4" style="ExplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="6.0" y="-8.0"/></ExplicitInputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="6611b517:134eb867750:-7b47" ordering="2" parent="77dfe223:134ebbf1891:-7fd4" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="26.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="6611b517:134eb867750:-7b49" ordering="1" parent="77dfe223:134ebbf1891:-7fd4" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><GroundBlock dependsOnU="1" id="77dfe223:134ebbf1891:-7fd0" interfaceFunctionName="Ground" ordering="3" parent="6611b517:134eb867750:-7b61" simulationFunctionName="Ground" simulationFunctionType="DEFAULT" style="Ground;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Ground"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="180.0" y="330.0"/></GroundBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="6611b517:134eb867750:-7b40" ordering="1" parent="77dfe223:134ebbf1891:-7fd0" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><Orientation as="orientation" value="NORTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock angle="90" dependsOnU="1" id="77dfe223:134ebbf1891:-7fce" interfaceFunctionName="SineVoltage" ordering="4" parent="6611b517:134eb867750:-7b61" simulationFunctionName="SineVoltage" simulationFunctionType="DEFAULT" style="SineVoltage;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="5" width="1"><data column="0" line="0" value="2.5*10^-3"/><data column="0" line="1" value="0"/><data column="0" line="2" value="440/6.28"/><data column="0" line="3" value="0"/><data column="0" line="4" value="0"/></ScilabString><ScilabDouble as="realParameters" height="5" width="1"><data column="0" line="0" realPart="0.0025"/><data column="0" line="1" realPart="0.0"/><data column="0" line="2" realPart="70.06369426751593"/><data column="0" line="3" realPart="0.0"/><data column="0" line="4" realPart="0.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="SineVoltage"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="5" width="1"><data column="0" line="0" value="V"/><data column="0" line="1" value="phase"/><data column="0" line="2" value="freqHz"/><data column="0" line="3" value="offset"/><data column="0" line="4" value="startTime"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0025"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="70.06369426751593"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="60.0" width="50.0" x="10.0" y="200.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="6611b517:134eb867750:-7a3c" ordering="1" parent="77dfe223:134ebbf1891:-7fce" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="6611b517:134eb867750:-7a3b" ordering="1" parent="77dfe223:134ebbf1891:-7fce" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="60.0"/></ImplicitOutputPort><BasicBlock dependsOnU="1" id="77dfe223:134ebbf1891:-7fcb" interfaceFunctionName="Resistor" ordering="5" parent="6611b517:134eb867750:-7b61" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="300"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="300.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="300.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="70.0" y="110.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="6611b517:134eb867750:-7a38" ordering="1" parent="77dfe223:134ebbf1891:-7fcb" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="6611b517:134eb867750:-7a37" ordering="1" parent="77dfe223:134ebbf1891:-7fcb" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><VoltageSensorBlock dependsOnU="1" id="77dfe223:134ebbf1891:-7fc8" interfaceFunctionName="VoltageSensor" ordering="6" parent="6611b517:134eb867750:-7b61" simulationFunctionName="VoltageSensor" simulationFunctionType="DEFAULT" style="VoltageSensor;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="VoltageSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="v"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="220.0" y="160.0"/></VoltageSensorBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="6611b517:134eb867750:-7b20" ordering="2" parent="77dfe223:134ebbf1891:-7fc8" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="6611b517:134eb867750:-7b1f" ordering="1" parent="77dfe223:134ebbf1891:-7fc8" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="6611b517:134eb867750:-7b21" ordering="1" parent="77dfe223:134ebbf1891:-7fc8" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><Orientation as="orientation" value="SOUTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><BasicBlock angle="90" dependsOnU="1" id="77dfe223:134ebbf1891:-7fc4" interfaceFunctionName="Resistor" ordering="7" parent="6611b517:134eb867750:-7b61" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="17000"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="17000.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="17000.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="120.0" y="210.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="6611b517:134eb867750:-7a34" ordering="1" parent="77dfe223:134ebbf1891:-7fc4" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="6611b517:134eb867750:-7a33" ordering="1" parent="77dfe223:134ebbf1891:-7fc4" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><BasicBlock angle="90" dependsOnU="1" id="77dfe223:134ebbf1891:-7fc1" interfaceFunctionName="Resistor" ordering="8" parent="6611b517:134eb867750:-7b61" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="5000"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="5000.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5000.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="180.0" y="210.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="6611b517:134eb867750:-7a2f" ordering="1" parent="77dfe223:134ebbf1891:-7fc1" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="6611b517:134eb867750:-7a2e" ordering="1" parent="77dfe223:134ebbf1891:-7fc1" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><BasicBlock angle="90" dependsOnU="1" id="77dfe223:134ebbf1891:-7fbe" interfaceFunctionName="Resistor" ordering="9" parent="6611b517:134eb867750:-7b61" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="1000"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="1000.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1000.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="490.0" y="210.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="6611b517:134eb867750:-7a2b" ordering="1" parent="77dfe223:134ebbf1891:-7fbe" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="6611b517:134eb867750:-7a2a" ordering="1" parent="77dfe223:134ebbf1891:-7fbe" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitLink id="6611b517:134eb867750:-7ae3" parent="6611b517:134eb867750:-7b61" source="6611b517:134eb867750:-7a3c" target="6611b517:134eb867750:-7a38"><mxGeometry as="geometry" x="-20.0"><mxPoint as="sourcePoint" x="30.0" y="200.0"/><mxPoint as="targetPoint" x="70.0" y="130.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="30.0" y="130.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="77dfe223:134ebbf1891:-7fba" ordering="10" parent="6611b517:134eb867750:-7b61" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="137.0" y="127.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="6611b517:134eb867750:-7add" ordering="1" parent="77dfe223:134ebbf1891:-7fba" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="6611b517:134eb867750:-7adc" ordering="2" parent="77dfe223:134ebbf1891:-7fba" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="6611b517:134eb867750:-7ade" ordering="1" parent="77dfe223:134ebbf1891:-7fba" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="6611b517:134eb867750:-7adb" parent="6611b517:134eb867750:-7b61" source="6611b517:134eb867750:-7a37" target="6611b517:134eb867750:-7ade"><mxGeometry as="geometry" x="-20.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="6611b517:134eb867750:-7ae0" parent="6611b517:134eb867750:-7b61" source="6611b517:134eb867750:-7adc" target="6611b517:134eb867750:-7a34"><mxGeometry as="geometry" x="-20.0"><mxPoint as="sourcePoint" x="140.0" y="210.0"/><mxPoint as="targetPoint" x="140.0" y="130.0"/></mxGeometry></ImplicitLink><SplitBlock id="77dfe223:134ebbf1891:-7fb4" ordering="11" parent="6611b517:134eb867750:-7b61" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="197.0" y="297.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="6611b517:134eb867750:-7acf" ordering="1" parent="77dfe223:134ebbf1891:-7fb4" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="6611b517:134eb867750:-7ace" ordering="2" parent="77dfe223:134ebbf1891:-7fb4" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="6611b517:134eb867750:-7ad0" ordering="1" parent="77dfe223:134ebbf1891:-7fb4" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><SplitBlock id="77dfe223:134ebbf1891:-7fb0" ordering="12" parent="6611b517:134eb867750:-7b61" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="137.0" y="297.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="6611b517:134eb867750:-7ac8" ordering="1" parent="77dfe223:134ebbf1891:-7fb0" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="6611b517:134eb867750:-7ac7" ordering="2" parent="77dfe223:134ebbf1891:-7fb0" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="6611b517:134eb867750:-7ac9" ordering="1" parent="77dfe223:134ebbf1891:-7fb0" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="6611b517:134eb867750:-7ac6" parent="6611b517:134eb867750:-7b61" source="6611b517:134eb867750:-7a3b" target="6611b517:134eb867750:-7ac9"><mxGeometry as="geometry" x="-20.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="30.0" y="300.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="6611b517:134eb867750:-7ac5" parent="6611b517:134eb867750:-7b61" source="6611b517:134eb867750:-7ac8" target="6611b517:134eb867750:-7ad0"><mxGeometry as="geometry" x="-20.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="6611b517:134eb867750:-7acb" parent="6611b517:134eb867750:-7b61" source="6611b517:134eb867750:-7a33" target="6611b517:134eb867750:-7ac7"><mxGeometry as="geometry" x="-20.0"><mxPoint as="sourcePoint" x="140.0" y="250.0"/><mxPoint as="targetPoint" x="140.0" y="300.0"/></mxGeometry></ImplicitLink><SplitBlock id="77dfe223:134ebbf1891:-7fa9" ordering="13" parent="6611b517:134eb867750:-7b61" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="447.0" y="297.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="6611b517:134eb867750:-7aba" ordering="1" parent="77dfe223:134ebbf1891:-7fa9" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="6611b517:134eb867750:-7ab9" ordering="2" parent="77dfe223:134ebbf1891:-7fa9" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="6611b517:134eb867750:-7abb" ordering="1" parent="77dfe223:134ebbf1891:-7fa9" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="6611b517:134eb867750:-7ab7" parent="6611b517:134eb867750:-7b61" source="6611b517:134eb867750:-7acf" target="6611b517:134eb867750:-7aba"><mxGeometry as="geometry" x="-20.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="6611b517:134eb867750:-7abd" parent="6611b517:134eb867750:-7b61" source="6611b517:134eb867750:-7b49" target="6611b517:134eb867750:-7ab9"><mxGeometry as="geometry" x="130.0"><mxPoint as="sourcePoint" x="450.0" y="250.0"/><mxPoint as="targetPoint" x="450.0" y="300.0"/></mxGeometry></ImplicitLink><SplitBlock id="77dfe223:134ebbf1891:-7fa3" ordering="14" parent="6611b517:134eb867750:-7b61" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="197.0" y="297.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="6611b517:134eb867750:-7ab3" ordering="1" parent="77dfe223:134ebbf1891:-7fa3" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="6611b517:134eb867750:-7ab2" ordering="2" parent="77dfe223:134ebbf1891:-7fa3" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="6611b517:134eb867750:-7ab4" ordering="1" parent="77dfe223:134ebbf1891:-7fa3" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="6611b517:134eb867750:-7ab0" parent="6611b517:134eb867750:-7b61" source="6611b517:134eb867750:-7ace" target="6611b517:134eb867750:-7ab3"><mxGeometry as="geometry" x="-20.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="6611b517:134eb867750:-7ab6" parent="6611b517:134eb867750:-7b61" source="6611b517:134eb867750:-7ab2" target="6611b517:134eb867750:-7b40"><mxGeometry as="geometry" x="-20.0"><mxPoint as="sourcePoint" x="200.0" y="330.0"/><mxPoint as="targetPoint" x="200.0" y="300.0"/></mxGeometry></ImplicitLink><SplitBlock id="77dfe223:134ebbf1891:-7f9d" ordering="15" parent="6611b517:134eb867750:-7b61" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="197.0" y="177.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="6611b517:134eb867750:-7aa5" ordering="1" parent="77dfe223:134ebbf1891:-7f9d" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="6611b517:134eb867750:-7aa4" ordering="2" parent="77dfe223:134ebbf1891:-7f9d" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="6611b517:134eb867750:-7aa6" ordering="1" parent="77dfe223:134ebbf1891:-7f9d" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="6611b517:134eb867750:-7aa3" parent="6611b517:134eb867750:-7b61" source="6611b517:134eb867750:-7add" target="6611b517:134eb867750:-7aa6"><mxGeometry as="geometry" x="-20.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="200.0" y="130.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="6611b517:134eb867750:-7aa2" parent="6611b517:134eb867750:-7b61" source="6611b517:134eb867750:-7aa5" target="6611b517:134eb867750:-7a2f"><mxGeometry as="geometry" x="-20.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="6611b517:134eb867750:-7aa8" parent="6611b517:134eb867750:-7b61" source="6611b517:134eb867750:-7aa4" target="6611b517:134eb867750:-7b1f"><mxGeometry as="geometry" x="-20.0"><mxPoint as="sourcePoint" x="220.0" y="180.0"/><mxPoint as="targetPoint" x="200.0" y="180.0"/></mxGeometry></ImplicitLink><SplitBlock id="77dfe223:134ebbf1891:-7f96" ordering="16" parent="6611b517:134eb867750:-7b61" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="197.0" y="267.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="6611b517:134eb867750:-7a9e" ordering="1" parent="77dfe223:134ebbf1891:-7f96" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="6611b517:134eb867750:-7a9d" ordering="2" parent="77dfe223:134ebbf1891:-7f96" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="6611b517:134eb867750:-7a9f" ordering="1" parent="77dfe223:134ebbf1891:-7f96" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="6611b517:134eb867750:-7a9c" parent="6611b517:134eb867750:-7b61" source="6611b517:134eb867750:-7a2e" target="6611b517:134eb867750:-7a9f"><mxGeometry as="geometry" x="-20.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="6611b517:134eb867750:-7a9b" parent="6611b517:134eb867750:-7b61" source="6611b517:134eb867750:-7a9e" target="6611b517:134eb867750:-7ab4"><mxGeometry as="geometry" x="-20.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="6611b517:134eb867750:-7aa1" parent="6611b517:134eb867750:-7b61" source="6611b517:134eb867750:-7b21" target="6611b517:134eb867750:-7a9d"><mxGeometry as="geometry" x="-20.0"><mxPoint as="sourcePoint" x="240.0" y="200.0"/><mxPoint as="targetPoint" x="200.0" y="270.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="240.0" y="270.0"/></Array></mxGeometry></ImplicitLink><VoltageSensorBlock dependsOnU="1" id="77dfe223:134ebbf1891:-7f8b" interfaceFunctionName="VoltageSensor" ordering="17" parent="6611b517:134eb867750:-7b61" simulationFunctionName="VoltageSensor" simulationFunctionType="DEFAULT" style="VoltageSensor;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="VoltageSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="v"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="540.0" y="150.0"/></VoltageSensorBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="6611b517:134eb867750:-7a7b" ordering="2" parent="77dfe223:134ebbf1891:-7f8b" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="6611b517:134eb867750:-7a7a" ordering="1" parent="77dfe223:134ebbf1891:-7f8b" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="6611b517:134eb867750:-7a7c" ordering="1" parent="77dfe223:134ebbf1891:-7f8b" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><Orientation as="orientation" value="SOUTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><BasicBlock dependsOnU="1" id="77dfe223:134ebbf1891:-7f87" interfaceFunctionName="GAINBLK_f" ordering="18" parent="6611b517:134eb867750:-7b61" simulationFunctionName="gain" simulationFunctionType="DEFAULT" style="GAINBLK_f;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="0.03"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="0.03"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="50.0" width="40.0" x="370.0" y="160.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="6611b517:134eb867750:-7a5c" ordering="1" parent="77dfe223:134ebbf1891:-7f87" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="6611b517:134eb867750:-7a5b" ordering="1" parent="77dfe223:134ebbf1891:-7f87" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ExplicitLink id="6611b517:134eb867750:-7a60" parent="6611b517:134eb867750:-7b61" source="6611b517:134eb867750:-7a5b" target="6611b517:134eb867750:-7b48"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="410.0" y="180.0"/><mxPoint as="targetPoint" x="440.0" y="210.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="440.0" y="180.0"/></Array></mxGeometry></ExplicitLink><SplitBlock id="77dfe223:134ebbf1891:-7f82" ordering="19" parent="6611b517:134eb867750:-7b61" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="507.0" y="167.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="6611b517:134eb867750:-7a52" ordering="1" parent="77dfe223:134ebbf1891:-7f82" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="6611b517:134eb867750:-7a51" ordering="2" parent="77dfe223:134ebbf1891:-7f82" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="6611b517:134eb867750:-7a53" ordering="1" parent="77dfe223:134ebbf1891:-7f82" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="6611b517:134eb867750:-7a50" parent="6611b517:134eb867750:-7b61" source="6611b517:134eb867750:-7a2b" target="6611b517:134eb867750:-7a53"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="6611b517:134eb867750:-7a4f" parent="6611b517:134eb867750:-7b61" source="6611b517:134eb867750:-7a52" target="6611b517:134eb867750:-7b47"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="510.0" y="130.0"/><mxPoint x="460.0" y="130.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="6611b517:134eb867750:-7a55" parent="6611b517:134eb867750:-7b61" source="6611b517:134eb867750:-7a51" target="6611b517:134eb867750:-7a7a"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="540.0" y="170.0"/><mxPoint as="targetPoint" x="510.0" y="170.0"/></mxGeometry></ImplicitLink><SplitBlock id="77dfe223:134ebbf1891:-7f7b" ordering="20" parent="6611b517:134eb867750:-7b61" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="507.0" y="277.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="6611b517:134eb867750:-7a4b" ordering="1" parent="77dfe223:134ebbf1891:-7f7b" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="6611b517:134eb867750:-7a4a" ordering="2" parent="77dfe223:134ebbf1891:-7f7b" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="6611b517:134eb867750:-7a4c" ordering="1" parent="77dfe223:134ebbf1891:-7f7b" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="6611b517:134eb867750:-7a49" parent="6611b517:134eb867750:-7b61" source="6611b517:134eb867750:-7a2a" target="6611b517:134eb867750:-7a4c"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="6611b517:134eb867750:-7a48" parent="6611b517:134eb867750:-7b61" source="6611b517:134eb867750:-7a4b" target="6611b517:134eb867750:-7abb"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="510.0" y="300.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="6611b517:134eb867750:-7a4e" parent="6611b517:134eb867750:-7b61" source="6611b517:134eb867750:-7a7c" target="6611b517:134eb867750:-7a4a"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="560.0" y="190.0"/><mxPoint as="targetPoint" x="510.0" y="280.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="560.0" y="280.0"/></Array></mxGeometry></ImplicitLink><TextBlock id="77dfe223:134ebbf1891:-7f73" parent="6611b517:134eb867750:-7b61" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="Since RTH=1k ohm"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="Since RTH=1k ohm"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="Since RTH=1k ohm"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="690.0" y="100.0"/></TextBlock><BasicBlock dependsOnU="1" id="77dfe223:134ebbf1891:-7f72" interfaceFunctionName="GAINBLK_f" ordering="21" parent="6611b517:134eb867750:-7b61" simulationFunctionName="gain" simulationFunctionType="DEFAULT" style="GAINBLK_f;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="1/4"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="0.25"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="50.0" width="40.0" x="690.0" y="150.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="6611b517:134eb867750:-7a00" ordering="1" parent="77dfe223:134ebbf1891:-7f72" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="6611b517:134eb867750:-79ff" ordering="1" parent="77dfe223:134ebbf1891:-7f72" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><BasicBlock dependsOnU="1" id="77dfe223:134ebbf1891:-7f6f" interfaceFunctionName="POWBLK_f" ordering="22" parent="6611b517:134eb867750:-7b61" simulationFunctionName="powblk" simulationFunctionType="DEFAULT" style="POWBLK_f;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="2"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="50.0" width="50.0" x="610.0" y="150.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="6611b517:134eb867750:-7a04" ordering="1" parent="77dfe223:134ebbf1891:-7f6f" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitOutputPort dataColumns="1" dataType="REAL_MATRIX" id="6611b517:134eb867750:-7a03" ordering="1" parent="77dfe223:134ebbf1891:-7f6f" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="50.0" y="16.0"/></ExplicitOutputPort><ExplicitLink id="6611b517:134eb867750:-7a08" parent="6611b517:134eb867750:-7b61" source="6611b517:134eb867750:-79ff" target="6611b517:134eb867750:-79ef"><mxGeometry as="geometry" x="-10.0"><mxPoint as="sourcePoint" x="780.0" y="170.0"/><mxPoint as="targetPoint" x="730.0" y="170.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="770.0" y="170.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="6611b517:134eb867750:-7a07" parent="6611b517:134eb867750:-7b61" source="6611b517:134eb867750:-7a03" target="6611b517:134eb867750:-7a00"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="660.0" y="170.0"/><mxPoint as="targetPoint" x="690.0" y="170.0"/></mxGeometry></ExplicitLink><ExplicitLink id="6611b517:134eb867750:-7a06" parent="6611b517:134eb867750:-7b61" source="6611b517:134eb867750:-7a7b" target="6611b517:134eb867750:-7a04"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="580.0" y="170.0"/><mxPoint as="targetPoint" x="610.0" y="170.0"/></mxGeometry></ExplicitLink><BasicBlock blockType="h" id="5635043b:13894cfb31b:-7569" interfaceFunctionName="CLOCK_c" ordering="23" parent="6611b517:134eb867750:-7b61" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="99.0"/><data column="1" line="0" realPart="-160.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-73e75f0:167968eb73f:-7d97"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-73e75f0:167968eb73f:-7d97"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-70.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.1"/><data column="0" line="1" value="0.1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.1"/><data column="0" line="1" realPart="0.1"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.1"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-73e75f0:167968eb73f:-7d95"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-73e75f0:167968eb73f:-7d95"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="90.3773266666667"/><data column="1" line="0" realPart="-166.33333333333331"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="7.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="5.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-73e75f0:167968eb73f:-7d92"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-73e75f0:167968eb73f:-7d92"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="60.0"/><data column="0" line="2" realPart="97.54399333333338"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-74.0"/><data column="0" line="1" realPart="-170.0"/><data column="0" line="2" realPart="-155.33333333333331"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="97.48843777777782"/><data column="0" line="1" realPart="129.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-163.66666666666666"/><data column="0" line="1" realPart="-136.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="97.59954888888893"/><data column="0" line="1" realPart="100.70999999999998"/><data column="0" line="2" realPart="60.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-163.66666666666666"/><data column="0" line="1" realPart="-40.0"/><data column="0" line="2" realPart="-40.0"/><data column="0" line="3" realPart="-26.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="770.0" y="70.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="5635043b:13894cfb31b:-7568" ordering="1" parent="5635043b:13894cfb31b:-7569" style="CommandPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><CommandControlLink id="5635043b:13894cfb31b:-7565" parent="6611b517:134eb867750:-7b61" source="5635043b:13894cfb31b:-7568" target="6611b517:134eb867750:-79ee"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="790.0" y="114.0"/><mxPoint as="targetPoint" x="790.0" y="150.0"/></mxGeometry></CommandControlLink><BasicBlock blockType="h" id="5635043b:13894cfb31b:-7559" interfaceFunctionName="DELAY_f" ordering="24" parent="6611b517:134eb867750:-7b61" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="DELAY_f;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="-177.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="1"/><data column="0" line="1" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="7.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"IN_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="IN_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="input"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-2.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-73e75f0:167968eb73f:-7d89"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="IN_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-73e75f0:167968eb73f:-7d89"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="368.0"/><data column="1" line="0" realPart="-177.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="1"/><data column="0" line="1" value="1"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"OUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="OUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-2.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-73e75f0:167968eb73f:-7d87"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="OUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-73e75f0:167968eb73f:-7d87"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="136.0"/><data column="1" line="0" realPart="-162.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="50.0"/><data column="1" line="0" realPart="50.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="0;0;0;0;0;0;0;0;0;0"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="7.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="9.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"REGISTER_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="REGISTER_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="delay"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="10" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="0.0"/><data column="0" line="2" realPart="0.0"/><data column="0" line="3" realPart="0.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/><data column="0" line="7" realPart="0.0"/><data column="0" line="8" realPart="0.0"/><data column="0" line="9" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-73e75f0:167968eb73f:-7d85"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="REGISTER_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-73e75f0:167968eb73f:-7d85"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="151.0"/><data column="1" line="0" realPart="-71.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.1"/><data column="0" line="1" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="10.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.1"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-73e75f0:167968eb73f:-7d81"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-73e75f0:167968eb73f:-7d81"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="200.66666666666669"/><data column="1" line="0" realPart="-132.13333333333338"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="7.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="9.0"/><data column="0" line="1" realPart="10.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-73e75f0:167968eb73f:-7d7e"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-73e75f0:167968eb73f:-7d7e"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="240.0"/><data column="0" line="1" realPart="384.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-137.0"/><data column="0" line="1" realPart="-167.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="64.0"/><data column="0" line="1" realPart="182.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-167.0"/><data column="0" line="1" realPart="-137.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="211.0"/><data column="0" line="1" realPart="207.83333333333334"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-75.0"/><data column="0" line="1" realPart="-121.13333333333338"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="207.7777777777778"/><data column="0" line="1" realPart="211.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-129.46666666666673"/><data column="0" line="1" realPart="-108.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="5" width="1"><data column="0" line="0" realPart="207.8888888888889"/><data column="0" line="1" realPart="256.6"/><data column="0" line="2" realPart="256.6"/><data column="0" line="3" realPart="211.0"/><data column="0" line="4" realPart="211.0"/></ScilabDouble><ScilabDouble height="5" width="1"><data column="0" line="0" realPart="-129.46666666666673"/><data column="0" line="1" realPart="-135.8"/><data column="0" line="2" realPart="-40.0"/><data column="0" line="3" realPart="-40.0"/><data column="0" line="4" realPart="-27.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="50.0" width="60.0" x="280.0" y="160.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5635043b:13894cfb31b:-7558" ordering="1" parent="5635043b:13894cfb31b:-7559" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="60.0" y="16.0"/></ExplicitOutputPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5635043b:13894cfb31b:-7557" ordering="1" parent="5635043b:13894cfb31b:-7559" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitLink id="5635043b:13894cfb31b:-7553" parent="6611b517:134eb867750:-7b61" source="6611b517:134eb867750:-7b20" target="5635043b:13894cfb31b:-7557"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="264.0" y="180.0"/><mxPoint as="targetPoint" x="280.0" y="180.0"/></mxGeometry></ExplicitLink><ExplicitLink id="5635043b:13894cfb31b:-7552" parent="6611b517:134eb867750:-7b61" source="5635043b:13894cfb31b:-7558" target="6611b517:134eb867750:-7a5c"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="344.0" y="180.0"/><mxPoint as="targetPoint" x="370.0" y="180.0"/></mxGeometry></ExplicitLink></root></mxGraphModel><mxCell as="defaultParent" id="6611b517:134eb867750:-7b61" parent="6611b517:134eb867750:-7b60"/><mxPoint as="origin" x="-2.5"/></XcosDiagram>
\ No newline at end of file diff --git a/Working_Examples/215/CH6/EX6.17/ex6_17.sce b/Working_Examples/215/CH6/EX6.17/ex6_17.sce new file mode 100755 index 0000000..cc83739 --- /dev/null +++ b/Working_Examples/215/CH6/EX6.17/ex6_17.sce @@ -0,0 +1,23 @@ +clc
+//Example 6.17
+//Verification of Reciprocity theorem
+I=20
+//From figure 6.59
+disp('The current divides between the two parallel impedances')
+//Let I2 be the current through i5 ohm
+I2=(20*%i*(10+%i*5))/(10+%i*5+%i*5-%i*2)
+//Let Vx be the voltage across -i2 ohm capacitive reactance
+Vx=I2*(-%i*2)
+[Vxmag Vxang]=polar(Vx)
+printf("Vx=%3.2f(%3.2f deg)V \n",Vxmag,(Vxang*180)/%pi)
+//To verify Reciprocity theorem remove the current source and place it parallel with -i2 ohm capacitive reactance
+//From figure 6.60
+//Let I2 be the current flowing through resistor of 10 ohm
+I2=(20*%i*(-%i*2))/(10+%i*5+%i*5-%i*2)
+//let Vx1 be the deired output voltage across 10 ohm resistor and i5 inductive reactance
+Vx1=I2*(10+%i*5)
+[Vx1mag Vx1ang]=polar(Vx1)
+printf("Vx1=%3.2f(%3.2f deg)V \n",Vx1mag,(Vx1ang*180)/%pi)
+//Comparing the values of Vx and Vx1
+disp('Vx=Vx1')
+disp('Hence Reciprocity theorem is verified')
\ No newline at end of file diff --git a/Working_Examples/215/CH6/EX6.18/ex6_18.sce b/Working_Examples/215/CH6/EX6.18/ex6_18.sce new file mode 100755 index 0000000..b137cf6 --- /dev/null +++ b/Working_Examples/215/CH6/EX6.18/ex6_18.sce @@ -0,0 +1,23 @@ +clc
+//Example 6.18
+//Verification of Reciprocity theorem
+I=10
+//From figure 6.61
+disp('The current divides between the two parallel impedances')
+//Let I2 be the current through 4 ohm
+I2=(10*5)/(4-%i*4+5)
+//Let Vx be the voltage across -i4 ohm capacitive reactance
+Vx=I2*(-%i*4)
+[Vxmag Vxang]=polar(Vx)
+printf("Vx=%3.2f(%3.2f deg)V \n",Vxmag,(Vxang*180)/%pi)
+//To verify Reciprocity theorem remove the current source and place it parallel with -i4 ohm capacitive reactance
+//From figure 6.62
+//Let I1 be the current flowing through resistor of 5 ohm
+I1=(10*(-%i*4))/(5+4-%i*4)
+//let Vx1 be the deired output voltage across 5 ohm resistor
+Vx1=I1*5
+[Vx1mag Vx1ang]=polar(Vx1)
+printf("Vx1=%3.2f(%3.2f deg)V \n",Vx1mag,(Vx1ang*180)/%pi)
+//Comparing the values of Vx and Vx1
+disp('Vx=Vx1')
+disp('Hence Reciprocity theorem is verified')
\ No newline at end of file diff --git a/Working_Examples/215/CH6/EX6.19/ex6_19.sce b/Working_Examples/215/CH6/EX6.19/ex6_19.sce new file mode 100755 index 0000000..d7e6f08 --- /dev/null +++ b/Working_Examples/215/CH6/EX6.19/ex6_19.sce @@ -0,0 +1,28 @@ +clc
+//Example 6.19
+//Calculate total current through load
+//On applying source transformation
+//From figure 6.65
+i=%i
+V1=10;V2mag=5;V2ph=90;V3mag=14.4;V3ph=225;
+x=V2mag * cos (( V2ph * %pi ) /180) ;
+y=V2mag * sin (( V2ph * %pi ) /180) ;
+V2= complex (x,y)
+a=V3mag * cos (( V3ph * %pi ) /180) ;
+b=V3mag * sin (( V3ph * %pi ) /180) ;
+V3= complex (a,b)
+G1=1/2;G2=1/(2+i*3);G3=1/(2-i*2);
+//By applying Millman Theorem
+disp('V=((V1*G1)+(V2*G2)+(V3*G3))/(G1+G2+G3)')
+V=((V1*G1)+(V2*G2)+(V3*G3))/(G1+G2+G3)
+[Vmag Vang]=polar(V)
+R=1/(G1+G2+G3)
+printf("V=%3.2f(%3.2f deg)V",Vmag,(Vang*180)/%pi)
+disp(R,'R=')
+//Consider the resultant circuit from figure 6.66
+disp('Let the total current through 3+i4 be I')
+//Applying KVL to the circuit
+I=V/(3+i*4+R)
+[Imag Iang]=polar(I)
+printf("I=%3.2f(%3.2f deg)V",Imag,(Iang*180)/%pi)
+
diff --git a/Working_Examples/215/CH6/EX6.20/Figure6_20.jpg b/Working_Examples/215/CH6/EX6.20/Figure6_20.jpg Binary files differnew file mode 100755 index 0000000..d9eb111 --- /dev/null +++ b/Working_Examples/215/CH6/EX6.20/Figure6_20.jpg diff --git a/Working_Examples/215/CH6/EX6.20/Figure6_20_xcos.jpg b/Working_Examples/215/CH6/EX6.20/Figure6_20_xcos.jpg Binary files differnew file mode 100755 index 0000000..d9b6195 --- /dev/null +++ b/Working_Examples/215/CH6/EX6.20/Figure6_20_xcos.jpg diff --git a/Working_Examples/215/CH6/EX6.20/ex6_20.xcos b/Working_Examples/215/CH6/EX6.20/ex6_20.xcos new file mode 100755 index 0000000..3934266 --- /dev/null +++ b/Working_Examples/215/CH6/EX6.20/ex6_20.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" finalIntegrationTime="1.0" title="ex6_20"><!--Xcos - 1.0 - scilab-5.5.2 - 20160406 2040--><mxGraphModel as="model"><root><mxCell id="6611b517:134eb867750:-7ffd"/><mxCell id="6611b517:134eb867750:-7ffe" parent="6611b517:134eb867750:-7ffd"/><BasicBlock angle="90" dependsOnU="1" id="6611b517:134eb867750:-7fd8" interfaceFunctionName="Resistor" ordering="1" parent="6611b517:134eb867750:-7ffe" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="30"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="30.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="30.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="260.0" y="100.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="6611b517:134eb867750:-7f7a" ordering="1" parent="6611b517:134eb867750:-7fd8" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="6611b517:134eb867750:-7f79" ordering="1" parent="6611b517:134eb867750:-7fd8" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><BasicBlock angle="90" dependsOnU="1" id="6611b517:134eb867750:-7fce" interfaceFunctionName="Inductor" ordering="2" parent="6611b517:134eb867750:-7ffe" simulationFunctionName="Inductor" simulationFunctionType="DEFAULT" style="Inductor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="0.4"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="0.4"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Inductor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="L"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.4"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="260.0" y="180.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="6611b517:134eb867750:-7f76" ordering="1" parent="6611b517:134eb867750:-7fce" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="6611b517:134eb867750:-7f75" ordering="1" parent="6611b517:134eb867750:-7fce" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><GroundBlock dependsOnU="1" id="6611b517:134eb867750:-7fc6" interfaceFunctionName="Ground" ordering="3" parent="6611b517:134eb867750:-7ffe" simulationFunctionName="Ground" simulationFunctionType="DEFAULT" style="Ground;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Ground"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="180.0" y="280.0"/></GroundBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="6611b517:134eb867750:-7fc5" ordering="1" parent="6611b517:134eb867750:-7fc6" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><Orientation as="orientation" value="NORTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="6611b517:134eb867750:-7fbb" interfaceFunctionName="CurrentSensor" ordering="4" parent="6611b517:134eb867750:-7ffe" simulationFunctionName="CurrentSensor" simulationFunctionType="DEFAULT" style="CurrentSensor;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CurrentSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="i"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="180.0" y="50.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="6611b517:134eb867750:-7fb9" ordering="2" parent="6611b517:134eb867750:-7fbb" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="26.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="6611b517:134eb867750:-7fb8" ordering="1" parent="6611b517:134eb867750:-7fbb" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="6611b517:134eb867750:-7fba" ordering="1" parent="6611b517:134eb867750:-7fbb" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="6.0"/></ImplicitOutputPort><ImplicitLink id="6611b517:134eb867750:-7f9d" parent="6611b517:134eb867750:-7ffe" source="6611b517:134eb867750:-7f7e" target="6611b517:134eb867750:-7fb8"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="130.0" y="140.0"/><mxPoint as="targetPoint" x="180.0" y="70.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="130.0" y="70.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="6611b517:134eb867750:-7f9c" parent="6611b517:134eb867750:-7ffe" source="6611b517:134eb867750:-7fba" target="6611b517:134eb867750:-7f7a"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="220.0" y="60.0"/><mxPoint as="targetPoint" x="280.0" y="100.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="280.0" y="60.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="6611b517:134eb867750:-7f9b" parent="6611b517:134eb867750:-7ffe" source="6611b517:134eb867750:-7f79" target="6611b517:134eb867750:-7f76"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="280.0" y="140.0"/><mxPoint as="targetPoint" x="280.0" y="190.0"/></mxGeometry></ImplicitLink><SplitBlock id="6611b517:134eb867750:-7f98" ordering="5" parent="6611b517:134eb867750:-7ffe" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="197.0" y="247.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="6611b517:134eb867750:-7f96" ordering="1" parent="6611b517:134eb867750:-7f98" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="6611b517:134eb867750:-7f95" ordering="2" parent="6611b517:134eb867750:-7f98" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="6611b517:134eb867750:-7f97" ordering="1" parent="6611b517:134eb867750:-7f98" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="6611b517:134eb867750:-7f94" parent="6611b517:134eb867750:-7ffe" source="6611b517:134eb867750:-7f7d" target="6611b517:134eb867750:-7f97"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="130.0" y="250.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="6611b517:134eb867750:-7f93" parent="6611b517:134eb867750:-7ffe" source="6611b517:134eb867750:-7f75" target="6611b517:134eb867750:-7f96"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="280.0" y="250.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="6611b517:134eb867750:-7f99" parent="6611b517:134eb867750:-7ffe" source="6611b517:134eb867750:-7f95" target="6611b517:134eb867750:-7fc5"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="200.0" y="280.0"/><mxPoint as="targetPoint" x="200.0" y="250.0"/></mxGeometry></ImplicitLink><BasicBlock dependsOnU="1" id="6611b517:134eb867750:-7f8b" interfaceFunctionName="CSCOPE" ordering="6" parent="6611b517:134eb867750:-7ffe" simulationFunctionName="cscope" simulationFunctionType="C_OR_FORTRAN" style="CSCOPE;flip=false;mirror=false"><ScilabString as="exprs" height="10" width="1"><data column="0" line="0" value="1 3 5 7 9 11 13 15"/><data column="0" line="1" value="-1"/><data column="0" line="2" value="[]"/><data column="0" line="3" value="[600;400]"/><data column="0" line="4" value="-0.22"/><data column="0" line="5" value="0.22"/><data column="0" line="6" value="1"/><data column="0" line="7" value="20"/><data column="0" line="8" value="0"/><data column="0" line="9" value=""/></ScilabString><ScilabDouble as="realParameters" height="4" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="-0.22"/><data column="0" line="2" realPart="0.22"/><data column="0" line="3" realPart="1.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="15" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="1.0"/><data column="0" line="4" realPart="3.0"/><data column="0" line="5" realPart="5.0"/><data column="0" line="6" realPart="7.0"/><data column="0" line="7" realPart="9.0"/><data column="0" line="8" realPart="11.0"/><data column="0" line="9" realPart="13.0"/><data column="0" line="10" realPart="15.0"/><data column="0" line="11" realPart="-1.0"/><data column="0" line="12" realPart="-1.0"/><data column="0" line="13" realPart="600.0"/><data column="0" line="14" realPart="400.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="550.0" y="110.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="6611b517:134eb867750:-7ed7" ordering="1" parent="6611b517:134eb867750:-7f8b" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ControlPort dataType="UNKNOW_TYPE" id="6611b517:134eb867750:-7ed6" ordering="1" parent="6611b517:134eb867750:-7f8b" style="ControlPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><BasicBlock angle="90" dependsOnU="1" id="6611b517:134eb867750:-7f53" interfaceFunctionName="SineVoltage" ordering="7" parent="6611b517:134eb867750:-7ffe" simulationFunctionName="SineVoltage" simulationFunctionType="DEFAULT" style="SineVoltage;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="5" width="1"><data column="0" line="0" value="100"/><data column="0" line="1" value="%pi/4"/><data column="0" line="2" value="100/6.28"/><data column="0" line="3" value="0"/><data column="0" line="4" value="0"/></ScilabString><ScilabDouble as="realParameters" height="5" width="1"><data column="0" line="0" realPart="100.0"/><data column="0" line="1" realPart="0.7853981633974483"/><data column="0" line="2" realPart="15.92356687898089"/><data column="0" line="3" realPart="0.0"/><data column="0" line="4" realPart="0.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="SineVoltage"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="5" width="1"><data column="0" line="0" value="V"/><data column="0" line="1" value="phase"/><data column="0" line="2" value="freqHz"/><data column="0" line="3" value="offset"/><data column="0" line="4" value="startTime"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.7853981633974483"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="15.92356687898089"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="60.0" width="50.0" x="290.0" y="280.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="6611b517:134eb867750:-7f51" ordering="1" parent="6611b517:134eb867750:-7f53" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="6611b517:134eb867750:-7f52" ordering="1" parent="6611b517:134eb867750:-7f53" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="60.0"/></ImplicitOutputPort><BasicBlock angle="90" dependsOnU="1" id="6611b517:134eb867750:-7f50" interfaceFunctionName="Resistor" ordering="8" parent="6611b517:134eb867750:-7ffe" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="30"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="30.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="30.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="440.0" y="240.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="6611b517:134eb867750:-7f4e" ordering="1" parent="6611b517:134eb867750:-7f50" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="6611b517:134eb867750:-7f4f" ordering="1" parent="6611b517:134eb867750:-7f50" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><BasicBlock angle="90" dependsOnU="1" id="6611b517:134eb867750:-7f4d" interfaceFunctionName="Inductor" ordering="9" parent="6611b517:134eb867750:-7ffe" simulationFunctionName="Inductor" simulationFunctionType="DEFAULT" style="Inductor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="0.35"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="0.35"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Inductor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="L"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.35"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="440.0" y="320.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="6611b517:134eb867750:-7f12" ordering="1" parent="6611b517:134eb867750:-7f4d" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="6611b517:134eb867750:-7f11" ordering="1" parent="6611b517:134eb867750:-7f4d" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><GroundBlock dependsOnU="1" id="6611b517:134eb867750:-7f4a" interfaceFunctionName="Ground" ordering="10" parent="6611b517:134eb867750:-7ffe" simulationFunctionName="Ground" simulationFunctionType="DEFAULT" style="Ground;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Ground"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="360.0" y="420.0"/></GroundBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="6611b517:134eb867750:-7f49" ordering="1" parent="6611b517:134eb867750:-7f4a" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><Orientation as="orientation" value="NORTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="6611b517:134eb867750:-7f48" interfaceFunctionName="CurrentSensor" ordering="11" parent="6611b517:134eb867750:-7ffe" simulationFunctionName="CurrentSensor" simulationFunctionType="DEFAULT" style="CurrentSensor;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CurrentSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="i"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="360.0" y="190.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="6611b517:134eb867750:-7f46" ordering="2" parent="6611b517:134eb867750:-7f48" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="26.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="6611b517:134eb867750:-7f45" ordering="1" parent="6611b517:134eb867750:-7f48" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="6611b517:134eb867750:-7f47" ordering="1" parent="6611b517:134eb867750:-7f48" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="6.0"/></ImplicitOutputPort><ImplicitLink id="6611b517:134eb867750:-7f44" parent="6611b517:134eb867750:-7ffe" source="6611b517:134eb867750:-7f51" target="6611b517:134eb867750:-7f45"><mxGeometry as="geometry" x="180.0" y="140.0"><mxPoint as="sourcePoint" x="310.0" y="280.0"/><mxPoint as="targetPoint" x="360.0" y="210.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="310.0" y="210.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="6611b517:134eb867750:-7f43" parent="6611b517:134eb867750:-7ffe" source="6611b517:134eb867750:-7f47" target="6611b517:134eb867750:-7f4e"><mxGeometry as="geometry" x="180.0" y="140.0"><mxPoint as="sourcePoint" x="400.0" y="200.0"/><mxPoint as="targetPoint" x="460.0" y="240.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="460.0" y="200.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="6611b517:134eb867750:-7f42" parent="6611b517:134eb867750:-7ffe" source="6611b517:134eb867750:-7f4f" target="6611b517:134eb867750:-7f12"><mxGeometry as="geometry" x="180.0" y="140.0"><mxPoint as="sourcePoint" x="460.0" y="280.0"/><mxPoint as="targetPoint" x="460.0" y="330.0"/></mxGeometry></ImplicitLink><SplitBlock id="6611b517:134eb867750:-7f41" ordering="12" parent="6611b517:134eb867750:-7ffe" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="377.0" y="387.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="6611b517:134eb867750:-7f3f" ordering="1" parent="6611b517:134eb867750:-7f41" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="6611b517:134eb867750:-7f3e" ordering="2" parent="6611b517:134eb867750:-7f41" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="6611b517:134eb867750:-7f40" ordering="1" parent="6611b517:134eb867750:-7f41" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="6611b517:134eb867750:-7f3d" parent="6611b517:134eb867750:-7ffe" source="6611b517:134eb867750:-7f52" target="6611b517:134eb867750:-7f40"><mxGeometry as="geometry" x="180.0" y="140.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="310.0" y="390.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="6611b517:134eb867750:-7f3c" parent="6611b517:134eb867750:-7ffe" source="6611b517:134eb867750:-7f11" target="6611b517:134eb867750:-7f3f"><mxGeometry as="geometry" x="180.0" y="140.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="460.0" y="390.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="6611b517:134eb867750:-7f3b" parent="6611b517:134eb867750:-7ffe" source="6611b517:134eb867750:-7f3e" target="6611b517:134eb867750:-7f49"><mxGeometry as="geometry" x="180.0" y="140.0"><mxPoint as="sourcePoint" x="380.0" y="420.0"/><mxPoint as="targetPoint" x="380.0" y="390.0"/></mxGeometry></ImplicitLink><Summation dependsOnU="1" id="6611b517:134eb867750:-7efe" interfaceFunctionName="SUMMATION" ordering="13" parent="6611b517:134eb867750:-7ffe" simulationFunctionName="summation" simulationFunctionType="C_OR_FORTRAN" style="SUMMATION;flip=false;mirror=false" value="+"><ScilabString as="exprs" height="3" width="1"><data column="0" line="0" value="1"/><data column="0" line="1" value="[-1;1]"/><data column="0" line="2" value="0"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="1.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="470.0" y="110.0"/></Summation><ExplicitInputPort dataType="REAL_MATRIX" id="6611b517:134eb867750:-7ef9" ordering="1" parent="6611b517:134eb867750:-7efe" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" value="-"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ExplicitInputPort><ExplicitInputPort dataType="REAL_MATRIX" id="6611b517:134eb867750:-7ef8" ordering="2" parent="6611b517:134eb867750:-7efe" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" value="+"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="26.0"/></ExplicitInputPort><ExplicitOutputPort dataType="REAL_MATRIX" id="6611b517:134eb867750:-7ef7" ordering="1" parent="6611b517:134eb867750:-7efe" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ExplicitLink id="6611b517:134eb867750:-7eef" parent="6611b517:134eb867750:-7ffe" source="6611b517:134eb867750:-7fb9" target="6611b517:134eb867750:-7ef9"><mxGeometry as="geometry" x="20.0"><mxPoint as="sourcePoint" x="240.0" y="80.0"/><mxPoint as="targetPoint" x="470.0" y="120.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="420.0" y="80.0"/><mxPoint x="420.0" y="120.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="6611b517:134eb867750:-7eec" parent="6611b517:134eb867750:-7ffe" source="6611b517:134eb867750:-7f46" target="6611b517:134eb867750:-7ef8"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="400.0" y="220.0"/><mxPoint as="targetPoint" x="470.0" y="140.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="410.0" y="220.0"/><mxPoint x="420.0" y="220.0"/><mxPoint x="420.0" y="140.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="6611b517:134eb867750:-7ee5" parent="6611b517:134eb867750:-7ffe" source="6611b517:134eb867750:-7ef7" target="6611b517:134eb867750:-7ed7"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="510.0" y="130.0"/><mxPoint as="targetPoint" x="550.0" y="130.0"/></mxGeometry></ExplicitLink><BasicBlock angle="90" dependsOnU="1" id="6611b517:134eb867750:-7fe2" interfaceFunctionName="SineVoltage" ordering="14" parent="6611b517:134eb867750:-7ffe" simulationFunctionName="SineVoltage" simulationFunctionType="DEFAULT" style="SineVoltage;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="5" width="1"><data column="0" line="0" value="100"/><data column="0" line="1" value="%pi/4"/><data column="0" line="2" value="100/6.28"/><data column="0" line="3" value="0"/><data column="0" line="4" value="0"/></ScilabString><ScilabDouble as="realParameters" height="5" width="1"><data column="0" line="0" realPart="100.0"/><data column="0" line="1" realPart="0.7853981633974483"/><data column="0" line="2" realPart="15.92356687898089"/><data column="0" line="3" realPart="0.0"/><data column="0" line="4" realPart="0.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="SineVoltage"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="5" width="1"><data column="0" line="0" value="V"/><data column="0" line="1" value="phase"/><data column="0" line="2" value="freqHz"/><data column="0" line="3" value="offset"/><data column="0" line="4" value="startTime"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.7853981633974483"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="15.92356687898089"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="60.0" width="50.0" x="110.0" y="140.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="6611b517:134eb867750:-7f7e" ordering="1" parent="6611b517:134eb867750:-7fe2" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="6611b517:134eb867750:-7f7d" ordering="1" parent="6611b517:134eb867750:-7fe2" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="60.0"/></ImplicitOutputPort><BasicBlock blockType="h" id="-13640e5a:13894ab8a5f:-7270" interfaceFunctionName="CLOCK_c" ordering="15" parent="6611b517:134eb867750:-7ffe" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="99.0"/><data column="1" line="0" realPart="-160.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-73e75f0:167968eb73f:-7d31"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-73e75f0:167968eb73f:-7d31"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-70.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.1"/><data column="0" line="1" value="0.1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.1"/><data column="0" line="1" realPart="0.1"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.1"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-73e75f0:167968eb73f:-7d2f"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-73e75f0:167968eb73f:-7d2f"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="90.3773266666667"/><data column="1" line="0" realPart="-166.33333333333331"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="7.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="5.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-73e75f0:167968eb73f:-7d2c"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-73e75f0:167968eb73f:-7d2c"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="60.0"/><data column="0" line="2" realPart="97.54399333333338"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-74.0"/><data column="0" line="1" realPart="-170.0"/><data column="0" line="2" realPart="-155.33333333333331"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="97.48843777777782"/><data column="0" line="1" realPart="129.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-163.66666666666666"/><data column="0" line="1" realPart="-136.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="97.59954888888893"/><data column="0" line="1" realPart="100.70999999999998"/><data column="0" line="2" realPart="60.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-163.66666666666666"/><data column="0" line="1" realPart="-40.0"/><data column="0" line="2" realPart="-40.0"/><data column="0" line="3" realPart="-26.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="550.0" y="30.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="-13640e5a:13894ab8a5f:-726f" ordering="1" parent="-13640e5a:13894ab8a5f:-7270" style="CommandPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><CommandControlLink id="-13640e5a:13894ab8a5f:-726c" parent="6611b517:134eb867750:-7ffe" source="-13640e5a:13894ab8a5f:-726f" target="6611b517:134eb867750:-7ed6"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="570.0" y="74.0"/><mxPoint as="targetPoint" x="570.0" y="100.0"/></mxGeometry></CommandControlLink></root></mxGraphModel><mxCell as="defaultParent" id="6611b517:134eb867750:-7ffe" parent="6611b517:134eb867750:-7ffd"/></XcosDiagram>
\ No newline at end of file diff --git a/Working_Examples/215/CH6/EX6.21/Figure6_21.jpg b/Working_Examples/215/CH6/EX6.21/Figure6_21.jpg Binary files differnew file mode 100755 index 0000000..496f2e0 --- /dev/null +++ b/Working_Examples/215/CH6/EX6.21/Figure6_21.jpg diff --git a/Working_Examples/215/CH6/EX6.21/Figure6_21_xcos.jpg b/Working_Examples/215/CH6/EX6.21/Figure6_21_xcos.jpg Binary files differnew file mode 100755 index 0000000..72de671 --- /dev/null +++ b/Working_Examples/215/CH6/EX6.21/Figure6_21_xcos.jpg diff --git a/Working_Examples/215/CH6/EX6.21/ex6_21.xcos b/Working_Examples/215/CH6/EX6.21/ex6_21.xcos new file mode 100755 index 0000000..08b8fa9 --- /dev/null +++ b/Working_Examples/215/CH6/EX6.21/ex6_21.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" finalIntegrationTime="30.0" title="ex6_21"><!--Xcos - 1.0 - scilab-5.5.2 - 20160406 2040--><mxGraphModel as="model"><root><mxCell id="6611b517:134eb867750:-7ec5"/><mxCell id="6611b517:134eb867750:-7ec6" parent="6611b517:134eb867750:-7ec5"/><BasicBlock dependsOnU="1" id="6611b517:134eb867750:-7eb1" interfaceFunctionName="CurrentSensor" ordering="1" parent="6611b517:134eb867750:-7ec6" simulationFunctionName="CurrentSensor" simulationFunctionType="DEFAULT" style="CurrentSensor;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CurrentSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="i"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="180.0" y="60.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="6611b517:134eb867750:-7eaf" ordering="2" parent="6611b517:134eb867750:-7eb1" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="26.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="6611b517:134eb867750:-7eae" ordering="1" parent="6611b517:134eb867750:-7eb1" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="6611b517:134eb867750:-7eb0" ordering="1" parent="6611b517:134eb867750:-7eb1" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="6.0"/></ImplicitOutputPort><GroundBlock dependsOnU="1" id="6611b517:134eb867750:-7ea8" interfaceFunctionName="Ground" ordering="2" parent="6611b517:134eb867750:-7ec6" simulationFunctionName="Ground" simulationFunctionType="DEFAULT" style="Ground;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Ground"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="270.0" y="270.0"/></GroundBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="6611b517:134eb867750:-7ea7" ordering="1" parent="6611b517:134eb867750:-7ea8" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><Orientation as="orientation" value="NORTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="6611b517:134eb867750:-7e9f" interfaceFunctionName="Resistor" ordering="3" parent="6611b517:134eb867750:-7ec6" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="10"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="10.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="10.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="100.0" y="60.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="6611b517:134eb867750:-7e47" ordering="1" parent="6611b517:134eb867750:-7e9f" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="6611b517:134eb867750:-7e46" ordering="1" parent="6611b517:134eb867750:-7e9f" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><BasicBlock angle="90" dependsOnU="1" id="6611b517:134eb867750:-7e93" interfaceFunctionName="Resistor" ordering="4" parent="6611b517:134eb867750:-7ec6" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="4"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="270.0" y="140.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="6611b517:134eb867750:-7e43" ordering="1" parent="6611b517:134eb867750:-7e93" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="6611b517:134eb867750:-7e42" ordering="1" parent="6611b517:134eb867750:-7e93" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><BasicBlock angle="90" dependsOnU="1" id="6611b517:134eb867750:-7e88" interfaceFunctionName="Resistor" ordering="5" parent="6611b517:134eb867750:-7ec6" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="6"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="360.0" y="140.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="6611b517:134eb867750:-7e3f" ordering="1" parent="6611b517:134eb867750:-7e88" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="6611b517:134eb867750:-7e3e" ordering="1" parent="6611b517:134eb867750:-7e88" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitLink id="6611b517:134eb867750:-7e78" parent="6611b517:134eb867750:-7ec6" source="6611b517:134eb867750:-7d68" target="6611b517:134eb867750:-7e47"><mxGeometry as="geometry" y="-20.0"><mxPoint as="sourcePoint" x="70.0" y="160.0"/><mxPoint as="targetPoint" x="90.0" y="80.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="70.0" y="80.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="6611b517:134eb867750:-7e77" parent="6611b517:134eb867750:-7ec6" source="6611b517:134eb867750:-7e46" target="6611b517:134eb867750:-7eae"><mxGeometry as="geometry" y="-20.0"><mxPoint as="sourcePoint" x="140.0" y="80.0"/><mxPoint as="targetPoint" x="180.0" y="80.0"/></mxGeometry></ImplicitLink><SplitBlock id="6611b517:134eb867750:-7e73" ordering="6" parent="6611b517:134eb867750:-7ec6" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="287.0" y="67.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="6611b517:134eb867750:-7e71" ordering="1" parent="6611b517:134eb867750:-7e73" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="6611b517:134eb867750:-7e70" ordering="2" parent="6611b517:134eb867750:-7e73" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="6611b517:134eb867750:-7e72" ordering="1" parent="6611b517:134eb867750:-7e73" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="6611b517:134eb867750:-7e6f" parent="6611b517:134eb867750:-7ec6" source="6611b517:134eb867750:-7eb0" target="6611b517:134eb867750:-7e72"><mxGeometry as="geometry" y="-20.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="6611b517:134eb867750:-7e6e" parent="6611b517:134eb867750:-7ec6" source="6611b517:134eb867750:-7e71" target="6611b517:134eb867750:-7e3f"><mxGeometry as="geometry" y="-20.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="380.0" y="70.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="6611b517:134eb867750:-7e74" parent="6611b517:134eb867750:-7ec6" source="6611b517:134eb867750:-7e70" target="6611b517:134eb867750:-7e43"><mxGeometry as="geometry" y="-20.0"><mxPoint as="sourcePoint" x="290.0" y="150.0"/><mxPoint as="targetPoint" x="290.0" y="70.0"/></mxGeometry></ImplicitLink><SplitBlock id="6611b517:134eb867750:-7e6c" ordering="7" parent="6611b517:134eb867750:-7ec6" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="287.0" y="227.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="6611b517:134eb867750:-7e6a" ordering="1" parent="6611b517:134eb867750:-7e6c" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="6611b517:134eb867750:-7e69" ordering="2" parent="6611b517:134eb867750:-7e6c" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="6611b517:134eb867750:-7e6b" ordering="1" parent="6611b517:134eb867750:-7e6c" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="6611b517:134eb867750:-7e68" parent="6611b517:134eb867750:-7ec6" source="6611b517:134eb867750:-7d67" target="6611b517:134eb867750:-7e6b"><mxGeometry as="geometry" y="-20.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="70.0" y="230.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="6611b517:134eb867750:-7e67" parent="6611b517:134eb867750:-7ec6" source="6611b517:134eb867750:-7e3e" target="6611b517:134eb867750:-7e6a"><mxGeometry as="geometry" y="-20.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="380.0" y="230.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="6611b517:134eb867750:-7e65" ordering="8" parent="6611b517:134eb867750:-7ec6" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="287.0" y="227.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="6611b517:134eb867750:-7e63" ordering="1" parent="6611b517:134eb867750:-7e65" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="6611b517:134eb867750:-7e62" ordering="2" parent="6611b517:134eb867750:-7e65" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="6611b517:134eb867750:-7e64" ordering="1" parent="6611b517:134eb867750:-7e65" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="6611b517:134eb867750:-7e61" parent="6611b517:134eb867750:-7ec6" source="6611b517:134eb867750:-7e42" target="6611b517:134eb867750:-7e64"><mxGeometry as="geometry" y="-20.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="6611b517:134eb867750:-7e60" parent="6611b517:134eb867750:-7ec6" source="6611b517:134eb867750:-7e69" target="6611b517:134eb867750:-7e63"><mxGeometry as="geometry" y="-20.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="6611b517:134eb867750:-7e66" parent="6611b517:134eb867750:-7ec6" source="6611b517:134eb867750:-7e62" target="6611b517:134eb867750:-7ea7"><mxGeometry as="geometry" y="-20.0"><mxPoint as="sourcePoint" x="290.0" y="270.0"/><mxPoint as="targetPoint" x="290.0" y="230.0"/></mxGeometry></ImplicitLink><BasicBlock dependsOnU="1" id="6611b517:134eb867750:-7e58" interfaceFunctionName="CSCOPE" ordering="9" parent="6611b517:134eb867750:-7ec6" simulationFunctionName="cscope" simulationFunctionType="C_OR_FORTRAN" style="CSCOPE;flip=false;mirror=false"><ScilabString as="exprs" height="10" width="1"><data column="0" line="0" value="1 3 5 7 9 11 13 15"/><data column="0" line="1" value="-1"/><data column="0" line="2" value="[]"/><data column="0" line="3" value="[600;400]"/><data column="0" line="4" value="1.2"/><data column="0" line="5" value="1.3"/><data column="0" line="6" value="30"/><data column="0" line="7" value="20"/><data column="0" line="8" value="0"/><data column="0" line="9" value=""/></ScilabString><ScilabDouble as="realParameters" height="4" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="1.2"/><data column="0" line="2" realPart="1.3"/><data column="0" line="3" realPart="30.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="15" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="1.0"/><data column="0" line="4" realPart="3.0"/><data column="0" line="5" realPart="5.0"/><data column="0" line="6" realPart="7.0"/><data column="0" line="7" realPart="9.0"/><data column="0" line="8" realPart="11.0"/><data column="0" line="9" realPart="13.0"/><data column="0" line="10" realPart="15.0"/><data column="0" line="11" realPart="-1.0"/><data column="0" line="12" realPart="-1.0"/><data column="0" line="13" realPart="600.0"/><data column="0" line="14" realPart="400.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="540.0" y="190.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="6611b517:134eb867750:-7d41" ordering="1" parent="6611b517:134eb867750:-7e58" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ControlPort dataType="UNKNOW_TYPE" id="6611b517:134eb867750:-7d40" ordering="1" parent="6611b517:134eb867750:-7e58" style="ControlPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><BasicBlock angle="90" id="6611b517:134eb867750:-7e0d" interfaceFunctionName="ConstantVoltage" ordering="10" parent="6611b517:134eb867750:-7ec6" simulationFunctionName="ConstantVoltage" simulationFunctionType="DEFAULT" style="ConstantVoltage;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="3.096"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="3.096"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ConstantVoltage"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="V"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="3.096"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="370.0" y="490.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="6611b517:134eb867750:-7d70" ordering="1" parent="6611b517:134eb867750:-7e0d" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="6611b517:134eb867750:-7d6f" ordering="1" parent="6611b517:134eb867750:-7e0d" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><BasicBlock angle="180" dependsOnU="1" id="6611b517:134eb867750:-7e0a" interfaceFunctionName="CurrentSensor" ordering="11" parent="6611b517:134eb867750:-7ec6" simulationFunctionName="CurrentSensor" simulationFunctionType="DEFAULT" style="CurrentSensor;rotation=180;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CurrentSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="i"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="190.0" y="330.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="6611b517:134eb867750:-7e08" ordering="2" parent="6611b517:134eb867750:-7e0a" style="ExplicitOutputPort;align=left;verticalAlign=middle;spacing=10;rotation=180;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="26.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="6611b517:134eb867750:-7e07" ordering="1" parent="6611b517:134eb867750:-7e0a" style="ImplicitInputPort;align=right;verticalAlign=middle;spacing=10;rotation=180;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="6611b517:134eb867750:-7e09" ordering="1" parent="6611b517:134eb867750:-7e0a" style="ImplicitOutputPort;align=left;verticalAlign=middle;spacing=10;rotation=180;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ImplicitOutputPort><GroundBlock dependsOnU="1" id="6611b517:134eb867750:-7e06" interfaceFunctionName="Ground" ordering="12" parent="6611b517:134eb867750:-7ec6" simulationFunctionName="Ground" simulationFunctionType="DEFAULT" style="Ground;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Ground"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="290.0" y="570.0"/></GroundBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="6611b517:134eb867750:-7e05" ordering="1" parent="6611b517:134eb867750:-7e06" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><Orientation as="orientation" value="NORTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="6611b517:134eb867750:-7e04" interfaceFunctionName="Resistor" ordering="13" parent="6611b517:134eb867750:-7ec6" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="10"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="10.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="10.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="110.0" y="320.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="6611b517:134eb867750:-7e02" ordering="1" parent="6611b517:134eb867750:-7e04" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="6611b517:134eb867750:-7e03" ordering="1" parent="6611b517:134eb867750:-7e04" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><BasicBlock angle="90" dependsOnU="1" id="6611b517:134eb867750:-7e01" interfaceFunctionName="Resistor" ordering="14" parent="6611b517:134eb867750:-7ec6" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="6"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="370.0" y="350.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="6611b517:134eb867750:-7d6c" ordering="1" parent="6611b517:134eb867750:-7e01" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="6611b517:134eb867750:-7d6b" ordering="1" parent="6611b517:134eb867750:-7e01" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><BasicBlock angle="90" dependsOnU="1" id="6611b517:134eb867750:-7dfe" interfaceFunctionName="Resistor" ordering="15" parent="6611b517:134eb867750:-7ec6" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="6"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="370.0" y="420.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="6611b517:134eb867750:-7dfc" ordering="1" parent="6611b517:134eb867750:-7dfe" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="6611b517:134eb867750:-7dfd" ordering="1" parent="6611b517:134eb867750:-7dfe" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><BasicBlock angle="90" dependsOnU="1" id="6611b517:134eb867750:-7d9c" interfaceFunctionName="Resistor" ordering="16" parent="6611b517:134eb867750:-7ec6" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="4"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="290.0" y="390.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="6611b517:134eb867750:-7d9a" ordering="1" parent="6611b517:134eb867750:-7d9c" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="6611b517:134eb867750:-7d9b" ordering="1" parent="6611b517:134eb867750:-7d9c" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitLink id="6611b517:134eb867750:-7d8c" parent="6611b517:134eb867750:-7ec6" source="6611b517:134eb867750:-7d6b" target="6611b517:134eb867750:-7dfc"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="390.0" y="390.0"/><mxPoint as="targetPoint" x="390.0" y="410.0"/></mxGeometry></ImplicitLink><ImplicitLink id="6611b517:134eb867750:-7d8b" parent="6611b517:134eb867750:-7ec6" source="6611b517:134eb867750:-7dfd" target="6611b517:134eb867750:-7d70"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="390.0" y="460.0"/><mxPoint as="targetPoint" x="390.0" y="480.0"/></mxGeometry></ImplicitLink><ImplicitLink id="6611b517:134eb867750:-7d88" parent="6611b517:134eb867750:-7ec6" source="6611b517:134eb867750:-7e09" target="6611b517:134eb867750:-7e03"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="150.0" y="340.0"/><mxPoint as="targetPoint" x="190.0" y="340.0"/></mxGeometry></ImplicitLink><SplitBlock id="6611b517:134eb867750:-7d85" ordering="17" parent="6611b517:134eb867750:-7ec6" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="307.0" y="347.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="6611b517:134eb867750:-7d83" ordering="1" parent="6611b517:134eb867750:-7d85" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="6611b517:134eb867750:-7d82" ordering="2" parent="6611b517:134eb867750:-7d85" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="6611b517:134eb867750:-7d84" ordering="1" parent="6611b517:134eb867750:-7d85" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="6611b517:134eb867750:-7d81" parent="6611b517:134eb867750:-7ec6" source="6611b517:134eb867750:-7e07" target="6611b517:134eb867750:-7d84"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="6611b517:134eb867750:-7d80" parent="6611b517:134eb867750:-7ec6" source="6611b517:134eb867750:-7d83" target="6611b517:134eb867750:-7d6c"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="6611b517:134eb867750:-7d86" parent="6611b517:134eb867750:-7ec6" source="6611b517:134eb867750:-7d82" target="6611b517:134eb867750:-7d9a"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="310.0" y="390.0"/><mxPoint as="targetPoint" x="310.0" y="350.0"/></mxGeometry></ImplicitLink><SplitBlock id="6611b517:134eb867750:-7d7e" ordering="18" parent="6611b517:134eb867750:-7ec6" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="307.0" y="537.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="6611b517:134eb867750:-7d7c" ordering="1" parent="6611b517:134eb867750:-7d7e" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="6611b517:134eb867750:-7d7b" ordering="2" parent="6611b517:134eb867750:-7d7e" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="6611b517:134eb867750:-7d7d" ordering="1" parent="6611b517:134eb867750:-7d7e" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="6611b517:134eb867750:-7d7a" parent="6611b517:134eb867750:-7ec6" source="6611b517:134eb867750:-7d6f" target="6611b517:134eb867750:-7d7d"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="390.0" y="540.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="6611b517:134eb867750:-7d79" parent="6611b517:134eb867750:-7ec6" source="6611b517:134eb867750:-7d7c" target="6611b517:134eb867750:-7e02"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="50.0" y="540.0"/><mxPoint x="50.0" y="340.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="6611b517:134eb867750:-7d77" ordering="19" parent="6611b517:134eb867750:-7ec6" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="307.0" y="537.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="6611b517:134eb867750:-7d75" ordering="1" parent="6611b517:134eb867750:-7d77" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="6611b517:134eb867750:-7d74" ordering="2" parent="6611b517:134eb867750:-7d77" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="6611b517:134eb867750:-7d76" ordering="1" parent="6611b517:134eb867750:-7d77" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="6611b517:134eb867750:-7d73" parent="6611b517:134eb867750:-7ec6" source="6611b517:134eb867750:-7d9b" target="6611b517:134eb867750:-7d76"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="6611b517:134eb867750:-7d72" parent="6611b517:134eb867750:-7ec6" source="6611b517:134eb867750:-7d7b" target="6611b517:134eb867750:-7d75"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="6611b517:134eb867750:-7d78" parent="6611b517:134eb867750:-7ec6" source="6611b517:134eb867750:-7d74" target="6611b517:134eb867750:-7e05"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="310.0" y="570.0"/><mxPoint as="targetPoint" x="310.0" y="540.0"/></mxGeometry></ImplicitLink><Summation dependsOnU="1" id="6611b517:134eb867750:-7d53" interfaceFunctionName="SUMMATION" ordering="20" parent="6611b517:134eb867750:-7ec6" simulationFunctionName="summation" simulationFunctionType="C_OR_FORTRAN" style="SUMMATION;flip=false;mirror=false" value="+"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="[1;-1]"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="2" width="1"><data column="0" line="0" realPart="1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="450.0" y="190.0"/></Summation><ExplicitInputPort dataType="REAL_MATRIX" id="6611b517:134eb867750:-7d51" ordering="1" parent="6611b517:134eb867750:-7d53" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" value="+"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ExplicitInputPort><ExplicitInputPort dataType="REAL_MATRIX" id="6611b517:134eb867750:-7d50" ordering="2" parent="6611b517:134eb867750:-7d53" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" value="-"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="26.0"/></ExplicitInputPort><ExplicitOutputPort dataType="REAL_MATRIX" id="6611b517:134eb867750:-7d52" ordering="1" parent="6611b517:134eb867750:-7d53" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ExplicitLink id="6611b517:134eb867750:-7d45" parent="6611b517:134eb867750:-7ec6" source="6611b517:134eb867750:-7eaf" target="6611b517:134eb867750:-7d51"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="220.0" y="90.0"/><mxPoint as="targetPoint" x="440.0" y="200.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="420.0" y="90.0"/><mxPoint x="420.0" y="200.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="6611b517:134eb867750:-7d44" parent="6611b517:134eb867750:-7ec6" source="6611b517:134eb867750:-7e08" target="6611b517:134eb867750:-7d50"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="190.0" y="360.0"/><mxPoint as="targetPoint" x="440.0" y="220.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="180.0" y="360.0"/><mxPoint x="180.0" y="310.0"/><mxPoint x="410.0" y="310.0"/><mxPoint x="420.0" y="310.0"/><mxPoint x="420.0" y="310.0"/><mxPoint x="420.0" y="220.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="6611b517:134eb867750:-7d43" parent="6611b517:134eb867750:-7ec6" source="6611b517:134eb867750:-7d52" target="6611b517:134eb867750:-7d41"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="490.0" y="210.0"/><mxPoint as="targetPoint" x="540.0" y="210.0"/></mxGeometry></ExplicitLink><BasicBlock angle="90" id="6611b517:134eb867750:-7ebd" interfaceFunctionName="ConstantVoltage" ordering="21" parent="6611b517:134eb867750:-7ec6" simulationFunctionName="ConstantVoltage" simulationFunctionType="DEFAULT" style="ConstantVoltage;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="16"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="16.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ConstantVoltage"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="V"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="16.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="50.0" y="140.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="6611b517:134eb867750:-7d68" ordering="1" parent="6611b517:134eb867750:-7ebd" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="6611b517:134eb867750:-7d67" ordering="1" parent="6611b517:134eb867750:-7ebd" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><BasicBlock blockType="h" id="-13640e5a:13894ab8a5f:-7204" interfaceFunctionName="CLOCK_c" ordering="22" parent="6611b517:134eb867750:-7ec6" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="99.0"/><data column="1" line="0" realPart="-160.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-73e75f0:167968eb73f:-7cb0"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-73e75f0:167968eb73f:-7cb0"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-70.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.1"/><data column="0" line="1" value="0.1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.1"/><data column="0" line="1" realPart="0.1"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.1"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-73e75f0:167968eb73f:-7cae"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-73e75f0:167968eb73f:-7cae"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="90.3773266666667"/><data column="1" line="0" realPart="-166.33333333333331"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="7.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="5.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-73e75f0:167968eb73f:-7cab"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-73e75f0:167968eb73f:-7cab"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="60.0"/><data column="0" line="2" realPart="97.54399333333338"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-74.0"/><data column="0" line="1" realPart="-170.0"/><data column="0" line="2" realPart="-155.33333333333331"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="97.48843777777782"/><data column="0" line="1" realPart="129.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-163.66666666666666"/><data column="0" line="1" realPart="-136.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="97.59954888888893"/><data column="0" line="1" realPart="100.70999999999998"/><data column="0" line="2" realPart="60.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-163.66666666666666"/><data column="0" line="1" realPart="-40.0"/><data column="0" line="2" realPart="-40.0"/><data column="0" line="3" realPart="-26.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="540.0" y="120.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="-13640e5a:13894ab8a5f:-7203" ordering="1" parent="-13640e5a:13894ab8a5f:-7204" style="CommandPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><CommandControlLink id="-13640e5a:13894ab8a5f:-7200" parent="6611b517:134eb867750:-7ec6" source="-13640e5a:13894ab8a5f:-7203" target="6611b517:134eb867750:-7d40"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="560.0" y="164.0"/><mxPoint as="targetPoint" x="560.0" y="180.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="560.0" y="180.0"/><mxPoint x="560.0" y="180.0"/></Array></mxGeometry></CommandControlLink></root></mxGraphModel><mxCell as="defaultParent" id="6611b517:134eb867750:-7ec6" parent="6611b517:134eb867750:-7ec5"/></XcosDiagram>
\ No newline at end of file diff --git a/Working_Examples/215/CH6/EX6.22/ex6_22.sce b/Working_Examples/215/CH6/EX6.22/ex6_22.sce new file mode 100755 index 0000000..65afbec --- /dev/null +++ b/Working_Examples/215/CH6/EX6.22/ex6_22.sce @@ -0,0 +1,16 @@ +clc
+//Example 6.22
+//Writing KVL for the circuit
+disp('10*i=30')
+//On solving
+i=3;R=10;V1=25;V2=5;
+printf("Power absorbed by 10 ohm resistor is %d W \n",i^2*R)
+printf("Power delivered by 25 V source is %d W \n",V1*i)
+printf("Power delivered by 5 V source is %d W \n",V2*i)
+//Let P be the total power
+P=i^2*R-(V1*i+V2*i)
+if P==0 then
+ disp('Tellegen theorem is valid')
+else
+ disp('Tellegen theorem is not valid')
+end
\ No newline at end of file diff --git a/Working_Examples/215/CH6/EX6.23/Figure6_23.jpg b/Working_Examples/215/CH6/EX6.23/Figure6_23.jpg Binary files differnew file mode 100755 index 0000000..db00076 --- /dev/null +++ b/Working_Examples/215/CH6/EX6.23/Figure6_23.jpg diff --git a/Working_Examples/215/CH6/EX6.23/Figure6_23_xcos.jpg b/Working_Examples/215/CH6/EX6.23/Figure6_23_xcos.jpg Binary files differnew file mode 100755 index 0000000..c2712f4 --- /dev/null +++ b/Working_Examples/215/CH6/EX6.23/Figure6_23_xcos.jpg diff --git a/Working_Examples/215/CH6/EX6.23/ex6_23.xcos b/Working_Examples/215/CH6/EX6.23/ex6_23.xcos new file mode 100755 index 0000000..8559aaf --- /dev/null +++ b/Working_Examples/215/CH6/EX6.23/ex6_23.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" finalIntegrationTime="30.0" title="ex6_23"><!--Xcos - 1.0 - scilab-5.5.2 - 20160406 2040--><mxGraphModel as="model"><root><mxCell id="6611b517:134eb867750:-7be6"/><mxCell id="6611b517:134eb867750:-7be7" parent="6611b517:134eb867750:-7be6"/><GroundBlock dependsOnU="1" id="6611b517:134eb867750:-7bd3" interfaceFunctionName="Ground" ordering="1" parent="6611b517:134eb867750:-7be7" simulationFunctionName="Ground" simulationFunctionType="DEFAULT" style="Ground;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Ground"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="240.0" y="280.0"/></GroundBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="6611b517:134eb867750:-7bd2" ordering="1" parent="6611b517:134eb867750:-7bd3" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><Orientation as="orientation" value="NORTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock angle="90" id="6611b517:134eb867750:-7bca" interfaceFunctionName="ConstantVoltage" ordering="2" parent="6611b517:134eb867750:-7be7" simulationFunctionName="ConstantVoltage" simulationFunctionType="DEFAULT" style="ConstantVoltage;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="45"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="45.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ConstantVoltage"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="V"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="45.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="70.0" y="190.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="6611b517:134eb867750:-7b78" ordering="1" parent="6611b517:134eb867750:-7bca" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="6611b517:134eb867750:-7b77" ordering="1" parent="6611b517:134eb867750:-7bca" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><BasicBlock angle="90" id="6611b517:134eb867750:-7bc4" interfaceFunctionName="ConstantVoltage" ordering="3" parent="6611b517:134eb867750:-7be7" simulationFunctionName="ConstantVoltage" simulationFunctionType="DEFAULT" style="ConstantVoltage;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="3"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ConstantVoltage"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="V"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="390.0" y="180.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="6611b517:134eb867750:-7b74" ordering="1" parent="6611b517:134eb867750:-7bc4" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="6611b517:134eb867750:-7b73" ordering="1" parent="6611b517:134eb867750:-7bc4" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><BasicBlock dependsOnU="1" id="6611b517:134eb867750:-7bb1" interfaceFunctionName="Resistor" ordering="4" parent="6611b517:134eb867750:-7be7" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="5000"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="5000.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5000.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="190.0" y="110.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="6611b517:134eb867750:-7b70" ordering="1" parent="6611b517:134eb867750:-7bb1" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="6611b517:134eb867750:-7b6f" ordering="1" parent="6611b517:134eb867750:-7bb1" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><BasicBlock dependsOnU="1" id="6611b517:134eb867750:-7bab" interfaceFunctionName="Resistor" ordering="5" parent="6611b517:134eb867750:-7be7" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="3000"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="3000.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="3000.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="330.0" y="110.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="6611b517:134eb867750:-7b68" ordering="1" parent="6611b517:134eb867750:-7bab" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="6611b517:134eb867750:-7b67" ordering="1" parent="6611b517:134eb867750:-7bab" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><BasicBlock dependsOnU="1" id="6611b517:134eb867750:-7ba8" interfaceFunctionName="Resistor" ordering="6" parent="6611b517:134eb867750:-7be7" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="4700"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="4700.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4700.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="260.0" y="110.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="6611b517:134eb867750:-7b6c" ordering="1" parent="6611b517:134eb867750:-7ba8" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="6611b517:134eb867750:-7b6b" ordering="1" parent="6611b517:134eb867750:-7ba8" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><BasicBlock dependsOnU="1" id="6611b517:134eb867750:-7b95" interfaceFunctionName="CSCOPE" ordering="7" parent="6611b517:134eb867750:-7be7" simulationFunctionName="cscope" simulationFunctionType="C_OR_FORTRAN" style="CSCOPE;flip=false;mirror=false"><ScilabString as="exprs" height="10" width="1"><data column="0" line="0" value="1 3 5 7 9 11 13 15"/><data column="0" line="1" value="-1"/><data column="0" line="2" value="[]"/><data column="0" line="3" value="[600;400]"/><data column="0" line="4" value="0.003"/><data column="0" line="5" value="0.0035"/><data column="0" line="6" value="30"/><data column="0" line="7" value="20"/><data column="0" line="8" value="0"/><data column="0" line="9" value=""/></ScilabString><ScilabDouble as="realParameters" height="4" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="0.003"/><data column="0" line="2" realPart="0.0035"/><data column="0" line="3" realPart="30.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="15" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="1.0"/><data column="0" line="4" realPart="3.0"/><data column="0" line="5" realPart="5.0"/><data column="0" line="6" realPart="7.0"/><data column="0" line="7" realPart="9.0"/><data column="0" line="8" realPart="11.0"/><data column="0" line="9" realPart="13.0"/><data column="0" line="10" realPart="15.0"/><data column="0" line="11" realPart="-1.0"/><data column="0" line="12" realPart="-1.0"/><data column="0" line="13" realPart="600.0"/><data column="0" line="14" realPart="400.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="470.0" y="130.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="6611b517:134eb867750:-7b64" ordering="1" parent="6611b517:134eb867750:-7b95" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ControlPort dataType="UNKNOW_TYPE" id="6611b517:134eb867750:-7b63" ordering="1" parent="6611b517:134eb867750:-7b95" style="ControlPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><ExplicitLink id="6611b517:134eb867750:-7b8b" parent="6611b517:134eb867750:-7be7" source="6611b517:134eb867750:-7bda" target="6611b517:134eb867750:-7b64"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="150.0" y="150.0"/><mxPoint as="targetPoint" x="470.0" y="140.0"/></mxGeometry></ExplicitLink><ImplicitLink id="6611b517:134eb867750:-7b89" parent="6611b517:134eb867750:-7be7" source="6611b517:134eb867750:-7b78" target="6611b517:134eb867750:-7bd9"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="90.0" y="200.0"/><mxPoint as="targetPoint" x="110.0" y="140.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="90.0" y="140.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="6611b517:134eb867750:-7b88" parent="6611b517:134eb867750:-7be7" source="6611b517:134eb867750:-7bdb" target="6611b517:134eb867750:-7b70"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="150.0" y="130.0"/><mxPoint as="targetPoint" x="190.0" y="130.0"/></mxGeometry></ImplicitLink><ImplicitLink id="6611b517:134eb867750:-7b87" parent="6611b517:134eb867750:-7be7" source="6611b517:134eb867750:-7b6f" target="6611b517:134eb867750:-7b6c"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="230.0" y="130.0"/><mxPoint as="targetPoint" x="260.0" y="130.0"/></mxGeometry></ImplicitLink><ImplicitLink id="6611b517:134eb867750:-7b86" parent="6611b517:134eb867750:-7be7" source="6611b517:134eb867750:-7b6b" target="6611b517:134eb867750:-7b68"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="300.0" y="130.0"/><mxPoint as="targetPoint" x="330.0" y="130.0"/></mxGeometry></ImplicitLink><ImplicitLink id="6611b517:134eb867750:-7b82" parent="6611b517:134eb867750:-7be7" source="6611b517:134eb867750:-7b67" target="6611b517:134eb867750:-7b74"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="370.0" y="130.0"/><mxPoint as="targetPoint" x="410.0" y="190.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="400.0" y="130.0"/><mxPoint x="410.0" y="130.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="6611b517:134eb867750:-7b7f" ordering="8" parent="6611b517:134eb867750:-7be7" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="257.0" y="247.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="6611b517:134eb867750:-7b7d" ordering="1" parent="6611b517:134eb867750:-7b7f" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="6611b517:134eb867750:-7b7c" ordering="2" parent="6611b517:134eb867750:-7b7f" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="6611b517:134eb867750:-7b7e" ordering="1" parent="6611b517:134eb867750:-7b7f" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="6611b517:134eb867750:-7b7b" parent="6611b517:134eb867750:-7be7" source="6611b517:134eb867750:-7b77" target="6611b517:134eb867750:-7b7e"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="90.0" y="250.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="6611b517:134eb867750:-7b7a" parent="6611b517:134eb867750:-7be7" source="6611b517:134eb867750:-7b73" target="6611b517:134eb867750:-7b7d"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="410.0" y="250.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="6611b517:134eb867750:-7b80" parent="6611b517:134eb867750:-7be7" source="6611b517:134eb867750:-7b7c" target="6611b517:134eb867750:-7bd2"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="260.0" y="280.0"/><mxPoint as="targetPoint" x="260.0" y="250.0"/></mxGeometry></ImplicitLink><BasicBlock dependsOnU="1" id="6611b517:134eb867750:-7bdc" interfaceFunctionName="CurrentSensor" ordering="9" parent="6611b517:134eb867750:-7be7" simulationFunctionName="CurrentSensor" simulationFunctionType="DEFAULT" style="CurrentSensor;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CurrentSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="i"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="110.0" y="120.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="6611b517:134eb867750:-7bda" ordering="2" parent="6611b517:134eb867750:-7bdc" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="26.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="6611b517:134eb867750:-7bd9" ordering="1" parent="6611b517:134eb867750:-7bdc" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="6611b517:134eb867750:-7bdb" ordering="1" parent="6611b517:134eb867750:-7bdc" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="6.0"/></ImplicitOutputPort><BasicBlock blockType="h" id="-13640e5a:13894ab8a5f:-71d1" interfaceFunctionName="CLOCK_c" ordering="10" parent="6611b517:134eb867750:-7be7" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="99.0"/><data column="1" line="0" realPart="-160.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-73e75f0:167968eb73f:-7c77"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-73e75f0:167968eb73f:-7c77"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-70.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.1"/><data column="0" line="1" value="0.1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.1"/><data column="0" line="1" realPart="0.1"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.1"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-73e75f0:167968eb73f:-7c75"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-73e75f0:167968eb73f:-7c75"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="90.3773266666667"/><data column="1" line="0" realPart="-166.33333333333331"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="7.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="5.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-73e75f0:167968eb73f:-7c72"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-73e75f0:167968eb73f:-7c72"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="60.0"/><data column="0" line="2" realPart="97.54399333333338"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-74.0"/><data column="0" line="1" realPart="-170.0"/><data column="0" line="2" realPart="-155.33333333333331"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="97.48843777777782"/><data column="0" line="1" realPart="129.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-163.66666666666666"/><data column="0" line="1" realPart="-136.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="97.59954888888893"/><data column="0" line="1" realPart="100.70999999999998"/><data column="0" line="2" realPart="60.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-163.66666666666666"/><data column="0" line="1" realPart="-40.0"/><data column="0" line="2" realPart="-40.0"/><data column="0" line="3" realPart="-26.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="470.0" y="50.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="-13640e5a:13894ab8a5f:-71d0" ordering="1" parent="-13640e5a:13894ab8a5f:-71d1" style="CommandPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><CommandControlLink id="-13640e5a:13894ab8a5f:-71cd" parent="6611b517:134eb867750:-7be7" source="-13640e5a:13894ab8a5f:-71d0" target="6611b517:134eb867750:-7b63"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="490.0" y="94.0"/><mxPoint as="targetPoint" x="490.0" y="130.0"/></mxGeometry></CommandControlLink></root></mxGraphModel><mxCell as="defaultParent" id="6611b517:134eb867750:-7be7" parent="6611b517:134eb867750:-7be6"/></XcosDiagram>
\ No newline at end of file diff --git a/Working_Examples/215/CH6/EX6.24/Figure6_24.jpg b/Working_Examples/215/CH6/EX6.24/Figure6_24.jpg Binary files differnew file mode 100755 index 0000000..236d284 --- /dev/null +++ b/Working_Examples/215/CH6/EX6.24/Figure6_24.jpg diff --git a/Working_Examples/215/CH6/EX6.24/Figure6_24_xcos.jpg b/Working_Examples/215/CH6/EX6.24/Figure6_24_xcos.jpg Binary files differnew file mode 100755 index 0000000..dbb6b3b --- /dev/null +++ b/Working_Examples/215/CH6/EX6.24/Figure6_24_xcos.jpg diff --git a/Working_Examples/215/CH6/EX6.24/ex6_24.xcos b/Working_Examples/215/CH6/EX6.24/ex6_24.xcos new file mode 100755 index 0000000..5db65e8 --- /dev/null +++ b/Working_Examples/215/CH6/EX6.24/ex6_24.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" finalIntegrationTime="30.0" title="ex6_24"><!--Xcos - 1.0 - scilab-5.5.2 - 20160406 2040--><mxGraphModel as="model"><root><mxCell id="6611b517:134eb867750:-7d3d"/><mxCell id="6611b517:134eb867750:-7d3e" parent="6611b517:134eb867750:-7d3d"/><BasicBlock angle="90" id="6611b517:134eb867750:-7d14" interfaceFunctionName="ConstantVoltage" ordering="1" parent="6611b517:134eb867750:-7d3e" simulationFunctionName="ConstantVoltage" simulationFunctionType="DEFAULT" style="ConstantVoltage;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="9"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="9.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ConstantVoltage"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="V"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="9.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="460.0" y="180.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="6611b517:134eb867750:-7c42" ordering="1" parent="6611b517:134eb867750:-7d14" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="6611b517:134eb867750:-7c43" ordering="1" parent="6611b517:134eb867750:-7d14" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock angle="90" id="6611b517:134eb867750:-7d0e" interfaceFunctionName="ConstantVoltage" ordering="2" parent="6611b517:134eb867750:-7d3e" simulationFunctionName="ConstantVoltage" simulationFunctionType="DEFAULT" style="ConstantVoltage;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="7.5"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="7.5"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ConstantVoltage"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="V"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="7.5"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="30.0" y="180.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="6611b517:134eb867750:-7c5a" ordering="1" parent="6611b517:134eb867750:-7d0e" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="6611b517:134eb867750:-7c5b" ordering="1" parent="6611b517:134eb867750:-7d0e" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="6611b517:134eb867750:-7cfe" interfaceFunctionName="Resistor" ordering="3" parent="6611b517:134eb867750:-7d3e" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="3.5"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="3.5"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="3.5"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="110.0" y="120.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="6611b517:134eb867750:-7c56" ordering="1" parent="6611b517:134eb867750:-7cfe" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="6611b517:134eb867750:-7c57" ordering="1" parent="6611b517:134eb867750:-7cfe" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><BasicBlock dependsOnT="1" id="6611b517:134eb867750:-7cf2" interfaceFunctionName="CCS" ordering="4" parent="6611b517:134eb867750:-7d3e" simulationFunctionName="CCS" simulationFunctionType="DEFAULT" style="CCS;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CCS"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="Iin"/><data column="0" line="1" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="220.0" y="110.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="6611b517:134eb867750:-7cef" ordering="2" parent="6611b517:134eb867750:-7cf2" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="26.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="6611b517:134eb867750:-7cf1" ordering="1" parent="6611b517:134eb867750:-7cf2" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="6611b517:134eb867750:-7cf0" ordering="1" parent="6611b517:134eb867750:-7cf2" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ExplicitInputPort><BasicBlock dependsOnU="1" id="6611b517:134eb867750:-7ceb" interfaceFunctionName="Resistor" ordering="5" parent="6611b517:134eb867750:-7d3e" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="17"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="17.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="17.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="210.0" y="30.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="6611b517:134eb867750:-7c4e" ordering="1" parent="6611b517:134eb867750:-7ceb" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="6611b517:134eb867750:-7c4f" ordering="1" parent="6611b517:134eb867750:-7ceb" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="6611b517:134eb867750:-7ce2" interfaceFunctionName="Resistor" ordering="6" parent="6611b517:134eb867750:-7d3e" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="9"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="9.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="9.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="400.0" y="110.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="6611b517:134eb867750:-7c46" ordering="1" parent="6611b517:134eb867750:-7ce2" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="6611b517:134eb867750:-7c47" ordering="1" parent="6611b517:134eb867750:-7ce2" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="6611b517:134eb867750:-7cdf" interfaceFunctionName="Resistor" ordering="7" parent="6611b517:134eb867750:-7d3e" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="40"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="40.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="40.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="310.0" y="110.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="6611b517:134eb867750:-7bf3" ordering="1" parent="6611b517:134eb867750:-7cdf" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="6611b517:134eb867750:-7bf4" ordering="1" parent="6611b517:134eb867750:-7cdf" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><VoltageSensorBlock dependsOnU="1" id="6611b517:134eb867750:-7cb6" interfaceFunctionName="VoltageSensor" ordering="8" parent="6611b517:134eb867750:-7d3e" simulationFunctionName="VoltageSensor" simulationFunctionType="DEFAULT" style="VoltageSensor;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="VoltageSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="v"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="350.0" y="50.0"/></VoltageSensorBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="6611b517:134eb867750:-7cb3" ordering="1" parent="6611b517:134eb867750:-7cb6" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="6611b517:134eb867750:-7cb5" ordering="1" parent="6611b517:134eb867750:-7cb6" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><Orientation as="orientation" value="SOUTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="6611b517:134eb867750:-7cb4" ordering="2" parent="6611b517:134eb867750:-7cb6" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ImplicitLink id="6611b517:134eb867750:-7ca2" parent="6611b517:134eb867750:-7d3e" source="6611b517:134eb867750:-7c5b" target="6611b517:134eb867750:-7c57"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="50.0" y="180.0"/><mxPoint as="targetPoint" x="140.0" y="140.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="50.0" y="140.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="6611b517:134eb867750:-7c9e" parent="6611b517:134eb867750:-7d3e" source="6611b517:134eb867750:-7c46" target="6611b517:134eb867750:-7c43"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="440.0" y="130.0"/><mxPoint as="targetPoint" x="480.0" y="180.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="480.0" y="130.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="6611b517:134eb867750:-7c93" ordering="9" parent="6611b517:134eb867750:-7d3e" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="367.0" y="127.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="6611b517:134eb867750:-7c90" ordering="2" parent="6611b517:134eb867750:-7c93" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="6611b517:134eb867750:-7c92" ordering="1" parent="6611b517:134eb867750:-7c93" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="6611b517:134eb867750:-7c91" ordering="1" parent="6611b517:134eb867750:-7c93" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="6611b517:134eb867750:-7c8f" parent="6611b517:134eb867750:-7d3e" source="6611b517:134eb867750:-7bf3" target="6611b517:134eb867750:-7c92"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="6611b517:134eb867750:-7c8e" parent="6611b517:134eb867750:-7d3e" source="6611b517:134eb867750:-7c91" target="6611b517:134eb867750:-7c47"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="6611b517:134eb867750:-7c94" parent="6611b517:134eb867750:-7d3e" source="6611b517:134eb867750:-7cb5" target="6611b517:134eb867750:-7c90"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="370.0" y="90.0"/><mxPoint as="targetPoint" x="370.0" y="130.0"/></mxGeometry></ImplicitLink><SplitBlock id="6611b517:134eb867750:-7c8c" ordering="10" parent="6611b517:134eb867750:-7d3e" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="287.0" y="127.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="6611b517:134eb867750:-7c89" ordering="2" parent="6611b517:134eb867750:-7c8c" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="6611b517:134eb867750:-7c8b" ordering="1" parent="6611b517:134eb867750:-7c8c" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="6611b517:134eb867750:-7c8a" ordering="1" parent="6611b517:134eb867750:-7c8c" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="6611b517:134eb867750:-7c87" parent="6611b517:134eb867750:-7d3e" source="6611b517:134eb867750:-7c8a" target="6611b517:134eb867750:-7bf4"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="6611b517:134eb867750:-7c8d" parent="6611b517:134eb867750:-7d3e" source="6611b517:134eb867750:-7c89" target="6611b517:134eb867750:-7cb3"><mxGeometry as="geometry" x="10.0"><mxPoint as="sourcePoint" x="360.0" y="70.0"/><mxPoint as="targetPoint" x="290.0" y="130.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="290.0" y="70.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="6611b517:134eb867750:-7c7c" ordering="11" parent="6611b517:134eb867750:-7d3e" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="267.0" y="127.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="6611b517:134eb867750:-7c79" ordering="2" parent="6611b517:134eb867750:-7c7c" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="6611b517:134eb867750:-7c7b" ordering="1" parent="6611b517:134eb867750:-7c7c" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="6611b517:134eb867750:-7c7a" ordering="1" parent="6611b517:134eb867750:-7c7c" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="6611b517:134eb867750:-7c78" parent="6611b517:134eb867750:-7d3e" source="6611b517:134eb867750:-7cf1" target="6611b517:134eb867750:-7c7b"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="6611b517:134eb867750:-7c77" parent="6611b517:134eb867750:-7d3e" source="6611b517:134eb867750:-7c7a" target="6611b517:134eb867750:-7c8b"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="6611b517:134eb867750:-7c7d" parent="6611b517:134eb867750:-7d3e" source="6611b517:134eb867750:-7c4e" target="6611b517:134eb867750:-7c79"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="260.0" y="50.0"/><mxPoint as="targetPoint" x="270.0" y="130.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="270.0" y="50.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="6611b517:134eb867750:-7c75" ordering="12" parent="6611b517:134eb867750:-7d3e" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="187.0" y="137.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="6611b517:134eb867750:-7c72" ordering="2" parent="6611b517:134eb867750:-7c75" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="6611b517:134eb867750:-7c74" ordering="1" parent="6611b517:134eb867750:-7c75" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="6611b517:134eb867750:-7c73" ordering="1" parent="6611b517:134eb867750:-7c75" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="6611b517:134eb867750:-7c71" parent="6611b517:134eb867750:-7d3e" source="6611b517:134eb867750:-7c56" target="6611b517:134eb867750:-7c74"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="6611b517:134eb867750:-7c70" parent="6611b517:134eb867750:-7d3e" source="6611b517:134eb867750:-7c73" target="6611b517:134eb867750:-7cef"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="220.0" y="140.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="6611b517:134eb867750:-7c76" parent="6611b517:134eb867750:-7d3e" source="6611b517:134eb867750:-7c72" target="6611b517:134eb867750:-7c4f"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="220.0" y="50.0"/><mxPoint as="targetPoint" x="190.0" y="140.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="190.0" y="50.0"/><mxPoint x="200.0" y="50.0"/></Array></mxGeometry></ImplicitLink><BasicBlock dependsOnU="1" id="6611b517:134eb867750:-7c68" interfaceFunctionName="CSCOPE" ordering="13" parent="6611b517:134eb867750:-7d3e" simulationFunctionName="cscope" simulationFunctionType="C_OR_FORTRAN" style="CSCOPE;flip=false;mirror=false"><ScilabString as="exprs" height="10" width="1"><data column="0" line="0" value="1 3 5 7 9 11 13 15"/><data column="0" line="1" value="-1"/><data column="0" line="2" value="[]"/><data column="0" line="3" value="[600;400]"/><data column="0" line="4" value="0"/><data column="0" line="5" value=".025"/><data column="0" line="6" value="30"/><data column="0" line="7" value="20"/><data column="0" line="8" value="0"/><data column="0" line="9" value=""/></ScilabString><ScilabDouble as="realParameters" height="4" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="0.0"/><data column="0" line="2" realPart="0.025"/><data column="0" line="3" realPart="30.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="15" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="1.0"/><data column="0" line="4" realPart="3.0"/><data column="0" line="5" realPart="5.0"/><data column="0" line="6" realPart="7.0"/><data column="0" line="7" realPart="9.0"/><data column="0" line="8" realPart="11.0"/><data column="0" line="9" realPart="13.0"/><data column="0" line="10" realPart="15.0"/><data column="0" line="11" realPart="-1.0"/><data column="0" line="12" realPart="-1.0"/><data column="0" line="13" realPart="600.0"/><data column="0" line="14" realPart="400.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="110.0" y="360.0"/></BasicBlock><ControlPort dataType="UNKNOW_TYPE" id="6611b517:134eb867750:-7be9" ordering="1" parent="6611b517:134eb867750:-7c68" style="ControlPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="6611b517:134eb867750:-7bea" ordering="1" parent="6611b517:134eb867750:-7c68" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitLink id="6611b517:134eb867750:-7c5e" parent="6611b517:134eb867750:-7d3e" source="6611b517:134eb867750:-7d1d" target="6611b517:134eb867750:-7bea"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="110.0" y="280.0"/><mxPoint as="targetPoint" x="100.0" y="380.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="90.0" y="280.0"/><mxPoint x="90.0" y="380.0"/></Array></mxGeometry></ExplicitLink><ImplicitLink id="6611b517:134eb867750:-7c2c" parent="6611b517:134eb867750:-7d3e" source="6611b517:134eb867750:-7c5a" target="6611b517:134eb867750:-7d1c"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="110.0" y="270.0"/><mxPoint as="targetPoint" x="50.0" y="230.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="50.0" y="270.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="6611b517:134eb867750:-7c2a" ordering="14" parent="6611b517:134eb867750:-7d3e" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="287.0" y="267.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="6611b517:134eb867750:-7c27" ordering="2" parent="6611b517:134eb867750:-7c2a" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="6611b517:134eb867750:-7c29" ordering="1" parent="6611b517:134eb867750:-7c2a" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="6611b517:134eb867750:-7c28" ordering="1" parent="6611b517:134eb867750:-7c2a" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="6611b517:134eb867750:-7c26" parent="6611b517:134eb867750:-7d3e" source="6611b517:134eb867750:-7c42" target="6611b517:134eb867750:-7c29"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="480.0" y="270.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="6611b517:134eb867750:-7c25" parent="6611b517:134eb867750:-7d3e" source="6611b517:134eb867750:-7c28" target="6611b517:134eb867750:-7d29"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="6611b517:134eb867750:-7c2b" parent="6611b517:134eb867750:-7d3e" source="6611b517:134eb867750:-7d1e" target="6611b517:134eb867750:-7c27"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="150.0" y="260.0"/><mxPoint as="targetPoint" x="290.0" y="270.0"/></mxGeometry></ImplicitLink><GroundBlock dependsOnU="1" id="6611b517:134eb867750:-7d2a" interfaceFunctionName="Ground" ordering="15" parent="6611b517:134eb867750:-7d3e" simulationFunctionName="Ground" simulationFunctionType="DEFAULT" style="Ground;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Ground"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="270.0" y="300.0"/></GroundBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="6611b517:134eb867750:-7d29" ordering="1" parent="6611b517:134eb867750:-7d2a" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><Orientation as="orientation" value="NORTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="6611b517:134eb867750:-7d1f" interfaceFunctionName="CurrentSensor" ordering="16" parent="6611b517:134eb867750:-7d3e" simulationFunctionName="CurrentSensor" simulationFunctionType="DEFAULT" style="CurrentSensor;rotation=0;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CurrentSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="i"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="110.0" y="250.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="6611b517:134eb867750:-7d1c" ordering="1" parent="6611b517:134eb867750:-7d1f" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="6611b517:134eb867750:-7d1e" ordering="1" parent="6611b517:134eb867750:-7d1f" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="6.0"/></ImplicitOutputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="6611b517:134eb867750:-7d1d" ordering="2" parent="6611b517:134eb867750:-7d1f" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="26.0"/></ExplicitOutputPort><BasicBlock blockType="h" id="18f5f971:13894cb2d8f:-7f79" interfaceFunctionName="CLOCK_c" ordering="17" parent="6611b517:134eb867750:-7d3e" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="99.0"/><data column="1" line="0" realPart="-160.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-73e75f0:167968eb73f:-7c15"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-73e75f0:167968eb73f:-7c15"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-70.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.1"/><data column="0" line="1" value="0.1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.1"/><data column="0" line="1" realPart="0.1"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.1"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-73e75f0:167968eb73f:-7c13"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-73e75f0:167968eb73f:-7c13"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="90.3773266666667"/><data column="1" line="0" realPart="-166.33333333333331"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="7.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="5.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-73e75f0:167968eb73f:-7c10"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-73e75f0:167968eb73f:-7c10"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="60.0"/><data column="0" line="2" realPart="97.54399333333338"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-74.0"/><data column="0" line="1" realPart="-170.0"/><data column="0" line="2" realPart="-155.33333333333331"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="97.48843777777782"/><data column="0" line="1" realPart="129.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-163.66666666666666"/><data column="0" line="1" realPart="-136.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="97.59954888888893"/><data column="0" line="1" realPart="100.70999999999998"/><data column="0" line="2" realPart="60.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-163.66666666666666"/><data column="0" line="1" realPart="-40.0"/><data column="0" line="2" realPart="-40.0"/><data column="0" line="3" realPart="-26.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="110.0" y="290.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="18f5f971:13894cb2d8f:-7f78" ordering="1" parent="18f5f971:13894cb2d8f:-7f79" style="CommandPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><CommandControlLink id="18f5f971:13894cb2d8f:-7f77" parent="6611b517:134eb867750:-7d3e" source="18f5f971:13894cb2d8f:-7f78" target="6611b517:134eb867750:-7be9"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="130.0" y="334.0"/><mxPoint as="targetPoint" x="130.0" y="350.0"/></mxGeometry></CommandControlLink><BasicBlock angle="180" blockType="h" id="18f5f971:13894cb2d8f:-7f6f" interfaceFunctionName="DELAY_f" ordering="18" parent="6611b517:134eb867750:-7d3e" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="DELAY_f;rotation=180;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="-177.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="1"/><data column="0" line="1" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="7.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"IN_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="IN_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="input"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-2.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-73e75f0:167968eb73f:-7c07"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="IN_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-73e75f0:167968eb73f:-7c07"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="368.0"/><data column="1" line="0" realPart="-177.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="1"/><data column="0" line="1" value="1"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"OUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="OUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-2.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-73e75f0:167968eb73f:-7c05"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="OUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-73e75f0:167968eb73f:-7c05"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="136.0"/><data column="1" line="0" realPart="-162.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="50.0"/><data column="1" line="0" realPart="50.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="0;0;0;0;0;0;0;0;0;0"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="7.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="9.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"REGISTER_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="REGISTER_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="delay"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="10" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="0.0"/><data column="0" line="2" realPart="0.0"/><data column="0" line="3" realPart="0.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/><data column="0" line="7" realPart="0.0"/><data column="0" line="8" realPart="0.0"/><data column="0" line="9" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-73e75f0:167968eb73f:-7c03"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="REGISTER_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-73e75f0:167968eb73f:-7c03"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="151.0"/><data column="1" line="0" realPart="-71.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.1"/><data column="0" line="1" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="10.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.1"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-73e75f0:167968eb73f:-7bff"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-73e75f0:167968eb73f:-7bff"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="200.66666666666669"/><data column="1" line="0" realPart="-132.13333333333338"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="7.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="9.0"/><data column="0" line="1" realPart="10.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-73e75f0:167968eb73f:-7bfc"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-73e75f0:167968eb73f:-7bfc"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="240.0"/><data column="0" line="1" realPart="384.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-137.0"/><data column="0" line="1" realPart="-167.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="64.0"/><data column="0" line="1" realPart="182.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-167.0"/><data column="0" line="1" realPart="-137.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="211.0"/><data column="0" line="1" realPart="207.83333333333334"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-75.0"/><data column="0" line="1" realPart="-121.13333333333338"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="207.7777777777778"/><data column="0" line="1" realPart="211.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-129.46666666666673"/><data column="0" line="1" realPart="-108.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="5" width="1"><data column="0" line="0" realPart="207.8888888888889"/><data column="0" line="1" realPart="256.6"/><data column="0" line="2" realPart="256.6"/><data column="0" line="3" realPart="211.0"/><data column="0" line="4" realPart="211.0"/></ScilabDouble><ScilabDouble height="5" width="1"><data column="0" line="0" realPart="-129.46666666666673"/><data column="0" line="1" realPart="-135.8"/><data column="0" line="2" realPart="-40.0"/><data column="0" line="3" realPart="-40.0"/><data column="0" line="4" realPart="-27.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="50.0" width="60.0" x="270.0" y="180.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="18f5f971:13894cb2d8f:-7f6e" ordering="1" parent="18f5f971:13894cb2d8f:-7f6f" style="ExplicitOutputPort;align=left;verticalAlign=middle;spacing=10;rotation=180;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitOutputPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="18f5f971:13894cb2d8f:-7f6d" ordering="1" parent="18f5f971:13894cb2d8f:-7f6f" style="ExplicitInputPort;align=right;verticalAlign=middle;spacing=10;rotation=180;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="60.0" y="16.0"/></ExplicitInputPort><ExplicitLink id="18f5f971:13894cb2d8f:-7f69" parent="6611b517:134eb867750:-7d3e" source="6611b517:134eb867750:-7cb4" target="18f5f971:13894cb2d8f:-7f6d"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="334.0" y="200.0"/><mxPoint as="targetPoint" x="390.0" y="70.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="390.0" y="200.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="18f5f971:13894cb2d8f:-7f68" parent="6611b517:134eb867750:-7d3e" source="18f5f971:13894cb2d8f:-7f6e" target="6611b517:134eb867750:-7cf0"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="216.0" y="120.0"/><mxPoint as="targetPoint" x="260.0" y="200.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="210.0" y="200.0"/><mxPoint x="210.0" y="120.0"/></Array></mxGeometry></ExplicitLink></root></mxGraphModel><mxCell as="defaultParent" id="6611b517:134eb867750:-7d3e" parent="6611b517:134eb867750:-7d3d"/></XcosDiagram>
\ No newline at end of file diff --git a/Working_Examples/215/CH6/EX6.3/Figure6_3.jpg b/Working_Examples/215/CH6/EX6.3/Figure6_3.jpg Binary files differnew file mode 100755 index 0000000..959ecaa --- /dev/null +++ b/Working_Examples/215/CH6/EX6.3/Figure6_3.jpg diff --git a/Working_Examples/215/CH6/EX6.3/Figure6_3_xcos.jpg b/Working_Examples/215/CH6/EX6.3/Figure6_3_xcos.jpg Binary files differnew file mode 100755 index 0000000..86ff3b8 --- /dev/null +++ b/Working_Examples/215/CH6/EX6.3/Figure6_3_xcos.jpg diff --git a/Working_Examples/215/CH6/EX6.3/ex6_3.xcos b/Working_Examples/215/CH6/EX6.3/ex6_3.xcos new file mode 100755 index 0000000..e00a1d8 --- /dev/null +++ b/Working_Examples/215/CH6/EX6.3/ex6_3.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" finalIntegrationTime="30.0" title="ex6_3"><!--Xcos - 1.0 - scilab-5.5.2 - 20160406 2040--><mxGraphModel as="model"><root><mxCell id="-5872192d:1324f245276:-7ee3"/><mxCell id="-5872192d:1324f245276:-7ee4" parent="-5872192d:1324f245276:-7ee3"/><BasicBlock angle="90" id="-5872192d:1324f245276:-7edb" interfaceFunctionName="ConstantVoltage" ordering="1" parent="-5872192d:1324f245276:-7ee4" simulationFunctionName="ConstantVoltage" simulationFunctionType="DEFAULT" style="ConstantVoltage;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="10"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="10.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ConstantVoltage"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="V"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="10.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="10.0" y="190.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-7d50" ordering="1" parent="-5872192d:1324f245276:-7edb" style="ImplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;spacingBottom=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-7d51" ordering="1" parent="-5872192d:1324f245276:-7edb" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;spacingTop=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><GroundBlock angle="90" dependsOnU="1" id="-5872192d:1324f245276:-7ed3" interfaceFunctionName="Ground" ordering="2" parent="-5872192d:1324f245276:-7ee4" simulationFunctionName="Ground" simulationFunctionType="DEFAULT" style="Ground;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Ground"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="130.0" y="342.0"/></GroundBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-7ed2" ordering="1" parent="-5872192d:1324f245276:-7ed3" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=90;spacingTop=5;flip=false;mirror=false"><Orientation as="orientation" value="NORTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock angle="90" dependsOnT="1" id="-5872192d:1324f245276:-7ec8" interfaceFunctionName="CVS" ordering="3" parent="-5872192d:1324f245276:-7ee4" simulationFunctionName="CVS" simulationFunctionType="DEFAULT" style="CVS;rotation=90;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CVS"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="vin"/><data column="0" line="1" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="250.0" y="210.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-7ec7" ordering="1" parent="-5872192d:1324f245276:-7ec8" style="ImplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;rotation=90;spacingBottom=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-7ec6" ordering="1" parent="-5872192d:1324f245276:-7ec8" style="ExplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=90;spacingTop=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="6.0" y="-8.0"/></ExplicitInputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-7ec5" ordering="2" parent="-5872192d:1324f245276:-7ec8" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=90;spacingTop=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="26.0" y="-8.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="-5872192d:1324f245276:-7ebd" interfaceFunctionName="Resistor" ordering="4" parent="-5872192d:1324f245276:-7ee4" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="2"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="60.0" y="112.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-7d44" ordering="1" parent="-5872192d:1324f245276:-7ebd" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-7d45" ordering="1" parent="-5872192d:1324f245276:-7ebd" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="-5872192d:1324f245276:-7eb7" interfaceFunctionName="Resistor" ordering="5" parent="-5872192d:1324f245276:-7ee4" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="140.0" y="110.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-7d48" ordering="1" parent="-5872192d:1324f245276:-7eb7" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-7d49" ordering="1" parent="-5872192d:1324f245276:-7eb7" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="-5872192d:1324f245276:-7ea1" interfaceFunctionName="CurrentSensor" ordering="6" parent="-5872192d:1324f245276:-7ee4" simulationFunctionName="CurrentSensor" simulationFunctionType="DEFAULT" style="CurrentSensor;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CurrentSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="i"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="210.0" y="112.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-7ea0" ordering="1" parent="-5872192d:1324f245276:-7ea1" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="6.0"/></ImplicitOutputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-7e9f" ordering="2" parent="-5872192d:1324f245276:-7ea1" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="26.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-7e9e" ordering="1" parent="-5872192d:1324f245276:-7ea1" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitLink id="-5872192d:1324f245276:-7e9d" parent="-5872192d:1324f245276:-7ee4" source="-5872192d:1324f245276:-7ea0" target="-5872192d:1324f245276:-7ec5"><mxGeometry as="geometry" x="-40.0"><mxPoint as="sourcePoint" x="254.0" y="122.0"/><mxPoint as="targetPoint" x="270.0" y="210.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="280.0" y="120.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-5872192d:1324f245276:-7e9c" parent="-5872192d:1324f245276:-7ee4" source="-5872192d:1324f245276:-7d48" target="-5872192d:1324f245276:-7e9e"><mxGeometry as="geometry" x="-40.0"><mxPoint as="sourcePoint" x="206.0" y="132.0"/><mxPoint as="targetPoint" x="180.0" y="130.0"/></mxGeometry></ImplicitLink><ImplicitLink id="-5872192d:1324f245276:-7e9b" parent="-5872192d:1324f245276:-7ee4" source="-5872192d:1324f245276:-7d44" target="-5872192d:1324f245276:-7d49"><mxGeometry as="geometry" x="-40.0"><mxPoint as="sourcePoint" x="136.0" y="130.0"/><mxPoint as="targetPoint" x="110.0" y="130.0"/></mxGeometry></ImplicitLink><ImplicitLink id="-5872192d:1324f245276:-7e9a" parent="-5872192d:1324f245276:-7ee4" source="-5872192d:1324f245276:-7d45" target="-5872192d:1324f245276:-7d51"><mxGeometry as="geometry" x="-40.0"><mxPoint as="sourcePoint" x="56.0" y="132.0"/><mxPoint as="targetPoint" x="30.0" y="180.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="30.0" y="130.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="-5872192d:1324f245276:-7e97" ordering="7" parent="-5872192d:1324f245276:-7ee4" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="146.5" y="296.5"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="-5872192d:1324f245276:-7e96" ordering="1" parent="-5872192d:1324f245276:-7e97" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5872192d:1324f245276:-7e95" ordering="1" parent="-5872192d:1324f245276:-7e97" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5872192d:1324f245276:-7e94" ordering="2" parent="-5872192d:1324f245276:-7e97" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="-5872192d:1324f245276:-7e93" parent="-5872192d:1324f245276:-7ee4" source="-5872192d:1324f245276:-7ec7" target="-5872192d:1324f245276:-7e96"><mxGeometry as="geometry" height="80.0" width="80.0" x="-40.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="270.0" y="300.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-5872192d:1324f245276:-7e92" parent="-5872192d:1324f245276:-7ee4" source="-5872192d:1324f245276:-7d50" target="-5872192d:1324f245276:-7e95"><mxGeometry as="geometry" height="80.0" width="80.0" x="-40.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="30.0" y="300.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-5872192d:1324f245276:-7e98" parent="-5872192d:1324f245276:-7ee4" source="-5872192d:1324f245276:-7e94" target="-5872192d:1324f245276:-7ed2"><mxGeometry as="geometry" x="-40.0"><mxPoint as="sourcePoint" x="150.0" y="338.0"/><mxPoint as="targetPoint" x="150.0" y="300.0"/></mxGeometry></ImplicitLink><GroundBlock angle="90" dependsOnU="1" id="-5872192d:1324f245276:-7e70" interfaceFunctionName="Ground" ordering="8" parent="-5872192d:1324f245276:-7ee4" simulationFunctionName="Ground" simulationFunctionType="DEFAULT" style="Ground;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Ground"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="450.0" y="352.0"/></GroundBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-7e6f" ordering="1" parent="-5872192d:1324f245276:-7e70" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=90;spacingTop=5;flip=false;mirror=false"><Orientation as="orientation" value="NORTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock angle="90" dependsOnT="1" id="-5872192d:1324f245276:-7e6e" interfaceFunctionName="CVS" ordering="9" parent="-5872192d:1324f245276:-7ee4" simulationFunctionName="CVS" simulationFunctionType="DEFAULT" style="CVS;rotation=90;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CVS"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="vin"/><data column="0" line="1" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="540.0" y="210.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-7e6d" ordering="1" parent="-5872192d:1324f245276:-7e6e" style="ImplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;rotation=90;spacingBottom=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-7e6c" ordering="1" parent="-5872192d:1324f245276:-7e6e" style="ExplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=90;spacingTop=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="6.0" y="-8.0"/></ExplicitInputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-7e6b" ordering="2" parent="-5872192d:1324f245276:-7e6e" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=90;spacingTop=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="26.0" y="-8.0"/></ImplicitInputPort><BasicBlock angle="90" dependsOnU="1" id="-5872192d:1324f245276:-7e6a" interfaceFunctionName="Resistor" ordering="10" parent="-5872192d:1324f245276:-7ee4" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="2"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="330.0" y="210.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-7d35" ordering="1" parent="-5872192d:1324f245276:-7e6a" style="ImplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;spacingBottom=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-7d36" ordering="1" parent="-5872192d:1324f245276:-7e6a" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;spacingTop=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="-5872192d:1324f245276:-7e67" interfaceFunctionName="Resistor" ordering="11" parent="-5872192d:1324f245276:-7ee4" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="500.0" y="100.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-7d39" ordering="1" parent="-5872192d:1324f245276:-7e67" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-7d3a" ordering="1" parent="-5872192d:1324f245276:-7e67" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="-5872192d:1324f245276:-7e64" interfaceFunctionName="CurrentSensor" ordering="12" parent="-5872192d:1324f245276:-7ee4" simulationFunctionName="CurrentSensor" simulationFunctionType="DEFAULT" style="CurrentSensor;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CurrentSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="i"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="380.0" y="110.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-7e63" ordering="1" parent="-5872192d:1324f245276:-7e64" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="6.0"/></ImplicitOutputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-7e62" ordering="2" parent="-5872192d:1324f245276:-7e64" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="26.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-7e61" ordering="1" parent="-5872192d:1324f245276:-7e64" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><BasicBlock angle="270" dependsOnT="1" id="-5872192d:1324f245276:-7dfa" interfaceFunctionName="CCS" ordering="13" parent="-5872192d:1324f245276:-7ee4" simulationFunctionName="CCS" simulationFunctionType="DEFAULT" style="CCS;rotation=270;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CCS"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="Iin"/><data column="0" line="1" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="440.0" y="202.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-7df9" ordering="1" parent="-5872192d:1324f245276:-7dfa" style="ImplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=270;spacingTop=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitOutputPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-7df8" ordering="1" parent="-5872192d:1324f245276:-7dfa" style="ExplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=top;rotation=270;spacingBottom=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="6.0" y="40.0"/></ExplicitInputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-7df7" ordering="2" parent="-5872192d:1324f245276:-7dfa" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=top;rotation=270;spacingBottom=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="26.0" y="40.0"/></ImplicitInputPort><ImplicitLink id="-5872192d:1324f245276:-7df6" parent="-5872192d:1324f245276:-7ee4" source="-5872192d:1324f245276:-7d36" target="-5872192d:1324f245276:-7e61"><mxGeometry as="geometry" x="-40.0"><mxPoint as="sourcePoint" x="350.0" y="206.0"/><mxPoint as="targetPoint" x="380.0" y="130.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="350.0" y="130.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-5872192d:1324f245276:-7df4" parent="-5872192d:1324f245276:-7ee4" source="-5872192d:1324f245276:-7d39" target="-5872192d:1324f245276:-7e6b"><mxGeometry as="geometry" x="-40.0"><mxPoint as="sourcePoint" x="544.0" y="120.0"/><mxPoint as="targetPoint" x="570.0" y="200.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="570.0" y="120.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="-5872192d:1324f245276:-7df1" ordering="14" parent="-5872192d:1324f245276:-7ee4" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="466.5" y="306.5"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="-5872192d:1324f245276:-7df0" ordering="1" parent="-5872192d:1324f245276:-7df1" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5872192d:1324f245276:-7def" ordering="1" parent="-5872192d:1324f245276:-7df1" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5872192d:1324f245276:-7dee" ordering="2" parent="-5872192d:1324f245276:-7df1" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="-5872192d:1324f245276:-7ded" parent="-5872192d:1324f245276:-7ee4" source="-5872192d:1324f245276:-7d35" target="-5872192d:1324f245276:-7df0"><mxGeometry as="geometry" height="80.0" width="80.0" x="-40.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="350.0" y="310.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-5872192d:1324f245276:-7dec" parent="-5872192d:1324f245276:-7ee4" source="-5872192d:1324f245276:-7e6d" target="-5872192d:1324f245276:-7def"><mxGeometry as="geometry" height="80.0" width="80.0" x="-40.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="560.0" y="310.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="-5872192d:1324f245276:-7dea" ordering="15" parent="-5872192d:1324f245276:-7ee4" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="456.5" y="116.5"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="-5872192d:1324f245276:-7de9" ordering="1" parent="-5872192d:1324f245276:-7dea" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5872192d:1324f245276:-7de8" ordering="1" parent="-5872192d:1324f245276:-7dea" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5872192d:1324f245276:-7de7" ordering="2" parent="-5872192d:1324f245276:-7dea" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="-5872192d:1324f245276:-7de6" parent="-5872192d:1324f245276:-7ee4" source="-5872192d:1324f245276:-7e63" target="-5872192d:1324f245276:-7de9"><mxGeometry as="geometry" height="80.0" width="80.0" x="-40.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-5872192d:1324f245276:-7de5" parent="-5872192d:1324f245276:-7ee4" source="-5872192d:1324f245276:-7de8" target="-5872192d:1324f245276:-7d3a"><mxGeometry as="geometry" height="80.0" width="80.0" x="-40.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-5872192d:1324f245276:-7deb" parent="-5872192d:1324f245276:-7ee4" source="-5872192d:1324f245276:-7df9" target="-5872192d:1324f245276:-7de7"><mxGeometry as="geometry" x="-40.0"><mxPoint as="sourcePoint" x="460.0" y="198.0"/><mxPoint as="targetPoint" x="460.0" y="120.0"/></mxGeometry></ImplicitLink><SplitBlock id="-5872192d:1324f245276:-7de3" ordering="16" parent="-5872192d:1324f245276:-7ee4" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="466.5" y="306.5"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="-5872192d:1324f245276:-7de2" ordering="1" parent="-5872192d:1324f245276:-7de3" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5872192d:1324f245276:-7de1" ordering="1" parent="-5872192d:1324f245276:-7de3" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5872192d:1324f245276:-7de0" ordering="2" parent="-5872192d:1324f245276:-7de3" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="-5872192d:1324f245276:-7ddf" parent="-5872192d:1324f245276:-7ee4" source="-5872192d:1324f245276:-7dee" target="-5872192d:1324f245276:-7de2"><mxGeometry as="geometry" height="80.0" width="80.0" x="-40.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-5872192d:1324f245276:-7dde" parent="-5872192d:1324f245276:-7ee4" source="-5872192d:1324f245276:-7de1" target="-5872192d:1324f245276:-7df7"><mxGeometry as="geometry" height="80.0" width="80.0" x="-40.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-5872192d:1324f245276:-7de4" parent="-5872192d:1324f245276:-7ee4" source="-5872192d:1324f245276:-7de0" target="-5872192d:1324f245276:-7e6f"><mxGeometry as="geometry" x="-40.0" y="10.0"><mxPoint as="sourcePoint" x="470.0" y="358.0"/><mxPoint as="targetPoint" x="470.0" y="310.0"/></mxGeometry></ImplicitLink><BasicBlock blockType="d" id="-5872192d:1324f245276:-7dd1" interfaceFunctionName="CONST_m" ordering="17" parent="-5872192d:1324f245276:-7ee4" simulationFunctionName="cstblk4" simulationFunctionType="C_OR_FORTRAN" style="CONST_m;flip=false;mirror=false" value="3"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="3"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble></Array><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="50.0" width="40.0" x="390.0" y="252.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-7d41" ordering="1" parent="-5872192d:1324f245276:-7dd1" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ExplicitLink id="-5872192d:1324f245276:-7dcf" parent="-5872192d:1324f245276:-7ee4" source="-5872192d:1324f245276:-7d41" target="-5872192d:1324f245276:-7df8"><mxGeometry as="geometry" x="-40.0"><mxPoint as="sourcePoint" x="450.0" y="246.0"/><mxPoint as="targetPoint" x="430.0" y="270.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="450.0" y="270.0"/></Array></mxGeometry></ExplicitLink><BasicBlock angle="180" dependsOnU="1" id="-5872192d:1324f245276:-7dc7" interfaceFunctionName="GAINBLK_f" ordering="18" parent="-5872192d:1324f245276:-7ee4" simulationFunctionName="gain" simulationFunctionType="DEFAULT" style="GAINBLK_f;rotation=180;flip=false;mirror=false" value="2"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="2"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="50.0" width="40.0" x="180.0" y="160.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-7d4c" ordering="1" parent="-5872192d:1324f245276:-7dc7" style="ExplicitOutputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=180;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitOutputPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-7d4d" ordering="1" parent="-5872192d:1324f245276:-7dc7" style="ExplicitInputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=180;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitInputPort><ExplicitLink id="-5872192d:1324f245276:-7dc0" parent="-5872192d:1324f245276:-7ee4" source="-5872192d:1324f245276:-7d4c" target="-5872192d:1324f245276:-7ec6"><mxGeometry as="geometry" x="-40.0"><mxPoint as="sourcePoint" x="176.0" y="180.0"/><mxPoint as="targetPoint" x="260.0" y="200.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="170.0" y="180.0"/><mxPoint x="170.0" y="200.0"/><mxPoint x="260.0" y="200.0"/></Array></mxGeometry></ExplicitLink><BasicBlock angle="90" dependsOnU="1" id="-5872192d:1324f245276:-7da5" interfaceFunctionName="GAINBLK_f" ordering="19" parent="-5872192d:1324f245276:-7ee4" simulationFunctionName="gain" simulationFunctionType="DEFAULT" style="GAINBLK_f;rotation=90;flip=false;mirror=false" value="2"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="2"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="50.0" width="40.0" x="570.0" y="140.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-7d3d" ordering="1" parent="-5872192d:1324f245276:-7da5" style="ExplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;spacingBottom=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="50.0"/></ExplicitOutputPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-7d3e" ordering="1" parent="-5872192d:1324f245276:-7da5" style="ExplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;spacingTop=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ExplicitInputPort><ExplicitLink id="-5872192d:1324f245276:-7d9b" parent="-5872192d:1324f245276:-7ee4" source="-5872192d:1324f245276:-7d3d" target="-5872192d:1324f245276:-7e6c"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="590.0" y="194.0"/><mxPoint as="targetPoint" x="550.0" y="200.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="550.0" y="190.0"/></Array></mxGeometry></ExplicitLink><BasicBlock blockType="h" id="-5872192d:1324f245276:-7d8c" interfaceFunctionName="CLOCK_c" ordering="20" parent="-5872192d:1324f245276:-7ee4" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="99.0"/><data column="1" line="0" realPart="-160.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-73e75f0:167968eb73f:-7b82"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-73e75f0:167968eb73f:-7b82"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-70.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.1"/><data column="0" line="1" value="0.1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.1"/><data column="0" line="1" realPart="0.1"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.1"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-73e75f0:167968eb73f:-7b80"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-73e75f0:167968eb73f:-7b80"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="90.3773266666667"/><data column="1" line="0" realPart="-166.33333333333331"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="7.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="5.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-73e75f0:167968eb73f:-7b7d"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-73e75f0:167968eb73f:-7b7d"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="60.0"/><data column="0" line="2" realPart="97.54399333333338"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-74.0"/><data column="0" line="1" realPart="-170.0"/><data column="0" line="2" realPart="-155.33333333333331"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="97.48843777777782"/><data column="0" line="1" realPart="129.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-163.66666666666666"/><data column="0" line="1" realPart="-136.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="97.59954888888893"/><data column="0" line="1" realPart="100.70999999999998"/><data column="0" line="2" realPart="60.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-163.66666666666666"/><data column="0" line="1" realPart="-40.0"/><data column="0" line="2" realPart="-40.0"/><data column="0" line="3" realPart="-26.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="690.0" y="10.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="-5872192d:1324f245276:-7d8b" ordering="1" parent="-5872192d:1324f245276:-7d8c" style="CommandPort;align=center;labelPosition=center;verticalLabelPosition=top;rotation=90;spacingBottom=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><BigSom dependsOnU="1" id="-5872192d:1324f245276:-7d7a" interfaceFunctionName="BIGSOM_f" ordering="21" parent="-5872192d:1324f245276:-7ee4" simulationFunctionName="sum" simulationFunctionType="TYPE_2" style="BIGSOM_f;flip=false;mirror=false" value="+"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="[1;1]"/></ScilabString><ScilabDouble as="realParameters" height="2" width="1"><data column="0" line="0" realPart="1.0"/><data column="0" line="1" realPart="1.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="620.0" y="60.0"/></BigSom><ExplicitOutputPort dataColumns="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-7d79" ordering="1" parent="-5872192d:1324f245276:-7d7a" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-7d78" ordering="1" parent="-5872192d:1324f245276:-7d7a" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ExplicitInputPort><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-7d77" ordering="2" parent="-5872192d:1324f245276:-7d7a" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="26.0"/></ExplicitInputPort><BasicBlock dependsOnU="1" id="-5872192d:1324f245276:-7d9a" interfaceFunctionName="CSCOPE" ordering="22" parent="-5872192d:1324f245276:-7ee4" simulationFunctionName="cscope" simulationFunctionType="C_OR_FORTRAN" style="CSCOPE;flip=false;mirror=false"><ScilabString as="exprs" height="10" width="1"><data column="0" line="0" value="1 3 5 7 9 11 13 15"/><data column="0" line="1" value="-1"/><data column="0" line="2" value="[]"/><data column="0" line="3" value="[600;400]"/><data column="0" line="4" value="1"/><data column="0" line="5" value="2"/><data column="0" line="6" value="30"/><data column="0" line="7" value="20"/><data column="0" line="8" value="0"/><data column="0" line="9" value=""/></ScilabString><ScilabDouble as="realParameters" height="4" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="2.0"/><data column="0" line="3" realPart="30.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="15" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="1.0"/><data column="0" line="4" realPart="3.0"/><data column="0" line="5" realPart="5.0"/><data column="0" line="6" realPart="7.0"/><data column="0" line="7" realPart="9.0"/><data column="0" line="8" realPart="11.0"/><data column="0" line="9" realPart="13.0"/><data column="0" line="10" realPart="15.0"/><data column="0" line="11" realPart="-1.0"/><data column="0" line="12" realPart="-1.0"/><data column="0" line="13" realPart="600.0"/><data column="0" line="14" realPart="400.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="690.0" y="60.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-7d32" ordering="1" parent="-5872192d:1324f245276:-7d9a" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ControlPort dataType="UNKNOW_TYPE" id="-5872192d:1324f245276:-7d31" ordering="1" parent="-5872192d:1324f245276:-7d9a" style="ControlPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=90;spacingTop=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><SplitBlock id="-5872192d:1324f245276:-7d68" ordering="23" parent="-5872192d:1324f245276:-7ee4" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="577.0" y="137.0"/></SplitBlock><ExplicitInputPort dataType="UNKNOW_TYPE" id="-5872192d:1324f245276:-7d67" ordering="1" parent="-5872192d:1324f245276:-7d68" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ExplicitInputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="-5872192d:1324f245276:-7d66" ordering="1" parent="-5872192d:1324f245276:-7d68" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="-5872192d:1324f245276:-7d65" ordering="2" parent="-5872192d:1324f245276:-7d68" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitLink id="-5872192d:1324f245276:-7d64" parent="-5872192d:1324f245276:-7ee4" source="-5872192d:1324f245276:-7e62" target="-5872192d:1324f245276:-7d67"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ExplicitLink><ExplicitLink id="-5872192d:1324f245276:-7d63" parent="-5872192d:1324f245276:-7ee4" source="-5872192d:1324f245276:-7d66" target="-5872192d:1324f245276:-7d3e"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ExplicitLink><ExplicitLink id="-5872192d:1324f245276:-7d69" parent="-5872192d:1324f245276:-7ee4" source="-5872192d:1324f245276:-7d65" target="-5872192d:1324f245276:-7d77"><mxGeometry as="geometry" x="10.0"><mxPoint as="sourcePoint" x="626.0" y="90.0"/><mxPoint as="targetPoint" x="590.0" y="140.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="580.0" y="90.0"/></Array></mxGeometry></ExplicitLink><SplitBlock id="-5872192d:1324f245276:-7d61" ordering="24" parent="-5872192d:1324f245276:-7ee4" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="257.0" y="157.0"/></SplitBlock><ExplicitInputPort dataType="UNKNOW_TYPE" id="-5872192d:1324f245276:-7d60" ordering="1" parent="-5872192d:1324f245276:-7d61" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ExplicitInputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="-5872192d:1324f245276:-7d5f" ordering="1" parent="-5872192d:1324f245276:-7d61" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="-5872192d:1324f245276:-7d5e" ordering="2" parent="-5872192d:1324f245276:-7d61" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitLink id="-5872192d:1324f245276:-7d5d" parent="-5872192d:1324f245276:-7ee4" source="-5872192d:1324f245276:-7e9f" target="-5872192d:1324f245276:-7d60"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="260.0" y="140.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="-5872192d:1324f245276:-7d5c" parent="-5872192d:1324f245276:-7ee4" source="-5872192d:1324f245276:-7d5f" target="-5872192d:1324f245276:-7d4d"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="260.0" y="180.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="-5872192d:1324f245276:-7d62" parent="-5872192d:1324f245276:-7ee4" source="-5872192d:1324f245276:-7d5e" target="-5872192d:1324f245276:-7d78"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="616.0" y="70.0"/><mxPoint as="targetPoint" x="260.0" y="160.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="270.0" y="160.0"/><mxPoint x="270.0" y="70.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="-5872192d:1324f245276:-7d56" parent="-5872192d:1324f245276:-7ee4" source="-5872192d:1324f245276:-7d79" target="-5872192d:1324f245276:-7d32"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="664.0" y="80.0"/><mxPoint as="targetPoint" x="680.0" y="80.0"/></mxGeometry></ExplicitLink><CommandControlLink id="-5872192d:1324f245276:-7d53" parent="-5872192d:1324f245276:-7ee4" source="-5872192d:1324f245276:-7d8b" target="-5872192d:1324f245276:-7d31"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="710.0" y="44.0"/><mxPoint as="targetPoint" x="710.0" y="60.0"/></mxGeometry></CommandControlLink></root></mxGraphModel><mxCell as="defaultParent" id="-5872192d:1324f245276:-7ee4" parent="-5872192d:1324f245276:-7ee3"/></XcosDiagram>
\ No newline at end of file diff --git a/Working_Examples/215/CH6/EX6.4/Figure6_4.jpg b/Working_Examples/215/CH6/EX6.4/Figure6_4.jpg Binary files differnew file mode 100755 index 0000000..4c8fd5b --- /dev/null +++ b/Working_Examples/215/CH6/EX6.4/Figure6_4.jpg diff --git a/Working_Examples/215/CH6/EX6.4/Figure6_4_xcos.jpg b/Working_Examples/215/CH6/EX6.4/Figure6_4_xcos.jpg Binary files differnew file mode 100755 index 0000000..749860f --- /dev/null +++ b/Working_Examples/215/CH6/EX6.4/Figure6_4_xcos.jpg diff --git a/Working_Examples/215/CH6/EX6.4/ex6_4.xcos b/Working_Examples/215/CH6/EX6.4/ex6_4.xcos new file mode 100755 index 0000000..ae18e39 --- /dev/null +++ b/Working_Examples/215/CH6/EX6.4/ex6_4.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" finalIntegrationTime="30.0" title="ex6_4"><!--Xcos - 1.0 - scilab-5.5.2 - 20160406 2040--><mxGraphModel as="model"><root><mxCell id="-5872192d:1324f245276:-7d2e"/><mxCell id="-5872192d:1324f245276:-7d2f" parent="-5872192d:1324f245276:-7d2e"/><BasicBlock angle="270" dependsOnT="1" id="-5872192d:1324f245276:-7d24" interfaceFunctionName="CCS" ordering="1" parent="-5872192d:1324f245276:-7d2f" simulationFunctionName="CCS" simulationFunctionType="DEFAULT" style="CCS;rotation=270;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CCS"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="Iin"/><data column="0" line="1" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="40.0" y="182.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-7d23" ordering="1" parent="-5872192d:1324f245276:-7d24" style="ImplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=270;spacingTop=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitOutputPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-7d22" ordering="1" parent="-5872192d:1324f245276:-7d24" style="ExplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=top;rotation=270;spacingBottom=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="6.0" y="40.0"/></ExplicitInputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-7d21" ordering="2" parent="-5872192d:1324f245276:-7d24" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=top;rotation=270;spacingBottom=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="26.0" y="40.0"/></ImplicitInputPort><GroundBlock angle="90" dependsOnU="1" id="-5872192d:1324f245276:-7d11" interfaceFunctionName="Ground" ordering="2" parent="-5872192d:1324f245276:-7d2f" simulationFunctionName="Ground" simulationFunctionType="DEFAULT" style="Ground;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Ground"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="150.0" y="330.0"/></GroundBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-7d10" ordering="1" parent="-5872192d:1324f245276:-7d11" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=90;spacingTop=5;flip=false;mirror=false"><Orientation as="orientation" value="NORTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><GroundBlock angle="90" dependsOnU="1" id="-5872192d:1324f245276:-7d0d" interfaceFunctionName="Ground" ordering="3" parent="-5872192d:1324f245276:-7d2f" simulationFunctionName="Ground" simulationFunctionType="DEFAULT" style="Ground;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Ground"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="490.0" y="340.0"/></GroundBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-7d0c" ordering="1" parent="-5872192d:1324f245276:-7d0d" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=90;spacingTop=5;flip=false;mirror=false"><Orientation as="orientation" value="NORTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="-5872192d:1324f245276:-7d02" interfaceFunctionName="Resistor" ordering="4" parent="-5872192d:1324f245276:-7d2f" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="100.0" y="80.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-7c31" ordering="1" parent="-5872192d:1324f245276:-7d02" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-7c32" ordering="1" parent="-5872192d:1324f245276:-7d02" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="-5872192d:1324f245276:-7cf9" interfaceFunctionName="Resistor" ordering="5" parent="-5872192d:1324f245276:-7d2f" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="2"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="410.0" y="90.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-7c21" ordering="1" parent="-5872192d:1324f245276:-7cf9" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-7c22" ordering="1" parent="-5872192d:1324f245276:-7cf9" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><BasicBlock angle="90" dependsOnU="1" id="-5872192d:1324f245276:-7cf6" interfaceFunctionName="Resistor" ordering="6" parent="-5872192d:1324f245276:-7d2f" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="350.0" y="190.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-7c25" ordering="1" parent="-5872192d:1324f245276:-7cf6" style="ImplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;spacingBottom=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-7c26" ordering="1" parent="-5872192d:1324f245276:-7cf6" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;spacingTop=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="-5872192d:1324f245276:-7cf3" interfaceFunctionName="Resistor" ordering="7" parent="-5872192d:1324f245276:-7d2f" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="2"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="230.0" y="80.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-7c29" ordering="1" parent="-5872192d:1324f245276:-7cf3" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-7c2a" ordering="1" parent="-5872192d:1324f245276:-7cf3" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><BasicBlock angle="90" dependsOnU="1" id="-5872192d:1324f245276:-7cf0" interfaceFunctionName="Resistor" ordering="8" parent="-5872192d:1324f245276:-7d2f" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="150.0" y="180.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-7c2d" ordering="1" parent="-5872192d:1324f245276:-7cf0" style="ImplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;spacingBottom=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-7c2e" ordering="1" parent="-5872192d:1324f245276:-7cf0" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;spacingTop=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock angle="90" id="-5872192d:1324f245276:-7d19" interfaceFunctionName="ConstantVoltage" ordering="9" parent="-5872192d:1324f245276:-7d2f" simulationFunctionName="ConstantVoltage" simulationFunctionType="DEFAULT" style="ConstantVoltage;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ConstantVoltage"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="V"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="630.0" y="180.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-7c19" ordering="1" parent="-5872192d:1324f245276:-7d19" style="ImplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;spacingBottom=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-7c1a" ordering="1" parent="-5872192d:1324f245276:-7d19" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;spacingTop=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitLink id="-5872192d:1324f245276:-7cd6" parent="-5872192d:1324f245276:-7d2f" source="-5872192d:1324f245276:-7d23" target="-5872192d:1324f245276:-7c32"><mxGeometry as="geometry" x="20.0" y="-20.0"><mxPoint as="sourcePoint" x="60.0" y="178.0"/><mxPoint as="targetPoint" x="100.0" y="100.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="60.0" y="100.0"/><mxPoint x="100.0" y="100.0"/><mxPoint x="90.0" y="100.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="-5872192d:1324f245276:-7cd3" ordering="10" parent="-5872192d:1324f245276:-7d2f" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="166.5" y="96.5"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="-5872192d:1324f245276:-7cd2" ordering="1" parent="-5872192d:1324f245276:-7cd3" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5872192d:1324f245276:-7cd1" ordering="1" parent="-5872192d:1324f245276:-7cd3" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5872192d:1324f245276:-7cd0" ordering="2" parent="-5872192d:1324f245276:-7cd3" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="-5872192d:1324f245276:-7ccf" parent="-5872192d:1324f245276:-7d2f" source="-5872192d:1324f245276:-7c31" target="-5872192d:1324f245276:-7cd2"><mxGeometry as="geometry" height="80.0" width="80.0" x="20.0" y="-20.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-5872192d:1324f245276:-7cce" parent="-5872192d:1324f245276:-7d2f" source="-5872192d:1324f245276:-7cd1" target="-5872192d:1324f245276:-7c2a"><mxGeometry as="geometry" height="80.0" width="80.0" x="20.0" y="-20.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-5872192d:1324f245276:-7cd4" parent="-5872192d:1324f245276:-7d2f" source="-5872192d:1324f245276:-7cd0" target="-5872192d:1324f245276:-7c2e"><mxGeometry as="geometry" x="20.0" y="-20.0"><mxPoint as="sourcePoint" x="170.0" y="186.0"/><mxPoint as="targetPoint" x="170.0" y="100.0"/></mxGeometry></ImplicitLink><BasicBlock angle="90" dependsOnU="1" id="-5872192d:1324f245276:-7cc4" interfaceFunctionName="CurrentSensor" ordering="11" parent="-5872192d:1324f245276:-7d2f" simulationFunctionName="CurrentSensor" simulationFunctionType="DEFAULT" style="CurrentSensor;rotation=90;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CurrentSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="i"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="280.0" y="130.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-7cc3" ordering="1" parent="-5872192d:1324f245276:-7cc4" style="ImplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;rotation=90;spacingBottom=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="6.0" y="40.0"/></ImplicitOutputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-7cc2" ordering="2" parent="-5872192d:1324f245276:-7cc4" style="ExplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;rotation=90;spacingBottom=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="26.0" y="40.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-7cc1" ordering="1" parent="-5872192d:1324f245276:-7cc4" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=90;spacingTop=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitLink id="-5872192d:1324f245276:-7cbc" parent="-5872192d:1324f245276:-7d2f" source="-5872192d:1324f245276:-7c29" target="-5872192d:1324f245276:-7cc1"><mxGeometry as="geometry" x="20.0" y="-20.0"><mxPoint as="sourcePoint" x="300.0" y="166.0"/><mxPoint as="targetPoint" x="270.0" y="100.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="300.0" y="100.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="-5872192d:1324f245276:-7cb9" ordering="12" parent="-5872192d:1324f245276:-7d2f" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="166.5" y="276.5"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="-5872192d:1324f245276:-7cb8" ordering="1" parent="-5872192d:1324f245276:-7cb9" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5872192d:1324f245276:-7cb7" ordering="1" parent="-5872192d:1324f245276:-7cb9" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5872192d:1324f245276:-7cb6" ordering="2" parent="-5872192d:1324f245276:-7cb9" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="-5872192d:1324f245276:-7cb5" parent="-5872192d:1324f245276:-7d2f" source="-5872192d:1324f245276:-7cc3" target="-5872192d:1324f245276:-7cb8"><mxGeometry as="geometry" height="80.0" width="80.0" x="20.0" y="-20.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="290.0" y="280.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-5872192d:1324f245276:-7cb4" parent="-5872192d:1324f245276:-7d2f" source="-5872192d:1324f245276:-7cb7" target="-5872192d:1324f245276:-7d21"><mxGeometry as="geometry" height="80.0" width="80.0" x="20.0" y="-20.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="70.0" y="280.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="-5872192d:1324f245276:-7cb2" ordering="13" parent="-5872192d:1324f245276:-7d2f" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="166.5" y="276.5"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="-5872192d:1324f245276:-7cb1" ordering="1" parent="-5872192d:1324f245276:-7cb2" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5872192d:1324f245276:-7cb0" ordering="1" parent="-5872192d:1324f245276:-7cb2" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5872192d:1324f245276:-7caf" ordering="2" parent="-5872192d:1324f245276:-7cb2" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="-5872192d:1324f245276:-7cae" parent="-5872192d:1324f245276:-7d2f" source="-5872192d:1324f245276:-7c2d" target="-5872192d:1324f245276:-7cb1"><mxGeometry as="geometry" height="80.0" width="80.0" x="20.0" y="-20.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-5872192d:1324f245276:-7cad" parent="-5872192d:1324f245276:-7d2f" source="-5872192d:1324f245276:-7cb6" target="-5872192d:1324f245276:-7cb0"><mxGeometry as="geometry" height="80.0" width="80.0" x="20.0" y="-20.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-5872192d:1324f245276:-7cb3" parent="-5872192d:1324f245276:-7d2f" source="-5872192d:1324f245276:-7caf" target="-5872192d:1324f245276:-7d10"><mxGeometry as="geometry" x="20.0" y="-20.0"><mxPoint as="sourcePoint" x="170.0" y="326.0"/><mxPoint as="targetPoint" x="170.0" y="280.0"/></mxGeometry></ImplicitLink><BasicBlock angle="90" dependsOnU="1" id="-5872192d:1324f245276:-7ca3" interfaceFunctionName="Resistor" ordering="14" parent="-5872192d:1324f245276:-7d2f" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="3"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="550.0" y="180.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-7c1d" ordering="1" parent="-5872192d:1324f245276:-7ca3" style="ImplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;spacingBottom=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-7c1e" ordering="1" parent="-5872192d:1324f245276:-7ca3" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;spacingTop=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="-5872192d:1324f245276:-7c94" interfaceFunctionName="CurrentSensor" ordering="15" parent="-5872192d:1324f245276:-7d2f" simulationFunctionName="CurrentSensor" simulationFunctionType="DEFAULT" style="CurrentSensor;rotation=0;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CurrentSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="i"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="490.0" y="90.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-7c93" ordering="1" parent="-5872192d:1324f245276:-7c94" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="6.0"/></ImplicitOutputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-7c92" ordering="2" parent="-5872192d:1324f245276:-7c94" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="26.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-7c91" ordering="1" parent="-5872192d:1324f245276:-7c94" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitLink id="-5872192d:1324f245276:-7c8b" parent="-5872192d:1324f245276:-7d2f" source="-5872192d:1324f245276:-7c21" target="-5872192d:1324f245276:-7c91"><mxGeometry as="geometry" x="20.0"><mxPoint as="sourcePoint" x="486.0" y="110.0"/><mxPoint as="targetPoint" x="460.0" y="110.0"/></mxGeometry></ImplicitLink><ImplicitLink id="-5872192d:1324f245276:-7c8a" parent="-5872192d:1324f245276:-7d2f" source="-5872192d:1324f245276:-7c22" target="-5872192d:1324f245276:-7c26"><mxGeometry as="geometry" x="20.0"><mxPoint as="sourcePoint" x="406.0" y="110.0"/><mxPoint as="targetPoint" x="370.0" y="190.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="370.0" y="110.0"/><mxPoint x="370.0" y="180.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="-5872192d:1324f245276:-7c88" ordering="16" parent="-5872192d:1324f245276:-7d2f" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="566.5" y="96.5"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="-5872192d:1324f245276:-7c87" ordering="1" parent="-5872192d:1324f245276:-7c88" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5872192d:1324f245276:-7c86" ordering="1" parent="-5872192d:1324f245276:-7c88" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5872192d:1324f245276:-7c85" ordering="2" parent="-5872192d:1324f245276:-7c88" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="-5872192d:1324f245276:-7c84" parent="-5872192d:1324f245276:-7d2f" source="-5872192d:1324f245276:-7c93" target="-5872192d:1324f245276:-7c87"><mxGeometry as="geometry" height="80.0" width="80.0" x="20.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-5872192d:1324f245276:-7c83" parent="-5872192d:1324f245276:-7d2f" source="-5872192d:1324f245276:-7c86" target="-5872192d:1324f245276:-7c1a"><mxGeometry as="geometry" height="80.0" width="80.0" x="20.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="650.0" y="100.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-5872192d:1324f245276:-7c89" parent="-5872192d:1324f245276:-7d2f" source="-5872192d:1324f245276:-7c85" target="-5872192d:1324f245276:-7c1e"><mxGeometry as="geometry" x="20.0"><mxPoint as="sourcePoint" x="570.0" y="176.0"/><mxPoint as="targetPoint" x="570.0" y="100.0"/></mxGeometry></ImplicitLink><SplitBlock id="-5872192d:1324f245276:-7c80" ordering="17" parent="-5872192d:1324f245276:-7d2f" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="566.5" y="276.5"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="-5872192d:1324f245276:-7c7f" ordering="1" parent="-5872192d:1324f245276:-7c80" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5872192d:1324f245276:-7c7e" ordering="1" parent="-5872192d:1324f245276:-7c80" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5872192d:1324f245276:-7c7d" ordering="2" parent="-5872192d:1324f245276:-7c80" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="-5872192d:1324f245276:-7c7b" parent="-5872192d:1324f245276:-7d2f" source="-5872192d:1324f245276:-7c19" target="-5872192d:1324f245276:-7c7e"><mxGeometry as="geometry" height="80.0" width="80.0" x="20.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="650.0" y="280.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-5872192d:1324f245276:-7c81" parent="-5872192d:1324f245276:-7d2f" source="-5872192d:1324f245276:-7c1d" target="-5872192d:1324f245276:-7c7d"><mxGeometry as="geometry" x="20.0"><mxPoint as="sourcePoint" x="570.0" y="224.0"/><mxPoint as="targetPoint" x="570.0" y="280.0"/></mxGeometry></ImplicitLink><SplitBlock id="-5872192d:1324f245276:-7c79" ordering="18" parent="-5872192d:1324f245276:-7d2f" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="506.5" y="276.5"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="-5872192d:1324f245276:-7c78" ordering="1" parent="-5872192d:1324f245276:-7c79" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5872192d:1324f245276:-7c77" ordering="1" parent="-5872192d:1324f245276:-7c79" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5872192d:1324f245276:-7c76" ordering="2" parent="-5872192d:1324f245276:-7c79" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="-5872192d:1324f245276:-7c75" parent="-5872192d:1324f245276:-7d2f" source="-5872192d:1324f245276:-7c25" target="-5872192d:1324f245276:-7c78"><mxGeometry as="geometry" height="80.0" width="80.0" x="20.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="370.0" y="280.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-5872192d:1324f245276:-7c74" parent="-5872192d:1324f245276:-7d2f" source="-5872192d:1324f245276:-7c77" target="-5872192d:1324f245276:-7c7f"><mxGeometry as="geometry" height="80.0" width="80.0" x="20.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-5872192d:1324f245276:-7c7a" parent="-5872192d:1324f245276:-7d2f" source="-5872192d:1324f245276:-7c76" target="-5872192d:1324f245276:-7d0c"><mxGeometry as="geometry" x="20.0"><mxPoint as="sourcePoint" x="510.0" y="336.0"/><mxPoint as="targetPoint" x="510.0" y="280.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="510.0" y="280.0"/></Array></mxGeometry></ImplicitLink><BigSom dependsOnU="1" id="-5872192d:1324f245276:-7c6a" interfaceFunctionName="BIGSOM_f" ordering="19" parent="-5872192d:1324f245276:-7d2f" simulationFunctionName="sum" simulationFunctionType="TYPE_2" style="BIGSOM_f;flip=false;mirror=false" value="+"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="[1;1]"/></ScilabString><ScilabDouble as="realParameters" height="2" width="1"><data column="0" line="0" realPart="1.0"/><data column="0" line="1" realPart="1.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="700.0" y="130.0"/></BigSom><ExplicitOutputPort dataColumns="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-7c69" ordering="1" parent="-5872192d:1324f245276:-7c6a" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-7c68" ordering="1" parent="-5872192d:1324f245276:-7c6a" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ExplicitInputPort><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-7c67" ordering="2" parent="-5872192d:1324f245276:-7c6a" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="26.0"/></ExplicitInputPort><BasicBlock dependsOnU="1" id="-5872192d:1324f245276:-7c5f" interfaceFunctionName="CSCOPE" ordering="20" parent="-5872192d:1324f245276:-7d2f" simulationFunctionName="cscope" simulationFunctionType="C_OR_FORTRAN" style="CSCOPE;flip=false;mirror=false"><ScilabString as="exprs" height="10" width="1"><data column="0" line="0" value="1 3 5 7 9 11 13 15"/><data column="0" line="1" value="-1"/><data column="0" line="2" value="[]"/><data column="0" line="3" value="[600;400]"/><data column="0" line="4" value="-0.5"/><data column="0" line="5" value="0.5"/><data column="0" line="6" value="30"/><data column="0" line="7" value="20"/><data column="0" line="8" value="0"/><data column="0" line="9" value=""/></ScilabString><ScilabDouble as="realParameters" height="4" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="-0.5"/><data column="0" line="2" realPart="0.5"/><data column="0" line="3" realPart="30.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="15" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="1.0"/><data column="0" line="4" realPart="3.0"/><data column="0" line="5" realPart="5.0"/><data column="0" line="6" realPart="7.0"/><data column="0" line="7" realPart="9.0"/><data column="0" line="8" realPart="11.0"/><data column="0" line="9" realPart="13.0"/><data column="0" line="10" realPart="15.0"/><data column="0" line="11" realPart="-1.0"/><data column="0" line="12" realPart="-1.0"/><data column="0" line="13" realPart="600.0"/><data column="0" line="14" realPart="400.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="780.0" y="130.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-7c16" ordering="1" parent="-5872192d:1324f245276:-7c5f" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ControlPort dataType="UNKNOW_TYPE" id="-5872192d:1324f245276:-7c15" ordering="1" parent="-5872192d:1324f245276:-7c5f" style="ControlPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=90;spacingTop=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><BasicBlock blockType="h" id="-5872192d:1324f245276:-7c57" interfaceFunctionName="CLOCK_c" ordering="21" parent="-5872192d:1324f245276:-7d2f" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="99.0"/><data column="1" line="0" realPart="-160.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-73e75f0:167968eb73f:-7b10"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-73e75f0:167968eb73f:-7b10"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-70.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.1"/><data column="0" line="1" value="0.1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.1"/><data column="0" line="1" realPart="0.1"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.1"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-73e75f0:167968eb73f:-7b0e"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-73e75f0:167968eb73f:-7b0e"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="90.3773266666667"/><data column="1" line="0" realPart="-166.33333333333331"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="7.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="5.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-73e75f0:167968eb73f:-7b0b"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-73e75f0:167968eb73f:-7b0b"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="60.0"/><data column="0" line="2" realPart="97.54399333333338"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-74.0"/><data column="0" line="1" realPart="-170.0"/><data column="0" line="2" realPart="-155.33333333333331"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="97.48843777777782"/><data column="0" line="1" realPart="129.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-163.66666666666666"/><data column="0" line="1" realPart="-136.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="97.59954888888893"/><data column="0" line="1" realPart="100.70999999999998"/><data column="0" line="2" realPart="60.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-163.66666666666666"/><data column="0" line="1" realPart="-40.0"/><data column="0" line="2" realPart="-40.0"/><data column="0" line="3" realPart="-26.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="780.0" y="40.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="-5872192d:1324f245276:-7c56" ordering="1" parent="-5872192d:1324f245276:-7c57" style="CommandPort;align=center;labelPosition=center;verticalLabelPosition=top;rotation=90;spacingBottom=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><BasicBlock blockType="d" id="-5872192d:1324f245276:-7c50" interfaceFunctionName="CONST_m" ordering="22" parent="-5872192d:1324f245276:-7d2f" simulationFunctionName="cstblk4" simulationFunctionType="C_OR_FORTRAN" style="CONST_m;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="50.0" width="40.0" x="10.0" y="270.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-7c35" ordering="1" parent="-5872192d:1324f245276:-7c50" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ExplicitLink id="-5872192d:1324f245276:-7c4a" parent="-5872192d:1324f245276:-7d2f" source="-5872192d:1324f245276:-7c35" target="-5872192d:1324f245276:-7d22"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="50.0" y="246.0"/><mxPoint as="targetPoint" x="40.0" y="290.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="50.0" y="290.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="-5872192d:1324f245276:-7c3f" parent="-5872192d:1324f245276:-7d2f" source="-5872192d:1324f245276:-7c92" target="-5872192d:1324f245276:-7c68"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="534.0" y="120.0"/><mxPoint as="targetPoint" x="700.0" y="140.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="680.0" y="120.0"/><mxPoint x="680.0" y="140.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="-5872192d:1324f245276:-7c3e" parent="-5872192d:1324f245276:-7d2f" source="-5872192d:1324f245276:-7cc2" target="-5872192d:1324f245276:-7c67"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="696.0" y="160.0"/><mxPoint as="targetPoint" x="310.0" y="170.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="310.0" y="180.0"/><mxPoint x="680.0" y="180.0"/><mxPoint x="680.0" y="160.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="-5872192d:1324f245276:-7c38" parent="-5872192d:1324f245276:-7d2f" source="-5872192d:1324f245276:-7c69" target="-5872192d:1324f245276:-7c16"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="744.0" y="150.0"/><mxPoint as="targetPoint" x="780.0" y="150.0"/></mxGeometry></ExplicitLink><CommandControlLink id="-5872192d:1324f245276:-7c37" parent="-5872192d:1324f245276:-7d2f" source="-5872192d:1324f245276:-7c56" target="-5872192d:1324f245276:-7c15"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="800.0" y="84.0"/><mxPoint as="targetPoint" x="800.0" y="120.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="800.0" y="120.0"/></Array></mxGeometry></CommandControlLink></root></mxGraphModel><mxCell as="defaultParent" id="-5872192d:1324f245276:-7d2f" parent="-5872192d:1324f245276:-7d2e"/></XcosDiagram>
\ No newline at end of file diff --git a/Working_Examples/215/CH6/EX6.5/Figure6_5.jpg b/Working_Examples/215/CH6/EX6.5/Figure6_5.jpg Binary files differnew file mode 100755 index 0000000..2c05423 --- /dev/null +++ b/Working_Examples/215/CH6/EX6.5/Figure6_5.jpg diff --git a/Working_Examples/215/CH6/EX6.5/Figure6_5_xcos.jpg b/Working_Examples/215/CH6/EX6.5/Figure6_5_xcos.jpg Binary files differnew file mode 100755 index 0000000..d58332a --- /dev/null +++ b/Working_Examples/215/CH6/EX6.5/Figure6_5_xcos.jpg diff --git a/Working_Examples/215/CH6/EX6.5/ex6_5.xcos b/Working_Examples/215/CH6/EX6.5/ex6_5.xcos new file mode 100755 index 0000000..51d61e7 --- /dev/null +++ b/Working_Examples/215/CH6/EX6.5/ex6_5.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" finalIntegrationTime="30.0" title="ex6_5"><!--Xcos - 1.0 - scilab-5.5.2 - 20160406 2040--><mxGraphModel as="model"><root><mxCell id="-5872192d:1324f245276:-7c10"/><mxCell id="-5872192d:1324f245276:-7c11" parent="-5872192d:1324f245276:-7c10"/><BasicBlock angle="90" id="-5872192d:1324f245276:-7c08" interfaceFunctionName="ConstantVoltage" ordering="1" parent="-5872192d:1324f245276:-7c11" simulationFunctionName="ConstantVoltage" simulationFunctionType="DEFAULT" style="ConstantVoltage;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="50"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="50.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ConstantVoltage"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="V"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="50.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="30.0" y="180.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-7b57" ordering="1" parent="-5872192d:1324f245276:-7c08" style="ImplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;spacingBottom=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-7b58" ordering="1" parent="-5872192d:1324f245276:-7c08" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;spacingTop=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><GroundBlock angle="90" dependsOnU="1" id="-5872192d:1324f245276:-7c00" interfaceFunctionName="Ground" ordering="2" parent="-5872192d:1324f245276:-7c11" simulationFunctionName="Ground" simulationFunctionType="DEFAULT" style="Ground;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Ground"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="80.0" y="310.0"/></GroundBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-7bff" ordering="1" parent="-5872192d:1324f245276:-7c00" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=90;spacingTop=5;flip=false;mirror=false"><Orientation as="orientation" value="NORTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="-5872192d:1324f245276:-7bf5" interfaceFunctionName="CurrentSensor" ordering="3" parent="-5872192d:1324f245276:-7c11" simulationFunctionName="CurrentSensor" simulationFunctionType="DEFAULT" style="CurrentSensor;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CurrentSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="i"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="80.0" y="90.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-7bf4" ordering="1" parent="-5872192d:1324f245276:-7bf5" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="6.0"/></ImplicitOutputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-7bf3" ordering="2" parent="-5872192d:1324f245276:-7bf5" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="26.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-7bf2" ordering="1" parent="-5872192d:1324f245276:-7bf5" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><BasicBlock angle="90" dependsOnU="1" id="-5872192d:1324f245276:-7bea" interfaceFunctionName="Resistor" ordering="4" parent="-5872192d:1324f245276:-7c11" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="10"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="10.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="10.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="140.0" y="180.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-7b53" ordering="1" parent="-5872192d:1324f245276:-7bea" style="ImplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;spacingBottom=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-7b54" ordering="1" parent="-5872192d:1324f245276:-7bea" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;spacingTop=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock angle="180" dependsOnU="1" id="-5872192d:1324f245276:-7bde" interfaceFunctionName="CurrentSensor" ordering="5" parent="-5872192d:1324f245276:-7c11" simulationFunctionName="CurrentSensor" simulationFunctionType="DEFAULT" style="CurrentSensor;rotation=180;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CurrentSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="i"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="390.0" y="110.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-7bdd" ordering="1" parent="-5872192d:1324f245276:-7bde" style="ImplicitOutputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=180;spacingLeft=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ImplicitOutputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-7bdc" ordering="2" parent="-5872192d:1324f245276:-7bde" style="ExplicitOutputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=180;spacingLeft=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="26.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-7bdb" ordering="1" parent="-5872192d:1324f245276:-7bde" style="ImplicitInputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=180;spacingRight=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitInputPort><BasicBlock angle="180" id="-5872192d:1324f245276:-7bda" interfaceFunctionName="ConstantVoltage" ordering="6" parent="-5872192d:1324f245276:-7c11" simulationFunctionName="ConstantVoltage" simulationFunctionType="DEFAULT" style="ConstantVoltage;rotation=180;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="30"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="30.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ConstantVoltage"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="V"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="30.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="300.0" y="280.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-7b4f" ordering="1" parent="-5872192d:1324f245276:-7bda" style="ImplicitOutputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=180;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-7b50" ordering="1" parent="-5872192d:1324f245276:-7bda" style="ImplicitInputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=180;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitInputPort><GroundBlock angle="90" dependsOnU="1" id="-5872192d:1324f245276:-7bd7" interfaceFunctionName="Ground" ordering="7" parent="-5872192d:1324f245276:-7c11" simulationFunctionName="Ground" simulationFunctionType="DEFAULT" style="Ground;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Ground"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="220.0" y="340.0"/></GroundBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-7bd6" ordering="1" parent="-5872192d:1324f245276:-7bd7" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=90;spacingTop=5;flip=false;mirror=false"><Orientation as="orientation" value="NORTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock angle="90" dependsOnU="1" id="-5872192d:1324f245276:-7bb7" interfaceFunctionName="Resistor" ordering="8" parent="-5872192d:1324f245276:-7c11" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="10"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="10.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="10.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="450.0" y="180.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-7b47" ordering="1" parent="-5872192d:1324f245276:-7bb7" style="ImplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;spacingBottom=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-7b48" ordering="1" parent="-5872192d:1324f245276:-7bb7" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;spacingTop=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="-5872192d:1324f245276:-7bb1" interfaceFunctionName="Resistor" ordering="9" parent="-5872192d:1324f245276:-7c11" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=0;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="3"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="310.0" y="100.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-7b43" ordering="1" parent="-5872192d:1324f245276:-7bb1" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-7b44" ordering="1" parent="-5872192d:1324f245276:-7bb1" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><BasicBlock angle="180" dependsOnU="1" id="-5872192d:1324f245276:-7bae" interfaceFunctionName="Resistor" ordering="10" parent="-5872192d:1324f245276:-7c11" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=180;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="2"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="390.0" y="280.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-7b4b" ordering="1" parent="-5872192d:1324f245276:-7bae" style="ImplicitOutputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=180;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-7b4c" ordering="1" parent="-5872192d:1324f245276:-7bae" style="ImplicitInputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=180;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitInputPort><ImplicitLink id="-5872192d:1324f245276:-7ba3" parent="-5872192d:1324f245276:-7c11" source="-5872192d:1324f245276:-7b58" target="-5872192d:1324f245276:-7bf2"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="50.0" y="176.0"/><mxPoint as="targetPoint" x="80.0" y="110.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="50.0" y="110.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-5872192d:1324f245276:-7b9a" parent="-5872192d:1324f245276:-7c11" source="-5872192d:1324f245276:-7bf4" target="-5872192d:1324f245276:-7b54"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="124.0" y="100.0"/><mxPoint as="targetPoint" x="160.0" y="170.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="160.0" y="100.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="-5872192d:1324f245276:-7b97" ordering="11" parent="-5872192d:1324f245276:-7c11" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="97.0" y="267.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="-5872192d:1324f245276:-7b96" ordering="1" parent="-5872192d:1324f245276:-7b97" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5872192d:1324f245276:-7b95" ordering="1" parent="-5872192d:1324f245276:-7b97" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5872192d:1324f245276:-7b94" ordering="2" parent="-5872192d:1324f245276:-7b97" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="-5872192d:1324f245276:-7b93" parent="-5872192d:1324f245276:-7c11" source="-5872192d:1324f245276:-7b57" target="-5872192d:1324f245276:-7b96"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="50.0" y="270.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-5872192d:1324f245276:-7b92" parent="-5872192d:1324f245276:-7c11" source="-5872192d:1324f245276:-7b53" target="-5872192d:1324f245276:-7b95"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="160.0" y="270.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-5872192d:1324f245276:-7b98" parent="-5872192d:1324f245276:-7c11" source="-5872192d:1324f245276:-7b94" target="-5872192d:1324f245276:-7bff"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="100.0" y="306.0"/><mxPoint as="targetPoint" x="100.0" y="270.0"/></mxGeometry></ImplicitLink><ImplicitLink id="-5872192d:1324f245276:-7b91" parent="-5872192d:1324f245276:-7c11" source="-5872192d:1324f245276:-7b4b" target="-5872192d:1324f245276:-7b50"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="344.0" y="300.0"/><mxPoint as="targetPoint" x="390.0" y="300.0"/></mxGeometry></ImplicitLink><ImplicitLink id="-5872192d:1324f245276:-7b90" parent="-5872192d:1324f245276:-7c11" source="-5872192d:1324f245276:-7b47" target="-5872192d:1324f245276:-7b4c"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="470.0" y="224.0"/><mxPoint as="targetPoint" x="440.0" y="300.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="470.0" y="300.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-5872192d:1324f245276:-7b8f" parent="-5872192d:1324f245276:-7c11" source="-5872192d:1324f245276:-7b48" target="-5872192d:1324f245276:-7bdb"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="470.0" y="176.0"/><mxPoint as="targetPoint" x="430.0" y="130.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="470.0" y="130.0"/><mxPoint x="430.0" y="130.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-5872192d:1324f245276:-7b8e" parent="-5872192d:1324f245276:-7c11" source="-5872192d:1324f245276:-7b43" target="-5872192d:1324f245276:-7bdd"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="386.0" y="120.0"/><mxPoint as="targetPoint" x="350.0" y="120.0"/></mxGeometry></ImplicitLink><SplitBlock id="-5872192d:1324f245276:-7b89" ordering="12" parent="-5872192d:1324f245276:-7c11" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="237.0" y="297.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="-5872192d:1324f245276:-7b88" ordering="1" parent="-5872192d:1324f245276:-7b89" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5872192d:1324f245276:-7b87" ordering="1" parent="-5872192d:1324f245276:-7b89" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5872192d:1324f245276:-7b86" ordering="2" parent="-5872192d:1324f245276:-7b89" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="-5872192d:1324f245276:-7b85" parent="-5872192d:1324f245276:-7c11" source="-5872192d:1324f245276:-7b4f" target="-5872192d:1324f245276:-7b88"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-5872192d:1324f245276:-7b84" parent="-5872192d:1324f245276:-7c11" source="-5872192d:1324f245276:-7b87" target="-5872192d:1324f245276:-7b44"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="240.0" y="300.0"/><mxPoint x="240.0" y="120.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-5872192d:1324f245276:-7b8a" parent="-5872192d:1324f245276:-7c11" source="-5872192d:1324f245276:-7b86" target="-5872192d:1324f245276:-7bd6"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="240.0" y="336.0"/><mxPoint as="targetPoint" x="240.0" y="300.0"/></mxGeometry></ImplicitLink><BigSom dependsOnU="1" id="-5872192d:1324f245276:-7b7a" interfaceFunctionName="BIGSOM_f" ordering="13" parent="-5872192d:1324f245276:-7c11" simulationFunctionName="sum" simulationFunctionType="TYPE_2" style="BIGSOM_f;flip=false;mirror=false" value="+"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="[1;1]"/></ScilabString><ScilabDouble as="realParameters" height="2" width="1"><data column="0" line="0" realPart="1.0"/><data column="0" line="1" realPart="1.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="470.0" y="70.0"/></BigSom><ExplicitOutputPort dataColumns="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-7b79" ordering="1" parent="-5872192d:1324f245276:-7b7a" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-7b78" ordering="1" parent="-5872192d:1324f245276:-7b7a" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ExplicitInputPort><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-7b77" ordering="2" parent="-5872192d:1324f245276:-7b7a" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="26.0"/></ExplicitInputPort><ExplicitLink id="-5872192d:1324f245276:-7b6e" parent="-5872192d:1324f245276:-7c11" source="-5872192d:1324f245276:-7bdc" target="-5872192d:1324f245276:-7b77"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="386.0" y="140.0"/><mxPoint as="targetPoint" x="470.0" y="100.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="380.0" y="140.0"/><mxPoint x="380.0" y="100.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="-5872192d:1324f245276:-7b6d" parent="-5872192d:1324f245276:-7c11" source="-5872192d:1324f245276:-7bf3" target="-5872192d:1324f245276:-7b78"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="124.0" y="120.0"/><mxPoint as="targetPoint" x="470.0" y="80.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="200.0" y="120.0"/><mxPoint x="200.0" y="80.0"/></Array></mxGeometry></ExplicitLink><BasicBlock dependsOnU="1" id="-5872192d:1324f245276:-7b65" interfaceFunctionName="CSCOPE" ordering="14" parent="-5872192d:1324f245276:-7c11" simulationFunctionName="cscope" simulationFunctionType="C_OR_FORTRAN" style="CSCOPE;flip=false;mirror=false"><ScilabString as="exprs" height="10" width="1"><data column="0" line="0" value="1 3 5 7 9 11 13 15"/><data column="0" line="1" value="-1"/><data column="0" line="2" value="[]"/><data column="0" line="3" value="[600;400]"/><data column="0" line="4" value="6"/><data column="0" line="5" value="8"/><data column="0" line="6" value="30"/><data column="0" line="7" value="20"/><data column="0" line="8" value="0"/><data column="0" line="9" value=""/></ScilabString><ScilabDouble as="realParameters" height="4" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="6.0"/><data column="0" line="2" realPart="8.0"/><data column="0" line="3" realPart="30.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="15" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="1.0"/><data column="0" line="4" realPart="3.0"/><data column="0" line="5" realPart="5.0"/><data column="0" line="6" realPart="7.0"/><data column="0" line="7" realPart="9.0"/><data column="0" line="8" realPart="11.0"/><data column="0" line="9" realPart="13.0"/><data column="0" line="10" realPart="15.0"/><data column="0" line="11" realPart="-1.0"/><data column="0" line="12" realPart="-1.0"/><data column="0" line="13" realPart="600.0"/><data column="0" line="14" realPart="400.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="550.0" y="72.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-7b40" ordering="1" parent="-5872192d:1324f245276:-7b65" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ControlPort dataType="UNKNOW_TYPE" id="-5872192d:1324f245276:-7b3f" ordering="1" parent="-5872192d:1324f245276:-7b65" style="ControlPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=90;spacingTop=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><BasicBlock blockType="h" id="-5872192d:1324f245276:-7b5d" interfaceFunctionName="CLOCK_c" ordering="15" parent="-5872192d:1324f245276:-7c11" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="99.0"/><data column="1" line="0" realPart="-160.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-73e75f0:167968eb73f:-7ac0"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-73e75f0:167968eb73f:-7ac0"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-70.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.1"/><data column="0" line="1" value="0.1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.1"/><data column="0" line="1" realPart="0.1"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.1"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-73e75f0:167968eb73f:-7abe"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-73e75f0:167968eb73f:-7abe"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="90.3773266666667"/><data column="1" line="0" realPart="-166.33333333333331"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="7.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="5.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-73e75f0:167968eb73f:-7abb"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-73e75f0:167968eb73f:-7abb"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="60.0"/><data column="0" line="2" realPart="97.54399333333338"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-74.0"/><data column="0" line="1" realPart="-170.0"/><data column="0" line="2" realPart="-155.33333333333331"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="97.48843777777782"/><data column="0" line="1" realPart="129.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-163.66666666666666"/><data column="0" line="1" realPart="-136.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="97.59954888888893"/><data column="0" line="1" realPart="100.70999999999998"/><data column="0" line="2" realPart="60.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-163.66666666666666"/><data column="0" line="1" realPart="-40.0"/><data column="0" line="2" realPart="-40.0"/><data column="0" line="3" realPart="-26.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="550.0" y="2.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="-5872192d:1324f245276:-7b5c" ordering="1" parent="-5872192d:1324f245276:-7b5d" style="CommandPort;align=center;labelPosition=center;verticalLabelPosition=top;rotation=90;spacingBottom=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><ExplicitLink id="-5872192d:1324f245276:-7b5b" parent="-5872192d:1324f245276:-7c11" source="-5872192d:1324f245276:-7b79" target="-5872192d:1324f245276:-7b40"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="514.0" y="90.0"/><mxPoint as="targetPoint" x="550.0" y="90.0"/></mxGeometry></ExplicitLink><CommandControlLink id="-5872192d:1324f245276:-7b5a" parent="-5872192d:1324f245276:-7c11" source="-5872192d:1324f245276:-7b5c" target="-5872192d:1324f245276:-7b3f"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="570.0" y="46.0"/><mxPoint as="targetPoint" x="570.0" y="70.0"/></mxGeometry></CommandControlLink></root></mxGraphModel><mxCell as="defaultParent" id="-5872192d:1324f245276:-7c11" parent="-5872192d:1324f245276:-7c10"/></XcosDiagram>
\ No newline at end of file diff --git a/Working_Examples/215/CH6/EX6.6/Figure6_6.jpg b/Working_Examples/215/CH6/EX6.6/Figure6_6.jpg Binary files differnew file mode 100755 index 0000000..864f810 --- /dev/null +++ b/Working_Examples/215/CH6/EX6.6/Figure6_6.jpg diff --git a/Working_Examples/215/CH6/EX6.6/Figure6_6_xcos.jpg b/Working_Examples/215/CH6/EX6.6/Figure6_6_xcos.jpg Binary files differnew file mode 100755 index 0000000..d442860 --- /dev/null +++ b/Working_Examples/215/CH6/EX6.6/Figure6_6_xcos.jpg diff --git a/Working_Examples/215/CH6/EX6.6/ex6_6.xcos b/Working_Examples/215/CH6/EX6.6/ex6_6.xcos new file mode 100755 index 0000000..8734465 --- /dev/null +++ b/Working_Examples/215/CH6/EX6.6/ex6_6.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" finalIntegrationTime="30.0" title="ex6_6"><!--Xcos - 1.0 - scilab-5.5.2 - 20160406 2040--><mxGraphModel as="model"><root><mxCell id="-5872192d:1324f245276:-7b3c"/><mxCell id="-5872192d:1324f245276:-7b3d" parent="-5872192d:1324f245276:-7b3c"/><GroundBlock angle="90" dependsOnU="1" id="-5872192d:1324f245276:-7a4b" interfaceFunctionName="Ground" ordering="1" parent="-5872192d:1324f245276:-7b3d" simulationFunctionName="Ground" simulationFunctionType="DEFAULT" style="Ground;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Ground"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="140.0" y="352.0"/></GroundBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-7a4a" ordering="1" parent="-5872192d:1324f245276:-7a4b" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=90;spacingTop=5;flip=false;mirror=false"><Orientation as="orientation" value="NORTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock angle="90" dependsOnT="1" id="-5872192d:1324f245276:-7a49" interfaceFunctionName="CVS" ordering="2" parent="-5872192d:1324f245276:-7b3d" simulationFunctionName="CVS" simulationFunctionType="DEFAULT" style="CVS;rotation=90;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CVS"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="vin"/><data column="0" line="1" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="260.0" y="220.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-7a48" ordering="1" parent="-5872192d:1324f245276:-7a49" style="ExplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=90;spacingTop=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="6.0" y="-8.0"/></ExplicitInputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-7a47" ordering="2" parent="-5872192d:1324f245276:-7a49" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=90;spacingTop=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="26.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-7a46" ordering="1" parent="-5872192d:1324f245276:-7a49" style="ImplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;rotation=90;spacingBottom=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><BasicBlock dependsOnU="1" id="-5872192d:1324f245276:-7a45" interfaceFunctionName="Resistor" ordering="3" parent="-5872192d:1324f245276:-7b3d" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="70.0" y="122.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-79da" ordering="1" parent="-5872192d:1324f245276:-7a45" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-79d9" ordering="1" parent="-5872192d:1324f245276:-7a45" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><BasicBlock dependsOnU="1" id="-5872192d:1324f245276:-7a42" interfaceFunctionName="Resistor" ordering="4" parent="-5872192d:1324f245276:-7b3d" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="5"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="150.0" y="120.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-79d6" ordering="1" parent="-5872192d:1324f245276:-7a42" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-79d5" ordering="1" parent="-5872192d:1324f245276:-7a42" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><BasicBlock dependsOnU="1" id="-5872192d:1324f245276:-7a3f" interfaceFunctionName="CurrentSensor" ordering="5" parent="-5872192d:1324f245276:-7b3d" simulationFunctionName="CurrentSensor" simulationFunctionType="DEFAULT" style="CurrentSensor;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CurrentSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="i"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="220.0" y="122.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-7a3e" ordering="2" parent="-5872192d:1324f245276:-7a3f" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="26.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-7a3d" ordering="1" parent="-5872192d:1324f245276:-7a3f" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-7a3c" ordering="1" parent="-5872192d:1324f245276:-7a3f" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="6.0"/></ImplicitOutputPort><ImplicitLink id="-5872192d:1324f245276:-7a3b" parent="-5872192d:1324f245276:-7b3d" source="-5872192d:1324f245276:-7a3c" target="-5872192d:1324f245276:-7a47"><mxGeometry as="geometry" x="-30.0" y="10.0"><mxPoint as="sourcePoint" x="264.0" y="132.0"/><mxPoint as="targetPoint" x="280.0" y="220.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="290.0" y="130.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-5872192d:1324f245276:-7a3a" parent="-5872192d:1324f245276:-7b3d" source="-5872192d:1324f245276:-79d5" target="-5872192d:1324f245276:-7a3d"><mxGeometry as="geometry" x="-30.0" y="10.0"><mxPoint as="sourcePoint" x="216.0" y="142.0"/><mxPoint as="targetPoint" x="190.0" y="140.0"/></mxGeometry></ImplicitLink><ImplicitLink id="-5872192d:1324f245276:-7a39" parent="-5872192d:1324f245276:-7b3d" source="-5872192d:1324f245276:-79d9" target="-5872192d:1324f245276:-79d6"><mxGeometry as="geometry" x="-30.0" y="10.0"><mxPoint as="sourcePoint" x="146.0" y="140.0"/><mxPoint as="targetPoint" x="120.0" y="140.0"/></mxGeometry></ImplicitLink><ImplicitLink id="-5872192d:1324f245276:-7a38" parent="-5872192d:1324f245276:-7b3d" source="-5872192d:1324f245276:-79da" target="-5872192d:1324f245276:-79de"><mxGeometry as="geometry" x="-30.0" y="10.0"><mxPoint as="sourcePoint" x="66.0" y="142.0"/><mxPoint as="targetPoint" x="40.0" y="190.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="40.0" y="140.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="-5872192d:1324f245276:-7a37" ordering="6" parent="-5872192d:1324f245276:-7b3d" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="156.5" y="306.5"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5872192d:1324f245276:-7a36" ordering="1" parent="-5872192d:1324f245276:-7a37" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5872192d:1324f245276:-7a35" ordering="2" parent="-5872192d:1324f245276:-7a37" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-5872192d:1324f245276:-7a34" ordering="1" parent="-5872192d:1324f245276:-7a37" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-5872192d:1324f245276:-7a33" parent="-5872192d:1324f245276:-7b3d" source="-5872192d:1324f245276:-7a46" target="-5872192d:1324f245276:-7a34"><mxGeometry as="geometry" height="80.0" width="80.0" x="-30.0" y="10.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="280.0" y="310.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-5872192d:1324f245276:-7a32" parent="-5872192d:1324f245276:-7b3d" source="-5872192d:1324f245276:-79dd" target="-5872192d:1324f245276:-7a36"><mxGeometry as="geometry" height="80.0" width="80.0" x="-30.0" y="10.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="40.0" y="310.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-5872192d:1324f245276:-7a31" parent="-5872192d:1324f245276:-7b3d" source="-5872192d:1324f245276:-7a35" target="-5872192d:1324f245276:-7a4a"><mxGeometry as="geometry" x="-30.0" y="10.0"><mxPoint as="sourcePoint" x="160.0" y="348.0"/><mxPoint as="targetPoint" x="160.0" y="310.0"/></mxGeometry></ImplicitLink><GroundBlock angle="90" dependsOnU="1" id="-5872192d:1324f245276:-7a30" interfaceFunctionName="Ground" ordering="7" parent="-5872192d:1324f245276:-7b3d" simulationFunctionName="Ground" simulationFunctionType="DEFAULT" style="Ground;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Ground"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="460.0" y="362.0"/></GroundBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-7a2f" ordering="1" parent="-5872192d:1324f245276:-7a30" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=90;spacingTop=5;flip=false;mirror=false"><Orientation as="orientation" value="NORTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock angle="90" dependsOnT="1" id="-5872192d:1324f245276:-7a2e" interfaceFunctionName="CVS" ordering="8" parent="-5872192d:1324f245276:-7b3d" simulationFunctionName="CVS" simulationFunctionType="DEFAULT" style="CVS;rotation=90;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CVS"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="vin"/><data column="0" line="1" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="550.0" y="220.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-7a2d" ordering="1" parent="-5872192d:1324f245276:-7a2e" style="ExplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=90;spacingTop=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="6.0" y="-8.0"/></ExplicitInputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-7a2c" ordering="2" parent="-5872192d:1324f245276:-7a2e" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=90;spacingTop=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="26.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-7a2b" ordering="1" parent="-5872192d:1324f245276:-7a2e" style="ImplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;rotation=90;spacingBottom=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><BasicBlock angle="90" dependsOnU="1" id="-5872192d:1324f245276:-7a2a" interfaceFunctionName="Resistor" ordering="9" parent="-5872192d:1324f245276:-7b3d" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="340.0" y="220.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-79cf" ordering="1" parent="-5872192d:1324f245276:-7a2a" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;spacingTop=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-79ce" ordering="1" parent="-5872192d:1324f245276:-7a2a" style="ImplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;spacingBottom=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><BasicBlock dependsOnU="1" id="-5872192d:1324f245276:-7a27" interfaceFunctionName="Resistor" ordering="10" parent="-5872192d:1324f245276:-7b3d" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="5"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="510.0" y="110.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-79cb" ordering="1" parent="-5872192d:1324f245276:-7a27" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-79ca" ordering="1" parent="-5872192d:1324f245276:-7a27" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><BasicBlock dependsOnU="1" id="-5872192d:1324f245276:-7a24" interfaceFunctionName="CurrentSensor" ordering="11" parent="-5872192d:1324f245276:-7b3d" simulationFunctionName="CurrentSensor" simulationFunctionType="DEFAULT" style="CurrentSensor;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CurrentSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="i"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="390.0" y="120.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-7a23" ordering="2" parent="-5872192d:1324f245276:-7a24" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="26.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-7a22" ordering="1" parent="-5872192d:1324f245276:-7a24" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-7a21" ordering="1" parent="-5872192d:1324f245276:-7a24" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="6.0"/></ImplicitOutputPort><BasicBlock angle="270" dependsOnT="1" id="-5872192d:1324f245276:-7a20" interfaceFunctionName="CCS" ordering="12" parent="-5872192d:1324f245276:-7b3d" simulationFunctionName="CCS" simulationFunctionType="DEFAULT" style="CCS;rotation=270;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CCS"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="Iin"/><data column="0" line="1" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="450.0" y="212.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-7a1f" ordering="1" parent="-5872192d:1324f245276:-7a20" style="ExplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=top;rotation=270;spacingBottom=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="6.0" y="40.0"/></ExplicitInputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-7a1e" ordering="2" parent="-5872192d:1324f245276:-7a20" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=top;rotation=270;spacingBottom=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="26.0" y="40.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-7a1d" ordering="1" parent="-5872192d:1324f245276:-7a20" style="ImplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=270;spacingTop=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitOutputPort><ImplicitLink id="-5872192d:1324f245276:-7a1c" parent="-5872192d:1324f245276:-7b3d" source="-5872192d:1324f245276:-79cf" target="-5872192d:1324f245276:-7a22"><mxGeometry as="geometry" x="-30.0" y="10.0"><mxPoint as="sourcePoint" x="360.0" y="216.0"/><mxPoint as="targetPoint" x="390.0" y="140.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="360.0" y="140.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-5872192d:1324f245276:-7a1b" parent="-5872192d:1324f245276:-7b3d" source="-5872192d:1324f245276:-79ca" target="-5872192d:1324f245276:-7a2c"><mxGeometry as="geometry" x="-30.0" y="10.0"><mxPoint as="sourcePoint" x="554.0" y="130.0"/><mxPoint as="targetPoint" x="580.0" y="210.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="580.0" y="130.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="-5872192d:1324f245276:-7a1a" ordering="13" parent="-5872192d:1324f245276:-7b3d" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="476.5" y="316.5"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5872192d:1324f245276:-7a19" ordering="1" parent="-5872192d:1324f245276:-7a1a" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5872192d:1324f245276:-7a18" ordering="2" parent="-5872192d:1324f245276:-7a1a" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-5872192d:1324f245276:-7a17" ordering="1" parent="-5872192d:1324f245276:-7a1a" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-5872192d:1324f245276:-7a16" parent="-5872192d:1324f245276:-7b3d" source="-5872192d:1324f245276:-79ce" target="-5872192d:1324f245276:-7a17"><mxGeometry as="geometry" height="80.0" width="80.0" x="-30.0" y="10.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="360.0" y="320.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-5872192d:1324f245276:-7a15" parent="-5872192d:1324f245276:-7b3d" source="-5872192d:1324f245276:-7a2b" target="-5872192d:1324f245276:-7a19"><mxGeometry as="geometry" height="80.0" width="80.0" x="-30.0" y="10.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="570.0" y="320.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="-5872192d:1324f245276:-7a14" ordering="14" parent="-5872192d:1324f245276:-7b3d" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="466.5" y="126.5"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5872192d:1324f245276:-7a13" ordering="1" parent="-5872192d:1324f245276:-7a14" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5872192d:1324f245276:-7a12" ordering="2" parent="-5872192d:1324f245276:-7a14" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-5872192d:1324f245276:-7a11" ordering="1" parent="-5872192d:1324f245276:-7a14" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-5872192d:1324f245276:-7a10" parent="-5872192d:1324f245276:-7b3d" source="-5872192d:1324f245276:-7a21" target="-5872192d:1324f245276:-7a11"><mxGeometry as="geometry" height="80.0" width="80.0" x="-30.0" y="10.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-5872192d:1324f245276:-7a0f" parent="-5872192d:1324f245276:-7b3d" source="-5872192d:1324f245276:-7a13" target="-5872192d:1324f245276:-79cb"><mxGeometry as="geometry" height="80.0" width="80.0" x="-30.0" y="10.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-5872192d:1324f245276:-7a0e" parent="-5872192d:1324f245276:-7b3d" source="-5872192d:1324f245276:-7a1d" target="-5872192d:1324f245276:-7a12"><mxGeometry as="geometry" x="-30.0" y="10.0"><mxPoint as="sourcePoint" x="470.0" y="208.0"/><mxPoint as="targetPoint" x="470.0" y="130.0"/></mxGeometry></ImplicitLink><SplitBlock id="-5872192d:1324f245276:-7a0d" ordering="15" parent="-5872192d:1324f245276:-7b3d" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="476.5" y="316.5"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5872192d:1324f245276:-7a0c" ordering="1" parent="-5872192d:1324f245276:-7a0d" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5872192d:1324f245276:-7a0b" ordering="2" parent="-5872192d:1324f245276:-7a0d" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-5872192d:1324f245276:-7a0a" ordering="1" parent="-5872192d:1324f245276:-7a0d" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-5872192d:1324f245276:-7a09" parent="-5872192d:1324f245276:-7b3d" source="-5872192d:1324f245276:-7a18" target="-5872192d:1324f245276:-7a0a"><mxGeometry as="geometry" height="80.0" width="80.0" x="-30.0" y="10.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-5872192d:1324f245276:-7a08" parent="-5872192d:1324f245276:-7b3d" source="-5872192d:1324f245276:-7a0c" target="-5872192d:1324f245276:-7a1e"><mxGeometry as="geometry" height="80.0" width="80.0" x="-30.0" y="10.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-5872192d:1324f245276:-7a07" parent="-5872192d:1324f245276:-7b3d" source="-5872192d:1324f245276:-7a0b" target="-5872192d:1324f245276:-7a2f"><mxGeometry as="geometry" x="-30.0" y="20.0"><mxPoint as="sourcePoint" x="480.0" y="368.0"/><mxPoint as="targetPoint" x="480.0" y="320.0"/></mxGeometry></ImplicitLink><BasicBlock blockType="d" id="-5872192d:1324f245276:-7a06" interfaceFunctionName="CONST_m" ordering="16" parent="-5872192d:1324f245276:-7b3d" simulationFunctionName="cstblk4" simulationFunctionType="C_OR_FORTRAN" style="CONST_m;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="50.0" width="40.0" x="400.0" y="262.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-79d2" ordering="1" parent="-5872192d:1324f245276:-7a06" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ExplicitLink id="-5872192d:1324f245276:-7a04" parent="-5872192d:1324f245276:-7b3d" source="-5872192d:1324f245276:-79d2" target="-5872192d:1324f245276:-7a1f"><mxGeometry as="geometry" x="-30.0" y="10.0"><mxPoint as="sourcePoint" x="460.0" y="256.0"/><mxPoint as="targetPoint" x="440.0" y="280.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="460.0" y="280.0"/></Array></mxGeometry></ExplicitLink><BasicBlock angle="180" dependsOnU="1" id="-5872192d:1324f245276:-7a03" interfaceFunctionName="GAINBLK_f" ordering="17" parent="-5872192d:1324f245276:-7b3d" simulationFunctionName="gain" simulationFunctionType="DEFAULT" style="GAINBLK_f;rotation=180;flip=false;mirror=false" value="2"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="2"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="50.0" width="40.0" x="190.0" y="170.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-7a02" ordering="1" parent="-5872192d:1324f245276:-7a03" style="ExplicitInputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=180;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitInputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-7a01" ordering="1" parent="-5872192d:1324f245276:-7a03" style="ExplicitOutputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=180;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitOutputPort><ExplicitLink id="-5872192d:1324f245276:-7a00" parent="-5872192d:1324f245276:-7b3d" source="-5872192d:1324f245276:-7a01" target="-5872192d:1324f245276:-7a48"><mxGeometry as="geometry" x="-30.0" y="10.0"><mxPoint as="sourcePoint" x="186.0" y="190.0"/><mxPoint as="targetPoint" x="270.0" y="210.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="180.0" y="190.0"/><mxPoint x="180.0" y="210.0"/><mxPoint x="270.0" y="210.0"/></Array></mxGeometry></ExplicitLink><BasicBlock angle="90" dependsOnU="1" id="-5872192d:1324f245276:-79ff" interfaceFunctionName="GAINBLK_f" ordering="18" parent="-5872192d:1324f245276:-7b3d" simulationFunctionName="gain" simulationFunctionType="DEFAULT" style="GAINBLK_f;rotation=90;flip=false;mirror=false" value="2"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="2"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="50.0" width="40.0" x="580.0" y="150.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-79fe" ordering="1" parent="-5872192d:1324f245276:-79ff" style="ExplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;spacingTop=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ExplicitInputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-79fd" ordering="1" parent="-5872192d:1324f245276:-79ff" style="ExplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;spacingBottom=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="50.0"/></ExplicitOutputPort><ExplicitLink id="-5872192d:1324f245276:-79fc" parent="-5872192d:1324f245276:-7b3d" source="-5872192d:1324f245276:-79fd" target="-5872192d:1324f245276:-7a2d"><mxGeometry as="geometry" x="10.0" y="10.0"><mxPoint as="sourcePoint" x="600.0" y="204.0"/><mxPoint as="targetPoint" x="560.0" y="210.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="560.0" y="200.0"/></Array></mxGeometry></ExplicitLink><BasicBlock blockType="h" id="-5872192d:1324f245276:-79fb" interfaceFunctionName="CLOCK_c" ordering="19" parent="-5872192d:1324f245276:-7b3d" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="99.0"/><data column="1" line="0" realPart="-152.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-5872192d:1324f245276:-7ac7"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-5872192d:1324f245276:-7ac7"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-62.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.1"/><data column="0" line="1" value="0.1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.1"/><data column="0" line="1" realPart="0.1"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.1"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-5872192d:1324f245276:-7ac3"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-5872192d:1324f245276:-7ac3"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="92.71066000000002"/><data column="1" line="0" realPart="-154.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="8.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="4.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-5872192d:1324f245276:-7abe"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-5872192d:1324f245276:-7abe"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="66.0"/><data column="0" line="2" realPart="103.37732666666669"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-18.0"/><data column="0" line="1" realPart="-186.0"/><data column="0" line="2" realPart="-158.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="104.71066000000002"/><data column="0" line="1" realPart="129.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-142.0"/><data column="0" line="1" realPart="-128.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="106.04399333333335"/><data column="0" line="1" realPart="111.70999999999998"/><data column="0" line="2" realPart="71.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-158.0"/><data column="0" line="1" realPart="-40.0"/><data column="0" line="2" realPart="-40.0"/><data column="0" line="3" realPart="-66.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="700.0" y="20.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="-5872192d:1324f245276:-79fa" ordering="1" parent="-5872192d:1324f245276:-79fb" style="CommandPort;align=center;labelPosition=center;verticalLabelPosition=top;rotation=90;spacingBottom=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><BigSom dependsOnU="1" id="-5872192d:1324f245276:-79f9" interfaceFunctionName="BIGSOM_f" ordering="20" parent="-5872192d:1324f245276:-7b3d" simulationFunctionName="sum" simulationFunctionType="TYPE_2" style="BIGSOM_f;flip=false;mirror=false" value="+"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="[1;1]"/></ScilabString><ScilabDouble as="realParameters" height="2" width="1"><data column="0" line="0" realPart="1.0"/><data column="0" line="1" realPart="1.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="630.0" y="70.0"/></BigSom><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-79f8" ordering="1" parent="-5872192d:1324f245276:-79f9" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ExplicitInputPort><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-79f7" ordering="2" parent="-5872192d:1324f245276:-79f9" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="26.0"/></ExplicitInputPort><ExplicitOutputPort dataColumns="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-79f6" ordering="1" parent="-5872192d:1324f245276:-79f9" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><BasicBlock dependsOnU="1" id="-5872192d:1324f245276:-79f5" interfaceFunctionName="CSCOPE" ordering="21" parent="-5872192d:1324f245276:-7b3d" simulationFunctionName="cscope" simulationFunctionType="C_OR_FORTRAN" style="CSCOPE;flip=false;mirror=false"><ScilabString as="exprs" height="10" width="1"><data column="0" line="0" value="1 3 5 7 9 11 13 15"/><data column="0" line="1" value="-1"/><data column="0" line="2" value="[]"/><data column="0" line="3" value="[600;400]"/><data column="0" line="4" value="0.1"/><data column="0" line="5" value="0.15"/><data column="0" line="6" value="30"/><data column="0" line="7" value="20"/><data column="0" line="8" value="0"/><data column="0" line="9" value=""/></ScilabString><ScilabDouble as="realParameters" height="4" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="0.1"/><data column="0" line="2" realPart="0.15"/><data column="0" line="3" realPart="30.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="15" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="1.0"/><data column="0" line="4" realPart="3.0"/><data column="0" line="5" realPart="5.0"/><data column="0" line="6" realPart="7.0"/><data column="0" line="7" realPart="9.0"/><data column="0" line="8" realPart="11.0"/><data column="0" line="9" realPart="13.0"/><data column="0" line="10" realPart="15.0"/><data column="0" line="11" realPart="-1.0"/><data column="0" line="12" realPart="-1.0"/><data column="0" line="13" realPart="600.0"/><data column="0" line="14" realPart="400.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="700.0" y="70.0"/></BasicBlock><ControlPort dataType="UNKNOW_TYPE" id="-5872192d:1324f245276:-79be" ordering="1" parent="-5872192d:1324f245276:-79f5" style="ControlPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=90;spacingTop=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-79bf" ordering="1" parent="-5872192d:1324f245276:-79f5" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><SplitBlock id="-5872192d:1324f245276:-79f2" ordering="22" parent="-5872192d:1324f245276:-7b3d" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="586.5" y="146.5"/></SplitBlock><ExplicitOutputPort dataType="UNKNOW_TYPE" id="-5872192d:1324f245276:-79f1" ordering="1" parent="-5872192d:1324f245276:-79f2" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="-5872192d:1324f245276:-79f0" ordering="2" parent="-5872192d:1324f245276:-79f2" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitInputPort dataType="UNKNOW_TYPE" id="-5872192d:1324f245276:-79ef" ordering="1" parent="-5872192d:1324f245276:-79f2" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ExplicitInputPort><ExplicitLink id="-5872192d:1324f245276:-79ee" parent="-5872192d:1324f245276:-7b3d" source="-5872192d:1324f245276:-7a23" target="-5872192d:1324f245276:-79ef"><mxGeometry as="geometry" height="80.0" width="80.0" x="10.0" y="10.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ExplicitLink><ExplicitLink id="-5872192d:1324f245276:-79ed" parent="-5872192d:1324f245276:-7b3d" source="-5872192d:1324f245276:-79f1" target="-5872192d:1324f245276:-79fe"><mxGeometry as="geometry" height="80.0" width="80.0" x="10.0" y="10.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ExplicitLink><ExplicitLink id="-5872192d:1324f245276:-79ec" parent="-5872192d:1324f245276:-7b3d" source="-5872192d:1324f245276:-79f0" target="-5872192d:1324f245276:-79f7"><mxGeometry as="geometry" x="20.0" y="10.0"><mxPoint as="sourcePoint" x="636.0" y="100.0"/><mxPoint as="targetPoint" x="600.0" y="150.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="590.0" y="100.0"/></Array></mxGeometry></ExplicitLink><SplitBlock id="-5872192d:1324f245276:-79eb" ordering="23" parent="-5872192d:1324f245276:-7b3d" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="266.5" y="166.5"/></SplitBlock><ExplicitOutputPort dataType="UNKNOW_TYPE" id="-5872192d:1324f245276:-79ea" ordering="1" parent="-5872192d:1324f245276:-79eb" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="-5872192d:1324f245276:-79e9" ordering="2" parent="-5872192d:1324f245276:-79eb" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitInputPort dataType="UNKNOW_TYPE" id="-5872192d:1324f245276:-79e8" ordering="1" parent="-5872192d:1324f245276:-79eb" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ExplicitInputPort><ExplicitLink id="-5872192d:1324f245276:-79e7" parent="-5872192d:1324f245276:-7b3d" source="-5872192d:1324f245276:-7a3e" target="-5872192d:1324f245276:-79e8"><mxGeometry as="geometry" height="80.0" width="80.0" x="10.0" y="10.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="270.0" y="150.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="-5872192d:1324f245276:-79e6" parent="-5872192d:1324f245276:-7b3d" source="-5872192d:1324f245276:-79ea" target="-5872192d:1324f245276:-7a02"><mxGeometry as="geometry" height="80.0" width="80.0" x="10.0" y="10.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="270.0" y="190.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="-5872192d:1324f245276:-79e5" parent="-5872192d:1324f245276:-7b3d" source="-5872192d:1324f245276:-79e9" target="-5872192d:1324f245276:-79f8"><mxGeometry as="geometry" x="10.0" y="10.0"><mxPoint as="sourcePoint" x="626.0" y="80.0"/><mxPoint as="targetPoint" x="270.0" y="170.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="280.0" y="170.0"/><mxPoint x="280.0" y="80.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="-5872192d:1324f245276:-79e4" parent="-5872192d:1324f245276:-7b3d" source="-5872192d:1324f245276:-79f6" target="-5872192d:1324f245276:-79bf"><mxGeometry as="geometry" x="10.0" y="10.0"><mxPoint as="sourcePoint" x="674.0" y="90.0"/><mxPoint as="targetPoint" x="690.0" y="90.0"/></mxGeometry></ExplicitLink><CommandControlLink id="-5872192d:1324f245276:-79e3" parent="-5872192d:1324f245276:-7b3d" source="-5872192d:1324f245276:-79fa" target="-5872192d:1324f245276:-79be"><mxGeometry as="geometry" x="10.0" y="10.0"><mxPoint as="sourcePoint" x="720.0" y="54.0"/><mxPoint as="targetPoint" x="720.0" y="70.0"/></mxGeometry></CommandControlLink><BasicBlock angle="90" id="-5872192d:1324f245276:-79e2" interfaceFunctionName="ConstantVoltage" ordering="24" parent="-5872192d:1324f245276:-7b3d" simulationFunctionName="ConstantVoltage" simulationFunctionType="DEFAULT" style="ConstantVoltage;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="6"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ConstantVoltage"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="V"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="20.0" y="200.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-79de" ordering="1" parent="-5872192d:1324f245276:-79e2" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;spacingTop=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5872192d:1324f245276:-79dd" ordering="1" parent="-5872192d:1324f245276:-79e2" style="ImplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;spacingBottom=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort></root></mxGraphModel><mxCell as="defaultParent" id="-5872192d:1324f245276:-7b3d" parent="-5872192d:1324f245276:-7b3c"/></XcosDiagram>
\ No newline at end of file diff --git a/Working_Examples/215/CH6/EX6.8/Figure6_8.jpg b/Working_Examples/215/CH6/EX6.8/Figure6_8.jpg Binary files differnew file mode 100755 index 0000000..41d7770 --- /dev/null +++ b/Working_Examples/215/CH6/EX6.8/Figure6_8.jpg diff --git a/Working_Examples/215/CH6/EX6.8/Figure6_8_xcos.jpg b/Working_Examples/215/CH6/EX6.8/Figure6_8_xcos.jpg Binary files differnew file mode 100755 index 0000000..81672f9 --- /dev/null +++ b/Working_Examples/215/CH6/EX6.8/Figure6_8_xcos.jpg diff --git a/Working_Examples/215/CH6/EX6.8/ex6_8.xcos b/Working_Examples/215/CH6/EX6.8/ex6_8.xcos new file mode 100755 index 0000000..4317056 --- /dev/null +++ b/Working_Examples/215/CH6/EX6.8/ex6_8.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" finalIntegrationTime="30.0" title="ex6_8"><!--Xcos - 1.0 - scilab-5.5.2 - 20160406 2040--><mxGraphModel as="model"><root><mxCell id="-1ed2b2d8:132d4611bb5:-7f3a"/><mxCell id="-1ed2b2d8:132d4611bb5:-7f3b" parent="-1ed2b2d8:132d4611bb5:-7f3a"/><BasicBlock angle="90" id="-1ed2b2d8:132d4611bb5:-7f32" interfaceFunctionName="ConstantVoltage" ordering="1" parent="-1ed2b2d8:132d4611bb5:-7f3b" simulationFunctionName="ConstantVoltage" simulationFunctionType="DEFAULT" style="ConstantVoltage;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="12"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="12.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ConstantVoltage"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="V"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="12.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="30.0" y="162.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1ed2b2d8:132d4611bb5:-7edb" ordering="1" parent="-1ed2b2d8:132d4611bb5:-7f32" style="ImplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;spacingBottom=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1ed2b2d8:132d4611bb5:-7edc" ordering="1" parent="-1ed2b2d8:132d4611bb5:-7f32" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;spacingTop=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><GroundBlock angle="90" dependsOnU="1" id="-1ed2b2d8:132d4611bb5:-7f2a" interfaceFunctionName="Ground" ordering="2" parent="-1ed2b2d8:132d4611bb5:-7f3b" simulationFunctionName="Ground" simulationFunctionType="DEFAULT" style="Ground;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Ground"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="190.0" y="272.0"/></GroundBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1ed2b2d8:132d4611bb5:-7f29" ordering="1" parent="-1ed2b2d8:132d4611bb5:-7f2a" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=90;spacingTop=5;flip=false;mirror=false"><Orientation as="orientation" value="NORTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="-1ed2b2d8:132d4611bb5:-7f21" interfaceFunctionName="Resistor" ordering="3" parent="-1ed2b2d8:132d4611bb5:-7f3b" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="5"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="160.0" y="90.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1ed2b2d8:132d4611bb5:-7ed7" ordering="1" parent="-1ed2b2d8:132d4611bb5:-7f21" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1ed2b2d8:132d4611bb5:-7ed8" ordering="1" parent="-1ed2b2d8:132d4611bb5:-7f21" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><BasicBlock dependsOnT="1" id="-1ed2b2d8:132d4611bb5:-7f15" interfaceFunctionName="CVS" ordering="4" parent="-1ed2b2d8:132d4611bb5:-7f3b" simulationFunctionName="CVS" simulationFunctionType="DEFAULT" style="CVS;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CVS"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="vin"/><data column="0" line="1" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="250.0" y="82.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1ed2b2d8:132d4611bb5:-7f14" ordering="1" parent="-1ed2b2d8:132d4611bb5:-7f15" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1ed2b2d8:132d4611bb5:-7f13" ordering="1" parent="-1ed2b2d8:132d4611bb5:-7f15" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ExplicitInputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1ed2b2d8:132d4611bb5:-7f12" ordering="2" parent="-1ed2b2d8:132d4611bb5:-7f15" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="26.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="-1ed2b2d8:132d4611bb5:-7f0e" interfaceFunctionName="Resistor" ordering="5" parent="-1ed2b2d8:132d4611bb5:-7f3b" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="5"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="360.0" y="80.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1ed2b2d8:132d4611bb5:-7ed3" ordering="1" parent="-1ed2b2d8:132d4611bb5:-7f0e" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1ed2b2d8:132d4611bb5:-7ed4" ordering="1" parent="-1ed2b2d8:132d4611bb5:-7f0e" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="-1ed2b2d8:132d4611bb5:-7efc" interfaceFunctionName="CurrentSensor" ordering="6" parent="-1ed2b2d8:132d4611bb5:-7f3b" simulationFunctionName="CurrentSensor" simulationFunctionType="DEFAULT" style="CurrentSensor;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CurrentSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="i"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="80.0" y="102.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1ed2b2d8:132d4611bb5:-7efb" ordering="1" parent="-1ed2b2d8:132d4611bb5:-7efc" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="6.0"/></ImplicitOutputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1ed2b2d8:132d4611bb5:-7efa" ordering="2" parent="-1ed2b2d8:132d4611bb5:-7efc" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="26.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1ed2b2d8:132d4611bb5:-7ef9" ordering="1" parent="-1ed2b2d8:132d4611bb5:-7efc" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitLink id="-1ed2b2d8:132d4611bb5:-7ef8" parent="-1ed2b2d8:132d4611bb5:-7f3b" source="-1ed2b2d8:132d4611bb5:-7edc" target="-1ed2b2d8:132d4611bb5:-7ef9"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="50.0" y="178.0"/><mxPoint as="targetPoint" x="80.0" y="120.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="50.0" y="120.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-1ed2b2d8:132d4611bb5:-7ef7" parent="-1ed2b2d8:132d4611bb5:-7f3b" source="-1ed2b2d8:132d4611bb5:-7efb" target="-1ed2b2d8:132d4611bb5:-7ed8"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="124.0" y="112.0"/><mxPoint as="targetPoint" x="160.0" y="110.0"/></mxGeometry></ImplicitLink><ImplicitLink id="-1ed2b2d8:132d4611bb5:-7ef6" parent="-1ed2b2d8:132d4611bb5:-7f3b" source="-1ed2b2d8:132d4611bb5:-7ed7" target="-1ed2b2d8:132d4611bb5:-7f12"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="204.0" y="110.0"/><mxPoint as="targetPoint" x="250.0" y="110.0"/></mxGeometry></ImplicitLink><ImplicitLink id="-1ed2b2d8:132d4611bb5:-7ef5" parent="-1ed2b2d8:132d4611bb5:-7f3b" source="-1ed2b2d8:132d4611bb5:-7f14" target="-1ed2b2d8:132d4611bb5:-7ed4"><mxGeometry as="geometry" x="-58.0" y="-30.0"><mxPoint as="sourcePoint" x="236.0" y="72.0"/><mxPoint as="targetPoint" x="292.0" y="70.0"/></mxGeometry></ImplicitLink><SplitBlock id="-1ed2b2d8:132d4611bb5:-7ef2" ordering="7" parent="-1ed2b2d8:132d4611bb5:-7f3b" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="206.5" y="236.5"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="-1ed2b2d8:132d4611bb5:-7ef1" ordering="1" parent="-1ed2b2d8:132d4611bb5:-7ef2" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-1ed2b2d8:132d4611bb5:-7ef0" ordering="1" parent="-1ed2b2d8:132d4611bb5:-7ef2" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-1ed2b2d8:132d4611bb5:-7eef" ordering="2" parent="-1ed2b2d8:132d4611bb5:-7ef2" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="-1ed2b2d8:132d4611bb5:-7eee" parent="-1ed2b2d8:132d4611bb5:-7f3b" source="-1ed2b2d8:132d4611bb5:-7edb" target="-1ed2b2d8:132d4611bb5:-7ef1"><mxGeometry as="geometry" height="80.0" width="80.0" y="-10.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="50.0" y="240.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-1ed2b2d8:132d4611bb5:-7eed" parent="-1ed2b2d8:132d4611bb5:-7f3b" source="-1ed2b2d8:132d4611bb5:-7ed3" target="-1ed2b2d8:132d4611bb5:-7ef0"><mxGeometry as="geometry" height="80.0" width="80.0" y="-10.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="410.0" y="100.0"/><mxPoint x="410.0" y="240.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-1ed2b2d8:132d4611bb5:-7ef3" parent="-1ed2b2d8:132d4611bb5:-7f3b" source="-1ed2b2d8:132d4611bb5:-7eef" target="-1ed2b2d8:132d4611bb5:-7f29"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="210.0" y="308.0"/><mxPoint as="targetPoint" x="210.0" y="250.0"/></mxGeometry></ImplicitLink><BasicBlock dependsOnU="1" id="-1ed2b2d8:132d4611bb5:-7ee5" interfaceFunctionName="GAINBLK_f" ordering="8" parent="-1ed2b2d8:132d4611bb5:-7f3b" simulationFunctionName="gain" simulationFunctionType="DEFAULT" style="GAINBLK_f;flip=false;mirror=false" value="10"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="10"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="10.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="50.0" width="40.0" x="160.0" y="170.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1ed2b2d8:132d4611bb5:-7ecf" ordering="1" parent="-1ed2b2d8:132d4611bb5:-7ee5" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1ed2b2d8:132d4611bb5:-7ed0" ordering="1" parent="-1ed2b2d8:132d4611bb5:-7ee5" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitLink id="-1ed2b2d8:132d4611bb5:-7eb4" parent="-1ed2b2d8:132d4611bb5:-7f3b" source="-1ed2b2d8:132d4611bb5:-7ecf" target="-1ed2b2d8:132d4611bb5:-7f13"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="220.0" y="190.0"/><mxPoint x="220.0" y="170.0"/><mxPoint x="220.0" y="90.0"/></Array></mxGeometry></ExplicitLink><BasicBlock dependsOnU="1" id="-1ed2b2d8:132d4611bb5:-7e78" interfaceFunctionName="Resistor" ordering="9" parent="-1ed2b2d8:132d4611bb5:-7f3b" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="5"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="550.0" y="50.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1ed2b2d8:132d4611bb5:-7e77" ordering="1" parent="-1ed2b2d8:132d4611bb5:-7e78" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1ed2b2d8:132d4611bb5:-7e76" ordering="1" parent="-1ed2b2d8:132d4611bb5:-7e78" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><BasicBlock dependsOnT="1" id="-1ed2b2d8:132d4611bb5:-7e75" interfaceFunctionName="CVS" ordering="10" parent="-1ed2b2d8:132d4611bb5:-7f3b" simulationFunctionName="CVS" simulationFunctionType="DEFAULT" style="CVS;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CVS"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="vin"/><data column="0" line="1" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="640.0" y="42.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1ed2b2d8:132d4611bb5:-7e74" ordering="1" parent="-1ed2b2d8:132d4611bb5:-7e75" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1ed2b2d8:132d4611bb5:-7e73" ordering="1" parent="-1ed2b2d8:132d4611bb5:-7e75" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ExplicitInputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1ed2b2d8:132d4611bb5:-7e72" ordering="2" parent="-1ed2b2d8:132d4611bb5:-7e75" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="26.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="-1ed2b2d8:132d4611bb5:-7e71" interfaceFunctionName="Resistor" ordering="11" parent="-1ed2b2d8:132d4611bb5:-7f3b" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="5"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="750.0" y="40.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1ed2b2d8:132d4611bb5:-7e70" ordering="1" parent="-1ed2b2d8:132d4611bb5:-7e71" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1ed2b2d8:132d4611bb5:-7e6f" ordering="1" parent="-1ed2b2d8:132d4611bb5:-7e71" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="-1ed2b2d8:132d4611bb5:-7e6e" interfaceFunctionName="CurrentSensor" ordering="12" parent="-1ed2b2d8:132d4611bb5:-7f3b" simulationFunctionName="CurrentSensor" simulationFunctionType="DEFAULT" style="CurrentSensor;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CurrentSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="i"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="470.0" y="62.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1ed2b2d8:132d4611bb5:-7e6d" ordering="1" parent="-1ed2b2d8:132d4611bb5:-7e6e" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="6.0"/></ImplicitOutputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1ed2b2d8:132d4611bb5:-7e6c" ordering="2" parent="-1ed2b2d8:132d4611bb5:-7e6e" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="26.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1ed2b2d8:132d4611bb5:-7e6b" ordering="1" parent="-1ed2b2d8:132d4611bb5:-7e6e" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitLink id="-1ed2b2d8:132d4611bb5:-7e69" parent="-1ed2b2d8:132d4611bb5:-7f3b" source="-1ed2b2d8:132d4611bb5:-7e6d" target="-1ed2b2d8:132d4611bb5:-7e76"><mxGeometry as="geometry" x="390.0" y="-40.0"><mxPoint as="sourcePoint" x="514.0" y="72.0"/><mxPoint as="targetPoint" x="550.0" y="70.0"/></mxGeometry></ImplicitLink><ImplicitLink id="-1ed2b2d8:132d4611bb5:-7e68" parent="-1ed2b2d8:132d4611bb5:-7f3b" source="-1ed2b2d8:132d4611bb5:-7e77" target="-1ed2b2d8:132d4611bb5:-7e72"><mxGeometry as="geometry" x="390.0" y="-40.0"><mxPoint as="sourcePoint" x="594.0" y="70.0"/><mxPoint as="targetPoint" x="640.0" y="70.0"/></mxGeometry></ImplicitLink><ImplicitLink id="-1ed2b2d8:132d4611bb5:-7e67" parent="-1ed2b2d8:132d4611bb5:-7f3b" source="-1ed2b2d8:132d4611bb5:-7e74" target="-1ed2b2d8:132d4611bb5:-7e6f"><mxGeometry as="geometry" x="390.0" y="-40.0"><mxPoint as="sourcePoint" x="684.0" y="62.0"/><mxPoint as="targetPoint" x="740.0" y="60.0"/></mxGeometry></ImplicitLink><BasicBlock dependsOnU="1" id="-1ed2b2d8:132d4611bb5:-7e5f" interfaceFunctionName="GAINBLK_f" ordering="13" parent="-1ed2b2d8:132d4611bb5:-7f3b" simulationFunctionName="gain" simulationFunctionType="DEFAULT" style="GAINBLK_f;flip=false;mirror=false" value="10"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="10"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="10.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="50.0" width="40.0" x="550.0" y="130.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1ed2b2d8:132d4611bb5:-7e5e" ordering="1" parent="-1ed2b2d8:132d4611bb5:-7e5f" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1ed2b2d8:132d4611bb5:-7e5d" ordering="1" parent="-1ed2b2d8:132d4611bb5:-7e5f" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><BasicBlock dependsOnU="1" id="-1ed2b2d8:132d4611bb5:-7e5c" interfaceFunctionName="CSCOPE" ordering="14" parent="-1ed2b2d8:132d4611bb5:-7f3b" simulationFunctionName="cscope" simulationFunctionType="C_OR_FORTRAN" style="CSCOPE;flip=false;mirror=false"><ScilabString as="exprs" height="10" width="1"><data column="0" line="0" value="1 3 5 7 9 11 13 15"/><data column="0" line="1" value="-1"/><data column="0" line="2" value="[]"/><data column="0" line="3" value="[600;400]"/><data column="0" line="4" value="-3"/><data column="0" line="5" value="-2.8"/><data column="0" line="6" value="30"/><data column="0" line="7" value="20"/><data column="0" line="8" value="0"/><data column="0" line="9" value=""/></ScilabString><ScilabDouble as="realParameters" height="4" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="-3.0"/><data column="0" line="2" realPart="-2.8"/><data column="0" line="3" realPart="30.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="15" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="1.0"/><data column="0" line="4" realPart="3.0"/><data column="0" line="5" realPart="5.0"/><data column="0" line="6" realPart="7.0"/><data column="0" line="7" realPart="9.0"/><data column="0" line="8" realPart="11.0"/><data column="0" line="9" realPart="13.0"/><data column="0" line="10" realPart="15.0"/><data column="0" line="11" realPart="-1.0"/><data column="0" line="12" realPart="-1.0"/><data column="0" line="13" realPart="600.0"/><data column="0" line="14" realPart="400.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="860.0" y="320.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="-1ed2b2d8:132d4611bb5:-7cc9" ordering="1" parent="-1ed2b2d8:132d4611bb5:-7e5c" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ControlPort dataType="UNKNOW_TYPE" id="-1ed2b2d8:132d4611bb5:-7cc8" ordering="1" parent="-1ed2b2d8:132d4611bb5:-7e5c" style="ControlPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=90;spacingTop=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><BasicBlock blockType="h" id="-1ed2b2d8:132d4611bb5:-7e59" interfaceFunctionName="CLOCK_c" ordering="15" parent="-1ed2b2d8:132d4611bb5:-7f3b" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="99.0"/><data column="1" line="0" realPart="-160.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-73e75f0:167968eb73f:-799c"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-73e75f0:167968eb73f:-799c"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-70.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.1"/><data column="0" line="1" value="0.1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.1"/><data column="0" line="1" realPart="0.1"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.1"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-73e75f0:167968eb73f:-799a"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-73e75f0:167968eb73f:-799a"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="90.3773266666667"/><data column="1" line="0" realPart="-166.33333333333331"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="7.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="5.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-73e75f0:167968eb73f:-7997"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-73e75f0:167968eb73f:-7997"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="60.0"/><data column="0" line="2" realPart="97.54399333333338"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-74.0"/><data column="0" line="1" realPart="-170.0"/><data column="0" line="2" realPart="-155.33333333333331"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="97.48843777777782"/><data column="0" line="1" realPart="129.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-163.66666666666666"/><data column="0" line="1" realPart="-136.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="97.59954888888893"/><data column="0" line="1" realPart="100.70999999999998"/><data column="0" line="2" realPart="60.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-163.66666666666666"/><data column="0" line="1" realPart="-40.0"/><data column="0" line="2" realPart="-40.0"/><data column="0" line="3" realPart="-26.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="860.0" y="250.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="-1ed2b2d8:132d4611bb5:-7e58" ordering="1" parent="-1ed2b2d8:132d4611bb5:-7e59" style="CommandPort;align=center;labelPosition=center;verticalLabelPosition=top;rotation=90;spacingBottom=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><CommandControlLink id="-1ed2b2d8:132d4611bb5:-7e57" parent="-1ed2b2d8:132d4611bb5:-7f3b" source="-1ed2b2d8:132d4611bb5:-7e58" target="-1ed2b2d8:132d4611bb5:-7cc8"><mxGeometry as="geometry" x="560.0" y="148.0"><mxPoint as="sourcePoint" x="880.0" y="294.0"/><mxPoint as="targetPoint" x="880.0" y="318.0"/></mxGeometry></CommandControlLink><ExplicitLink id="-1ed2b2d8:132d4611bb5:-7e56" parent="-1ed2b2d8:132d4611bb5:-7f3b" source="-1ed2b2d8:132d4611bb5:-7e5e" target="-1ed2b2d8:132d4611bb5:-7e73"><mxGeometry as="geometry" height="80.0" width="80.0" x="390.0" y="-40.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="610.0" y="150.0"/><mxPoint x="610.0" y="130.0"/><mxPoint x="610.0" y="50.0"/></Array></mxGeometry></ExplicitLink><BasicBlock angle="90" id="-1ed2b2d8:132d4611bb5:-7e7d" interfaceFunctionName="ConstantVoltage" ordering="16" parent="-1ed2b2d8:132d4611bb5:-7f3b" simulationFunctionName="ConstantVoltage" simulationFunctionType="DEFAULT" style="ConstantVoltage;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="20"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="20.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ConstantVoltage"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="V"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="20.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="840.0" y="110.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1ed2b2d8:132d4611bb5:-7e1d" ordering="1" parent="-1ed2b2d8:132d4611bb5:-7e7d" style="ImplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=top;spacingBottom=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1ed2b2d8:132d4611bb5:-7e1e" ordering="1" parent="-1ed2b2d8:132d4611bb5:-7e7d" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;spacingTop=5;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitLink id="-1ed2b2d8:132d4611bb5:-7e17" parent="-1ed2b2d8:132d4611bb5:-7f3b" source="-1ed2b2d8:132d4611bb5:-7e70" target="-1ed2b2d8:132d4611bb5:-7e1e"><mxGeometry as="geometry" x="-50.0" y="-30.0"><mxPoint as="sourcePoint" x="860.0" y="106.0"/><mxPoint as="targetPoint" x="790.0" y="60.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="860.0" y="60.0"/></Array></mxGeometry></ImplicitLink><GroundBlock angle="90" dependsOnU="1" id="-1ed2b2d8:132d4611bb5:-7e13" interfaceFunctionName="Ground" ordering="17" parent="-1ed2b2d8:132d4611bb5:-7f3b" simulationFunctionName="Ground" simulationFunctionType="DEFAULT" style="Ground;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Ground"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="650.0" y="270.0"/></GroundBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1ed2b2d8:132d4611bb5:-7e12" ordering="1" parent="-1ed2b2d8:132d4611bb5:-7e13" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=90;spacingTop=5;flip=false;mirror=false"><Orientation as="orientation" value="NORTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><SplitBlock id="-1ed2b2d8:132d4611bb5:-7e0e" ordering="18" parent="-1ed2b2d8:132d4611bb5:-7f3b" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="666.5" y="226.5"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="-1ed2b2d8:132d4611bb5:-7e0d" ordering="1" parent="-1ed2b2d8:132d4611bb5:-7e0e" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-1ed2b2d8:132d4611bb5:-7e0c" ordering="1" parent="-1ed2b2d8:132d4611bb5:-7e0e" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-1ed2b2d8:132d4611bb5:-7e0b" ordering="2" parent="-1ed2b2d8:132d4611bb5:-7e0e" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="-1ed2b2d8:132d4611bb5:-7e0a" parent="-1ed2b2d8:132d4611bb5:-7f3b" source="-1ed2b2d8:132d4611bb5:-7e1d" target="-1ed2b2d8:132d4611bb5:-7e0d"><mxGeometry as="geometry" height="80.0" width="80.0" x="-50.0" y="-30.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="860.0" y="230.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-1ed2b2d8:132d4611bb5:-7e09" parent="-1ed2b2d8:132d4611bb5:-7f3b" source="-1ed2b2d8:132d4611bb5:-7e0c" target="-1ed2b2d8:132d4611bb5:-7e6b"><mxGeometry as="geometry" height="80.0" width="80.0" x="-50.0" y="-30.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="450.0" y="230.0"/><mxPoint x="450.0" y="80.0"/><mxPoint x="470.0" y="80.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-1ed2b2d8:132d4611bb5:-7e0f" parent="-1ed2b2d8:132d4611bb5:-7f3b" source="-1ed2b2d8:132d4611bb5:-7e0b" target="-1ed2b2d8:132d4611bb5:-7e12"><mxGeometry as="geometry" x="-50.0" y="-30.0"><mxPoint as="sourcePoint" x="670.0" y="266.0"/><mxPoint as="targetPoint" x="670.0" y="230.0"/></mxGeometry></ImplicitLink><BasicBlock dependsOnU="1" id="-1ed2b2d8:132d4611bb5:-7dd9" interfaceFunctionName="Resistor" ordering="19" parent="-1ed2b2d8:132d4611bb5:-7f3b" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="5"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="330.0" y="370.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1ed2b2d8:132d4611bb5:-7dd8" ordering="1" parent="-1ed2b2d8:132d4611bb5:-7dd9" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1ed2b2d8:132d4611bb5:-7dd7" ordering="1" parent="-1ed2b2d8:132d4611bb5:-7dd9" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><BasicBlock dependsOnT="1" id="-1ed2b2d8:132d4611bb5:-7dd6" interfaceFunctionName="CVS" ordering="20" parent="-1ed2b2d8:132d4611bb5:-7f3b" simulationFunctionName="CVS" simulationFunctionType="DEFAULT" style="CVS;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CVS"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="vin"/><data column="0" line="1" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="420.0" y="362.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1ed2b2d8:132d4611bb5:-7dd5" ordering="1" parent="-1ed2b2d8:132d4611bb5:-7dd6" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1ed2b2d8:132d4611bb5:-7dd4" ordering="1" parent="-1ed2b2d8:132d4611bb5:-7dd6" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ExplicitInputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1ed2b2d8:132d4611bb5:-7dd3" ordering="2" parent="-1ed2b2d8:132d4611bb5:-7dd6" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="26.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="-1ed2b2d8:132d4611bb5:-7dd2" interfaceFunctionName="Resistor" ordering="21" parent="-1ed2b2d8:132d4611bb5:-7f3b" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="5"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="530.0" y="360.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1ed2b2d8:132d4611bb5:-7dd1" ordering="1" parent="-1ed2b2d8:132d4611bb5:-7dd2" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1ed2b2d8:132d4611bb5:-7dd0" ordering="1" parent="-1ed2b2d8:132d4611bb5:-7dd2" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="-1ed2b2d8:132d4611bb5:-7dcf" interfaceFunctionName="CurrentSensor" ordering="22" parent="-1ed2b2d8:132d4611bb5:-7f3b" simulationFunctionName="CurrentSensor" simulationFunctionType="DEFAULT" style="CurrentSensor;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CurrentSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="i"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="250.0" y="382.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1ed2b2d8:132d4611bb5:-7dce" ordering="1" parent="-1ed2b2d8:132d4611bb5:-7dcf" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="6.0"/></ImplicitOutputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1ed2b2d8:132d4611bb5:-7dcd" ordering="2" parent="-1ed2b2d8:132d4611bb5:-7dcf" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="26.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1ed2b2d8:132d4611bb5:-7dcc" ordering="1" parent="-1ed2b2d8:132d4611bb5:-7dcf" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitLink id="-1ed2b2d8:132d4611bb5:-7dcb" parent="-1ed2b2d8:132d4611bb5:-7f3b" source="-1ed2b2d8:132d4611bb5:-7dce" target="-1ed2b2d8:132d4611bb5:-7dd7"><mxGeometry as="geometry" x="170.0" y="280.0"><mxPoint as="sourcePoint" x="294.0" y="392.0"/><mxPoint as="targetPoint" x="330.0" y="390.0"/></mxGeometry></ImplicitLink><ImplicitLink id="-1ed2b2d8:132d4611bb5:-7dc9" parent="-1ed2b2d8:132d4611bb5:-7f3b" source="-1ed2b2d8:132d4611bb5:-7dd5" target="-1ed2b2d8:132d4611bb5:-7dd0"><mxGeometry as="geometry" x="170.0" y="280.0"><mxPoint as="sourcePoint" x="464.0" y="382.0"/><mxPoint as="targetPoint" x="520.0" y="380.0"/></mxGeometry></ImplicitLink><BasicBlock dependsOnU="1" id="-1ed2b2d8:132d4611bb5:-7dc8" interfaceFunctionName="GAINBLK_f" ordering="23" parent="-1ed2b2d8:132d4611bb5:-7f3b" simulationFunctionName="gain" simulationFunctionType="DEFAULT" style="GAINBLK_f;flip=false;mirror=false" value="10"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="10"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="10.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="50.0" width="40.0" x="320.0" y="310.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1ed2b2d8:132d4611bb5:-7dc7" ordering="1" parent="-1ed2b2d8:132d4611bb5:-7dc8" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1ed2b2d8:132d4611bb5:-7dc6" ordering="1" parent="-1ed2b2d8:132d4611bb5:-7dc8" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitLink id="-1ed2b2d8:132d4611bb5:-7dbf" parent="-1ed2b2d8:132d4611bb5:-7f3b" source="-1ed2b2d8:132d4611bb5:-7dc7" target="-1ed2b2d8:132d4611bb5:-7dd4"><mxGeometry as="geometry" height="80.0" width="80.0" x="160.0" y="240.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="380.0" y="330.0"/><mxPoint x="380.0" y="330.0"/><mxPoint x="410.0" y="330.0"/></Array></mxGeometry></ExplicitLink><GroundBlock angle="90" dependsOnU="1" id="-1ed2b2d8:132d4611bb5:-7db3" interfaceFunctionName="Ground" ordering="24" parent="-1ed2b2d8:132d4611bb5:-7f3b" simulationFunctionName="Ground" simulationFunctionType="DEFAULT" style="Ground;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Ground"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="380.0" y="580.0"/></GroundBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1ed2b2d8:132d4611bb5:-7db2" ordering="1" parent="-1ed2b2d8:132d4611bb5:-7db3" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=90;spacingTop=5;flip=false;mirror=false"><Orientation as="orientation" value="NORTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock blockType="d" id="-1ed2b2d8:132d4611bb5:-7d75" interfaceFunctionName="CONST_m" ordering="25" parent="-1ed2b2d8:132d4611bb5:-7f3b" simulationFunctionName="cstblk4" simulationFunctionType="C_OR_FORTRAN" style="CONST_m;flip=false;mirror=false" value="10"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="10"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="10.0"/></ScilabDouble></Array><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="50.0" width="40.0" x="310.0" y="490.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1ed2b2d8:132d4611bb5:-7d1f" ordering="1" parent="-1ed2b2d8:132d4611bb5:-7d75" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><BasicBlock angle="270" dependsOnT="1" id="-1ed2b2d8:132d4611bb5:-7d6a" interfaceFunctionName="CCS" ordering="26" parent="-1ed2b2d8:132d4611bb5:-7f3b" simulationFunctionName="CCS" simulationFunctionType="DEFAULT" style="CCS;rotation=270;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CCS"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="Iin"/><data column="0" line="1" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="370.0" y="450.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1ed2b2d8:132d4611bb5:-7d69" ordering="1" parent="-1ed2b2d8:132d4611bb5:-7d6a" style="ImplicitOutputPort;align=center;labelPosition=center;verticalLabelPosition=bottom;rotation=270;spacingTop=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitOutputPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1ed2b2d8:132d4611bb5:-7d68" ordering="1" parent="-1ed2b2d8:132d4611bb5:-7d6a" style="ExplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=top;rotation=270;spacingBottom=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="6.0" y="40.0"/></ExplicitInputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1ed2b2d8:132d4611bb5:-7d67" ordering="2" parent="-1ed2b2d8:132d4611bb5:-7d6a" style="ImplicitInputPort;align=center;labelPosition=center;verticalLabelPosition=top;rotation=270;spacingBottom=5;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="26.0" y="40.0"/></ImplicitInputPort><SplitBlock id="-1ed2b2d8:132d4611bb5:-7d51" ordering="27" parent="-1ed2b2d8:132d4611bb5:-7f3b" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="387.0" y="387.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="-1ed2b2d8:132d4611bb5:-7d50" ordering="1" parent="-1ed2b2d8:132d4611bb5:-7d51" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-1ed2b2d8:132d4611bb5:-7d4f" ordering="1" parent="-1ed2b2d8:132d4611bb5:-7d51" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-1ed2b2d8:132d4611bb5:-7d4e" ordering="2" parent="-1ed2b2d8:132d4611bb5:-7d51" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="-1ed2b2d8:132d4611bb5:-7d4d" parent="-1ed2b2d8:132d4611bb5:-7f3b" source="-1ed2b2d8:132d4611bb5:-7dd8" target="-1ed2b2d8:132d4611bb5:-7d50"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-1ed2b2d8:132d4611bb5:-7d4c" parent="-1ed2b2d8:132d4611bb5:-7f3b" source="-1ed2b2d8:132d4611bb5:-7d4f" target="-1ed2b2d8:132d4611bb5:-7dd3"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-1ed2b2d8:132d4611bb5:-7d52" parent="-1ed2b2d8:132d4611bb5:-7f3b" source="-1ed2b2d8:132d4611bb5:-7d69" target="-1ed2b2d8:132d4611bb5:-7d4e"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="390.0" y="446.0"/><mxPoint as="targetPoint" x="390.0" y="390.0"/></mxGeometry></ImplicitLink><ExplicitLink id="-1ed2b2d8:132d4611bb5:-7d46" parent="-1ed2b2d8:132d4611bb5:-7f3b" source="-1ed2b2d8:132d4611bb5:-7d1f" target="-1ed2b2d8:132d4611bb5:-7d68"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="354.0" y="510.0"/><mxPoint as="targetPoint" x="380.0" y="500.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="380.0" y="510.0"/></Array></mxGeometry></ExplicitLink><SplitBlock id="-1ed2b2d8:132d4611bb5:-7d44" ordering="28" parent="-1ed2b2d8:132d4611bb5:-7f3b" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="397.0" y="547.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="-1ed2b2d8:132d4611bb5:-7d43" ordering="1" parent="-1ed2b2d8:132d4611bb5:-7d44" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-1ed2b2d8:132d4611bb5:-7d42" ordering="1" parent="-1ed2b2d8:132d4611bb5:-7d44" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-1ed2b2d8:132d4611bb5:-7d41" ordering="2" parent="-1ed2b2d8:132d4611bb5:-7d44" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="-1ed2b2d8:132d4611bb5:-7d40" parent="-1ed2b2d8:132d4611bb5:-7f3b" source="-1ed2b2d8:132d4611bb5:-7dd1" target="-1ed2b2d8:132d4611bb5:-7d43"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="610.0" y="380.0"/><mxPoint x="610.0" y="550.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-1ed2b2d8:132d4611bb5:-7d3f" parent="-1ed2b2d8:132d4611bb5:-7f3b" source="-1ed2b2d8:132d4611bb5:-7d42" target="-1ed2b2d8:132d4611bb5:-7dcc"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="210.0" y="550.0"/><mxPoint x="210.0" y="400.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="-1ed2b2d8:132d4611bb5:-7d3b" ordering="29" parent="-1ed2b2d8:132d4611bb5:-7f3b" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="397.0" y="547.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="-1ed2b2d8:132d4611bb5:-7d3a" ordering="1" parent="-1ed2b2d8:132d4611bb5:-7d3b" style="ImplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-1ed2b2d8:132d4611bb5:-7d39" ordering="1" parent="-1ed2b2d8:132d4611bb5:-7d3b" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-1ed2b2d8:132d4611bb5:-7d38" ordering="2" parent="-1ed2b2d8:132d4611bb5:-7d3b" style="ImplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="-1ed2b2d8:132d4611bb5:-7d37" parent="-1ed2b2d8:132d4611bb5:-7f3b" source="-1ed2b2d8:132d4611bb5:-7d41" target="-1ed2b2d8:132d4611bb5:-7d3a"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-1ed2b2d8:132d4611bb5:-7d36" parent="-1ed2b2d8:132d4611bb5:-7f3b" source="-1ed2b2d8:132d4611bb5:-7d39" target="-1ed2b2d8:132d4611bb5:-7d67"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-1ed2b2d8:132d4611bb5:-7d3c" parent="-1ed2b2d8:132d4611bb5:-7f3b" source="-1ed2b2d8:132d4611bb5:-7d38" target="-1ed2b2d8:132d4611bb5:-7db2"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="400.0" y="576.0"/><mxPoint as="targetPoint" x="400.0" y="550.0"/></mxGeometry></ImplicitLink><BigSom dependsOnU="1" id="-1ed2b2d8:132d4611bb5:-7d14" interfaceFunctionName="BIGSOM_f" ordering="30" parent="-1ed2b2d8:132d4611bb5:-7f3b" simulationFunctionName="sum" simulationFunctionType="TYPE_2" style="BIGSOM_f;flip=false;mirror=false" value="+"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="[1;1;1]"/></ScilabString><ScilabDouble as="realParameters" height="3" width="1"><data column="0" line="0" realPart="1.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="1.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="780.0" y="320.0"/></BigSom><ExplicitOutputPort dataColumns="1" dataType="REAL_MATRIX" id="-1ed2b2d8:132d4611bb5:-7d0c" ordering="1" parent="-1ed2b2d8:132d4611bb5:-7d14" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="-1ed2b2d8:132d4611bb5:-7d0f" ordering="1" parent="-1ed2b2d8:132d4611bb5:-7d14" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ExplicitInputPort><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="-1ed2b2d8:132d4611bb5:-7d0e" ordering="2" parent="-1ed2b2d8:132d4611bb5:-7d14" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="-1ed2b2d8:132d4611bb5:-7d0d" ordering="3" parent="-1ed2b2d8:132d4611bb5:-7d14" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="26.0"/></ExplicitInputPort><SplitBlock id="-1ed2b2d8:132d4611bb5:-7ce7" ordering="31" parent="-1ed2b2d8:132d4611bb5:-7f3b" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="137.0" y="187.0"/></SplitBlock><ExplicitInputPort dataType="UNKNOW_TYPE" id="-1ed2b2d8:132d4611bb5:-7ce6" ordering="1" parent="-1ed2b2d8:132d4611bb5:-7ce7" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ExplicitInputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="-1ed2b2d8:132d4611bb5:-7ce5" ordering="1" parent="-1ed2b2d8:132d4611bb5:-7ce7" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="-1ed2b2d8:132d4611bb5:-7ce4" ordering="2" parent="-1ed2b2d8:132d4611bb5:-7ce7" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitLink id="-1ed2b2d8:132d4611bb5:-7ce3" parent="-1ed2b2d8:132d4611bb5:-7f3b" source="-1ed2b2d8:132d4611bb5:-7efa" target="-1ed2b2d8:132d4611bb5:-7ce6"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="140.0" y="130.0"/><mxPoint x="140.0" y="150.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="-1ed2b2d8:132d4611bb5:-7ce2" parent="-1ed2b2d8:132d4611bb5:-7f3b" source="-1ed2b2d8:132d4611bb5:-7ce5" target="-1ed2b2d8:132d4611bb5:-7ed0"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="140.0" y="190.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="-1ed2b2d8:132d4611bb5:-7ce8" parent="-1ed2b2d8:132d4611bb5:-7f3b" source="-1ed2b2d8:132d4611bb5:-7ce4" target="-1ed2b2d8:132d4611bb5:-7d0f"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="906.0" y="330.0"/><mxPoint as="targetPoint" x="140.0" y="190.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="140.0" y="330.0"/></Array></mxGeometry></ExplicitLink><SplitBlock id="-1ed2b2d8:132d4611bb5:-7ce0" ordering="32" parent="-1ed2b2d8:132d4611bb5:-7f3b" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="527.0" y="147.0"/></SplitBlock><ExplicitInputPort dataType="UNKNOW_TYPE" id="-1ed2b2d8:132d4611bb5:-7cdf" ordering="1" parent="-1ed2b2d8:132d4611bb5:-7ce0" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ExplicitInputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="-1ed2b2d8:132d4611bb5:-7cde" ordering="1" parent="-1ed2b2d8:132d4611bb5:-7ce0" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="-1ed2b2d8:132d4611bb5:-7cdd" ordering="2" parent="-1ed2b2d8:132d4611bb5:-7ce0" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitLink id="-1ed2b2d8:132d4611bb5:-7cdc" parent="-1ed2b2d8:132d4611bb5:-7f3b" source="-1ed2b2d8:132d4611bb5:-7e6c" target="-1ed2b2d8:132d4611bb5:-7cdf"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="530.0" y="90.0"/><mxPoint x="530.0" y="110.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="-1ed2b2d8:132d4611bb5:-7cdb" parent="-1ed2b2d8:132d4611bb5:-7f3b" source="-1ed2b2d8:132d4611bb5:-7cde" target="-1ed2b2d8:132d4611bb5:-7e5d"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="530.0" y="150.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="-1ed2b2d8:132d4611bb5:-7ce1" parent="-1ed2b2d8:132d4611bb5:-7f3b" source="-1ed2b2d8:132d4611bb5:-7cdd" target="-1ed2b2d8:132d4611bb5:-7d0e"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="906.0" y="340.0"/><mxPoint as="targetPoint" x="530.0" y="150.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="530.0" y="340.0"/><mxPoint x="610.0" y="340.0"/></Array></mxGeometry></ExplicitLink><SplitBlock id="-1ed2b2d8:132d4611bb5:-7cd9" ordering="33" parent="-1ed2b2d8:132d4611bb5:-7f3b" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="307.0" y="347.0"/></SplitBlock><ExplicitInputPort dataType="UNKNOW_TYPE" id="-1ed2b2d8:132d4611bb5:-7cd8" ordering="1" parent="-1ed2b2d8:132d4611bb5:-7cd9" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ExplicitInputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="-1ed2b2d8:132d4611bb5:-7cd7" ordering="1" parent="-1ed2b2d8:132d4611bb5:-7cd9" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="-1ed2b2d8:132d4611bb5:-7cd6" ordering="2" parent="-1ed2b2d8:132d4611bb5:-7cd9" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitLink id="-1ed2b2d8:132d4611bb5:-7cd5" parent="-1ed2b2d8:132d4611bb5:-7f3b" source="-1ed2b2d8:132d4611bb5:-7dcd" target="-1ed2b2d8:132d4611bb5:-7cd8"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="310.0" y="410.0"/><mxPoint x="310.0" y="410.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="-1ed2b2d8:132d4611bb5:-7cd4" parent="-1ed2b2d8:132d4611bb5:-7f3b" source="-1ed2b2d8:132d4611bb5:-7cd7" target="-1ed2b2d8:132d4611bb5:-7dc6"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="310.0" y="340.0"/><mxPoint x="310.0" y="340.0"/><mxPoint x="310.0" y="330.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="-1ed2b2d8:132d4611bb5:-7cda" parent="-1ed2b2d8:132d4611bb5:-7f3b" source="-1ed2b2d8:132d4611bb5:-7cd6" target="-1ed2b2d8:132d4611bb5:-7d0d"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="906.0" y="350.0"/><mxPoint as="targetPoint" x="310.0" y="350.0"/></mxGeometry></ExplicitLink><ExplicitLink id="-1ed2b2d8:132d4611bb5:-7ccb" parent="-1ed2b2d8:132d4611bb5:-7f3b" source="-1ed2b2d8:132d4611bb5:-7d0c" target="-1ed2b2d8:132d4611bb5:-7cc9"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="856.0" y="340.0"/><mxPoint as="targetPoint" x="830.0" y="340.0"/></mxGeometry></ExplicitLink></root></mxGraphModel><mxCell as="defaultParent" id="-1ed2b2d8:132d4611bb5:-7f3b" parent="-1ed2b2d8:132d4611bb5:-7f3a"/></XcosDiagram>
\ No newline at end of file diff --git a/Working_Examples/215/CH7/EX7.1/Figure7_1.jpg b/Working_Examples/215/CH7/EX7.1/Figure7_1.jpg Binary files differnew file mode 100755 index 0000000..0873bcf --- /dev/null +++ b/Working_Examples/215/CH7/EX7.1/Figure7_1.jpg diff --git a/Working_Examples/215/CH7/EX7.1/ex7_1.sce b/Working_Examples/215/CH7/EX7.1/ex7_1.sce new file mode 100755 index 0000000..97c904a --- /dev/null +++ b/Working_Examples/215/CH7/EX7.1/ex7_1.sce @@ -0,0 +1,10 @@ +clc
+syms s t
+//part(a)
+i=diff(5*s^0,s)
+disp(i,'i=')
+//prt(b)
+i1=diff(4*sin(3*t),t)
+t=-2:.1:5
+ plot (t,12*cos(3*t))
+xtitle('i vs t','t(s)','i(A)')
\ No newline at end of file diff --git a/Working_Examples/215/CH7/EX7.11/Figure7_11.jpg b/Working_Examples/215/CH7/EX7.11/Figure7_11.jpg Binary files differnew file mode 100755 index 0000000..260cfa8 --- /dev/null +++ b/Working_Examples/215/CH7/EX7.11/Figure7_11.jpg diff --git a/Working_Examples/215/CH7/EX7.11/Figure7_11_xcos.jpg b/Working_Examples/215/CH7/EX7.11/Figure7_11_xcos.jpg Binary files differnew file mode 100755 index 0000000..bdb38b1 --- /dev/null +++ b/Working_Examples/215/CH7/EX7.11/Figure7_11_xcos.jpg diff --git a/Working_Examples/215/CH7/EX7.11/ex7_11.xcos b/Working_Examples/215/CH7/EX7.11/ex7_11.xcos new file mode 100755 index 0000000..d566a07 --- /dev/null +++ b/Working_Examples/215/CH7/EX7.11/ex7_11.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" finalIntegrationTime="1.0" title="ex7_11"><!--Xcos - 1.0 - scilab-5.5.2 - 20160406 2040--><mxGraphModel as="model"><root><mxCell id="3a97bac1:134ed06dad1:-7ffd"/><mxCell id="3a97bac1:134ed06dad1:-7ffe" parent="3a97bac1:134ed06dad1:-7ffd"/><BasicBlock dependsOnU="1" id="3a97bac1:134ed06dad1:-7fdb" interfaceFunctionName="Capacitor" ordering="1" parent="3a97bac1:134ed06dad1:-7ffe" simulationFunctionName="Capacitor" simulationFunctionType="DEFAULT" style="Capacitor;flip=false;mirror=false"><ScilabString as="exprs" height="2" width="1"><data column="0" line="0" value="4.7*10^-6"/><data column="0" line="1" value="2"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="4.7E-6"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Capacitor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="2"><data column="0" line="0" value="C"/><data column="1" line="0" value="v"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.7E-6"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="290.0" y="210.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="3a97bac1:134ed06dad1:-7f60" ordering="1" parent="3a97bac1:134ed06dad1:-7fdb" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="3a97bac1:134ed06dad1:-7f5f" ordering="1" parent="3a97bac1:134ed06dad1:-7fdb" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><BasicBlock dependsOnU="1" id="3a97bac1:134ed06dad1:-7fcf" interfaceFunctionName="OpAmp" ordering="2" parent="3a97bac1:134ed06dad1:-7ffe" simulationFunctionName="OpAmp" simulationFunctionType="DEFAULT" style="OpAmp;rotation=0;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="OpAmp"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="in_p"/><data column="0" line="1" value="in_n"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="out"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/></Array></Array><mxGeometry as="geometry" height="80.0" width="40.0" x="290.0" y="80.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="3a97bac1:134ed06dad1:-7fcd" ordering="1" parent="3a97bac1:134ed06dad1:-7fcf" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="3a97bac1:134ed06dad1:-7fcc" ordering="2" parent="3a97bac1:134ed06dad1:-7fcf" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="56.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="3a97bac1:134ed06dad1:-7fce" ordering="1" parent="3a97bac1:134ed06dad1:-7fcf" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="36.0"/></ImplicitOutputPort><VoltageSensorBlock dependsOnU="1" id="3a97bac1:134ed06dad1:-7fbb" interfaceFunctionName="VoltageSensor" ordering="3" parent="3a97bac1:134ed06dad1:-7ffe" simulationFunctionName="VoltageSensor" simulationFunctionType="DEFAULT" style="VoltageSensor;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="VoltageSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="v"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="410.0" y="100.0"/></VoltageSensorBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="3a97bac1:134ed06dad1:-7fb9" ordering="2" parent="3a97bac1:134ed06dad1:-7fbb" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="3a97bac1:134ed06dad1:-7fb8" ordering="1" parent="3a97bac1:134ed06dad1:-7fbb" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="3a97bac1:134ed06dad1:-7fba" ordering="1" parent="3a97bac1:134ed06dad1:-7fbb" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><Orientation as="orientation" value="SOUTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><BasicBlock angle="90" dependsOnU="1" id="3a97bac1:134ed06dad1:-7fb0" interfaceFunctionName="SineVoltage" ordering="4" parent="3a97bac1:134ed06dad1:-7ffe" simulationFunctionName="SineVoltage" simulationFunctionType="DEFAULT" style="SineVoltage;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="5" width="1"><data column="0" line="0" value="1.5"/><data column="0" line="1" value="0"/><data column="0" line="2" value="100/6.28"/><data column="0" line="3" value="0"/><data column="0" line="4" value="0"/></ScilabString><ScilabDouble as="realParameters" height="5" width="1"><data column="0" line="0" realPart="1.5"/><data column="0" line="1" realPart="0.0"/><data column="0" line="2" realPart="15.92356687898089"/><data column="0" line="3" realPart="0.0"/><data column="0" line="4" realPart="0.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="SineVoltage"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="5" width="1"><data column="0" line="0" value="V"/><data column="0" line="1" value="phase"/><data column="0" line="2" value="freqHz"/><data column="0" line="3" value="offset"/><data column="0" line="4" value="startTime"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.5"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="15.92356687898089"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="60.0" width="50.0" x="60.0" y="170.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="3a97bac1:134ed06dad1:-7f9f" ordering="1" parent="3a97bac1:134ed06dad1:-7fb0" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="3a97bac1:134ed06dad1:-7f9e" ordering="1" parent="3a97bac1:134ed06dad1:-7fb0" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="60.0"/></ImplicitOutputPort><BasicBlock dependsOnU="1" id="3a97bac1:134ed06dad1:-7fa6" interfaceFunctionName="Resistor" ordering="5" parent="3a97bac1:134ed06dad1:-7ffe" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="10*10^3"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="10000.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="10000.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="170.0" y="120.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="3a97bac1:134ed06dad1:-7f5c" ordering="1" parent="3a97bac1:134ed06dad1:-7fa6" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="3a97bac1:134ed06dad1:-7f5b" ordering="1" parent="3a97bac1:134ed06dad1:-7fa6" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><ImplicitLink id="3a97bac1:134ed06dad1:-7f97" parent="3a97bac1:134ed06dad1:-7ffe" source="3a97bac1:134ed06dad1:-7f9f" target="3a97bac1:134ed06dad1:-7f5c"><mxGeometry as="geometry" y="-60.0"><mxPoint as="sourcePoint" x="80.0" y="170.0"/><mxPoint as="targetPoint" x="170.0" y="140.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="80.0" y="140.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="3a97bac1:134ed06dad1:-7f90" ordering="6" parent="3a97bac1:134ed06dad1:-7ffe" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="257.0" y="137.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="3a97bac1:134ed06dad1:-7f8e" ordering="1" parent="3a97bac1:134ed06dad1:-7f90" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="3a97bac1:134ed06dad1:-7f8d" ordering="2" parent="3a97bac1:134ed06dad1:-7f90" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="3a97bac1:134ed06dad1:-7f8f" ordering="1" parent="3a97bac1:134ed06dad1:-7f90" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="3a97bac1:134ed06dad1:-7f8c" parent="3a97bac1:134ed06dad1:-7ffe" source="3a97bac1:134ed06dad1:-7f5b" target="3a97bac1:134ed06dad1:-7f8f"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="3a97bac1:134ed06dad1:-7f8b" parent="3a97bac1:134ed06dad1:-7ffe" source="3a97bac1:134ed06dad1:-7f8e" target="3a97bac1:134ed06dad1:-7fcc"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="3a97bac1:134ed06dad1:-7f91" parent="3a97bac1:134ed06dad1:-7ffe" source="3a97bac1:134ed06dad1:-7f8d" target="3a97bac1:134ed06dad1:-7f60"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="290.0" y="230.0"/><mxPoint as="targetPoint" x="260.0" y="140.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="260.0" y="230.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="3a97bac1:134ed06dad1:-7f89" ordering="7" parent="3a97bac1:134ed06dad1:-7ffe" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="357.0" y="117.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="3a97bac1:134ed06dad1:-7f87" ordering="1" parent="3a97bac1:134ed06dad1:-7f89" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="3a97bac1:134ed06dad1:-7f86" ordering="2" parent="3a97bac1:134ed06dad1:-7f89" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="3a97bac1:134ed06dad1:-7f88" ordering="1" parent="3a97bac1:134ed06dad1:-7f89" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="3a97bac1:134ed06dad1:-7f85" parent="3a97bac1:134ed06dad1:-7ffe" source="3a97bac1:134ed06dad1:-7fce" target="3a97bac1:134ed06dad1:-7f88"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="3a97bac1:134ed06dad1:-7f84" parent="3a97bac1:134ed06dad1:-7ffe" source="3a97bac1:134ed06dad1:-7f87" target="3a97bac1:134ed06dad1:-7fb8"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="3a97bac1:134ed06dad1:-7f8a" parent="3a97bac1:134ed06dad1:-7ffe" source="3a97bac1:134ed06dad1:-7f5f" target="3a97bac1:134ed06dad1:-7f86"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="330.0" y="230.0"/><mxPoint as="targetPoint" x="360.0" y="120.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="360.0" y="230.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="3a97bac1:134ed06dad1:-7f82" ordering="8" parent="3a97bac1:134ed06dad1:-7ffe" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="237.0" y="277.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="3a97bac1:134ed06dad1:-7f80" ordering="1" parent="3a97bac1:134ed06dad1:-7f82" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="3a97bac1:134ed06dad1:-7f7f" ordering="2" parent="3a97bac1:134ed06dad1:-7f82" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="3a97bac1:134ed06dad1:-7f81" ordering="1" parent="3a97bac1:134ed06dad1:-7f82" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="3a97bac1:134ed06dad1:-7f7e" parent="3a97bac1:134ed06dad1:-7ffe" source="3a97bac1:134ed06dad1:-7fcd" target="3a97bac1:134ed06dad1:-7f81"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="240.0" y="100.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="3a97bac1:134ed06dad1:-7f83" parent="3a97bac1:134ed06dad1:-7ffe" source="3a97bac1:134ed06dad1:-7f9e" target="3a97bac1:134ed06dad1:-7f7f"><mxGeometry as="geometry" y="10.0"><mxPoint as="sourcePoint" x="80.0" y="240.0"/><mxPoint as="targetPoint" x="240.0" y="290.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="80.0" y="280.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="3a97bac1:134ed06dad1:-7f7b" ordering="9" parent="3a97bac1:134ed06dad1:-7ffe" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="237.0" y="277.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="3a97bac1:134ed06dad1:-7f79" ordering="1" parent="3a97bac1:134ed06dad1:-7f7b" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="3a97bac1:134ed06dad1:-7f78" ordering="2" parent="3a97bac1:134ed06dad1:-7f7b" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="3a97bac1:134ed06dad1:-7f7a" ordering="1" parent="3a97bac1:134ed06dad1:-7f7b" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="3a97bac1:134ed06dad1:-7f77" parent="3a97bac1:134ed06dad1:-7ffe" source="3a97bac1:134ed06dad1:-7f80" target="3a97bac1:134ed06dad1:-7f7a"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="3a97bac1:134ed06dad1:-7f76" parent="3a97bac1:134ed06dad1:-7ffe" source="3a97bac1:134ed06dad1:-7f79" target="3a97bac1:134ed06dad1:-7fe3"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="3a97bac1:134ed06dad1:-7f7c" parent="3a97bac1:134ed06dad1:-7ffe" source="3a97bac1:134ed06dad1:-7fba" target="3a97bac1:134ed06dad1:-7f78"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="430.0" y="140.0"/><mxPoint as="targetPoint" x="240.0" y="280.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="430.0" y="280.0"/></Array></mxGeometry></ImplicitLink><BasicBlock dependsOnU="1" id="3a97bac1:134ed06dad1:-7f6d" interfaceFunctionName="CSCOPE" ordering="10" parent="3a97bac1:134ed06dad1:-7ffe" simulationFunctionName="cscope" simulationFunctionType="C_OR_FORTRAN" style="CSCOPE;flip=false;mirror=false"><ScilabString as="exprs" height="10" width="1"><data column="0" line="0" value="1 3 5 7 9 11 13 15"/><data column="0" line="1" value="-1"/><data column="0" line="2" value="[]"/><data column="0" line="3" value="[600;400]"/><data column="0" line="4" value="-2.7"/><data column="0" line="5" value="-2"/><data column="0" line="6" value="1"/><data column="0" line="7" value="20"/><data column="0" line="8" value="0"/><data column="0" line="9" value=""/></ScilabString><ScilabDouble as="realParameters" height="4" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="-2.7"/><data column="0" line="2" realPart="-2.0"/><data column="0" line="3" realPart="1.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="15" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="1.0"/><data column="0" line="4" realPart="3.0"/><data column="0" line="5" realPart="5.0"/><data column="0" line="6" realPart="7.0"/><data column="0" line="7" realPart="9.0"/><data column="0" line="8" realPart="11.0"/><data column="0" line="9" realPart="13.0"/><data column="0" line="10" realPart="15.0"/><data column="0" line="11" realPart="-1.0"/><data column="0" line="12" realPart="-1.0"/><data column="0" line="13" realPart="600.0"/><data column="0" line="14" realPart="400.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="480.0" y="100.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="3a97bac1:134ed06dad1:-7f51" ordering="1" parent="3a97bac1:134ed06dad1:-7f6d" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ControlPort dataType="UNKNOW_TYPE" id="3a97bac1:134ed06dad1:-7f50" ordering="1" parent="3a97bac1:134ed06dad1:-7f6d" style="ControlPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><ExplicitLink id="3a97bac1:134ed06dad1:-7f63" parent="3a97bac1:134ed06dad1:-7ffe" source="3a97bac1:134ed06dad1:-7fb9" target="3a97bac1:134ed06dad1:-7f51"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="450.0" y="120.0"/><mxPoint as="targetPoint" x="480.0" y="120.0"/></mxGeometry></ExplicitLink><GroundBlock dependsOnU="1" id="3a97bac1:134ed06dad1:-7fe4" interfaceFunctionName="Ground" ordering="11" parent="3a97bac1:134ed06dad1:-7ffe" simulationFunctionName="Ground" simulationFunctionType="DEFAULT" style="Ground;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Ground"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="220.0" y="310.0"/></GroundBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="3a97bac1:134ed06dad1:-7fe3" ordering="1" parent="3a97bac1:134ed06dad1:-7fe4" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><Orientation as="orientation" value="NORTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock blockType="h" id="128c18ea:1383ab8277c:-748d" interfaceFunctionName="CLOCK_c" ordering="12" parent="3a97bac1:134ed06dad1:-7ffe" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="99.0"/><data column="1" line="0" realPart="-160.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-73e75f0:167968eb73f:-7955"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-73e75f0:167968eb73f:-7955"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-70.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.001"/><data column="0" line="1" value="0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.001"/><data column="0" line="1" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-73e75f0:167968eb73f:-7953"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-73e75f0:167968eb73f:-7953"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="90.3773266666667"/><data column="1" line="0" realPart="-166.33333333333331"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="7.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="5.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-73e75f0:167968eb73f:-7950"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-73e75f0:167968eb73f:-7950"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="60.0"/><data column="0" line="2" realPart="97.54399333333338"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-74.0"/><data column="0" line="1" realPart="-170.0"/><data column="0" line="2" realPart="-155.33333333333331"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="97.48843777777782"/><data column="0" line="1" realPart="129.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-163.66666666666666"/><data column="0" line="1" realPart="-136.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="97.59954888888893"/><data column="0" line="1" realPart="100.70999999999998"/><data column="0" line="2" realPart="60.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-163.66666666666666"/><data column="0" line="1" realPart="-40.0"/><data column="0" line="2" realPart="-40.0"/><data column="0" line="3" realPart="-26.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="480.0" y="20.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="128c18ea:1383ab8277c:-7487" ordering="1" parent="128c18ea:1383ab8277c:-748d" style="CommandPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><CommandControlLink id="128c18ea:1383ab8277c:-7489" parent="3a97bac1:134ed06dad1:-7ffe" source="128c18ea:1383ab8277c:-7487" target="3a97bac1:134ed06dad1:-7f50"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="500.0" y="64.0"/><mxPoint as="targetPoint" x="500.0" y="100.0"/></mxGeometry></CommandControlLink></root></mxGraphModel><mxCell as="defaultParent" id="3a97bac1:134ed06dad1:-7ffe" parent="3a97bac1:134ed06dad1:-7ffd"/></XcosDiagram>
\ No newline at end of file diff --git a/Working_Examples/215/CH7/EX7.2/Figure7_21.jpg b/Working_Examples/215/CH7/EX7.2/Figure7_21.jpg Binary files differnew file mode 100755 index 0000000..019312a --- /dev/null +++ b/Working_Examples/215/CH7/EX7.2/Figure7_21.jpg diff --git a/Working_Examples/215/CH7/EX7.2/Figure7_22.jpg b/Working_Examples/215/CH7/EX7.2/Figure7_22.jpg Binary files differnew file mode 100755 index 0000000..df53fef --- /dev/null +++ b/Working_Examples/215/CH7/EX7.2/Figure7_22.jpg diff --git a/Working_Examples/215/CH7/EX7.2/ex7_2.sce b/Working_Examples/215/CH7/EX7.2/ex7_2.sce new file mode 100755 index 0000000..db720e4 --- /dev/null +++ b/Working_Examples/215/CH7/EX7.2/ex7_2.sce @@ -0,0 +1,24 @@ +clc
+t = 0:0.000001:0.002;
+deff('y=u(t)','y=1*(t>=0)');
+y =0.02*(u(t) - u(t-0.002));
+figure
+a=gca()
+subplot(111)
+plot2d(t,y,5,rect=[0 0 0.004 0.03])
+xtitle('i vs t','t in ms','i in mA')
+
+syms s
+//For t<=0 ms
+v=0
+//For the region in the rectangular pulse i.e 0<t<=2 ms
+v=integ(s^0,s)*4000
+//For t>2 ms
+v=8
+s=0:0.000001:0.002
+
+figure
+a=gca()
+subplot(111)
+plot(s,(4000*s),s+0.002,8)
+xtitle('v vs t','t in ms','v in V')
diff --git a/Working_Examples/215/CH7/EX7.3/Figure7_3.jpg b/Working_Examples/215/CH7/EX7.3/Figure7_3.jpg Binary files differnew file mode 100755 index 0000000..966c7f9 --- /dev/null +++ b/Working_Examples/215/CH7/EX7.3/Figure7_3.jpg diff --git a/Working_Examples/215/CH7/EX7.3/ex7_3.sce b/Working_Examples/215/CH7/EX7.3/ex7_3.sce new file mode 100755 index 0000000..a0192d7 --- /dev/null +++ b/Working_Examples/215/CH7/EX7.3/ex7_3.sce @@ -0,0 +1,18 @@ +clc
+//Example 7.3
+//Let wc be the energy stored in capacitor
+C=20*10^-6; R=10^6;
+t=0:0.001:0.5
+v=100*sin(2*%pi*t)
+wc=0.5*C*v^2
+plot(t,wc)
+xtitle('wC vs t','t in sec','wC in J')
+//Let iR be the current in the resistor
+iR=v/R
+//Let pR be the power dissipated in the resistor
+pR=iR^2*R
+//If wR is the energy dissipated in the resistor
+syms s
+wR=integ(100*(sin(2*%pi*s))^2,s,0,0.5)
+disp(wR,'wR=')
+
diff --git a/Working_Examples/215/CH7/EX7.7/ex7_7.sce b/Working_Examples/215/CH7/EX7.7/ex7_7.sce new file mode 100755 index 0000000..68fa332 --- /dev/null +++ b/Working_Examples/215/CH7/EX7.7/ex7_7.sce @@ -0,0 +1,18 @@ +clc
+//Example 7.7
+printf("Given")
+disp('i=12*sin(%pi*t/6),R=0.1 ohm,L=3H')
+t=0:.1:6
+i=12*sin(%pi*t/6),R=0.1;L=3;
+//Let wL be the energy stored in the inductor
+wL=0.5*L*i^2
+plot(t,wL)
+//From the above graph
+wLmax=216;tmax=3;
+printf("Maximum value at %d J at %d sec",wLmax,tmax)
+//Let pR be the power dissipated in the resistor
+pR=i^2*R
+//Energy converted to heat in 6 sec interval in the resistor is
+syms s
+wR=integ(14.4*(sin(%pi/6*s))^2,s,0,6)
+disp(wR,'wR')
diff --git a/Working_Examples/215/CH8/EX8.1/Figure8_1.jpg b/Working_Examples/215/CH8/EX8.1/Figure8_1.jpg Binary files differnew file mode 100755 index 0000000..b1d5ea5 --- /dev/null +++ b/Working_Examples/215/CH8/EX8.1/Figure8_1.jpg diff --git a/Working_Examples/215/CH8/EX8.1/Figure8_1_xcos.jpg b/Working_Examples/215/CH8/EX8.1/Figure8_1_xcos.jpg Binary files differnew file mode 100755 index 0000000..fb14193 --- /dev/null +++ b/Working_Examples/215/CH8/EX8.1/Figure8_1_xcos.jpg diff --git a/Working_Examples/215/CH8/EX8.1/ex8_1.xcos b/Working_Examples/215/CH8/EX8.1/ex8_1.xcos new file mode 100755 index 0000000..8fb1946 --- /dev/null +++ b/Working_Examples/215/CH8/EX8.1/ex8_1.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" finalIntegrationTime="0.001" title="ex8_1"><!--Xcos - 1.0 - scilab-5.5.2 - 20160406 2040--><mxGraphModel as="model"><root><mxCell id="77dd482d:134d2cc3c9e:-7f99"/><mxCell id="77dd482d:134d2cc3c9e:-7f9a" parent="77dd482d:134d2cc3c9e:-7f99"/><BasicBlock blockType="h" id="-7550ec02:134d2eb8d96:-7f65" interfaceFunctionName="STEP_FUNCTION" ordering="1" parent="77dd482d:134d2cc3c9e:-7f9a" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="STEP_FUNCTION;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="STEP_FUNCTION"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-4"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="14.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=" "/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="60.0" y="140.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataType="REAL_MATRIX" id="-7550ec02:134d2eb8d96:-7f27" ordering="1" parent="-7550ec02:134d2eb8d96:-7f65" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><BasicBlock dependsOnU="1" id="-7550ec02:134d2eb8d96:-7f63" interfaceFunctionName="CSCOPE" ordering="2" parent="77dd482d:134d2cc3c9e:-7f9a" simulationFunctionName="cscope" simulationFunctionType="C_OR_FORTRAN" style="CSCOPE;flip=false;mirror=false"><ScilabString as="exprs" height="10" width="1"><data column="0" line="0" value="1 3 5 7 9 11 13 15"/><data column="0" line="1" value="-1"/><data column="0" line="2" value="[]"/><data column="0" line="3" value="[600;400]"/><data column="0" line="4" value="0"/><data column="0" line="5" value="2"/><data column="0" line="6" value=".001"/><data column="0" line="7" value="20"/><data column="0" line="8" value="0"/><data column="0" line="9" value=""/></ScilabString><ScilabDouble as="realParameters" height="4" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="0.0"/><data column="0" line="2" realPart="2.0"/><data column="0" line="3" realPart="0.001"/></ScilabDouble><ScilabDouble as="integerParameters" height="15" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="1.0"/><data column="0" line="4" realPart="3.0"/><data column="0" line="5" realPart="5.0"/><data column="0" line="6" realPart="7.0"/><data column="0" line="7" realPart="9.0"/><data column="0" line="8" realPart="11.0"/><data column="0" line="9" realPart="13.0"/><data column="0" line="10" realPart="15.0"/><data column="0" line="11" realPart="-1.0"/><data column="0" line="12" realPart="-1.0"/><data column="0" line="13" realPart="600.0"/><data column="0" line="14" realPart="400.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="450.0" y="150.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="77dd482d:134d2cc3c9e:-7f1a" ordering="1" parent="-7550ec02:134d2eb8d96:-7f63" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ControlPort dataType="UNKNOW_TYPE" id="77dd482d:134d2cc3c9e:-7f19" ordering="1" parent="-7550ec02:134d2eb8d96:-7f63" style="ControlPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><BasicBlock dependsOnU="1" id="-7550ec02:134d2eb8d96:-7f60" interfaceFunctionName="GAINBLK_f" ordering="3" parent="77dd482d:134d2cc3c9e:-7f9a" simulationFunctionName="gain" simulationFunctionType="DEFAULT" style="GAINBLK_f;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="200"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="200.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="50.0" width="40.0" x="260.0" y="150.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="77dd482d:134d2cc3c9e:-7f45" ordering="1" parent="-7550ec02:134d2eb8d96:-7f60" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="77dd482d:134d2cc3c9e:-7f44" ordering="1" parent="-7550ec02:134d2eb8d96:-7f60" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><Summation dependsOnU="1" id="-7550ec02:134d2eb8d96:-7f5d" interfaceFunctionName="SUMMATION" ordering="4" parent="77dd482d:134d2cc3c9e:-7f9a" simulationFunctionName="summation" simulationFunctionType="C_OR_FORTRAN" style="SUMMATION;flip=false;mirror=false" value="+"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="[1;-1]"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="2" width="1"><data column="0" line="0" realPart="1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="160.0" y="150.0"/></Summation><ExplicitInputPort dataType="REAL_MATRIX" id="77dd482d:134d2cc3c9e:-7f6b" ordering="1" parent="-7550ec02:134d2eb8d96:-7f5d" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" value="+"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ExplicitInputPort><ExplicitInputPort dataType="REAL_MATRIX" id="77dd482d:134d2cc3c9e:-7f6a" ordering="2" parent="-7550ec02:134d2eb8d96:-7f5d" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" value="-"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="26.0"/></ExplicitInputPort><ExplicitOutputPort dataType="REAL_MATRIX" id="77dd482d:134d2cc3c9e:-7f6c" ordering="1" parent="-7550ec02:134d2eb8d96:-7f5d" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><BasicBlock angle="180" dependsOnU="1" id="-7550ec02:134d2eb8d96:-7f59" interfaceFunctionName="GAINBLK_f" ordering="5" parent="77dd482d:134d2cc3c9e:-7f9a" simulationFunctionName="gain" simulationFunctionType="DEFAULT" style="GAINBLK_f;rotation=180;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="20"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="20.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="50.0" width="40.0" x="240.0" y="260.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="77dd482d:134d2cc3c9e:-7f41" ordering="1" parent="-7550ec02:134d2eb8d96:-7f59" style="ExplicitInputPort;align=right;verticalAlign=middle;spacing=10;rotation=180;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitInputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="77dd482d:134d2cc3c9e:-7f40" ordering="1" parent="-7550ec02:134d2eb8d96:-7f59" style="ExplicitOutputPort;align=left;verticalAlign=middle;spacing=10;rotation=180;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitOutputPort><BasicBlock dependsOnT="1" id="-7550ec02:134d2eb8d96:-7f56" interfaceFunctionName="INTEGRAL_m" ordering="6" parent="77dd482d:134d2cc3c9e:-7f9a" simulationFunctionName="integral_func" simulationFunctionType="C_OR_FORTRAN" style="INTEGRAL_m;flip=false;mirror=false"><ScilabString as="exprs" height="5" width="1"><data column="0" line="0" value="2"/><data column="0" line="1" value="0"/><data column="0" line="2" value="0"/><data column="0" line="3" value="1"/><data column="0" line="4" value="-1"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="state" height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="350.0" y="150.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="77dd482d:134d2cc3c9e:-7f3a" ordering="1" parent="-7550ec02:134d2eb8d96:-7f56" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="77dd482d:134d2cc3c9e:-7f39" ordering="1" parent="-7550ec02:134d2eb8d96:-7f56" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ExplicitLink id="77dd482d:134d2cc3c9e:-7f53" parent="77dd482d:134d2cc3c9e:-7f9a" source="-7550ec02:134d2eb8d96:-7f27" target="77dd482d:134d2cc3c9e:-7f6b"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="100.0" y="160.0"/><mxPoint as="targetPoint" x="150.0" y="160.0"/></mxGeometry></ExplicitLink><ExplicitLink id="77dd482d:134d2cc3c9e:-7f52" parent="77dd482d:134d2cc3c9e:-7f9a" source="77dd482d:134d2cc3c9e:-7f6c" target="77dd482d:134d2cc3c9e:-7f45"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="200.0" y="170.0"/><mxPoint as="targetPoint" x="250.0" y="170.0"/></mxGeometry></ExplicitLink><ExplicitLink id="77dd482d:134d2cc3c9e:-7f51" parent="77dd482d:134d2cc3c9e:-7f9a" source="77dd482d:134d2cc3c9e:-7f44" target="77dd482d:134d2cc3c9e:-7f3a"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="300.0" y="170.0"/><mxPoint as="targetPoint" x="350.0" y="170.0"/></mxGeometry></ExplicitLink><ExplicitLink id="77dd482d:134d2cc3c9e:-7f4f" parent="77dd482d:134d2cc3c9e:-7f9a" source="77dd482d:134d2cc3c9e:-7f40" target="77dd482d:134d2cc3c9e:-7f6a"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="160.0" y="180.0"/><mxPoint as="targetPoint" x="240.0" y="280.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="140.0" y="280.0"/><mxPoint x="140.0" y="180.0"/></Array></mxGeometry></ExplicitLink><SplitBlock id="-7550ec02:134d2eb8d96:-7f4f" ordering="7" parent="77dd482d:134d2cc3c9e:-7f9a" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="407.0" y="167.0"/></SplitBlock><ExplicitOutputPort dataType="UNKNOW_TYPE" id="77dd482d:134d2cc3c9e:-7f4b" ordering="1" parent="-7550ec02:134d2eb8d96:-7f4f" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="77dd482d:134d2cc3c9e:-7f4a" ordering="2" parent="-7550ec02:134d2eb8d96:-7f4f" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ExplicitOutputPort><ExplicitInputPort dataType="UNKNOW_TYPE" id="77dd482d:134d2cc3c9e:-7f4c" ordering="1" parent="-7550ec02:134d2eb8d96:-7f4f" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ExplicitInputPort><ExplicitLink id="77dd482d:134d2cc3c9e:-7f49" parent="77dd482d:134d2cc3c9e:-7f9a" source="77dd482d:134d2cc3c9e:-7f39" target="77dd482d:134d2cc3c9e:-7f4c"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ExplicitLink><ExplicitLink id="77dd482d:134d2cc3c9e:-7f48" parent="77dd482d:134d2cc3c9e:-7f9a" source="77dd482d:134d2cc3c9e:-7f4b" target="77dd482d:134d2cc3c9e:-7f41"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="410.0" y="280.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="77dd482d:134d2cc3c9e:-7f4e" parent="77dd482d:134d2cc3c9e:-7f9a" source="77dd482d:134d2cc3c9e:-7f4a" target="77dd482d:134d2cc3c9e:-7f1a"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="450.0" y="170.0"/><mxPoint as="targetPoint" x="410.0" y="170.0"/></mxGeometry></ExplicitLink><BasicBlock blockType="h" id="-4786dca1:1383aec1f36:-7fa7" interfaceFunctionName="CLOCK_c" ordering="8" parent="77dd482d:134d2cc3c9e:-7f9a" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="99.0"/><data column="1" line="0" realPart="-160.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-73e75f0:167968eb73f:-7922"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-73e75f0:167968eb73f:-7922"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-70.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.0001"/><data column="0" line="1" value="0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="1.0E-4"/><data column="0" line="1" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-73e75f0:167968eb73f:-7920"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-73e75f0:167968eb73f:-7920"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="90.3773266666667"/><data column="1" line="0" realPart="-166.33333333333331"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="7.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="5.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-73e75f0:167968eb73f:-791d"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-73e75f0:167968eb73f:-791d"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="60.0"/><data column="0" line="2" realPart="97.54399333333338"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-74.0"/><data column="0" line="1" realPart="-170.0"/><data column="0" line="2" realPart="-155.33333333333331"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="97.48843777777782"/><data column="0" line="1" realPart="129.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-163.66666666666666"/><data column="0" line="1" realPart="-136.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="97.59954888888893"/><data column="0" line="1" realPart="100.70999999999998"/><data column="0" line="2" realPart="60.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-163.66666666666666"/><data column="0" line="1" realPart="-40.0"/><data column="0" line="2" realPart="-40.0"/><data column="0" line="3" realPart="-26.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="450.0" y="60.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="-4786dca1:1383aec1f36:-7fa1" ordering="1" parent="-4786dca1:1383aec1f36:-7fa7" style="CommandPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><CommandControlLink id="-4786dca1:1383aec1f36:-7fa3" parent="77dd482d:134d2cc3c9e:-7f9a" source="-4786dca1:1383aec1f36:-7fa1" target="77dd482d:134d2cc3c9e:-7f19"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="470.0" y="104.0"/><mxPoint as="targetPoint" x="470.0" y="150.0"/></mxGeometry></CommandControlLink></root></mxGraphModel><mxCell as="defaultParent" id="77dd482d:134d2cc3c9e:-7f9a" parent="77dd482d:134d2cc3c9e:-7f99"/></XcosDiagram>
\ No newline at end of file diff --git a/Working_Examples/215/CH8/EX8.10/Figure8_10.jpg b/Working_Examples/215/CH8/EX8.10/Figure8_10.jpg Binary files differnew file mode 100755 index 0000000..30c6d95 --- /dev/null +++ b/Working_Examples/215/CH8/EX8.10/Figure8_10.jpg diff --git a/Working_Examples/215/CH8/EX8.10/Figure8_10_xcos.jpg b/Working_Examples/215/CH8/EX8.10/Figure8_10_xcos.jpg Binary files differnew file mode 100755 index 0000000..f9d4e79 --- /dev/null +++ b/Working_Examples/215/CH8/EX8.10/Figure8_10_xcos.jpg diff --git a/Working_Examples/215/CH8/EX8.10/ex8_10.xcos b/Working_Examples/215/CH8/EX8.10/ex8_10.xcos new file mode 100755 index 0000000..ec3a9c4 --- /dev/null +++ b/Working_Examples/215/CH8/EX8.10/ex8_10.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" finalIntegrationTime="5.0" title="ex8_10"><!--Xcos - 1.0 - scilab-5.5.2 - 20160406 2040--><mxGraphModel as="model"><root><mxCell id="75a896ca:134d365eac8:-7b7a"/><mxCell id="75a896ca:134d365eac8:-7b7b" parent="75a896ca:134d365eac8:-7b7a"/><BasicBlock angle="90" dependsOnU="1" id="6641adef:135055938d4:-7e07" interfaceFunctionName="Capacitor" ordering="1" parent="75a896ca:134d365eac8:-7b7b" simulationFunctionName="Capacitor" simulationFunctionType="DEFAULT" style="Capacitor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="2" width="1"><data column="0" line="0" value="50e-3"/><data column="0" line="1" value="100"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="0.05"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Capacitor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="2"><data column="0" line="0" value="C"/><data column="1" line="0" value="v"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.05"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="370.0" y="450.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="75a896ca:134d365eac8:-7acb" ordering="1" parent="6641adef:135055938d4:-7e07" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="75a896ca:134d365eac8:-7aca" ordering="1" parent="6641adef:135055938d4:-7e07" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><BasicBlock angle="90" dependsOnU="1" id="6641adef:135055938d4:-7e04" interfaceFunctionName="CurrentSensor" ordering="2" parent="75a896ca:134d365eac8:-7b7b" simulationFunctionName="CurrentSensor" simulationFunctionType="DEFAULT" style="CurrentSensor;rotation=90;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CurrentSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="i"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="150.0" y="510.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="75a896ca:134d365eac8:-7b5a" ordering="2" parent="6641adef:135055938d4:-7e04" style="ExplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="26.0" y="40.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="75a896ca:134d365eac8:-7b59" ordering="1" parent="6641adef:135055938d4:-7e04" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="75a896ca:134d365eac8:-7b5b" ordering="1" parent="6641adef:135055938d4:-7e04" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="6.0" y="40.0"/></ImplicitOutputPort><GroundBlock dependsOnU="1" id="6641adef:135055938d4:-7e00" interfaceFunctionName="Ground" ordering="3" parent="75a896ca:134d365eac8:-7b7b" simulationFunctionName="Ground" simulationFunctionType="DEFAULT" style="Ground;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Ground"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="210.0" y="620.0"/></GroundBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="75a896ca:134d365eac8:-7b52" ordering="1" parent="6641adef:135055938d4:-7e00" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><Orientation as="orientation" value="NORTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock angle="90" dependsOnU="1" id="6641adef:135055938d4:-7dfe" interfaceFunctionName="Resistor" ordering="4" parent="75a896ca:134d365eac8:-7b7b" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="60"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="60.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="60.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="30.0" y="440.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="75a896ca:134d365eac8:-7abf" ordering="1" parent="6641adef:135055938d4:-7dfe" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="75a896ca:134d365eac8:-7abe" ordering="1" parent="6641adef:135055938d4:-7dfe" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><BasicBlock angle="90" dependsOnU="1" id="6641adef:135055938d4:-7dfb" interfaceFunctionName="Resistor" ordering="5" parent="75a896ca:134d365eac8:-7b7b" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="50"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="50.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="50.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="260.0" y="460.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="75a896ca:134d365eac8:-7ac7" ordering="1" parent="6641adef:135055938d4:-7dfb" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="75a896ca:134d365eac8:-7ac6" ordering="1" parent="6641adef:135055938d4:-7dfb" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><BasicBlock angle="90" dependsOnU="1" id="6641adef:135055938d4:-7df8" interfaceFunctionName="Resistor" ordering="6" parent="75a896ca:134d365eac8:-7b7b" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="200"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="200.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="200.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="150.0" y="420.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="75a896ca:134d365eac8:-7ac3" ordering="1" parent="6641adef:135055938d4:-7df8" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="75a896ca:134d365eac8:-7ac2" ordering="1" parent="6641adef:135055938d4:-7df8" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitLink id="75a896ca:134d365eac8:-7b30" parent="75a896ca:134d365eac8:-7b7b" source="75a896ca:134d365eac8:-7abe" target="75a896ca:134d365eac8:-7abb"><mxGeometry as="geometry" y="300.0"><mxPoint as="sourcePoint" x="50.0" y="520.0"/><mxPoint as="targetPoint" x="50.0" y="490.0"/></mxGeometry></ImplicitLink><ImplicitLink id="75a896ca:134d365eac8:-7b2f" parent="75a896ca:134d365eac8:-7b7b" source="75a896ca:134d365eac8:-7ac2" target="75a896ca:134d365eac8:-7b59"><mxGeometry as="geometry" y="300.0"><mxPoint as="sourcePoint" x="170.0" y="510.0"/><mxPoint as="targetPoint" x="170.0" y="470.0"/></mxGeometry></ImplicitLink><SplitBlock id="6641adef:135055938d4:-7df3" ordering="7" parent="75a896ca:134d365eac8:-7b7b" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="167.0" y="367.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="75a896ca:134d365eac8:-7b2b" ordering="1" parent="6641adef:135055938d4:-7df3" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="75a896ca:134d365eac8:-7b2a" ordering="2" parent="6641adef:135055938d4:-7df3" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="75a896ca:134d365eac8:-7b2c" ordering="1" parent="6641adef:135055938d4:-7df3" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="75a896ca:134d365eac8:-7b29" parent="75a896ca:134d365eac8:-7b7b" source="75a896ca:134d365eac8:-7abf" target="75a896ca:134d365eac8:-7b2c"><mxGeometry as="geometry" y="300.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="50.0" y="370.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="75a896ca:134d365eac8:-7b2e" parent="75a896ca:134d365eac8:-7b7b" source="75a896ca:134d365eac8:-7b2a" target="75a896ca:134d365eac8:-7ac3"><mxGeometry as="geometry" y="300.0"><mxPoint as="sourcePoint" x="170.0" y="420.0"/><mxPoint as="targetPoint" x="170.0" y="370.0"/></mxGeometry></ImplicitLink><SplitBlock id="6641adef:135055938d4:-7ded" ordering="8" parent="75a896ca:134d365eac8:-7b7b" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="277.0" y="367.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="75a896ca:134d365eac8:-7b24" ordering="1" parent="6641adef:135055938d4:-7ded" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="75a896ca:134d365eac8:-7b23" ordering="2" parent="6641adef:135055938d4:-7ded" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="75a896ca:134d365eac8:-7b25" ordering="1" parent="6641adef:135055938d4:-7ded" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="75a896ca:134d365eac8:-7b22" parent="75a896ca:134d365eac8:-7b7b" source="75a896ca:134d365eac8:-7b2b" target="75a896ca:134d365eac8:-7b25"><mxGeometry as="geometry" y="300.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="75a896ca:134d365eac8:-7b27" parent="75a896ca:134d365eac8:-7b7b" source="75a896ca:134d365eac8:-7b23" target="75a896ca:134d365eac8:-7ac7"><mxGeometry as="geometry" y="300.0"><mxPoint as="sourcePoint" x="280.0" y="460.0"/><mxPoint as="targetPoint" x="280.0" y="370.0"/></mxGeometry></ImplicitLink><SplitBlock id="6641adef:135055938d4:-7de7" ordering="9" parent="75a896ca:134d365eac8:-7b7b" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="277.0" y="587.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="75a896ca:134d365eac8:-7b1d" ordering="1" parent="6641adef:135055938d4:-7de7" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="75a896ca:134d365eac8:-7b1c" ordering="2" parent="6641adef:135055938d4:-7de7" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="75a896ca:134d365eac8:-7b1e" ordering="1" parent="6641adef:135055938d4:-7de7" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="75a896ca:134d365eac8:-7b20" parent="75a896ca:134d365eac8:-7b7b" source="75a896ca:134d365eac8:-7ac6" target="75a896ca:134d365eac8:-7b1c"><mxGeometry as="geometry" y="300.0"><mxPoint as="sourcePoint" x="280.0" y="500.0"/><mxPoint as="targetPoint" x="280.0" y="590.0"/></mxGeometry></ImplicitLink><SplitBlock id="6641adef:135055938d4:-7de2" ordering="10" parent="75a896ca:134d365eac8:-7b7b" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="157.0" y="587.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="75a896ca:134d365eac8:-7b16" ordering="1" parent="6641adef:135055938d4:-7de2" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="75a896ca:134d365eac8:-7b15" ordering="2" parent="6641adef:135055938d4:-7de2" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="75a896ca:134d365eac8:-7b17" ordering="1" parent="6641adef:135055938d4:-7de2" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="75a896ca:134d365eac8:-7b14" parent="75a896ca:134d365eac8:-7b7b" source="75a896ca:134d365eac8:-7aba" target="75a896ca:134d365eac8:-7b17"><mxGeometry as="geometry" y="300.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="50.0" y="590.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="75a896ca:134d365eac8:-7b19" parent="75a896ca:134d365eac8:-7b7b" source="75a896ca:134d365eac8:-7b5b" target="75a896ca:134d365eac8:-7b15"><mxGeometry as="geometry" y="300.0"><mxPoint as="sourcePoint" x="160.0" y="550.0"/><mxPoint as="targetPoint" x="160.0" y="590.0"/></mxGeometry></ImplicitLink><SplitBlock id="6641adef:135055938d4:-7ddc" ordering="11" parent="75a896ca:134d365eac8:-7b7b" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="227.0" y="587.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="75a896ca:134d365eac8:-7b0f" ordering="1" parent="6641adef:135055938d4:-7ddc" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="75a896ca:134d365eac8:-7b0e" ordering="2" parent="6641adef:135055938d4:-7ddc" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="75a896ca:134d365eac8:-7b10" ordering="1" parent="6641adef:135055938d4:-7ddc" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="75a896ca:134d365eac8:-7b0d" parent="75a896ca:134d365eac8:-7b7b" source="75a896ca:134d365eac8:-7b16" target="75a896ca:134d365eac8:-7b10"><mxGeometry as="geometry" y="300.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="75a896ca:134d365eac8:-7b0c" parent="75a896ca:134d365eac8:-7b7b" source="75a896ca:134d365eac8:-7b0f" target="75a896ca:134d365eac8:-7b1e"><mxGeometry as="geometry" y="300.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="75a896ca:134d365eac8:-7b12" parent="75a896ca:134d365eac8:-7b7b" source="75a896ca:134d365eac8:-7b0e" target="75a896ca:134d365eac8:-7b52"><mxGeometry as="geometry" y="300.0"><mxPoint as="sourcePoint" x="230.0" y="620.0"/><mxPoint as="targetPoint" x="230.0" y="590.0"/></mxGeometry></ImplicitLink><VoltageSensorBlock dependsOnU="1" id="6641adef:135055938d4:-7dd5" interfaceFunctionName="VoltageSensor" ordering="12" parent="75a896ca:134d365eac8:-7b7b" simulationFunctionName="VoltageSensor" simulationFunctionType="DEFAULT" style="VoltageSensor;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="VoltageSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="v"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="430.0" y="400.0"/></VoltageSensorBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="75a896ca:134d365eac8:-7b00" ordering="2" parent="6641adef:135055938d4:-7dd5" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="75a896ca:134d365eac8:-7aff" ordering="1" parent="6641adef:135055938d4:-7dd5" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="75a896ca:134d365eac8:-7b01" ordering="1" parent="6641adef:135055938d4:-7dd5" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><Orientation as="orientation" value="SOUTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><SplitBlock id="6641adef:135055938d4:-7dd1" ordering="13" parent="75a896ca:134d365eac8:-7b7b" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="387.0" y="417.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="75a896ca:134d365eac8:-7afb" ordering="1" parent="6641adef:135055938d4:-7dd1" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="75a896ca:134d365eac8:-7afa" ordering="2" parent="6641adef:135055938d4:-7dd1" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="75a896ca:134d365eac8:-7afc" ordering="1" parent="6641adef:135055938d4:-7dd1" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="75a896ca:134d365eac8:-7af9" parent="75a896ca:134d365eac8:-7b7b" source="75a896ca:134d365eac8:-7b24" target="75a896ca:134d365eac8:-7afc"><mxGeometry as="geometry" y="300.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="390.0" y="370.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="75a896ca:134d365eac8:-7af8" parent="75a896ca:134d365eac8:-7b7b" source="75a896ca:134d365eac8:-7afb" target="75a896ca:134d365eac8:-7acb"><mxGeometry as="geometry" y="300.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="75a896ca:134d365eac8:-7afe" parent="75a896ca:134d365eac8:-7b7b" source="75a896ca:134d365eac8:-7afa" target="75a896ca:134d365eac8:-7aff"><mxGeometry as="geometry" y="300.0"><mxPoint as="sourcePoint" x="430.0" y="420.0"/><mxPoint as="targetPoint" x="390.0" y="420.0"/></mxGeometry></ImplicitLink><SplitBlock id="6641adef:135055938d4:-7dca" ordering="14" parent="75a896ca:134d365eac8:-7b7b" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="387.0" y="507.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="75a896ca:134d365eac8:-7af4" ordering="1" parent="6641adef:135055938d4:-7dca" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="75a896ca:134d365eac8:-7af3" ordering="2" parent="6641adef:135055938d4:-7dca" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="75a896ca:134d365eac8:-7af5" ordering="1" parent="6641adef:135055938d4:-7dca" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="75a896ca:134d365eac8:-7af2" parent="75a896ca:134d365eac8:-7b7b" source="75a896ca:134d365eac8:-7aca" target="75a896ca:134d365eac8:-7af5"><mxGeometry as="geometry" y="300.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="75a896ca:134d365eac8:-7af1" parent="75a896ca:134d365eac8:-7b7b" source="75a896ca:134d365eac8:-7b1d" target="75a896ca:134d365eac8:-7af4"><mxGeometry as="geometry" y="300.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="390.0" y="590.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="75a896ca:134d365eac8:-7af7" parent="75a896ca:134d365eac8:-7b7b" source="75a896ca:134d365eac8:-7b01" target="75a896ca:134d365eac8:-7af3"><mxGeometry as="geometry" y="300.0"><mxPoint as="sourcePoint" x="450.0" y="440.0"/><mxPoint as="targetPoint" x="390.0" y="510.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="450.0" y="510.0"/></Array></mxGeometry></ImplicitLink><BasicBlock dependsOnU="1" id="6641adef:135055938d4:-7dc0" interfaceFunctionName="CSCOPE" ordering="15" parent="75a896ca:134d365eac8:-7b7b" simulationFunctionName="cscope" simulationFunctionType="C_OR_FORTRAN" style="CSCOPE;flip=false;mirror=false"><ScilabString as="exprs" height="10" width="1"><data column="0" line="0" value="1 3 5 7 9 11 13 15"/><data column="0" line="1" value="-1"/><data column="0" line="2" value="[]"/><data column="0" line="3" value="[600;400]"/><data column="0" line="4" value="-15"/><data column="0" line="5" value="110"/><data column="0" line="6" value="5"/><data column="0" line="7" value="20"/><data column="0" line="8" value="0"/><data column="0" line="9" value=""/></ScilabString><ScilabDouble as="realParameters" height="4" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="-15.0"/><data column="0" line="2" realPart="110.0"/><data column="0" line="3" realPart="5.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="15" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="1.0"/><data column="0" line="4" realPart="3.0"/><data column="0" line="5" realPart="5.0"/><data column="0" line="6" realPart="7.0"/><data column="0" line="7" realPart="9.0"/><data column="0" line="8" realPart="11.0"/><data column="0" line="9" realPart="13.0"/><data column="0" line="10" realPart="15.0"/><data column="0" line="11" realPart="-1.0"/><data column="0" line="12" realPart="-1.0"/><data column="0" line="13" realPart="600.0"/><data column="0" line="14" realPart="400.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="680.0" y="340.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="6641adef:135055938d4:-7d05" ordering="1" parent="6641adef:135055938d4:-7dc0" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ControlPort dataType="UNKNOW_TYPE" id="6641adef:135055938d4:-7d04" ordering="1" parent="6641adef:135055938d4:-7dc0" style="ControlPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><BasicBlock angle="90" id="6641adef:135055938d4:-7dba" interfaceFunctionName="ConstantVoltage" ordering="16" parent="75a896ca:134d365eac8:-7b7b" simulationFunctionName="ConstantVoltage" simulationFunctionType="DEFAULT" style="ConstantVoltage;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="120"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="120.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ConstantVoltage"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="V"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="120.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="50.0" y="160.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="75a896ca:134d365eac8:-79b7" ordering="1" parent="6641adef:135055938d4:-7dba" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="75a896ca:134d365eac8:-79b6" ordering="1" parent="6641adef:135055938d4:-7dba" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><BasicBlock angle="90" dependsOnU="1" id="6641adef:135055938d4:-7db7" interfaceFunctionName="CurrentSensor" ordering="17" parent="75a896ca:134d365eac8:-7b7b" simulationFunctionName="CurrentSensor" simulationFunctionType="DEFAULT" style="CurrentSensor;rotation=90;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CurrentSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="i"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="240.0" y="140.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="75a896ca:134d365eac8:-7a87" ordering="2" parent="6641adef:135055938d4:-7db7" style="ExplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="26.0" y="40.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="75a896ca:134d365eac8:-7a86" ordering="1" parent="6641adef:135055938d4:-7db7" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="75a896ca:134d365eac8:-7a88" ordering="1" parent="6641adef:135055938d4:-7db7" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="6.0" y="40.0"/></ImplicitOutputPort><GroundBlock dependsOnU="1" id="6641adef:135055938d4:-7db3" interfaceFunctionName="Ground" ordering="18" parent="75a896ca:134d365eac8:-7b7b" simulationFunctionName="Ground" simulationFunctionType="DEFAULT" style="Ground;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Ground"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="190.0" y="270.0"/></GroundBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="75a896ca:134d365eac8:-7a7f" ordering="1" parent="6641adef:135055938d4:-7db3" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><Orientation as="orientation" value="NORTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock angle="90" dependsOnU="1" id="6641adef:135055938d4:-7db1" interfaceFunctionName="Resistor" ordering="19" parent="75a896ca:134d365eac8:-7b7b" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="60"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="60.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="60.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="150.0" y="80.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="75a896ca:134d365eac8:-79c7" ordering="1" parent="6641adef:135055938d4:-7db1" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="75a896ca:134d365eac8:-79c6" ordering="1" parent="6641adef:135055938d4:-7db1" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><BasicBlock angle="90" id="6641adef:135055938d4:-7dae" interfaceFunctionName="ConstantVoltage" ordering="20" parent="75a896ca:134d365eac8:-7b7b" simulationFunctionName="ConstantVoltage" simulationFunctionType="DEFAULT" style="ConstantVoltage;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="50"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="50.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ConstantVoltage"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="V"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="50.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="150.0" y="160.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="75a896ca:134d365eac8:-79bb" ordering="1" parent="6641adef:135055938d4:-7dae" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="75a896ca:134d365eac8:-79ba" ordering="1" parent="6641adef:135055938d4:-7dae" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><BasicBlock angle="90" dependsOnU="1" id="6641adef:135055938d4:-7dab" interfaceFunctionName="Resistor" ordering="21" parent="75a896ca:134d365eac8:-7b7b" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="10"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="10.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="10.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="50.0" y="70.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="75a896ca:134d365eac8:-79cb" ordering="1" parent="6641adef:135055938d4:-7dab" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="75a896ca:134d365eac8:-79ca" ordering="1" parent="6641adef:135055938d4:-7dab" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><BasicBlock angle="90" dependsOnU="1" id="6641adef:135055938d4:-7da8" interfaceFunctionName="Resistor" ordering="22" parent="75a896ca:134d365eac8:-7b7b" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="200"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="200.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="200.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="240.0" y="70.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="75a896ca:134d365eac8:-79c3" ordering="1" parent="6641adef:135055938d4:-7da8" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="75a896ca:134d365eac8:-79c2" ordering="1" parent="6641adef:135055938d4:-7da8" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><BasicBlock angle="90" dependsOnU="1" id="6641adef:135055938d4:-7da5" interfaceFunctionName="Resistor" ordering="23" parent="75a896ca:134d365eac8:-7b7b" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="50"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="50.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="50.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="370.0" y="110.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="75a896ca:134d365eac8:-79bf" ordering="1" parent="6641adef:135055938d4:-7da5" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="75a896ca:134d365eac8:-79be" ordering="1" parent="6641adef:135055938d4:-7da5" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><VoltageSensorBlock dependsOnU="1" id="6641adef:135055938d4:-7da2" interfaceFunctionName="VoltageSensor" ordering="24" parent="75a896ca:134d365eac8:-7b7b" simulationFunctionName="VoltageSensor" simulationFunctionType="DEFAULT" style="VoltageSensor;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="VoltageSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="v"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="460.0" y="50.0"/></VoltageSensorBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="75a896ca:134d365eac8:-7a39" ordering="2" parent="6641adef:135055938d4:-7da2" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="75a896ca:134d365eac8:-7a38" ordering="1" parent="6641adef:135055938d4:-7da2" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="75a896ca:134d365eac8:-7a3a" ordering="1" parent="6641adef:135055938d4:-7da2" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><Orientation as="orientation" value="SOUTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitLink id="75a896ca:134d365eac8:-7a35" parent="75a896ca:134d365eac8:-7b7b" source="75a896ca:134d365eac8:-79ca" target="75a896ca:134d365eac8:-79b7"><mxGeometry as="geometry" y="-60.0"><mxPoint as="sourcePoint" x="70.0" y="160.0"/><mxPoint as="targetPoint" x="70.0" y="110.0"/></mxGeometry></ImplicitLink><ImplicitLink id="75a896ca:134d365eac8:-7a29" parent="75a896ca:134d365eac8:-7b7b" source="75a896ca:134d365eac8:-79c7" target="75a896ca:134d365eac8:-79c3"><mxGeometry as="geometry" y="-60.0"><mxPoint as="sourcePoint" x="170.0" y="80.0"/><mxPoint as="targetPoint" x="260.0" y="60.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="170.0" y="30.0"/><mxPoint x="260.0" y="30.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="75a896ca:134d365eac8:-7a28" parent="75a896ca:134d365eac8:-7b7b" source="75a896ca:134d365eac8:-79c2" target="75a896ca:134d365eac8:-7a86"><mxGeometry as="geometry" y="-60.0"><mxPoint as="sourcePoint" x="260.0" y="110.0"/><mxPoint as="targetPoint" x="260.0" y="130.0"/></mxGeometry></ImplicitLink><ImplicitLink id="75a896ca:134d365eac8:-7a27" parent="75a896ca:134d365eac8:-7b7b" source="75a896ca:134d365eac8:-79c6" target="75a896ca:134d365eac8:-79bb"><mxGeometry as="geometry" y="-60.0"><mxPoint as="sourcePoint" x="170.0" y="120.0"/><mxPoint as="targetPoint" x="170.0" y="150.0"/></mxGeometry></ImplicitLink><SplitBlock id="6641adef:135055938d4:-7d9a" ordering="25" parent="75a896ca:134d365eac8:-7b7b" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="167.0" y="237.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="75a896ca:134d365eac8:-7a23" ordering="1" parent="6641adef:135055938d4:-7d9a" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="75a896ca:134d365eac8:-7a22" ordering="2" parent="6641adef:135055938d4:-7d9a" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="75a896ca:134d365eac8:-7a24" ordering="1" parent="6641adef:135055938d4:-7d9a" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="75a896ca:134d365eac8:-7a21" parent="75a896ca:134d365eac8:-7b7b" source="75a896ca:134d365eac8:-79b6" target="75a896ca:134d365eac8:-7a24"><mxGeometry as="geometry" y="-60.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="70.0" y="240.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="75a896ca:134d365eac8:-7a26" parent="75a896ca:134d365eac8:-7b7b" source="75a896ca:134d365eac8:-79ba" target="75a896ca:134d365eac8:-7a22"><mxGeometry as="geometry" y="-60.0"><mxPoint as="sourcePoint" x="170.0" y="200.0"/><mxPoint as="targetPoint" x="170.0" y="240.0"/></mxGeometry></ImplicitLink><SplitBlock id="6641adef:135055938d4:-7d94" ordering="26" parent="75a896ca:134d365eac8:-7b7b" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="247.0" y="237.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="75a896ca:134d365eac8:-7a1c" ordering="1" parent="6641adef:135055938d4:-7d94" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="75a896ca:134d365eac8:-7a1b" ordering="2" parent="6641adef:135055938d4:-7d94" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="75a896ca:134d365eac8:-7a1d" ordering="1" parent="6641adef:135055938d4:-7d94" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="75a896ca:134d365eac8:-7a1f" parent="75a896ca:134d365eac8:-7b7b" source="75a896ca:134d365eac8:-7a88" target="75a896ca:134d365eac8:-7a1b"><mxGeometry as="geometry" y="-60.0"><mxPoint as="sourcePoint" x="250.0" y="180.0"/><mxPoint as="targetPoint" x="250.0" y="240.0"/></mxGeometry></ImplicitLink><SplitBlock id="6641adef:135055938d4:-7d8f" ordering="27" parent="75a896ca:134d365eac8:-7b7b" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="207.0" y="237.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="75a896ca:134d365eac8:-7a15" ordering="1" parent="6641adef:135055938d4:-7d8f" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="75a896ca:134d365eac8:-7a14" ordering="2" parent="6641adef:135055938d4:-7d8f" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="75a896ca:134d365eac8:-7a16" ordering="1" parent="6641adef:135055938d4:-7d8f" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="75a896ca:134d365eac8:-7a13" parent="75a896ca:134d365eac8:-7b7b" source="75a896ca:134d365eac8:-7a23" target="75a896ca:134d365eac8:-7a16"><mxGeometry as="geometry" y="-60.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="75a896ca:134d365eac8:-7a12" parent="75a896ca:134d365eac8:-7b7b" source="75a896ca:134d365eac8:-7a1c" target="75a896ca:134d365eac8:-7a15"><mxGeometry as="geometry" y="-60.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="75a896ca:134d365eac8:-7a18" parent="75a896ca:134d365eac8:-7b7b" source="75a896ca:134d365eac8:-7a14" target="75a896ca:134d365eac8:-7a7f"><mxGeometry as="geometry" y="-60.0"><mxPoint as="sourcePoint" x="210.0" y="270.0"/><mxPoint as="targetPoint" x="210.0" y="240.0"/></mxGeometry></ImplicitLink><SplitBlock id="6641adef:135055938d4:-7d88" ordering="28" parent="75a896ca:134d365eac8:-7b7b" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="387.0" y="67.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="75a896ca:134d365eac8:-7a0e" ordering="1" parent="6641adef:135055938d4:-7d88" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="75a896ca:134d365eac8:-7a0d" ordering="2" parent="6641adef:135055938d4:-7d88" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="75a896ca:134d365eac8:-7a0f" ordering="1" parent="6641adef:135055938d4:-7d88" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="75a896ca:134d365eac8:-7a0c" parent="75a896ca:134d365eac8:-7b7b" source="75a896ca:134d365eac8:-79cb" target="75a896ca:134d365eac8:-7a0f"><mxGeometry as="geometry" y="-60.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="70.0"/><mxPoint x="170.0"/><mxPoint x="390.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="75a896ca:134d365eac8:-7a0b" parent="75a896ca:134d365eac8:-7b7b" source="75a896ca:134d365eac8:-7a0e" target="75a896ca:134d365eac8:-79bf"><mxGeometry as="geometry" y="-60.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="75a896ca:134d365eac8:-7a11" parent="75a896ca:134d365eac8:-7b7b" source="75a896ca:134d365eac8:-7a0d" target="75a896ca:134d365eac8:-7a38"><mxGeometry as="geometry" y="-60.0"><mxPoint as="sourcePoint" x="460.0" y="70.0"/><mxPoint as="targetPoint" x="390.0" y="70.0"/></mxGeometry></ImplicitLink><SplitBlock id="6641adef:135055938d4:-7d81" ordering="29" parent="75a896ca:134d365eac8:-7b7b" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="387.0" y="187.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="75a896ca:134d365eac8:-7a07" ordering="1" parent="6641adef:135055938d4:-7d81" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="75a896ca:134d365eac8:-7a06" ordering="2" parent="6641adef:135055938d4:-7d81" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="75a896ca:134d365eac8:-7a08" ordering="1" parent="6641adef:135055938d4:-7d81" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="75a896ca:134d365eac8:-7a05" parent="75a896ca:134d365eac8:-7b7b" source="75a896ca:134d365eac8:-79be" target="75a896ca:134d365eac8:-7a08"><mxGeometry as="geometry" y="-60.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="75a896ca:134d365eac8:-7a04" parent="75a896ca:134d365eac8:-7b7b" source="75a896ca:134d365eac8:-7a07" target="75a896ca:134d365eac8:-7a1d"><mxGeometry as="geometry" y="-60.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="390.0" y="240.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="75a896ca:134d365eac8:-7a0a" parent="75a896ca:134d365eac8:-7b7b" source="75a896ca:134d365eac8:-7a3a" target="75a896ca:134d365eac8:-7a06"><mxGeometry as="geometry" y="-60.0"><mxPoint as="sourcePoint" x="480.0" y="90.0"/><mxPoint as="targetPoint" x="390.0" y="190.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="480.0" y="190.0"/></Array></mxGeometry></ImplicitLink><BasicBlock blockType="h" id="6641adef:135055938d4:-7d78" interfaceFunctionName="CLOCK_c" ordering="30" parent="75a896ca:134d365eac8:-7b7b" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="300.0" y="100.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="75a896ca:134d365eac8:-799f" ordering="1" parent="6641adef:135055938d4:-7d78" style="CommandPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><BasicBlock dependsOnU="1" id="6641adef:135055938d4:-7d76" interfaceFunctionName="MUX" ordering="31" parent="75a896ca:134d365eac8:-7b7b" simulationFunctionName="multiplex" simulationFunctionType="C_OR_FORTRAN" style="MUX;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="2"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="20.0" width="30.0" x="530.0" y="240.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="75a896ca:134d365eac8:-7965" ordering="1" parent="6641adef:135055938d4:-7d76" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ExplicitInputPort><ExplicitInputPort dataColumns="1" dataLines="-2" dataType="REAL_MATRIX" id="75a896ca:134d365eac8:-7964" ordering="2" parent="6641adef:135055938d4:-7d76" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitOutputPort dataColumns="1" dataLines="0" dataType="REAL_MATRIX" id="75a896ca:134d365eac8:-7966" ordering="1" parent="6641adef:135055938d4:-7d76" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="30.0" y="6.0"/></ExplicitOutputPort><ExplicitLink id="75a896ca:134d365eac8:-795a" parent="75a896ca:134d365eac8:-7b7b" source="75a896ca:134d365eac8:-7a39" target="75a896ca:134d365eac8:-7965"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="500.0" y="70.0"/><mxPoint as="targetPoint" x="520.0" y="190.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="500.0" y="240.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="75a896ca:134d365eac8:-7959" parent="75a896ca:134d365eac8:-7b7b" source="75a896ca:134d365eac8:-7b00" target="75a896ca:134d365eac8:-7964"><mxGeometry as="geometry" y="20.0"><mxPoint as="sourcePoint" x="530.0" y="230.0"/><mxPoint as="targetPoint" x="470.0" y="440.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="500.0" y="420.0"/><mxPoint x="500.0" y="260.0"/></Array></mxGeometry></ExplicitLink><BasicBlock dependsOnU="1" id="6641adef:135055938d4:-7d6e" interfaceFunctionName="MUX" ordering="32" parent="75a896ca:134d365eac8:-7b7b" simulationFunctionName="multiplex" simulationFunctionType="C_OR_FORTRAN" style="MUX;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="2"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="20.0" width="30.0" x="530.0" y="490.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="75a896ca:134d365eac8:-7947" ordering="1" parent="6641adef:135055938d4:-7d6e" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ExplicitInputPort><ExplicitInputPort dataColumns="1" dataLines="-2" dataType="REAL_MATRIX" id="75a896ca:134d365eac8:-7946" ordering="2" parent="6641adef:135055938d4:-7d6e" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitOutputPort dataColumns="1" dataLines="0" dataType="REAL_MATRIX" id="75a896ca:134d365eac8:-7948" ordering="1" parent="6641adef:135055938d4:-7d6e" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="30.0" y="6.0"/></ExplicitOutputPort><ExplicitLink id="75a896ca:134d365eac8:-7939" parent="75a896ca:134d365eac8:-7b7b" source="75a896ca:134d365eac8:-7a87" target="75a896ca:134d365eac8:-7947"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="270.0" y="180.0"/><mxPoint as="targetPoint" x="520.0" y="490.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="270.0" y="490.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="75a896ca:134d365eac8:-7938" parent="75a896ca:134d365eac8:-7b7b" source="75a896ca:134d365eac8:-7b5a" target="75a896ca:134d365eac8:-7946"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="180.0" y="550.0"/><mxPoint as="targetPoint" x="520.0" y="510.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="510.0" y="550.0"/><mxPoint x="510.0" y="510.0"/></Array></mxGeometry></ExplicitLink><BasicBlock dependsOnU="1" id="6641adef:135055938d4:-7d28" interfaceFunctionName="MUX" ordering="33" parent="75a896ca:134d365eac8:-7b7b" simulationFunctionName="multiplex" simulationFunctionType="C_OR_FORTRAN" style="MUX;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="2"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="20.0" width="30.0" x="620.0" y="350.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="6641adef:135055938d4:-7d26" ordering="1" parent="6641adef:135055938d4:-7d28" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ExplicitInputPort><ExplicitInputPort dataColumns="1" dataLines="-2" dataType="REAL_MATRIX" id="6641adef:135055938d4:-7d25" ordering="2" parent="6641adef:135055938d4:-7d28" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitOutputPort dataColumns="1" dataLines="0" dataType="REAL_MATRIX" id="6641adef:135055938d4:-7d27" ordering="1" parent="6641adef:135055938d4:-7d28" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="30.0" y="6.0"/></ExplicitOutputPort><ExplicitLink id="6641adef:135055938d4:-7d0f" parent="75a896ca:134d365eac8:-7b7b" source="75a896ca:134d365eac8:-7966" target="6641adef:135055938d4:-7d26"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="560.0" y="250.0"/><mxPoint as="targetPoint" x="620.0" y="350.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="590.0" y="250.0"/><mxPoint x="590.0" y="350.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="6641adef:135055938d4:-7d0e" parent="75a896ca:134d365eac8:-7b7b" source="75a896ca:134d365eac8:-7948" target="6641adef:135055938d4:-7d25"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="620.0" y="370.0"/><mxPoint as="targetPoint" x="570.0" y="500.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="590.0" y="500.0"/><mxPoint x="590.0" y="370.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="6641adef:135055938d4:-7d08" parent="75a896ca:134d365eac8:-7b7b" source="6641adef:135055938d4:-7d27" target="6641adef:135055938d4:-7d05"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="650.0" y="360.0"/><mxPoint as="targetPoint" x="670.0" y="360.0"/></mxGeometry></ExplicitLink><BasicBlock angle="90" id="6641adef:135055938d4:-7e0a" interfaceFunctionName="ConstantVoltage" ordering="34" parent="75a896ca:134d365eac8:-7b7b" simulationFunctionName="ConstantVoltage" simulationFunctionType="DEFAULT" style="ConstantVoltage;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="50"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="50.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ConstantVoltage"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="V"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="50.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="30.0" y="520.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="75a896ca:134d365eac8:-7abb" ordering="1" parent="6641adef:135055938d4:-7e0a" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="75a896ca:134d365eac8:-7aba" ordering="1" parent="6641adef:135055938d4:-7e0a" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><BasicBlock blockType="h" id="5635043b:13894cfb31b:-7e1b" interfaceFunctionName="CLOCK_c" ordering="35" parent="75a896ca:134d365eac8:-7b7b" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="119.0"/><data column="1" line="0" realPart="-150.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-73e75f0:167968eb73f:-786d"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-73e75f0:167968eb73f:-786d"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.1"/><data column="0" line="1" value="0.1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.1"/><data column="0" line="1" realPart="0.1"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.1"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-73e75f0:167968eb73f:-786b"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-73e75f0:167968eb73f:-786b"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="123.3773266666667"/><data column="1" line="0" realPart="-169.33333333333331"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="7.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="5.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-73e75f0:167968eb73f:-7868"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-73e75f0:167968eb73f:-7868"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="100.0"/><data column="0" line="2" realPart="133.8773266666667"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-44.0"/><data column="0" line="1" realPart="-180.0"/><data column="0" line="2" realPart="-158.33333333333331"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="132.71066000000005"/><data column="0" line="1" realPart="149.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-173.33333333333331"/><data column="0" line="1" realPart="-126.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="135.04399333333336"/><data column="0" line="1" realPart="140.70999999999998"/><data column="0" line="2" realPart="100.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-173.33333333333331"/><data column="0" line="1" realPart="-50.0"/><data column="0" line="2" realPart="-50.0"/><data column="0" line="3" realPart="4.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="680.0" y="270.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="5635043b:13894cfb31b:-7e1a" ordering="1" parent="5635043b:13894cfb31b:-7e1b" style="CommandPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><CommandControlLink id="5635043b:13894cfb31b:-7e17" parent="75a896ca:134d365eac8:-7b7b" source="5635043b:13894cfb31b:-7e1a" target="6641adef:135055938d4:-7d04"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="700.0" y="314.0"/><mxPoint as="targetPoint" x="700.0" y="334.0"/></mxGeometry></CommandControlLink></root></mxGraphModel><mxCell as="defaultParent" id="75a896ca:134d365eac8:-7b7b" parent="75a896ca:134d365eac8:-7b7a"/><mxPoint as="origin" y="-6.0"/></XcosDiagram>
\ No newline at end of file diff --git a/Working_Examples/215/CH8/EX8.11/Figure8_11.jpg b/Working_Examples/215/CH8/EX8.11/Figure8_11.jpg Binary files differnew file mode 100755 index 0000000..3f4de7d --- /dev/null +++ b/Working_Examples/215/CH8/EX8.11/Figure8_11.jpg diff --git a/Working_Examples/215/CH8/EX8.11/Figure8_11_xcos.jpg b/Working_Examples/215/CH8/EX8.11/Figure8_11_xcos.jpg Binary files differnew file mode 100755 index 0000000..196aeb3 --- /dev/null +++ b/Working_Examples/215/CH8/EX8.11/Figure8_11_xcos.jpg diff --git a/Working_Examples/215/CH8/EX8.11/ex8_11.xcos b/Working_Examples/215/CH8/EX8.11/ex8_11.xcos new file mode 100755 index 0000000..767ad5c --- /dev/null +++ b/Working_Examples/215/CH8/EX8.11/ex8_11.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" finalIntegrationTime="0.01" title="ex8_11"><!--Xcos - 1.0 - scilab-5.5.2 - 20160406 2040--><mxGraphModel as="model"><root><mxCell id="-5e5c20b5:13506c8a689:-7fff"/><mxCell id="-5e5c20b5:13506c8a689:-8000" parent="-5e5c20b5:13506c8a689:-7fff"/><BasicBlock dependsOnU="1" id="-5e5c20b5:13506c8a689:-7fdc" interfaceFunctionName="EXPRESSION" ordering="1" parent="-5e5c20b5:13506c8a689:-8000" simulationFunctionName="evaluate_expr" simulationFunctionType="C_OR_FORTRAN" style="EXPRESSION;flip=false;mirror=false"><ScilabString as="exprs" height="3" width="1"><data column="0" line="0" value="1"/><data column="0" line="1" value="5*exp(-2000*u1)"/><data column="0" line="2" value="1"/></ScilabString><ScilabDouble as="realParameters" height="2" width="1"><data column="0" line="0" realPart="5.0"/><data column="0" line="1" realPart="2000.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="14" width="1"><data column="0" line="0" realPart="6.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="6.0"/><data column="0" line="3" realPart="2.0"/><data column="0" line="4" realPart="2.0"/><data column="0" line="5" realPart="1.0"/><data column="0" line="6" realPart="5.0"/><data column="0" line="7" realPart="3.0"/><data column="0" line="8" realPart="5.0"/><data column="0" line="9" realPart="99.0"/><data column="0" line="10" realPart="5.0"/><data column="0" line="11" realPart="104.0"/><data column="0" line="12" realPart="5.0"/><data column="0" line="13" realPart="3.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="60.0" width="110.0" x="90.0" y="210.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5e5c20b5:13506c8a689:-7f04" ordering="1" parent="-5e5c20b5:13506c8a689:-7fdc" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="110.0" y="26.0"/></ExplicitOutputPort><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="-5e5c20b5:13506c8a689:-7f05" ordering="1" parent="-5e5c20b5:13506c8a689:-7fdc" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="26.0"/></ExplicitInputPort><BasicBlock blockType="h" id="-5e5c20b5:13506c8a689:-7fcf" interfaceFunctionName="CLOCK_c" ordering="2" parent="-5e5c20b5:13506c8a689:-8000" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="119.0"/><data column="1" line="0" realPart="-150.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-73e75f0:167968eb73f:-7821"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-73e75f0:167968eb73f:-7821"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.0001"/><data column="0" line="1" value="0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="1.0E-4"/><data column="0" line="1" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-73e75f0:167968eb73f:-781f"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-73e75f0:167968eb73f:-781f"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="123.3773266666667"/><data column="1" line="0" realPart="-169.33333333333331"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="7.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="5.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-73e75f0:167968eb73f:-781c"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-73e75f0:167968eb73f:-781c"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="100.0"/><data column="0" line="2" realPart="133.8773266666667"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-44.0"/><data column="0" line="1" realPart="-180.0"/><data column="0" line="2" realPart="-158.33333333333331"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="132.71066000000005"/><data column="0" line="1" realPart="149.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-173.33333333333331"/><data column="0" line="1" realPart="-126.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="135.04399333333336"/><data column="0" line="1" realPart="140.70999999999998"/><data column="0" line="2" realPart="100.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-173.33333333333331"/><data column="0" line="1" realPart="-50.0"/><data column="0" line="2" realPart="-50.0"/><data column="0" line="3" realPart="4.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="620.0" y="20.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="-5e5c20b5:13506c8a689:-7ee2" ordering="1" parent="-5e5c20b5:13506c8a689:-7fcf" style="CommandPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><BasicBlock dependsOnT="1" id="-5e5c20b5:13506c8a689:-7fc8" interfaceFunctionName="TIME_f" ordering="3" parent="-5e5c20b5:13506c8a689:-8000" simulationFunctionName="timblk" simulationFunctionType="DEFAULT" style="TIME_f;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="20.0" y="220.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5e5c20b5:13506c8a689:-7fc7" ordering="1" parent="-5e5c20b5:13506c8a689:-7fc8" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ExplicitLink id="-5e5c20b5:13506c8a689:-7fc6" parent="-5e5c20b5:13506c8a689:-8000" source="-5e5c20b5:13506c8a689:-7fc7" target="-5e5c20b5:13506c8a689:-7f05"><mxGeometry as="geometry" y="70.0"><mxPoint as="sourcePoint" x="64.0" y="240.0"/><mxPoint as="targetPoint" x="90.0" y="240.0"/></mxGeometry></ExplicitLink><BasicBlock dependsOnU="1" id="-5e5c20b5:13506c8a689:-7fbe" interfaceFunctionName="CSCOPE" ordering="4" parent="-5e5c20b5:13506c8a689:-8000" simulationFunctionName="cscope" simulationFunctionType="C_OR_FORTRAN" style="CSCOPE;flip=false;mirror=false"><ScilabString as="exprs" height="10" width="1"><data column="0" line="0" value="1 3 5 7 9 11 13 15"/><data column="0" line="1" value="-1"/><data column="0" line="2" value="[]"/><data column="0" line="3" value="[600;400]"/><data column="0" line="4" value="-1"/><data column="0" line="5" value="11"/><data column="0" line="6" value="0.01"/><data column="0" line="7" value="20"/><data column="0" line="8" value="0"/><data column="0" line="9" value=""/></ScilabString><ScilabDouble as="realParameters" height="4" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="-1.0"/><data column="0" line="2" realPart="11.0"/><data column="0" line="3" realPart="0.01"/></ScilabDouble><ScilabDouble as="integerParameters" height="15" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="1.0"/><data column="0" line="4" realPart="3.0"/><data column="0" line="5" realPart="5.0"/><data column="0" line="6" realPart="7.0"/><data column="0" line="7" realPart="9.0"/><data column="0" line="8" realPart="11.0"/><data column="0" line="9" realPart="13.0"/><data column="0" line="10" realPart="15.0"/><data column="0" line="11" realPart="-1.0"/><data column="0" line="12" realPart="-1.0"/><data column="0" line="13" realPart="600.0"/><data column="0" line="14" realPart="400.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="620.0" y="100.0"/></BasicBlock><ControlPort dataType="UNKNOW_TYPE" id="-5e5c20b5:13506c8a689:-7ede" ordering="1" parent="-5e5c20b5:13506c8a689:-7fbe" style="ControlPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="-5e5c20b5:13506c8a689:-7edf" ordering="1" parent="-5e5c20b5:13506c8a689:-7fbe" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><GroundBlock dependsOnU="1" id="-5e5c20b5:13506c8a689:-7fb6" interfaceFunctionName="Ground" ordering="5" parent="-5e5c20b5:13506c8a689:-8000" simulationFunctionName="Ground" simulationFunctionType="DEFAULT" style="Ground;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Ground"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="320.0" y="330.0"/></GroundBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5e5c20b5:13506c8a689:-7fb5" ordering="1" parent="-5e5c20b5:13506c8a689:-7fb6" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><Orientation as="orientation" value="NORTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock angle="90" dependsOnU="1" id="-5e5c20b5:13506c8a689:-7fad" interfaceFunctionName="Capacitor" ordering="6" parent="-5e5c20b5:13506c8a689:-8000" simulationFunctionName="Capacitor" simulationFunctionType="DEFAULT" style="Capacitor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="2" width="1"><data column="0" line="0" value="22e-6"/><data column="0" line="1" value="0"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="2.2E-5"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Capacitor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="2"><data column="0" line="0" value="C"/><data column="1" line="0" value="v"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="2.2E-5"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="430.0" y="180.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5e5c20b5:13506c8a689:-7f38" ordering="1" parent="-5e5c20b5:13506c8a689:-7fad" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5e5c20b5:13506c8a689:-7f39" ordering="1" parent="-5e5c20b5:13506c8a689:-7fad" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="-5e5c20b5:13506c8a689:-7fa3" interfaceFunctionName="Resistor" ordering="7" parent="-5e5c20b5:13506c8a689:-8000" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="10"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="10.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="10.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="380.0" y="100.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5e5c20b5:13506c8a689:-7ee5" ordering="1" parent="-5e5c20b5:13506c8a689:-7fa3" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5e5c20b5:13506c8a689:-7ee6" ordering="1" parent="-5e5c20b5:13506c8a689:-7fa3" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="-5e5c20b5:13506c8a689:-7f99" interfaceFunctionName="PotentialSensor" ordering="8" parent="-5e5c20b5:13506c8a689:-8000" simulationFunctionName="PotentialSensor" simulationFunctionType="DEFAULT" style="PotentialSensor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="PotentialSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="v"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="500.0" y="100.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5e5c20b5:13506c8a689:-7f98" ordering="1" parent="-5e5c20b5:13506c8a689:-7f99" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5e5c20b5:13506c8a689:-7f97" ordering="1" parent="-5e5c20b5:13506c8a689:-7f99" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><BasicBlock angle="270" dependsOnT="1" id="-5e5c20b5:13506c8a689:-7f85" interfaceFunctionName="CCS" ordering="9" parent="-5e5c20b5:13506c8a689:-8000" simulationFunctionName="CCS" simulationFunctionType="DEFAULT" style="CCS;rotation=270;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CCS"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="Iin"/><data column="0" line="1" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="240.0" y="200.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5e5c20b5:13506c8a689:-7f84" ordering="1" parent="-5e5c20b5:13506c8a689:-7f85" style="ImplicitOutputPort;align=center;verticalAlign=top;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitOutputPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5e5c20b5:13506c8a689:-7f83" ordering="1" parent="-5e5c20b5:13506c8a689:-7f85" style="ExplicitInputPort;align=center;verticalAlign=bottom;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="6.0" y="40.0"/></ExplicitInputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5e5c20b5:13506c8a689:-7f82" ordering="2" parent="-5e5c20b5:13506c8a689:-7f85" style="ImplicitInputPort;align=center;verticalAlign=bottom;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="26.0" y="40.0"/></ImplicitInputPort><ExplicitLink id="-5e5c20b5:13506c8a689:-7f7d" parent="-5e5c20b5:13506c8a689:-8000" source="-5e5c20b5:13506c8a689:-7f04" target="-5e5c20b5:13506c8a689:-7f83"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="204.0" y="170.0"/><mxPoint as="targetPoint" x="250.0" y="240.0"/></mxGeometry></ExplicitLink><SplitBlock id="-5e5c20b5:13506c8a689:-7f5a" ordering="10" parent="-5e5c20b5:13506c8a689:-8000" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="337.0" y="287.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="-5e5c20b5:13506c8a689:-7f59" ordering="1" parent="-5e5c20b5:13506c8a689:-7f5a" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5e5c20b5:13506c8a689:-7f58" ordering="1" parent="-5e5c20b5:13506c8a689:-7f5a" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5e5c20b5:13506c8a689:-7f57" ordering="2" parent="-5e5c20b5:13506c8a689:-7f5a" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitLink id="-5e5c20b5:13506c8a689:-7f56" parent="-5e5c20b5:13506c8a689:-8000" source="-5e5c20b5:13506c8a689:-7f38" target="-5e5c20b5:13506c8a689:-7f59"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="450.0" y="290.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-5e5c20b5:13506c8a689:-7f55" parent="-5e5c20b5:13506c8a689:-8000" source="-5e5c20b5:13506c8a689:-7f58" target="-5e5c20b5:13506c8a689:-7f82"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="270.0" y="290.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="-5e5c20b5:13506c8a689:-7f4a" ordering="11" parent="-5e5c20b5:13506c8a689:-8000" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="447.0" y="117.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="-5e5c20b5:13506c8a689:-7f49" ordering="1" parent="-5e5c20b5:13506c8a689:-7f4a" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5e5c20b5:13506c8a689:-7f48" ordering="1" parent="-5e5c20b5:13506c8a689:-7f4a" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5e5c20b5:13506c8a689:-7f47" ordering="2" parent="-5e5c20b5:13506c8a689:-7f4a" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitLink id="-5e5c20b5:13506c8a689:-7f46" parent="-5e5c20b5:13506c8a689:-8000" source="-5e5c20b5:13506c8a689:-7ee5" target="-5e5c20b5:13506c8a689:-7f49"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-5e5c20b5:13506c8a689:-7f45" parent="-5e5c20b5:13506c8a689:-8000" source="-5e5c20b5:13506c8a689:-7f48" target="-5e5c20b5:13506c8a689:-7f39"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-5e5c20b5:13506c8a689:-7f4b" parent="-5e5c20b5:13506c8a689:-8000" source="-5e5c20b5:13506c8a689:-7f47" target="-5e5c20b5:13506c8a689:-7f97"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="496.0" y="120.0"/><mxPoint as="targetPoint" x="450.0" y="120.0"/></mxGeometry></ImplicitLink><ExplicitLink id="-5e5c20b5:13506c8a689:-7f44" parent="-5e5c20b5:13506c8a689:-8000" source="-5e5c20b5:13506c8a689:-7f98" target="-5e5c20b5:13506c8a689:-7edf"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="544.0" y="120.0"/><mxPoint as="targetPoint" x="610.0" y="170.0"/></mxGeometry></ExplicitLink><CommandControlLink id="-5e5c20b5:13506c8a689:-7f43" parent="-5e5c20b5:13506c8a689:-8000" source="-5e5c20b5:13506c8a689:-7ee2" target="-5e5c20b5:13506c8a689:-7ede"><mxGeometry as="geometry" y="-50.0"><mxPoint as="sourcePoint" x="640.0" y="64.0"/><mxPoint as="targetPoint" x="640.0" y="100.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="640.0" y="100.0"/></Array></mxGeometry></CommandControlLink><BasicBlock angle="90" dependsOnU="1" id="-5e5c20b5:13506c8a689:-7eff" interfaceFunctionName="Resistor" ordering="12" parent="-5e5c20b5:13506c8a689:-8000" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="4.7"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="4.7"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.7"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="320.0" y="190.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5e5c20b5:13506c8a689:-7ee9" ordering="1" parent="-5e5c20b5:13506c8a689:-7eff" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5e5c20b5:13506c8a689:-7eea" ordering="1" parent="-5e5c20b5:13506c8a689:-7eff" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><SplitBlock id="-5e5c20b5:13506c8a689:-7ef8" ordering="13" parent="-5e5c20b5:13506c8a689:-8000" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="337.0" y="287.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="-5e5c20b5:13506c8a689:-7ef7" ordering="1" parent="-5e5c20b5:13506c8a689:-7ef8" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5e5c20b5:13506c8a689:-7ef6" ordering="1" parent="-5e5c20b5:13506c8a689:-7ef8" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5e5c20b5:13506c8a689:-7ef5" ordering="2" parent="-5e5c20b5:13506c8a689:-7ef8" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitLink id="-5e5c20b5:13506c8a689:-7ef4" parent="-5e5c20b5:13506c8a689:-8000" source="-5e5c20b5:13506c8a689:-7f57" target="-5e5c20b5:13506c8a689:-7ef7"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-5e5c20b5:13506c8a689:-7ef3" parent="-5e5c20b5:13506c8a689:-8000" source="-5e5c20b5:13506c8a689:-7ef6" target="-5e5c20b5:13506c8a689:-7fb5"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-5e5c20b5:13506c8a689:-7ef9" parent="-5e5c20b5:13506c8a689:-8000" source="-5e5c20b5:13506c8a689:-7ee9" target="-5e5c20b5:13506c8a689:-7ef5"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="340.0" y="234.0"/><mxPoint as="targetPoint" x="340.0" y="290.0"/></mxGeometry></ImplicitLink><SplitBlock id="-5e5c20b5:13506c8a689:-7ef1" ordering="14" parent="-5e5c20b5:13506c8a689:-8000" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="337.0" y="117.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="-5e5c20b5:13506c8a689:-7ef0" ordering="1" parent="-5e5c20b5:13506c8a689:-7ef1" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5e5c20b5:13506c8a689:-7eef" ordering="1" parent="-5e5c20b5:13506c8a689:-7ef1" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-5e5c20b5:13506c8a689:-7eee" ordering="2" parent="-5e5c20b5:13506c8a689:-7ef1" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitLink id="-5e5c20b5:13506c8a689:-7eed" parent="-5e5c20b5:13506c8a689:-8000" source="-5e5c20b5:13506c8a689:-7f84" target="-5e5c20b5:13506c8a689:-7ef0"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="260.0" y="120.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-5e5c20b5:13506c8a689:-7eec" parent="-5e5c20b5:13506c8a689:-8000" source="-5e5c20b5:13506c8a689:-7eef" target="-5e5c20b5:13506c8a689:-7ee6"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-5e5c20b5:13506c8a689:-7ef2" parent="-5e5c20b5:13506c8a689:-8000" source="-5e5c20b5:13506c8a689:-7eee" target="-5e5c20b5:13506c8a689:-7eea"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="340.0" y="186.0"/><mxPoint as="targetPoint" x="340.0" y="120.0"/></mxGeometry></ImplicitLink></root></mxGraphModel><mxCell as="defaultParent" id="-5e5c20b5:13506c8a689:-8000" parent="-5e5c20b5:13506c8a689:-7fff"/></XcosDiagram>
\ No newline at end of file diff --git a/Working_Examples/215/CH8/EX8.2/Figure8_2.jpg b/Working_Examples/215/CH8/EX8.2/Figure8_2.jpg Binary files differnew file mode 100755 index 0000000..6d247af --- /dev/null +++ b/Working_Examples/215/CH8/EX8.2/Figure8_2.jpg diff --git a/Working_Examples/215/CH8/EX8.2/Figure8_2_xcos.jpg b/Working_Examples/215/CH8/EX8.2/Figure8_2_xcos.jpg Binary files differnew file mode 100755 index 0000000..279f18a --- /dev/null +++ b/Working_Examples/215/CH8/EX8.2/Figure8_2_xcos.jpg diff --git a/Working_Examples/215/CH8/EX8.2/ex8_2.xcos b/Working_Examples/215/CH8/EX8.2/ex8_2.xcos new file mode 100755 index 0000000..422bb9e --- /dev/null +++ b/Working_Examples/215/CH8/EX8.2/ex8_2.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" finalIntegrationTime="1.0" title="ex8_2"><!--Xcos - 1.0 - scilab-5.5.2 - 20160406 2040--><mxGraphModel as="model"><root><mxCell id="-29171e7b:13894ec359c:-7fff"/><mxCell id="-29171e7b:13894ec359c:-8000" parent="-29171e7b:13894ec359c:-7fff"/><BasicBlock blockType="h" id="-29171e7b:13894ec359c:-7fe0" interfaceFunctionName="STEP_FUNCTION" ordering="1" parent="-29171e7b:13894ec359c:-8000" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="STEP_FUNCTION;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="STEP_FUNCTION"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-4"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="14.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=" "/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="3" width="1"><data column="0" line="0" value="1"/><data column="0" line="1" value="0"/><data column="0" line="2" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"STEP",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="STEP"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="step_func"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="true"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-3e07f539:168315200c0:-7f38"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="STEP"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-3e07f539:168315200c0:-7f38"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="108.57143300000001"/><data column="1" line="0" realPart="-70.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"OUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="OUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-2.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-3e07f539:168315200c0:-7f34"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="OUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-3e07f539:168315200c0:-7f34"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="6" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="100.00000299999999"/><data column="0" line="2" realPart="61.478395"/><data column="0" line="3" realPart="61.478395"/><data column="0" line="4" realPart="100.00000299999999"/><data column="0" line="5" realPart="60.0"/></ScilabDouble><ScilabDouble height="6" width="1"><data column="0" line="0" realPart="-44.0"/><data column="0" line="1" realPart="-150.39289999999994"/><data column="0" line="2" realPart="-150.39289999999994"/><data column="0" line="3" realPart="-60.69677999999999"/><data column="0" line="4" realPart="-60.69677999999999"/><data column="0" line="5" realPart="4.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="84.0"/><data column="0" line="1" realPart="124.57143300000001"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-20.0"/><data column="0" line="1" realPart="-60.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="10.0" y="190.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataType="REAL_MATRIX" id="-29171e7b:13894ec359c:-7f7a" ordering="1" parent="-29171e7b:13894ec359c:-7fe0" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><Summation dependsOnU="1" id="-29171e7b:13894ec359c:-7fd5" interfaceFunctionName="SUMMATION" ordering="2" parent="-29171e7b:13894ec359c:-8000" simulationFunctionName="summation" simulationFunctionType="C_OR_FORTRAN" style="SUMMATION;flip=false;mirror=false" value="+"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="[1;-1]"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="2" width="1"><data column="0" line="0" realPart="1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="110.0" y="200.0"/></Summation><ExplicitOutputPort dataType="REAL_MATRIX" id="-29171e7b:13894ec359c:-7fd4" ordering="1" parent="-29171e7b:13894ec359c:-7fd5" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ExplicitInputPort dataType="REAL_MATRIX" id="-29171e7b:13894ec359c:-7fd3" ordering="1" parent="-29171e7b:13894ec359c:-7fd5" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" value="+"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ExplicitInputPort><ExplicitInputPort dataType="REAL_MATRIX" id="-29171e7b:13894ec359c:-7fd2" ordering="2" parent="-29171e7b:13894ec359c:-7fd5" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" value="-"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="26.0"/></ExplicitInputPort><BasicBlock dependsOnU="1" id="-29171e7b:13894ec359c:-7fca" interfaceFunctionName="GAINBLK_f" ordering="3" parent="-29171e7b:13894ec359c:-8000" simulationFunctionName="gain" simulationFunctionType="DEFAULT" style="GAINBLK_f;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="50"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="50.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="50.0" width="40.0" x="230.0" y="200.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-29171e7b:13894ec359c:-7f90" ordering="1" parent="-29171e7b:13894ec359c:-7fca" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-29171e7b:13894ec359c:-7f91" ordering="1" parent="-29171e7b:13894ec359c:-7fca" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><BasicBlock angle="180" dependsOnU="1" id="-29171e7b:13894ec359c:-7fc7" interfaceFunctionName="GAINBLK_f" ordering="4" parent="-29171e7b:13894ec359c:-8000" simulationFunctionName="gain" simulationFunctionType="DEFAULT" style="GAINBLK_f;rotation=180;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="0.2"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="0.2"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="50.0" width="40.0" x="240.0" y="340.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-29171e7b:13894ec359c:-7f8c" ordering="1" parent="-29171e7b:13894ec359c:-7fc7" style="ExplicitOutputPort;align=left;verticalAlign=middle;spacing=10;rotation=180;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitOutputPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-29171e7b:13894ec359c:-7f8d" ordering="1" parent="-29171e7b:13894ec359c:-7fc7" style="ExplicitInputPort;align=right;verticalAlign=middle;spacing=10;rotation=180;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitInputPort><BasicBlock dependsOnT="1" id="-29171e7b:13894ec359c:-7fbd" interfaceFunctionName="INTEGRAL_m" ordering="5" parent="-29171e7b:13894ec359c:-8000" simulationFunctionName="integral_func" simulationFunctionType="C_OR_FORTRAN" style="INTEGRAL_m;flip=false;mirror=false"><ScilabString as="exprs" height="5" width="1"><data column="0" line="0" value="-2.4"/><data column="0" line="1" value="0"/><data column="0" line="2" value="0"/><data column="0" line="3" value="1"/><data column="0" line="4" value="-1"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="state" height="1" width="1"><data column="0" line="0" realPart="-2.4"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="340.0" y="200.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-29171e7b:13894ec359c:-7f40" ordering="1" parent="-29171e7b:13894ec359c:-7fbd" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-29171e7b:13894ec359c:-7f41" ordering="1" parent="-29171e7b:13894ec359c:-7fbd" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><BasicBlock dependsOnU="1" id="-29171e7b:13894ec359c:-7fb7" interfaceFunctionName="GAINBLK_f" ordering="6" parent="-29171e7b:13894ec359c:-8000" simulationFunctionName="gain" simulationFunctionType="DEFAULT" style="GAINBLK_f;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="40"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="40.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="50.0" width="40.0" x="460.0" y="200.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-29171e7b:13894ec359c:-7f6e" ordering="1" parent="-29171e7b:13894ec359c:-7fb7" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-29171e7b:13894ec359c:-7f6f" ordering="1" parent="-29171e7b:13894ec359c:-7fb7" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><BasicBlock blockType="h" id="-29171e7b:13894ec359c:-7fac" interfaceFunctionName="CLOCK_c" ordering="7" parent="-29171e7b:13894ec359c:-8000" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="119.0"/><data column="1" line="0" realPart="-150.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-3e07f539:168315200c0:-7f2e"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-3e07f539:168315200c0:-7f2e"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.001"/><data column="0" line="1" value="0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.001"/><data column="0" line="1" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-3e07f539:168315200c0:-7f2c"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-3e07f539:168315200c0:-7f2c"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="123.3773266666667"/><data column="1" line="0" realPart="-169.33333333333331"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="7.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="5.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-3e07f539:168315200c0:-7f29"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-3e07f539:168315200c0:-7f29"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="100.0"/><data column="0" line="2" realPart="133.8773266666667"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-44.0"/><data column="0" line="1" realPart="-180.0"/><data column="0" line="2" realPart="-158.33333333333331"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="132.71066000000005"/><data column="0" line="1" realPart="149.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-173.33333333333331"/><data column="0" line="1" realPart="-126.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="135.04399333333336"/><data column="0" line="1" realPart="140.70999999999998"/><data column="0" line="2" realPart="100.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-173.33333333333331"/><data column="0" line="1" realPart="-50.0"/><data column="0" line="2" realPart="-50.0"/><data column="0" line="3" realPart="4.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="550.0" y="130.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="-29171e7b:13894ec359c:-7f68" ordering="1" parent="-29171e7b:13894ec359c:-7fac" style="CommandPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><BasicBlock dependsOnU="1" id="-29171e7b:13894ec359c:-7fa3" interfaceFunctionName="CSCOPE" ordering="8" parent="-29171e7b:13894ec359c:-8000" simulationFunctionName="cscope" simulationFunctionType="C_OR_FORTRAN" style="CSCOPE;flip=false;mirror=false"><ScilabString as="exprs" height="10" width="1"><data column="0" line="0" value="1 3 5 7 9 11 13 15"/><data column="0" line="1" value="-1"/><data column="0" line="2" value="[]"/><data column="0" line="3" value="[600;400]"/><data column="0" line="4" value="-100"/><data column="0" line="5" value="0"/><data column="0" line="6" value="1"/><data column="0" line="7" value="20"/><data column="0" line="8" value="0"/><data column="0" line="9" value=""/></ScilabString><ScilabDouble as="realParameters" height="4" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="-100.0"/><data column="0" line="2" realPart="0.0"/><data column="0" line="3" realPart="1.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="15" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="1.0"/><data column="0" line="4" realPart="3.0"/><data column="0" line="5" realPart="5.0"/><data column="0" line="6" realPart="7.0"/><data column="0" line="7" realPart="9.0"/><data column="0" line="8" realPart="11.0"/><data column="0" line="9" realPart="13.0"/><data column="0" line="10" realPart="15.0"/><data column="0" line="11" realPart="-1.0"/><data column="0" line="12" realPart="-1.0"/><data column="0" line="13" realPart="600.0"/><data column="0" line="14" realPart="400.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="550.0" y="200.0"/></BasicBlock><ControlPort dataType="UNKNOW_TYPE" id="-29171e7b:13894ec359c:-7f76" ordering="1" parent="-29171e7b:13894ec359c:-7fa3" style="ControlPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="-29171e7b:13894ec359c:-7f77" ordering="1" parent="-29171e7b:13894ec359c:-7fa3" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitLink id="-29171e7b:13894ec359c:-7fa0" parent="-29171e7b:13894ec359c:-8000" source="-29171e7b:13894ec359c:-7f7a" target="-29171e7b:13894ec359c:-7fd3"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="54.0" y="210.0"/><mxPoint as="targetPoint" x="110.0" y="210.0"/></mxGeometry></ExplicitLink><ExplicitLink id="-29171e7b:13894ec359c:-7f9f" parent="-29171e7b:13894ec359c:-8000" source="-29171e7b:13894ec359c:-7fd4" target="-29171e7b:13894ec359c:-7f91"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="154.0" y="220.0"/><mxPoint as="targetPoint" x="230.0" y="220.0"/></mxGeometry></ExplicitLink><ExplicitLink id="-29171e7b:13894ec359c:-7f9e" parent="-29171e7b:13894ec359c:-8000" source="-29171e7b:13894ec359c:-7f90" target="-29171e7b:13894ec359c:-7f41"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="274.0" y="220.0"/><mxPoint as="targetPoint" x="330.0" y="220.0"/></mxGeometry></ExplicitLink><ExplicitLink id="-29171e7b:13894ec359c:-7f9c" parent="-29171e7b:13894ec359c:-8000" source="-29171e7b:13894ec359c:-7f6e" target="-29171e7b:13894ec359c:-7f77"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="474.0" y="220.0"/><mxPoint as="targetPoint" x="550.0" y="220.0"/></mxGeometry></ExplicitLink><CommandControlLink id="-29171e7b:13894ec359c:-7f9b" parent="-29171e7b:13894ec359c:-8000" source="-29171e7b:13894ec359c:-7f68" target="-29171e7b:13894ec359c:-7f76"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="570.0" y="154.0"/><mxPoint as="targetPoint" x="570.0" y="190.0"/></mxGeometry></CommandControlLink><SplitBlock id="-29171e7b:13894ec359c:-7f99" ordering="9" parent="-29171e7b:13894ec359c:-8000" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="407.0" y="217.0"/></SplitBlock><ExplicitInputPort dataType="UNKNOW_TYPE" id="-29171e7b:13894ec359c:-7f98" ordering="1" parent="-29171e7b:13894ec359c:-7f99" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ExplicitInputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="-29171e7b:13894ec359c:-7f97" ordering="1" parent="-29171e7b:13894ec359c:-7f99" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="-29171e7b:13894ec359c:-7f96" ordering="2" parent="-29171e7b:13894ec359c:-7f99" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ExplicitOutputPort><ExplicitLink id="-29171e7b:13894ec359c:-7f95" parent="-29171e7b:13894ec359c:-8000" source="-29171e7b:13894ec359c:-7f40" target="-29171e7b:13894ec359c:-7f98"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ExplicitLink><ExplicitLink id="-29171e7b:13894ec359c:-7f94" parent="-29171e7b:13894ec359c:-8000" source="-29171e7b:13894ec359c:-7f97" target="-29171e7b:13894ec359c:-7f6f"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ExplicitLink><ExplicitLink id="-29171e7b:13894ec359c:-7f9a" parent="-29171e7b:13894ec359c:-8000" source="-29171e7b:13894ec359c:-7f96" target="-29171e7b:13894ec359c:-7f8d"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="284.0" y="360.0"/><mxPoint as="targetPoint" x="410.0" y="220.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="410.0" y="360.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="-29171e7b:13894ec359c:-7f93" parent="-29171e7b:13894ec359c:-8000" source="-29171e7b:13894ec359c:-7f8c" target="-29171e7b:13894ec359c:-7fd2"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="236.0" y="360.0"/><mxPoint as="targetPoint" x="110.0" y="230.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="180.0" y="360.0"/><mxPoint x="70.0" y="360.0"/><mxPoint x="70.0" y="230.0"/></Array></mxGeometry></ExplicitLink></root></mxGraphModel><mxCell as="defaultParent" id="-29171e7b:13894ec359c:-8000" parent="-29171e7b:13894ec359c:-7fff"/></XcosDiagram>
\ No newline at end of file diff --git a/Working_Examples/215/CH8/EX8.3/Figure8_3.jpg b/Working_Examples/215/CH8/EX8.3/Figure8_3.jpg Binary files differnew file mode 100755 index 0000000..12fe055 --- /dev/null +++ b/Working_Examples/215/CH8/EX8.3/Figure8_3.jpg diff --git a/Working_Examples/215/CH8/EX8.3/Figure8_3_xcos.jpg b/Working_Examples/215/CH8/EX8.3/Figure8_3_xcos.jpg Binary files differnew file mode 100755 index 0000000..0c5b713 --- /dev/null +++ b/Working_Examples/215/CH8/EX8.3/Figure8_3_xcos.jpg diff --git a/Working_Examples/215/CH8/EX8.3/ex8_3.xcos b/Working_Examples/215/CH8/EX8.3/ex8_3.xcos new file mode 100755 index 0000000..d936d09 --- /dev/null +++ b/Working_Examples/215/CH8/EX8.3/ex8_3.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" finalIntegrationTime="5.0E-4" title="ex8_3"><!--Xcos - 1.0 - scilab-5.5.2 - 20160406 2040--><mxGraphModel as="model"><root><mxCell id="-7550ec02:134d2eb8d96:-7d26"/><mxCell id="-7550ec02:134d2eb8d96:-7d27" parent="-7550ec02:134d2eb8d96:-7d26"/><BasicBlock angle="90" dependsOnU="1" id="-7550ec02:134d2eb8d96:-7d0a" interfaceFunctionName="Capacitor" ordering="1" parent="-7550ec02:134d2eb8d96:-7d27" simulationFunctionName="Capacitor" simulationFunctionType="DEFAULT" style="Capacitor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="2" width="1"><data column="0" line="0" value="10e-6"/><data column="0" line="1" value="9"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="1.0E-5"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Capacitor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="2"><data column="0" line="0" value="C"/><data column="1" line="0" value="v"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0E-5"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="9.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="230.0" y="170.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-7550ec02:134d2eb8d96:-7cdf" ordering="1" parent="-7550ec02:134d2eb8d96:-7d0a" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-7550ec02:134d2eb8d96:-7cde" ordering="1" parent="-7550ec02:134d2eb8d96:-7d0a" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><BasicBlock angle="90" dependsOnU="1" id="-7550ec02:134d2eb8d96:-7d00" interfaceFunctionName="Resistor" ordering="2" parent="-7550ec02:134d2eb8d96:-7d27" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="2"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="70.0" y="170.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-7550ec02:134d2eb8d96:-7c42" ordering="1" parent="-7550ec02:134d2eb8d96:-7d00" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-7550ec02:134d2eb8d96:-7c41" ordering="1" parent="-7550ec02:134d2eb8d96:-7d00" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><SplitBlock id="-7550ec02:134d2eb8d96:-7cf9" ordering="3" parent="-7550ec02:134d2eb8d96:-7d27" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="177.0" y="267.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-7550ec02:134d2eb8d96:-7cf7" ordering="1" parent="-7550ec02:134d2eb8d96:-7cf9" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-7550ec02:134d2eb8d96:-7cf6" ordering="2" parent="-7550ec02:134d2eb8d96:-7cf9" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-7550ec02:134d2eb8d96:-7cf8" ordering="1" parent="-7550ec02:134d2eb8d96:-7cf9" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-7550ec02:134d2eb8d96:-7cf5" parent="-7550ec02:134d2eb8d96:-7d27" source="-7550ec02:134d2eb8d96:-7c41" target="-7550ec02:134d2eb8d96:-7cf8"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="90.0" y="270.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-7550ec02:134d2eb8d96:-7cfa" parent="-7550ec02:134d2eb8d96:-7d27" source="-7550ec02:134d2eb8d96:-7cf6" target="-7550ec02:134d2eb8d96:-7d12"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="180.0" y="300.0"/><mxPoint as="targetPoint" x="180.0" y="270.0"/></mxGeometry></ImplicitLink><VoltageSensorBlock dependsOnU="1" id="-7550ec02:134d2eb8d96:-7cb4" interfaceFunctionName="VoltageSensor" ordering="4" parent="-7550ec02:134d2eb8d96:-7d27" simulationFunctionName="VoltageSensor" simulationFunctionType="DEFAULT" style="VoltageSensor;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="VoltageSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="v"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="300.0" y="120.0"/></VoltageSensorBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-7550ec02:134d2eb8d96:-7cb2" ordering="2" parent="-7550ec02:134d2eb8d96:-7cb4" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-7550ec02:134d2eb8d96:-7cb1" ordering="1" parent="-7550ec02:134d2eb8d96:-7cb4" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-7550ec02:134d2eb8d96:-7cb3" ordering="1" parent="-7550ec02:134d2eb8d96:-7cb4" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><Orientation as="orientation" value="SOUTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><BasicBlock dependsOnU="1" id="-7550ec02:134d2eb8d96:-7caa" interfaceFunctionName="CSCOPE" ordering="5" parent="-7550ec02:134d2eb8d96:-7d27" simulationFunctionName="cscope" simulationFunctionType="C_OR_FORTRAN" style="CSCOPE;flip=false;mirror=false"><ScilabString as="exprs" height="10" width="1"><data column="0" line="0" value="1 3 5 7 9 11 13 15"/><data column="0" line="1" value="-1"/><data column="0" line="2" value="[]"/><data column="0" line="3" value="[600;400]"/><data column="0" line="4" value="0"/><data column="0" line="5" value="10"/><data column="0" line="6" value="0.0005"/><data column="0" line="7" value="20"/><data column="0" line="8" value="0"/><data column="0" line="9" value=""/></ScilabString><ScilabDouble as="realParameters" height="4" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="0.0"/><data column="0" line="2" realPart="10.0"/><data column="0" line="3" realPart="5.0E-4"/></ScilabDouble><ScilabDouble as="integerParameters" height="15" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="1.0"/><data column="0" line="4" realPart="3.0"/><data column="0" line="5" realPart="5.0"/><data column="0" line="6" realPart="7.0"/><data column="0" line="7" realPart="9.0"/><data column="0" line="8" realPart="11.0"/><data column="0" line="9" realPart="13.0"/><data column="0" line="10" realPart="15.0"/><data column="0" line="11" realPart="-1.0"/><data column="0" line="12" realPart="-1.0"/><data column="0" line="13" realPart="600.0"/><data column="0" line="14" realPart="400.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="400.0" y="120.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="-7550ec02:134d2eb8d96:-7c62" ordering="1" parent="-7550ec02:134d2eb8d96:-7caa" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ControlPort dataType="UNKNOW_TYPE" id="-7550ec02:134d2eb8d96:-7c61" ordering="1" parent="-7550ec02:134d2eb8d96:-7caa" style="ControlPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><SplitBlock id="-7550ec02:134d2eb8d96:-7c96" ordering="6" parent="-7550ec02:134d2eb8d96:-7d27" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="247.0" y="267.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-7550ec02:134d2eb8d96:-7c94" ordering="1" parent="-7550ec02:134d2eb8d96:-7c96" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-7550ec02:134d2eb8d96:-7c93" ordering="2" parent="-7550ec02:134d2eb8d96:-7c96" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-7550ec02:134d2eb8d96:-7c95" ordering="1" parent="-7550ec02:134d2eb8d96:-7c96" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-7550ec02:134d2eb8d96:-7c92" parent="-7550ec02:134d2eb8d96:-7d27" source="-7550ec02:134d2eb8d96:-7cde" target="-7550ec02:134d2eb8d96:-7c95"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-7550ec02:134d2eb8d96:-7c91" parent="-7550ec02:134d2eb8d96:-7d27" source="-7550ec02:134d2eb8d96:-7cf7" target="-7550ec02:134d2eb8d96:-7c94"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-7550ec02:134d2eb8d96:-7c97" parent="-7550ec02:134d2eb8d96:-7d27" source="-7550ec02:134d2eb8d96:-7cb3" target="-7550ec02:134d2eb8d96:-7c93"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="320.0" y="230.0"/><mxPoint as="targetPoint" x="250.0" y="270.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="320.0" y="270.0"/></Array></mxGeometry></ImplicitLink><ExplicitLink id="-7550ec02:134d2eb8d96:-7c90" parent="-7550ec02:134d2eb8d96:-7d27" source="-7550ec02:134d2eb8d96:-7cb2" target="-7550ec02:134d2eb8d96:-7c62"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="340.0" y="210.0"/><mxPoint as="targetPoint" x="390.0" y="220.0"/></mxGeometry></ExplicitLink><BasicBlock dependsOnU="1" id="-7550ec02:134d2eb8d96:-7c56" interfaceFunctionName="Resistor" ordering="7" parent="-7550ec02:134d2eb8d96:-7d27" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=0;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="4"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="150.0" y="90.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-7550ec02:134d2eb8d96:-7c46" ordering="1" parent="-7550ec02:134d2eb8d96:-7c56" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-7550ec02:134d2eb8d96:-7c45" ordering="1" parent="-7550ec02:134d2eb8d96:-7c56" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><ImplicitLink id="-7550ec02:134d2eb8d96:-7c50" parent="-7550ec02:134d2eb8d96:-7d27" source="-7550ec02:134d2eb8d96:-7c42" target="-7550ec02:134d2eb8d96:-7c46"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="90.0" y="170.0"/><mxPoint as="targetPoint" x="150.0" y="120.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="90.0" y="110.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="-7550ec02:134d2eb8d96:-7c4d" ordering="8" parent="-7550ec02:134d2eb8d96:-7d27" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="247.0" y="137.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-7550ec02:134d2eb8d96:-7c4b" ordering="1" parent="-7550ec02:134d2eb8d96:-7c4d" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-7550ec02:134d2eb8d96:-7c4a" ordering="2" parent="-7550ec02:134d2eb8d96:-7c4d" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-7550ec02:134d2eb8d96:-7c4c" ordering="1" parent="-7550ec02:134d2eb8d96:-7c4d" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-7550ec02:134d2eb8d96:-7c49" parent="-7550ec02:134d2eb8d96:-7d27" source="-7550ec02:134d2eb8d96:-7c45" target="-7550ec02:134d2eb8d96:-7c4c"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="250.0" y="110.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-7550ec02:134d2eb8d96:-7c48" parent="-7550ec02:134d2eb8d96:-7d27" source="-7550ec02:134d2eb8d96:-7c4b" target="-7550ec02:134d2eb8d96:-7cdf"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-7550ec02:134d2eb8d96:-7c4e" parent="-7550ec02:134d2eb8d96:-7d27" source="-7550ec02:134d2eb8d96:-7c4a" target="-7550ec02:134d2eb8d96:-7cb1"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="300.0" y="150.0"/><mxPoint as="targetPoint" x="250.0" y="140.0"/></mxGeometry></ImplicitLink><GroundBlock dependsOnU="1" id="-7550ec02:134d2eb8d96:-7d13" interfaceFunctionName="Ground" ordering="9" parent="-7550ec02:134d2eb8d96:-7d27" simulationFunctionName="Ground" simulationFunctionType="DEFAULT" style="Ground;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Ground"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="160.0" y="300.0"/></GroundBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-7550ec02:134d2eb8d96:-7d12" ordering="1" parent="-7550ec02:134d2eb8d96:-7d13" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><Orientation as="orientation" value="NORTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock blockType="h" id="-4786dca1:1383aec1f36:-7f41" interfaceFunctionName="CLOCK_c" ordering="10" parent="-7550ec02:134d2eb8d96:-7d27" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="119.0"/><data column="1" line="0" realPart="-150.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-3e07f539:168315200c0:-7ef2"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-3e07f539:168315200c0:-7ef2"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.00001"/><data column="0" line="1" value="0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="1.0E-5"/><data column="0" line="1" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-3e07f539:168315200c0:-7ef0"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-3e07f539:168315200c0:-7ef0"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="123.3773266666667"/><data column="1" line="0" realPart="-169.33333333333331"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="7.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="5.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-3e07f539:168315200c0:-7eed"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-3e07f539:168315200c0:-7eed"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="100.0"/><data column="0" line="2" realPart="133.8773266666667"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-44.0"/><data column="0" line="1" realPart="-180.0"/><data column="0" line="2" realPart="-158.33333333333331"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="132.71066000000005"/><data column="0" line="1" realPart="149.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-173.33333333333331"/><data column="0" line="1" realPart="-126.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="135.04399333333336"/><data column="0" line="1" realPart="140.70999999999998"/><data column="0" line="2" realPart="100.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-173.33333333333331"/><data column="0" line="1" realPart="-50.0"/><data column="0" line="2" realPart="-50.0"/><data column="0" line="3" realPart="4.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="400.0" y="30.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="-4786dca1:1383aec1f36:-7f38" ordering="1" parent="-4786dca1:1383aec1f36:-7f41" style="CommandPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><CommandControlLink id="-4786dca1:1383aec1f36:-7f3d" parent="-7550ec02:134d2eb8d96:-7d27" source="-4786dca1:1383aec1f36:-7f38" target="-7550ec02:134d2eb8d96:-7c61"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="420.0" y="74.0"/><mxPoint as="targetPoint" x="420.0" y="120.0"/></mxGeometry></CommandControlLink></root></mxGraphModel><mxCell as="defaultParent" id="-7550ec02:134d2eb8d96:-7d27" parent="-7550ec02:134d2eb8d96:-7d26"/></XcosDiagram>
\ No newline at end of file diff --git a/Working_Examples/215/CH8/EX8.4/Figure8_4.jpg b/Working_Examples/215/CH8/EX8.4/Figure8_4.jpg Binary files differnew file mode 100755 index 0000000..e94210c --- /dev/null +++ b/Working_Examples/215/CH8/EX8.4/Figure8_4.jpg diff --git a/Working_Examples/215/CH8/EX8.4/Figure8_4_xcos.jpg b/Working_Examples/215/CH8/EX8.4/Figure8_4_xcos.jpg Binary files differnew file mode 100755 index 0000000..0515e2e --- /dev/null +++ b/Working_Examples/215/CH8/EX8.4/Figure8_4_xcos.jpg diff --git a/Working_Examples/215/CH8/EX8.4/ex8_4.xcos b/Working_Examples/215/CH8/EX8.4/ex8_4.xcos new file mode 100755 index 0000000..d0631b7 --- /dev/null +++ b/Working_Examples/215/CH8/EX8.4/ex8_4.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" finalIntegrationTime="1.0E-4" title="ex8_4"><!--Xcos - 1.0 - scilab-5.5.2 - 20160406 2040--><mxGraphModel as="model"><root><mxCell id="-7550ec02:134d2eb8d96:-7c3e"/><mxCell id="-7550ec02:134d2eb8d96:-7c3f" parent="-7550ec02:134d2eb8d96:-7c3e"/><BasicBlock dependsOnU="1" id="6641adef:135055938d4:-7fd3" interfaceFunctionName="CSCOPE" ordering="1" parent="-7550ec02:134d2eb8d96:-7c3f" simulationFunctionName="cscope" simulationFunctionType="C_OR_FORTRAN" style="CSCOPE;flip=false;mirror=false"><ScilabString as="exprs" height="10" width="1"><data column="0" line="0" value="1 3 5 7 9 11 13 15"/><data column="0" line="1" value="-1"/><data column="0" line="2" value="[]"/><data column="0" line="3" value="[600;400]"/><data column="0" line="4" value="-0.5"/><data column="0" line="5" value="0.5"/><data column="0" line="6" value=".0001"/><data column="0" line="7" value="20"/><data column="0" line="8" value="0"/><data column="0" line="9" value=""/></ScilabString><ScilabDouble as="realParameters" height="4" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="-0.5"/><data column="0" line="2" realPart="0.5"/><data column="0" line="3" realPart="1.0E-4"/></ScilabDouble><ScilabDouble as="integerParameters" height="15" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="1.0"/><data column="0" line="4" realPart="3.0"/><data column="0" line="5" realPart="5.0"/><data column="0" line="6" realPart="7.0"/><data column="0" line="7" realPart="9.0"/><data column="0" line="8" realPart="11.0"/><data column="0" line="9" realPart="13.0"/><data column="0" line="10" realPart="15.0"/><data column="0" line="11" realPart="-1.0"/><data column="0" line="12" realPart="-1.0"/><data column="0" line="13" realPart="600.0"/><data column="0" line="14" realPart="400.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="610.0" y="210.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="6641adef:135055938d4:-7f41" ordering="1" parent="6641adef:135055938d4:-7fd3" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ControlPort dataType="UNKNOW_TYPE" id="6641adef:135055938d4:-7f40" ordering="1" parent="6641adef:135055938d4:-7fd3" style="ControlPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><BasicBlock dependsOnU="1" id="6641adef:135055938d4:-7fd0" interfaceFunctionName="GAINBLK_f" ordering="2" parent="-7550ec02:134d2eb8d96:-7c3f" simulationFunctionName="gain" simulationFunctionType="DEFAULT" style="GAINBLK_f;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="110"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="110.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="50.0" width="40.0" x="270.0" y="160.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-7550ec02:134d2eb8d96:-7bbb" ordering="1" parent="6641adef:135055938d4:-7fd0" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-7550ec02:134d2eb8d96:-7bba" ordering="1" parent="6641adef:135055938d4:-7fd0" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><Summation dependsOnU="1" id="6641adef:135055938d4:-7fcd" interfaceFunctionName="SUMMATION" ordering="3" parent="-7550ec02:134d2eb8d96:-7c3f" simulationFunctionName="summation" simulationFunctionType="C_OR_FORTRAN" style="SUMMATION;flip=false;mirror=false" value="+"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="[1;-1]"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="2" width="1"><data column="0" line="0" realPart="1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="170.0" y="160.0"/></Summation><ExplicitInputPort dataType="REAL_MATRIX" id="-7550ec02:134d2eb8d96:-7bd0" ordering="1" parent="6641adef:135055938d4:-7fcd" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" value="+"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ExplicitInputPort><ExplicitInputPort dataType="REAL_MATRIX" id="-7550ec02:134d2eb8d96:-7bcf" ordering="2" parent="6641adef:135055938d4:-7fcd" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" value="-"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="26.0"/></ExplicitInputPort><ExplicitOutputPort dataType="REAL_MATRIX" id="-7550ec02:134d2eb8d96:-7bd1" ordering="1" parent="6641adef:135055938d4:-7fcd" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><BasicBlock angle="180" dependsOnU="1" id="6641adef:135055938d4:-7fc9" interfaceFunctionName="GAINBLK_f" ordering="4" parent="-7550ec02:134d2eb8d96:-7c3f" simulationFunctionName="gain" simulationFunctionType="DEFAULT" style="GAINBLK_f;rotation=180;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="454.54"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="454.54"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="50.0" width="40.0" x="250.0" y="270.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-7550ec02:134d2eb8d96:-7bb7" ordering="1" parent="6641adef:135055938d4:-7fc9" style="ExplicitInputPort;align=right;verticalAlign=middle;spacing=10;rotation=180;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitInputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-7550ec02:134d2eb8d96:-7bb6" ordering="1" parent="6641adef:135055938d4:-7fc9" style="ExplicitOutputPort;align=left;verticalAlign=middle;spacing=10;rotation=180;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitOutputPort><BasicBlock dependsOnT="1" id="6641adef:135055938d4:-7fc6" interfaceFunctionName="INTEGRAL_m" ordering="5" parent="-7550ec02:134d2eb8d96:-7c3f" simulationFunctionName="integral_func" simulationFunctionType="C_OR_FORTRAN" style="INTEGRAL_m;flip=false;mirror=false"><ScilabString as="exprs" height="5" width="1"><data column="0" line="0" value="0.36"/><data column="0" line="1" value="0"/><data column="0" line="2" value="0"/><data column="0" line="3" value="1"/><data column="0" line="4" value="-1"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="state" height="1" width="1"><data column="0" line="0" realPart="0.36"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="360.0" y="160.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-7550ec02:134d2eb8d96:-7bb3" ordering="1" parent="6641adef:135055938d4:-7fc6" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-7550ec02:134d2eb8d96:-7bb2" ordering="1" parent="6641adef:135055938d4:-7fc6" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ExplicitLink id="-7550ec02:134d2eb8d96:-7bc7" parent="-7550ec02:134d2eb8d96:-7c3f" source="-7550ec02:134d2eb8d96:-7bd1" target="-7550ec02:134d2eb8d96:-7bbb"><mxGeometry as="geometry" x="10.0" y="10.0"><mxPoint as="sourcePoint" x="210.0" y="180.0"/><mxPoint as="targetPoint" x="260.0" y="180.0"/></mxGeometry></ExplicitLink><ExplicitLink id="-7550ec02:134d2eb8d96:-7bc6" parent="-7550ec02:134d2eb8d96:-7c3f" source="-7550ec02:134d2eb8d96:-7bba" target="-7550ec02:134d2eb8d96:-7bb3"><mxGeometry as="geometry" x="10.0" y="10.0"><mxPoint as="sourcePoint" x="310.0" y="180.0"/><mxPoint as="targetPoint" x="360.0" y="180.0"/></mxGeometry></ExplicitLink><ExplicitLink id="-7550ec02:134d2eb8d96:-7bc5" parent="-7550ec02:134d2eb8d96:-7c3f" source="-7550ec02:134d2eb8d96:-7bb6" target="-7550ec02:134d2eb8d96:-7bcf"><mxGeometry as="geometry" x="10.0" y="10.0"><mxPoint as="sourcePoint" x="170.0" y="190.0"/><mxPoint as="targetPoint" x="250.0" y="290.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="150.0" y="290.0"/><mxPoint x="150.0" y="190.0"/></Array></mxGeometry></ExplicitLink><SplitBlock id="6641adef:135055938d4:-7fbf" ordering="6" parent="-7550ec02:134d2eb8d96:-7c3f" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="417.0" y="177.0"/></SplitBlock><ExplicitOutputPort dataType="UNKNOW_TYPE" id="-7550ec02:134d2eb8d96:-7bc2" ordering="1" parent="6641adef:135055938d4:-7fbf" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="-7550ec02:134d2eb8d96:-7bc1" ordering="2" parent="6641adef:135055938d4:-7fbf" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ExplicitOutputPort><ExplicitInputPort dataType="UNKNOW_TYPE" id="-7550ec02:134d2eb8d96:-7bc3" ordering="1" parent="6641adef:135055938d4:-7fbf" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ExplicitInputPort><ExplicitLink id="-7550ec02:134d2eb8d96:-7bc0" parent="-7550ec02:134d2eb8d96:-7c3f" source="-7550ec02:134d2eb8d96:-7bb2" target="-7550ec02:134d2eb8d96:-7bc3"><mxGeometry as="geometry" x="10.0" y="10.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ExplicitLink><ExplicitLink id="-7550ec02:134d2eb8d96:-7bbf" parent="-7550ec02:134d2eb8d96:-7c3f" source="-7550ec02:134d2eb8d96:-7bc2" target="-7550ec02:134d2eb8d96:-7bb7"><mxGeometry as="geometry" x="10.0" y="10.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="420.0" y="290.0"/></Array></mxGeometry></ExplicitLink><BasicBlock dependsOnU="1" id="6641adef:135055938d4:-7fb8" interfaceFunctionName="GAINBLK_f" ordering="7" parent="-7550ec02:134d2eb8d96:-7c3f" simulationFunctionName="gain" simulationFunctionType="DEFAULT" style="GAINBLK_f;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="-0.66666"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="-0.66666"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="50.0" width="40.0" x="460.0" y="300.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-7550ec02:134d2eb8d96:-7b88" ordering="1" parent="6641adef:135055938d4:-7fb8" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-7550ec02:134d2eb8d96:-7b87" ordering="1" parent="6641adef:135055938d4:-7fb8" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><TextBlock id="6641adef:135055938d4:-7fa7" parent="-7550ec02:134d2eb8d96:-7c3f" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="iL(t)"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="iL(t)"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="iL(t)"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="460.0" y="140.0"/></TextBlock><TextBlock id="6641adef:135055938d4:-7fa6" parent="-7550ec02:134d2eb8d96:-7c3f" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="i1(t)"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="i1(t)"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="i1(t)"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="470.0" y="260.0"/></TextBlock><BasicBlock dependsOnU="1" id="6641adef:135055938d4:-7f69" interfaceFunctionName="MUX" ordering="8" parent="-7550ec02:134d2eb8d96:-7c3f" simulationFunctionName="multiplex" simulationFunctionType="C_OR_FORTRAN" style="MUX;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="2"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="20.0" width="30.0" x="550.0" y="220.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="6641adef:135055938d4:-7f67" ordering="1" parent="6641adef:135055938d4:-7f69" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ExplicitInputPort><ExplicitInputPort dataColumns="1" dataLines="-2" dataType="REAL_MATRIX" id="6641adef:135055938d4:-7f66" ordering="2" parent="6641adef:135055938d4:-7f69" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitOutputPort dataColumns="1" dataLines="0" dataType="REAL_MATRIX" id="6641adef:135055938d4:-7f68" ordering="1" parent="6641adef:135055938d4:-7f69" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="30.0" y="6.0"/></ExplicitOutputPort><ExplicitLink id="6641adef:135055938d4:-7f4f" parent="-7550ec02:134d2eb8d96:-7c3f" source="6641adef:135055938d4:-7f68" target="6641adef:135055938d4:-7f41"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="560.0" y="230.0"/><mxPoint as="targetPoint" x="610.0" y="230.0"/></mxGeometry></ExplicitLink><SplitBlock id="6641adef:135055938d4:-7f4d" ordering="9" parent="-7550ec02:134d2eb8d96:-7c3f" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="437.0" y="177.0"/></SplitBlock><ExplicitOutputPort dataType="UNKNOW_TYPE" id="6641adef:135055938d4:-7f4b" ordering="1" parent="6641adef:135055938d4:-7f4d" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="6641adef:135055938d4:-7f4a" ordering="2" parent="6641adef:135055938d4:-7f4d" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ExplicitOutputPort><ExplicitInputPort dataType="UNKNOW_TYPE" id="6641adef:135055938d4:-7f4c" ordering="1" parent="6641adef:135055938d4:-7f4d" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ExplicitInputPort><ExplicitLink id="6641adef:135055938d4:-7f49" parent="-7550ec02:134d2eb8d96:-7c3f" source="-7550ec02:134d2eb8d96:-7bc1" target="6641adef:135055938d4:-7f4c"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ExplicitLink><ExplicitLink id="6641adef:135055938d4:-7f48" parent="-7550ec02:134d2eb8d96:-7c3f" source="6641adef:135055938d4:-7f4b" target="-7550ec02:134d2eb8d96:-7b88"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="440.0" y="320.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="6641adef:135055938d4:-7f4e" parent="-7550ec02:134d2eb8d96:-7c3f" source="6641adef:135055938d4:-7f4a" target="6641adef:135055938d4:-7f67"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="530.0" y="220.0"/><mxPoint as="targetPoint" x="440.0" y="180.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="510.0" y="180.0"/><mxPoint x="510.0" y="220.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="6641adef:135055938d4:-7f47" parent="-7550ec02:134d2eb8d96:-7c3f" source="-7550ec02:134d2eb8d96:-7b87" target="6641adef:135055938d4:-7f66"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="500.0" y="320.0"/><mxPoint as="targetPoint" x="540.0" y="240.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="510.0" y="320.0"/><mxPoint x="510.0" y="240.0"/></Array></mxGeometry></ExplicitLink><BasicBlock blockType="h" id="-4786dca1:1383aec1f36:-7eec" interfaceFunctionName="CLOCK_c" ordering="10" parent="-7550ec02:134d2eb8d96:-7c3f" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="119.0"/><data column="1" line="0" realPart="-150.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-3e07f539:168315200c0:-7eb0"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-3e07f539:168315200c0:-7eb0"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.000001"/><data column="0" line="1" value="0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-3e07f539:168315200c0:-7eae"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-3e07f539:168315200c0:-7eae"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="123.3773266666667"/><data column="1" line="0" realPart="-169.33333333333331"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="7.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="5.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-3e07f539:168315200c0:-7eab"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-3e07f539:168315200c0:-7eab"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="100.0"/><data column="0" line="2" realPart="133.8773266666667"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-44.0"/><data column="0" line="1" realPart="-180.0"/><data column="0" line="2" realPart="-158.33333333333331"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="132.71066000000005"/><data column="0" line="1" realPart="149.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-173.33333333333331"/><data column="0" line="1" realPart="-126.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="135.04399333333336"/><data column="0" line="1" realPart="140.70999999999998"/><data column="0" line="2" realPart="100.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-173.33333333333331"/><data column="0" line="1" realPart="-50.0"/><data column="0" line="2" realPart="-50.0"/><data column="0" line="3" realPart="4.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="610.0" y="140.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="-4786dca1:1383aec1f36:-7ecc" ordering="1" parent="-4786dca1:1383aec1f36:-7eec" style="CommandPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><CommandControlLink id="-4786dca1:1383aec1f36:-7eea" parent="-7550ec02:134d2eb8d96:-7c3f" source="-4786dca1:1383aec1f36:-7ecc" target="6641adef:135055938d4:-7f40"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="630.0" y="184.0"/><mxPoint as="targetPoint" x="630.0" y="210.0"/></mxGeometry></CommandControlLink><BasicBlock blockType="h" id="-4786dca1:1383aec1f36:-7ede" interfaceFunctionName="STEP_FUNCTION" ordering="11" parent="-7550ec02:134d2eb8d96:-7c3f" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="STEP_FUNCTION;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="STEP_FUNCTION"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-4"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="14.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=" "/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="3" width="1"><data column="0" line="0" value="0.01"/><data column="0" line="1" value="0"/><data column="0" line="2" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"STEP",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="STEP"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="step_func"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.01"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="true"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-3e07f539:168315200c0:-7ea2"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="STEP"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-3e07f539:168315200c0:-7ea2"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="108.57143300000001"/><data column="1" line="0" realPart="-70.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"OUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="OUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-2.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-3e07f539:168315200c0:-7e9e"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="OUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-3e07f539:168315200c0:-7e9e"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="6" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="100.00000299999999"/><data column="0" line="2" realPart="61.478395"/><data column="0" line="3" realPart="61.478395"/><data column="0" line="4" realPart="100.00000299999999"/><data column="0" line="5" realPart="60.0"/></ScilabDouble><ScilabDouble height="6" width="1"><data column="0" line="0" realPart="-44.0"/><data column="0" line="1" realPart="-150.39289999999994"/><data column="0" line="2" realPart="-150.39289999999994"/><data column="0" line="3" realPart="-60.69677999999999"/><data column="0" line="4" realPart="-60.69677999999999"/><data column="0" line="5" realPart="4.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="84.0"/><data column="0" line="1" realPart="124.57143300000001"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-20.0"/><data column="0" line="1" realPart="-60.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="70.0" y="150.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataType="REAL_MATRIX" id="-4786dca1:1383aec1f36:-7ecf" ordering="1" parent="-4786dca1:1383aec1f36:-7ede" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ExplicitLink id="-4786dca1:1383aec1f36:-7eda" parent="-7550ec02:134d2eb8d96:-7c3f" source="-4786dca1:1383aec1f36:-7ecf" target="-7550ec02:134d2eb8d96:-7bd0"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="114.0" y="170.0"/><mxPoint as="targetPoint" x="170.0" y="170.0"/></mxGeometry></ExplicitLink></root></mxGraphModel><mxCell as="defaultParent" id="-7550ec02:134d2eb8d96:-7c3f" parent="-7550ec02:134d2eb8d96:-7c3e"/></XcosDiagram>
\ No newline at end of file diff --git a/Working_Examples/215/CH8/EX8.8/Figure8_8.jpg b/Working_Examples/215/CH8/EX8.8/Figure8_8.jpg Binary files differnew file mode 100755 index 0000000..d68f977 --- /dev/null +++ b/Working_Examples/215/CH8/EX8.8/Figure8_8.jpg diff --git a/Working_Examples/215/CH8/EX8.8/Figure8_8_xcos.jpg b/Working_Examples/215/CH8/EX8.8/Figure8_8_xcos.jpg Binary files differnew file mode 100755 index 0000000..981747e --- /dev/null +++ b/Working_Examples/215/CH8/EX8.8/Figure8_8_xcos.jpg diff --git a/Working_Examples/215/CH8/EX8.8/ex8_8.xcos b/Working_Examples/215/CH8/EX8.8/ex8_8.xcos new file mode 100755 index 0000000..e9cb339 --- /dev/null +++ b/Working_Examples/215/CH8/EX8.8/ex8_8.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" finalIntegrationTime="30.0" title="ex8_8"><!--Xcos - 1.0 - scilab-5.5.2 - 20160406 2040--><mxGraphModel as="model"><root><mxCell id="75a896ca:134d365eac8:-7eb7"/><mxCell id="75a896ca:134d365eac8:-7eb8" parent="75a896ca:134d365eac8:-7eb7"/><BasicBlock blockType="h" id="6641adef:135055938d4:-7f3a" interfaceFunctionName="STEP_FUNCTION" ordering="1" parent="75a896ca:134d365eac8:-7eb8" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="STEP_FUNCTION;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="STEP_FUNCTION"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-4"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="14.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=" "/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="70.0" y="200.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataType="REAL_MATRIX" id="75a896ca:134d365eac8:-7be0" ordering="1" parent="6641adef:135055938d4:-7f3a" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><BasicBlock dependsOnU="1" id="6641adef:135055938d4:-7f38" interfaceFunctionName="CSCOPE" ordering="2" parent="75a896ca:134d365eac8:-7eb8" simulationFunctionName="cscope" simulationFunctionType="C_OR_FORTRAN" style="CSCOPE;flip=false;mirror=false"><ScilabString as="exprs" height="10" width="1"><data column="0" line="0" value="1 3 5 7 9 11 13 15"/><data column="0" line="1" value="-1"/><data column="0" line="2" value="[]"/><data column="0" line="3" value="[600;400]"/><data column="0" line="4" value="20"/><data column="0" line="5" value="60"/><data column="0" line="6" value="30"/><data column="0" line="7" value="20"/><data column="0" line="8" value="0"/><data column="0" line="9" value=""/></ScilabString><ScilabDouble as="realParameters" height="4" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="20.0"/><data column="0" line="2" realPart="60.0"/><data column="0" line="3" realPart="30.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="15" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="1.0"/><data column="0" line="4" realPart="3.0"/><data column="0" line="5" realPart="5.0"/><data column="0" line="6" realPart="7.0"/><data column="0" line="7" realPart="9.0"/><data column="0" line="8" realPart="11.0"/><data column="0" line="9" realPart="13.0"/><data column="0" line="10" realPart="15.0"/><data column="0" line="11" realPart="-1.0"/><data column="0" line="12" realPart="-1.0"/><data column="0" line="13" realPart="600.0"/><data column="0" line="14" realPart="400.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="540.0" y="120.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="6641adef:135055938d4:-7ecc" ordering="1" parent="6641adef:135055938d4:-7f38" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ControlPort dataType="UNKNOW_TYPE" id="6641adef:135055938d4:-7ecb" ordering="1" parent="6641adef:135055938d4:-7f38" style="ControlPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><BasicBlock dependsOnU="1" id="6641adef:135055938d4:-7f35" interfaceFunctionName="GAINBLK_f" ordering="3" parent="75a896ca:134d365eac8:-7eb8" simulationFunctionName="gain" simulationFunctionType="DEFAULT" style="GAINBLK_f;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="1.5"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="1.5"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="50.0" width="40.0" x="270.0" y="210.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="75a896ca:134d365eac8:-7c43" ordering="1" parent="6641adef:135055938d4:-7f35" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="75a896ca:134d365eac8:-7c42" ordering="1" parent="6641adef:135055938d4:-7f35" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><Summation dependsOnU="1" id="6641adef:135055938d4:-7f32" interfaceFunctionName="SUMMATION" ordering="4" parent="75a896ca:134d365eac8:-7eb8" simulationFunctionName="summation" simulationFunctionType="C_OR_FORTRAN" style="SUMMATION;flip=false;mirror=false" value="+"><ScilabString as="exprs" height="3" width="1"><data column="0" line="0" value="1"/><data column="0" line="1" value="[1;-1]"/><data column="0" line="2" value="0"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="2" width="1"><data column="0" line="0" realPart="1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="170.0" y="210.0"/></Summation><ExplicitInputPort dataType="REAL_MATRIX" id="75a896ca:134d365eac8:-7e29" ordering="1" parent="6641adef:135055938d4:-7f32" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" value="+"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ExplicitInputPort><ExplicitInputPort dataType="REAL_MATRIX" id="75a896ca:134d365eac8:-7e28" ordering="2" parent="6641adef:135055938d4:-7f32" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" value="-"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="26.0"/></ExplicitInputPort><ExplicitOutputPort dataType="REAL_MATRIX" id="75a896ca:134d365eac8:-7e27" ordering="1" parent="6641adef:135055938d4:-7f32" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><BasicBlock angle="180" dependsOnU="1" id="6641adef:135055938d4:-7f2e" interfaceFunctionName="GAINBLK_f" ordering="5" parent="75a896ca:134d365eac8:-7eb8" simulationFunctionName="gain" simulationFunctionType="DEFAULT" style="GAINBLK_f;rotation=180;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="0.33333"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="0.33333"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="50.0" width="40.0" x="250.0" y="320.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="75a896ca:134d365eac8:-7e3c" ordering="1" parent="6641adef:135055938d4:-7f2e" style="ExplicitInputPort;align=right;verticalAlign=middle;spacing=10;rotation=180;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitInputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="75a896ca:134d365eac8:-7e3b" ordering="1" parent="6641adef:135055938d4:-7f2e" style="ExplicitOutputPort;align=left;verticalAlign=middle;spacing=10;rotation=180;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitOutputPort><BasicBlock dependsOnT="1" id="6641adef:135055938d4:-7f2b" interfaceFunctionName="INTEGRAL_m" ordering="6" parent="75a896ca:134d365eac8:-7eb8" simulationFunctionName="integral_func" simulationFunctionType="C_OR_FORTRAN" style="INTEGRAL_m;flip=false;mirror=false"><ScilabString as="exprs" height="5" width="1"><data column="0" line="0" value="25"/><data column="0" line="1" value="0"/><data column="0" line="2" value="0"/><data column="0" line="3" value="1"/><data column="0" line="4" value="-1"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="state" height="1" width="1"><data column="0" line="0" realPart="25.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="360.0" y="210.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="75a896ca:134d365eac8:-7c1a" ordering="1" parent="6641adef:135055938d4:-7f2b" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="75a896ca:134d365eac8:-7c19" ordering="1" parent="6641adef:135055938d4:-7f2b" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ExplicitLink id="75a896ca:134d365eac8:-7ea2" parent="75a896ca:134d365eac8:-7eb8" source="75a896ca:134d365eac8:-7be0" target="75a896ca:134d365eac8:-7e29"><mxGeometry as="geometry" x="10.0" y="60.0"><mxPoint as="sourcePoint" x="110.0" y="220.0"/><mxPoint as="targetPoint" x="160.0" y="220.0"/></mxGeometry></ExplicitLink><ExplicitLink id="75a896ca:134d365eac8:-7ea1" parent="75a896ca:134d365eac8:-7eb8" source="75a896ca:134d365eac8:-7e27" target="75a896ca:134d365eac8:-7c43"><mxGeometry as="geometry" x="10.0" y="60.0"><mxPoint as="sourcePoint" x="210.0" y="230.0"/><mxPoint as="targetPoint" x="260.0" y="230.0"/></mxGeometry></ExplicitLink><ExplicitLink id="75a896ca:134d365eac8:-7e9f" parent="75a896ca:134d365eac8:-7eb8" source="75a896ca:134d365eac8:-7e3b" target="75a896ca:134d365eac8:-7e28"><mxGeometry as="geometry" x="10.0" y="60.0"><mxPoint as="sourcePoint" x="170.0" y="240.0"/><mxPoint as="targetPoint" x="250.0" y="340.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="150.0" y="340.0"/><mxPoint x="150.0" y="240.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="75a896ca:134d365eac8:-7dc3" parent="75a896ca:134d365eac8:-7eb8" source="75a896ca:134d365eac8:-7c42" target="75a896ca:134d365eac8:-7c1a"><mxGeometry as="geometry" y="50.0"><mxPoint as="sourcePoint" x="310.0" y="230.0"/><mxPoint as="targetPoint" x="410.0" y="230.0"/></mxGeometry></ExplicitLink><TextBlock id="6641adef:135055938d4:-7f1c" parent="75a896ca:134d365eac8:-7eb8" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="t&gt;0"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="t&gt;0"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="t&gt;0"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="420.0" y="200.0"/></TextBlock><BasicBlock angle="90" dependsOnU="1" id="6641adef:135055938d4:-7f1b" interfaceFunctionName="CurrentSensor" ordering="7" parent="75a896ca:134d365eac8:-7eb8" simulationFunctionName="CurrentSensor" simulationFunctionType="DEFAULT" style="CurrentSensor;rotation=90;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CurrentSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="i"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="310.0" y="50.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="75a896ca:134d365eac8:-7bd1" ordering="2" parent="6641adef:135055938d4:-7f1b" style="ExplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="26.0" y="40.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="75a896ca:134d365eac8:-7bd0" ordering="1" parent="6641adef:135055938d4:-7f1b" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="75a896ca:134d365eac8:-7bd2" ordering="1" parent="6641adef:135055938d4:-7f1b" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="6.0" y="40.0"/></ImplicitOutputPort><GroundBlock dependsOnU="1" id="6641adef:135055938d4:-7f17" interfaceFunctionName="Ground" ordering="8" parent="75a896ca:134d365eac8:-7eb8" simulationFunctionName="Ground" simulationFunctionType="DEFAULT" style="Ground;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Ground"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="180.0" y="140.0"/></GroundBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="75a896ca:134d365eac8:-7bc9" ordering="1" parent="6641adef:135055938d4:-7f17" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><Orientation as="orientation" value="NORTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock angle="90" id="6641adef:135055938d4:-7f15" interfaceFunctionName="ConstantVoltage" ordering="9" parent="75a896ca:134d365eac8:-7eb8" simulationFunctionName="ConstantVoltage" simulationFunctionType="DEFAULT" style="ConstantVoltage;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="50"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="50.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ConstantVoltage"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="V"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="50.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="60.0" y="60.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="75a896ca:134d365eac8:-7b81" ordering="1" parent="6641adef:135055938d4:-7f15" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="75a896ca:134d365eac8:-7b80" ordering="1" parent="6641adef:135055938d4:-7f15" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><BasicBlock dependsOnU="1" id="6641adef:135055938d4:-7f12" interfaceFunctionName="Resistor" ordering="10" parent="75a896ca:134d365eac8:-7eb8" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="2"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="180.0" y="20.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="75a896ca:134d365eac8:-7b85" ordering="1" parent="6641adef:135055938d4:-7f12" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="75a896ca:134d365eac8:-7b84" ordering="1" parent="6641adef:135055938d4:-7f12" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><ImplicitLink id="75a896ca:134d365eac8:-7b96" parent="75a896ca:134d365eac8:-7eb8" source="75a896ca:134d365eac8:-7b81" target="75a896ca:134d365eac8:-7b85"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="80.0" y="70.0"/><mxPoint as="targetPoint" x="170.0" y="40.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="80.0" y="40.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="75a896ca:134d365eac8:-7b95" parent="75a896ca:134d365eac8:-7eb8" source="75a896ca:134d365eac8:-7b84" target="75a896ca:134d365eac8:-7bd0"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="220.0" y="40.0"/><mxPoint as="targetPoint" x="330.0" y="50.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="330.0" y="40.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="6641adef:135055938d4:-7f07" ordering="11" parent="75a896ca:134d365eac8:-7eb8" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="197.0" y="117.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="75a896ca:134d365eac8:-7b90" ordering="1" parent="6641adef:135055938d4:-7f07" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="75a896ca:134d365eac8:-7b8f" ordering="2" parent="6641adef:135055938d4:-7f07" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="75a896ca:134d365eac8:-7b91" ordering="1" parent="6641adef:135055938d4:-7f07" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="75a896ca:134d365eac8:-7b8e" parent="75a896ca:134d365eac8:-7eb8" source="75a896ca:134d365eac8:-7b80" target="75a896ca:134d365eac8:-7b91"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="80.0" y="120.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="75a896ca:134d365eac8:-7b8d" parent="75a896ca:134d365eac8:-7eb8" source="75a896ca:134d365eac8:-7bd2" target="75a896ca:134d365eac8:-7b90"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="320.0" y="120.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="75a896ca:134d365eac8:-7b93" parent="75a896ca:134d365eac8:-7eb8" source="75a896ca:134d365eac8:-7b8f" target="75a896ca:134d365eac8:-7bc9"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="200.0" y="140.0"/><mxPoint as="targetPoint" x="200.0" y="120.0"/></mxGeometry></ImplicitLink><TextBlock id="6641adef:135055938d4:-7eff" parent="75a896ca:134d365eac8:-7eb8" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="t&lt;0"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="t&lt;0"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="t&lt;0"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="340.0" y="100.0"/></TextBlock><BasicBlock dependsOnU="1" id="6641adef:135055938d4:-7ec7" interfaceFunctionName="MUX" ordering="12" parent="75a896ca:134d365eac8:-7eb8" simulationFunctionName="multiplex" simulationFunctionType="C_OR_FORTRAN" style="MUX;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="2"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="20.0" width="30.0" x="480.0" y="130.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="6641adef:135055938d4:-7ec5" ordering="1" parent="6641adef:135055938d4:-7ec7" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ExplicitInputPort><ExplicitInputPort dataColumns="1" dataLines="-2" dataType="REAL_MATRIX" id="6641adef:135055938d4:-7ec4" ordering="2" parent="6641adef:135055938d4:-7ec7" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitOutputPort dataColumns="1" dataLines="0" dataType="REAL_MATRIX" id="6641adef:135055938d4:-7ec6" ordering="1" parent="6641adef:135055938d4:-7ec7" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="30.0" y="6.0"/></ExplicitOutputPort><ExplicitLink id="6641adef:135055938d4:-7ebb" parent="75a896ca:134d365eac8:-7eb8" source="6641adef:135055938d4:-7ec6" target="6641adef:135055938d4:-7ecc"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="500.0" y="140.0"/><mxPoint as="targetPoint" x="540.0" y="140.0"/></mxGeometry></ExplicitLink><ExplicitLink id="6641adef:135055938d4:-7eba" parent="75a896ca:134d365eac8:-7eb8" source="75a896ca:134d365eac8:-7bd1" target="6641adef:135055938d4:-7ec5"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="340.0" y="90.0"/><mxPoint as="targetPoint" x="460.0" y="130.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="340.0" y="130.0"/></Array></mxGeometry></ExplicitLink><SplitBlock id="6641adef:135055938d4:-7eb8" ordering="13" parent="75a896ca:134d365eac8:-7eb8" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="457.0" y="227.0"/></SplitBlock><ExplicitOutputPort dataType="UNKNOW_TYPE" id="6641adef:135055938d4:-7eb6" ordering="1" parent="6641adef:135055938d4:-7eb8" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="6641adef:135055938d4:-7eb5" ordering="2" parent="6641adef:135055938d4:-7eb8" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ExplicitOutputPort><ExplicitInputPort dataType="UNKNOW_TYPE" id="6641adef:135055938d4:-7eb7" ordering="1" parent="6641adef:135055938d4:-7eb8" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ExplicitInputPort><ExplicitLink id="6641adef:135055938d4:-7eb4" parent="75a896ca:134d365eac8:-7eb8" source="75a896ca:134d365eac8:-7c19" target="6641adef:135055938d4:-7eb7"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ExplicitLink><ExplicitLink id="6641adef:135055938d4:-7eb3" parent="75a896ca:134d365eac8:-7eb8" source="6641adef:135055938d4:-7eb6" target="75a896ca:134d365eac8:-7e3c"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="460.0" y="340.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="6641adef:135055938d4:-7eb9" parent="75a896ca:134d365eac8:-7eb8" source="6641adef:135055938d4:-7eb5" target="6641adef:135055938d4:-7ec4"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="480.0" y="150.0"/><mxPoint as="targetPoint" x="460.0" y="230.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="460.0" y="150.0"/></Array></mxGeometry></ExplicitLink><BasicBlock blockType="h" id="5635043b:13894cfb31b:-7ecc" interfaceFunctionName="CLOCK_c" ordering="14" parent="75a896ca:134d365eac8:-7eb8" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="119.0"/><data column="1" line="0" realPart="-150.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-3e07f539:168315200c0:-7e56"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-3e07f539:168315200c0:-7e56"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.1"/><data column="0" line="1" value="0.1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.1"/><data column="0" line="1" realPart="0.1"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.1"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-3e07f539:168315200c0:-7e54"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-3e07f539:168315200c0:-7e54"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="123.3773266666667"/><data column="1" line="0" realPart="-169.33333333333331"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="7.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="5.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-3e07f539:168315200c0:-7e51"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-3e07f539:168315200c0:-7e51"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="100.0"/><data column="0" line="2" realPart="133.8773266666667"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-44.0"/><data column="0" line="1" realPart="-180.0"/><data column="0" line="2" realPart="-158.33333333333331"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="132.71066000000005"/><data column="0" line="1" realPart="149.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-173.33333333333331"/><data column="0" line="1" realPart="-126.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="135.04399333333336"/><data column="0" line="1" realPart="140.70999999999998"/><data column="0" line="2" realPart="100.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-173.33333333333331"/><data column="0" line="1" realPart="-50.0"/><data column="0" line="2" realPart="-50.0"/><data column="0" line="3" realPart="4.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="540.0" y="50.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="5635043b:13894cfb31b:-7ecb" ordering="1" parent="5635043b:13894cfb31b:-7ecc" style="CommandPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><CommandControlLink id="5635043b:13894cfb31b:-7ec8" parent="75a896ca:134d365eac8:-7eb8" source="5635043b:13894cfb31b:-7ecb" target="6641adef:135055938d4:-7ecb"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="560.0" y="94.0"/><mxPoint as="targetPoint" x="560.0" y="120.0"/></mxGeometry></CommandControlLink></root></mxGraphModel><mxCell as="defaultParent" id="75a896ca:134d365eac8:-7eb8" parent="75a896ca:134d365eac8:-7eb7"/></XcosDiagram>
\ No newline at end of file diff --git a/Working_Examples/215/CH9/EX9.1/ex9_1.sce b/Working_Examples/215/CH9/EX9.1/ex9_1.sce new file mode 100755 index 0000000..a20494a --- /dev/null +++ b/Working_Examples/215/CH9/EX9.1/ex9_1.sce @@ -0,0 +1,18 @@ +//Example 9.1
+//Calculate resistor values for underdamped and overdamped responses
+printf("Given")
+disp('L=10mH and C=100uF')
+L=10*10^-3;C=100*10^-6
+w0=sqrt(1/(L*C))
+printf("w0=%drad/s\n",w0)
+//alpha(a)=1/(2*R*C)
+disp('For an overdamped response')
+disp('a > w0')
+//On solving
+disp('Hence')
+disp('R<5ohm')
+disp('For an underdamped response')
+disp('a < w0')
+//On solving
+disp('Hence')
+disp('R>5ohm')
\ No newline at end of file diff --git a/Working_Examples/215/CH9/EX9.2/Figure9_2.jpg b/Working_Examples/215/CH9/EX9.2/Figure9_2.jpg Binary files differnew file mode 100755 index 0000000..b111279 --- /dev/null +++ b/Working_Examples/215/CH9/EX9.2/Figure9_2.jpg diff --git a/Working_Examples/215/CH9/EX9.2/Figure9_2_xcos.jpg b/Working_Examples/215/CH9/EX9.2/Figure9_2_xcos.jpg Binary files differnew file mode 100755 index 0000000..1434d4f --- /dev/null +++ b/Working_Examples/215/CH9/EX9.2/Figure9_2_xcos.jpg diff --git a/Working_Examples/215/CH9/EX9.2/ex9_2.xcos b/Working_Examples/215/CH9/EX9.2/ex9_2.xcos new file mode 100755 index 0000000..8567cfc --- /dev/null +++ b/Working_Examples/215/CH9/EX9.2/ex9_2.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" finalIntegrationTime="0.001" title="ex9_2"><!--Xcos - 1.0 - scilab-5.5.2 - 20160406 2040--><mxGraphModel as="model"><root><mxCell id="2adc5834:134f2773fd2:-7ffd"/><mxCell id="2adc5834:134f2773fd2:-7ffe" parent="2adc5834:134f2773fd2:-7ffd"/><GroundBlock dependsOnU="1" id="1f781c6f:13506286c0b:-7f49" interfaceFunctionName="Ground" ordering="1" parent="2adc5834:134f2773fd2:-7ffe" simulationFunctionName="Ground" simulationFunctionType="DEFAULT" style="Ground;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Ground"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="200.0" y="280.0"/></GroundBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="2adc5834:134f2773fd2:-7fd9" ordering="1" parent="1f781c6f:13506286c0b:-7f49" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><Orientation as="orientation" value="NORTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock angle="90" dependsOnU="1" id="1f781c6f:13506286c0b:-7f47" interfaceFunctionName="Inductor" ordering="2" parent="2adc5834:134f2773fd2:-7ffe" simulationFunctionName="Inductor" simulationFunctionType="DEFAULT" style="Inductor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="1000/5"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="200.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Inductor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="L"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="200.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="90.0" y="150.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="2adc5834:134f2773fd2:-7f62" ordering="1" parent="1f781c6f:13506286c0b:-7f47" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="2adc5834:134f2773fd2:-7f61" ordering="1" parent="1f781c6f:13506286c0b:-7f47" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><BasicBlock angle="90" dependsOnU="1" id="1f781c6f:13506286c0b:-7f44" interfaceFunctionName="Resistor" ordering="3" parent="2adc5834:134f2773fd2:-7ffe" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="200"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="200.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="200.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="200.0" y="150.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="2adc5834:134f2773fd2:-7f66" ordering="1" parent="1f781c6f:13506286c0b:-7f44" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="2adc5834:134f2773fd2:-7f65" ordering="1" parent="1f781c6f:13506286c0b:-7f44" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><BasicBlock dependsOnU="1" id="1f781c6f:13506286c0b:-7f41" interfaceFunctionName="PotentialSensor" ordering="4" parent="2adc5834:134f2773fd2:-7ffe" simulationFunctionName="PotentialSensor" simulationFunctionType="DEFAULT" style="PotentialSensor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="PotentialSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="v"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="360.0" y="90.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="2adc5834:134f2773fd2:-7faf" ordering="1" parent="1f781c6f:13506286c0b:-7f41" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="2adc5834:134f2773fd2:-7fb0" ordering="1" parent="1f781c6f:13506286c0b:-7f41" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><BasicBlock dependsOnU="1" id="1f781c6f:13506286c0b:-7f3e" interfaceFunctionName="CSCOPE" ordering="5" parent="2adc5834:134f2773fd2:-7ffe" simulationFunctionName="cscope" simulationFunctionType="C_OR_FORTRAN" style="CSCOPE;flip=false;mirror=false"><ScilabString as="exprs" height="10" width="1"><data column="0" line="0" value="1 3 5 7 9 11 13 15"/><data column="0" line="1" value="-1"/><data column="0" line="2" value="[]"/><data column="0" line="3" value="[600;400]"/><data column="0" line="4" value="0"/><data column="0" line="5" value="65"/><data column="0" line="6" value="0.001"/><data column="0" line="7" value="20"/><data column="0" line="8" value="0"/><data column="0" line="9" value=""/></ScilabString><ScilabDouble as="realParameters" height="4" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="0.0"/><data column="0" line="2" realPart="65.0"/><data column="0" line="3" realPart="0.001"/></ScilabDouble><ScilabDouble as="integerParameters" height="15" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="1.0"/><data column="0" line="4" realPart="3.0"/><data column="0" line="5" realPart="5.0"/><data column="0" line="6" realPart="7.0"/><data column="0" line="7" realPart="9.0"/><data column="0" line="8" realPart="11.0"/><data column="0" line="9" realPart="13.0"/><data column="0" line="10" realPart="15.0"/><data column="0" line="11" realPart="-1.0"/><data column="0" line="12" realPart="-1.0"/><data column="0" line="13" realPart="600.0"/><data column="0" line="14" realPart="400.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="450.0" y="90.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="1f781c6f:13506286c0b:-7f02" ordering="1" parent="1f781c6f:13506286c0b:-7f3e" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ControlPort dataType="UNKNOW_TYPE" id="1f781c6f:13506286c0b:-7f01" ordering="1" parent="1f781c6f:13506286c0b:-7f3e" style="ControlPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><SplitBlock id="1f781c6f:13506286c0b:-7f39" ordering="6" parent="2adc5834:134f2773fd2:-7ffe" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="217.0" y="77.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="2adc5834:134f2773fd2:-7f98" ordering="1" parent="1f781c6f:13506286c0b:-7f39" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="2adc5834:134f2773fd2:-7f97" ordering="2" parent="1f781c6f:13506286c0b:-7f39" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="2adc5834:134f2773fd2:-7f99" ordering="1" parent="1f781c6f:13506286c0b:-7f39" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="2adc5834:134f2773fd2:-7f96" parent="2adc5834:134f2773fd2:-7ffe" source="2adc5834:134f2773fd2:-7f62" target="2adc5834:134f2773fd2:-7f99"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="110.0" y="80.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="2adc5834:134f2773fd2:-7f9b" parent="2adc5834:134f2773fd2:-7ffe" source="2adc5834:134f2773fd2:-7f97" target="2adc5834:134f2773fd2:-7f66"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="220.0" y="150.0"/><mxPoint as="targetPoint" x="220.0" y="80.0"/></mxGeometry></ImplicitLink><SplitBlock id="1f781c6f:13506286c0b:-7f33" ordering="7" parent="2adc5834:134f2773fd2:-7ffe" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="217.0" y="237.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="2adc5834:134f2773fd2:-7f91" ordering="1" parent="1f781c6f:13506286c0b:-7f33" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="2adc5834:134f2773fd2:-7f90" ordering="2" parent="1f781c6f:13506286c0b:-7f33" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="2adc5834:134f2773fd2:-7f92" ordering="1" parent="1f781c6f:13506286c0b:-7f33" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="2adc5834:134f2773fd2:-7f8f" parent="2adc5834:134f2773fd2:-7ffe" source="2adc5834:134f2773fd2:-7f61" target="2adc5834:134f2773fd2:-7f92"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="110.0" y="240.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="2adc5834:134f2773fd2:-7f8e" parent="2adc5834:134f2773fd2:-7ffe" source="2adc5834:134f2773fd2:-7f69" target="2adc5834:134f2773fd2:-7f91"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="320.0" y="240.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="1f781c6f:13506286c0b:-7f2d" ordering="8" parent="2adc5834:134f2773fd2:-7ffe" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="217.0" y="237.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="2adc5834:134f2773fd2:-7f8a" ordering="1" parent="1f781c6f:13506286c0b:-7f2d" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="2adc5834:134f2773fd2:-7f89" ordering="2" parent="1f781c6f:13506286c0b:-7f2d" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="2adc5834:134f2773fd2:-7f8b" ordering="1" parent="1f781c6f:13506286c0b:-7f2d" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="2adc5834:134f2773fd2:-7f88" parent="2adc5834:134f2773fd2:-7ffe" source="2adc5834:134f2773fd2:-7f65" target="2adc5834:134f2773fd2:-7f8b"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="2adc5834:134f2773fd2:-7f87" parent="2adc5834:134f2773fd2:-7ffe" source="2adc5834:134f2773fd2:-7f90" target="2adc5834:134f2773fd2:-7f8a"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="2adc5834:134f2773fd2:-7f8d" parent="2adc5834:134f2773fd2:-7ffe" source="2adc5834:134f2773fd2:-7f89" target="2adc5834:134f2773fd2:-7fd9"><mxGeometry as="geometry" y="10.0"><mxPoint as="sourcePoint" x="220.0" y="290.0"/><mxPoint as="targetPoint" x="220.0" y="240.0"/></mxGeometry></ImplicitLink><SplitBlock id="1f781c6f:13506286c0b:-7f26" ordering="9" parent="2adc5834:134f2773fd2:-7ffe" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="317.0" y="107.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="2adc5834:134f2773fd2:-7f83" ordering="1" parent="1f781c6f:13506286c0b:-7f26" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="2adc5834:134f2773fd2:-7f82" ordering="2" parent="1f781c6f:13506286c0b:-7f26" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="2adc5834:134f2773fd2:-7f84" ordering="1" parent="1f781c6f:13506286c0b:-7f26" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="2adc5834:134f2773fd2:-7f81" parent="2adc5834:134f2773fd2:-7ffe" source="2adc5834:134f2773fd2:-7f98" target="2adc5834:134f2773fd2:-7f84"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="320.0" y="80.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="2adc5834:134f2773fd2:-7f80" parent="2adc5834:134f2773fd2:-7ffe" source="2adc5834:134f2773fd2:-7f83" target="2adc5834:134f2773fd2:-7f6a"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="2adc5834:134f2773fd2:-7f86" parent="2adc5834:134f2773fd2:-7ffe" source="2adc5834:134f2773fd2:-7f82" target="2adc5834:134f2773fd2:-7faf"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="360.0" y="110.0"/><mxPoint as="targetPoint" x="320.0" y="110.0"/></mxGeometry></ImplicitLink><ExplicitLink id="2adc5834:134f2773fd2:-7f7f" parent="2adc5834:134f2773fd2:-7ffe" source="2adc5834:134f2773fd2:-7fb0" target="1f781c6f:13506286c0b:-7f02"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="400.0" y="110.0"/><mxPoint as="targetPoint" x="450.0" y="110.0"/></mxGeometry></ExplicitLink><BasicBlock angle="90" dependsOnU="1" id="1f781c6f:13506286c0b:-7f4c" interfaceFunctionName="Capacitor" ordering="10" parent="2adc5834:134f2773fd2:-7ffe" simulationFunctionName="Capacitor" simulationFunctionType="DEFAULT" style="Capacitor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="2" width="1"><data column="0" line="0" value="20e-9"/><data column="0" line="1" value="60"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="2.0E-8"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Capacitor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="2"><data column="0" line="0" value="C"/><data column="1" line="0" value="v"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="2.0E-8"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="60.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="300.0" y="150.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="2adc5834:134f2773fd2:-7f6a" ordering="1" parent="1f781c6f:13506286c0b:-7f4c" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="2adc5834:134f2773fd2:-7f69" ordering="1" parent="1f781c6f:13506286c0b:-7f4c" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><BasicBlock blockType="h" id="5635043b:13894cfb31b:-7cd6" interfaceFunctionName="CLOCK_c" ordering="11" parent="2adc5834:134f2773fd2:-7ffe" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="99.0"/><data column="1" line="0" realPart="-160.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="29902f0:16797834072:-7fa3"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="29902f0:16797834072:-7fa3"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-70.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.0001"/><data column="0" line="1" value="0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="1.0E-4"/><data column="0" line="1" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="29902f0:16797834072:-7fa1"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="29902f0:16797834072:-7fa1"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="90.3773266666667"/><data column="1" line="0" realPart="-166.33333333333331"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="7.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="5.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="29902f0:16797834072:-7f9e"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="29902f0:16797834072:-7f9e"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="60.0"/><data column="0" line="2" realPart="97.54399333333338"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-74.0"/><data column="0" line="1" realPart="-170.0"/><data column="0" line="2" realPart="-155.33333333333331"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="97.48843777777782"/><data column="0" line="1" realPart="129.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-163.66666666666666"/><data column="0" line="1" realPart="-136.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="97.59954888888893"/><data column="0" line="1" realPart="100.70999999999998"/><data column="0" line="2" realPart="60.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-163.66666666666666"/><data column="0" line="1" realPart="-40.0"/><data column="0" line="2" realPart="-40.0"/><data column="0" line="3" realPart="-26.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="450.0" y="20.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="5635043b:13894cfb31b:-7cd0" ordering="1" parent="5635043b:13894cfb31b:-7cd6" style="CommandPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><CommandControlLink id="5635043b:13894cfb31b:-7cd2" parent="2adc5834:134f2773fd2:-7ffe" source="5635043b:13894cfb31b:-7cd0" target="1f781c6f:13506286c0b:-7f01"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="470.0" y="64.0"/><mxPoint as="targetPoint" x="470.0" y="90.0"/></mxGeometry></CommandControlLink></root></mxGraphModel><mxCell as="defaultParent" id="2adc5834:134f2773fd2:-7ffe" parent="2adc5834:134f2773fd2:-7ffd"/></XcosDiagram>
\ No newline at end of file diff --git a/Working_Examples/215/CH9/EX9.3/Figure9_3.jpg b/Working_Examples/215/CH9/EX9.3/Figure9_3.jpg Binary files differnew file mode 100755 index 0000000..a4b103d --- /dev/null +++ b/Working_Examples/215/CH9/EX9.3/Figure9_3.jpg diff --git a/Working_Examples/215/CH9/EX9.3/Figure9_3_xcos.jpg b/Working_Examples/215/CH9/EX9.3/Figure9_3_xcos.jpg Binary files differnew file mode 100755 index 0000000..bbad2eb --- /dev/null +++ b/Working_Examples/215/CH9/EX9.3/Figure9_3_xcos.jpg diff --git a/Working_Examples/215/CH9/EX9.3/ex9_3.xcos b/Working_Examples/215/CH9/EX9.3/ex9_3.xcos new file mode 100755 index 0000000..617ab88 --- /dev/null +++ b/Working_Examples/215/CH9/EX9.3/ex9_3.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" finalIntegrationTime="0.001" title="ex9_3"><!--Xcos - 1.0 - scilab-5.5.2 - 20160406 2040--><mxGraphModel as="model"><root><mxCell id="-67b45fed:134f41509ef:-7ffd"/><mxCell id="-67b45fed:134f41509ef:-7ffe" parent="-67b45fed:134f41509ef:-7ffd"/><GroundBlock dependsOnU="1" id="1f781c6f:13506286c0b:-7ef0" interfaceFunctionName="Ground" ordering="1" parent="-67b45fed:134f41509ef:-7ffe" simulationFunctionName="Ground" simulationFunctionType="DEFAULT" style="Ground;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Ground"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="490.0" y="330.0"/></GroundBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-67b45fed:134f41509ef:-7f65" ordering="1" parent="1f781c6f:13506286c0b:-7ef0" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><Orientation as="orientation" value="NORTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock angle="90" dependsOnU="1" id="1f781c6f:13506286c0b:-7eee" interfaceFunctionName="Inductor" ordering="2" parent="-67b45fed:134f41509ef:-7ffe" simulationFunctionName="Inductor" simulationFunctionType="DEFAULT" style="Inductor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="1000/12"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="83.33333333333333"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Inductor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="L"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="83.33333333333333"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="420.0" y="200.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-67b45fed:134f41509ef:-7f39" ordering="1" parent="1f781c6f:13506286c0b:-7eee" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-67b45fed:134f41509ef:-7f38" ordering="1" parent="1f781c6f:13506286c0b:-7eee" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><BasicBlock angle="90" dependsOnU="1" id="1f781c6f:13506286c0b:-7eeb" interfaceFunctionName="Resistor" ordering="3" parent="-67b45fed:134f41509ef:-7ffe" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="30000"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="30000.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="30000.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="490.0" y="200.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-67b45fed:134f41509ef:-7f35" ordering="1" parent="1f781c6f:13506286c0b:-7eeb" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-67b45fed:134f41509ef:-7f34" ordering="1" parent="1f781c6f:13506286c0b:-7eeb" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><SplitBlock id="1f781c6f:13506286c0b:-7ee8" ordering="4" parent="-67b45fed:134f41509ef:-7ffe" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="567.0" y="287.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-67b45fed:134f41509ef:-7f4e" ordering="1" parent="1f781c6f:13506286c0b:-7ee8" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-67b45fed:134f41509ef:-7f4d" ordering="2" parent="1f781c6f:13506286c0b:-7ee8" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-67b45fed:134f41509ef:-7f4f" ordering="1" parent="1f781c6f:13506286c0b:-7ee8" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-67b45fed:134f41509ef:-7f4c" parent="-67b45fed:134f41509ef:-7ffe" source="-67b45fed:134f41509ef:-7f38" target="-67b45fed:134f41509ef:-7f4f"><mxGeometry as="geometry" x="330.0" y="50.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="440.0" y="290.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-67b45fed:134f41509ef:-7f4b" parent="-67b45fed:134f41509ef:-7ffe" source="-67b45fed:134f41509ef:-7eb4" target="-67b45fed:134f41509ef:-7f4e"><mxGeometry as="geometry" x="250.0" y="50.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="570.0" y="290.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="1f781c6f:13506286c0b:-7ee2" ordering="5" parent="-67b45fed:134f41509ef:-7ffe" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="507.0" y="287.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-67b45fed:134f41509ef:-7f48" ordering="1" parent="1f781c6f:13506286c0b:-7ee2" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-67b45fed:134f41509ef:-7f47" ordering="2" parent="1f781c6f:13506286c0b:-7ee2" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-67b45fed:134f41509ef:-7f49" ordering="1" parent="1f781c6f:13506286c0b:-7ee2" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-67b45fed:134f41509ef:-7f46" parent="-67b45fed:134f41509ef:-7ffe" source="-67b45fed:134f41509ef:-7f34" target="-67b45fed:134f41509ef:-7f49"><mxGeometry as="geometry" x="310.0" y="50.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-67b45fed:134f41509ef:-7f45" parent="-67b45fed:134f41509ef:-7ffe" source="-67b45fed:134f41509ef:-7f4d" target="-67b45fed:134f41509ef:-7f48"><mxGeometry as="geometry" x="330.0" y="50.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-67b45fed:134f41509ef:-7f44" parent="-67b45fed:134f41509ef:-7ffe" source="-67b45fed:134f41509ef:-7f47" target="-67b45fed:134f41509ef:-7f65"><mxGeometry as="geometry" x="330.0" y="60.0"><mxPoint as="sourcePoint" x="550.0" y="340.0"/><mxPoint as="targetPoint" x="550.0" y="290.0"/></mxGeometry></ImplicitLink><BasicBlock dependsOnU="1" id="1f781c6f:13506286c0b:-7edb" interfaceFunctionName="CSCOPE" ordering="6" parent="-67b45fed:134f41509ef:-7ffe" simulationFunctionName="cscope" simulationFunctionType="C_OR_FORTRAN" style="CSCOPE;flip=false;mirror=false"><ScilabString as="exprs" height="10" width="1"><data column="0" line="0" value="1 3 5 7 9 11 13 15"/><data column="0" line="1" value="-1"/><data column="0" line="2" value="[]"/><data column="0" line="3" value="[600;400]"/><data column="0" line="4" value="0"/><data column="0" line="5" value="0.0002"/><data column="0" line="6" value="0.001"/><data column="0" line="7" value="20"/><data column="0" line="8" value="0"/><data column="0" line="9" value=""/></ScilabString><ScilabDouble as="realParameters" height="4" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="0.0"/><data column="0" line="2" realPart="2.0E-4"/><data column="0" line="3" realPart="0.001"/></ScilabDouble><ScilabDouble as="integerParameters" height="15" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="1.0"/><data column="0" line="4" realPart="3.0"/><data column="0" line="5" realPart="5.0"/><data column="0" line="6" realPart="7.0"/><data column="0" line="7" realPart="9.0"/><data column="0" line="8" realPart="11.0"/><data column="0" line="9" realPart="13.0"/><data column="0" line="10" realPart="15.0"/><data column="0" line="11" realPart="-1.0"/><data column="0" line="12" realPart="-1.0"/><data column="0" line="13" realPart="600.0"/><data column="0" line="14" realPart="400.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="830.0" y="190.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="-67b45fed:134f41509ef:-7b5f" ordering="1" parent="1f781c6f:13506286c0b:-7edb" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ControlPort dataType="UNKNOW_TYPE" id="-67b45fed:134f41509ef:-7b5e" ordering="1" parent="1f781c6f:13506286c0b:-7edb" style="ControlPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><BasicBlock dependsOnU="1" id="1f781c6f:13506286c0b:-7ed6" interfaceFunctionName="PotentialSensor" ordering="7" parent="-67b45fed:134f41509ef:-7ffe" simulationFunctionName="PotentialSensor" simulationFunctionType="DEFAULT" style="PotentialSensor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="PotentialSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="v"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="600.0" y="110.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-67b45fed:134f41509ef:-7eca" ordering="1" parent="1f781c6f:13506286c0b:-7ed6" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-67b45fed:134f41509ef:-7ecb" ordering="1" parent="1f781c6f:13506286c0b:-7ed6" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><SplitBlock id="1f781c6f:13506286c0b:-7ed3" ordering="8" parent="-67b45fed:134f41509ef:-7ffe" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="567.0" y="127.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-67b45fed:134f41509ef:-7ec6" ordering="1" parent="1f781c6f:13506286c0b:-7ed3" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-67b45fed:134f41509ef:-7ec5" ordering="2" parent="1f781c6f:13506286c0b:-7ed3" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-67b45fed:134f41509ef:-7ec7" ordering="1" parent="1f781c6f:13506286c0b:-7ed3" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-67b45fed:134f41509ef:-7ec3" parent="-67b45fed:134f41509ef:-7ffe" source="-67b45fed:134f41509ef:-7ec6" target="-67b45fed:134f41509ef:-7eb5"><mxGeometry as="geometry" x="160.0" y="40.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-67b45fed:134f41509ef:-7ec9" parent="-67b45fed:134f41509ef:-7ffe" source="-67b45fed:134f41509ef:-7ec5" target="-67b45fed:134f41509ef:-7eca"><mxGeometry as="geometry" x="160.0" y="10.0"><mxPoint as="sourcePoint" x="510.0" y="150.0"/><mxPoint as="targetPoint" x="490.0" y="150.0"/></mxGeometry></ImplicitLink><SplitBlock id="1f781c6f:13506286c0b:-7ecd" ordering="9" parent="-67b45fed:134f41509ef:-7ffe" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="507.0" y="127.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-67b45fed:134f41509ef:-7ebd" ordering="1" parent="1f781c6f:13506286c0b:-7ecd" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-67b45fed:134f41509ef:-7ebc" ordering="2" parent="1f781c6f:13506286c0b:-7ecd" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-67b45fed:134f41509ef:-7ebe" ordering="1" parent="1f781c6f:13506286c0b:-7ecd" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-67b45fed:134f41509ef:-7ebb" parent="-67b45fed:134f41509ef:-7ffe" source="-67b45fed:134f41509ef:-7f39" target="-67b45fed:134f41509ef:-7ebe"><mxGeometry as="geometry" x="320.0" y="40.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="440.0" y="130.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-67b45fed:134f41509ef:-7eba" parent="-67b45fed:134f41509ef:-7ffe" source="-67b45fed:134f41509ef:-7ebd" target="-67b45fed:134f41509ef:-7ec7"><mxGeometry as="geometry" x="160.0" y="40.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="490.0" y="130.0"/><mxPoint x="490.0" y="130.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-67b45fed:134f41509ef:-7ec0" parent="-67b45fed:134f41509ef:-7ffe" source="-67b45fed:134f41509ef:-7ebc" target="-67b45fed:134f41509ef:-7f35"><mxGeometry as="geometry" x="320.0" y="40.0"><mxPoint as="sourcePoint" x="550.0" y="210.0"/><mxPoint as="targetPoint" x="550.0" y="130.0"/></mxGeometry></ImplicitLink><BasicBlock dependsOnU="1" id="1f781c6f:13506286c0b:-7ec6" interfaceFunctionName="GAINBLK_f" ordering="10" parent="-67b45fed:134f41509ef:-7ffe" simulationFunctionName="gain" simulationFunctionType="DEFAULT" style="GAINBLK_f;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="1/30000"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="3.3333333333333335E-5"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="50.0" width="40.0" x="670.0" y="110.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-67b45fed:134f41509ef:-7e8d" ordering="1" parent="1f781c6f:13506286c0b:-7ec6" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-67b45fed:134f41509ef:-7e8c" ordering="1" parent="1f781c6f:13506286c0b:-7ec6" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ExplicitLink id="-67b45fed:134f41509ef:-7e90" parent="-67b45fed:134f41509ef:-7ffe" source="-67b45fed:134f41509ef:-7ecb" target="-67b45fed:134f41509ef:-7e8d"><mxGeometry as="geometry" x="240.0" y="20.0"><mxPoint as="sourcePoint" x="560.0" y="130.0"/><mxPoint as="targetPoint" x="590.0" y="130.0"/></mxGeometry></ExplicitLink><BasicBlock angle="90" id="1f781c6f:13506286c0b:-7ec2" interfaceFunctionName="ConstantVoltage" ordering="11" parent="-67b45fed:134f41509ef:-7ffe" simulationFunctionName="ConstantVoltage" simulationFunctionType="DEFAULT" style="ConstantVoltage;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="4"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ConstantVoltage"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="V"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="20.0" y="190.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-67b45fed:134f41509ef:-7d6d" ordering="1" parent="1f781c6f:13506286c0b:-7ec2" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-67b45fed:134f41509ef:-7d6c" ordering="1" parent="1f781c6f:13506286c0b:-7ec2" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><BasicBlock dependsOnU="1" id="1f781c6f:13506286c0b:-7ebf" interfaceFunctionName="CurrentSensor" ordering="12" parent="-67b45fed:134f41509ef:-7ffe" simulationFunctionName="CurrentSensor" simulationFunctionType="DEFAULT" style="CurrentSensor;rotation=0;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CurrentSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="i"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="190.0" y="110.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-67b45fed:134f41509ef:-7db3" ordering="2" parent="1f781c6f:13506286c0b:-7ebf" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="26.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-67b45fed:134f41509ef:-7db2" ordering="1" parent="1f781c6f:13506286c0b:-7ebf" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-67b45fed:134f41509ef:-7db4" ordering="1" parent="1f781c6f:13506286c0b:-7ebf" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="6.0"/></ImplicitOutputPort><GroundBlock dependsOnU="1" id="1f781c6f:13506286c0b:-7ebb" interfaceFunctionName="Ground" ordering="13" parent="-67b45fed:134f41509ef:-7ffe" simulationFunctionName="Ground" simulationFunctionType="DEFAULT" style="Ground;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Ground"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="230.0" y="340.0"/></GroundBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-67b45fed:134f41509ef:-7db0" ordering="1" parent="1f781c6f:13506286c0b:-7ebb" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><Orientation as="orientation" value="NORTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock angle="90" dependsOnU="1" id="1f781c6f:13506286c0b:-7eb9" interfaceFunctionName="Capacitor" ordering="14" parent="-67b45fed:134f41509ef:-7ffe" simulationFunctionName="Capacitor" simulationFunctionType="DEFAULT" style="Capacitor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="2" width="1"><data column="0" line="0" value="2e-12"/><data column="0" line="1" value="0"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="2.0E-12"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Capacitor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="2"><data column="0" line="0" value="C"/><data column="1" line="0" value="v"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="2.0E-12"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="310.0" y="200.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-67b45fed:134f41509ef:-7d7d" ordering="1" parent="1f781c6f:13506286c0b:-7eb9" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-67b45fed:134f41509ef:-7d7c" ordering="1" parent="1f781c6f:13506286c0b:-7eb9" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><BasicBlock dependsOnU="1" id="1f781c6f:13506286c0b:-7eb6" interfaceFunctionName="Inductor" ordering="15" parent="-67b45fed:134f41509ef:-7ffe" simulationFunctionName="Inductor" simulationFunctionType="DEFAULT" style="Inductor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="12e-3"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="0.012"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Inductor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="L"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.012"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="120.0" y="110.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-67b45fed:134f41509ef:-7d75" ordering="1" parent="1f781c6f:13506286c0b:-7eb6" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-67b45fed:134f41509ef:-7d74" ordering="1" parent="1f781c6f:13506286c0b:-7eb6" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><BasicBlock dependsOnU="1" id="1f781c6f:13506286c0b:-7eb3" interfaceFunctionName="Resistor" ordering="16" parent="-67b45fed:134f41509ef:-7ffe" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="2000"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="2000.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="2000.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="50.0" y="110.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-67b45fed:134f41509ef:-7d71" ordering="1" parent="1f781c6f:13506286c0b:-7eb3" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-67b45fed:134f41509ef:-7d70" ordering="1" parent="1f781c6f:13506286c0b:-7eb3" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><BasicBlock angle="90" dependsOnU="1" id="1f781c6f:13506286c0b:-7eb0" interfaceFunctionName="Resistor" ordering="17" parent="-67b45fed:134f41509ef:-7ffe" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="30000"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="30000.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="30000.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="230.0" y="200.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-67b45fed:134f41509ef:-7d79" ordering="1" parent="1f781c6f:13506286c0b:-7eb0" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-67b45fed:134f41509ef:-7d78" ordering="1" parent="1f781c6f:13506286c0b:-7eb0" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitLink id="-67b45fed:134f41509ef:-7d9e" parent="-67b45fed:134f41509ef:-7ffe" source="-67b45fed:134f41509ef:-7d6d" target="-67b45fed:134f41509ef:-7d71"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="40.0" y="190.0"/><mxPoint as="targetPoint" x="60.0" y="130.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="40.0" y="130.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-67b45fed:134f41509ef:-7d9d" parent="-67b45fed:134f41509ef:-7ffe" source="-67b45fed:134f41509ef:-7d70" target="-67b45fed:134f41509ef:-7d75"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="110.0" y="130.0"/><mxPoint as="targetPoint" x="140.0" y="130.0"/></mxGeometry></ImplicitLink><SplitBlock id="1f781c6f:13506286c0b:-7eab" ordering="18" parent="-67b45fed:134f41509ef:-7ffe" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="247.0" y="297.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-67b45fed:134f41509ef:-7d8b" ordering="1" parent="1f781c6f:13506286c0b:-7eab" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-67b45fed:134f41509ef:-7d8a" ordering="2" parent="1f781c6f:13506286c0b:-7eab" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-67b45fed:134f41509ef:-7d8c" ordering="1" parent="1f781c6f:13506286c0b:-7eab" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-67b45fed:134f41509ef:-7d89" parent="-67b45fed:134f41509ef:-7ffe" source="-67b45fed:134f41509ef:-7d6c" target="-67b45fed:134f41509ef:-7d8c"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="40.0" y="300.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-67b45fed:134f41509ef:-7d88" parent="-67b45fed:134f41509ef:-7ffe" source="-67b45fed:134f41509ef:-7d7c" target="-67b45fed:134f41509ef:-7d8b"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="330.0" y="300.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="1f781c6f:13506286c0b:-7ea5" ordering="19" parent="-67b45fed:134f41509ef:-7ffe" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="247.0" y="297.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-67b45fed:134f41509ef:-7d84" ordering="1" parent="1f781c6f:13506286c0b:-7ea5" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-67b45fed:134f41509ef:-7d83" ordering="2" parent="1f781c6f:13506286c0b:-7ea5" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-67b45fed:134f41509ef:-7d85" ordering="1" parent="1f781c6f:13506286c0b:-7ea5" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-67b45fed:134f41509ef:-7d82" parent="-67b45fed:134f41509ef:-7ffe" source="-67b45fed:134f41509ef:-7d78" target="-67b45fed:134f41509ef:-7d85"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-67b45fed:134f41509ef:-7d81" parent="-67b45fed:134f41509ef:-7ffe" source="-67b45fed:134f41509ef:-7d8a" target="-67b45fed:134f41509ef:-7d84"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-67b45fed:134f41509ef:-7d87" parent="-67b45fed:134f41509ef:-7ffe" source="-67b45fed:134f41509ef:-7d83" target="-67b45fed:134f41509ef:-7db0"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="240.0" y="340.0"/><mxPoint as="targetPoint" x="240.0" y="300.0"/></mxGeometry></ImplicitLink><ImplicitLink id="-67b45fed:134f41509ef:-7c9f" parent="-67b45fed:134f41509ef:-7ffe" source="-67b45fed:134f41509ef:-7d74" target="-67b45fed:134f41509ef:-7db2"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="160.0" y="130.0"/><mxPoint as="targetPoint" x="190.0" y="130.0"/></mxGeometry></ImplicitLink><SplitBlock id="1f781c6f:13506286c0b:-7e9d" ordering="20" parent="-67b45fed:134f41509ef:-7ffe" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="247.0" y="117.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-67b45fed:134f41509ef:-7c9a" ordering="1" parent="1f781c6f:13506286c0b:-7e9d" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-67b45fed:134f41509ef:-7c99" ordering="2" parent="1f781c6f:13506286c0b:-7e9d" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-67b45fed:134f41509ef:-7c9b" ordering="1" parent="1f781c6f:13506286c0b:-7e9d" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-67b45fed:134f41509ef:-7c98" parent="-67b45fed:134f41509ef:-7ffe" source="-67b45fed:134f41509ef:-7db4" target="-67b45fed:134f41509ef:-7c9b"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-67b45fed:134f41509ef:-7c97" parent="-67b45fed:134f41509ef:-7ffe" source="-67b45fed:134f41509ef:-7c9a" target="-67b45fed:134f41509ef:-7d7d"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="330.0" y="120.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-67b45fed:134f41509ef:-7c9d" parent="-67b45fed:134f41509ef:-7ffe" source="-67b45fed:134f41509ef:-7c99" target="-67b45fed:134f41509ef:-7d79"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="240.0" y="220.0"/><mxPoint as="targetPoint" x="240.0" y="120.0"/></mxGeometry></ImplicitLink><BasicBlock dependsOnU="1" id="1f781c6f:13506286c0b:-7e95" interfaceFunctionName="MUX" ordering="21" parent="-67b45fed:134f41509ef:-7ffe" simulationFunctionName="multiplex" simulationFunctionType="C_OR_FORTRAN" style="MUX;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="2"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="20.0" width="30.0" x="750.0" y="200.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="-67b45fed:134f41509ef:-7b7b" ordering="1" parent="1f781c6f:13506286c0b:-7e95" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ExplicitInputPort><ExplicitInputPort dataColumns="1" dataLines="-2" dataType="REAL_MATRIX" id="-67b45fed:134f41509ef:-7b7a" ordering="2" parent="1f781c6f:13506286c0b:-7e95" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitOutputPort dataColumns="1" dataLines="0" dataType="REAL_MATRIX" id="-67b45fed:134f41509ef:-7b7c" ordering="1" parent="1f781c6f:13506286c0b:-7e95" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="30.0" y="6.0"/></ExplicitOutputPort><ExplicitLink id="-67b45fed:134f41509ef:-7b67" parent="-67b45fed:134f41509ef:-7ffe" source="-67b45fed:134f41509ef:-7e8c" target="-67b45fed:134f41509ef:-7b7b"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="710.0" y="130.0"/><mxPoint as="targetPoint" x="750.0" y="200.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="730.0" y="130.0"/><mxPoint x="730.0" y="200.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="-67b45fed:134f41509ef:-7b66" parent="-67b45fed:134f41509ef:-7ffe" source="-67b45fed:134f41509ef:-7db3" target="-67b45fed:134f41509ef:-7b7a"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="230.0" y="140.0"/><mxPoint as="targetPoint" x="740.0" y="220.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="380.0" y="140.0"/><mxPoint x="380.0" y="220.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="-67b45fed:134f41509ef:-7b65" parent="-67b45fed:134f41509ef:-7ffe" source="-67b45fed:134f41509ef:-7b7c" target="-67b45fed:134f41509ef:-7b5f"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="780.0" y="210.0"/><mxPoint as="targetPoint" x="820.0" y="210.0"/></mxGeometry></ExplicitLink><BasicBlock angle="90" dependsOnU="1" id="1f781c6f:13506286c0b:-7ef3" interfaceFunctionName="Capacitor" ordering="22" parent="-67b45fed:134f41509ef:-7ffe" simulationFunctionName="Capacitor" simulationFunctionType="DEFAULT" style="Capacitor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="2" width="1"><data column="0" line="0" value="2e-12"/><data column="0" line="1" value="4.83"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="2.0E-12"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Capacitor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="2"><data column="0" line="0" value="C"/><data column="1" line="0" value="v"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="2.0E-12"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.83"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="550.0" y="200.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-67b45fed:134f41509ef:-7eb5" ordering="1" parent="1f781c6f:13506286c0b:-7ef3" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-67b45fed:134f41509ef:-7eb4" ordering="1" parent="1f781c6f:13506286c0b:-7ef3" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><BasicBlock blockType="h" id="5635043b:13894cfb31b:-7d17" interfaceFunctionName="CLOCK_c" ordering="23" parent="-67b45fed:134f41509ef:-7ffe" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="119.0"/><data column="1" line="0" realPart="-150.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-3e07f539:168315200c0:-7f6d"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-3e07f539:168315200c0:-7f6d"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.0001"/><data column="0" line="1" value="0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="1.0E-4"/><data column="0" line="1" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-3e07f539:168315200c0:-7f6b"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-3e07f539:168315200c0:-7f6b"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="123.3773266666667"/><data column="1" line="0" realPart="-169.33333333333331"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="7.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="5.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-3e07f539:168315200c0:-7f68"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-3e07f539:168315200c0:-7f68"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="100.0"/><data column="0" line="2" realPart="133.8773266666667"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-44.0"/><data column="0" line="1" realPart="-180.0"/><data column="0" line="2" realPart="-158.33333333333331"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="132.71066000000005"/><data column="0" line="1" realPart="149.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-173.33333333333331"/><data column="0" line="1" realPart="-126.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="135.04399333333336"/><data column="0" line="1" realPart="140.70999999999998"/><data column="0" line="2" realPart="100.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-173.33333333333331"/><data column="0" line="1" realPart="-50.0"/><data column="0" line="2" realPart="-50.0"/><data column="0" line="3" realPart="4.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="830.0" y="110.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="5635043b:13894cfb31b:-7d10" ordering="1" parent="5635043b:13894cfb31b:-7d17" style="CommandPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><CommandControlLink id="5635043b:13894cfb31b:-7d15" parent="-67b45fed:134f41509ef:-7ffe" source="5635043b:13894cfb31b:-7d10" target="-67b45fed:134f41509ef:-7b5e"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="850.0" y="154.0"/><mxPoint as="targetPoint" x="850.0" y="180.0"/></mxGeometry></CommandControlLink></root></mxGraphModel><mxCell as="defaultParent" id="-67b45fed:134f41509ef:-7ffe" parent="-67b45fed:134f41509ef:-7ffd"/></XcosDiagram>
\ No newline at end of file diff --git a/Working_Examples/215/CH9/EX9.4/Figure9_4.jpg b/Working_Examples/215/CH9/EX9.4/Figure9_4.jpg Binary files differnew file mode 100755 index 0000000..f4fc8be --- /dev/null +++ b/Working_Examples/215/CH9/EX9.4/Figure9_4.jpg diff --git a/Working_Examples/215/CH9/EX9.4/ex9_4.sce b/Working_Examples/215/CH9/EX9.4/ex9_4.sce new file mode 100755 index 0000000..7b8316a --- /dev/null +++ b/Working_Examples/215/CH9/EX9.4/ex9_4.sce @@ -0,0 +1,13 @@ +clc
+//Example 9.4
+//Calculate settling time
+t=0:0.1:5
+ic=2*exp(-t)-4*exp(-t)
+plot(t,ic)
+xtitle('ic vs t','t in s','ic in A')
+//Let ts be the settling time
+//From the graph the maximum value is|-2|=2A
+//'ts' is the time when ic has decreased to 0.02A
+//On solving for 'ts'
+ts=-log(0.02/4)
+printf("ts=%3.2f s\n",ts)
diff --git a/Working_Examples/215/CH9/EX9.6/Figure9_6.jpg b/Working_Examples/215/CH9/EX9.6/Figure9_6.jpg Binary files differnew file mode 100755 index 0000000..06cec48 --- /dev/null +++ b/Working_Examples/215/CH9/EX9.6/Figure9_6.jpg diff --git a/Working_Examples/215/CH9/EX9.6/Figure9_6_xcos.jpg b/Working_Examples/215/CH9/EX9.6/Figure9_6_xcos.jpg Binary files differnew file mode 100755 index 0000000..c889314 --- /dev/null +++ b/Working_Examples/215/CH9/EX9.6/Figure9_6_xcos.jpg diff --git a/Working_Examples/215/CH9/EX9.6/ex9_6.xcos b/Working_Examples/215/CH9/EX9.6/ex9_6.xcos new file mode 100755 index 0000000..003f103 --- /dev/null +++ b/Working_Examples/215/CH9/EX9.6/ex9_6.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" finalIntegrationTime="5.0" title="ex9_6"><!--Xcos - 1.0 - scilab-5.5.2 - 20160406 2040--><mxGraphModel as="model"><root><mxCell id="-7cfb447d:134ed64a89d:-7ffd"/><mxCell id="-7cfb447d:134ed64a89d:-7ffe" parent="-7cfb447d:134ed64a89d:-7ffd"/><BasicBlock dependsOnU="1" id="-7cfb447d:134ed64a89d:-7e66" interfaceFunctionName="GAINBLK_f" ordering="1" parent="-7cfb447d:134ed64a89d:-7ffe" simulationFunctionName="gain" simulationFunctionType="DEFAULT" style="GAINBLK_f;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="1/100"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="0.01"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="50.0" width="40.0" x="60.0" y="150.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-7cfb447d:134ed64a89d:-7ea1" ordering="1" parent="-7cfb447d:134ed64a89d:-7e66" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-7cfb447d:134ed64a89d:-7ea0" ordering="1" parent="-7cfb447d:134ed64a89d:-7e66" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><Summation dependsOnU="1" id="-7cfb447d:134ed64a89d:-7e63" interfaceFunctionName="SUMMATION" ordering="2" parent="-7cfb447d:134ed64a89d:-7ffe" simulationFunctionName="summation" simulationFunctionType="C_OR_FORTRAN" style="SUMMATION;flip=false;mirror=false" value="+"><ScilabString as="exprs" height="3" width="1"><data column="0" line="0" value="1"/><data column="0" line="1" value="[-1;-1]"/><data column="0" line="2" value="0"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="110.0" width="40.0" x="150.0" y="90.0"/></Summation><ExplicitInputPort dataType="REAL_MATRIX" id="-7cfb447d:134ed64a89d:-7fc8" ordering="1" parent="-7cfb447d:134ed64a89d:-7e63" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" value="-"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="26.0"/></ExplicitInputPort><ExplicitInputPort dataType="REAL_MATRIX" id="-7cfb447d:134ed64a89d:-7fc7" ordering="2" parent="-7cfb447d:134ed64a89d:-7e63" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" value="-"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="76.0"/></ExplicitInputPort><ExplicitOutputPort dataType="REAL_MATRIX" id="-7cfb447d:134ed64a89d:-7fc6" ordering="1" parent="-7cfb447d:134ed64a89d:-7e63" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="56.0"/></ExplicitOutputPort><BasicBlock dependsOnU="1" id="-7cfb447d:134ed64a89d:-7e5f" interfaceFunctionName="GAINBLK_f" ordering="3" parent="-7cfb447d:134ed64a89d:-7ffe" simulationFunctionName="gain" simulationFunctionType="DEFAULT" style="GAINBLK_f;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="240"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="240.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="50.0" width="40.0" x="230.0" y="130.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-7cfb447d:134ed64a89d:-7ea5" ordering="1" parent="-7cfb447d:134ed64a89d:-7e5f" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-7cfb447d:134ed64a89d:-7ea4" ordering="1" parent="-7cfb447d:134ed64a89d:-7e5f" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><BasicBlock dependsOnT="1" id="-7cfb447d:134ed64a89d:-7e5c" interfaceFunctionName="INTEGRAL_m" ordering="4" parent="-7cfb447d:134ed64a89d:-7ffe" simulationFunctionName="integral_func" simulationFunctionType="C_OR_FORTRAN" style="INTEGRAL_m;flip=false;mirror=false"><ScilabString as="exprs" height="5" width="1"><data column="0" line="0" value="10"/><data column="0" line="1" value="0"/><data column="0" line="2" value="0"/><data column="0" line="3" value="1"/><data column="0" line="4" value="-1"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="state" height="1" width="1"><data column="0" line="0" realPart="10.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="310.0" y="130.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-7cfb447d:134ed64a89d:-7e81" ordering="1" parent="-7cfb447d:134ed64a89d:-7e5c" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-7cfb447d:134ed64a89d:-7e80" ordering="1" parent="-7cfb447d:134ed64a89d:-7e5c" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><BasicBlock dependsOnT="1" id="-7cfb447d:134ed64a89d:-7e59" interfaceFunctionName="INTEGRAL_m" ordering="5" parent="-7cfb447d:134ed64a89d:-7ffe" simulationFunctionName="integral_func" simulationFunctionType="C_OR_FORTRAN" style="INTEGRAL_m;flip=false;mirror=false"><ScilabString as="exprs" height="5" width="1"><data column="0" line="0" value="2.027"/><data column="0" line="1" value="0"/><data column="0" line="2" value="0"/><data column="0" line="3" value="1"/><data column="0" line="4" value="-1"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="state" height="1" width="1"><data column="0" line="0" realPart="2.027"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="390.0" y="130.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-7cfb447d:134ed64a89d:-7e95" ordering="1" parent="-7cfb447d:134ed64a89d:-7e59" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-7cfb447d:134ed64a89d:-7e94" ordering="1" parent="-7cfb447d:134ed64a89d:-7e59" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ExplicitLink id="-7cfb447d:134ed64a89d:-7fa8" parent="-7cfb447d:134ed64a89d:-7ffe" source="-7cfb447d:134ed64a89d:-7e9c" target="-7cfb447d:134ed64a89d:-7fc8"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="100.0" y="120.0"/><mxPoint as="targetPoint" x="150.0" y="120.0"/></mxGeometry></ExplicitLink><ExplicitLink id="-7cfb447d:134ed64a89d:-7fa7" parent="-7cfb447d:134ed64a89d:-7ffe" source="-7cfb447d:134ed64a89d:-7ea0" target="-7cfb447d:134ed64a89d:-7fc7"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="100.0" y="170.0"/><mxPoint as="targetPoint" x="150.0" y="170.0"/></mxGeometry></ExplicitLink><ExplicitLink id="-7cfb447d:134ed64a89d:-7fa6" parent="-7cfb447d:134ed64a89d:-7ffe" source="-7cfb447d:134ed64a89d:-7fc6" target="-7cfb447d:134ed64a89d:-7ea5"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="190.0" y="150.0"/><mxPoint as="targetPoint" x="220.0" y="150.0"/></mxGeometry></ExplicitLink><ExplicitLink id="-7cfb447d:134ed64a89d:-7fa5" parent="-7cfb447d:134ed64a89d:-7ffe" source="-7cfb447d:134ed64a89d:-7ea4" target="-7cfb447d:134ed64a89d:-7e81"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="270.0" y="150.0"/><mxPoint as="targetPoint" x="310.0" y="150.0"/></mxGeometry></ExplicitLink><SplitBlock id="-7cfb447d:134ed64a89d:-7e52" ordering="6" parent="-7cfb447d:134ed64a89d:-7ffe" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="367.0" y="147.0"/></SplitBlock><ExplicitOutputPort dataType="UNKNOW_TYPE" id="-7cfb447d:134ed64a89d:-7fa0" ordering="1" parent="-7cfb447d:134ed64a89d:-7e52" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="-7cfb447d:134ed64a89d:-7f9f" ordering="2" parent="-7cfb447d:134ed64a89d:-7e52" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ExplicitOutputPort><ExplicitInputPort dataType="UNKNOW_TYPE" id="-7cfb447d:134ed64a89d:-7fa1" ordering="1" parent="-7cfb447d:134ed64a89d:-7e52" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ExplicitInputPort><ExplicitLink id="-7cfb447d:134ed64a89d:-7f9e" parent="-7cfb447d:134ed64a89d:-7ffe" source="-7cfb447d:134ed64a89d:-7e80" target="-7cfb447d:134ed64a89d:-7fa1"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ExplicitLink><ExplicitLink id="-7cfb447d:134ed64a89d:-7f9d" parent="-7cfb447d:134ed64a89d:-7ffe" source="-7cfb447d:134ed64a89d:-7fa0" target="-7cfb447d:134ed64a89d:-7e95"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ExplicitLink><ExplicitLink id="-7cfb447d:134ed64a89d:-7fa3" parent="-7cfb447d:134ed64a89d:-7ffe" source="-7cfb447d:134ed64a89d:-7f9f" target="-7cfb447d:134ed64a89d:-7ea1"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="60.0" y="170.0"/><mxPoint as="targetPoint" x="370.0" y="150.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="370.0" y="240.0"/><mxPoint x="40.0" y="240.0"/><mxPoint x="40.0" y="170.0"/></Array></mxGeometry></ExplicitLink><BasicBlock dependsOnU="1" id="-7cfb447d:134ed64a89d:-7e4b" interfaceFunctionName="CSCOPE" ordering="7" parent="-7cfb447d:134ed64a89d:-7ffe" simulationFunctionName="cscope" simulationFunctionType="C_OR_FORTRAN" style="CSCOPE;flip=false;mirror=false"><ScilabString as="exprs" height="10" width="1"><data column="0" line="0" value="1 3 5 7 9 11 13 15"/><data column="0" line="1" value="-1"/><data column="0" line="2" value="[]"/><data column="0" line="3" value="[600;400]"/><data column="0" line="4" value="-3"/><data column="0" line="5" value="3"/><data column="0" line="6" value="5"/><data column="0" line="7" value="20"/><data column="0" line="8" value="0"/><data column="0" line="9" value=""/></ScilabString><ScilabDouble as="realParameters" height="4" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="-3.0"/><data column="0" line="2" realPart="3.0"/><data column="0" line="3" realPart="5.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="15" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="1.0"/><data column="0" line="4" realPart="3.0"/><data column="0" line="5" realPart="5.0"/><data column="0" line="6" realPart="7.0"/><data column="0" line="7" realPart="9.0"/><data column="0" line="8" realPart="11.0"/><data column="0" line="9" realPart="13.0"/><data column="0" line="10" realPart="15.0"/><data column="0" line="11" realPart="-1.0"/><data column="0" line="12" realPart="-1.0"/><data column="0" line="13" realPart="600.0"/><data column="0" line="14" realPart="400.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="500.0" y="130.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="-7cfb447d:134ed64a89d:-7e85" ordering="1" parent="-7cfb447d:134ed64a89d:-7e4b" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ControlPort dataType="UNKNOW_TYPE" id="-7cfb447d:134ed64a89d:-7e84" ordering="1" parent="-7cfb447d:134ed64a89d:-7e4b" style="ControlPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><SplitBlock id="-7cfb447d:134ed64a89d:-7e46" ordering="8" parent="-7cfb447d:134ed64a89d:-7ffe" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="457.0" y="147.0"/></SplitBlock><ExplicitOutputPort dataType="UNKNOW_TYPE" id="-7cfb447d:134ed64a89d:-7f77" ordering="1" parent="-7cfb447d:134ed64a89d:-7e46" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="-7cfb447d:134ed64a89d:-7f76" ordering="2" parent="-7cfb447d:134ed64a89d:-7e46" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ExplicitOutputPort><ExplicitInputPort dataType="UNKNOW_TYPE" id="-7cfb447d:134ed64a89d:-7f78" ordering="1" parent="-7cfb447d:134ed64a89d:-7e46" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ExplicitInputPort><ExplicitLink id="-7cfb447d:134ed64a89d:-7f75" parent="-7cfb447d:134ed64a89d:-7ffe" source="-7cfb447d:134ed64a89d:-7e94" target="-7cfb447d:134ed64a89d:-7f78"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ExplicitLink><ExplicitLink id="-7cfb447d:134ed64a89d:-7f74" parent="-7cfb447d:134ed64a89d:-7ffe" source="-7cfb447d:134ed64a89d:-7f77" target="-7cfb447d:134ed64a89d:-7e9d"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="460.0" y="280.0"/><mxPoint x="10.0" y="280.0"/><mxPoint x="10.0" y="120.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="-7cfb447d:134ed64a89d:-7f7a" parent="-7cfb447d:134ed64a89d:-7ffe" source="-7cfb447d:134ed64a89d:-7f76" target="-7cfb447d:134ed64a89d:-7e85"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="500.0" y="150.0"/><mxPoint as="targetPoint" x="460.0" y="150.0"/></mxGeometry></ExplicitLink><BasicBlock dependsOnU="1" id="-7cfb447d:134ed64a89d:-7e69" interfaceFunctionName="GAINBLK_f" ordering="9" parent="-7cfb447d:134ed64a89d:-7ffe" simulationFunctionName="gain" simulationFunctionType="DEFAULT" style="GAINBLK_f;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="1/10"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="0.1"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="50.0" width="40.0" x="60.0" y="100.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-7cfb447d:134ed64a89d:-7e9d" ordering="1" parent="-7cfb447d:134ed64a89d:-7e69" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-7cfb447d:134ed64a89d:-7e9c" ordering="1" parent="-7cfb447d:134ed64a89d:-7e69" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><BasicBlock blockType="h" id="5635043b:13894cfb31b:-7c9d" interfaceFunctionName="CLOCK_c" ordering="10" parent="-7cfb447d:134ed64a89d:-7ffe" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="99.0"/><data column="1" line="0" realPart="-160.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="29902f0:16797834072:-7ef1"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="29902f0:16797834072:-7ef1"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-70.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.1"/><data column="0" line="1" value="0.1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.1"/><data column="0" line="1" realPart="0.1"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.1"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="29902f0:16797834072:-7eef"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="29902f0:16797834072:-7eef"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="90.3773266666667"/><data column="1" line="0" realPart="-166.33333333333331"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="7.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="5.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="29902f0:16797834072:-7eec"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="29902f0:16797834072:-7eec"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="60.0"/><data column="0" line="2" realPart="97.54399333333338"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-74.0"/><data column="0" line="1" realPart="-170.0"/><data column="0" line="2" realPart="-155.33333333333331"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="97.48843777777782"/><data column="0" line="1" realPart="129.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-163.66666666666666"/><data column="0" line="1" realPart="-136.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="97.59954888888893"/><data column="0" line="1" realPart="100.70999999999998"/><data column="0" line="2" realPart="60.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-163.66666666666666"/><data column="0" line="1" realPart="-40.0"/><data column="0" line="2" realPart="-40.0"/><data column="0" line="3" realPart="-26.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="500.0" y="60.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="5635043b:13894cfb31b:-7c9c" ordering="1" parent="5635043b:13894cfb31b:-7c9d" style="CommandPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><CommandControlLink id="5635043b:13894cfb31b:-7c99" parent="-7cfb447d:134ed64a89d:-7ffe" source="5635043b:13894cfb31b:-7c9c" target="-7cfb447d:134ed64a89d:-7e84"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="520.0" y="104.0"/><mxPoint as="targetPoint" x="520.0" y="130.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="520.0" y="130.0"/></Array></mxGeometry></CommandControlLink></root></mxGraphModel><mxCell as="defaultParent" id="-7cfb447d:134ed64a89d:-7ffe" parent="-7cfb447d:134ed64a89d:-7ffd"/></XcosDiagram>
\ No newline at end of file diff --git a/Working_Examples/215/CH9/EX9.7/Figure9_7.jpg b/Working_Examples/215/CH9/EX9.7/Figure9_7.jpg Binary files differnew file mode 100755 index 0000000..748be1f --- /dev/null +++ b/Working_Examples/215/CH9/EX9.7/Figure9_7.jpg diff --git a/Working_Examples/215/CH9/EX9.7/Figure9_7_xcos.jpg b/Working_Examples/215/CH9/EX9.7/Figure9_7_xcos.jpg Binary files differnew file mode 100755 index 0000000..127aa0c --- /dev/null +++ b/Working_Examples/215/CH9/EX9.7/Figure9_7_xcos.jpg diff --git a/Working_Examples/215/CH9/EX9.7/ex9_7.xcos b/Working_Examples/215/CH9/EX9.7/ex9_7.xcos new file mode 100755 index 0000000..269b157 --- /dev/null +++ b/Working_Examples/215/CH9/EX9.7/ex9_7.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" finalIntegrationTime="0.001" title="ex9_7"><!--Xcos - 1.0 - scilab-5.5.2 - 20160406 2040--><mxGraphModel as="model"><root><mxCell id="-3d3fe24b:134fb5bd9e1:-7d49"/><mxCell id="-3d3fe24b:134fb5bd9e1:-7d4a" parent="-3d3fe24b:134fb5bd9e1:-7d49"/><BasicBlock dependsOnU="1" id="-3d3fe24b:134fb5bd9e1:-7d35" interfaceFunctionName="CurrentSensor" ordering="1" parent="-3d3fe24b:134fb5bd9e1:-7d4a" simulationFunctionName="CurrentSensor" simulationFunctionType="DEFAULT" style="CurrentSensor;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CurrentSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="i"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="230.0" y="110.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-3d3fe24b:134fb5bd9e1:-7d33" ordering="2" parent="-3d3fe24b:134fb5bd9e1:-7d35" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="26.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-3d3fe24b:134fb5bd9e1:-7d32" ordering="1" parent="-3d3fe24b:134fb5bd9e1:-7d35" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-3d3fe24b:134fb5bd9e1:-7d34" ordering="1" parent="-3d3fe24b:134fb5bd9e1:-7d35" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="6.0"/></ImplicitOutputPort><GroundBlock dependsOnU="1" id="-3d3fe24b:134fb5bd9e1:-7d2c" interfaceFunctionName="Ground" ordering="2" parent="-3d3fe24b:134fb5bd9e1:-7d4a" simulationFunctionName="Ground" simulationFunctionType="DEFAULT" style="Ground;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Ground"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="200.0" y="280.0"/></GroundBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-3d3fe24b:134fb5bd9e1:-7d2b" ordering="1" parent="-3d3fe24b:134fb5bd9e1:-7d2c" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><Orientation as="orientation" value="NORTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock angle="90" dependsOnU="1" id="-3d3fe24b:134fb5bd9e1:-7d23" interfaceFunctionName="Resistor" ordering="3" parent="-3d3fe24b:134fb5bd9e1:-7d4a" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="2000"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="2000.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="2000.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="80.0" y="170.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-3d3fe24b:134fb5bd9e1:-7cdf" ordering="1" parent="-3d3fe24b:134fb5bd9e1:-7d23" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-3d3fe24b:134fb5bd9e1:-7cde" ordering="1" parent="-3d3fe24b:134fb5bd9e1:-7d23" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><BasicBlock angle="90" dependsOnU="1" id="-3d3fe24b:134fb5bd9e1:-7d19" interfaceFunctionName="Inductor" ordering="4" parent="-3d3fe24b:134fb5bd9e1:-7d4a" simulationFunctionName="Inductor" simulationFunctionType="DEFAULT" style="Inductor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Inductor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="L"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="300.0" y="170.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-3d3fe24b:134fb5bd9e1:-7ce7" ordering="1" parent="-3d3fe24b:134fb5bd9e1:-7d19" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-3d3fe24b:134fb5bd9e1:-7ce6" ordering="1" parent="-3d3fe24b:134fb5bd9e1:-7d19" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitLink id="-3d3fe24b:134fb5bd9e1:-7d07" parent="-3d3fe24b:134fb5bd9e1:-7d4a" source="-3d3fe24b:134fb5bd9e1:-7cdf" target="-3d3fe24b:134fb5bd9e1:-7c24"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="100.0" y="190.0"/><mxPoint as="targetPoint" x="140.0" y="130.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="100.0" y="130.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-3d3fe24b:134fb5bd9e1:-7d06" parent="-3d3fe24b:134fb5bd9e1:-7d4a" source="-3d3fe24b:134fb5bd9e1:-7c23" target="-3d3fe24b:134fb5bd9e1:-7d32"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="190.0" y="130.0"/><mxPoint as="targetPoint" x="220.0" y="130.0"/></mxGeometry></ImplicitLink><SplitBlock id="-3d3fe24b:134fb5bd9e1:-7d02" ordering="5" parent="-3d3fe24b:134fb5bd9e1:-7d4a" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="217.0" y="247.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-3d3fe24b:134fb5bd9e1:-7d00" ordering="1" parent="-3d3fe24b:134fb5bd9e1:-7d02" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-3d3fe24b:134fb5bd9e1:-7cff" ordering="2" parent="-3d3fe24b:134fb5bd9e1:-7d02" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-3d3fe24b:134fb5bd9e1:-7d01" ordering="1" parent="-3d3fe24b:134fb5bd9e1:-7d02" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-3d3fe24b:134fb5bd9e1:-7cfe" parent="-3d3fe24b:134fb5bd9e1:-7d4a" source="-3d3fe24b:134fb5bd9e1:-7cde" target="-3d3fe24b:134fb5bd9e1:-7d01"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="100.0" y="250.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-3d3fe24b:134fb5bd9e1:-7d03" parent="-3d3fe24b:134fb5bd9e1:-7d4a" source="-3d3fe24b:134fb5bd9e1:-7cff" target="-3d3fe24b:134fb5bd9e1:-7d2b"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="220.0" y="280.0"/><mxPoint as="targetPoint" x="220.0" y="250.0"/></mxGeometry></ImplicitLink><BasicBlock dependsOnU="1" id="-3d3fe24b:134fb5bd9e1:-7cf5" interfaceFunctionName="CSCOPE" ordering="6" parent="-3d3fe24b:134fb5bd9e1:-7d4a" simulationFunctionName="cscope" simulationFunctionType="C_OR_FORTRAN" style="CSCOPE;flip=false;mirror=false"><ScilabString as="exprs" height="10" width="1"><data column="0" line="0" value="1 3 5 7 9 11 13 15"/><data column="0" line="1" value="-1"/><data column="0" line="2" value="[]"/><data column="0" line="3" value="[600;400]"/><data column="0" line="4" value="-0.003"/><data column="0" line="5" value=".003"/><data column="0" line="6" value=".001"/><data column="0" line="7" value="20"/><data column="0" line="8" value="0"/><data column="0" line="9" value=""/></ScilabString><ScilabDouble as="realParameters" height="4" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="-0.003"/><data column="0" line="2" realPart="0.003"/><data column="0" line="3" realPart="0.001"/></ScilabDouble><ScilabDouble as="integerParameters" height="15" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="1.0"/><data column="0" line="4" realPart="3.0"/><data column="0" line="5" realPart="5.0"/><data column="0" line="6" realPart="7.0"/><data column="0" line="7" realPart="9.0"/><data column="0" line="8" realPart="11.0"/><data column="0" line="9" realPart="13.0"/><data column="0" line="10" realPart="15.0"/><data column="0" line="11" realPart="-1.0"/><data column="0" line="12" realPart="-1.0"/><data column="0" line="13" realPart="600.0"/><data column="0" line="14" realPart="400.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="420.0" y="120.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="-3d3fe24b:134fb5bd9e1:-7c20" ordering="1" parent="-3d3fe24b:134fb5bd9e1:-7cf5" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ControlPort dataType="UNKNOW_TYPE" id="-3d3fe24b:134fb5bd9e1:-7c1f" ordering="1" parent="-3d3fe24b:134fb5bd9e1:-7cf5" style="ControlPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><ExplicitLink id="-3d3fe24b:134fb5bd9e1:-7c6d" parent="-3d3fe24b:134fb5bd9e1:-7d4a" source="-3d3fe24b:134fb5bd9e1:-7d33" target="-3d3fe24b:134fb5bd9e1:-7c20"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="270.0" y="140.0"/><mxPoint as="targetPoint" x="420.0" y="130.0"/></mxGeometry></ExplicitLink><BasicBlock angle="90" dependsOnT="1" id="-3d3fe24b:134fb5bd9e1:-7c5a" interfaceFunctionName="CCS" ordering="7" parent="-3d3fe24b:134fb5bd9e1:-7d4a" simulationFunctionName="CCS" simulationFunctionType="DEFAULT" style="CCS;rotation=90;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CCS"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="Iin"/><data column="0" line="1" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="370.0" y="160.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-3d3fe24b:134fb5bd9e1:-7c58" ordering="1" parent="-3d3fe24b:134fb5bd9e1:-7c5a" style="ExplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="6.0" y="-8.0"/></ExplicitInputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-3d3fe24b:134fb5bd9e1:-7c57" ordering="2" parent="-3d3fe24b:134fb5bd9e1:-7c5a" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="26.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-3d3fe24b:134fb5bd9e1:-7c59" ordering="1" parent="-3d3fe24b:134fb5bd9e1:-7c5a" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><BasicBlock blockType="d" id="-3d3fe24b:134fb5bd9e1:-7c51" interfaceFunctionName="CONST_m" ordering="8" parent="-3d3fe24b:134fb5bd9e1:-7d4a" simulationFunctionName="cstblk4_m" simulationFunctionType="C_OR_FORTRAN" style="CONST_m;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="0.002"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.002"/></ScilabDouble></Array><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="50.0" width="40.0" x="330.0" y="60.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-3d3fe24b:134fb5bd9e1:-7c3d" ordering="1" parent="-3d3fe24b:134fb5bd9e1:-7c51" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><SplitBlock id="-3d3fe24b:134fb5bd9e1:-7c35" ordering="9" parent="-3d3fe24b:134fb5bd9e1:-7d4a" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="317.0" y="247.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-3d3fe24b:134fb5bd9e1:-7c33" ordering="1" parent="-3d3fe24b:134fb5bd9e1:-7c35" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-3d3fe24b:134fb5bd9e1:-7c32" ordering="2" parent="-3d3fe24b:134fb5bd9e1:-7c35" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-3d3fe24b:134fb5bd9e1:-7c34" ordering="1" parent="-3d3fe24b:134fb5bd9e1:-7c35" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-3d3fe24b:134fb5bd9e1:-7c31" parent="-3d3fe24b:134fb5bd9e1:-7d4a" source="-3d3fe24b:134fb5bd9e1:-7d00" target="-3d3fe24b:134fb5bd9e1:-7c34"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-3d3fe24b:134fb5bd9e1:-7c30" parent="-3d3fe24b:134fb5bd9e1:-7d4a" source="-3d3fe24b:134fb5bd9e1:-7ce6" target="-3d3fe24b:134fb5bd9e1:-7c33"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-3d3fe24b:134fb5bd9e1:-7c36" parent="-3d3fe24b:134fb5bd9e1:-7d4a" source="-3d3fe24b:134fb5bd9e1:-7c59" target="-3d3fe24b:134fb5bd9e1:-7c32"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="390.0" y="200.0"/><mxPoint as="targetPoint" x="320.0" y="250.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="390.0" y="250.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="-3d3fe24b:134fb5bd9e1:-7c2e" ordering="10" parent="-3d3fe24b:134fb5bd9e1:-7d4a" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="317.0" y="117.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-3d3fe24b:134fb5bd9e1:-7c2c" ordering="1" parent="-3d3fe24b:134fb5bd9e1:-7c2e" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-3d3fe24b:134fb5bd9e1:-7c2b" ordering="2" parent="-3d3fe24b:134fb5bd9e1:-7c2e" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-3d3fe24b:134fb5bd9e1:-7c2d" ordering="1" parent="-3d3fe24b:134fb5bd9e1:-7c2e" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-3d3fe24b:134fb5bd9e1:-7c2a" parent="-3d3fe24b:134fb5bd9e1:-7d4a" source="-3d3fe24b:134fb5bd9e1:-7d34" target="-3d3fe24b:134fb5bd9e1:-7c2d"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-3d3fe24b:134fb5bd9e1:-7c29" parent="-3d3fe24b:134fb5bd9e1:-7d4a" source="-3d3fe24b:134fb5bd9e1:-7c2c" target="-3d3fe24b:134fb5bd9e1:-7ce7"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-3d3fe24b:134fb5bd9e1:-7c2f" parent="-3d3fe24b:134fb5bd9e1:-7d4a" source="-3d3fe24b:134fb5bd9e1:-7c2b" target="-3d3fe24b:134fb5bd9e1:-7c57"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="400.0" y="160.0"/><mxPoint as="targetPoint" x="320.0" y="120.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="400.0" y="120.0"/></Array></mxGeometry></ImplicitLink><ExplicitLink id="-3d3fe24b:134fb5bd9e1:-7c26" parent="-3d3fe24b:134fb5bd9e1:-7d4a" source="-3d3fe24b:134fb5bd9e1:-7c3d" target="-3d3fe24b:134fb5bd9e1:-7c58"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="370.0" y="80.0"/><mxPoint as="targetPoint" x="380.0" y="160.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="380.0" y="80.0"/></Array></mxGeometry></ExplicitLink><BasicBlock dependsOnU="1" id="-3d3fe24b:134fb5bd9e1:-7d41" interfaceFunctionName="Capacitor" ordering="11" parent="-3d3fe24b:134fb5bd9e1:-7d4a" simulationFunctionName="Capacitor" simulationFunctionType="DEFAULT" style="Capacitor;flip=false;mirror=false"><ScilabString as="exprs" height="2" width="1"><data column="0" line="0" value="2.5e-9"/><data column="0" line="1" value="2"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="2.5E-9"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Capacitor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="2"><data column="0" line="0" value="C"/><data column="1" line="0" value="v"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="2.5E-9"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="150.0" y="110.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-3d3fe24b:134fb5bd9e1:-7c24" ordering="1" parent="-3d3fe24b:134fb5bd9e1:-7d41" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-3d3fe24b:134fb5bd9e1:-7c23" ordering="1" parent="-3d3fe24b:134fb5bd9e1:-7d41" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><BasicBlock blockType="h" id="5635043b:13894cfb31b:-7c5f" interfaceFunctionName="CLOCK_c" ordering="12" parent="-3d3fe24b:134fb5bd9e1:-7d4a" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="99.0"/><data column="1" line="0" realPart="-160.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="29902f0:16797834072:-7ead"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="29902f0:16797834072:-7ead"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-70.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.0001"/><data column="0" line="1" value="0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="1.0E-4"/><data column="0" line="1" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="29902f0:16797834072:-7eab"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="29902f0:16797834072:-7eab"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="90.3773266666667"/><data column="1" line="0" realPart="-166.33333333333331"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="7.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="5.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="29902f0:16797834072:-7ea8"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="29902f0:16797834072:-7ea8"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="60.0"/><data column="0" line="2" realPart="97.54399333333338"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-74.0"/><data column="0" line="1" realPart="-170.0"/><data column="0" line="2" realPart="-155.33333333333331"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="97.48843777777782"/><data column="0" line="1" realPart="129.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-163.66666666666666"/><data column="0" line="1" realPart="-136.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="97.59954888888893"/><data column="0" line="1" realPart="100.70999999999998"/><data column="0" line="2" realPart="60.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-163.66666666666666"/><data column="0" line="1" realPart="-40.0"/><data column="0" line="2" realPart="-40.0"/><data column="0" line="3" realPart="-26.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="420.0" y="50.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="5635043b:13894cfb31b:-7c59" ordering="1" parent="5635043b:13894cfb31b:-7c5f" style="CommandPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><CommandControlLink id="5635043b:13894cfb31b:-7c5b" parent="-3d3fe24b:134fb5bd9e1:-7d4a" source="5635043b:13894cfb31b:-7c59" target="-3d3fe24b:134fb5bd9e1:-7c1f"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="440.0" y="94.0"/><mxPoint as="targetPoint" x="440.0" y="110.0"/></mxGeometry></CommandControlLink></root></mxGraphModel><mxCell as="defaultParent" id="-3d3fe24b:134fb5bd9e1:-7d4a" parent="-3d3fe24b:134fb5bd9e1:-7d49"/></XcosDiagram>
\ No newline at end of file diff --git a/Working_Examples/215/CH9/EX9.8/Figure9_8.jpg b/Working_Examples/215/CH9/EX9.8/Figure9_8.jpg Binary files differnew file mode 100755 index 0000000..8889797 --- /dev/null +++ b/Working_Examples/215/CH9/EX9.8/Figure9_8.jpg diff --git a/Working_Examples/215/CH9/EX9.8/Figure9_8_xcos.jpg b/Working_Examples/215/CH9/EX9.8/Figure9_8_xcos.jpg Binary files differnew file mode 100755 index 0000000..766abbd --- /dev/null +++ b/Working_Examples/215/CH9/EX9.8/Figure9_8_xcos.jpg diff --git a/Working_Examples/215/CH9/EX9.8/ex9_8.xcos b/Working_Examples/215/CH9/EX9.8/ex9_8.xcos new file mode 100755 index 0000000..5478abc --- /dev/null +++ b/Working_Examples/215/CH9/EX9.8/ex9_8.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" finalIntegrationTime="5.0" title="ex9_8"><!--Xcos - 1.0 - scilab-5.5.2 - 20160406 2040--><mxGraphModel as="model"><root><mxCell id="1f781c6f:13506286c0b:-7ffd"/><mxCell id="1f781c6f:13506286c0b:-7ffe" parent="1f781c6f:13506286c0b:-7ffd"/><BasicBlock angle="90" dependsOnU="1" id="1f781c6f:13506286c0b:-7e2a" interfaceFunctionName="CurrentSensor" ordering="1" parent="1f781c6f:13506286c0b:-7ffe" simulationFunctionName="CurrentSensor" simulationFunctionType="DEFAULT" style="CurrentSensor;rotation=90;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CurrentSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="i"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="100.0" y="270.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="1f781c6f:13506286c0b:-7e28" ordering="2" parent="1f781c6f:13506286c0b:-7e2a" style="ExplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="26.0" y="40.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="1f781c6f:13506286c0b:-7e27" ordering="1" parent="1f781c6f:13506286c0b:-7e2a" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="1f781c6f:13506286c0b:-7e29" ordering="1" parent="1f781c6f:13506286c0b:-7e2a" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="6.0" y="40.0"/></ImplicitOutputPort><GroundBlock dependsOnU="1" id="1f781c6f:13506286c0b:-7e21" interfaceFunctionName="Ground" ordering="2" parent="1f781c6f:13506286c0b:-7ffe" simulationFunctionName="Ground" simulationFunctionType="DEFAULT" style="Ground;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Ground"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="260.0" y="380.0"/></GroundBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="1f781c6f:13506286c0b:-7e20" ordering="1" parent="1f781c6f:13506286c0b:-7e21" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><Orientation as="orientation" value="NORTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock dependsOnT="1" id="1f781c6f:13506286c0b:-7e16" interfaceFunctionName="CVS" ordering="3" parent="1f781c6f:13506286c0b:-7ffe" simulationFunctionName="CVS" simulationFunctionType="DEFAULT" style="CVS;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CVS"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="vin"/><data column="0" line="1" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="180.0" y="140.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="1f781c6f:13506286c0b:-7e14" ordering="1" parent="1f781c6f:13506286c0b:-7e16" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ExplicitInputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="1f781c6f:13506286c0b:-7e13" ordering="2" parent="1f781c6f:13506286c0b:-7e16" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="26.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="1f781c6f:13506286c0b:-7e15" ordering="1" parent="1f781c6f:13506286c0b:-7e16" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><BasicBlock angle="90" dependsOnU="1" id="1f781c6f:13506286c0b:-7e0b" interfaceFunctionName="Inductor" ordering="4" parent="1f781c6f:13506286c0b:-7ffe" simulationFunctionName="Inductor" simulationFunctionType="DEFAULT" style="Inductor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="5"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Inductor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="L"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="410.0" y="240.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="1f781c6f:13506286c0b:-7d7b" ordering="1" parent="1f781c6f:13506286c0b:-7e0b" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="1f781c6f:13506286c0b:-7d7a" ordering="1" parent="1f781c6f:13506286c0b:-7e0b" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><BasicBlock angle="90" dependsOnU="1" id="1f781c6f:13506286c0b:-7e01" interfaceFunctionName="Resistor" ordering="5" parent="1f781c6f:13506286c0b:-7ffe" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="2"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="100.0" y="200.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="1f781c6f:13506286c0b:-7d68" ordering="1" parent="1f781c6f:13506286c0b:-7e01" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="1f781c6f:13506286c0b:-7d67" ordering="1" parent="1f781c6f:13506286c0b:-7e01" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><BasicBlock dependsOnU="1" id="1f781c6f:13506286c0b:-7de2" interfaceFunctionName="Resistor" ordering="6" parent="1f781c6f:13506286c0b:-7ffe" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="9"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="9.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="9.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="270.0" y="140.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="1f781c6f:13506286c0b:-7d77" ordering="1" parent="1f781c6f:13506286c0b:-7de2" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="1f781c6f:13506286c0b:-7d76" ordering="1" parent="1f781c6f:13506286c0b:-7de2" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><BasicBlock angle="270" blockType="h" id="1f781c6f:13506286c0b:-7dd5" interfaceFunctionName="DELAY_f" ordering="7" parent="1f781c6f:13506286c0b:-7ffe" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="DELAY_f;rotation=270;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="50.0" width="60.0" x="10.0" y="260.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="1f781c6f:13506286c0b:-7dd3" ordering="1" parent="1f781c6f:13506286c0b:-7dd5" style="ExplicitInputPort;align=center;verticalAlign=bottom;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="26.0" y="50.0"/></ExplicitInputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="1f781c6f:13506286c0b:-7dd4" ordering="1" parent="1f781c6f:13506286c0b:-7dd5" style="ExplicitOutputPort;align=center;verticalAlign=top;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="26.0" y="-8.0"/></ExplicitOutputPort><BasicBlock angle="270" dependsOnU="1" id="1f781c6f:13506286c0b:-7dcb" interfaceFunctionName="GAINBLK_f" ordering="8" parent="1f781c6f:13506286c0b:-7ffe" simulationFunctionName="gain" simulationFunctionType="DEFAULT" style="GAINBLK_f;rotation=270;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="3"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="50.0" width="40.0" x="20.0" y="170.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="1f781c6f:13506286c0b:-7d73" ordering="1" parent="1f781c6f:13506286c0b:-7dcb" style="ExplicitInputPort;align=center;verticalAlign=bottom;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="50.0"/></ExplicitInputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="1f781c6f:13506286c0b:-7d72" ordering="1" parent="1f781c6f:13506286c0b:-7dcb" style="ExplicitOutputPort;align=center;verticalAlign=top;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ExplicitOutputPort><ImplicitLink id="1f781c6f:13506286c0b:-7dc2" parent="1f781c6f:13506286c0b:-7ffe" source="1f781c6f:13506286c0b:-7d68" target="1f781c6f:13506286c0b:-7e13"><mxGeometry as="geometry" y="60.0"><mxPoint as="sourcePoint" x="120.0" y="200.0"/><mxPoint as="targetPoint" x="170.0" y="170.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="120.0" y="170.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="1f781c6f:13506286c0b:-7dc1" parent="1f781c6f:13506286c0b:-7ffe" source="1f781c6f:13506286c0b:-7e15" target="1f781c6f:13506286c0b:-7d77"><mxGeometry as="geometry" y="60.0"><mxPoint as="sourcePoint" x="220.0" y="160.0"/><mxPoint as="targetPoint" x="260.0" y="160.0"/></mxGeometry></ImplicitLink><ImplicitLink id="1f781c6f:13506286c0b:-7dbd" parent="1f781c6f:13506286c0b:-7ffe" source="1f781c6f:13506286c0b:-7d67" target="1f781c6f:13506286c0b:-7e27"><mxGeometry as="geometry" y="60.0"><mxPoint as="sourcePoint" x="120.0" y="270.0"/><mxPoint as="targetPoint" x="120.0" y="240.0"/></mxGeometry></ImplicitLink><ExplicitLink id="1f781c6f:13506286c0b:-7dbc" parent="1f781c6f:13506286c0b:-7ffe" source="1f781c6f:13506286c0b:-7e28" target="1f781c6f:13506286c0b:-7dd3"><mxGeometry as="geometry" y="60.0"><mxPoint as="sourcePoint" x="130.0" y="310.0"/><mxPoint as="targetPoint" x="40.0" y="320.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="130.0" y="330.0"/><mxPoint x="40.0" y="330.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="1f781c6f:13506286c0b:-7dbb" parent="1f781c6f:13506286c0b:-7ffe" source="1f781c6f:13506286c0b:-7dd4" target="1f781c6f:13506286c0b:-7d73"><mxGeometry as="geometry" y="60.0"><mxPoint as="sourcePoint" x="40.0" y="260.0"/><mxPoint as="targetPoint" x="40.0" y="220.0"/></mxGeometry></ExplicitLink><ExplicitLink id="1f781c6f:13506286c0b:-7db7" parent="1f781c6f:13506286c0b:-7ffe" source="1f781c6f:13506286c0b:-7d72" target="1f781c6f:13506286c0b:-7e14"><mxGeometry as="geometry" y="60.0"><mxPoint as="sourcePoint" x="40.0" y="170.0"/><mxPoint as="targetPoint" x="170.0" y="150.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="40.0" y="150.0"/></Array></mxGeometry></ExplicitLink><VoltageSensorBlock dependsOnU="1" id="1f781c6f:13506286c0b:-7dad" interfaceFunctionName="VoltageSensor" ordering="9" parent="1f781c6f:13506286c0b:-7ffe" simulationFunctionName="VoltageSensor" simulationFunctionType="DEFAULT" style="VoltageSensor;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="VoltageSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="v"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="400.0" y="80.0"/></VoltageSensorBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="1f781c6f:13506286c0b:-7dab" ordering="2" parent="1f781c6f:13506286c0b:-7dad" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="1f781c6f:13506286c0b:-7daa" ordering="1" parent="1f781c6f:13506286c0b:-7dad" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="1f781c6f:13506286c0b:-7dac" ordering="1" parent="1f781c6f:13506286c0b:-7dad" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><Orientation as="orientation" value="SOUTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><BasicBlock dependsOnU="1" id="1f781c6f:13506286c0b:-7da2" interfaceFunctionName="CSCOPE" ordering="10" parent="1f781c6f:13506286c0b:-7ffe" simulationFunctionName="cscope" simulationFunctionType="C_OR_FORTRAN" style="CSCOPE;flip=false;mirror=false"><ScilabString as="exprs" height="10" width="1"><data column="0" line="0" value="1 3 5 7 9 11 13 15"/><data column="0" line="1" value="-1"/><data column="0" line="2" value="[]"/><data column="0" line="3" value="[600;400]"/><data column="0" line="4" value="-6"/><data column="0" line="5" value="5"/><data column="0" line="6" value="5"/><data column="0" line="7" value="20"/><data column="0" line="8" value="0"/><data column="0" line="9" value=""/></ScilabString><ScilabDouble as="realParameters" height="4" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="-6.0"/><data column="0" line="2" realPart="5.0"/><data column="0" line="3" realPart="5.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="15" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="1.0"/><data column="0" line="4" realPart="3.0"/><data column="0" line="5" realPart="5.0"/><data column="0" line="6" realPart="7.0"/><data column="0" line="7" realPart="9.0"/><data column="0" line="8" realPart="11.0"/><data column="0" line="9" realPart="13.0"/><data column="0" line="10" realPart="15.0"/><data column="0" line="11" realPart="-1.0"/><data column="0" line="12" realPart="-1.0"/><data column="0" line="13" realPart="600.0"/><data column="0" line="14" realPart="400.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="480.0" y="80.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="1f781c6f:13506286c0b:-7d5a" ordering="1" parent="1f781c6f:13506286c0b:-7da2" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ControlPort dataType="UNKNOW_TYPE" id="1f781c6f:13506286c0b:-7d59" ordering="1" parent="1f781c6f:13506286c0b:-7da2" style="ControlPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><SplitBlock id="1f781c6f:13506286c0b:-7d8f" ordering="11" parent="1f781c6f:13506286c0b:-7ffe" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="417.0" y="157.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="1f781c6f:13506286c0b:-7d8d" ordering="1" parent="1f781c6f:13506286c0b:-7d8f" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="1f781c6f:13506286c0b:-7d8c" ordering="2" parent="1f781c6f:13506286c0b:-7d8f" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="1f781c6f:13506286c0b:-7d8e" ordering="1" parent="1f781c6f:13506286c0b:-7d8f" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="1f781c6f:13506286c0b:-7d8b" parent="1f781c6f:13506286c0b:-7ffe" source="1f781c6f:13506286c0b:-7d7e" target="1f781c6f:13506286c0b:-7d8e"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="1f781c6f:13506286c0b:-7d8a" parent="1f781c6f:13506286c0b:-7ffe" source="1f781c6f:13506286c0b:-7d8d" target="1f781c6f:13506286c0b:-7d7b"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="430.0" y="160.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="1f781c6f:13506286c0b:-7d90" parent="1f781c6f:13506286c0b:-7ffe" source="1f781c6f:13506286c0b:-7dac" target="1f781c6f:13506286c0b:-7d8c"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="420.0" y="120.0"/><mxPoint as="targetPoint" x="420.0" y="160.0"/></mxGeometry></ImplicitLink><SplitBlock id="1f781c6f:13506286c0b:-7d88" ordering="12" parent="1f781c6f:13506286c0b:-7ffe" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="337.0" y="157.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="1f781c6f:13506286c0b:-7d86" ordering="1" parent="1f781c6f:13506286c0b:-7d88" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="1f781c6f:13506286c0b:-7d85" ordering="2" parent="1f781c6f:13506286c0b:-7d88" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="1f781c6f:13506286c0b:-7d87" ordering="1" parent="1f781c6f:13506286c0b:-7d88" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="1f781c6f:13506286c0b:-7d84" parent="1f781c6f:13506286c0b:-7ffe" source="1f781c6f:13506286c0b:-7d76" target="1f781c6f:13506286c0b:-7d87"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="1f781c6f:13506286c0b:-7d83" parent="1f781c6f:13506286c0b:-7ffe" source="1f781c6f:13506286c0b:-7d86" target="1f781c6f:13506286c0b:-7d7f"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="1f781c6f:13506286c0b:-7d89" parent="1f781c6f:13506286c0b:-7ffe" source="1f781c6f:13506286c0b:-7d85" target="1f781c6f:13506286c0b:-7daa"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="400.0" y="100.0"/><mxPoint as="targetPoint" x="340.0" y="160.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="340.0" y="100.0"/></Array></mxGeometry></ImplicitLink><ExplicitLink id="1f781c6f:13506286c0b:-7d82" parent="1f781c6f:13506286c0b:-7ffe" source="1f781c6f:13506286c0b:-7dab" target="1f781c6f:13506286c0b:-7d5a"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="440.0" y="100.0"/><mxPoint as="targetPoint" x="470.0" y="100.0"/></mxGeometry></ExplicitLink><SplitBlock id="1f781c6f:13506286c0b:-7d6f" ordering="13" parent="1f781c6f:13506286c0b:-7ffe" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="277.0" y="347.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="1f781c6f:13506286c0b:-7d6d" ordering="1" parent="1f781c6f:13506286c0b:-7d6f" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="1f781c6f:13506286c0b:-7d6c" ordering="2" parent="1f781c6f:13506286c0b:-7d6f" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="1f781c6f:13506286c0b:-7d6e" ordering="1" parent="1f781c6f:13506286c0b:-7d6f" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="1f781c6f:13506286c0b:-7d6b" parent="1f781c6f:13506286c0b:-7ffe" source="1f781c6f:13506286c0b:-7e29" target="1f781c6f:13506286c0b:-7d6e"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="110.0" y="350.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="1f781c6f:13506286c0b:-7d6a" parent="1f781c6f:13506286c0b:-7ffe" source="1f781c6f:13506286c0b:-7d7a" target="1f781c6f:13506286c0b:-7d6d"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="430.0" y="350.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="1f781c6f:13506286c0b:-7d70" parent="1f781c6f:13506286c0b:-7ffe" source="1f781c6f:13506286c0b:-7d6c" target="1f781c6f:13506286c0b:-7e20"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="280.0" y="370.0"/><mxPoint as="targetPoint" x="280.0" y="350.0"/></mxGeometry></ImplicitLink><BasicBlock dependsOnU="1" id="1f781c6f:13506286c0b:-7e36" interfaceFunctionName="Capacitor" ordering="14" parent="1f781c6f:13506286c0b:-7ffe" simulationFunctionName="Capacitor" simulationFunctionType="DEFAULT" style="Capacitor;flip=false;mirror=false"><ScilabString as="exprs" height="2" width="1"><data column="0" line="0" value="2e-3"/><data column="0" line="1" value="-5"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="0.002"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Capacitor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="2"><data column="0" line="0" value="C"/><data column="1" line="0" value="v"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.002"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-5.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="360.0" y="140.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="1f781c6f:13506286c0b:-7d7f" ordering="1" parent="1f781c6f:13506286c0b:-7e36" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="1f781c6f:13506286c0b:-7d7e" ordering="1" parent="1f781c6f:13506286c0b:-7e36" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><BasicBlock blockType="h" id="5635043b:13894cfb31b:-7c07" interfaceFunctionName="CLOCK_c" ordering="15" parent="1f781c6f:13506286c0b:-7ffe" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="99.0"/><data column="1" line="0" realPart="-160.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="29902f0:16797834072:-7e58"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="29902f0:16797834072:-7e58"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-70.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.1"/><data column="0" line="1" value="0.1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.1"/><data column="0" line="1" realPart="0.1"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.1"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="29902f0:16797834072:-7e56"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="29902f0:16797834072:-7e56"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="90.3773266666667"/><data column="1" line="0" realPart="-166.33333333333331"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="7.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="5.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="29902f0:16797834072:-7e53"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="29902f0:16797834072:-7e53"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="60.0"/><data column="0" line="2" realPart="97.54399333333338"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-74.0"/><data column="0" line="1" realPart="-170.0"/><data column="0" line="2" realPart="-155.33333333333331"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="97.48843777777782"/><data column="0" line="1" realPart="129.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-163.66666666666666"/><data column="0" line="1" realPart="-136.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="97.59954888888893"/><data column="0" line="1" realPart="100.70999999999998"/><data column="0" line="2" realPart="60.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-163.66666666666666"/><data column="0" line="1" realPart="-40.0"/><data column="0" line="2" realPart="-40.0"/><data column="0" line="3" realPart="-26.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="480.0" y="10.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="5635043b:13894cfb31b:-7c06" ordering="1" parent="5635043b:13894cfb31b:-7c07" style="CommandPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><CommandControlLink id="5635043b:13894cfb31b:-7c03" parent="1f781c6f:13506286c0b:-7ffe" source="5635043b:13894cfb31b:-7c06" target="1f781c6f:13506286c0b:-7d59"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="500.0" y="64.0"/><mxPoint as="targetPoint" x="500.0" y="70.0"/></mxGeometry></CommandControlLink></root></mxGraphModel><mxCell as="defaultParent" id="1f781c6f:13506286c0b:-7ffe" parent="1f781c6f:13506286c0b:-7ffd"/></XcosDiagram>
\ No newline at end of file diff --git a/Working_Examples/215/CH9/EX9.9/Figure9_9.jpg b/Working_Examples/215/CH9/EX9.9/Figure9_9.jpg Binary files differnew file mode 100755 index 0000000..a07cfd8 --- /dev/null +++ b/Working_Examples/215/CH9/EX9.9/Figure9_9.jpg diff --git a/Working_Examples/215/CH9/EX9.9/Figure9_9_xcos.jpg b/Working_Examples/215/CH9/EX9.9/Figure9_9_xcos.jpg Binary files differnew file mode 100755 index 0000000..539d515 --- /dev/null +++ b/Working_Examples/215/CH9/EX9.9/Figure9_9_xcos.jpg diff --git a/Working_Examples/215/CH9/EX9.9/ex9_9.xcos b/Working_Examples/215/CH9/EX9.9/ex9_9.xcos new file mode 100755 index 0000000..f9e4ea0 --- /dev/null +++ b/Working_Examples/215/CH9/EX9.9/ex9_9.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" finalIntegrationTime="30.0" title="ex9_9"><!--Xcos - 1.0 - scilab-5.5.2 - 20160406 2040--><mxGraphModel as="model"><root><mxCell id="1f781c6f:13506286c0b:-7d56"/><mxCell id="1f781c6f:13506286c0b:-7d57" parent="1f781c6f:13506286c0b:-7d56"/><BasicBlock dependsOnU="1" id="1f781c6f:13506286c0b:-7d45" interfaceFunctionName="CurrentSensor" ordering="1" parent="1f781c6f:13506286c0b:-7d57" simulationFunctionName="CurrentSensor" simulationFunctionType="DEFAULT" style="CurrentSensor;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CurrentSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="i"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="140.0" y="110.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="1f781c6f:13506286c0b:-7d43" ordering="2" parent="1f781c6f:13506286c0b:-7d45" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="26.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="1f781c6f:13506286c0b:-7d42" ordering="1" parent="1f781c6f:13506286c0b:-7d45" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="1f781c6f:13506286c0b:-7d44" ordering="1" parent="1f781c6f:13506286c0b:-7d45" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="6.0"/></ImplicitOutputPort><BasicBlock angle="270" dependsOnT="1" id="1f781c6f:13506286c0b:-7d38" interfaceFunctionName="CCS" ordering="2" parent="1f781c6f:13506286c0b:-7d57" simulationFunctionName="CCS" simulationFunctionType="DEFAULT" style="CCS;rotation=270;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CCS"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="Iin"/><data column="0" line="1" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="390.0" y="210.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="1f781c6f:13506286c0b:-7d36" ordering="1" parent="1f781c6f:13506286c0b:-7d38" style="ExplicitInputPort;align=center;verticalAlign=bottom;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="6.0" y="40.0"/></ExplicitInputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="1f781c6f:13506286c0b:-7d35" ordering="2" parent="1f781c6f:13506286c0b:-7d38" style="ImplicitInputPort;align=center;verticalAlign=bottom;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="26.0" y="40.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="1f781c6f:13506286c0b:-7d37" ordering="1" parent="1f781c6f:13506286c0b:-7d38" style="ImplicitOutputPort;align=center;verticalAlign=top;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitOutputPort><BasicBlock dependsOnU="1" id="1f781c6f:13506286c0b:-7d2d" interfaceFunctionName="Resistor" ordering="3" parent="1f781c6f:13506286c0b:-7d57" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="30"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="30.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="30.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="230.0" y="100.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="1f781c6f:13506286c0b:-7cbf" ordering="1" parent="1f781c6f:13506286c0b:-7d2d" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="1f781c6f:13506286c0b:-7cbe" ordering="1" parent="1f781c6f:13506286c0b:-7d2d" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><BasicBlock angle="90" dependsOnU="1" id="1f781c6f:13506286c0b:-7d22" interfaceFunctionName="CurrentSensor" ordering="4" parent="1f781c6f:13506286c0b:-7d57" simulationFunctionName="CurrentSensor" simulationFunctionType="DEFAULT" style="CurrentSensor;rotation=90;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CurrentSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="i"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="90.0" y="180.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="1f781c6f:13506286c0b:-7d20" ordering="2" parent="1f781c6f:13506286c0b:-7d22" style="ExplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="26.0" y="40.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="1f781c6f:13506286c0b:-7d1f" ordering="1" parent="1f781c6f:13506286c0b:-7d22" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="1f781c6f:13506286c0b:-7d21" ordering="1" parent="1f781c6f:13506286c0b:-7d22" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="6.0" y="40.0"/></ImplicitOutputPort><BasicBlock dependsOnU="1" id="1f781c6f:13506286c0b:-7d11" interfaceFunctionName="CSCOPE" ordering="5" parent="1f781c6f:13506286c0b:-7d57" simulationFunctionName="cscope" simulationFunctionType="C_OR_FORTRAN" style="CSCOPE;flip=false;mirror=false"><ScilabString as="exprs" height="10" width="1"><data column="0" line="0" value="1 3 5 7 9 11 13 15"/><data column="0" line="1" value="-1"/><data column="0" line="2" value="[]"/><data column="0" line="3" value="[600;400]"/><data column="0" line="4" value="-160"/><data column="0" line="5" value="160"/><data column="0" line="6" value="30"/><data column="0" line="7" value="20"/><data column="0" line="8" value="0"/><data column="0" line="9" value=""/></ScilabString><ScilabDouble as="realParameters" height="4" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="-160.0"/><data column="0" line="2" realPart="160.0"/><data column="0" line="3" realPart="30.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="15" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="1.0"/><data column="0" line="4" realPart="3.0"/><data column="0" line="5" realPart="5.0"/><data column="0" line="6" realPart="7.0"/><data column="0" line="7" realPart="9.0"/><data column="0" line="8" realPart="11.0"/><data column="0" line="9" realPart="13.0"/><data column="0" line="10" realPart="15.0"/><data column="0" line="11" realPart="-1.0"/><data column="0" line="12" realPart="-1.0"/><data column="0" line="13" realPart="600.0"/><data column="0" line="14" realPart="400.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="580.0" y="190.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="1f781c6f:13506286c0b:-7c8c" ordering="1" parent="1f781c6f:13506286c0b:-7d11" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ControlPort dataType="UNKNOW_TYPE" id="1f781c6f:13506286c0b:-7c8b" ordering="1" parent="1f781c6f:13506286c0b:-7d11" style="ControlPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><BasicBlock blockType="d" id="1f781c6f:13506286c0b:-7d02" interfaceFunctionName="CONST_m" ordering="6" parent="1f781c6f:13506286c0b:-7d57" simulationFunctionName="cstblk4_m" simulationFunctionType="C_OR_FORTRAN" style="CONST_m;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="5"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble></Array><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="50.0" width="40.0" x="340.0" y="260.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="1f781c6f:13506286c0b:-7cbb" ordering="1" parent="1f781c6f:13506286c0b:-7d02" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><BasicBlock angle="90" dependsOnU="1" id="1f781c6f:13506286c0b:-7cf9" interfaceFunctionName="PotentialSensor" ordering="7" parent="1f781c6f:13506286c0b:-7d57" simulationFunctionName="PotentialSensor" simulationFunctionType="DEFAULT" style="PotentialSensor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="PotentialSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="v"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="310.0" y="150.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="1f781c6f:13506286c0b:-7cf7" ordering="1" parent="1f781c6f:13506286c0b:-7cf9" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="1f781c6f:13506286c0b:-7cf8" ordering="1" parent="1f781c6f:13506286c0b:-7cf9" style="ExplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ExplicitOutputPort><ImplicitLink id="1f781c6f:13506286c0b:-7cf6" parent="1f781c6f:13506286c0b:-7d57" source="1f781c6f:13506286c0b:-7d1f" target="1f781c6f:13506286c0b:-7d42"><mxGeometry as="geometry" y="50.0"><mxPoint as="sourcePoint" x="110.0" y="180.0"/><mxPoint as="targetPoint" x="130.0" y="130.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="110.0" y="130.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="1f781c6f:13506286c0b:-7cf1" ordering="8" parent="1f781c6f:13506286c0b:-7d57" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="247.0" y="327.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="1f781c6f:13506286c0b:-7cef" ordering="1" parent="1f781c6f:13506286c0b:-7cf1" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="1f781c6f:13506286c0b:-7cee" ordering="2" parent="1f781c6f:13506286c0b:-7cf1" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="1f781c6f:13506286c0b:-7cf0" ordering="1" parent="1f781c6f:13506286c0b:-7cf1" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="1f781c6f:13506286c0b:-7ced" parent="1f781c6f:13506286c0b:-7d57" source="1f781c6f:13506286c0b:-7d21" target="1f781c6f:13506286c0b:-7cf0"><mxGeometry as="geometry" y="50.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="100.0" y="330.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="1f781c6f:13506286c0b:-7cec" parent="1f781c6f:13506286c0b:-7d57" source="1f781c6f:13506286c0b:-7cef" target="1f781c6f:13506286c0b:-7d35"><mxGeometry as="geometry" y="50.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="420.0" y="330.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="1f781c6f:13506286c0b:-7cf2" parent="1f781c6f:13506286c0b:-7d57" source="1f781c6f:13506286c0b:-7cee" target="1f781c6f:13506286c0b:-7d4f"><mxGeometry as="geometry" y="50.0"><mxPoint as="sourcePoint" x="250.0" y="370.0"/><mxPoint as="targetPoint" x="250.0" y="330.0"/></mxGeometry></ImplicitLink><ExplicitLink id="1f781c6f:13506286c0b:-7ceb" parent="1f781c6f:13506286c0b:-7d57" source="1f781c6f:13506286c0b:-7cbb" target="1f781c6f:13506286c0b:-7d36"><mxGeometry as="geometry" y="50.0"><mxPoint as="sourcePoint" x="380.0" y="280.0"/><mxPoint as="targetPoint" x="400.0" y="260.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="400.0" y="280.0"/></Array></mxGeometry></ExplicitLink><SplitBlock id="1f781c6f:13506286c0b:-7ce9" ordering="9" parent="1f781c6f:13506286c0b:-7d57" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="327.0" y="117.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="1f781c6f:13506286c0b:-7ce7" ordering="1" parent="1f781c6f:13506286c0b:-7ce9" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="1f781c6f:13506286c0b:-7ce6" ordering="2" parent="1f781c6f:13506286c0b:-7ce9" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="1f781c6f:13506286c0b:-7ce8" ordering="1" parent="1f781c6f:13506286c0b:-7ce9" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="1f781c6f:13506286c0b:-7ce5" parent="1f781c6f:13506286c0b:-7d57" source="1f781c6f:13506286c0b:-7d37" target="1f781c6f:13506286c0b:-7ce8"><mxGeometry as="geometry" y="50.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="410.0" y="120.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="1f781c6f:13506286c0b:-7cea" parent="1f781c6f:13506286c0b:-7d57" source="1f781c6f:13506286c0b:-7ce6" target="1f781c6f:13506286c0b:-7cf7"><mxGeometry as="geometry" y="50.0"><mxPoint as="sourcePoint" x="330.0" y="150.0"/><mxPoint as="targetPoint" x="330.0" y="120.0"/></mxGeometry></ImplicitLink><BasicBlock dependsOnU="1" id="1f781c6f:13506286c0b:-7cd8" interfaceFunctionName="MUX" ordering="10" parent="1f781c6f:13506286c0b:-7d57" simulationFunctionName="multiplex" simulationFunctionType="C_OR_FORTRAN" style="MUX;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="4"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="100.0" width="30.0" x="500.0" y="160.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="1f781c6f:13506286c0b:-7cb8" ordering="1" parent="1f781c6f:13506286c0b:-7cd8" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ExplicitInputPort><ExplicitInputPort dataColumns="1" dataLines="-2" dataType="REAL_MATRIX" id="1f781c6f:13506286c0b:-7cb7" ordering="2" parent="1f781c6f:13506286c0b:-7cd8" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="36.0"/></ExplicitInputPort><ExplicitInputPort dataColumns="1" dataLines="-3" dataType="REAL_MATRIX" id="1f781c6f:13506286c0b:-7cb6" ordering="3" parent="1f781c6f:13506286c0b:-7cd8" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="56.0"/></ExplicitInputPort><ExplicitInputPort dataColumns="1" dataLines="-4" dataType="REAL_MATRIX" id="1f781c6f:13506286c0b:-7cb5" ordering="4" parent="1f781c6f:13506286c0b:-7cd8" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="86.0"/></ExplicitInputPort><ExplicitOutputPort dataColumns="1" dataLines="0" dataType="REAL_MATRIX" id="1f781c6f:13506286c0b:-7cb4" ordering="1" parent="1f781c6f:13506286c0b:-7cd8" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="30.0" y="46.0"/></ExplicitOutputPort><ExplicitLink id="1f781c6f:13506286c0b:-7cc5" parent="1f781c6f:13506286c0b:-7d57" source="1f781c6f:13506286c0b:-7cb4" target="1f781c6f:13506286c0b:-7c8c"><mxGeometry as="geometry" y="50.0"><mxPoint as="sourcePoint" x="530.0" y="200.0"/><mxPoint as="targetPoint" x="580.0" y="200.0"/></mxGeometry></ExplicitLink><ExplicitLink id="1f781c6f:13506286c0b:-7cc3" parent="1f781c6f:13506286c0b:-7d57" source="1f781c6f:13506286c0b:-7d43" target="1f781c6f:13506286c0b:-7cb8"><mxGeometry as="geometry" y="50.0"><mxPoint as="sourcePoint" x="180.0" y="140.0"/><mxPoint as="targetPoint" x="500.0" y="190.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="460.0" y="140.0"/><mxPoint x="460.0" y="170.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="1f781c6f:13506286c0b:-7cc1" parent="1f781c6f:13506286c0b:-7d57" source="1f781c6f:13506286c0b:-7d20" target="1f781c6f:13506286c0b:-7cb6"><mxGeometry as="geometry" y="50.0"><mxPoint as="sourcePoint" x="120.0" y="220.0"/><mxPoint as="targetPoint" x="490.0" y="210.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="120.0" y="230.0"/><mxPoint x="460.0" y="230.0"/><mxPoint x="460.0" y="220.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="1f781c6f:13506286c0b:-7caf" parent="1f781c6f:13506286c0b:-7d57" source="1f781c6f:13506286c0b:-7cf8" target="1f781c6f:13506286c0b:-7cb5"><mxGeometry as="geometry" y="50.0"><mxPoint as="sourcePoint" x="330.0" y="190.0"/><mxPoint as="targetPoint" x="490.0" y="250.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="330.0" y="250.0"/></Array></mxGeometry></ExplicitLink><VoltageSensorBlock dependsOnU="1" id="1f781c6f:13506286c0b:-7ca5" interfaceFunctionName="VoltageSensor" ordering="11" parent="1f781c6f:13506286c0b:-7d57" simulationFunctionName="VoltageSensor" simulationFunctionType="DEFAULT" style="VoltageSensor;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="VoltageSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="v"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="280.0" y="40.0"/></VoltageSensorBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="1f781c6f:13506286c0b:-7ca3" ordering="2" parent="1f781c6f:13506286c0b:-7ca5" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="1f781c6f:13506286c0b:-7ca2" ordering="1" parent="1f781c6f:13506286c0b:-7ca5" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="1f781c6f:13506286c0b:-7ca4" ordering="1" parent="1f781c6f:13506286c0b:-7ca5" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><Orientation as="orientation" value="SOUTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><SplitBlock id="1f781c6f:13506286c0b:-7c9c" ordering="12" parent="1f781c6f:13506286c0b:-7d57" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="297.0" y="117.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="1f781c6f:13506286c0b:-7c9a" ordering="1" parent="1f781c6f:13506286c0b:-7c9c" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="1f781c6f:13506286c0b:-7c99" ordering="2" parent="1f781c6f:13506286c0b:-7c9c" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="1f781c6f:13506286c0b:-7c9b" ordering="1" parent="1f781c6f:13506286c0b:-7c9c" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="1f781c6f:13506286c0b:-7c98" parent="1f781c6f:13506286c0b:-7d57" source="1f781c6f:13506286c0b:-7cbe" target="1f781c6f:13506286c0b:-7c9b"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="1f781c6f:13506286c0b:-7c97" parent="1f781c6f:13506286c0b:-7d57" source="1f781c6f:13506286c0b:-7ce7" target="1f781c6f:13506286c0b:-7c9a"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="1f781c6f:13506286c0b:-7c9d" parent="1f781c6f:13506286c0b:-7d57" source="1f781c6f:13506286c0b:-7ca4" target="1f781c6f:13506286c0b:-7c99"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="300.0" y="80.0"/><mxPoint as="targetPoint" x="300.0" y="120.0"/></mxGeometry></ImplicitLink><SplitBlock id="1f781c6f:13506286c0b:-7c95" ordering="13" parent="1f781c6f:13506286c0b:-7d57" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="197.0" y="117.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="1f781c6f:13506286c0b:-7c93" ordering="1" parent="1f781c6f:13506286c0b:-7c95" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="1f781c6f:13506286c0b:-7c92" ordering="2" parent="1f781c6f:13506286c0b:-7c95" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="1f781c6f:13506286c0b:-7c94" ordering="1" parent="1f781c6f:13506286c0b:-7c95" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="1f781c6f:13506286c0b:-7c91" parent="1f781c6f:13506286c0b:-7d57" source="1f781c6f:13506286c0b:-7d44" target="1f781c6f:13506286c0b:-7c94"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="1f781c6f:13506286c0b:-7c90" parent="1f781c6f:13506286c0b:-7d57" source="1f781c6f:13506286c0b:-7c93" target="1f781c6f:13506286c0b:-7cbf"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="1f781c6f:13506286c0b:-7c96" parent="1f781c6f:13506286c0b:-7d57" source="1f781c6f:13506286c0b:-7c92" target="1f781c6f:13506286c0b:-7ca2"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="280.0" y="60.0"/><mxPoint as="targetPoint" x="200.0" y="120.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="200.0" y="60.0"/></Array></mxGeometry></ImplicitLink><ExplicitLink id="1f781c6f:13506286c0b:-7c8f" parent="1f781c6f:13506286c0b:-7d57" source="1f781c6f:13506286c0b:-7ca3" target="1f781c6f:13506286c0b:-7cb7"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="320.0" y="60.0"/><mxPoint as="targetPoint" x="500.0" y="200.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="440.0" y="60.0"/><mxPoint x="440.0" y="190.0"/><mxPoint x="440.0" y="200.0"/></Array></mxGeometry></ExplicitLink><GroundBlock dependsOnU="1" id="1f781c6f:13506286c0b:-7d50" interfaceFunctionName="Ground" ordering="14" parent="1f781c6f:13506286c0b:-7d57" simulationFunctionName="Ground" simulationFunctionType="DEFAULT" style="Ground;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Ground"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="230.0" y="370.0"/></GroundBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="1f781c6f:13506286c0b:-7d4f" ordering="1" parent="1f781c6f:13506286c0b:-7d50" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><Orientation as="orientation" value="NORTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock blockType="h" id="5635043b:13894cfb31b:-7bb1" interfaceFunctionName="CLOCK_c" ordering="15" parent="1f781c6f:13506286c0b:-7d57" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="99.0"/><data column="1" line="0" realPart="-160.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="29902f0:16797834072:-7dff"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="29902f0:16797834072:-7dff"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-70.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.1"/><data column="0" line="1" value="0.1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.1"/><data column="0" line="1" realPart="0.1"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.1"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="29902f0:16797834072:-7dfd"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="29902f0:16797834072:-7dfd"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="90.3773266666667"/><data column="1" line="0" realPart="-166.33333333333331"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="7.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="5.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="29902f0:16797834072:-7dfa"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="29902f0:16797834072:-7dfa"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="60.0"/><data column="0" line="2" realPart="97.54399333333338"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-74.0"/><data column="0" line="1" realPart="-170.0"/><data column="0" line="2" realPart="-155.33333333333331"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="97.48843777777782"/><data column="0" line="1" realPart="129.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-163.66666666666666"/><data column="0" line="1" realPart="-136.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="97.59954888888893"/><data column="0" line="1" realPart="100.70999999999998"/><data column="0" line="2" realPart="60.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-163.66666666666666"/><data column="0" line="1" realPart="-40.0"/><data column="0" line="2" realPart="-40.0"/><data column="0" line="3" realPart="-26.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="580.0" y="120.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="5635043b:13894cfb31b:-7bb0" ordering="1" parent="5635043b:13894cfb31b:-7bb1" style="CommandPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><CommandControlLink id="5635043b:13894cfb31b:-7bad" parent="1f781c6f:13506286c0b:-7d57" source="5635043b:13894cfb31b:-7bb0" target="1f781c6f:13506286c0b:-7c8b"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="600.0" y="164.0"/><mxPoint as="targetPoint" x="600.0" y="180.0"/></mxGeometry></CommandControlLink></root></mxGraphModel><mxCell as="defaultParent" id="1f781c6f:13506286c0b:-7d57" parent="1f781c6f:13506286c0b:-7d56"/></XcosDiagram>
\ No newline at end of file diff --git a/Working_Examples/2777/CH2/EX2.1/Ex2_1.sce b/Working_Examples/2777/CH2/EX2.1/Ex2_1.sce new file mode 100755 index 0000000..990fbe9 --- /dev/null +++ b/Working_Examples/2777/CH2/EX2.1/Ex2_1.sce @@ -0,0 +1,40 @@ +
+// ELECTRICAL MACHINES
+// R.K.Srivastava
+// First Impression 2011
+// CENGAGE LEARNING INDIA PVT. LTD
+
+// CHAPTER : 2 : FORCES IN AN ELECTROMAGNETIC SYSTEMS
+
+// EXAMPLE : 2.1
+
+clear ; clc ; close ; // Clear the work space and console
+
+
+// GIVEN DATA
+
+A = 0.0001; // The Cross-sectional area of core in metre-square
+Mo = 4*%pi*(10)^(-7); // Permeability of air in Henre/metre
+Mr = 1000; // Relative permeability of core
+N1 = 10;N2=20;N3=10; // Number of turns
+I1 = 1.0;I2=0.5;I3=1.5; // Currents in Amphere
+d = 2.5; // Dimension of inner window in centimetre
+w = 1.0; // Each limb wide in centimeter
+
+
+// CALCULATIONS
+
+F = (N1*I1)+(N2*I2)-(N3*I3); // MMF in Amphere-turns (minus because third coil produces the flux in opposite direction to that of other to coils)
+L = ((d*4)+(I2*2*4))*10^-2; // Length of the Magnetic path in metre (4-is sides of the windows)(2-Going and returning of current I2)
+R = L/(Mr*Mo*A); // Reluctance of the Magnetic path in MKS unit of Reluctance
+phi = (F*10^3)/R; // Flux in milli-Weber
+B = phi/A; // Flux Density in Weber/metre Square
+H = F/L; // Magnetic Field Intensity in Amphere-turns/Metre
+
+
+// DISPLAY RESULTS
+
+disp("EXAMPLE : 2.1 : SOLUTION :-") ;
+printf("\n (a) Flux in the core, phi = %.6f mWb ,\n",phi);
+printf("\n (b) Flux Density in the core, B = %.2f Wb/metre square \n",B);
+printf("\n (c) Magnetic Field Intensity in the core, H = %.2f At/m \n",H);
diff --git a/Working_Examples/2777/CH2/EX2.2/Ex2_2.sce b/Working_Examples/2777/CH2/EX2.2/Ex2_2.sce new file mode 100755 index 0000000..d8992bb --- /dev/null +++ b/Working_Examples/2777/CH2/EX2.2/Ex2_2.sce @@ -0,0 +1,53 @@ +
+// ELECTRICAL MACHINES
+// R.K.Srivastava
+// First Impression 2011
+// CENGAGE LEARNING INDIA PVT. LTD
+
+// CHAPTER : 2 : FORCES IN AN ELECTROMAGNETIC SYSTEMS
+
+// EXAMPLE : 2.2
+
+clear ; clc ; close ; // Clear the work space and console
+
+
+// GIVEN DATA
+
+N = 100; // Number of turns
+La = 0.3; // Mean arc length of material "a" is a Nickel-iron alloy in Metre
+Lb = 0.2; // Mean arc length of material "b" is a Steel in Metre
+Lc = 0.1; // Mean arc length of material "c" is a Cast Steel in Metre
+a = 0.001; // Area of the all Materials "a,b,c" in Metre-Square
+phi = 6*10^-4; // Magnetic Flux in Weber
+mue_0 = 4*%pi*10^ -7; // Permeability of the air in Henry/Meter
+
+
+// CALCULATIONS
+
+B = phi/a; // Flux Density in Telsa (Here Flux Density same for all the Materials "a,b,c" because Area of Cross Section is Same)
+Ha = 10; // Fileld Intensity in Amphere-Turn/Meter Correspounding to Flux density (B) of material "a" obtained from the Standard B-H curve
+Hb = 77; // Fileld Intensity in Amphere-Turn/Meter Correspounding to Flux density (B) of material "b" obtained from the Standard B-H curve
+Hc = 270; // Fileld Intensity in Amphere-Turn/Meter Correspounding to Flux density (B) of material "c" obtained from the Standard B-H curve
+F = (Ha*La)+(Hb*Lb)+(Hc*Lc); // The Total MMF Required in Amphere-Turns
+I = F/N; // Current flowing through the Coil in Amphere
+mue_r_a = B/(Ha*mue_0); // Relatative permeability of the Material "a"
+mue_r_b = B/(Hb*mue_0); // Relatative permeability of the Material "a"
+mue_r_c = B/(Hc*mue_0); // Relatative permeability of the Material "a"
+Ra = (Ha*La)/phi; // Relucatnce of the Material "a" in MKS unit
+Rb = (Hb*Lb)/phi; // Relucatnce of the Material "b" in MKS unit
+Rc = (Hc*Lc)/phi; // Relucatnce of the Material "c" in MKS unit
+L = (N*phi)/I; // Inductance of the Coil in Henry
+
+
+// DISPLAY RESULTS
+
+disp("EXAMPLE : 2.2 : SOLUTION :-") ;
+printf("\n (a) The Total MMF , F = %.1f At \n ",F);
+printf("\n (b) Current flowing through the Coil , I = %.3f A \n",I);
+printf("\n (c.1) Relatative permeability of the Material a, mue_r_a = %.f \n ",mue_r_a);
+printf("\n (c.2) Relatative permeability of the Material b, mue_r_b = %.f \n ",mue_r_b);
+printf("\n (c.3) Relatative permeability of the Material c, mue_r_c = %.f \n ",mue_r_c);
+printf("\n (c.4) Relucatnce of the Material a, Ra= %.f MKS unit \n",Ra);
+printf("\n (c.5) Relucatnce of the Material b, Rb= %.1f MKS unit \n",Rb);
+printf("\n (c.6) Relucatnce of the Material c, Rc= %.f MKS unit \n",Rc);
+printf("\n (d) Inductance of the Coil , L = %.4f H \n",L);
diff --git a/Working_Examples/2777/CH2/EX2.3/Ex2_3.sce b/Working_Examples/2777/CH2/EX2.3/Ex2_3.sce new file mode 100755 index 0000000..2821ad5 --- /dev/null +++ b/Working_Examples/2777/CH2/EX2.3/Ex2_3.sce @@ -0,0 +1,34 @@ +
+// ELECTRICAL MACHINES
+// R.K.Srivartava
+// First Impression 2011
+// CENGAGE LEARNING INDIA PVT. LTD
+
+// CHAPTER : 2 : FORCES IN AN ELECTROMAGNETIC SYSTEMS
+
+// EXAMPLE : 2.3
+
+clear ; clc ; close ; // Clear the work space and console
+
+
+// GIVEN DATA
+
+F = 35; // Total MMF in Amphere-Turns
+Lc = 0.1; // Inductance of The Material "c" in Henry
+a = 0.001; // Area of the all Materials "a,b,c" in Metre-Square
+
+
+// CALCULATIONS
+
+Hc = F/Lc; // Field Intensity in Amphere-Turns/Meter (Given that entire MMf apperas on Material "c" Because of the highest reluctance about 45000 MKS unit From Example 2.2)
+Bc = 0.65; // Flux density of material "c" in in Telsa obtained from the Standard B-H curve
+phi = Bc*a; // Flux in the core in Weber
+Ba = Bc; // Flux density of material "a" in in Telsa Same because Area of Cross Section is Same
+Bb = Bc; // Flux density of material "b" in in Telsabecause Area of Cross Section is Same
+
+
+// DISPLAY RESULTS
+
+disp("EXAMPLE : 2.3 : SOLUTION :-") ;
+printf("\n (a) Flux in the core , phi = %.5f Wb \n ",phi);
+printf("\n (b) Flux density of material a,b,c , Ba = Bb = Bc %.2f T \n",Ba);
diff --git a/Working_Examples/2777/CH2/EX2.4/Ex2_4.sce b/Working_Examples/2777/CH2/EX2.4/Ex2_4.sce new file mode 100755 index 0000000..8c46895 --- /dev/null +++ b/Working_Examples/2777/CH2/EX2.4/Ex2_4.sce @@ -0,0 +1,48 @@ +
+// ELECTRICAL MACHINES
+// R.K.Srivastava
+// First Impression 2011
+// CENGAGE LEARNING INDIA PVT. LTD
+
+// CHAPTER : 2 : FORCES IN AN ELECTROMAGNETIC SYSTEMS
+
+// EXAMPLE : 2.4
+
+clear ; clc ; close ; // Clear the work space and console
+
+
+// GIVEN DATA
+// Refer figure 2.7:- Page no. 41
+
+a = 0.0001; // Cross Sectional Area of the Core in Meter-Square
+Li = 0.158; // Total length of the Path abcdef in Meter (4.0*4.0 - 0.2 = 15.8cm = 0.158m)
+Lg = 0.002; // Length of the air gap in Meter
+mue_0 = 4*%pi*10^-7; // Permeability of the air in Henry/Meter
+mue_r = 10000; // Permeability of the core
+N = 10; // Number of Turns
+I = 1.0; // Current in the Coil in Amphere
+v = 50; // hall effect sensor generates volatge produces in milli volt per 1 Telsa
+Li_new = 0.16; // Length of the Flux path in Absence of the Air gap in Meter
+
+
+// CALCUALTIONS
+
+F = N*I; // MMF of the Coil in Amphere-turn
+Ri = Li/(mue_0*mue_r*a); // Relucatnce of the Iron Coil in MKS unit
+Rg = Lg/(mue_0*a); // Relucatnce of air gap in MKS unit
+R = Ri+Rg; // Total Reluctance in MKS unit
+phi = F/R; // Flux in the Core in Weber
+B = phi/a; // FLux density in the core(Presence of the Air gap) in Weber/Meter-Square
+HEV = B*50; // Output of the Hall effect Sensor device in Milli-Volt
+R_new = Li_new/(mue_0*mue_r*a) // Relucatance of the Magnetic Circuit in Absence of the Air gap
+phi_new = F/R_new; // New Flux in the Core in Weber
+B_new = phi_new/a; // New FLux density in the core in Weber/Meter-Square
+Ratio = B_new/B; // Ratio of the Flux Density in Absence of the Air gap and in the presence of the Air gap
+
+
+// DISPLAY RESULTS
+
+disp("EXAMPLE : 2.4 : SOLUTION :-") ;
+printf("\n (a) Flux density in the core(Presence of the Air gap) , B = %.8f Wb/Meter-Square \n ",B);
+printf("\n (b) Output of the Hall effect Sensor device , HEV = %.7f mV \n",HEV);
+printf("\n (c) Ratio of the Flux Density in Absence of the Air gap and in the presence of the Air gap , Ratio = %.2f \n ",Ratio);
diff --git a/Working_Examples/2777/CH2/EX2.5/Ex2_5.sce b/Working_Examples/2777/CH2/EX2.5/Ex2_5.sce new file mode 100755 index 0000000..068905a --- /dev/null +++ b/Working_Examples/2777/CH2/EX2.5/Ex2_5.sce @@ -0,0 +1,44 @@ +
+// ELECTRICAL MACHINES
+// R.K.Srivastava
+// First Impression 2011
+// CENGAGE LEARNING INDIA PVT. LTD
+
+// CHAPTER : 2 : FORCES IN AN ELECTROMAGNETIC SYSTEMS
+
+// EXAMPLE : 2.5
+
+clear ; clc ; close ; // Clear the work space and console
+
+
+// GIVEN DATA
+// Refer figure 2.3(a):- Page no. 36
+
+B = 1.0; // Flux Density in the Core in Weber/Meter-Square
+Liron = 0.55; // Mean length of the flux path of Iron in Meter
+Lair = 0.002; // Mean length of the flux path of Air Gap in Meter
+I = 20; // Coil Current in Amphere
+H = 200; // Field Intensity in Amphere-Turns/Meter
+mue_r = 20000; // Relative permeability of Ferrite core
+mue_0 = 4*%pi*10^-7; // Permeability of the air in Henry/Meter
+a = 0.0025; // Area of the Cross sectional of the core oin Metre-Square
+
+
+// CALCULATIONS
+
+phi = B*a; // Toatl Flux in the core in Weber
+Rair = Lair/(mue_0*a); // Relucatnce in the Air gap
+Fair = Rair*phi; // MMf in the Air gap in Amphere-Turns
+Firon = H*Liron; // MMf in the Iron core in Amphere-Turns
+F = Firon+Fair; // Total MMF in Amphere-Turns
+N = F/I; // Number of turns in the Coil
+F_new = B/(mue_0*mue_r); // Field Intensity in Amphere-Turns/Meter
+F_new_total = (Fair+F_new); // Total MMF in Amphere-Turns
+N_new = F_new_total/I; // Number of turns in the Coil
+
+
+// DISPLAY RESULTS
+
+disp("EXAMPLE : 2.5 : SOLUTION :-") ;
+printf("\n (a) Number of turns in the Coil in air gap made of Silicon Steel having an field intensity 200At/m corresounds to 1.0 T Flux Density , N = %.2f appoximately 85 \n ",N);
+printf("\n (b) Number of turns in the Coil for a ferrite core of having Relative premeability of 20000 and magnetic Field Density corresponnds to 1.0 T , N_new = %.2f appoximately 82 \n",N_new);
diff --git a/Working_Examples/2777/CH3/EX3.1/Ex3_1.sce b/Working_Examples/2777/CH3/EX3.1/Ex3_1.sce new file mode 100755 index 0000000..36f9aab --- /dev/null +++ b/Working_Examples/2777/CH3/EX3.1/Ex3_1.sce @@ -0,0 +1,46 @@ +
+// ELECTRICAL MACHINES
+// R.K.Srivastava
+// First Impression 2011
+// CENGAGE LEARNING INDIA PVT. LTD
+
+// CHAPTER : 3 : TRANSFORMERS
+
+// EXAMPLE : 3.1
+
+clear ; clc ; close ; // Clear the work space and console
+
+
+// GIVEN DATA
+
+Z = (0.05 + 0.05 * %i) * 100; // Transmission line parameters (impedance) in Ohms (multiplied by 100 because distance of the Transmission line is 100km)
+R = 0.05 * 100; // Transmission line Resistance in Ohms (multiplied by 100 because distance of the Transmission line is 100km)
+V1 = 220; // Terminal voltage in Volts
+V2 = 1 * 10 ^ 3; // Terminal volatge from Generator side in Volts
+P = 20 * 10 ^ 3; // Power in Watts
+
+
+// CACULATIONS
+
+I1 = P/V1; // Line current for 220V in Amphere
+I2 = P/V2; // Line current for 1kV in Amphere
+I1Z = Z*I1; // Voltage drop due to I1 in Volts
+I2Z = Z*I2; // Voltage drop due to I2 in Volts
+Loss1 = (I1 ^ 2) * R * 10 ^ -3; // Line loss for I1 in kW
+Loss2 = (I2 ^ 2) * R * 10 ^ -3; // Line loss for I2 in kW
+Vg1 = V1 + I1Z; // Input Voltages on Generator Terminal in Volts
+Vg2 = V2 + I2Z; // Input Voltages on Generator Terminal in Volts
+
+
+// DISPLAY RESULTS
+
+disp("EXAMPLE : 3.1 : SOLUTION :-") ;
+printf("\n (a.1) Voltage drop due to I1 , I1Z = % .2f+j%.2f V \n ",real(I1Z),imag(I1Z));
+printf("\n (a.2) Voltage drop due to I2 , I2Z = % .f+j%.f V \n",real(I2Z),imag(I2Z));
+printf("\n (b.1) Line loss for I1 , Loss1 = %.2f kW \n ",Loss1);
+printf("\n (b.2) Line loss for I2 , Loss2 = % .2f kW \n",Loss2);
+printf("\n (c.1) Input Voltages on Generator Terminal from a load terminal , Vg1 = %.2f+j%.2f = %.2f V \n ",real(Vg1),imag(Vg1),abs(Vg1));
+printf("\n (c.2) Input Voltages on Generator Terminal from a Generating Station , Vg2 = % .f+j%.f = %.2f V \n",real(Vg2),imag(Vg2),abs(Vg2));
+printf("\n\n [ TEXT BOOK SOLUTION IS PRINTED WRONGLY ( I verified by manual calculation )]\n" );
+printf("\n WRONGLY PRINTED ANSWERS ARE :- (a) I1Z = (450.45)+j(450.45)V instead of (454.55)+j(454.55) V\n" );
+printf("\n (b) Vg1 = (670.45)+j(450.45) = 807.72 V instead of % .2f+j%.2f = %.2f V \n",real(Vg1),imag(Vg1),abs(Vg1) );
diff --git a/Working_Examples/2777/CH3/EX3.10/Ex3_10.sce b/Working_Examples/2777/CH3/EX3.10/Ex3_10.sce new file mode 100755 index 0000000..c46e524 --- /dev/null +++ b/Working_Examples/2777/CH3/EX3.10/Ex3_10.sce @@ -0,0 +1,40 @@ +
+// ELECTRICAL MACHINES
+// R.K.Srivastava
+// First Impression 2011
+// CENGAGE LEARNING INDIA PVT. LTD
+
+// CHAPTER : 3 : TRANSFORMERS
+
+// EXAMPLE : 3.10
+
+clear ; clc ; close ; // Clear the work space and console
+
+
+// GIVEN DATA
+
+V1 = 440; // HV Side Voltage Rating of the Transformer in Volts
+V2 = 220; // LV Side Voltage Rating of the Transformer in Volts
+pf_o = 0.2; // No-load Power factor lagging
+pf_l = 0.8; // Load Power factor lagging
+I_o = 5; // No-load current in Amphere
+I_2 = 120; // Load current in Amphere
+
+// CALCULATIONS
+
+a = V1/V2; // Turns ratio of the two winding Transformers
+theta_o = acosd(pf_o); // No load power factor of the two winding Transformers in Degrees
+Io = I_o * exp(-(%i*theta_o*%pi/180)); // No load current of the two winding Transformers (minus because lagging) in Amphere
+theta = acosd(pf_l); // load power factor of the two winding Transformers in Degrees
+I2 = I_2 * exp(-(%i*theta*%pi/180)); // secondary load current of the two winding Transformers (minus because lagging) in Amphere
+I21 = I2/a; // Secondary referred to the primaryin Amphere
+I1 = Io + I21; // Primary current in Amphere
+I1_mag = abs(I1); // Primary current magnitude inj Amphere
+theta_1 = atand( imag(I1),real(I1)); // Primary current angle in Degree
+
+
+// DISPLAY RESULTS
+
+disp("EXAMPLE : 3.10 : SOLUTION :-") ;
+printf("\n (a) Primary current , I1 = %.2f < %.1f A \n ",I1_mag,theta_1);
+
diff --git a/Working_Examples/2777/CH3/EX3.11/Ex3_11.sce b/Working_Examples/2777/CH3/EX3.11/Ex3_11.sce new file mode 100755 index 0000000..b112baa --- /dev/null +++ b/Working_Examples/2777/CH3/EX3.11/Ex3_11.sce @@ -0,0 +1,53 @@ +
+// ELECTRICAL MACHINES
+// R.K.Srivastava
+// First Impression 2011
+// CENGAGE LEARNING INDIA PVT. LTD
+
+// CHAPTER : 3 : TRANSFORMERS
+
+// EXAMPLE : 3.11
+
+clear ; clc ; close ; // Clear the work space and console
+
+
+// GIVEN DATA
+
+S = 50; // kVA Rating of the Transformer
+f = 50; // Frequency in Hertz
+Wo = 190; // Meter Readings when HV Winding kept open in Watt
+Vo = 230; // Meter Readings when HV Winding kept open in Volts
+Io = 6.5; // Meter Readings when HV Winding kept open in Amphere
+R2 = 0.06; // Resistance of the LV Winding in Ohms
+V1 = 2300; // Voltage across the HV Side in Volts
+V2 = 230; // Voltage across the LV Side in Volts
+AC = 230; // Tranformer connected to AC mains in Volts
+
+
+// CALCULATIONS
+
+a = V1/V2; // Trasformation ratio of the Transformer
+Wc = Wo - ((Io ^ 2) * R2); // Core loss in Watts
+Po = Wc; // Core loss in Watts
+Pc = Wc; // Core loss in Watts
+cos_theta_o = Po/(Vo*Io); // No load power factor
+theta_o = acosd(cos_theta_o); // No load power factor angle in Degrees
+Ic = Io * cosd(theta_o);
+E = V1 - Io * exp(%i*(theta_o)*%pi/180);
+Rc = Pc/(Ic ^ 2 ); // Core loss Resistance in Ohms
+Im = Io * sind(theta_o); // Current through the Magnetizing branch in Amphre
+Xm = E/Im; // Magnetizing Reactance in Ohms
+Ift = (S * 10 ^ 3)/V2; // Full Load current in Amphere
+Ie = (Io/Ift)*100; // Percentage of the Exicting Current in Amphere
+
+
+// DISPLAY RESULTS
+
+disp("EXAMPLE : 3.11 : SOLUTION :-") ;
+printf("\n (a) Core loss , Wc = %.2f W \n ",Wc);
+printf("\n (b.1) No load power factor angle , theta_o = % .2f Degree \n",theta_o);
+printf("\n (b.2) No load power factor , cos(theta_o) = % .6f \n",cos_theta_o );
+printf("\n (c.1) Curent through Core loss Component , Ic = %.4f A \n ",Ic);
+printf("\n (c.2) Core loss Resistance , Rc = %.2f Ohms \n ",Rc);
+printf("\n (d) Current through the Magnetizing Component Xm , Im = % .2f A \n",Im);
+printf("\n (e) Percentage of the Exicting Current = % .2f Percent \n",Ie);
diff --git a/Working_Examples/2777/CH3/EX3.12/Ex3_12.sce b/Working_Examples/2777/CH3/EX3.12/Ex3_12.sce new file mode 100755 index 0000000..05b3c12 --- /dev/null +++ b/Working_Examples/2777/CH3/EX3.12/Ex3_12.sce @@ -0,0 +1,57 @@ +
+// ELECTRICAL MACHINES
+// R.K.Srivastava
+// First Impression 2011
+// CENGAGE LEARNING INDIA PVT. LTD
+
+// CHAPTER : 3 : TRANSFORMERS
+
+// EXAMPLE : 3.12
+
+clear ; clc ; close ; // Clear the work space and console
+
+
+// GIVEN DATA
+
+N1 = 1000; // 1st Test at No-load condition f1 Frequency, Speed in RPM
+Vo1 = 250; // 1st Test at No-load condition f1 Frequency, Voltage in Volts
+Io1 = 0.5; // 1st Test at No-load condition f1 Frequency, Current in Amphere
+Wo1= 230; // 1st Test at No-load condition f1 Frequency, Power in Watts
+
+N2 = 900; // 2nd Test at No-load condition f2 Frequency, Speed in RPM
+Vo2 = 225; // 2nd Test at No-load condition f2 Frequency, Voltage in Volts
+Io2= 0.5; // 2nd Test at No-load condition f2 Frequency, Current in Amphere
+Wo2 = 200; // 2nd Test at No-load condition f2 Frequency, Power in Watts
+p = 6; // Number of poles of single phase alternator
+N = 220; // Number of the turns of single phase alternator
+R = 0.66; // Resistance of the single phase alternator in Ohms
+
+
+// CALCULATIONS
+
+f1 = (N1*p)/120; // 1st case Supply Frequency in Hertz
+Ratio1 = Vo1/f1; // 1st case Ratio of the Volatge and Frequency in Volts/Hertz
+f2 = (N2*p)/120; // 2nd case Supply Frequency in Hertz
+Ratio2 = Vo2/f2; // 2nd case Ratio of the Volatge and Frequency in Volts/Hertz
+
+c = (Wo1-(Io1^2)*R)/f1; // No-load corrected losses Eq 1 in Watts
+d = (Wo2-(Io2^2)*R)/f2; // No-load corrected losses Eq 2 in watts
+
+x = [ 1 f1 ; 1 f2 ]; // No-load corrected losses Eq 1 in watts
+y = [ c ; d ]; // No-load corrected losses Eq 2 in watts
+
+E = x\y; // Solution of constants A in Watts/Hertz and B in watts/Hertz-Sqare in matrix form
+A = E(1,1); // Solution of constant A in Watts/Hertz
+B = E(2,1); // Solution of constant B in watts/Hertz-Sqare
+Ph = f1*A; // Hysteresis loss at 50 Hertz in Watts
+Pe = (f1^2)*B; // Eddy current loss at 50 Hertz in Watts
+
+
+// DISPLAY RESULTS
+
+disp("EXAMPLE : 3.12 : SOLUTION :-") ;
+printf("\n (a) Hysteresis loss at %.f Hertz , Ph = %.3f W \n ",f1,Ph);
+printf("\n (b) Eddy current loss at %.f Hertz , Pe = % .2f W \n",f1,Pe);
+
+
+
diff --git a/Working_Examples/2777/CH3/EX3.13/Ex3_13.sce b/Working_Examples/2777/CH3/EX3.13/Ex3_13.sce new file mode 100755 index 0000000..898bb00 --- /dev/null +++ b/Working_Examples/2777/CH3/EX3.13/Ex3_13.sce @@ -0,0 +1,55 @@ +
+// ELECTRICAL MACHINES
+// R.K.Srivastava
+// First Impression 2011
+// CENGAGE LEARNING INDIA PVT. LTD
+
+// CHAPTER : 3 : TRANSFORMERS
+
+// EXAMPLE : 3.13
+
+clear ; clc ; close ; // Clear the work space and console
+
+
+// GIVEN DATA
+
+N1 = 1500; // 1st Test on Transformer at f1 Frequency and Vo1 voltage, Speed in RPM
+Vo1 = 250; // 1st Test on Transformer at f1 Frequency and Vo1 voltage, Voltage in Volts
+Wo1= 55; // 1st Test on Transformer at f1 Frequency and Vo1 voltage, Power in Watts
+N2 = 1200; // 2nd Test on Transformer at f2 Frequency and Vo2 voltage, Speed in RPM
+Vo2 = 200; // 2nd Test on Transformer at f2 Frequency and Vo2 voltage, Voltage in Volts
+Wo2 = 40; // 2nd Test on Transformer at f2 Frequency and Vo2 voltage, Power in Watts
+p = 4; // Number of poles of single phase alternator
+
+
+// CALCULATIONS
+
+f1 = (N1*p)/120; // 1st case Supply Frequency in Hertz
+Ratio1 = Vo1/f1; // 1st case Ratio of the Volatge and Frequency in Volts/Hertz
+f2 = (N2*p)/120; // 2nd case Supply Frequency in Hertz
+Ratio2 = Vo2/f2; // 2nd case Ratio of the Volatge and Frequency in Volts/Hertz
+
+c = Wo1/f1; // No-load corrected losses Eq 1 in Watts
+d = Wo2/f2; // No-load corrected losses Eq 2 in watts
+
+x = [ 1 f1 ; 1 f2 ]; // No-load corrected losses Eq 1 in watts
+y = [ c ; d ]; // No-load corrected losses Eq 2 in watts
+
+E = x\y; // Solution of constants A in Watts/Hertz and B in watts/Hertz-Sqare in matrix form
+A = E(1,1); // Solution of constant A in Watts/Hertz
+B = E(2,1); // Solution of constant B in watts/Hertz-Sqare
+Ph1 = f1*A; // Hysteresis loss at 50 Hertz in Watts
+Pe1 = (f1^2)*B; // Eddy current loss at 50 Hertz in Watts
+Ph2 = f2*A; // Hysteresis loss at 40 Hertz in Watts
+Pe2 = (f2^2)*B; // Eddy current loss at 40 Hertz in Watts
+
+
+// DISPLAY RESULTS
+
+disp("EXAMPLE : 3.13 : SOLUTION :-") ;
+printf("\n (a.1) Hysteresis loss at %.f Hertz , Ph = %.f W \n ",f1,Ph1);
+printf("\n (a.2) Eddy current loss at %.f Hertz , Pe = %.f W \n",f1,Pe1);
+printf("\n (b.1) Hysteresis loss at %.f Hertz , Ph = %.f W \n ",f2,Ph2);
+printf("\n (b.2) Eddy current loss at %.f Hertz , Pe = %.f W \n",f2,Pe2);
+printf("\n\n [ TEXT BOOK SOLUTION IS PRINTED WRONGLY ( I verified by manual calculation )]\n" );
+printf("\n WRONGLY PRINTED ANSWERS ARE :- (a) Hysteresis loss at %.f Hertz , Ph = 25 W instead of %.f W \n ",f2,Ph2);
diff --git a/Working_Examples/2777/CH3/EX3.14/Ex3_14.sce b/Working_Examples/2777/CH3/EX3.14/Ex3_14.sce new file mode 100755 index 0000000..e0b0ab9 --- /dev/null +++ b/Working_Examples/2777/CH3/EX3.14/Ex3_14.sce @@ -0,0 +1,75 @@ +
+// ELECTRICAL MACHINES
+// R.K.Srivastava
+// First Impression 2011
+// CENGAGE LEARNING INDIA PVT. LTD
+
+// CHAPTER : 3 : TRANSFORMERS
+
+// EXAMPLE : 3.14
+
+clear ; clc ; close ; // Clear the work space and console
+
+
+// GIVEN DATA
+
+S = 10 * 10 ^ 3; // Rating of the Single Transformer in VA
+f = 50; // Frequency in Hertz
+Pc = 110; // Required input no-load at normal voltage in Watts (Core loss)
+Psc = 120; // Required input Short-circuit at full-load current in Watts (copper loss or short circuit loss)
+
+
+// CALCUATIONS
+// case (a) for Unity power factor
+
+cos_theta1 = 1; // Unity Power factor
+K1 = 1.0; // Full load
+K2 = 0.5; // Half load
+eta_11 = 100 * (K1*S*cos_theta1)/((K1*S*cos_theta1)+Pc+( K1 ^ 2 )*Psc); // Efficiency at unity factor and full load ( beacuse taken k1 = 1 ) in percentage
+eta_12 = 100 * (K2*S*cos_theta1)/((K2*S*cos_theta1)+Pc+( K2 ^ 2 )*Psc); // Efficiency at unity factor and half load ( beacuse taken k2 = 0.5 ) in percentage
+
+// case (b) for 0.8 power factor lagging
+
+cos_theta2 = 0.8; // 0.8 power factor lagging
+eta_21 = 100 * (K1*S*cos_theta2)/((K1*S*cos_theta2)+Pc+( K1 ^ 2 )*Psc); // Efficiency at 0.8 power factor lagging and full load ( beacuse taken k1 = 1 ) in percentage
+eta_22 = 100 * (K2*S*cos_theta2)/((K2*S*cos_theta2)+Pc+( K2 ^ 2 )*Psc); // Efficiency at 0.8 power factor lagging and half load ( beacuse taken k2 = 0.5 ) in percentage
+
+// Case (c) for 0.8 poer factor leading
+
+eta_31 = eta_21; // Efficiency at 0.8 power factor leading and full load will be same as the Efficiency at 0.8 power factor lagging and full load in percentage
+eta_32 = eta_22; // Efficiency at 0.8 power factor leading and half load will be same as the Efficiency at 0.8 power factor lagging and half load in percentage
+
+// Case (d) Maximum Efficiency assumed that unity power factor
+// Psc = Pc At Maximum Efficiency
+
+eta_41 = 100 * (K1*S*cos_theta1)/((K1*S*cos_theta1)+Pc+Pc); // Maximum Efficiency at unity factor and full load ( beacuse taken k1 = 1 ) in percentage
+
+// Case (e) Maximum Efficiency assumed that 0.8 power factor lagging
+// Psc = Pc At Maximum Efficiency
+
+eta_51 = 100 * (K1*S*cos_theta2)/((K1*S*cos_theta2)+Pc+Pc); // Maximum Efficiency at unity factor and full load ( beacuse taken k1 = 1 ) in percentage
+
+// Case (f) Maximum Efficiency assumed that 0.8 power factor leading
+// Psc = Pc At Maximum Efficiency
+
+eta_61 = eta_51; // Maximum Efficiency at 0.8 power factor leading and full load will be same as the Maximum Efficiency at 0.8 power factor lagging and full load in percentage
+out1 = K1*S*cos_theta1; // Output at which maximum efficiency occurs at unity power factor at full load in Watts
+out2 = K1*S*cos_theta2; // Output at which maximum efficiency occurs at 0.8 power factor lagging at full load in Watts
+out3 = K1*S*cos_theta2; // Output at which maximum efficiency occurs at unity power factor leading at full load in Watts
+
+// DISPLAY RESULTS
+
+disp("EXAMPLE : 3.14 : SOLUTION :-") ;
+printf("\n (a.1) Efficiency at unity power factor and full load , eta = %.2f Percent \n ",eta_11);
+printf("\n (a.2) Efficiency at unity power factor and half load , eta= % .2f Percent \n",eta_12);
+printf("\n (b.1) Efficiency at 0.8 power factor lagging and full load , eta = %.2f Percent \n ",eta_21);
+printf("\n (b.2) Efficiency at 0.8 power factor lagging and half load , eta= % .2f Percent \n",eta_22);
+printf("\n (c.1) Efficiency at 0.8 power factor leading and full load , eta = %.2f Percent \n ",eta_31);
+printf("\n (c.2) Efficiency at 0.8 power factor leading and half load , eta= % .2f Percent \n",eta_32);
+printf("\n (d) Maximum Efficiency at unity power factor and full load , eta = %.2f Percent \n ",eta_41);
+printf("\n (e) Maximum Efficiency at 0.8 power factor lagging and full load , eta = %.2f Percent \n ",eta_51);
+printf("\n (f) Maximum Efficiency at 0.8 power factor leading and full load , eta = %.2f Percent \n ",eta_61);
+printf("\n (g) Output at which maximum efficiency occurs at unity power factor at full load = %.f W \n ",out1);
+printf("\n (h) Output at which maximum efficiency occurs at 0.8 power factor lagging at full load = %.f W \n ",out2);
+printf("\n (i) Output at which maximum efficiency occurs at 0.8 power factor leading at full load = %.f W \n ",out3);
+printf("\n IN THE ABOVE PROBLEM MAXIMUM EFFICIENCY AND THE OUTPUT AT WHICH THE MAXIMUM EFFICIENCY OCCURS IS NOT CALCULATED IN THE TEXT BOOK \n")
diff --git a/Working_Examples/2777/CH3/EX3.15/Ex3_15.sce b/Working_Examples/2777/CH3/EX3.15/Ex3_15.sce new file mode 100755 index 0000000..8cdda47 --- /dev/null +++ b/Working_Examples/2777/CH3/EX3.15/Ex3_15.sce @@ -0,0 +1,38 @@ +
+// ELECTRICAL MACHINES
+// R.K.Srivastava
+// First Impression 2011
+// CENGAGE LEARNING INDIA PVT. LTD
+
+// CHAPTER : 3 : TRANSFORMERS
+
+// EXAMPLE : 3.15
+
+clear ; clc ; close ; // Clear the work space and console
+
+
+// GIVEN DATA
+// Refer figure 3.17 page no. 101
+
+S = 500 * 10 ^ 6; // Rating of power transformer in VA
+V1 = 400 * 10^3; // HV side rating of the power transformer in Volts
+V2 = 131 * 10^3; // LV side rating of the power transformer in Volts
+pcu = 5; // Rated Copper loss in Percentage
+pi = 1; // Rated Core loss in Percentage
+
+
+// CALCULATIONS
+
+Pcu = S*(pcu/100); // Rated Copper loss in Watts
+Pi = S*(pi/100); // Rated Core loss in Watts
+kt = 0.25*3 + 0.75*3 + 1*3 + 0.5*3 + 1.0*3 + 0.25*6 + 1.0*3; // From graph figure 3.17 page no. 101
+out = S*kt; // Output energy in kilo-watt-hour
+kt2 = 0.54375; // From graph figure 3.17 page no. 101
+eloss = 24*Pi + S*kt2; // Energy required in losses in kilo-watt-hour { Energy required in losses = 24*Pi + sigma(copper loss * duration)}
+eta = 100*(out/(out+eloss)); // All day efficiency
+
+
+// DISPLAY RESULTS
+
+disp("EXAMPLE : 3.15: SOLUTION :-");
+printf("\n (a) All day efficiency = %.2f percent \n",eta)
diff --git a/Working_Examples/2777/CH3/EX3.16/Ex3_16.sce b/Working_Examples/2777/CH3/EX3.16/Ex3_16.sce new file mode 100755 index 0000000..7286b30 --- /dev/null +++ b/Working_Examples/2777/CH3/EX3.16/Ex3_16.sce @@ -0,0 +1,52 @@ +
+// ELECTRICAL MACHINES
+// R.K.Srivastava
+// First Impression 2011
+// CENGAGE LEARNING INDIA PVT. LTD
+
+// CHAPTER : 3 : TRANSFORMERS
+
+// EXAMPLE : 3.16
+
+clear ; clc ; close ; // Clear the work space and console
+
+
+// GIVEN DATA
+
+S = 20 * 10 ^ 3; // Rating of the Step-down Transformer in VA
+f = 50; // Frequency in Hertz
+V = 200; // Normally supplied Voltage of Step-down Transformer in Volts
+Vsc = 100; // Potential difference when Secondary being Short- Circuited in Volts
+Isc = 10; // Primary Current when Secondary being Short- Circuited in Amphere
+Cos_theta_sc = 0.28; // Power factor when Secondary being Short- Circuited
+
+
+// CALCULATIONS
+
+I = S/V; // Rated primary current in Amphere
+Wsc = Vsc * Isc * Cos_theta_sc; // Power loss when Secondary being Short- Circuited in Watts
+R = Wsc/(Isc ^ 2); // Resistance of Transformer referred to primary side in Ohms
+Z = Vsc/Isc; // Referred Impedence in Ohms
+X = sqrt((Z^2)-(R^2)); // Leakage Reactance referred to primary side in Ohms
+Er = (I*R)/V; // Per unit Resistance in Ohms
+Ex = (I*X)/V; // Per unit Reactance in Ohms
+Cos_theta1 = 1.0; // Unity Power factor
+Cos_theta2 = 0.6; // 0.6 Power factor Lagging
+Cos_theta3 = 0.6; // 0.6 Power factor Leading
+Sin_theta1 = 0.0; // Unity Power factor
+Sin_theta2 = 0.8; // 0.6 Power factor Lagging
+Sin_theta3 = 0.8; // 0.6 Power factor Leading
+E1 = (Er*Cos_theta1)+(Ex*Sin_theta1); // pu Regulation at Unity Power factor
+E2 = (Er*Cos_theta2)+(Ex*Sin_theta2); // pu Regulation at 0.6 Power factor Lagging
+E3 = (Er*Cos_theta3)-(Ex*Sin_theta3); // pu Regulation at 0.6 Power factor Leading
+
+
+// DISPLAY RESULTS
+
+disp("EXAMPLE : 3.16 : SOLUTION :-") ;
+printf("\n (a) pu Regulation at Unity Power factor , E = %.1f \n ",E1);
+printf("\n (b) pu Regulation at 0.6 Power factor Lagging , E= % .2f \n",E2);
+printf("\n (c) pu Regulation at 0.6 Power factor Leading , E= % .2f \n",E3);
+
+
+
diff --git a/Working_Examples/2777/CH3/EX3.17/Ex3_17.sce b/Working_Examples/2777/CH3/EX3.17/Ex3_17.sce new file mode 100755 index 0000000..10e6b62 --- /dev/null +++ b/Working_Examples/2777/CH3/EX3.17/Ex3_17.sce @@ -0,0 +1,41 @@ +
+// ELECTRICAL MACHINES
+// R.K.Srivastava
+// First Impression 2011
+// CENGAGE LEARNING INDIA PVT. LTD
+
+// CHAPTER : 3 : TRANSFORMERS
+
+// EXAMPLE : 3.17
+
+clear ; clc ; close ; // Clear the work space and console
+
+
+// GIVEN DATA
+
+S = 500; // Rating of the 3-Phase transformer in kVA
+V1 = 11 * 10 ^ 3; // Votage rating of the 3-Phase transformer on HV side in Volts
+V2 = 400; // Votage rating of the 3-Phase transformer on LV side in Volts
+f = 60; // Frequencyin Hertz
+eta = 98; // Maximum Efficency of the Transformer in Percentage Operating at 80% full load and Unity Power factor
+K = 0.8; // Beacuse 80% Full load
+x = 1.0; // Unity Power factor
+Ex = 4.5; // Percentage impedance
+
+
+// CALCULATIONS
+
+Out = S * K * x; // Output in KiloWatts at 80% full load and Unity Power factor
+Inp = Out/(eta/100); // Input in KiloWatts at full load and Unity Power factor
+Total_loss = Inp - Out; // Total loss at full load in KiloWatts
+Cu_loss = Total_loss/2; // Copper loss in KiloWatts at 80% full load and Unity Power factor
+Pcu = Cu_loss/(K ^2 ); // Full load Copper loss in KiloWatts
+Er = Pcu/S; // Per unit Resistance
+theta = atand((Ex/100)/Er); // Power factor angle at secondary terminal voltage is minimum in Degrees
+Pf = cosd(theta); // Load power factor for minimum volatge of the secondary terminal
+
+
+// DISPLAY RESULTS
+
+disp("EXAMPLE : 3.17 : SOLUTION :-") ;
+printf("\n (a) Load power factor for minimum volatge of the secondary terminal , cos(theta) = %.4f lagging \n ",Pf);
diff --git a/Working_Examples/2777/CH3/EX3.19/Ex3_19.sce b/Working_Examples/2777/CH3/EX3.19/Ex3_19.sce new file mode 100755 index 0000000..f64cc2f --- /dev/null +++ b/Working_Examples/2777/CH3/EX3.19/Ex3_19.sce @@ -0,0 +1,38 @@ +
+// ELECTRICAL MACHINES
+// R.K.Srivastava
+// First Impression 2011
+// CENGAGE LEARNING INDIA PVT. LTD
+
+// CHAPTER : 3 : TRANSFORMERS
+
+// EXAMPLE : 3.19
+
+clear ; clc ; close ; // Clear the work space and console
+
+
+// GIVEN DATA
+
+Sa = 200; // Rating of the TWO 1-Phase Transformer in kVA
+Z1 = 0.005 + 0.08 * %i // Equivalent Impedance of the Transformer-1 in Per-Unit
+Z2 = 0.0075 + 0.04 * %i // Equivalent Impedance of the Transformer-2 in Per-Unit
+P = 400; // Total load in kiloWatts
+Cos_theta = 1.0; // Unity power factor
+
+
+// CALCULATIONS
+
+kVA = P/Cos_theta; // kVA rating of the Transformer
+S = kVA; // kVA rating of the Transformer
+S1 = ( Z2/(Z1+Z2) )*S; // Load shared by Transformer-1 in kVA
+S2 = S - S1; // Load shared by Transformer-2 in kVA
+
+
+// DISPLAY RESULTS
+
+disp("EXAMPLE : 3.19 : SOLUTION :-") ;
+printf("\n (a) Load shared by Transformer-1 , S1 = %.2f+j(%.2f) kVA \n ",real(S1),imag(S1));
+printf("\n (b )Load shared by Transformer-2 , S2 = %.2f+j%.2f kVA \n ",real(S2),imag(S2));
+printf("\n\n [ TEXT BOOK SOLUTION IS PRINTED WRONGLY ( I verified by manual calculation )]\n" );
+printf("\n WRONGLY PRINTED ANSWERS ARE :- (a) S1 = (-131.90)+j(38.47)kVA instead of %.2f+j(%.2f) kVA \n ",real(S1),imag(S1));
+printf("\n (b) S2 = (268.1)+j(.38047)kVA instead of %.2f+j%.2f kVA \n ",real(S2),imag(S2));
diff --git a/Working_Examples/2777/CH3/EX3.2/Ex3_2.sce b/Working_Examples/2777/CH3/EX3.2/Ex3_2.sce new file mode 100755 index 0000000..dbc0933 --- /dev/null +++ b/Working_Examples/2777/CH3/EX3.2/Ex3_2.sce @@ -0,0 +1,37 @@ +
+// ELECTRICAL MACHINES
+// R.K.Srivastava
+// First Impression 2011
+// CENGAGE LEARNING INDIA PVT. LTD
+
+// CHAPTER : 3 : TRANSFORMERS
+
+// EXAMPLE : 3.2
+
+clear ; clc ; close ; // Clear the work space and console
+
+
+// GIVEN DATA
+
+E1 = 6.6 * 10 ^ 3; // Primary voltage in Volts
+E2 = 220; // Secondary Voltage in volts
+f = 50; // Frequency in Hertz
+phi_m = 0.06; // Flux in Weber
+S = 50 * 10^6; // Rating of the single-phase transformer in VA
+
+// CALCULATIONS
+
+N1 = E1/(4.44*f*phi_m); // Number of turns in Primary
+vpn1 = E1/N1; // Voltage per turns in Primary in Volts/turn
+N2 = E2/(4.44*f*phi_m); // Number of turns in Secondary
+vpn2 = E2/N2; // Voltage per turns in Secondary in Volts/turn
+
+
+// DISPLAY RESULTS
+
+disp("EXAMPLE : 3.2 : SOLUTION :-") ;
+printf("\n (a.1) Number of turns in Primary , N1 = %.1f Turns nearly 496 Turns \n ",N1);
+printf("\n (a.2) Number of turns in Secondary , N2 = %.1f Turns nearly 16 Turns \n",N2);
+printf("\n (b.1) Voltage per turns in Primary , vpn1 = %.1f Volts/turns \n ",vpn1);
+printf("\n (b.2) Voltage per turns in Secondary , vpn2 = %.2f Volts/turns \n ",vpn2);
+
diff --git a/Working_Examples/2777/CH3/EX3.20/Ex3_20.sce b/Working_Examples/2777/CH3/EX3.20/Ex3_20.sce new file mode 100755 index 0000000..6bef844 --- /dev/null +++ b/Working_Examples/2777/CH3/EX3.20/Ex3_20.sce @@ -0,0 +1,42 @@ +
+// ELECTRICAL MACHINES
+// R.K.Srivastava
+// First Impression 2011
+// CENGAGE LEARNING INDIA PVT. LTD
+
+// CHAPTER : 3 : TRANSFORMERS
+
+// EXAMPLE : 3.20
+
+clear ; clc ; close ; // Clear the work space and console
+
+
+// GIVEN DATA
+
+V1 = 110; // Primary voltage of the Two Transformers the two primaries are connected in parallel in Volts
+I1 = 2.0; // Primary Current in Amphere
+P1 = 40; // Primary power intake in Watts
+V2 = 28; // secondary voltage of the Two Transformers the two secondary are connected in phase opposition in Volts
+I2 = 6.8; // secondary Current in Amphere
+P2 = 180; // secondary power intake in Watts
+a = 110/220; // Turn ratio of the Transformer
+
+
+// CALCULATIONS
+
+theta_o = acosd((a*P1)/(a*I1*V1)); // Primary Power factor angle in Degrees
+Io = 1.0 * (cosd(theta_o)-sind(theta_o)* %i); // No-load current in individual transformer in Amphere
+theta_sc = acosd((a*P2)/(a*I2*V2)); // Secondary Power factor angle in Degrees
+i_sc = I2 * ( cosd(theta_sc)-sind(theta_sc)* %i); // Secondary current in Amphere
+I_sc = (1/a)*i_sc; // referred Secondary current in each of the primary side in Amphere
+It1 = Io + I_sc; // LT winding current in the 1st Transformer in Amphere
+It2 = Io - I_sc; // LT winding current in the 2nd Transformer in Amphere
+In1 = It1 + It2; // The current flowing on paralel connected LT winding (This is same as total no-load current in the two Transforemer) in Amphere
+
+
+// DISPLAY RESULTS
+
+disp("EXAMPLE : 3.20 : SOLUTION :-") ;
+printf("\n (a) LT ( Primary ) winding current in the 1st Transformer , It1 = %.3f+j(%.4f) A \n ",real(It1),imag(It1));
+printf("\n (b) LT ( Primary ) winding current in the 2nd Transformer , It2= %.3f+j%.5f A \n",real(It2),imag(It2));
+printf("\n (c) LT winding are connected in parallel, the current flowing on paralel connected LT winding, In1 = %.3f+j(%.5f) A \n",real(In1),imag(In1));
diff --git a/Working_Examples/2777/CH3/EX3.21/Ex3_21.sce b/Working_Examples/2777/CH3/EX3.21/Ex3_21.sce new file mode 100755 index 0000000..807aae2 --- /dev/null +++ b/Working_Examples/2777/CH3/EX3.21/Ex3_21.sce @@ -0,0 +1,54 @@ +
+// ELECTRICAL MACHINES
+// R.K.Srivastava
+// First Impression 2011
+// CENGAGE LEARNING INDIA PVT. LTD
+
+// CHAPTER : 3 : TRANSFORMERS
+
+// EXAMPLE : 3.21
+
+clear ; clc ; close ; // Clear the work space and console
+
+
+// GIVEN DATA
+// Refer figures 3.31(a), 3.31(b) and 3.31(c):- Page no. 121
+
+VaH = 220; // HV side Voltage of the two winding Transformer in volts for case(a)
+VaL = 110; // LV side Voltage of the two winding Transformer in volts for case(a)
+VbH = 330; // HV side Voltage of the two winding Transformer in volts for case(b)
+VbL = 220; // LV side Voltage of the two winding Transformer in volts for case(b)
+VcH = 330; // HV side Voltage of the two winding Transformer in volts for case(c)
+VcL = 110; // LV side Voltage of the two winding Transformer in volts for case(c)
+S = 1.5; // Ratings of the the two winding Transformer in kVA
+I1 = 6.8; // Rated current in HV side in Amphere
+I2 = 13.6; // Rated current in LV side in Amphere
+
+
+// CALCULATIONS
+// for case(a):- figure 3.31(b) page no. 121
+
+IbH = I2; // Current of Auto-Transformer in HV side in Amphere
+IbL = I1 + I2; // Current of Auto-Transformer in LV side in Amphere
+KVA_b_L = (VbL*IbL)/1000; // LV side kVA rating of the Auto-Transformer in kVA
+KVA_b_H = (VbH*IbH)/1000; // HV side kVA rating of the Auto-Transformer in kVA
+
+// for case(b):- figure 3.31(c) page no. 121
+
+IcH = I1; // Current of Auto-Transformer in HV side in Amphere
+IcL = I1 + I2; // Current of Auto-Transformer in LV side in Amphere
+KVA_c_L = (VcL*IcL)/1000; // LV side kVA rating of the Auto-Transformer in kVA
+KVA_c_H = (VcH*IcH)/1000; // HV side kVA rating of the Auto-Transformer in kVA
+
+
+// DISPLAY RESULTS
+
+disp("EXAMPLE : 3.21 : SOLUTION :-") ;
+printf("\n (a.1) Current of Auto-Transformer in HV side for case (b) , IH = %.1f A \n ",IbH);
+printf("\n Current of Auto-Transformer in LV side for case (b), IL= % .1f A \n",IbL);
+printf("\n (a.2) LV side kVA rating of the Auto-Transformer for case (b), KVAL = % .3f kVA \n ",KVA_b_L);
+printf("\n HV side kVA rating of the Auto-Transformer for case (b), KVAH= % .3f kVA \n",KVA_b_H);
+printf("\n (b.1) Current of Auto-Transformer in HV side for case (c) , IH = %.1f A \n ",IcH);
+printf("\n Current of Auto-Transformer in LV side for case (c) , IL= % .1f A \n",IcL);
+printf("\n (b.2) LV side kVA rating of the Auto-Transformer for case (c), KVAL = % .3f kVA \n ",KVA_c_L);
+printf("\n HV side kVA rating of the Auto-Transformer for case (c) , KVAH= % .3f kVA \n",KVA_c_H);
diff --git a/Working_Examples/2777/CH3/EX3.22/Ex3_22.sce b/Working_Examples/2777/CH3/EX3.22/Ex3_22.sce new file mode 100755 index 0000000..fce8b52 --- /dev/null +++ b/Working_Examples/2777/CH3/EX3.22/Ex3_22.sce @@ -0,0 +1,55 @@ +
+// ELECTRICAL MACHINES
+// R.K.Srivastava
+// First Impression 2011
+// CENGAGE LEARNING INDIA PVT. LTD
+
+// CHAPTER : 3 : TRANSFORMERS
+
+// EXAMPLE : 3.22
+
+clear ; clc ; close ; // Clear the work space and console
+
+
+// GIVEN DATA
+
+S = 10 * 10 ^ 3; // Rating of the Two-winding Transformer in VA
+V1 = 2000; // HV side voltage of the Two-winding Transformer in Volts
+V2 = 200; // LV side voltage of the Two-winding Transformer in Volts
+V_A_H = 2200; // Two-winding Transformer is connected to auto transformer HV side in Volts
+V_A_L = 200; // Two-winding Transformer is connected to auto transformer LV side in Volts
+f = 50; // Frequency in Hertz
+
+
+// CALCULATIONS
+// for finding (a)
+
+I2 = S/V2; // Rated LV side current of winding for Step-up Auto transformer in Amphere
+I1 = S/V1; // Rated HV side current of winding for Step-up Auto transformer in Amphere
+IaH = I2; // The HV side current in the Auto-Transformer for Full-load in Amphere
+IaL = I2 + I1 ; // The LV side current in the Auto-Transformer for Full-load in Amphere
+VL = V1; // LV side voltage in Volts
+VH = V1 + V2; // HV side voltage in Volts
+KVA_a_L = (VL*IaL)/1000; // kVA rating of LV SIDE
+KVA_a_H = (VH*IaH)/1000; // kVA rating of HV SIDE
+
+// For finding (b)
+
+IbH = I1; // HV side Rated current through the Auto-Transformer in Amphere
+IbL = I1 + I2; // LV side Rated current through the Auto-Transformer in Amphere
+KVA_b_L = (V_A_L*IbL)/1000; // kVA rating of LV SIDE as output Auto-Transformer
+KVA_b_H = (V_A_H*IbH)/1000; // kVA rating of HV SIDE as output Auto-Transformer
+
+// case (c)
+
+V = V1; // Voltage on the Secondary, if the Commom windings are open
+
+
+// DISPLAY RESULTS
+
+disp("EXAMPLE : 3.22 : SOLUTION :-") ;
+printf("\n (a.1) HV side Curent supplied by the common windings , IH = %.f A \n ",IaH);
+printf("\n (a.2) LV side Curent supplied by the common windings , IL= %.f A \n",IaL);
+printf("\n (b.1) KVA rating of LV SIDE as output Auto-Transformer , KVAL = %.f kVA \n ",KVA_b_L);
+printf("\n (b.2) KVA rating of HV SIDE as output Auto-Transformer , KVAH= %.f kVA \n",KVA_b_H);
+printf("\n (c) Voltage on the Secondary, if the Commom windings are open , V = %.f V \n ",V);
diff --git a/Working_Examples/2777/CH3/EX3.23/Ex3_23.sce b/Working_Examples/2777/CH3/EX3.23/Ex3_23.sce new file mode 100755 index 0000000..28ed6db --- /dev/null +++ b/Working_Examples/2777/CH3/EX3.23/Ex3_23.sce @@ -0,0 +1,58 @@ +
+// ELECTRICAL MACHINES
+// R.K.Srivastava
+// First Impression 2011
+// CENGAGE LEARNING INDIA PVT. LTD
+
+// CHAPTER : 3 : TRANSFORMERS
+
+// EXAMPLE : 3.23
+
+clear ; clc ; close ; // Clear the work space and console
+
+
+// GIVEN DATA
+
+S = 100; // Rating of the 3-Phase Transformer in kVA
+VH = 11; // HV side voltage in kilo-Volts
+VL = 440; // LV side voltage in Volts
+Vl = 400; // Line voltage in Volts
+ZA = 0.6; // Line impedance in line A in Ohms
+ZB = 0.6*(0.8 + 0.6 * %i); // Line impedance in line B in Ohms
+ZC = 0.6*(0.5 - 0.866 * %i); // Line impedance in line C in Ohms
+
+
+// CALCULATIONS
+
+Vp = Vl/sqrt(3); // Phase voltage in Volts
+VAB = Vl * exp( %i * 0 * %pi/180); // Line Voltage across line A and B in Volts
+VBC = Vl * exp( %i * (-120) * %pi/180); // Line Voltage across line B and C in Volts
+VCA = Vl * exp( %i * 120 * %pi/180); // Line Voltage across line C and A in Volts
+VAN = (Vl/sqrt(3)) * exp( %i * (-30) * %pi/180); // Phase Voltage across line A and Neutral in Volts
+VBN = (Vl/sqrt(3)) * exp( %i * (-150) * %pi/180); // Phase Voltage across line B and Neutral in Volts
+VCN = (Vl/sqrt(3)) * exp( %i * (90) * %pi/180); // Phase Voltage across line C and Neutral in Volts
+IA = VAN/ZA; // Line current in line A in Amphere
+IB = VBN/ZB; // Line current in line B in Amphere
+IC = VCN/ZC; // Line current in line C in Amphere
+IN = IA + IB + IC ; // Current in the Neutral in Amphere
+Y = (1/ZA)+(1/ZB)+(1/ZC); // Net Admittance in mho
+VN = IN/Y; // Neutral Potential in Volts
+VDA = VAN - VN; // Voltage drops across the ZA in Volts
+VDB = VBN - VN; // Voltage drops across the ZB in Volts
+VDC = VCN - VN; // Voltage drops across the ZC in Volts
+
+
+// DISPLAY RESULTS
+
+disp("EXAMPLE : 3.23 : SOLUTION :-") ;
+printf("\n (a.1) Line current in line A , IA = %.f<%.f A \n ",abs(IA),atand(imag(IA),real(IA)));
+printf("\n (a.2) Line current in line B , IB = %.f<%.2f A \n",abs(IB),atand(imag(IB),real(IB)));
+printf("\n (a.3) Line current in line C , IC = %.f<%.f A \n ",abs(IC),atand(imag(IC),real(IC)));
+printf("\n (b.1) Phase Voltage across line A and Neutral , VAN = %.f<%.f V \n",abs(VAN),atand(imag(VAN),real(VAN)));
+printf("\n (b.2) Phase Voltage across line B and Neutral , VBN = %.f<%.f V \n ",abs(VBN),atand(imag(VBN),real(VBN)));
+printf("\n (b.3) Phase Voltage across line C and Neutral , VCN = %.f<%.f V \n",abs(VCN),atand(imag(VCN),real(VCN)));
+printf("\n (c) Neutral Potential , VN = %.1f<%.2f V \n ",abs(VN),atand(imag(VN),real(VN)));
+printf("\n\n [ TEXT BOOK SOLUTION IS PRINTED WRONGLY ( I verified by manual calculation )]\n" );
+printf("\n WRONGLY PRINTED ANSWERS ARE :- (a) IC = 385<-90.1 V instead of %.f<%.f A \n ",abs(IC),atand(imag(IC),real(IC)));
+printf("\n (b) VN = 230.5<78.17 V instead of %.1f<%.2f V \n ",abs(VN),atand(imag(VN),real(VN)) );
+printf("\n From Calculation of the IC, rest all the Calculated values in the TEXT BOOK is WRONG because of the IC value is WRONGLY calculated and the same used for the further Calculation part \n")
diff --git a/Working_Examples/2777/CH3/EX3.24/Ex3_24.sce b/Working_Examples/2777/CH3/EX3.24/Ex3_24.sce new file mode 100755 index 0000000..e37c3d1 --- /dev/null +++ b/Working_Examples/2777/CH3/EX3.24/Ex3_24.sce @@ -0,0 +1,85 @@ +
+// ELECTRICAL MACHINES
+// R.K.Srivastava
+// First Impression 2011
+// CENGAGE LEARNING INDIA PVT. LTD
+
+// CHAPTER : 3 : TRANSFORMERS
+
+// EXAMPLE : 3.24
+
+clear ; clc ; close ; // Clear the work space and console
+
+
+// GIVEN DATA
+
+VL = 11000; // Line-line voltage of the 3 identical 1-phase Transformer in Volts
+IL = 10; // Line current of the 3 identical 1-phase Transformer in Amphere
+a = 10; // Ratio of trun per phase of the 3 identical 1-phase Transformer
+
+
+// CALCULATIONS
+// For case (a) STAR-STAR
+
+VPp_a = VL/sqrt(3); // Primary phase volatge in Volts
+IPp_a = IL; // Primary phase current in Amphere
+VSp_a = VPp_a/a; // Secondary phase voltage in Volts
+ISp_a = a*IPp_a; // Secondary phase current in Amphere
+ISl_a = ISp_a; // Secondary line current in Amphere
+VSl_a = VSp_a*sqrt(3); // Secondary line voltage in Volts
+Out_a = sqrt(3)*VSl_a*ISl_a/1000; // Output in kVA
+
+// For case (b) STAR-DELTA
+
+VPp_b = VL/sqrt(3); // Primary phase volatge in Volts
+IPp_b = IL; // Primary phase current in Amphere
+VSp_b = VPp_a/a; // Secondary phase voltage in Volts
+ISp_b = a*IPp_b; // Secondary phase current in Amphere
+ISl_b = sqrt(3)*ISp_b; // Secondary line current in Amphere
+VSl_b = VSp_b; // Secondary line voltage in Volts
+Out_b = sqrt(3)*VSl_b*ISl_b/1000; // Output in kVA
+
+// For case (c) DELTA-DELTA
+
+VPp_c = VL; // Primary phase volatge in Volts
+IPp_c = IL/sqrt(3); // Primary phase current in Amphere
+VSp_c = VPp_c/a; // Secondary phase voltage in Volts
+ISp_c = a*IPp_c; // Secondary phase current in Amphere
+ISl_c = sqrt(3)*ISp_c; // Secondary line current in Amphere
+VSl_c = VSp_c; // Secondary line voltage in Volts
+Out_c = sqrt(3)*VSl_c*ISl_c/1000; // Output in kVA
+
+// For case (d) DALTA-STAR
+
+VPp_d = VL; // Primary phase volatge in Volts
+IPp_d = IL/sqrt(3); // Primary phase current in Amphere
+VSp_d = VPp_d/a; // Secondary phase voltage in Volts
+ISp_d = a*IPp_d; // Secondary phase current in Amphere
+ISl_d = ISp_d; // Secondary line current in Amphere
+VSl_d = sqrt(3)*VSp_d; // Secondary line voltage in Volts
+Out_d = sqrt(3)*VSl_d*ISl_d/1000; //Output in kVA
+
+
+// DISPLAY RESULTS
+
+disp("EXAMPLE : 3.24 : SOLUTION :-") ;
+printf("\n For STAR-STAR Connection \n\n (a.1) Secondary line voltage = %.f V \n ",VSl_a);
+printf("\n (a.2) Secondary line current = % .f A \n",ISl_a);
+printf("\n (a.3) Primary phase current = %.f A \n ",IPp_a);
+printf("\n (a.4) Secondary phase current = %.f A \n",ISp_a);
+printf("\n (a.5) Output = %.2f kVA \n ",Out_a);
+printf("\n For STAR-DELTA Connection \n\n (b.1) Secondary line voltage = % .f V \n",VSl_b);
+printf("\n (b.2) Secondary line current = %.f A \n ",ISl_b);
+printf("\n (b.3) Primary phase current = %.f A \n",IPp_b);
+printf("\n (b.4) Secondary phase current = %.f A \n ",ISp_b);
+printf("\n (b.5) Output = % .2f kVA \n",Out_b);
+printf("\n For DELTA-DELTA Connection \n\n (c.1) Secondary line voltage = %.f V \n ",VSl_c);
+printf("\n (c.2) Secondary line current = %.2f A \n",ISl_c);
+printf("\n (c.3) Primary phase current = %.2f A \n ",IPp_c);
+printf("\n (c.4) Secondary phase current = %.1f A \n",ISp_c);
+printf("\n (c.5) Output = %.1f kVA \n ",Out_c);
+printf("\n For DELTA-STAR Connection \n\n (d.1) Secondary line voltage = % .2f V \n",VSl_d);
+printf("\n (d.2) Secondary line current = %.1f A \n ",ISl_d);
+printf("\n (d.3) Primary phase current = %.2f A \n",IPp_d);
+printf("\n (d.4) Secondary phase current = %.1f A \n ",ISp_d);
+printf("\n (d.5) Output = % .1f kVA \n",Out_d);
diff --git a/Working_Examples/2777/CH3/EX3.3/Ex3_3.sce b/Working_Examples/2777/CH3/EX3.3/Ex3_3.sce new file mode 100755 index 0000000..0dd28bb --- /dev/null +++ b/Working_Examples/2777/CH3/EX3.3/Ex3_3.sce @@ -0,0 +1,29 @@ +
+// ELECTRICAL MACHINES
+// R.K.Srivastava
+// First Impression 2011
+// CENGAGE LEARNING INDIA PVT. LTD
+
+// CHAPTER : 3 : TRANSFORMERS
+
+// EXAMPLE : 3.3
+
+clear ; clc ; close ; // Clear the work space and console
+
+
+// GIVEN DATA
+
+f = 50; // Frequency in Hertz
+N = 50; // Number of turns in Secondary
+E =220; // Induced voltage in Volts
+
+
+// CALCULATIONs
+
+phi_m = E/(4.44*f*N); // Maximum value of the Flux in Weber
+
+
+// DISPLAY RESULTS
+
+disp("EXAMPLE : 3.3 : SOLUTION :-") ;
+printf("\n (a) Maximum value of the Flux , phi_m = % .7f Wb \n ",phi_m);
diff --git a/Working_Examples/2777/CH3/EX3.4/Ex3_4.sce b/Working_Examples/2777/CH3/EX3.4/Ex3_4.sce new file mode 100755 index 0000000..337d1dc --- /dev/null +++ b/Working_Examples/2777/CH3/EX3.4/Ex3_4.sce @@ -0,0 +1,31 @@ +
+// ELECTRICAL MACHINES
+// R.K.Srivastava
+// First Impression 2011
+// CENGAGE LEARNING INDIA PVT. LTD
+
+// CHAPTER : 3 : TRANSFORMERS
+
+// EXAMPLE : 3.4
+
+clear ; clc ; close ; // Clear the work space and console
+
+
+// GIVEN DATA
+
+S = 1.5; // Transformer Rating in KVA
+E1 = 220; // HV side voltage in volts
+E2 = 40; // LV side voltage in volts
+
+
+// CALCULATION
+
+Ihv = (S * 10 ^ 3)/E1; // Rated HV side Curent in Amphere
+Ilv = (S * 10 ^ 3)/E2; // Rated lV side Curent in Amphere
+
+
+// DISPLAY RESULTS
+
+disp("EXAMPLE : 3.4 : SOLUTION :-") ;
+printf("\n (a) Rated HV side Curent , Ihv = %.2f A \n ",Ihv);
+printf("\n (b) Rated LV side Curent , Ilv = %.1f A \n",Ilv);
diff --git a/Working_Examples/2777/CH3/EX3.5/Ex3_5.sce b/Working_Examples/2777/CH3/EX3.5/Ex3_5.sce new file mode 100755 index 0000000..a12f972 --- /dev/null +++ b/Working_Examples/2777/CH3/EX3.5/Ex3_5.sce @@ -0,0 +1,48 @@ +
+// ELECTRICAL MACHINES
+// R.K.Srivastava
+// First Impression 2011
+// CENGAGE LEARNING INDIA PVT. LTD
+
+// CHAPTER : 3 : TRANSFORMERS
+
+// EXAMPLE : 3.5
+
+clear ; clc ; close ; // Clear the work space and console
+
+
+// GIVEN DATA
+
+Ai = 2.3 * 10 ^ -3; // Cross-Sectional area of the core in Meter-Square
+mue_0 = 4*%pi*10^ -7; // Permeability of the air in Henry/Meter
+Fe_loss = 2.6; // Iron loss at the working Flux density Watts/kg
+Fe_den = 7.8 * 10 ^ 3; // Density of the Iron in kg/Meter-Cube
+N1 = 800; // Number of Turns of the Primary winding
+L = 2.5; // Length of the Flux path in Meter
+mue_r = 1000; // Relative Permeability
+E = 400; // Primary Volatge of the Transformer in Volts
+f = 50; // Frequency in Hertz
+
+
+// CALCULATIONS
+
+Bm = E/(4.44*f*Ai*800); // Flux Density in Weber/Meter-Square
+phi_m = (Bm*Ai)*10^3; // Maximum Flux in the core in milli-Weber
+F = (L*Bm)/(mue_r*mue_0); // Magnetizing MMF in Amphere-turns
+Im = F/(N1*sqrt(2)); // Magnetizing Current in Amphere
+Vol = L*Ai; // Volume of the Core in Meter-Cube
+W = Vol * Fe_den; // Weight of the Core in kg
+Total_Fe_loss = Fe_loss * W; // Total Iron loss in Watt
+Ic = Total_Fe_loss/E; // Loss component of Current in Amphere
+Io= sqrt((Ic ^ 2)+(Im ^ 2)); // No load Current in Amphere
+pf_angle = atand(Io/Ic); // No load Power factor angle in degree
+pf = cosd(pf_angle); // No load Power factor
+
+
+// DISPLAY RESULTS
+
+disp("EXAMPLE : 3.5 : SOLUTION :-") ;
+printf("\n (a) Maximum Flux in the core , phi_m = %.6f mWb \n ",phi_m);
+printf("\n (b) No load Current , I0 = %.3f A \n",Io);
+printf("\n (c) No load Power factor angle = %.3f degree \n ",pf_angle);
+printf("\n (d) No load Power factor = %.4f \n ",pf);
diff --git a/Working_Examples/2777/CH3/EX3.6/Ex3_6.sce b/Working_Examples/2777/CH3/EX3.6/Ex3_6.sce new file mode 100755 index 0000000..9b91c0c --- /dev/null +++ b/Working_Examples/2777/CH3/EX3.6/Ex3_6.sce @@ -0,0 +1,44 @@ +
+// ELECTRICAL MACHINES
+// R.K.Srivastava
+// First Impression 2011
+// CENGAGE LEARNING INDIA PVT. LTD
+
+// CHAPTER : 3 : TRANSFORMERS
+
+// EXAMPLE : 3.6
+
+clear ; clc ; close ; // Clear the work space and console
+
+
+// GIVEN DATA
+
+S = 5; // Transformer Rating in kVA
+V1 = 220; // HV side voltage in volts
+V2 = 110; // LV side voltage in Volts
+P = 4 * 10 ^ 2; // Load of the Transformer
+pf = 0.8; // Power Factor (lagging)
+f = 50; // Frequency in Hertz
+
+
+// CALCULATIONS
+
+a = V1/V2; // Turn Ratio of the Transformer
+
+// case (a) At full load
+I1 = (S * 10 ^ 3)/V1; // Primary current at full load in Amphere
+I2 = (S * 10 ^ 3)/V2; // Secondary Current at full Load in Amphere
+
+// Case (b) At 4kW, 0.8 lagging pf load
+I11 = (4 * 10 ^ 3 * 0.8)/V1; // Primary current At 4kW, 0.8 lagging pf load in Amphere
+I22 = (4 * 10 ^ 3 * 0.8)/V2; // Secondary Current At 4kW, 0.8 lagging pf load in Amphere
+
+
+// DISPLAY RESULTS
+
+disp("EXAMPLE : 3.6 : SOLUTION :-") ;
+printf("\n (a) Turn Ratio of the Transformer , a = %.f \n ",a);
+printf("\n (b.1.1) Primary current at full load , I1 = %.2f A \n",I1);
+printf("\n (b.1.2) Secondary current at full load , I2 = %.2f A \n ",I2);
+printf("\n (b.2.1) Primary current at 4kW, 0.8 lagging pf load , I1 = %.3f A \n",I11);
+printf("\n (b.2.1) Secondary current at 4kW, 0.8 lagging pf load , I2 = %.3f A \n",I22);
diff --git a/Working_Examples/2777/CH3/EX3.7/Ex3_7.sce b/Working_Examples/2777/CH3/EX3.7/Ex3_7.sce new file mode 100755 index 0000000..c61f784 --- /dev/null +++ b/Working_Examples/2777/CH3/EX3.7/Ex3_7.sce @@ -0,0 +1,30 @@ +
+// ELECTRICAL MACHINES
+// R.K.Srivastava
+// First Impression 2011
+// CENGAGE LEARNING INDIA PVT. LTD
+
+// CHAPTER : 3 : TRANSFORMERS
+
+// EXAMPLE : 3.7
+
+clear ; clc ; close ; // Clear the work space and console
+
+
+// GIVEN DATA
+
+a = 100/200; // Turn ratio of the Ideal transformer
+R = 1.0; // Resistance across the secondary side having 200 turns in Ohms
+
+
+// CALCULATIONS
+
+R1 = (a ^ 2)*R; // Referred value of the resistance from Primary side having 100 turns in Ohms
+
+
+// DISPLAY RESULTS
+
+disp("EXAMPLE : 3.7 : SOLUTION :-") ;
+printf("\n (a) Referred value of the %.f Ohm resistance from Primary side having 100 turns , R1 = %.2f ohms \n ",R,R1);
+printf("\n\n [ TEXT BOOK SOLUTION IS PRINTED WRONGLY ( I verified by manual calculation )]\n" );
+printf("\n WRONGLY PRINTED ANSWERS ARE :- (a) Referred value of the resistance from Primary side having 100 turns = 0.025 Ohms instead of %.2f Ohms \n ",R1);
diff --git a/Working_Examples/2777/CH3/EX3.8/Ex3_8.sce b/Working_Examples/2777/CH3/EX3.8/Ex3_8.sce new file mode 100755 index 0000000..9b41b90 --- /dev/null +++ b/Working_Examples/2777/CH3/EX3.8/Ex3_8.sce @@ -0,0 +1,38 @@ +
+// ELECTRICAL MACHINES
+// R.K.Srivastava
+// First Impression 2011
+// CENGAGE LEARNING INDIA PVT. LTD
+
+// CHAPTER : 3 : TRANSFORMERS
+
+// EXAMPLE : 3.8
+
+clear ; clc ; close ; // Clear the work space and console
+
+
+// GIVEN DATA
+
+S = 60; // Tranformer Rating in kVA
+V1 = 6600; // HV Side Voltage Rating of the Transformer in Volts
+V2 = 220; // LV Side Voltage Rating of the Transformer in Volts
+R1 = 7.8; // primary Resistances of the Transformer in Ohms
+R2 = 0.0085; // Secondary Resistances of the Transformer in Ohms
+
+
+// CALCULATIONS
+
+a = V1/V2; // Transformation Ratio
+Rp = R1+(a^2)*R2; // Resistance referred to Primary side in Ohms
+Rs = (R1/(a^2))+R2; // Resistance referred to Secondary side in Ohms
+Ip = (S*1000)/V1 // Current in Primary Side in Ampheres
+Cu_loss = Rp*(Ip^2); // Copper loss in Transformer in Watts
+
+
+// DISPLAY RESULTS
+
+disp("EXAMPLE : 3.8 : SOLUTION :-") ;
+printf("\n (a) Equlivalent Resistance as Referred to Primary Side, Rp = % .2f ohms \n",Rp)
+printf("\n (b) Equlivalent Resistance as Referred to Secondary Side, Rs = % .5f ohms \n",Rs)
+printf("\n (c) Total Copper Loss, Cu_loss = % .2f W \n",Cu_loss)
+
diff --git a/Working_Examples/2777/CH3/EX3.9/Ex3_9.sce b/Working_Examples/2777/CH3/EX3.9/Ex3_9.sce new file mode 100755 index 0000000..57edaa3 --- /dev/null +++ b/Working_Examples/2777/CH3/EX3.9/Ex3_9.sce @@ -0,0 +1,30 @@ +
+// ELECTRICAL MACHINES
+// R.K.Srivastava
+// First Impression 2011
+// CENGAGE LEARNING INDIA PVT. LTD
+
+// CHAPTER : 3 : TRANSFORMERS
+
+// EXAMPLE : 3.9
+
+clear ; clc ; close ; // Clear the work space and console
+
+
+// GIVEN DATA
+
+V1 = 11000; // HV Side Voltage Rating of the Transformer in Volts
+V2 = 440; // LV Side Voltage Rating of the Transformer in Volts
+R = 1.0; // Resistance across the secondary side having 11kV in Ohms
+
+
+// CALCULATIONS
+
+a = V1/V2; // Turns ratio of the ideal transformers
+R2 = (a ^ 2)*R; // Referred value of the resistance from Primary side having 440V in Ohms
+
+
+// DISPLAY RESULTS
+
+disp("EXAMPLE : 3.9 : SOLUTION :-") ;
+printf("\n (a) Referred value of the resistance from Primary side having 440V , R2 = %.f Ohms \n ",R2);
diff --git a/Working_Examples/2777/CH4/EX4.1/Ex4_1.sce b/Working_Examples/2777/CH4/EX4.1/Ex4_1.sce new file mode 100755 index 0000000..9972057 --- /dev/null +++ b/Working_Examples/2777/CH4/EX4.1/Ex4_1.sce @@ -0,0 +1,36 @@ +
+// ELECTRICAL MACHINES
+// R.K.Srivastava
+// First Impression 2011
+// CENGAGE LEARNING INDIA PVT. LTD
+
+// CHAPTER : 4 : DIRECT CURRENT MACHINES
+
+// EXAMPLE : 4.1
+
+clear ; clc ; close ; // Clear the work space and console
+
+
+// GIVEN DATA
+
+N = 600; // Speed of the driven Machine in RPM
+D = 2; // Diameter of the Machine in Meter
+L = 0.3; // Length of the Machine in Meter
+Bm = 1.0; // Flux Density in Weber per Meter-Square
+
+
+// CALCULATIONS
+
+n = N/60; // Revolution per second
+v = %pi * D * n; // Peripheral velocity in Meter per second
+E = Bm * v * L; // Maximum EMF induced in the Conducter in Volts
+
+
+// DISPLAY RESULTS
+
+disp("EXAMPLE : 4.1 : SOLUTION :-") ;
+printf("\n (a) Maximum EMF induced in the Conducter , E = %.3f V \n ",E);
+printf("\n\n [ TEXT BOOK SOLUTION IS PRINTED WRONGLY ( I verified by manual calculation )]\n" );
+printf("\n WRONGLY PRINTED ANSWERS ARE :- (a)Induced EMF, E = 2.826 V instead of %.3f A \n ",E);
+printf("\n From Calculation of the peripheral velocity(v), rest all the Calculated values in the TEXT BOOK is WRONG because of the peripheral velocity(v) value is WRONGLY calculated and the same used for the further Calculation part \n")
+
diff --git a/Working_Examples/2777/CH4/EX4.10/Ex4_10.sce b/Working_Examples/2777/CH4/EX4.10/Ex4_10.sce new file mode 100755 index 0000000..359b3c9 --- /dev/null +++ b/Working_Examples/2777/CH4/EX4.10/Ex4_10.sce @@ -0,0 +1,37 @@ +
+// ELECTRICAL MACHINES
+// R.K.Srivastava
+// First Impression 2011
+// CENGAGE LEARNING INDIA PVT. LTD
+
+// CHAPTER : 4 : DIRECT CURRENT MACHINES
+
+// EXAMPLE : 4.10
+
+clear ; clc ; close ; // Clear the work space and console
+
+
+// GIVEN DATA
+
+p = 6; // Number of the Poles
+P = 100 * 10 ^ 3; // Power rating of the DC machine in KiloWatts
+V = 440; // Voltage rating of the DC machine in Volts
+Z = 500; // Total number of the Armature Conductor
+Ig = 1.0 * 10 ^ -2; // Interpolar Air gap in Meter
+Bi = 0.28; // Interpolar Flux Densist in Weber per Meter-Square
+mue_0 = 4*%pi*10^ -7; // Permeability of the air in Henry/Meter
+
+
+// CALCULATIONS
+
+Ia = P/V; // Full load current in Amphere
+a = p; // Number of the Parallel path (Equal to p because LAP WINDING)
+ATi = (Z*Ia)/(2*a*p)+((Bi*Ig)/mue_0); // Amphere turns for each Interpole
+Nc = ATi/Ia; // Number of turns per pole of interpole
+
+
+// DISPLAY RESULTS
+
+disp("EXAMPLE : 4.10 : SOLUTION :-") ;
+printf("\n (a) Amphere turns for each Interpole, ATi = %.2f AT \n",ATi);
+printf("\n (b) Number of turns per pole of interpole, Nc = %.2f turns per pole nearly %.f turns per pole \n",Nc,Nc);
diff --git a/Working_Examples/2777/CH4/EX4.11/Ex4_11.sce b/Working_Examples/2777/CH4/EX4.11/Ex4_11.sce new file mode 100755 index 0000000..f3ca8cc --- /dev/null +++ b/Working_Examples/2777/CH4/EX4.11/Ex4_11.sce @@ -0,0 +1,35 @@ +
+// ELECTRICAL MACHINES
+// R.K.Srivastava
+// First Impression 2011
+// CENGAGE LEARNING INDIA PVT. LTD
+
+// CHAPTER : 4 : DIRECT CURRENT MACHINES
+
+// EXAMPLE : 4.11
+
+clear ; clc ; close ; // Clear the work space and console
+
+
+// GIVEN DATA
+
+printf("\n EXAMPLE : 4.11 : \n\n Given Data between the Field current and Open-Circuit EMF generated by DC shunt wound Generator \n");
+printf("\n If(A) 0 1 2 3 4 5 6 \n");
+printf("\n Voc(v) 10 90 170 217.5 251 272.5 281 \n");
+N = 1000; // Speed of an DC Shunt wound generator on open circuit in RPM
+Rf = 50; // Shunt field resistance in Ohms
+
+
+// CALCULATIONS
+// Refer Figure 4.20:- Page no. 180
+
+Vt = 277.17; // Terminal Voltage in Volts from Figure 4.20 (The slope of the Resistance line Rf cuts the OCC at this Voltage [point])
+Voc_r = 90; // Critical Open circuit voltage in Volts from Figure 4.20 page no. 180
+If_r = 1.0; // Critical Field current in Amphere from Figure 4.20 page no. 180
+Rc = Voc_r/If_r; // Crictical field Resistance in Ohms
+
+
+// DISPLAY RESULTS
+
+printf(" \n\n SOLUTION :-\n") ;
+printf("\n (a) Crictical field Resistance, Rc = %.f Ohms \n",Rc);
diff --git a/Working_Examples/2777/CH4/EX4.12/Ex4_12.sce b/Working_Examples/2777/CH4/EX4.12/Ex4_12.sce new file mode 100755 index 0000000..8618778 --- /dev/null +++ b/Working_Examples/2777/CH4/EX4.12/Ex4_12.sce @@ -0,0 +1,40 @@ +
+// ELECTRICAL MACHINES
+// R.K.Srivastava
+// First Impression 2011
+// CENGAGE LEARNING INDIA PVT. LTD
+
+// CHAPTER : 4 : DIRECT CURRENT MACHINES
+
+// EXAMPLE : 4.12
+
+clear ; clc ; close ; // Clear the work space and console
+
+
+// GIVEN DATA
+
+printf("\n EXAMPLE : 4.12 : \n\n Given Data between the Field current and Open-Circuit EMF generated by DC Machine \n");
+printf("\n If(A) 0 0.25 0.5 1.0 1.5 2.0 2.5 3.0 \n");
+printf("\n Voc(v) 8 43 77 151 198 229 253 269\n");
+N = 600; // Speed of an DC Shunt wound generator on open circuit in RPM
+Rf1 = 100; // Shunt field resistance in Ohms
+Rf2 = 125; // Shunt field resistance in Ohms
+
+
+// CALCULATIONS
+// Refer Figure 4.21:- Page no. 181
+
+Vt1 = 253.33; // Terminal Voltage in Volts correspounding to field resistance of 100 Ohms from Figure4.21 Page no. 181 (The slope of the Resistance line Rf cuts the OCC at this Voltage [point])
+Vt2 = 213.33; // Terminal Voltage in Volts correspounding to field resistance of 125 Ohms from Figure 4.21 Page no. 181 (The slope of the Resistance line Rf cuts the OCC at this Voltage [point])
+Voc_r = 151; // Critical Open circuit voltage in Volts from Figure 4.20
+If_r = 1.0; // Critical Field current in Amphere from Figure 4.20
+Rc = Voc_r/If_r; // Crictical field Resistance in Ohms
+
+
+// DISPLAY RESULTS
+
+printf(" \n\n SOLUTION :-\n") ;
+printf("\n (a) Crictical field Resistance, Rc = %.f Ohms \n",Rc);
+printf("\n (b.1) Terminal Voltage correspounding to field resistance of 100 Ohms is %.2f V \n ", Vt1);
+printf("\n (b.1) Terminal Voltage correspounding to field resistance of 125 Ohms is %.2f V \n ", Vt2);
+
diff --git a/Working_Examples/2777/CH4/EX4.13/Ex4_13.sce b/Working_Examples/2777/CH4/EX4.13/Ex4_13.sce new file mode 100755 index 0000000..477bad0 --- /dev/null +++ b/Working_Examples/2777/CH4/EX4.13/Ex4_13.sce @@ -0,0 +1,35 @@ +
+// ELECTRICAL MACHINES
+// R.K.Srivastava
+// First Impression 2011
+// CENGAGE LEARNING INDIA PVT. LTD
+
+// CHAPTER : 4 : DIRECT CURRENT MACHINES
+
+// EXAMPLE : 4.13
+
+clear ; clc ; close ; // Clear the work space and console
+
+
+// GIVEN DATA
+
+N1 = 1200; // Rotation speed of the Separately excited Generator in RPM at case (1)
+Ia1 = 100; // Current supplied by the Generator in Amphere
+V1 = 220; // Opearting Volatge of the Generator in Volts
+Ra = 0.08; // Armature Resistance in Ohms
+N2 = 1000; // Rotation speed of the Separately excited Generator in RPM at case (2)
+Vb = 2.0; // Total Brush drop in Volts
+
+
+// CALCULATIONS
+
+RL = V1/Ia1; // Load resistance in Ohms
+E1 = V1 + Vb + (Ra * Ia1); // Back EMF at case (1) in Volts
+E2 = (N2/N1)*E1; // Back EMF at case (2) in Volts (Excitation is Constant)
+Ia2 = (E2 - Vb)/(RL + Ra); // New load current in Amphere for case (2)
+
+
+// DISPLAY RESULTS
+
+disp("EXAMPLE : 4.13 : SOLUTION :-") ;
+printf("\n (a) New load current at %.f RPM , Ia2 = %.2f A \n",N2,Ia2);
diff --git a/Working_Examples/2777/CH4/EX4.14/Ex4_14.sce b/Working_Examples/2777/CH4/EX4.14/Ex4_14.sce new file mode 100755 index 0000000..72fe191 --- /dev/null +++ b/Working_Examples/2777/CH4/EX4.14/Ex4_14.sce @@ -0,0 +1,38 @@ +
+// ELECTRICAL MACHINES
+// R.K.Srivastava
+// First Impression 2011
+// CENGAGE LEARNING INDIA PVT. LTD
+
+// CHAPTER : 4 : DIRECT CURRENT MACHINES
+
+// EXAMPLE : 4.14
+
+clear ; clc ; close ; // Clear the work space and console
+
+
+// GIVEN DATA
+
+I = 50; // Curent supplied by the Separately Excitated Generator in Amphere
+V = 250; // Dc bus bar in Volts
+phi_1 = 0.03; // Useful Flux in Weber
+Ra = 0.5; // Armature Resistance in Ohms
+phi_2 = 0.029; // New(Changed) Flux in Weber
+
+
+// CALCULATIONS
+
+Vd = I * Ra; // Voltage drop in the Armature in Volts
+E1 = V + Vd; // EMF Generated in Volts
+E2 = (phi_2/phi_1)*E1; // EMF Generated in Volts immediately after flux changes but speed will remains same
+Ia = (E2 - V)/Ra; // Armature Current in Amphere immediately after flux changes
+perct = 100 * (( phi_1 - phi_2)/phi_2); // Percenatge change in the speed of the machine that is required to restore the original Armature current but EMF raised to the original value and its Proportional to the speed and flux
+
+
+// DISPLAY RESULTS
+
+disp("EXAMPLE : 4.14 : SOLUTION :-") ;
+printf("\n (a) Armature Current immediately after flux changes, Ia = %.1f A \n",Ia);
+printf("\n (b) Percenatge change in the speed of the machine (that is required to restore the original Armature current) is %.2f Percenatge \n",perct);
+
+
diff --git a/Working_Examples/2777/CH4/EX4.15/Ex4_15.sce b/Working_Examples/2777/CH4/EX4.15/Ex4_15.sce new file mode 100755 index 0000000..69a032f --- /dev/null +++ b/Working_Examples/2777/CH4/EX4.15/Ex4_15.sce @@ -0,0 +1,67 @@ +
+// ELECTRICAL MACHINES
+// R.K.Srivastava
+// First Impression 2011
+// CENGAGE LEARNING INDIA PVT. LTD
+
+// CHAPTER : 4 : DIRECT CURRENT MACHINES
+
+// EXAMPLE : 4.15
+
+clear ; clc ; close ; // Clear the work space and console
+
+
+// GIVEN DATA
+
+S = 500 * 10 ^ 3; // Rating of the Generator-1 and Generator-2
+VI = 800 * 10 ^ 3' // Actual load
+
+
+// CALCULATIONS
+//For Case (a)
+
+Voc_a = 500; // Open-circuit EMF Generator-1 and Generator-2 in Volts
+I = 1000; // Full load current in Amphere
+perct_1a = 2/100; // Percenatge fall of the Voltage in Generator-1
+perct_2a = 3/100; // Percenatge fall of the Voltage in Generator-2
+V1a = Voc_a - (perct_1a * Voc_a); // Voltage in the Generator-1 in Volts when it falls to 2% at fully loaded
+V2a = Voc_a - (perct_2a * Voc_a); // Voltage in the Generator-2 in Volts when it falls to 3% at fully loaded
+// From Chacteristics can be assumed linear as, for Generator 1 is V = 500 + ((500-490)*I1)/(0-1000), V = -0.01*I1+500 and for Generator 2 is V = 500 + ((500-485)*I2)/(0-1000), V = 0.015*I2+500
+// When sharing load of 800KVA at voltage, the load current will be I = I1+I2 = (800*1000)/V
+// From above equations we get I1 = 1.5*I2 thus, 2.5*I2 = (800*1000)/V
+// Putting the above equations in the Generator 2 equation we get V = -0.015*((800*1000)/(2.5*V))+500 solving we get, 25*V^2 - 12500V + 120000 = 0
+V_a = poly ([120000 -12500 25],'x','coeff'); // Expression for the load Voltage in Quadratic form
+r_a = roots (V_a); // Value of the load Voltage in Volts (neglecting lower value)
+I_a = VI/r_a(1,1);
+I2_a = I_a/2.5;
+I1_a = 1.5*I2_a;
+
+// For Case (b)
+
+perct = 2/100; // Percenatge fall of the Voltage in Generator-1and Generator-2
+Voc_1b = 500; // Open-circuit EMF Generator-1 in Volts
+Voc_2b = 505; // Open-circuit EMF Generator-2 in Volts
+I = 1000; // Full load current in Amphere
+V1 = Voc_1b - (perct * Voc_1b); // Voltage in the Generator-1 in Volts when it falls to 2% at fully loaded
+V2 = Voc_2b - (perct * Voc_2b); // Voltage in the Generator-2 in Volts when it falls to 2% at fully loaded
+// From Chacteristics can be assumed linear as, for Generator 1 is V = 500 + ((500-490)*I1)/(0-1000), V = -0.01*I1+500 and for Generator 2 is V = 505 + ((505-494.5)*I2)/(0-1000), V = -0.0101*I2+505
+// When sharing load of 800KVA at voltage, the load current will be I = I1+I2 = (800*1000)/V
+// From above equations we get V = -0.01*I1 + 500, I1 = -V/0.01 + 500/0.01 = 50000 - 100*V, V = -0.0101*I2 + 505 and I2 = 505/0.0101 - V/.0101 = 50000-99.0099*V
+// Putting the above equations in the Current I equation we get I = I1+I2 = (800*1000)/V = 2*50000-199.0099*V solving we get, 199.0099*V^2 - 100000V + 800000 = 0
+V_b = poly ([800000 -100000 199.0099],'x','coeff'); // Expression for the load Voltage in Quadratic form
+r_b = roots (V_b); // Value of the load Voltage in Volts (neglecting lower value)
+I_b = VI/r_b(1,1);
+I1_b = 50000-100*r_b(1,1)
+I2_b = 50000-99.0099*r_b(1,1)
+
+
+// DISPLAY RESULTS
+
+disp("EXAMPLE : 4.15: SOLUTION :-");
+printf("\n For case (a) Having open-circuit EMfs of 500V but their voltage falls to 2 percent and 3 percent when fully loaded Load Voltage,\n\n Load Voltage = %.2f V \n\n Load current = %.2f A \n\n Individual currents are %.2f A and %.2f A \n",r_a(1,1),I_a,I1_a,I2_a)
+printf("\n For case (b) Having open-circuit EMfs of 500V and 505V but their governors have identical speed regulation of 2 percent when fully loaded Load Voltage,\n\n Load Voltage = %.2f V \n\n Load current = %.2f A \n\n Individual currents are %.2f A and %.2f A \n",r_b(1,1),I_b,I1_b,I2_b)
+printf("\n\n [ TEXT BOOK SOLUTION IS PRINTED WRONGLY ( I verified by manual calculation )]\n" );
+printf("\n WRONGLY PRINTED ANSWERS ARE :- For case(b) Load voltage = 493.35 V A instead of %.2f V \n ",r_b(1,1));
+printf("\n Load current = 1634.73 A instead of %.2f A \n ",I_b)
+printf("\n Individual currents 665 A and 1153.5 A instead of %.2f A and %.2f \n ",I1_b,I2_b)
+printf("\n For Case (b):- From Calculation of the Load Voltage (V), rest of all the Calculated values in the TEXT BOOK is WRONG because of the value Load Voltage (V) is WRONGLY calculated and the same used for the further Calculation part \n")
diff --git a/Working_Examples/2777/CH4/EX4.16/Ex4_16.sce b/Working_Examples/2777/CH4/EX4.16/Ex4_16.sce new file mode 100755 index 0000000..04e11d4 --- /dev/null +++ b/Working_Examples/2777/CH4/EX4.16/Ex4_16.sce @@ -0,0 +1,50 @@ +
+// ELECTRICAL MACHINES
+// R.K.Srivastava
+// First Impression 2011
+// CENGAGE LEARNING INDIA PVT. LTD
+
+// CHAPTER : 4 : DIRECT CURRENT MACHINES
+
+// EXAMPLE : 4.16
+
+clear ; clc ; close ; // Clear the work space and console
+
+
+// GIVEN DATA
+
+Out_hp = 20; // Output of the Motor in HP
+eta = 90/100; // Full load efficiency of the Motor
+V = 220; // Motor voltage in Volts
+ns = 5; // Number of the step of Starter
+Rf = 220; // Field Resistance in Ohms
+cr = 1.8; // Lowest Current rating is 1.8 times of the Full load current
+Cu = 5/100; // Total Copper loss is 5% of the Input
+
+
+// CALCULATIONS
+
+Out = 20 * 746; .. // Output of the Motor in Watt
+Inp = (Out/eta); // Input of the Motor in KiloWatt
+I = Inp/Rf; // Full-Load Current in Amphere
+Cu_l = Inp*Cu; // Total Copper loss in Watts
+olf = (V ^ 2)/Rf; // Ohmic loss in the Fiels in the Watts
+Acu = Cu_l - olf; // Armature Copper loss in Watts
+Ra = Acu/(I * I); // Armature Resistance in Ohms
+I2 = I * cr; // Lower Current in Amphere
+n = ns - 1; // Number of the Resistance
+gama = ( (I2 * Ra)/Rf ) ^ (1/(n + 1)); // Current Ratio
+I1 = I2/gama; // Initial Current in amphere
+R1 = V/I1; // Initial Resistance in Ohms
+R2 = gama * R1; // Initial Resistance in Ohms
+r1 = R1 - R2; // Graded Resistance in Ohms
+R3 = gama * R2; // Initial Resistance in Ohms
+r2 = gama * r1; // Graded Resistance in Ohms
+r3 = gama ^ 2 * r1; // Graded Resistance in Ohms
+r4 = gama ^ 3 * r1; // Graded Resistance in Ohms
+
+
+// DISPLAY RESULTS
+
+disp("EXAMPLE : 4.16 : SOLUTION :-") ;
+printf("\n (a) Graded Resistances are %.4f Ohms, %.4f Ohms, %.4f Ohms and %.4f Ohms \n",r1,r2,r3,r4);
diff --git a/Working_Examples/2777/CH4/EX4.17/Ex4_17.sce b/Working_Examples/2777/CH4/EX4.17/Ex4_17.sce new file mode 100755 index 0000000..14005fd --- /dev/null +++ b/Working_Examples/2777/CH4/EX4.17/Ex4_17.sce @@ -0,0 +1,38 @@ +
+// ELECTRICAL MACHINES
+// R.K.Srivastava
+// First Impression 2011
+// CENGAGE LEARNING INDIA PVT. LTD
+
+// CHAPTER : 4 : DIRECT CURRENT MACHINES
+
+// EXAMPLE : 4.17
+
+clear ; clc ; close ; // Clear the work space and console
+
+
+// GIVEN DATA
+
+I = 30; // Initial starting Current in Amphere
+ns = 5; // Number of Steps of the starter
+V = 500; // Operating Voltage of the DC Shunt Motor in Volts
+I1 = 50; // Peak(Upper) Current limit in Amphere
+Ra = 1.0; // Armature Circuit resistance in Ohms
+
+
+// CALCULATIONS
+
+R1 = V / I; // Initial Resistance in Ohms
+gama = ( Ra/R1) ^ (1/(ns-1)); // Current Ratio
+I2 = gama * I1; // Lower Current limit in Amphere
+r1 = R1 * (1-gama); // Graded Resistances in Ohms
+r2 = gama * r1; // Graded Resistances in Ohms
+r3 = gama * r2; // Graded Resistances in Ohms
+r4 = gama * r3; // Graded Resistances in Ohms
+
+
+// DISPLAY RESULTS
+
+disp("EXAMPLE : 4.17 : SOLUTION :-") ;
+printf("\n (a)Graded Resistances are %.2f Ohms, %.4f Ohms, %.4f Ohms and %.4f Ohms \n",r1,r2,r3,r4);
+
diff --git a/Working_Examples/2777/CH4/EX4.18/Ex4_18.sce b/Working_Examples/2777/CH4/EX4.18/Ex4_18.sce new file mode 100755 index 0000000..6168cde --- /dev/null +++ b/Working_Examples/2777/CH4/EX4.18/Ex4_18.sce @@ -0,0 +1,41 @@ +
+// ELECTRICAL MACHINES
+// R.K.Srivastava
+// First Impression 2011
+// CENGAGE LEARNING INDIA PVT. LTD
+
+// CHAPTER : 4 : DIRECT CURRENT MACHINES
+
+// EXAMPLE : 4.18
+
+clear ; clc ; close ; // Clear the work space and console
+
+
+// GIVEN DATA
+
+V = 500; // Operating voltage of the DC series motor in Volts
+P_hp = 10; // Operating Power in HP
+Il = 40; // Lower currents limit in Amphere
+Ih = 60; // Higher currents limit in Amphere
+f = 0.5/100; // Motor flux rises by 0.5% per amphere
+Rt = 0.8; // Motor terminal resistance in Ohms
+eta = 90/100; // Motor efficiency
+
+// CALCULATIONS
+
+E1 = V-Il*Rt; // Induced EMF E1 in Volts
+// Induced EMF, E2 = 500-60(0.8+r4) = 500 - 60*R4 where r4 is the fourth-step resistance, and R4 = 0.8+r4 and E1 = 1.1*E2 , 500 - 40*0.8 = 1.1*(500-60(0.8+r4)), 500-32 = 550-66*R4 thus we get, R4 = (550-500+32)/66 refer page no. 197
+R4 = (V-(E1/1.1))/Ih;
+r4 = R4 - Rt; // Fourth-step resistance in ohms
+R3 = (V-((V-Il*R4)/1.1))/Ih;
+r3 = R3 - R4; // Third-step resistance in ohms
+R2 = (V-((V-Il*R3)/1.1))/Ih;
+r2 = R2 - R3; // Second-step resistance in ohms
+R1 = (V-((V-Il*R2)/1.1))/Ih;
+r1 = R1 - R2; // First-step resistance in ohms
+
+
+// DISPLAY RESULTS
+
+disp("EXAMPLE : 4.18: SOLUTION :-");
+printf("\n (a) The resistance steps in series motor stater are %.3f Ohms,%.4f Ohms, %.3f Ohms and %.2f Ohms \n",r1,r2,r3,r4)
diff --git a/Working_Examples/2777/CH4/EX4.19/Ex4_19.sce b/Working_Examples/2777/CH4/EX4.19/Ex4_19.sce new file mode 100755 index 0000000..79960a5 --- /dev/null +++ b/Working_Examples/2777/CH4/EX4.19/Ex4_19.sce @@ -0,0 +1,52 @@ +
+// ELECTRICAL MACHINES
+// R.K.Srivastava
+// First Impression 2011
+// CENGAGE LEARNING INDIA PVT. LTD
+
+// CHAPTER : 4 : DIRECT CURRENT MACHINES
+
+// EXAMPLE : 4.19
+
+clear ; clc ; close ; // Clear the work space and console
+
+
+// GIVEN DATA
+
+Vac = 250; // Operating AC Voltage in Volts
+V = 220; // Operating Voltage of the separately excited DC motor in Volts
+fa = 30; // Firing Angle in Degree
+Out_hp = 20; // DC Motor Output in HP
+La = 20 * 10 ^ -3; // Armature Inducatnce in Henry
+Ra = 0.15; // Armature Resistance in Ohms
+E_cons = 0.2; // EMF Constant in Volts/RPM
+eta = 90/100; // Motor Operating Efficiency
+N = 1000; // Rotational Speed of the Motor in RPM
+
+
+// CALCULATIONS
+
+out = 20 * 746; // DC Motor Output in Watt
+Vt = ((Vac*2*sqrt(2))/%pi)*cosd(fa); // Average Terminal volatge in Volts
+Ia = out/(V*eta); // Rated Current in Amphere
+E = Vt - ( Ia * Ra ); // Back EMF in Volts
+n = E/E_cons; // Speed of the Motor in RPM
+e_cons = (E_cons*60)/ ( 2 * %pi); // EMF Constant in Volts-Second per radians
+T = e_cons * Ia; // Devolped Torque in Newton-Meter
+pi = (E*Ia)+(Ia^2*Ra); // Power intake in Watts
+pi_v = Vt * Ia; // Power intake in Watts (Verification)
+
+
+// DISPLAY RESULTS
+
+disp("EXAMPLE : 4.19 : SOLUTION :-") ;
+printf("\n (a) Speed of the Motor, N = %.2f RPM \n",n);
+printf("\n (b) Devolped Torque, T = %.2f N-m \n",T);
+printf("\n (b) Power intake at Rated current and Firing angle of %.f deg, VI = %.1f W \n",fa,pi);
+printf("\n\n [ TEXT BOOK SOLUTION IS PRINTED WRONGLY ( I verified by manual calculation )]\n" );
+printf("\n WRONGLY PRINTED ANSWERS IS :- (a) T = 114.07 N-m instead of 143.91 N-m \n" );
+
+
+
+
+
diff --git a/Working_Examples/2777/CH4/EX4.2/Ex4_2.sce b/Working_Examples/2777/CH4/EX4.2/Ex4_2.sce new file mode 100755 index 0000000..4b36006 --- /dev/null +++ b/Working_Examples/2777/CH4/EX4.2/Ex4_2.sce @@ -0,0 +1,33 @@ +
+// ELECTRICAL MACHINES
+// R.K.Srivastava
+// First Impression 2011
+// CENGAGE LEARNING INDIA PVT. LTD
+
+// CHAPTER : 4 : DIRECT CURRENT MACHINES
+
+// EXAMPLE : 4.2
+
+clear ; clc ; close ; // Clear the work space and console
+
+
+// GIVEN DATA
+
+p = 8; // Number of the poles in Dc machine
+a = 8; // Number of the Parallel path
+N = 500; // Rotation per minute in RPM
+phi = 0.095; // Average flux in air gap in Weber per meter
+Za = 1000; // Total number of the Conductor in Armature
+
+
+// CALCUALTIONS
+
+n = N/60; // Rotation (Revolution) per Second
+E = (p/a)*n*phi*Za; // EMF induced in Volts
+
+
+// DISPLAY RESULTS
+
+disp("EXAMPLE : 4.2 : SOLUTION :-") ;
+printf("\n (a) EMF induced , E = %.1f A \n ",E);
+
diff --git a/Working_Examples/2777/CH4/EX4.20/Ex4_20.sce b/Working_Examples/2777/CH4/EX4.20/Ex4_20.sce new file mode 100755 index 0000000..c5d4dc9 --- /dev/null +++ b/Working_Examples/2777/CH4/EX4.20/Ex4_20.sce @@ -0,0 +1,59 @@ +
+// ELECTRICAL MACHINES
+// R.K.Srivastava
+// First Impression 2011
+// CENGAGE LEARNING INDIA PVT. LTD
+
+// CHAPTER : 4 : DIRECT CURRENT MACHINES
+
+// EXAMPLE : 4.20
+
+clear ; clc ; close ; // Clear the work space and console
+
+
+// GIVEN DATA
+
+N = 1500; // Speed of the separately excited DC Motor in RPM
+Out_hp = 100; // Output of the DC Motor in HP
+V = 500; // Motor operating Volatge in Volts
+VL = 440; // 3-phase Line-line Voltage in Volts
+f = 50; // Frequency in Hertz
+Ra = 0.0835; // Armature Resistance in Ohms
+La = 5.7 * 10 ^ -3; // Armature Inductance in Henry
+eta = 89/100; // Operating Efficiency of the Motor
+E_cons = 0.35; // EMF constant in Volts per RPM
+
+
+// CALCULATIONS
+// For case (a)
+
+Out = Out_hp * 746; // Output of the DC Motor in Watts
+Ia = Out/(V*eta); // Rated Current in Amphere
+Vph = VL/sqrt(3); // Phase Voltage in Volts
+a = (3*Vph*sqrt(6)) / %pi; // Constant
+E = N * E_cons; // Back EMF at Rated speed
+V = E + (Ia * Ra); // Terminal Volatge in Volts
+alpa = acosd(V/a); // Firing Angle
+
+// For case (b)
+// Assumed that No load current is about 12% of full load current
+
+Io = ( 0.12 * Ia ); // No load current in Amphere
+V_b1 = a * cosd(0); // Terminal Voltage at Firing Angle 0 deg
+E_b1 = V_b1 + (Io * Ra); // Back EMF at Firing Angle 0 deg
+N_b1 = E_b1/E_cons; // No load speed at Firing Angle 0 deg
+V_b2 = a * cosd(30); // Terminal Voltage at Firing Angle 30 deg
+E_b2 = V_b2 + (Io * Ra); // Back EMF at Firing Angle 30 deg
+N_b2 = E_b2/E_cons; // No load speed at Firing Angle 30 deg
+
+
+// DISPLAY RESULTS
+
+disp("EXAMPLE : 4.20 : SOLUTION :-") ;
+printf("\n (a) Firing Angle at Rated speed and Rated Motor Current , alpa = %.2f deg \n",alpa);
+printf("\n (b.1) No load speed at Firing Angle 0 deg, N = %.1f RPM \n",N_b1);
+printf("\n (b.2) No load speed at Firing Angle 30 deg, N = %.1f RPM \n",N_b2);
+
+
+
+
diff --git a/Working_Examples/2777/CH4/EX4.21/Ex4_21.sce b/Working_Examples/2777/CH4/EX4.21/Ex4_21.sce new file mode 100755 index 0000000..09b149d --- /dev/null +++ b/Working_Examples/2777/CH4/EX4.21/Ex4_21.sce @@ -0,0 +1,37 @@ +
+// ELECTRICAL MACHINES
+// R.K.Srivastava
+// First Impression 2011
+// CENGAGE LEARNING INDIA PVT. LTD
+
+// CHAPTER : 4 : DIRECT CURRENT MACHINES
+
+// EXAMPLE : 4.21
+
+clear ; clc ; close ; // Clear the work space and console
+
+
+// GIVEN DATA
+// Given that Back EMF is Zero Because Motor is at Standstill
+
+V = 250; // DC supply Voltage to separately excited DC Motor in Volts
+Ra = 1.0; // Armature Resistance in Ohms
+La = 30 * 10 ^ -3; // Armature Inductance in Henry
+E_cons = 0.19; // Motor (EMF) Constant in Volts per RPM
+Ia = 25; // Average Armature Current in Amphere
+
+
+// CALCULATIONS
+
+V1 = Ia * Ra; // Minimum Terminal Volatge in Volts
+alpa_mini = Ia/V; // Minimum Duty Cycle
+alpa_max = 1.0; // Maximum Duty Cycle
+V2 = V; // Maximum Terminal Volatge in Volts when Duty cycle (alpa) is 1.0
+E2 = V2 - (V1 * alpa_max); // Back EMF at Maximum Duty cycle ( i.e alpa = 1.0) in Volts
+N = E2/E_cons; // Speed of the Motor
+
+
+// DISPLAY RESULTS
+
+disp("EXAMPLE : 4.21 : SOLUTION :-") ;
+printf("\n (a) Range of the Speed is from 0 RPM to %.2f RPM and Range of the Duty Cycle is %.1f to %.1f \n",N,alpa_mini,alpa_max);
diff --git a/Working_Examples/2777/CH4/EX4.22/Ex4_22.sce b/Working_Examples/2777/CH4/EX4.22/Ex4_22.sce new file mode 100755 index 0000000..2fa4afc --- /dev/null +++ b/Working_Examples/2777/CH4/EX4.22/Ex4_22.sce @@ -0,0 +1,40 @@ +
+// ELECTRICAL MACHINES
+// R.K.Srivastava
+// First Impression 2011
+// CENGAGE LEARNING INDIA PVT. LTD
+
+// CHAPTER : 4 : DIRECT CURRENT MACHINES
+
+// EXAMPLE : 4.22
+
+clear ; clc ; close ; // Clear the work space and console
+
+
+// GIVEN DATA
+
+N1 = 1000; // Speed of the DC shunt Motor in RPM
+Out_hp = 20; // Output of the DC shunt Motor in HP
+V = 220; // Motor operating Volatge in Volts
+Ra = 0.9; // Armature Resistance in Ohms
+Rf = 200; // Field Resistance in Ohms
+eta = 89/100; // Operating Efficiency of the Motor
+Ra_a = 0.2; // Resistance inserted to the armature circuit
+
+
+// CALCULATIONS
+
+out = Out_hp * 746; // Output of the DC Motor in watts
+I = out/(V * eta); // Rated current in Amphere
+If = V/Rf; // Field current in Amphere
+Ia1 = I - If; // Armature current in Amphere
+E1 = V - (Ia1 * Ra); // Back EMF in Volts
+// Assuming that Torque and Armature current is constant
+E2 = V - ( Ra + Ra_a ) * Ia1; // New Back EMF in Volts
+N2 = N1*(E2/E1); // New speed in RPM
+
+
+// DISPLAY RESULTS
+
+disp("EXAMPLE : 4.22: SOLUTION :-") ;
+printf("\n (a) New Speed of the Motor , N2 = %.2f RPM \n",N2);
diff --git a/Working_Examples/2777/CH4/EX4.23/Ex4_23.sce b/Working_Examples/2777/CH4/EX4.23/Ex4_23.sce new file mode 100755 index 0000000..9157d1c --- /dev/null +++ b/Working_Examples/2777/CH4/EX4.23/Ex4_23.sce @@ -0,0 +1,43 @@ +
+// ELECTRICAL MACHINES
+// R.K.Srivastava
+// First Impression 2011
+// CENGAGE LEARNING INDIA PVT. LTD
+
+// CHAPTER : 4 : DIRECT CURRENT MACHINES
+
+// EXAMPLE : 4.23
+
+clear ; clc ; close ; // Clear the work space and console
+
+
+// GIVEN DATA
+
+N1 = 600; // Speed of the DC shunt Motor in RPM
+Out_hp = 10; // Output of the DC shunt Motor in HP
+V = 220; // Motor operating Volatge in Volts
+Ra = 1.5; // Armature Resistance in Ohms
+Rf = 250; // Field Resistance in Ohms
+eta = 88/100; // Operating Efficiency of the Motor
+Rf_a = 50; // Resistance inserted to the field circuit
+
+
+// CALCULATIONS
+
+out = Out_hp * 746 // Output of the DC Motor in watts
+I = out/(V * eta); // Rated current in Amphere
+If1 = V/Rf; // Field current in Amphere
+Ia1 = I - If1; // Aramature current in Amphere
+E1 = V - Ra*Ia1; // Back EMF in Volts
+If2 = V/(Rf+Rf_a); // New Field current in Amphere after 50 Ohms Resistance inserted to the field circuit
+
+// Refer page no. 217 we have T1 = K*If1*Ia1 proportional to 1/W1^2 and T1 = K*If2*Ia2 proportional to 1/W2^2 thus T1/T2 = (If1*Ia1)/(If2*Ia2) = (W2^2)/(W1^2) = (N2^2)/(N1^2), Ia2 = (If1*Ia1*W1^2)/(If1*W1^2) = (0.88*37.65*N2^2)/(0.733*600*600)
+// Now New EMF E2 is E2 = V - Ia2*Ra, E1/E2 = (k*If1*N1)/(k*If2*N2), E2 = (0.733*N2)/(0.88*600) = 220 - (0.88*37.65*1.5*N2^2)/(0.733*600*600) Thus we have 0.001388*N2^2 = 220 - 1.833*10^-4*N2
+N2 = poly ([-220 0.001388 1.833*10^-4],'x','coeff'); // Expression for the new speed of the motor in Quadratic form
+r = roots (N2); // Value of the New speed of the motor in RPM
+
+
+// DISPLAY RESULTS
+
+disp("EXAMPLE : 4.23 : SOLUTION :-") ;
+printf("\n (a) New speed of the motor, N2 = %.2f RPM nearly %.f RPM \n",r(2,1),r(2,1));
diff --git a/Working_Examples/2777/CH4/EX4.24/Ex4_24.sce b/Working_Examples/2777/CH4/EX4.24/Ex4_24.sce new file mode 100755 index 0000000..ff41d23 --- /dev/null +++ b/Working_Examples/2777/CH4/EX4.24/Ex4_24.sce @@ -0,0 +1,37 @@ +// ELECTRICAL MACHINES
+// R.K.Srivastava
+// First Impression 2011
+// CENGAGE LEARNING INDIA PVT. LTD
+
+// CHAPTER : 4 : DIRECT CURRENT MACHINES
+
+// EXAMPLE : 4.24
+
+clear ; clc ; close ; // Clear the work space and console
+
+
+// GIVEN DATA
+
+N1 = 1000; // Speed of the DC shunt Motor in RPM
+Out_hp = 10; // Output of the DC shunt Motor in HP
+V = 220; // Motor operating Volatge in Volts
+Ra = 0.5; // Armature Resistance in Ohms
+Rf = 100; // Field Resistance in Ohms
+eta = 90/100; // Operating Efficiency of the Motor
+
+
+// CALCULATIONS
+
+out = Out_hp * 746; // Output of the DC Motor in watts
+I = out/(V * eta); // Rated current in Amphere
+If = V/Rf; // Field current in Amphere
+Ia = I-If; // Armature current in Amphere
+E = V - (Ia*Ra); // Back EMF of the Motor in Volts
+Rd = E/I; // Resistance at Dynamic Braking in Ohms
+Rc = (V+E)/I; // Resistance at Counter Current Braking in Ohms
+
+// DISPLAY RESULTS
+
+disp("EXAMPLE : 4.24 : SOLUTION :-") ;
+printf("\n (a) Resistance at Dynamic Braking, Rd = %.2f Ohms \n",Rd);
+printf("\n (b) Resistance at Counter Current Braking, Rc = %.1f Ohms \n",Rc);
diff --git a/Working_Examples/2777/CH4/EX4.25/Ex4_25.sce b/Working_Examples/2777/CH4/EX4.25/Ex4_25.sce new file mode 100755 index 0000000..00b4846 --- /dev/null +++ b/Working_Examples/2777/CH4/EX4.25/Ex4_25.sce @@ -0,0 +1,44 @@ +
+// ELECTRICAL MACHINES
+// R.K.Srivastava
+// First Impression 2011
+// CENGAGE LEARNING INDIA PVT. LTD
+
+// CHAPTER : 4 : DIRECT CURRENT MACHINES
+
+// EXAMPLE : 4.25
+
+clear ; clc ; close ; // Clear the work space and console
+
+
+// GIVEN DATA
+
+V = 220; // Motor operating Volatge in Volts
+Ra = 1.0; // Armature Resistance in Ohms
+Rf = 220; // Field Resistance in Ohms
+Ia1 = 20; // Armature Current in Amphere
+N1 = 800; // Motor drving speed in RPM
+N2 = 1000; // To be obtained speed in RPM
+
+
+// CALCULATIONS
+
+If = V/Rf; // Field Current in Amphere
+E1 = V - ( Ia1 - If ) * Ra; // Back EMF E1 at N1 Speed in Volts
+// Now we have Back EMF E2 at N2 Speed, E2 = 220-Ia2*1.0 = 220-Ia2 and the field flux be proportional to the field current, since torque is constant we get, If2*Ia2 = If1*Ia1 = 20
+// Thus (220-Ia2)/201 = (If2*N2)/(If1*N1) = If2*(1000/(800*1.0)), 220-Ia2 = 201*(10/8)*(20/Ia2) = 5000/Ia2 solving this we get Ia2^2 - 220Ia2 + 2000 = 0
+Ia2 = poly ([5000 -220 1],'x','coeff'); // Expression for the new Armature current in Quadratic form
+r = roots (Ia2); // Value of the New Armature current in Amphere
+If2 = If*(Ia1/r(2,1)); // New field current in Amphere when New Armature current is 39.29A
+Rfn = V/If2; // New field resistance in ohms
+ERf = Rfn - Rf; // Extra resistance in Ohms
+
+
+// DISPLAY RESULTS
+
+disp("EXAMPLE : 4.25 : SOLUTION :-") ;
+printf("\n (a) Extra resistance should be added in the field circuit for raising the speed to %.f RPM is = %.2f Ohms \n",N2,ERf);
+printf("\n\n [ TEXT BOOK SOLUTION IS PRINTED WRONGLY ( I verified by manual calculation )]\n" );
+printf("\n WRONGLY PRINTED ANSWERS ARE :- (a) Ia2 = 39.29 A and 180.71 A instead of %.2f A and %.2f A \n ",r(1,1),r(2,1));
+printf("\n (b) Extra resistance required is 212.22 Ohms instead of %.2f Ohms \n ",ERf);
+printf("\n From Calculation of the New armature current (Ia2), rest all the Calculated values in the TEXT BOOK is WRONG because of the New armature current (Ia2) value is WRONGLY calculated and the same used for the further Calculation part \n")
diff --git a/Working_Examples/2777/CH4/EX4.26/Ex4_26.sce b/Working_Examples/2777/CH4/EX4.26/Ex4_26.sce new file mode 100755 index 0000000..4d284bc --- /dev/null +++ b/Working_Examples/2777/CH4/EX4.26/Ex4_26.sce @@ -0,0 +1,47 @@ +
+// ELECTRICAL MACHINES
+// R.K.Srivastava
+// First Impression 2011
+// CENGAGE LEARNING INDIA PVT. LTD
+
+// CHAPTER : 4 : DIRECT CURRENT MACHINES
+
+// EXAMPLE : 4.26
+
+clear ; clc ; close ; // Clear the work space and console
+
+
+// GIVEN DATA
+
+R = 2.0; // DC series Motor Resistance between the terminals in Ohms
+V1 = 220; // Motor Operating voltage in Volts
+N1 = 500; // Rotation Sped of the DC series Motor in RPM
+I1 = 22; // Current in Motor in Amphere
+N2 = 600; // New Rotation Sped of the DC series Motor in RPM
+
+
+// CALCULATIONS
+// For case (a) when magnetic circuit is Unsaturated
+
+E1 = V1 - (I1 * R); // Back EmF at N1 Speed in Volts
+I2_a = (N2/N1)*I1; // Current in Motor at N2 speed in Amphere
+E2_a = (E1*I2_a*N2)/(I1*N1); // Back EmF at N2 Speed in Volts
+V2_a = E2_a + (I2_a * R); // Applied Voltage at N2 Speed in Volts
+
+// For case (b) when magnetic circuit is Saturated
+
+I2_b = ((N2/N1)^2)*I1; // Current in Motor at N2 speed in Amphere
+E2_b = (N2/N1)*E1; // Back EmF at N2 Speed in Volts
+V2_b = E2_b + (I2_b * R); // Applied Voltage at N2 Speed in Volts
+
+
+// DISPLAY RESULTS
+
+disp("EXAMPLE : 4.26 : SOLUTION :-") ;
+printf("\n (a.1) Applied Voltage when magnetic circuit is Unsaturated,V2 = %.2f V \n",V2_a);
+printf("\n (a.2) Current in Motor when magnetic circuit is Unsaturated, I2 = %.1f A \n",I2_a);
+printf("\n (b.1) Applied Voltage when magnetic circuit is Saturated,V2 = %.2f V \n",V2_b);
+printf("\n (b.2) Current in Motor when magnetic circuit is Saturated, I2 = %.2f A \n",I2_b);
+
+
+
diff --git a/Working_Examples/2777/CH4/EX4.27/Ex4_27.sce b/Working_Examples/2777/CH4/EX4.27/Ex4_27.sce new file mode 100755 index 0000000..8279509 --- /dev/null +++ b/Working_Examples/2777/CH4/EX4.27/Ex4_27.sce @@ -0,0 +1,40 @@ +
+// ELECTRICAL MACHINES
+// R.K.Srivastava
+// First Impression 2011
+// CENGAGE LEARNING INDIA PVT. LTD
+
+// CHAPTER : 4 : DIRECT CURRENT MACHINES
+
+// EXAMPLE : 4.27
+
+clear ; clc ; close ; // Clear the work space and console
+
+
+// GIVEN DATA
+
+V = 220; // DC series Motor operating Volatge in Volts
+Ra = 1.0; // Armature Resistance in Ohms
+Rf = 1.0; // Field Resistance in Ohms
+I1 = 20; // Armature Current in Amphere
+N1 = 1800; // Motor drving speed in RPM
+If = 20; // Armature Current in Amphere
+Rd = 0.5; // Diverter Resistance in Ohms
+
+
+// CALCULATIONS
+
+E1 = V - ( Ra + Rf ) * I1; // Back EMF in Volts
+I2 = sqrt(3)*I1; // New Armature current in Amphere
+If2 = ( Rd * I2 )/(Ra + Rd); // New field Current in Amphere
+E2 = V - ( Ra + (1/3))*I1; // New BAck EMF in Volts
+N2 = (N1*E2*If)/(E1*If2); // New Rotation speed of the Motor in RPM
+
+
+// DISPLAY RESULTS
+
+disp("EXAMPLE : 4.27 : SOLUTION :-") ;
+printf("\n (a) New Rotation speed of the Motor at torque remains constant, N2 = %.f RPM \n",N2);
+printf("\n (b.1) New Armature Current at torque remains constant, I2 = %.2f A \n",I2);
+printf("\n (b.2) New Field Current at torque remains constant, If2 = %.2f A \n",If2);
+
diff --git a/Working_Examples/2777/CH4/EX4.28/Ex4_28.sce b/Working_Examples/2777/CH4/EX4.28/Ex4_28.sce new file mode 100755 index 0000000..765cff0 --- /dev/null +++ b/Working_Examples/2777/CH4/EX4.28/Ex4_28.sce @@ -0,0 +1,53 @@ +// ELECTRICAL MACHINES
+// R.K.Srivastava
+// First Impression 2011
+// CENGAGE LEARNING INDIA PVT. LTD
+
+// CHAPTER : 4 : DIRECT CURRENT MACHINES
+
+// EXAMPLE : 4.28
+
+clear ; clc ; close ; // Clear the work space and console
+
+
+// GIVEN DATA
+
+V = 220; // DC shunt Motor operating Volatge in Volts
+Ra = 1.0; // Armature Resistance in Ohms
+Rf = 220; // Field Resistance in Ohms
+In1 = 5; // No-Load Current in Amphere
+N1 = 1000; // Motor drving speed in RPM
+inp = 10 * 10 ^ 3; // Motor input in Watts
+
+
+// CALCULATIONS
+
+If = V/Rf; // Field Current in Amphere
+Ian1 = In1 - If; // No load Armature Current in Amphere
+E1 = V - (Ian1 * Ra); // Back EMF in Volts
+Iin = inp/V; // Motor Input Current in Amphere
+Ia = Iin - If; // Armature current in Amphere
+E2 = V - (Ia * Ra); // New Back EMF in Volts
+N2 = (N1*E2)/E1; // New Rotation speed of the Motor in RPM
+Pa = E2 * Ia; // Developed Armature Power in Watts
+T = Pa/((2*%pi*N2)/60); // Developed Torque in Newton-Meter
+Pi = V * In1; // No-Load input Power in Watts
+Pa_cu = Ian1 ^ 2 * Ra; // No-Load Armature Copper loss in Watts
+F_loss = Pi - Pa_cu; // Fixed losses in Watts
+Pa_cu_load = Ia ^ 2 * Ra; // Loaded Armature Copper loss in Watts
+Total_loss = F_loss + Pa_cu_load; // Total losses in loaded conditions in Watts
+out = inp - Total_loss; // Shaft output in Watts
+Ts = out/((2*%pi*N2)/60); // Shaft torque in Newton-Meter
+eta = (out/inp)*100;
+ // Efficiency in Percentage
+
+
+// DISPLAY RESULTS
+
+disp("EXAMPLE : 4.28 : SOLUTION :-") ;
+printf("\n (a) New Rotation speed of the Motor , N2 = %.f RPM \n",N2);
+printf("\n (b.1) Developed Torque, T = %.1f N-m A \n",T);
+printf("\n (b.2) Shaft torque, Ts = %.2f N-m \n",Ts);
+printf("\n (c) Efficiency in Percentage, eta = %.2f percent \n",eta);
+
+
diff --git a/Working_Examples/2777/CH4/EX4.29/Ex4_29.sce b/Working_Examples/2777/CH4/EX4.29/Ex4_29.sce new file mode 100755 index 0000000..6d7823a --- /dev/null +++ b/Working_Examples/2777/CH4/EX4.29/Ex4_29.sce @@ -0,0 +1,62 @@ +
+// ELECTRICAL MACHINES
+// R.K.Srivastava
+// First Impression 2011
+// CENGAGE LEARNING INDIA PVT. LTD
+
+// CHAPTER : 4 : DIRECT CURRENT MACHINES
+
+// EXAMPLE : 4.29
+
+clear ; clc ; close ; // Clear the work space and console
+
+
+// GIVEN DATA
+
+V = 220; // Shunt Motor operating Line Volatge in Volts
+Ra = 0.2; // Armature Resistance in Ohms
+Iam = 72; // Motor Armature current in Amphere
+I = 12; // Line Current in Amphere
+Ifm = 1; // Motor field Current in Amphere
+Ifg = 1.5; // Generator field Current in Amphere
+
+
+// CALCULATIONS
+
+Iag = Iam - I; // Geneartor Armature current in Amphere
+Pfm = V * Ifm; // Loss in Motor Field winding in Watts
+Pfg = V * Ifg; // Loss in Geneartor Field winding in Watts
+loss_ma = Iam ^ 2 * Ra; // Loss in Motor Armature circuit in Watts
+loss_ga = Iag ^ 2 * Ra; // Loss in Generator Armature circuit in Watts
+Em = V - Iam * Ra; // Motor EMF in Volts
+Eg = V + Iag * Ra; // Generator EMF in Volts
+T_loss = (V*I) - (Ra*Iam^2 + Ra*Iag^2); // Total Iron and Rotational Loss in Watts
+Pim = (V*Iam)+(V*Ifm); // Motor input in Watts
+Wc = 0.5 * T_loss; // Total Iron and Rotational Loss in each Machine in Watts
+Wm = Wc+(Ra*Iam^2)+V*Ifm; // Motor losses in Watts
+Pom = Pim - Wm; // Motor output in Watts
+eta_m = (1-(Wm/Pom))*100; // Motor Efficiency in Percentage
+Pog = V*Iag; // Generator output in Watts
+Wg = Wc+(Ra*Iag^2)+V*Ifg; // Generator losses in Watts
+Pin = Pog + Wg; // Generator input power in Watts
+eta_g = (1-(Wg/Pin))*100; // Generator Efficiency in Percentage
+
+
+// DISPLAY RESULTS
+
+disp("EXAMPLE : 4.29 : SOLUTION :-") ;
+printf("\n (a) Motor Efficiency , eta = %.2f Percentage \n ",eta_m);
+printf("\n (b) Generator Efficiency , eta = %.2f Percantage \n ",eta_g);
+printf("\n\n [ TEXT BOOK SOLUTION IS PRINTED WRONGLY ( I verified by manual calculation )]\n" );
+printf("\n WRONGLY PRINTED ANSWERS ARE :- (a) Total Iron and Rotational Loss = 720 W instead of %.1f W \n ",T_loss);
+printf("\n (b) Pim = 15912 W instead of %.f W \n ",Pim);
+printf("\n (c) Wm = 1371.4 Winstead of %.1f W \n ",Wm);
+printf("\n (d) Pom = 14540.6 W instead of %.1f W \n ",Pom);
+printf("\n (e) eta_m = 90.54 Percentage instead of %.2f Percentage \n ",eta_m);
+printf("\n (f) eta_g = 93.22 Percentage instead of %.2f Percentage \n ",eta_g);
+printf("\n From Calculation of the Total Iron and Rotational Loss in each Machine (Wc), rest all the Calculated values in the TEXT BOOK is WRONG because of the Total Iron and Rotational Loss in each Machine (Wc) value is WRONGLY calculated and the same used for the further Calculation part \n")
+
+
+
+
+
diff --git a/Working_Examples/2777/CH4/EX4.3/Ex4_3.sce b/Working_Examples/2777/CH4/EX4.3/Ex4_3.sce new file mode 100755 index 0000000..d1848ac --- /dev/null +++ b/Working_Examples/2777/CH4/EX4.3/Ex4_3.sce @@ -0,0 +1,31 @@ +
+// ELECTRICAL MACHINES
+// R.K.Srivastava
+// First Impression 2011
+// CENGAGE LEARNING INDIA PVT. LTD
+
+// CHAPTER : 4 : DIRECT CURRENT MACHINES
+
+// EXAMPLE : 4.3
+
+clear ; clc ; close ; // Clear the work space and console
+
+
+// GIVEN DATA
+
+E = 420; // EMF induced in Volts
+N = 900; // Rotation speed in RPM
+phi = 0.06; // Flux per pole in Weber per pole
+Two_p = 4; // Total number of poles
+
+
+// CALCULATIONS
+
+n = N/60; // Revolution Per second
+Zc = E/(Two_p*phi*n); // Number of the Conductor in Parallel Path
+
+
+// DISPLAY RESULTS
+
+disp("EXAMPLE : 4.3 : SOLUTION :-") ;
+printf("\n (a) Number of the Conductor in Parallel Path , Zc = %.2f Conductors nearly 117 conductors \n ",Zc);
diff --git a/Working_Examples/2777/CH4/EX4.30/Ex4_30.sce b/Working_Examples/2777/CH4/EX4.30/Ex4_30.sce new file mode 100755 index 0000000..92dedb0 --- /dev/null +++ b/Working_Examples/2777/CH4/EX4.30/Ex4_30.sce @@ -0,0 +1,52 @@ +
+// ELECTRICAL MACHINES
+// R.K.Srivastava
+// First Impression 2011
+// CENGAGE LEARNING INDIA PVT. LTD
+
+// CHAPTER : 4 : DIRECT CURRENT MACHINES
+
+// EXAMPLE : 4.30
+
+clear ; clc ; close ; // Clear the work space and console
+
+
+// GIVEN DATA
+
+Vg = 110; // Generator operating Volatge in Volts
+Vm = 102; // Motor operating Volatge in Volts
+Vs = 274; // Supply Volatge in Volts
+Ra = 1.0; // Armature Resistance in Ohms for both the Machines
+Rf = 0.82; // Field Resistance in Ohms for both the Machines
+N = 1440; // Speed of the Set in RPM
+Ig = 17.5; // Generator current in Amphere
+Im = 9.5; // Motor current in Amphere
+
+
+// CALCULATIONS
+
+Pi = Vs * Im; // Input power in Watts
+Pg = Vg * Ig; // Output power in Watts
+Pim = Vm * Im; // Power Input to the Motor in Watts
+Pl = Pi - Pg; // Losses in the entire set in Watts
+Pcu = Im^2*(Ra+2*Rf) + Ig^2*Ra; // Total Copper loss for both the Machines in Watts
+P_l = Pi - Pg - Pcu; // Frictional, Windage and core losses of the both Machines in Watts
+Po = P_l/2; // Frictional, Windage and core loss of each Machines in Watts
+eta_m = (1 - ((Po + Im^2*(Ra+Rf))/Pim))*100; // Motor Effiicency in Percentage
+Pig = Pg + Po + Ig^2*Ra + Im^2*Rf; // Generator input in Watts
+eta_g = (Pg / Pig)*100; // Generator Effiicency in Percentage
+T = (Vg*Ig *60)/(2*%pi*N); // Torque in Newton-Meter
+
+
+// DISPLAY RESULTS
+
+disp("EXAMPLE : 4.30 : SOLUTION :-") ;
+printf("\n (a) Motor Efficiency , eta_m = %.2f percentage \n ",eta_m);
+printf("\n (b) Generator Efficiency , eta_g = %.2f Percentage \n ",eta_g);
+printf("\n (c) Torque , T = %.2f N-m \n ",T);
+printf("\n\n [ TEXT BOOK SOLUTION IS PRINTED WRONGLY ( I verified by manual calculation )]\n" );
+printf("\n WRONGLY PRINTED ANSWERS ARE :- (a) Generator input = 2307.5 W instead of %.f W \n ",Pig);
+printf("\n (b) eta_g = 83.42 Percenatge instead of %.2f Percentage \n ",eta_g);
+printf("\n From Calculation of the Generator input, rest all the Calculated values in the TEXT BOOK is WRONG because of the Generator input value is WRONGLY calculated and the same used for the further Calculation part \n")
+
+
diff --git a/Working_Examples/2777/CH4/EX4.4/Ex4_4.sce b/Working_Examples/2777/CH4/EX4.4/Ex4_4.sce new file mode 100755 index 0000000..104c136 --- /dev/null +++ b/Working_Examples/2777/CH4/EX4.4/Ex4_4.sce @@ -0,0 +1,33 @@ +
+// ELECTRICAL MACHINES
+// R.K.Srivastava
+// First Impression 2011
+// CENGAGE LEARNING INDIA PVT. LTD
+
+// CHAPTER : 4 : DIRECT CURRENT MACHINES
+
+// EXAMPLE : 4.4
+
+clear ; clc ; close ; // Clear the work space and console
+
+
+// GIVEN DATA
+
+L = 0.3; // Length of the Machine in Meter
+Ia = 10; // Current through The Conductors in Ampheres
+N = 10; // Number of the Conductors in each Slot
+Za = 24; // Number of the Slots
+Bav = 0.6; // Average Flux Density in Telsa
+D = 0.1; // Machine Daimeter in Meter
+
+
+// CALCULATIONS
+
+F = N*Ia*Bav*L; // Force due to the Single Slot in Newton
+T = (Bav*L*Ia*N*D*Za)/2 // Torque produced in the Machine in Newton-Meter
+
+
+// DISPLAY RESULTS
+
+disp("EXAMPLE : 4.4 : SOLUTION :-") ;
+printf("\n (a) Torque produced in the Machine, T = %.1f N-m \n",T);
diff --git a/Working_Examples/2777/CH4/EX4.5/Ex4_5.sce b/Working_Examples/2777/CH4/EX4.5/Ex4_5.sce new file mode 100755 index 0000000..2a41ee2 --- /dev/null +++ b/Working_Examples/2777/CH4/EX4.5/Ex4_5.sce @@ -0,0 +1,42 @@ +
+// ELECTRICAL MACHINES
+// R.K.Srivastava
+// First Impression 2011
+// CENGAGE LEARNING INDIA PVT. LTD
+
+// CHAPTER : 4 : DIRECT CURRENT MACHINES
+
+// EXAMPLE : 4.5
+
+clear ; clc ; close ; // Clear the work space and console
+
+
+// GIVEN DATA
+
+p = 4; // Number of the Poles in the DC machine
+Nt = 100; // Number of the turns in the Dc machine
+N = 600; // Rotation speed of the DC machine in RPM
+E = 220; // EMF generated in open circuit in Volts
+Z = 200; // Total number of the Conductor in armature
+
+
+// CALCUALTIONS
+// For case (a) Lap Connected
+
+a = 4; // Number of the Poles in the DC machine
+n = N/60; // Revolution per second
+phi_a = (E*a)/(p*Z*n); // Useful flux per pole when Armature is Lap connected in Weber
+
+// For case (b) Wave Connected
+
+a = 2; // Number of the Poles in the DC machine
+phi_b = (E*a)/(p*Z*n); // Useful flux per pole when Armature is Wave connected in Weber
+
+
+// DISPLAY RESULTS
+
+disp("EXAMPLE : 4.5 : SOLUTION :-") ;
+printf("\n (a) Useful flux per pole when Armature is Lap connected , phi = %.1f Wb \n ",phi_a);
+printf("\n (B) Useful flux per pole when Armature is Lap connected , phi = %.3f Wb \n ",phi_b);
+
+
diff --git a/Working_Examples/2777/CH4/EX4.6/Ex4_6.sce b/Working_Examples/2777/CH4/EX4.6/Ex4_6.sce new file mode 100755 index 0000000..cc4f2f7 --- /dev/null +++ b/Working_Examples/2777/CH4/EX4.6/Ex4_6.sce @@ -0,0 +1,33 @@ +
+// ELECTRICAL MACHINES
+// R.K.Srivastava
+// First Impression 2011
+// CENGAGE LEARNING INDIA PVT. LTD
+
+// CHAPTER : 4 : DIRECT CURRENT MACHINES
+
+// EXAMPLE : 4.6
+
+clear ; clc ; close ; // Clear the work space and console
+
+
+// GIVEN DATA
+
+p = 6; // Number of the pole in DC Motor
+Ia = 20; // Armature Current in Amphere
+Z = 1000; // Number of the Conductors
+a = 6; // Number of the Parallel paths
+phi = 25 * 10 ^ -3; // Flux per pole in Weber
+
+
+// CALCULATIONS
+
+T = (p/a)*((Z*Ia*phi)/(2*%pi)); // Deleloped Torque in Newton-Meter
+
+
+// DISPLAY RESULTS
+
+disp("EXAMPLE : 4.6 : SOLUTION :-") ;
+printf("\n (a) Developed Torque in an Six-pole DC Motor , T = %.1f N-m \n ",T);
+
+
diff --git a/Working_Examples/2777/CH4/EX4.7/Ex4_7.sce b/Working_Examples/2777/CH4/EX4.7/Ex4_7.sce new file mode 100755 index 0000000..d444b1c --- /dev/null +++ b/Working_Examples/2777/CH4/EX4.7/Ex4_7.sce @@ -0,0 +1,41 @@ + +// ELECTRICAL MACHINES +// R.K.Srivastava +// First Impression 2011 +// CENGAGE LEARNING INDIA PVT. LTD + +// CHAPTER : 4 : DIRECT CURRENT MACHINES + +// EXAMPLE : 4.7 + +clear ; clc ; close ; // Clear the work space and console + + +// GIVEN DATA + +p = 2; // Number of the Pole +N = 1000; // Rotation speed of the Armature in RPM +Ia = 20; // Armature Current in Amphere +CS = 36; // Commutator Segments +BW = 1.4; // Brush width is 1.4 times of the Commutator Segments +L = 0.09 * 10 ^ -3; // Inducatnce of the each Armature Coil + + +// CALULATIONS + +a = p; // Number of the Parallel paths (Equal to number of poles because Lap Connected Armature) +n = N/60; // Revoultion per second +I = Ia/2; // Current Through the each Conductor in Amphere +v = n * CS; // Peripheral Velocity of Commutator in Commutator segments per Seconds +Tc = BW/v; // Time of the Commutation in Seconds +Er = (L*2*I)/Tc; // Reactance voltage in Volts + + +// DISPLAY RESULTS + +disp("EXAMPLE : 4.7 : SOLUTION :-") ; +printf("\n (a) Reactance voltage assuming Linear Commutation , Er = %.4f V \n",Er); +printf("\n\n [ TEXT BOOK SOLUTION IS PRINTED WRONGLY ( I verified by manual calculation )]\n" ); +printf("\n WRONGLY PRINTED ANSWERS ARE :- (a) Tc = 0.014 s instead of %.4f s \n",Tc); +printf("\n (b) Er = 1.2857 V instead of %.4f V\n",Er); +printf("\n From Calculation of the Time of commutation (Tc), rest all the Calculated values in the TEXT BOOK is WRONG because of the Time of commutation (Tc) value is WRONGLY calculated and the same used for the further Calculation part \n") diff --git a/Working_Examples/2777/CH4/EX4.8/Ex4_8.sce b/Working_Examples/2777/CH4/EX4.8/Ex4_8.sce new file mode 100755 index 0000000..3ee5f34 --- /dev/null +++ b/Working_Examples/2777/CH4/EX4.8/Ex4_8.sce @@ -0,0 +1,33 @@ +
+// ELECTRICAL MACHINES
+// R.K.Srivastava
+// First Impression 2011
+// CENGAGE LEARNING INDIA PVT. LTD
+
+// CHAPTER : 4 : DIRECT CURRENT MACHINES
+
+// EXAMPLE : 4.8
+
+clear ; clc ; close ; // Clear the work space and console
+
+
+// GIVEN DATA
+
+N = 800; // Rotation speed of the Commutator in RPM
+D = 50; // Diameter in Centimeter
+BW = 1.5; // Brush Width in Centimeter
+
+
+// CALCULATIONS
+
+r = D/2; // Radius in Centimeter
+n = N/60; // Revoultion per second
+w = (2 * %pi)*n; // Angular velocity
+v = w*r; // Peripheral Speed in centimeter per second
+Tc = (BW/v)*1000; // Time of the Commutation in Second
+
+
+// DISPLAY RESULTS
+
+disp("EXAMPLE : 4.8 : SOLUTION :-") ;
+printf("\n (a) Time of the Commutation , Tc = %.4f ms \n",Tc);
diff --git a/Working_Examples/2777/CH4/EX4.9/Ex4_9.sce b/Working_Examples/2777/CH4/EX4.9/Ex4_9.sce new file mode 100755 index 0000000..f92ae73 --- /dev/null +++ b/Working_Examples/2777/CH4/EX4.9/Ex4_9.sce @@ -0,0 +1,52 @@ +
+// ELECTRICAL MACHINES
+// R.K.Srivastava
+// First Impression 2011
+// CENGAGE LEARNING INDIA PVT. LTD
+
+// CHAPTER : 4 : DIRECT CURRENT MACHINES
+
+// EXAMPLE : 4.9
+
+clear ; clc ; close ; // Clear the work space and console
+
+
+// GIVEN DATA
+
+p = 4; // Number of the pole in the Generator
+Ia = 100; // supplying Current by the Generator in Amphere
+Za = 500; // Armature conductor
+beta = 8; // Brush shift in degrees
+If = 5; // Current in the Seperately exicted field winding
+ratio = 0.7; // Ratio of Pole arc to Pole pitch
+
+
+// CALCULATIONS
+// For case (a) Lap winding
+
+a_a = p; // Number of the Parallel Paths
+AT_a = (Za*Ia)/(2*a_a*p); // Amphere turns per pole
+ATd_a = (beta*Za*Ia)/(360*a_a); // Demagnetizing Armature Amphere turns per pole
+ATc_a = ((1/p)-(beta/180))*((Za*Ia)/(2*a_a)); // CrossMagnetizing Armature Amphere turns per pole
+ATw_a = ratio*AT_a; // Amphere turns of Compensating winding
+
+// For case (b) Wave winding
+
+a_b = p/2; // Number of the Parallel Paths
+AT_b = (Za*Ia)/(2*a_b*p); // Amphere turns per pole
+ATd_b = (beta*Za*Ia)/(360*a_b); // Demagnetizing Armature Amphere turns per pole
+ATc_b = ((1/p)-(beta/180))*((Za*Ia)/(2*a_b)); // CrossMagnetizing Armature Amphere turns per pole
+ATw_b = ratio*AT_b; // Amphere turns of Compensating winding
+
+
+// DISPLAY RESULTS
+
+disp("EXAMPLE : 4.9 : SOLUTION :-") ;
+printf("\n For LAP winding \n\n (a.1) Amphere turns per pole, AT = %.1f AT \n",AT_a);
+printf("\n (a.2) Demagnetizing Armature Amphere turns per pole, ATd = %.1f AT \n",ATd_a);
+printf("\n (a.3) Cross-Magnetizing Armature Amphere turns per pole, ATc = %.1f AT \n",ATc_a);
+printf("\n (a.4) Amphere turns of Compensating winding, ATw = %.1f AT \n",ATw_a);
+printf("\n For WAVE winding \n\n (b.1) Amphere turns per pole, AT = %.f AT \n",AT_b);
+printf("\n (b.2) Demagnetizing Armature Amphere turns per pole, ATd = %.2f AT \n",ATd_b);
+printf("\n (b.3) Cross-Magnetizing Armature Amphere turns per pole, ATc = %.f AT \n",ATc_b);
+printf("\n (b.4) Amphere turns of Compensating winding, ATw = %.1f AT \n",ATw_b);
diff --git a/Working_Examples/2777/CH5/EX5.1/Ex5_1.sce b/Working_Examples/2777/CH5/EX5.1/Ex5_1.sce new file mode 100755 index 0000000..7a60ea9 --- /dev/null +++ b/Working_Examples/2777/CH5/EX5.1/Ex5_1.sce @@ -0,0 +1,66 @@ +
+// ELECTRICAL MACHINES
+// R.K.Srivastava
+// First Impression 2011
+// CENGAGE LEARNING INDIA PVT. LTD
+
+// CHAPTER : 5 : INDUCTION MACHINES
+
+// EXAMPLE : 5.1
+
+clear ; clc ; close ; // Clear the work space and console
+
+
+// GIVEN DATA
+// For Case (a)
+
+S_a = 30; // Total number of Slots
+m_a = 3; // Total number of Poles
+p_a = 2; // Total number of Phases
+
+// For Case (b)
+
+S_b = 60; // Total number of Slots
+m_b = 3; // Total number of Poles
+p_b = 4; // Total number of Phases
+
+// For Case (c)
+
+S_c = 24; // Total number of Slots
+m_c = 3; // Total number of Poles
+p_c = 4; // Total number of Phases
+
+// For Case (d)
+
+S_d = 12; // Total number of Slots
+m_d = 3; // Total number of Poles
+p_d = 2; // Total number of Phases
+
+
+// CALCULATIONS
+// For Case (a)
+
+spp_a = S_a/(p_a*m_a); // Slot per poles per phase
+
+// For Case (b)
+
+spp_b = S_b/(p_b*m_b); // Slot per poles per phase
+
+// For Case (c)
+
+spp_c = S_c/(p_c*m_c); // Slot per poles per phase
+
+// For Case (d)
+
+spp_d = S_d/(p_d*m_d); // Slot per poles per phase
+
+
+// DISPLAY RESULTS
+
+disp("EXAMPLE : 5.1 : SOLUTION :-") ;
+printf("\n For case (a) Slot per poles per phase, spp = %.f \n ",spp_a);
+printf("\n For case (b) Slot per poles per phase, spp = %.f \n ",spp_b);
+printf("\n For case (c) Slot per poles per phase, spp = %.f \n ",spp_c);
+printf("\n For case (d) Slot per poles per phase, spp = %.f \n ",spp_d);
+
+
diff --git a/Working_Examples/2777/CH5/EX5.10/Ex5_10.sce b/Working_Examples/2777/CH5/EX5.10/Ex5_10.sce new file mode 100755 index 0000000..d15b4a4 --- /dev/null +++ b/Working_Examples/2777/CH5/EX5.10/Ex5_10.sce @@ -0,0 +1,32 @@ +
+// ELECTRICAL MACHINES
+// R.K.Srivastava
+// First Impression 2011
+// CENGAGE LEARNING INDIA PVT. LTD
+
+// CHAPTER : 5 : INDUCTION MACHINES
+
+// EXAMPLE : 5.10
+
+clear ; clc ; close ; // Clear the work space and console
+
+
+// GIVEN DATA
+
+
+m = 3; // Total Number of phase in Induction Motor
+p = 4; // Total number of Poles in Induction Motor
+f = 50; // Frequency in Hertz
+s = 0.03; // Slip
+
+
+// CALCULATIONS
+
+Ns = (120*f)/p; // Synchronous Speed in RPM
+Nr = (1-s)*Ns; // Rotor Speed in RPM
+
+
+// DISPLAY RESULTS
+
+disp("EXAMPLE : 5.10 : SOLUTION :-");
+printf("\n (a) Rotor Speed , Nr = %.f RPM \n",Nr)
diff --git a/Working_Examples/2777/CH5/EX5.11/Ex5_11.sce b/Working_Examples/2777/CH5/EX5.11/Ex5_11.sce new file mode 100755 index 0000000..ca8b07f --- /dev/null +++ b/Working_Examples/2777/CH5/EX5.11/Ex5_11.sce @@ -0,0 +1,38 @@ +
+// ELECTRICAL MACHINES
+// R.K.Srivastava
+// First Impression 2011
+// CENGAGE LEARNING INDIA PVT. LTD
+
+// CHAPTER : 5 : INDUCTION MACHINES
+
+// EXAMPLE : 5.11
+
+clear ; clc ; close ; // Clear the work space and console
+
+
+// GIVEN DATA
+
+
+m = 3; // Total Number of phase in Induction Motor
+p = 6; // Total number of Poles of Induction Motor
+f = 50; // Frequency in Hertz
+s = 0.03; // Slip
+
+
+// CALCULATIONS
+
+Ns = (120*f)/p; // Synchronous Speed in RPM
+Nr = (1-s)*Ns; // Rotor Speed in RPM
+Nf = Ns - Nr; // Speed of Forward Rotating magnetic fields with respect to stator and rotor in RPM
+Nb = Ns + Nr; // Speed of Backward Rotating magnetic fields with respect to stator and rotor in RPM
+
+
+// DISPLAY RESULTS
+
+disp("EXAMPLE : 5.11 : SOLUTION :-");
+printf("\n (a) Speed of Forward Rotating magnetic fields with respect to stator and rotor is equal to + %.f RPM \n",Nf)
+printf("\n (b) Speed of Backward Rotating magnetic fields with respect to stator and rotor is equal to + %.f RPM \n",Nb)
+
+
+
diff --git a/Working_Examples/2777/CH5/EX5.12/Ex5_12.sce b/Working_Examples/2777/CH5/EX5.12/Ex5_12.sce new file mode 100755 index 0000000..3541e45 --- /dev/null +++ b/Working_Examples/2777/CH5/EX5.12/Ex5_12.sce @@ -0,0 +1,35 @@ +
+// ELECTRICAL MACHINES
+// R.K.Srivastava
+// First Impression 2011
+// CENGAGE LEARNING INDIA PVT. LTD
+
+// CHAPTER : 5 : INDUCTION MACHINES
+
+// EXAMPLE : 5.12
+
+clear ; clc ; close ; // Clear the work space and console
+
+
+// GIVEN DATA
+
+m = 3; // Total Number of phase in Induction Motor
+p = 2; // Total number of Poles of Induction Motor
+f = 50; // Frequency in Hertz
+s = 0.05; // Slip
+
+
+// CALCULATIONS
+
+Ns = (120*f)/p; // Synchronous Speed in RPM
+Nr = (1-s)*Ns; // Rotor Speed in RPM
+Nf = s*Ns; // Speed of Forward Rotating magnetic fields with respect to stator and rotor in RPM
+Nb = (p-s)*Ns; // Speed of Backward Rotating magnetic fields with respect to stator and rotor in RPM
+fr = (p-s)*f; // Backward rotating magnetic field induces a current of frequency in Hertz
+
+
+// DISPLAY RESULTS
+
+disp("EXAMPLE : 5.12 : SOLUTION :-");
+printf("\n (a) Speed of Forward Rotating magnetic fields with respect to stator and rotor is equal to + %.f RPM \n",Nf)
+printf("\n (b) Speed of Backward Rotating magnetic fields with respect to stator and rotor is equal to + %.f RPM \n",Nb)
diff --git a/Working_Examples/2777/CH5/EX5.13/Ex5_13.sce b/Working_Examples/2777/CH5/EX5.13/Ex5_13.sce new file mode 100755 index 0000000..88850d4 --- /dev/null +++ b/Working_Examples/2777/CH5/EX5.13/Ex5_13.sce @@ -0,0 +1,45 @@ +
+// ELECTRICAL MACHINES
+// R.K.Srivastava
+// First Impression 2011
+// CENGAGE LEARNING INDIA PVT. LTD
+
+// CHAPTER : 5 : INDUCTION MACHINES
+
+// EXAMPLE : 5.13
+
+clear ; clc ; close ; // Clear the work space and console
+
+
+// GIVEN DATA
+
+
+m = 3; // Total Number of phase in Induction Motor
+p = 4; // Total number of Poles of Induction Motor
+f = 50; // Frequency in Hertz
+s = 0.05; // Slip
+
+
+// CALCULATIONS
+
+Ns = (120*f)/p; // Synchronous Speed in RPM
+fr = s*f; // Rotor-induced Frequency of forward field in Hertz
+Nfr = s*Ns; // Speed of Forward Rotating magnetic fields with respect to rotor surface in RPM
+f2r = s*f; // Rotor-induced Frequency of Backward field in Hertz
+Nbr = -(s*Ns); // Speed of Backward Rotating magnetic fields with respect to rotor surface in RPM
+Nr = (1-s)*Ns; // Rotor running in Forward direction in RPM
+Nfs = Nr+(s*Ns); // Speed of Forward Rotating magnetic fields with respect to stator surface in RPM
+Nbs = Nr-(s*Ns); // Speed of Backward Rotating magnetic fields with respect to stator surface in RPM
+Nbs_new = -(0.5*Ns)+(1-0.5)*Nr; // Speed of Backward Rotating magnetic fields with respect to stator for 50% of slip in RPM
+
+
+// DISPLAY RESULTS
+
+disp("EXAMPLE : 5.13 : SOLUTION :-");
+printf("\n (a.1) Speed of Forward Rotating magnetic fields with respect to rotor surface is equal to + %.f RPM \n",Nfr)
+printf("\n (a.2) Speed of Backward Rotating magnetic fields with respect to rotor surface is equal to + %.f RPM \n",Nbr)
+printf("\n (b.1) Speed of Forward Rotating magnetic fields with respect to stator surface is equal to + %.f RPM \n",Nfs)
+printf("\n (b.2) Speed of Backward Rotating magnetic fields with respect to stator surface is equal to + %.f RPM \n",Nbs)
+printf("\n (c) Speed of Backward Rotating magnetic fields with respect to stator for 50 percenatge slip is equal to %.1f RPM \n",Nbs_new)
+printf("\n\n [ TEXT BOOK SOLUTION IS PRINTED WRONGLY ( I verified by manual calculation )]\n" );
+printf("\n WRONGLY PRINTED ANSWERS ARE :- (a) Speed of Backward Rotating magnetic fields with respect to stator for 50 percenatge slip is equal to 0 RPM instead of %.1f RPM \n ",Nbs_new);
diff --git a/Working_Examples/2777/CH5/EX5.14/Ex5_14.sce b/Working_Examples/2777/CH5/EX5.14/Ex5_14.sce new file mode 100755 index 0000000..d967110 --- /dev/null +++ b/Working_Examples/2777/CH5/EX5.14/Ex5_14.sce @@ -0,0 +1,31 @@ +
+// ELECTRICAL MACHINES
+// R.K.Srivastava
+// First Impression 2011
+// CENGAGE LEARNING INDIA PVT. LTD
+
+// CHAPTER : 5 : INDUCTION MACHINES
+
+// EXAMPLE : 5.14
+
+clear ; clc ; close ; // Clear the work space and console
+
+
+// GIVEN DATA
+
+f = 50; // Stator Frequency of Inductor Motor in Hertz
+fr = 10; // Rotor Frequency of Inductor Motor in Hertz
+p = 2; // Number of poles
+
+
+// CALCULATIONS
+
+Ns = (120*f)/p; // Synchronous Speed of Induction Motor in RPM
+s = fr/f; // Slip of the Induction Motor
+Nr = (1-s)*Ns; // Rotor Speed of the Induction Motor
+
+
+// DISPLAY RESULTS
+
+disp("EXAMPLE : 5.14 : SOLUTION :-");
+printf("\n (a) Rotor Speed of Induction Motor, Nr = %.f RPM \n",Nr)
diff --git a/Working_Examples/2777/CH5/EX5.15/Ex5_15.sce b/Working_Examples/2777/CH5/EX5.15/Ex5_15.sce new file mode 100755 index 0000000..2eb9ed8 --- /dev/null +++ b/Working_Examples/2777/CH5/EX5.15/Ex5_15.sce @@ -0,0 +1,79 @@ +
+// ELECTRICAL MACHINES
+// R.K.Srivastava
+// First Impression 2011
+// CENGAGE LEARNING INDIA PVT. LTD
+
+// CHAPTER : 5 : INDUCTION MACHINES
+
+// EXAMPLE : 5.15
+
+clear ; clc ; close ; // Clear the work space and console
+
+
+// GIVEN DATA
+
+printf("\n EXAMPLE : 5.15 : \n\n Given Data No-load test : 440V, 30A, 4.5KW \n");
+printf("\n Blocked rotor test : 90V,50Hz, 120A, 16KW \n");
+m = 3; // Total Number of phase in Induction Motor
+p = 6; // Total number of Poles of Induction Motor
+V = 440; // Operating voltage of the Induction motor in Volts
+out_hp = 100; // Output of the Induction motor in Horse-Power
+R = 0.15; // Average dc Resistance in Ohms
+Wsc = 16000; // Power at Blocked Rotor test in Watts
+Vsc = 90; // Voltage at Blocked Rotor test in Volts
+Isc = 120; // Current at Blocked Rotor test in Amphere
+W0 = 4500; // Power at No-load test in Watts
+V0 = 440; // Voltage at No-load test in Volts
+I0 = 30; // Current at No-load test in Amphere
+s = 0.05; // Slip
+f = 50; // Frequency in Hertz
+
+
+// CALCULATIONS
+
+R1 = R/2; // DC winding Resistance per phase in Ohms
+Rac = Wsc/(3*Isc^2); // AC Resistance referred to stator from locked rotor test at supply frequency in Ohms
+R_2 = Rac - R1; // Per phase Rotor Resistance to Stator in Ohms
+Zsc = Vsc/(sqrt(3)*Isc); // Per phase Impedance from locked rotor test in Ohms
+Xs = sqrt((Zsc^2)-(Rac^2)); // Per phase leakage Reactance referred to stator in Ohms
+theta_0 = acosd(W0/(V0*I0*sqrt(3))); // No-load power factor angle in degree
+Im = I0*sind(theta_0); // Reactive component of no-load current in Amphere
+Xm = V0/(Im*sqrt(3)); // Magnetizing Reactance in Ohms
+Pc = W0 - 3*I0^2*R1; // Total Core loss in Watts
+Rc = (V0/sqrt(3))^2*(3/Pc); // Per phase core loss Resistance in Watts
+Vph = V0/sqrt(3); // Per phase Voltage in Volts
+Ic = Vph/Rc; // Core loss current in Amphere
+I_m = Vph/(%i * Xm); // Magnetizing Current in Amphere
+I_o = Ic + I_m; // No-load current in Amphere
+I_2 = Vph/(R1+(R_2/s)+(%i*Xs)); // Current in Amphere
+I1 = I_o + I_2; // Input Current in Amphere
+Pf = cosd(atand(imag(I1)/real(I1))); // Power factor
+P1 = (3*(abs(I_2)^2*R_2)/s)/1000; // 3-phase air gap power or Rotor intake Power in Kilo-Watts
+Po = P1*(1-s); // Output Power in Kilo-Watts
+Ws = 2*%pi*((120*f/p)*(1/60)); // Angular Roatation in Radians per Seconds
+T = P1*1000/Ws; // Torque in Newton-Meter
+
+
+// DISPLAY RESULTS
+
+disp(" SOLUTION :-");
+printf("\n (a.1) DC winding Resistance per phase, R1 = %.3f Ohms \n",R1)
+printf("\n (a.2) AC Resistance referred to stator from locked rotor test at supply frequency = %.4f Ohms \n",Rac)
+printf("\n (a.3) Per phase Rotor Resistance to Stator, R2 = %.4f Ohms \n",R_2)
+printf("\n (a.4) Per phase Impedance from locked rotor test,Zsc = %.3f Ohms \n",Zsc)
+printf("\n (a.5) Per phase leakage Reactance referred to stator, Xs = %.4f Ohms \n",Xs)
+printf("\n (a.6) No-load power factor angle, theta_O = %.2f Degree \n",theta_0)
+printf("\n (a.7) Reactive component of no-load current, Im = %.1f A \n",Im)
+printf("\n (a.8) Magnetizing Reactance, Xm = %.2f Ohms \n",Xm)
+printf("\n (a.9) Total Core loss, Pc = %.1f W \n",Pc)
+printf("\n (a.10) Per phase core loss Resistance, Pc = %.f Ohms \n",Rc)
+printf("\n (a.11) Per phase Voltage, Vph = %.f V \n",Vph)
+printf("\n (a.12) Core loss current, Ic = %.2f < %.f A \n",abs(Ic),atand(imag(Ic),real(Ic)))
+printf("\n (a.13) Magnetizing Current, Im = %.1f < %.f A \n",abs(I_m),atand(imag(I_m),real(I_m)))
+printf("\n (a.14) No-load current, I0 = %.2f < %.2f A \n",abs(I_o),atand(imag(I_o),real(I_o)))
+printf("\n (a.15) Current, I2 = %.2f < %.2f A \n",abs(I_2),atand(imag(I_2),real(I_2)))
+printf("\n (b) Input current, I1 = %.2f < %.2f A \n",abs(I1),atand(imag(I1),real(I1)))
+printf("\n (c) Power Factor, Pf = %.4f Lagging \n",Pf)
+printf("\n (d) Output Power, P0 = %.1f kW \n",Po)
+printf("\n (e) Torque, T = %.2f NM \n",T)
diff --git a/Working_Examples/2777/CH5/EX5.17/Ex5_17.sce b/Working_Examples/2777/CH5/EX5.17/Ex5_17.sce new file mode 100755 index 0000000..ea44107 --- /dev/null +++ b/Working_Examples/2777/CH5/EX5.17/Ex5_17.sce @@ -0,0 +1,59 @@ +
+// ELECTRICAL MACHINES
+// R.K.Srivastava
+// First Impression 2011
+// CENGAGE LEARNING INDIA PVT. LTD
+
+// CHAPTER : 5 : INDUCTION MACHINES
+
+// EXAMPLE : 5.17
+
+clear ; clc ; close ; // Clear the work space and console
+
+
+// GIVEN DATA
+
+printf("\n EXAMPLE : 5.17 : \n\n Given Data No-load test : 440V, 3.0A, 500KW, 50Hz \n");
+printf("\n Blocked rotor test at rated frequency : 110V, 18A, 2500W, 50Hz \n");
+printf("\n DC test on Stator per phase : 10V, 15A \n");
+m = 3; // Total Number of phase in Induction Motor
+p = 4; // Total number of Poles of Induction Motor
+f = 50; // Frequency in Hertz
+V = 440; // Operating Voltage of the Inductuon Motor
+out_hp = 20; // Motor Power Rating in Horse-Power
+Vdc = 10; // DC Voltage in Volts
+Idc = 15; // DC Current in Amphere
+Wsc = 2500; // Power at Blocked Rotor test rated frequency in Watts
+Wsc_red = 2050; // Power at Blocked Rotor test reduced frequency in Watts
+Vsc = 110; // Voltage at Blocked Rotor test rated frequency in Volts
+Isc = 18; // Current at Blocked Rotor test rated frequency in Amphere
+Wo = 500; // Power at No-load test in Watts
+Vo = 440; // Voltage at No-load test in Volts
+Io = 4.0; // Current at No-load test in Amphere
+fsc = 50; // Rated Frequency at blocked rotor test in Hertz
+fo = 50; // Rated Frequency at no-load test in Hertz
+fsc1 = 15; // Reduced Frequency at blocked rotor in Hertz
+Pfw = 200; // Friction and Windage loss in Watts
+
+
+// CALCULATIONS
+
+R1dc = Vdc/Idc; // DC winding Resistance per phase in Ohms
+Rac = Wsc/(3*Isc^2); // AC Resistance from Locked rotor test at supply frequency
+Rac_red = Wsc_red/(3*Isc^2); // AC Resistance from Locked rotor test at reduced frequency
+R1ac = (Rac/Rac_red)*R1dc; // Corrected Value of AC stator winding Resistance in Ohms
+R2dc = Rac_red - R1dc; // Second rotor parameter, rotor resistance referred to stator is at low frequency in Ohms
+Zsc = Vsc/(sqrt(3)*Isc); // Per phase Impedance from locked rotor test at power frequency in Ohms
+Xs = sqrt((Zsc^2)-(Rac^2)); // Per phase leakage Reactance referred to stator in Ohms
+theta_0 = acosd(Wo/(Vo*Io*sqrt(3))); // No-load power factor angle in degree
+Im = Io*sind(theta_0); // Reactive component of no-load current in Amphere
+Xm = Vo/(Im*sqrt(3)); // Magnetizing Reactance in Ohms
+Pc = Wo - 3*Io^2*R1ac-Pfw; // Total Core loss in Watts
+Rc = (Vo/sqrt(3))^2*(3/Pc); // Per phase core loss Resistance in Watts
+
+
+// DISPLAY RESULTS
+
+disp(" SOLUTION :-");
+printf("\n (a) Magnetizing Reactance of Equivalent circuit, Xm = %.1f Ohms \n",Xm)
+printf("\n (b) Per phase core loss Resistance, Pc = %.f Ohms \n",Rc)
diff --git a/Working_Examples/2777/CH5/EX5.18/Ex5_18.sce b/Working_Examples/2777/CH5/EX5.18/Ex5_18.sce new file mode 100755 index 0000000..20f0e97 --- /dev/null +++ b/Working_Examples/2777/CH5/EX5.18/Ex5_18.sce @@ -0,0 +1,54 @@ +
+// ELECTRICAL MACHINES
+// R.K.Srivastava
+// First Impression 2011
+// CENGAGE LEARNING INDIA PVT. LTD
+
+// CHAPTER : 5 : INDUCTION MACHINES
+
+// EXAMPLE : 5.18
+
+clear ; clc ; close ; // Clear the work space and console
+
+
+// GIVEN DATA
+// From Previous problem data (Example 5.17)
+
+R1ac = 0.8127; // Corrected Value of AC stator winding Resistance in Ohms
+R2dc = 1.4433; // Second rotor parameter, rotor resistance referred to stator is at low frequency in Ohms
+Xs = 2.42; // Per phase leakage Reactance referred to stator in Ohms
+Xm = 64.4; // Magnetizing Reactance in Ohms
+Rc = 742; // Per phase core loss Resistance in Watts
+s = 0.035; // Slip
+m = 3; // Total Number of phase in Induction Motor
+p = 4; // Total number of Poles of Induction Motor
+f = 50; // Frequency in Hertz
+V = 440; // Operating Voltage of the Inductuon Motor
+out_hp = 20; // Motor Power Rating in Horse-Power
+
+
+// CALCULATIONS
+
+Vph = V/sqrt(3); // Per phase Voltage in Volts
+Ic = Vph/Rc; // Core loss current in Amphere
+I_m = Vph/(%i * Xm); // Magnetizing Current in Amphere
+I_o = Ic + I_m; // No-load current in Amphere
+I_2 = Vph/(R1ac+(R2dc/s)+(%i*Xs)); // Current in Amphere
+I1 = I_o + I_2; // Input Current in Amphere
+Pf = cosd(atand(imag(I1)/real(I1))); // Power factor
+P1 = 3*(abs(I_2)^2*R2dc)/s; // 3-phase air gap power or Rotor intake Power in Watts
+Po = P1*(1-s); // Output Power in Watts
+Ws = 2*%pi*((120*f/p)*(1/60)); // Angular Roatation in Radians per Seconds
+T = P1/Ws; // Torque in Newton-Meter
+
+
+// DISPLAY RESULTS
+
+disp("EXAMPLE : 5.18 : SOLUTION :-");
+printf("\n (a) Input current, I1 = %.2f < %.2f A \n",abs(I1),atand(imag(I1),real(I1)))
+printf("\n (b) Power Factor, Pf = %.3f Lagging \n",Pf)
+printf("\n (c) Output Power, P0 = %.2f W \n",Po)
+printf("\n (d) Torque, T = %.2f NM \n",T)
+printf("\n\n [ TEXT BOOK SOLUTION IS PRINTED WRONGLY ( I verified by manual calculation )]\n" );
+printf("\n WRONGLY PRINTED ANSWERS ARE :- (a) T = 4340.82 Nm instead of %.2f Nm \n ",T);
+printf("\n\n IN TEXT BOOK, CALCULATION OF TORQUE IS NOT DONE \n ");
diff --git a/Working_Examples/2777/CH5/EX5.19/Ex5_19.sce b/Working_Examples/2777/CH5/EX5.19/Ex5_19.sce new file mode 100755 index 0000000..5fc9518 --- /dev/null +++ b/Working_Examples/2777/CH5/EX5.19/Ex5_19.sce @@ -0,0 +1,58 @@ +
+// ELECTRICAL MACHINES
+// R.K.Srivastava
+// First Impression 2011
+// CENGAGE LEARNING INDIA PVT. LTD
+
+// CHAPTER : 5 : INDUCTION MACHINES
+
+// EXAMPLE : 5.19
+
+clear ; clc ; close ; // Clear the work space and console
+
+
+// GIVEN DATA
+
+s = 0.05; // Slip
+m = 3; // Total Number of phase in Induction Motor
+p = 4; // Total number of Poles of Induction Motor
+f = 50; // Frequency in Hertz
+V = 440; // Operrating Voltage of the Inductuon Motor
+R1 = 0.10; // Circuit Parameter in Ohms
+R2 = 0.11; // Circuit Parameter in Ohms
+X1 = 0.35; // Circuit Parameter in Ohms
+X2 = 0.40; // Circuit Parameter in Ohms
+pf = 0.2; // Power factor (Lagging)
+Pr = 900; // Rotational Loss in Watts
+Psc = 1000; // Stator core loss in Watts
+I = 15; // Line current draws by the motor in Amphere
+
+
+// CALCULATIONS
+
+Vph = V/sqrt(3); // Per phase Voltage in Volts
+I_2 = Vph/(R1+(R2/s)+(%i*(X1+X2))); // Current in Amphere
+Io = I * exp(-( %i * acosd(pf) * %pi/180)); // No-load current in Amphere
+I1 = Io + I_2; // Input line Current in Amphere
+PF = cosd(atand(imag(I1)/real(I1))); // Power factor
+Ws = 2*%pi*((120*f/p)*(1/60)); // Angular Roatation in Radians per Seconds
+Pg = (3*(abs(I1)^2*R2))/s; // 3-phase air gap power or Rotor intake Power in Watts
+T = Pg/Ws; // Torque in Newton-Meter
+Po = Pg*(1-s)-Pr; // Output Power in Watts
+Po_HP = Po/746; // Output Power in Horse-Power
+eta = (Po/(Po+Psc+Pr))*100; // Efficiency in Percentage
+
+
+// DISPLAY RESULTS
+
+disp("EXAMPLE : 5.19 : SOLUTION :-");
+printf("\n (a) Input line current, I1 = %.1f < %.2f A \n",abs(I1),atand(imag(I1),real(I1)))
+printf("\n (b) Power Factor, Pf = %.4f Lagging \n",PF)
+printf("\n (c) Output Power, P0 = %.1f HP \n",Po_HP)
+printf("\n (d) Torque, T = %.2f Nm \n",T)
+printf("\n (e) Efficiency, eta = %.1f Percenatge \n",eta)
+printf("\n\n [ TEXT BOOK SOLUTION IS PRINTED WRONGLY ( I verified by manual calculation )]\n" );
+printf("\n WRONGLY PRINTED ANSWERS ARE :- (a) I1 = 114.2<-24.68 A instead of %.1f<%.2f A \n ",abs(I1),atand(imag(I1),real(I1)));
+printf("\n (b) T = 548.24 Nm instead of %.2f Nm \n ",T);
+printf("\n (c) Po = 108.4 HP instead of %.1f HP \n ",Po_HP);
+
diff --git a/Working_Examples/2777/CH5/EX5.2/Ex5_2.sce b/Working_Examples/2777/CH5/EX5.2/Ex5_2.sce new file mode 100755 index 0000000..4a53f79 --- /dev/null +++ b/Working_Examples/2777/CH5/EX5.2/Ex5_2.sce @@ -0,0 +1,91 @@ +
+// ELECTRICAL MACHINES
+// R.K.Srivastava
+// First Impression 2011
+// CENGAGE LEARNING INDIA PVT. LTD
+
+// CHAPTER : 5 : INDUCTION MACHINES
+
+// EXAMPLE : 5.2
+
+clear ; clc ; close ; // Clear the work space and console
+
+
+// GIVEN DATA
+// For Case (a)
+
+S_a = 54; // Total number of Slots
+m_a = 3; // Total number of Poles
+p_a = 8; // Total number of Phases
+
+// For Case (b)
+
+S_b = 32; // Total number of Slots
+m_b = 3; // Total number of Poles
+p_b = 4; // Total number of Phases
+
+// For Case (c)
+
+S_c = 30; // Total number of Slots
+m_c = 3; // Total number of Poles
+p_c = 4; // Total number of Phases
+
+
+// CALCULATIONS
+// For Case (a)
+
+spp_a = S_a/(p_a*m_a); // Slot per poles per phase
+l_a = 0 * spp_a; // Phase allociation Series
+m_a = 1 * spp_a; // Phase allociation Series
+n_a = 2 * spp_a; // Phase allociation Series
+o_a = 3 * spp_a; // Phase allociation Series
+p_a = 4 * spp_a; // Phase allociation Series
+d_a = 0; // d_a = l_a (Rounding off)
+e_a = 2; // e_a = m_a (Rounding off)
+f_a = 4; // f_a = n_a (Rounding off)
+g_a = 6; // g_a = o_a (Rounding off)
+h_a = 9; // h_a = p_a (Rounding off)
+R_a = e_a - d_a; // Phase allociation
+Y_a = f_a - e_a; // Phase allociation
+B_a = g_a - f_a; // Phase allociation
+R1_a = h_a - g_a; // Phase allociation
+
+// For Case (b)
+
+spp_b = S_b/(p_b*m_b); // Slot per poles per phase
+l_b = 0 * spp_b; // Phase allociation Series
+m_b = 1 * spp_b; // Phase allociation Series
+n_b = 2 * spp_b; // Phase allociation Series
+o_b = 3 * spp_b; // Phase allociation Series
+d_b = 0; // d_b = l_b (Rounding off)
+e_b = 2; // e_b = m_b (Rounding off)
+f_b = 5; // f_b = n_b (Rounding off)
+g_b = 8; // g_b = o_b (Rounding off)
+R_b = e_b - d_b; // Phase allociation
+Y_b = f_b - e_b; // Phase allociation
+B_b = g_b - f_b; // Phase allociation
+
+// For Case (c)
+
+spp_c = S_c/(p_c*m_c); // Slot per poles per phase
+l_c = 0 * spp_c; // Phase allociation Series
+m_c = 1 * spp_c; // Phase allociation Series
+n_c = 2 * spp_c; // Phase allociation Series
+d_c = 0; // d_b = l_b (Rounding off)
+e_c = 2; // e_b = m_b (Rounding off)
+f_c = 5; // f_b = n_b (Rounding off)
+R_c = e_c - d_c; // Phase allociation
+Y_c = f_c - e_c; // Phase allociation
+
+// DISPLAY RESULTS
+
+disp("EXAMPLE : 5.2 : SOLUTION :-") ;
+printf("\n For Case (a) Slot per poles per phase , spp = %.3f \n ",spp_a);
+printf("\n Phase allociation series is %.f, %.f, %.f, %.f, %.f, %.f, %.f, %.f, %.f,slots are allocated respectively to R, Y, B, R, Y, B, R, Y, B....... phase in Sequence\n ",R_a,Y_a,B_a,R1_a,R_a,Y_a,B_a,R1_a,R_a);
+printf("\n By seeing Sequence its Slot per pole per phase is an Integer and such, balanced winding may be possible \n");
+printf("\n For Case (b) Slot per poles per phase , spp = %.3f \n ",spp_b);
+printf("\n Phase allociation series is %.f, %.f, %.f \n",R_b,Y_b,B_b);
+printf("\n By seeing Sequence its Slot per pole per phase are not Integer therefore R-phase will have 8 slots whereas Y-phase and B-phase will have 12 slots \n");
+printf("\n For Case (c) Slot per poles per phase , spp = %.1f \n ",spp_c);
+printf("\n Phase allociation series is %.f, %.f, %.f, %.f, %.f, %.f, %.f, %.f, %.f, %.f, %.f, %.f slots are allocated respectively to R, Y, B, R, Y, B, R, Y, B, R, Y, B....... phase in Sequence\n ",R_c,Y_c,R_c,Y_c,R_c,Y_c,R_c,Y_c,R_c,Y_c,R_c,Y_c);
+printf("\n By seeing Sequence its Slot per pole per phase is an Integer and such, balanced winding may be possible \n");
diff --git a/Working_Examples/2777/CH5/EX5.20/Ex5_20.sce b/Working_Examples/2777/CH5/EX5.20/Ex5_20.sce new file mode 100755 index 0000000..1971ca4 --- /dev/null +++ b/Working_Examples/2777/CH5/EX5.20/Ex5_20.sce @@ -0,0 +1,60 @@ +
+// ELECTRICAL MACHINES
+// R.K.Srivastava
+// First Impression 2011
+// CENGAGE LEARNING INDIA PVT. LTD
+
+// CHAPTER : 5 : INDUCTION MACHINES
+
+// EXAMPLE : 5.20
+
+clear ; clc ; close ; // Clear the work space and console
+
+
+// GIVEN DATA
+
+m = 3; // Total Number of phase in Induction Motor
+p = 6; // Total number of Poles of Induction Motor
+f = 50; // Frequency in Hertz
+V = 440; // Operating Voltage of the Inductuon Motor
+R1 = 0.25; // Circuit Parameter in Ohms
+R2 = 0.25; // Circuit Parameter in Ohms
+X1 = 0.75; // Circuit Parameter in Ohms
+X2 = 0.75; // Circuit Parameter in Ohms
+Xm = 1000; // Circuit Parameters in Ohms
+Rc = 100; // Circuit Parameters in Watts
+s = 0.025; // Slip
+Pr = 450; // Rotational Loss in Watts
+Psc = 800; // Stator core loss in Watts
+
+
+// CALCULATIONS
+
+Vph = V/sqrt(3); // Per phase Voltage in Volts
+I_2 = Vph/(R1+(R2/s)+(%i*(X1+X2))); // Current in Amphere
+Ic = Vph/Rc; // Core loss current in Amphere
+I_m = Vph/(%i * Xm); // Magnetizing Current in Amphere
+I_o = Ic + I_m; // No-load current in Amphere
+I1 = I_o + I_2; // Input Current in Amphere
+Pf = cosd(atand(imag(I1)/real(I1))); // Power factor
+Ns = (120*f)/p; // Synronous Speed in RPM
+Pg = 3*(abs(I_2)^2*R2)/s; // 3-phase air gap power or Rotor intake Power in Watts
+Pm = Pg*(1-s); // Output Power in Watts
+Ws = 2*%pi*Ns*(1/60); // Angular Roatation in Radians per Seconds
+T = Pg/Ws; // Torque in Newton-Meter
+Po = Pm-Pr; // Output Power in Watts
+Po_HP = Po/746; // Output Power in Horse-Power
+eta = (Po/(Po+Psc+Pr))*100; // Efficiency in Percentage
+
+
+// DISPLAY RESULTS
+
+disp("EXAMPLE : 5.20 : SOLUTION :-");
+printf("\n (a) Input line current, I1 = %.f < %.2f A \n",abs(I1),atand(imag(I1),real(I1)))
+printf("\n (b) Power Factor, Pf = %.4f Lagging \n",Pf)
+printf("\n (c) Output Power, P0 = %.2f HP \n",Po_HP)
+printf("\n (d) Torque, T = %.1f Nm \n",T)
+printf("\n (e) Efficiency, eta = %.1f Percenatge \n",eta)
+printf("\n\n [ TEXT BOOK SOLUTION IS PRINTED WRONGLY ( I verified by manual calculation )]\n" );
+printf("\n WRONGLY PRINTED ANSWERS ARE :- (a) I1 = 26.8-j3.584 {27<-7.62} A in instead of (%.1f)+(j%.3f) {%.f<%.2f} A \n ",real(I1),imag(I1),abs(I1),atand(imag(I1),real(I1)));
+printf("\n (b) pf = 0.9885 Lagging instead of %.4f Lagging \n ",Pf);
diff --git a/Working_Examples/2777/CH5/EX5.21/Ex5_21.sce b/Working_Examples/2777/CH5/EX5.21/Ex5_21.sce new file mode 100755 index 0000000..3ff9730 --- /dev/null +++ b/Working_Examples/2777/CH5/EX5.21/Ex5_21.sce @@ -0,0 +1,41 @@ +
+// ELECTRICAL MACHINES
+// R.K.Srivastava
+// First Impression 2011
+// CENGAGE LEARNING INDIA PVT. LTD
+
+// CHAPTER : 5 : INDUCTION MACHINES
+
+// EXAMPLE : 5.21
+
+clear ; clc ; close ; // Clear the work space and console
+
+
+// GIVEN DATA
+
+m = 3; // Total Number of phase in Induction Motor
+p = 4; // Total number of Poles of Induction Motor
+s = 0.05; // Slip
+f = 50; // Frequency in Hertz
+Tm = 500; // Maximum Torque in Newton-Meter
+Tst = 200; // Starting Torque in Newton-Meter
+sst = 1.0; // Starting Slip
+
+
+// CALCULATONS
+
+p1 = poly([1 -5 1],'sm','c'); // Slip at Maximum Torque (obtained from Equation Tst = (2*Tm)/((sst/sm)+(sm+sst))
+a = roots(p1); // Value of slip at Maximum Torque (obtained from Equation Tst = (2*Tm)/((sst/sm)+(sm+sst))
+sm = a(2,1); // Slip at Maximum Torque (obtained from Equation Tst = (2*Tm)/((sst/sm)+(sm+sst)) { 1st root is 4.8 so its out of range because slip value is lies between 0-1 so its neglected and second root will be slip }
+T = (2*Tm)/((s/sm)+(sm/s)); // Torque at 0.05 slip
+Ns = (120*f)/p; // Synchronous Speed in RPM
+Wr = (2*%pi)*(1-s)*(Ns/60); // Angular Velocity in Radians-per-Second
+P = T * Wr; // Power Output in Watts
+P_HP = P/746; // Power Output in Horse-Power
+
+
+// DISPLAY RESULTS
+
+disp("EXAMPLE : 5.21 : SOLUTION :-");
+printf("\n (a) Torque at 0.05 slip, T = %.2f Nm \n",T)
+printf("\n (b) Power Output at 0.05 slip, P = %.1f W = %.2f HP \n",P,P_HP)
diff --git a/Working_Examples/2777/CH5/EX5.22/Ex5_22.sce b/Working_Examples/2777/CH5/EX5.22/Ex5_22.sce new file mode 100755 index 0000000..6103f5f --- /dev/null +++ b/Working_Examples/2777/CH5/EX5.22/Ex5_22.sce @@ -0,0 +1,76 @@ +
+// ELECTRICAL MACHINES
+// R.K.Srivastava
+// First Impression 2011
+// CENGAGE LEARNING INDIA PVT. LTD
+
+// CHAPTER : 5 : INDUCTION MACHINES
+
+// EXAMPLE : 5.22
+
+clear ; clc ; close ; // Clear the work space and console
+
+
+// GIVEN DATA
+
+Wsc = 1000; // Power at Blocked Rotor test in Watts
+Vsc = 56; // Voltage at Blocked Rotor test in Volts
+Isc = 18; // Current at Blocked Rotor test in Amphere
+Woc = 52; // Power at No-load test in Watts
+Voc = 220; // Voltage at No-load test in Volts
+Ioc = 2.6; // Current at No-load test in Amphere
+m = 3; // Total Number of phase in Induction Motor
+p = 4; // Total number of Poles of Induction Motor
+V = 220; // Operating voltage of the Induction motor in Volts
+f = 50; // Frequency in Hertz
+s = 0.05; // Slip
+R = 0.65; // Per phase stator Resistance in Ohms
+
+
+// CALCULATIONS
+
+Vph = Voc/sqrt(3); // Per phase Voltage in Volts
+Wo = Woc/m; // Per phase No-load loss in Watts
+theta_0 = acosd(Wo/(Voc*Ioc*sqrt(3))); // No-load power factor angle in degree
+VSC = Vsc/sqrt(3); // Per phase locked rotor Voltage in Volts
+WSC = Wsc/m; // Per phase locked rotor loss in Watts
+theta_sc = acosd(WSC/(VSC*Isc)); // No-load power factor angle in degree
+ISC = Isc*(Voc/Vsc); // locked rotor current at full Voltage in Amphere
+Re = WSC/Isc^2; // Resistance in Ohms
+R1 = R*1.1; // Per phase AC stator Resistance in Ohms
+R_2 = Re - R1; // Per phase rotor Resistance in Ohms
+Zsc = VSC/Isc; // Per phase impedance in Ohms
+Xs = sqrt((Zsc^2)-(Re^2)); // Leakage Reactance in Ohms
+I_2 = (Voc/sqrt(3))/sqrt((R1+(R_2/s))^2+(Xs^2)); // Current in Amphere
+pf = cosd(atand(Xs/(R1+(R_2/s)))); // Power Factor
+Ws = 2*%pi*((120*f/p)*(1/60)); // Rotational Speed in Radians per Seconds
+Pg = (3*(abs(I_2)^2*R_2))/s; // 3-phase air gap power or Rotor intake Power in Watts
+T = Pg/Ws; // Torque in Newton-Meter
+// CALCULATIONS OR DATA OBTAINED FROM CIRCLE DIAGRAM FIGURE 5.35 and PAGE NO:-303
+OA = 2.60; // Correspounding Current in Amphere at 87' from Y-axis (from Circle diagram)
+OE = 70.70; // Correspounding Current in Amphere at 55' from Y-axis (from Circle diagram)
+OP = 17.77; // Current in Amphere (from Circle diagram)
+OV = Voc/sqrt(3); // Phase Voltage in No-load test or value obatined from circle diagram in Volts
+PK = 11.6; // Correspounding Value from Circle diagram
+JK = 0.8; // Correspounding Value from Circle diagram
+PJ = 10.8; // Correspounding Value from Circle diagram
+PM = 11.6; // Correspounding Value from Circle diagram
+Pir = 3*OV*PK; // Total Rotor intake in Watts
+Plr = 3*OV*JK; // Total Rotor loss in Watts
+Po = 3*OV*PJ; // Total Mechanical power output in Watts
+T_c = (3*OV*PK)/Ws; // Total Torque in Newton-Meter
+s_c = JK/PK; // Slip obtained from Circle diagram
+s_pc = 100*s_c; // Slip in percentage
+eta = 100*(PJ/PM); // Eifficiency in Percentage
+
+
+// DISPLAY RESULTS
+
+disp("EXAMPLE : 5.22 : SOLUTION :-");
+printf("\n (a) Input line current, I2 = %.2f A \n",I_2)
+printf("\n (b) Power Factor, Pf = %.3f \n",pf)
+printf("\n (c) Torque, T = %.2f Nm \n",T)
+printf(" \n Verification Results from Circle Diagram :-\n");
+printf("\n (a) Efficency, eta = %.2f Percent \n",eta)
+printf("\n (b) slip, s = %.3f = %.f percent \n",s_c,s_pc)
+printf("\n (c) Torque, T = %.2f Nm \n",T_c)
diff --git a/Working_Examples/2777/CH5/EX5.23/Ex5_23.sce b/Working_Examples/2777/CH5/EX5.23/Ex5_23.sce new file mode 100755 index 0000000..5e298d4 --- /dev/null +++ b/Working_Examples/2777/CH5/EX5.23/Ex5_23.sce @@ -0,0 +1,92 @@ +
+// ELECTRICAL MACHINES
+// R.K.Srivastava
+// First Impression 2011
+// CENGAGE LEARNING INDIA PVT. LTD
+
+// CHAPTER : 5 : INDUCTION MACHINES
+
+// EXAMPLE : 5.23
+
+clear ; clc ; close ; // Clear the work space and console
+
+
+// GIVEN DATA
+
+R1 = 0.2; // Circuit Parameter in Ohms
+R2 = 0.4; // Circuit Parameter in Ohms
+X1 = 1.0; // Circuit Parameter in Ohms
+X2 = 1.5; // Circuit Parameter in Ohms
+m = 3; // Total Number of phase in Induction Motor
+p = 2; // Total number of Poles of Induction Motor
+f = 50; // Frequency in Hertz
+V = 440; // Operating Voltage of the Inductuon Motor
+
+
+// CALCULATIONS
+
+Ws = 2*%pi*f; // Synchronous angular speed in Radians per second
+Z = (R1+R2)+((%i)*(X1+X2)); // At slip s=1, the impedance seen from the terminals in Ohms
+s = 1; // Slip
+
+// For Case(a) Winding is connected in star
+
+Isy_a = V/(abs(Z)*sqrt(3)); // Current in Amphere
+Tsy_a = (3*Isy_a^2*R2)/(s*Ws); // Torque in Newton-Meter
+
+// Winding is connected in delta
+
+Isd_a = (V*sqrt(3))/abs(Z); // Current in Amphere
+Tsd_a = (3*(Isd_a/sqrt(3))^2*R2)/(s*Ws); // Torque in Newton-Meter
+I_R = Isd_a/Isy_a; // Ratio of the line current
+T_R = Tsd_a/Tsy_a; // Ratio of the Torque
+
+// For Case(b) Machine is started using auto-transfromer and voltage is 50% reduced
+
+Isy_b = (0.5*V)/(abs(Z)*sqrt(3)); // Current in Amphere when Winding is connected star
+Tsy_b = (3*Isy_b^2*R2)/(s*Ws); // Torque in Newton-Meter when Winding is connected star
+Isd_b = (0.5*V*sqrt(3))/abs(Z); // Current in Amphere when Winding is connected delta
+Tsd_b = (3*(Isd_b/sqrt(3))^2*R2)/(s*Ws); // Torque in Newton-Meter when Winding is connected delta
+
+// For Case(c) Both Voltage and Frequency are reduced to 50%
+
+f_new = (10/100)*f; // New Frequency
+Ws_c = 2*%pi*f_new; // Synchronous angular speed in Radians per second
+Z_c = ((R1+R2)+((%i)*(X1+X2))*(f_new/f)); // At slip s=1, the impedance seen from the terminals in Ohms
+Isy_c = (0.1*V)/(abs(Z_c)*sqrt(3)); // Current in Amphere when Winding is connected star
+Tsy_c = (3*Isy_c^2*R2)/(s*Ws_c); // Torque in Newton-Meter when Winding is connected star
+Isd_c = (0.1*V*sqrt(3))/abs(Z_c); // Current in Amphere when Winding is connected delta
+Tsd_c = (3*(Isd_c/sqrt(3))^2*R2)/(s*Ws_c); // Torque in Newton-Meter when Winding is connected delta
+
+
+// DISPLAY RESULTS
+
+disp("EXAMPLE : 5.23 : SOLUTION :-");
+printf("\n For Case (a.1) Winding is connected in star \n");
+printf("\n (a.1.1) Per phase impedance seen from the terminals in Ohms, Z = %.3f < %.1f Ohms \n",abs(Z),atand(imag(Z),real(Z)));
+printf("\n (a.1.2) Initial Starting Current , Isy = %.2f A \n",Isy_a)
+printf("\n (a.1.3) Starting Torque , Tsy = %.1f Nm \n",Tsy_a)
+printf("\n For Case (a.2) Winding is connected in delta \n" );
+printf("\n (a.2.1) Initial Starting Current , Isd = %.2f A \n",Isd_a)
+printf("\n (a.2.2) Starting Torque , Tsd = %.2f Nm \n",Tsd_a)
+printf("\n For Case (b) Machine is started using auto-transfromer and voltage is 50 percentage reduced :- (b.1) Winding is connected in star \n ")
+printf("\n (b.1.1) Per phase impedance seen from the terminals in Ohms, Z = %.3f<%.1f Ohms \n",abs(Z),atand(imag(Z),real(Z)));
+printf("\n (b.1.2) Initial Starting Current , Isy = %.1f A \n",Isy_b)
+printf("\n (b.1.3) Starting Torque , Tsy = %.2f Nm \n",Tsy_b)
+printf("\n For Case (b.2) Winding is connected in delta \n" );
+printf("\n (b.2.1) Initial Starting Current , Isd = %.2f A \n",Isd_b)
+printf("\n (b.2.2) Starting Torque , Tsd = %.f Nm \n",Tsd_b)
+printf("\n For Case (c) Both Voltage and Frequency are reduced to 50 percentage :- (c.1) Winding is connected in star \n ");
+printf("\n (c.1.1) Per phase impedance seen from the terminals in Ohms, Z = %.2f<%.2f Ohms \n",abs(Z_c),atand(imag(Z_c),real(Z_c)));
+printf("\n (c.1.2) Initial Starting Current , Isy = %.2f A \n",Isy_c)
+printf("\n (c.1.3) Starting Torque , Tsy = %.2f Nm \n",Tsy_c)
+printf("\n For Case (c.2) Winding is connected in delta \n" );
+printf("\n (c.2.1) Initial Starting Current , Isd = %.2f A \n",Isd_c)
+printf("\n (c.2.2) Starting Torque , Tsd = %.2f Nm \n",Tsd_c)
+printf('\nComparing the Calculated values of starting current and torque eid rated frequency and rated voltage\n")
+printf("\n star delta\n")
+printf("\n 440V,50Hz 44V,5Hz 440V,50Hz 44V,5Hz \n")
+printf("\n starting current %.2f A %.f A %.f A %.2f A \n",Isy_a,Isy_c,Isd_a,Isd_c)
+printf("\n starting Torque %.1f Nm %.2f Nm %.f Nm %.2f Nm \n",Tsy_a,Tsy_c,Tsd_a,Tsd_c)
+printf("\n\n [ TEXT BOOK SOLUTION IS PRINTED WRONGLY ( I verified by manual calculation )]\n" );
+printf("\n WRONGLY PRINTED ANSWERS ARE :- For Case (a.2) Winding is connected in delta :- (a) Initial Starting Current Isy = 254.01 A instead of %.2f A \n\n ",Isd_a);
diff --git a/Working_Examples/2777/CH5/EX5.24/Ex5_24.sce b/Working_Examples/2777/CH5/EX5.24/Ex5_24.sce new file mode 100755 index 0000000..bd0bf31 --- /dev/null +++ b/Working_Examples/2777/CH5/EX5.24/Ex5_24.sce @@ -0,0 +1,74 @@ +
+// ELECTRICAL MACHINES
+// R.K.Srivastava
+// First Impression 2011
+// CENGAGE LEARNING INDIA PVT. LTD
+
+// CHAPTER : 5 : INDUCTION MACHINES
+
+// EXAMPLE : 5.24
+
+clear ; clc ; close ; // Clear the work space and console
+
+
+// GIVEN DATA
+
+m = 3; // Total Number of phase in Induction Motor
+f = 50; // Frequency in Hertz
+V = 440; // Operating voltage of the Induction Motor in Volts
+R1 = 0.2; // Circuit Parameter in Ohms
+R2 = 0.4; // Circuit Parameter in Ohms
+X1 = 1.0; // Circuit Parameter in Ohms
+X2 = 1.5; // Circuit Parameter in Ohms
+Rc = 150; // Circuit Parameter in Ohms
+Xm = 30; // Circuit Parameter in Ohms
+
+
+// CALCULATIONS
+
+V1 = V/sqrt(3); // Rated Voltage in Volts
+Zdol = (R1+%i*X1)+(Rc*%i*Xm*(R2+%i*X2))/(Rc*%i*Xm+Rc*(R2+%i*X2)+(%i*Xm)*(R2+%i*X2)); // Equivalent impedance per phase in DOL starter in Ohms
+I = V1/Zdol; // Starting Current in DOL starter in Amphere
+
+// For Case(a) A per Phase resistance of 0.5 Ohms is added in Series with the stator circuit
+
+Zsr = (0.5+R1+%i*X1)+((Rc*%i*Xm*(R2+%i*X2))/((Rc*%i*Xm+Rc*(R2+%i*X2)+(%i*Xm)*(R2+%i*X2)))); // Total impedance seen from the terminals in Ohms
+Isr = V1/Zsr; // Starting Current in DOL starter in Amphere
+
+// For Case(b) A per Phase resistance of 0.5 Ohms is added in Series with the rotor circuit here assumed that stator to rotor turn ratio is 1.0
+
+Zrr = (R1+%i*X1)+((Rc*%i*Xm*(0.5+R2+%i*X2))/(Rc*%i*Xm+Rc*(0.5+R2+%i*X2)+(%i*Xm)*(0.5+R2+%i*X2))); // Total impedance seen from the terminals in Ohms
+Irr = V1/Zrr; // Starting Current in DOL starter in Amphere
+
+// For Case(c) When applied Voltage reduced to 50%
+
+I_c = (0.5*V1)/Zdol; // Starting Current in DOL starter in Amphere
+
+// For Case(d) When Motor is supplied by reduced Voltage of 44V ( Voltage is reduced by 10%) and the reduced frequency is 5Hz
+
+f_n = 5; // Reduced Frequency in Hertz
+X1_n = (f_n/f)*X1; // Changed Circuit Parameter in Ohms
+X2_n = (f_n/f)*X2; // Changed Circuit Parameter in Ohms
+Xm_n = (f_n/f)*Xm; // Changed Circuit Parameter in Ohms
+Zdol_n = (R1+%i*X1_n)+((Rc*%i*Xm_n*(R2+%i*X2_n))/(Rc*%i*Xm_n+Rc*(R2+%i*X2_n)+(%i*Xm_n)*(R2+%i*X2_n))); // Equivalent impedance per phase in DOL starter in Ohms
+I_n = (V1*0.1)/Zdol_n; // Starting Current in DOL starter in Amphere
+Ratio = abs(I_n)/abs(I); // Ratio of the Starting Current witha the rated Voltage and frequency to the reduced Voltage and frequency
+
+
+// DISPLAY RESULTS
+
+disp("EXAMPLE : 5.24 : SOLUTION :-");
+printf("\n Normal Initial Starting Current in DOL starter, I = %.1f <%.1f A \n",abs(I),atand(imag(I),real(I)))
+printf("\n For Case(a) A per Phase resistance of 0.5 Ohms is added in Series with the stator circuit \n")
+printf("\n Initial Starting Current in DOL starter, I = %.1f <%.2f A \n",abs(Isr),atand(imag(Isr),real(Isr)))
+printf("\n For Case(b) A per Phase resistance of 0.5 Ohms is added in Series with the rotor circuit \n")
+printf("\n Initial Starting Current in DOL starter, I = %.2f <%.1f A \n",abs(Irr),atand(imag(Irr),real(Irr)))
+printf("\n For Case(c) When applied Voltage reduced to 50 percentage \n")
+printf("\n Initial Starting Current in DOL starter, I = %.2f <%.1f A \n",abs(I_c),atand(imag(I_c),real(I_c)))
+printf("\n For Case(d) When Motor is supplied by reduced Voltage of 44V ( Voltage is reduced by 10 percenatge ) and the reduced frequency is 5Hz \n")
+printf("\n Initial Starting Current in DOL starter, I = %.1f <%.1f A \n",abs(I_n),atand(imag(I_n),real(I_n)))
+printf("\n By reducing volatge as well as the frequency, the peak starting current at the instant os starting is reduced by a fector of %.4f of the starting current with the reted volatge and frequency \n",Ratio)
+printf("\n\n [ TEXT BOOK SOLUTION IS PRINTED WRONGLY ( I verified by manual calculation )]\n" );
+printf("\n WRONGLY PRINTED ANSWERS ARE :- For Case(d) When Motor is supplied by reduced Voltage of 44V ( Voltage is reduced by 10 percenatge ) and the reduced frequency is 5Hz, I = 24.1 < 25.6 A instead of %.1f < (%.2f) A \n ",abs(I_n),atand(imag(I_n),real(I_n)));
+printf("\n Ratio of the Starting Current with the rated Voltage and frequency to the reduced Voltage and frequency, Ratio = 0.2518 instead of %.4f \n ",Ratio);
+
diff --git a/Working_Examples/2777/CH5/EX5.25/Ex5_25.sce b/Working_Examples/2777/CH5/EX5.25/Ex5_25.sce new file mode 100755 index 0000000..98245e2 --- /dev/null +++ b/Working_Examples/2777/CH5/EX5.25/Ex5_25.sce @@ -0,0 +1,34 @@ +
+// ELECTRICAL MACHINES
+// R.K.Srivastava
+// First Impression 2011
+// CENGAGE LEARNING INDIA PVT. LTD
+
+// CHAPTER : 5 : INDUCTION MACHINES
+
+// EXAMPLE : 5.25
+
+clear ; clc ; close ; // Clear the work space and console
+
+
+// GIVEN DATA
+
+m1 = 3; // Total Number of phase in 1st Induction Motor
+p1 = 6; // Total number of Poles of 1st Induction Motor
+f = 50; // Frequency in Hertz
+m2 = 3; // Total Number of phase in 2nd Induction Motor
+p2 = 10; // Total number of Poles of 2nd Induction Motor
+
+
+// CALCULATIONS
+
+Ns1 = (120*f)/p1; // Synchronous speed of 1st Induction Motor in RPM
+Ns2 = (120*f)/p2; // Synchronous speed of 2nd Induction Motor in RPM
+Nscu = (120*f)/(p1+p2); // Speed during cumalative casade in RPM
+Ndiff = (120*f)/(p2-p1); // Speed during cumalative casade in RPM
+
+
+// DISPLAY RESULTS
+
+disp("EXAMPLE : 5.25 : SOLUTION :-");
+printf("\n (a) Range of speed is %.f - %.f - %.f - %.f RPM \n",Nscu,Ns2,Ns1,Ndiff)
diff --git a/Working_Examples/2777/CH5/EX5.26/Ex5_26.sce b/Working_Examples/2777/CH5/EX5.26/Ex5_26.sce new file mode 100755 index 0000000..33e3732 --- /dev/null +++ b/Working_Examples/2777/CH5/EX5.26/Ex5_26.sce @@ -0,0 +1,68 @@ +
+// ELECTRICAL MACHINES
+// R.K.Srivastava
+// First Impression 2011
+// CENGAGE LEARNING INDIA PVT. LTD
+
+// CHAPTER : 5 : INDUCTION MACHINES
+
+// EXAMPLE : 5.26
+
+clear ; clc ; close ; // Clear the work space and console
+
+
+// GIVEN DATA
+
+m = 3; // Total Number of phase in Induction Motor
+p = 4; // Total number of Poles of Induction Motor
+f = 50; // Frequency in Hertz
+V = 440; // Operating Voltage of the Inductuon Motor
+R1 = 0.25; // Circuit Parameter in Ohms
+R2 = 0.5; // Circuit Parameter in Ohms
+X1 = 1.5; // Circuit Parameter in Ohms
+X2 = 1.5; // Circuit Parameter in Ohms
+
+
+// CALCULATIONS
+
+Vph = V/sqrt(3); // Per phase Voltage in Volts
+Ns = (120*f)/p; // Synchoronous Speed in RPM
+Ws = (2*%pi*Ns)/60; // Roatation Speed in Radians per Seconds
+
+// For Case (a) Machine running at, N = 1400 RPM
+
+N_a = 1400; // Machine running in RPM
+s_a = (Ns-N_a)/Ns; // Slip
+I_2_a = Vph/(R1+(R2/s_a)+(%i*(X1+X2))); // Rotor per phase Current referred to the stator side in Amphere
+Pg_a = 3*(abs(I_2_a)^2*R2)/s_a; // 3-phase air gap power or Rotor intake Power in Watts
+T_a = Pg_a/Ws; // Torque in Newton-Meter
+
+// For Case (b) Machine running at, N = 1600 RPM
+
+N_b = 1600; // Machine running in RPM
+s_b = (Ns-N_b)/Ns; // Slip
+I_2_b = Vph/(R1+(R2/s_b)+(%i*(X1+X2))); // Rotor per phase Current referred to the stator side in Amphere
+Pg_b = 3*(abs(I_2_b)^2*R2)/s_b; // 3-phase air gap power or Rotor intake Power in Watts
+T_b = Pg_b/Ws; // Torque in Newton-Meter
+
+// For Case (b) Machine running at, N = -100 RPM
+
+N_c = -100; // Machine running in RPM
+s_c = (Ns-N_c)/Ns; // Slip
+I_2_c = Vph/(R1+(R2/s_c)+(%i*(X1+X2))); // Rotor per phase Current referred to the stator side in Amphere
+Pg_c = 3*(abs(I_2_c)^2*R2)/s_c; // 3-phase air gap power or Rotor intake Power in Watts
+T_c = -Pg_c/Ws; // Torque in Newton-Meter (minus sign because its counter opposing torque)
+
+// DISPLAY RESULTS
+
+disp("EXAMPLE : 5.26 : SOLUTION :-");
+printf("\n For Case (a) Machine running at, N = 1400 RPM \n ")
+printf("\n (a.1) Rotor per phase Current referred to the stator side, I2 = %.2f < %.2f A \n",abs(I_2_a),atand(imag(I_2_a),real(I_2_a)))
+printf("\n (a.2) Developed Torque, T = %.2f Nm \n",T_a)
+printf("\n For Case (b) Machine running at, N = 1600 RPM \n ")
+printf("\n (a.1) Rotor per phase Current referred to the stator side, I2 = %.2f < %.2f A \n",abs(I_2_b),atand(imag(I_2_b),real(I_2_b)))
+disp(" ( angle -157.52 + 180 = 22.48 ) ")
+ printf("\n (a.2) Developed Torque, T = %.2f Nm \n",T_b)
+printf("\n For Case (c) Machine running at, N = -100 RPM \n ")
+printf("\n (c.1) Rotor per phase Current referred to the stator side, I2 = %.2f < %.2f A \n",abs(I_2_c),atand(imag(I_2_c),real(I_2_c)))
+printf("\n (c.2) Developed Torque, T = %.2f Nm \n",T_c)
diff --git a/Working_Examples/2777/CH5/EX5.27/Ex5_27.sce b/Working_Examples/2777/CH5/EX5.27/Ex5_27.sce new file mode 100755 index 0000000..4375b97 --- /dev/null +++ b/Working_Examples/2777/CH5/EX5.27/Ex5_27.sce @@ -0,0 +1,56 @@ +
+// ELECTRICAL MACHINES
+// R.K.Srivastava
+// First Impression 2011
+// CENGAGE LEARNING INDIA PVT. LTD
+
+// CHAPTER : 5 : INDUCTION MACHINES
+
+// EXAMPLE : 5.27
+
+clear ; clc ; close ; // Clear the work space and console
+
+
+// GIVEN DATA
+
+m = 3; // Total Number of phase in Induction Motor
+p = 2; // Total number of Poles of Induction Motor
+f = 50; // Frequency in Hertz
+V = 440; // Operating Voltage of the Inductuon Motor
+R1 = 0.25; // Circuit Parameter in Ohms
+R2 = 0.25; // Circuit Parameter in Ohms
+X1 = 0.75; // Circuit Parameter in Ohms
+X2 = 0.75; // Circuit Parameter in Ohms
+out_hp = 50; // Output of the induction motor in HP
+
+
+// CALCULATIONS
+
+V1 = V/sqrt(3); // Phase Voltage in Volts
+I = (out_hp*746)/(V*sqrt(3)); // Rated Current in Amphere
+sm = R2/(sqrt(R1^2+(X1+X2)^2)); // Slip at Maximum torque both its in Positive and negative sign
+Ws = 2*%pi*((120*f/p)*(1/60)); // Angular Roatation in Radians per Seconds
+Tm = (3*V1^2)/((2*Ws)*(R1+sqrt((R1^2)+(X1+X2)^2))); // Maximum torque during motoring in Newton-Meter
+Tg = -(3*V1^2)/((2*Ws)*(-R1+sqrt((R1^2)+(X1+X2)^2))); // Maximum torque during generating in Newton-Meter
+
+// For Case (a) slip = 0.05
+
+s_a = 0.05; // Slip
+T_a = (2*Tm)/((s_a/sm)+(sm/s_a)); // Torque in Newton-Meter
+
+// For Case (b) slip = -0.05
+
+s_b = -0.05; // Slip
+T_b = (2*Tg)/((s_b/sm)+(sm/s_b)); // Torque in Newton-Meter
+
+
+// DISPLAY RESULTS
+
+disp("EXAMPLE : 5.27 : SOLUTION :-");
+printf("\n Maximim Torque during Motoring, Tm = %.f N-m \n",Tm)
+printf("\n Maximim Torque during Generating, Tm = %.2f N-m \n",Tg)
+printf("\n For Case (a) slip = 0.05 \n ")
+printf("\n (a.1) Torque, T = %.2f Nm \n",T_a)
+printf("\n For Case (b) slip = -0.05 \n ")
+printf("\n (b.1) Torque, T = %.2f Nm \n",T_b)
+
diff --git a/Working_Examples/2777/CH5/EX5.28/Ex5_28.sce b/Working_Examples/2777/CH5/EX5.28/Ex5_28.sce new file mode 100755 index 0000000..5eda796 --- /dev/null +++ b/Working_Examples/2777/CH5/EX5.28/Ex5_28.sce @@ -0,0 +1,43 @@ +
+// ELECTRICAL MACHINES
+// R.K.Srivastava
+// First Impression 2011
+// CENGAGE LEARNING INDIA PVT. LTD
+
+// CHAPTER : 5 : INDUCTION MACHINES
+
+// EXAMPLE : 5.28
+
+clear ; clc ; close ; // Clear the work space and console
+
+
+// GIVEN DATA
+
+m = 3; // Total Number of phase in Induction Motor
+p = 2; // Total number of Poles of Induction Motor
+f = 50; // Frequency in Hertz
+V = 440; // Operating Voltage of the Inductuon Motor in Volts
+R0 = 0.5; // Circuit Parameter in Ohms
+Ri = 0.05; // Circuit Parameter in Ohms
+X0 = 0.2; // Circuit Parameter in Ohms
+Xi = 0.9; // Circuit Parameter in Ohms
+s = 0.07; // Slip
+
+
+// CALCULATIONS
+
+Ws = 2*%pi*f; // Synchronous speed in Radins per second
+v = V/sqrt(3); // Phase Voltage in Volts
+Io = v/(R0+%i*X0); // Starting Current in the outer cage in Amphere
+Ii = v/(Ri+%i*Xi); // Starting Current in the inner cage in Amphere
+Tst = ((3*abs(Io)^2*R0)/Ws)+((3*abs(Ii)^2*Ri)/Ws); // Starting torque i.e at standstill, s=1
+Ios = v/((R0/s)+(%i*X0)); // Current in the outer cage at slip = 0.07
+Iis = v/((Ri/s)+(%i*Xi)); // Current in the outer cage at slip = 0.07
+T = ((3*abs(Ios)^2*R0)/(s*Ws))+((3*abs(Iis)^2*Ri)/(s*Ws)); // Starting torque at s=0.07 in Newton-Meter
+
+
+// DISPLAY RESULTS
+
+disp("EXAMPLE : 5.28 : SOLUTION :-");
+printf("\n (a) Starting torque, Tst = %.2f Nm \n",Tst)
+printf("\n (b) Running torque at slip = 0.07, T = %.2f Nm \n",T)
diff --git a/Working_Examples/2777/CH5/EX5.29/Ex5_29.sce b/Working_Examples/2777/CH5/EX5.29/Ex5_29.sce new file mode 100755 index 0000000..573903d --- /dev/null +++ b/Working_Examples/2777/CH5/EX5.29/Ex5_29.sce @@ -0,0 +1,48 @@ +
+// ELECTRICAL MACHINES
+// R.K.Srivastava
+// First Impression 2011
+// CENGAGE LEARNING INDIA PVT. LTD
+
+// CHAPTER : 5 : INDUCTION MACHINES
+
+// EXAMPLE : 5.29
+
+clear ; clc ; close ; // Clear the work space and console
+
+
+// GIVEN DATA
+
+p = 4; // Total number of Poles of Induction Motor
+f = 50; // Frequency in Hertz
+V = 440; // Operating Voltage of the Inductuon Motor in Volts
+out = 25*1000; // Power rating of the Induction motor in Watts
+R0 = 2.5; // Circuit Parameter in Ohms
+Ri = 0.5; // Circuit Parameter in Ohms
+X0 = 1.0; // Circuit Parameter in Ohms
+Xi = 5.0; // Circuit Parameter in Ohms
+Rc = 500; // Circuit Parameter in Ohms
+R1 = 0.2; // Circuit Parameter in Ohms
+Xm = 50; // Circuit Parameter in Ohms
+X123 = 2.0; // Circuit Parameter in Ohms
+s = 0.05; // Slip
+
+
+// CALCULATIONS
+
+Ws = (2*%pi*120*f)/(p*60); // Synchronous speed in Radins per second
+Zo = (R0/s)+(%i*X0); // Outer cage impedance at slip = 0.05 in Ohms
+Zi = (Ri/s)+(%i*Xi); // Inner cage impedance at slip = 0.05 in Ohms
+Z = (R1+%i*X123)+((Zo*Zi)/(Zo+Zi)); // Total impdance in Ohms
+I = V/Z; // Current in the Cage winding in Amphere
+Io = (I*((Zo*Zi)/(Zo+Zi)))/Zo; // Current in the outer cage in Amphere
+Ii = (I*((Zo*Zi)/(Zo+Zi)))/Zi; // Current in the inner cage in Amphere
+T = ((3*abs(Io)^2*R0)/(s*Ws))+((3*abs(Ii)^2*Ri)/(s*Ws)); // Starting torque in Newton-Meter
+
+
+// DISPLAY RESULTS
+
+disp("EXAMPLE : 5.29 : SOLUTION :-");
+printf("\n (a) Torque at slip %.2f, T = %.2f Nm \n",s,T)
+
+
diff --git a/Working_Examples/2777/CH5/EX5.3/Ex5_3.sce b/Working_Examples/2777/CH5/EX5.3/Ex5_3.sce new file mode 100755 index 0000000..de6886f --- /dev/null +++ b/Working_Examples/2777/CH5/EX5.3/Ex5_3.sce @@ -0,0 +1,46 @@ +
+// ELECTRICAL MACHINES
+// R.K.Srivastava
+// First Impression 2011
+// CENGAGE LEARNING INDIA PVT. LTD
+
+// CHAPTER : 5 : INDUCTION MACHINES
+
+// EXAMPLE : 5.3
+
+clear ; clc ; close ; // Clear the work space and console
+
+
+// GIVEN DATA
+
+s = 24; // Total number of the pole
+p = 4; // Total number of the poles in the Alternator
+
+
+// CALCULATIONS
+// For Case (a) Short pitching by one Slots
+
+spp = s/p; // Slot per pole
+E_a = ((180*2)/24)*(4/2); // Slot angle in Electrical
+kp_a = cosd(E_a/2); // Pitch Factor
+kp5_a = cosd((5*E_a)/2); // Pitch Factor
+kp7_a = cosd((7*E_a)/2); // Pitch Factor
+
+// For Case(b) Short pitching by two Slots
+
+E_b = 2*((180*2)/24)*(4/2); // Slot angle in Electrical
+kp_b = cosd(E_b/2); // Pitch Factor
+kp5_b = cosd((5*E_b)/2) // Pitch Factor
+kp7_b = cosd((7*E_b)/2); // Pitch Factor
+
+
+// DISPLAY RESULTS
+
+disp("EXAMPLE : 5.3 : SOLUTION :-") ;
+printf("\n For Case (a) Short pitching by one Slots:- Pitch Facor , kp = %.4f \n ",kp_a);
+printf("\n kp5 = %.4f \n ",kp5_a);
+printf("\n kp7 = %.4f \n ",kp7_a);
+printf("\n For Case (a) Short pitching by Two Slots:- Pitch Facor , kp = %.4f \n ",kp_b);
+printf("\n kp5 = %.4f \n ",kp5_b);
+printf("\n kp7 = %.4f \n ",kp7_b);
+
diff --git a/Working_Examples/2777/CH5/EX5.30/Ex5_30.sce b/Working_Examples/2777/CH5/EX5.30/Ex5_30.sce new file mode 100755 index 0000000..70ec500 --- /dev/null +++ b/Working_Examples/2777/CH5/EX5.30/Ex5_30.sce @@ -0,0 +1,50 @@ +
+// ELECTRICAL MACHINES
+// R.K.Srivastava
+// First Impression 2011
+// CENGAGE LEARNING INDIA PVT. LTD
+
+// CHAPTER : 5 : INDUCTION MACHINES
+
+// EXAMPLE : 5.30
+
+clear ; clc ; close ; // Clear the work space and console
+
+
+// GIVEN DATA
+
+m = 1; // Total Number of phase in Induction Motor
+p = 2; // Total number of Poles of Induction Motor
+f = 50; // Frequency in Hertz
+V = 220; // Operating Voltage of the Inductuon Motor in Volts
+R1 = 10; // Circuit Parameter in Ohms
+R2 = 11; // Circuit Parameter in Ohms
+X1 = 12; // Circuit Parameter in Ohms
+X2 = 12; // Circuit Parameter in Ohms
+Xm = 125; // Circuit Parameter in Ohms
+s = 0.03; // Slip
+
+
+// CALCULATIONS
+
+Zf = ((%i*Xm/2)*((R2/(2*s))+(%i*X2/2)))/((%i*Xm/2)+(R2/(2*s))+(%i*X2/2)); // Impedance offered by the forward field in Ohms
+Zb = ((%i*Xm/2)*((R2/(2*(2-s)))+(%i*X2/2)))/((%i*Xm/2)+(R2/(2*(2-s)))+(%i*X2/2)); // Impedance offered by the backward field in Ohms
+Z = (R1+%i*X1)+Zf+Zb; // Total Impedance in Ohms
+I = V/Z; // Total input current in Amphere
+pf = cosd(atand(imag(I),real(I))); // Power Factor (lagging)
+Vf = I*Zf; // Forward Volatge at slip 0.03 in Volts
+Vb = I*Zb; // Backward Volatge at slip 0.03 in Volts
+If = Vf/(0.5*R2/s); // Forward Current in Amphere
+Ib = Vb/(0.5*R2/(2-s)); // Forward Current in Amphere
+Ws = 2*%pi*f; // Synchronous Speed in radians per second
+T = ((0.5*If^2*R2)/(s*Ws))-((0.5*Ib^2*R2)/((2-s)*Ws)); // Starting torque
+
+
+// DISPLAY RESULTS
+
+disp("EXAMPLE : 5.30 : SOLUTION :-");
+printf("\n (a) Input Current, I = %.2f < %.f A \n",abs(I),atand(imag(I),real(I)))
+printf("\n (b) Power factor, pf = %.2f Lagging \n",pf)
+printf("\n (c) Developed Torque, T = %.3f Nm \n",T)
+
+
diff --git a/Working_Examples/2777/CH5/EX5.31/Ex5_31.sce b/Working_Examples/2777/CH5/EX5.31/Ex5_31.sce new file mode 100755 index 0000000..42e3428 --- /dev/null +++ b/Working_Examples/2777/CH5/EX5.31/Ex5_31.sce @@ -0,0 +1,63 @@ +
+// ELECTRICAL MACHINES
+// R.K.Srivastava
+// First Impression 2011
+// CENGAGE LEARNING INDIA PVT. LTD
+
+// CHAPTER : 5 : INDUCTION MACHINES
+
+// EXAMPLE : 5.31
+
+clear ; clc ; close ; // Clear the work space and console
+
+
+// GIVEN DATA
+
+Wsc = 900; // Power at Blocked Rotor test in Watts
+Vsc = 200; // Voltage at Blocked Rotor test in Volts
+Isc = 5.0; // Current at Blocked Rotor test in Amphere
+Wo = 60; // Power at No-load test in Watts
+Vo = 220; // Voltage at No-load test in Volts
+Io = 1.5; // Current at No-load test in Amphere
+m = 1; // Total Number of phase in Induction Motor
+p = 4; // Total number of Poles of Induction Motor
+V = 220; // Operating voltage of the Induction motor in Volts
+f = 50; // Frequency in Hertz
+s = 0.07; // Slip
+R1 = 12; // Resistance of the main primary winding in Ohms
+
+
+// CALCULATIONS
+
+Zsc = Vsc/Isc; // Impedance in Blocked Rotor test in Ohms
+Rsc = Wsc/(Isc^2); // Resistance in Blocked Rotor test in Ohms
+Xsc = sqrt((Zsc^2)-(Rsc^2)); // Reactance in Blocked Rotor test in Ohms
+Xl1 = Xsc/2; // Leakage reactance of stator and rotor to be equal in Ohms
+Xl2 = Xsc/2; // Leakage reactance of stator and rotor to be equal in Ohms
+R2 = Rsc-R1; // Equivalent resistance of rotor referred to stator in Ohms
+Z0 = Vo/Io; // Impedance in Blocked Rotor test in Ohms
+R0 = Wo/(Io^2); // Resistance in Blocked Rotor test in Ohms
+X0 = sqrt((Z0^2)-(R0^2)); // Reactance in Blocked Rotor test in Ohms
+Wloss = Wo - ((Io^2)*(R1+R2)); // Loss in Watts
+Xm_half = X0-Xl1-Xl2/2;
+R2f = (R2/s)+((%i*Xl2)/2); // Forward resiatance in Ohms
+Zf = ((%i*Xm_half)*R2f)/(%i*Xm_half+R2f); // Total Forward impedance in Ohms
+R2b = (R2/(2-s))+((%i*Xl2)/2); // Backward resiatance in Ohms
+Zb = ((%i*Xm_half)*R2b)/(%i*Xm_half+R2b); // Total Backward impedance in Ohms
+Z = Zf+Zb+(R1+%i*Xl1); // Total impedance in Ohms
+I = V/Z; // Motor Current in Amphere
+pf = cosd(atand(imag(I),real(I))); // Power Factor (lagging)
+
+
+// DISPLAY RESULTS
+
+disp("EXAMPLE : 5.31 : SOLUTION :-");
+printf("\n Circuit Parameters are \n\n (a) Leakage reactance of stator and rotor to be equal, Xl1 = Xl2 = %.2f Ohms \n",Xl1)
+printf("\n (b) Equivalent resistance of rotor referred to stator, R2 = %.f Ohms \n",R2)
+printf("\n (c) Total Forward impedance, Zf = %.1f < %.2f Ohms \n",abs(Zf),atand(imag(Zf),real(Zf)))
+printf("\n (c) Total Backward impedance, Zb = %.2f < %.2f Ohms \n",abs(Zb),atand(imag(Zb),real(Zb)))
+printf("\n (d) Total impedance, Z = %.2f < %.2f Ohms \n",abs(Z),atand(imag(Z),real(Z)))
+printf("\n (e) Input Current, I = %.2f < %.2f A \n",abs(I),atand(imag(I),real(I)))
+printf("\n (f) Power factor, pf = %.2f Lagging \n",pf)
+
+
diff --git a/Working_Examples/2777/CH5/EX5.32/Ex5_32.sce b/Working_Examples/2777/CH5/EX5.32/Ex5_32.sce new file mode 100755 index 0000000..7741ec1 --- /dev/null +++ b/Working_Examples/2777/CH5/EX5.32/Ex5_32.sce @@ -0,0 +1,72 @@ +
+// ELECTRICAL MACHINES
+// R.K.Srivastava
+// First Impression 2011
+// CENGAGE LEARNING INDIA PVT. LTD
+
+// CHAPTER : 5 : INDUCTION MACHINES
+
+// EXAMPLE : 5.32
+
+clear ; clc ; close ; // Clear the work space and console
+
+
+// GIVEN DATA
+
+Wsc = 600; // Power at Blocked Rotor test in Watts
+Vsc = 125; // Voltage at Blocked Rotor test in Volts
+Isc = 15.0; // Current at Blocked Rotor test in Amphere
+Wo = 360; // Power at No-load test in Watts
+Vo = 220; // Voltage at No-load test in Volts
+Io = 6.5; // Current at No-load test in Amphere
+m = 1; // Total Number of phase in Induction Motor
+p = 4; // Total number of Poles of Induction Motor
+V = 220; // Operating voltage of the Induction motor in Volts
+f = 50; // Frequency in Hertz
+s = 0.05; // Slip
+R1 = 1.2; // Resistance of the main primary winding in Ohms
+
+
+// CALCULATIONS
+
+Zlr = Vsc/Isc; // Impedance in Blocked Rotor test in Ohms
+Rlr = Wsc/(Isc^2); // Resistance in Blocked Rotor test in Ohms
+Xlr = sqrt((Zlr^2)-(Rlr^2)); // Reactance in Blocked Rotor test in Ohms
+Xl1 = Xlr/2; // Leakage reactance of stator and rotor to be equal in Ohms
+Xl2 = Xlr/2; // Leakage reactance of stator and rotor to be equal in Ohms
+R2 = (Rlr-R1); // Equivalent resistance of rotor referred to stator in Ohms
+R2_half = R2/2; // Equivalent resistance of rotor referred to stator in Ohms
+Z0 = Vo/Io; // Impedance in Blocked Rotor test in Ohms
+R0 = Wo/(Io^2); // Resistance in Blocked Rotor test in Ohms
+X0 = sqrt((Z0^2)-(R0^2)); // Reactance in Blocked Rotor test in Ohms
+Wloss = Wo - ((Io^2)*(R1+R2)); // Loss in Watts
+Xm_half = X0-Xl1-Xl2/2;
+R2f = (R2/(2*s))+((%i*Xl2)/2); // Forward resiatance in Ohms
+Zf = ((%i*Xm_half)*R2f)/(%i*Xm_half+R2f); // Total Forward impedance in Ohms
+R2b = (R2/(2*(2-s)))+((%i*Xl2)/2); // Backward resiatance in Ohms
+Zb = ((%i*Xm_half)*R2b)/(%i*Xm_half+R2b); // Total Backward impedance in Ohms
+Z = Zf+Zb+(R1+%i*Xl1); // Total impedance in Ohms
+I = V/Z; // Motor Current in Amphere
+pf = cosd(atand(imag(I),real(I))); // Power Factor (lagging)
+Vf = I*Zf; // Voltage across forward impedance in Volts
+If = Vf/R2f; // Forward current producing torque in Amphere
+Tf = ((abs(If)^2)*R2)/(2*s); // Forward torque in synchronous Watts
+Vb = I*Zb; // Voltage across Backward impedance in Volts
+Ib = Vb/R2b; // Backward current producing torque in Amphere
+Tb = ((abs(Ib)^2)*R2)/(2*(2-s)); // Backward torque in synchronous Watts
+T = Tf-Tb; // Net torque in Synchronous Watts
+
+
+// DISPLAY RESULTS
+
+disp("EXAMPLE : 5.32 : SOLUTION :-");
+printf("\n Circuit Parameters are \n\n (a) Leakage reactance of stator and rotor to be equal, Xl1 = Xl2 = %.2f Ohms \n",Xl1)
+printf("\n (b) Equivalent resistance of rotor referred to stator, R2 = %.2f Ohms \n",R2)
+printf("\n (c) Total Forward impedance, Zf = %.1f < %.2f Ohms \n",abs(Zf),atand(imag(Zf),real(Zf)))
+printf("\n (c) Total Backward impedance, Zb = %.2f < %.2f Ohms \n",abs(Zb),atand(imag(Zb),real(Zb)))
+printf("\n (d) Total impedance, Z = %.2f < %.2f Ohms \n",abs(Z),atand(imag(Z),real(Z)))
+printf("\n (e) Input Current, I = %.2f < %.f A \n",abs(I),atand(imag(I),real(I)))
+printf("\n (f) Power factor, pf = %.4f Lagging \n",pf)
+printf("\n (g) Forward torque, Tf = %.2f Synchronous Watts \n",Tf)
+printf("\n (h) Backward torque, Tb = %.2f Synchronous Watts \n",Tb)
+printf("\n (i) Net torque, T = %.2f Synchronous Watts \n",T)
diff --git a/Working_Examples/2777/CH5/EX5.4/Ex5_4.sce b/Working_Examples/2777/CH5/EX5.4/Ex5_4.sce new file mode 100755 index 0000000..927a99f --- /dev/null +++ b/Working_Examples/2777/CH5/EX5.4/Ex5_4.sce @@ -0,0 +1,31 @@ +// ELECTRICAL MACHINES
+// R.K.Srivastava
+// First Impression 2011
+// CENGAGE LEARNING INDIA PVT. LTD
+
+// CHAPTER : 5 : INDUCTION MACHINES
+
+// EXAMPLE : 5.4
+
+clear ; clc ; close ; // Clear the work space and console
+
+
+// GIVEN DATA
+
+s = 60; // Total number of Slot
+m = 3; // Total number of Phase
+p = 4; // Total number of Pole
+
+
+// CALCULATIONS
+
+M = s/(m*p); // Slot per pole per Phase
+sigma = 180/m; // Phase Spread in angle (deg)
+Ka = sind((M*sigma)/2)/(M*sind(sigma/2)); // Distribution Factor
+
+
+// DISPLAY RESULTS
+
+disp("EXAMPLE : 5.4 : SOLUTION :-");
+printf("\n (a) Distribution Factor, Ka = %.1f \n",Ka)
+
diff --git a/Working_Examples/2777/CH5/EX5.7/Ex5_7.sce b/Working_Examples/2777/CH5/EX5.7/Ex5_7.sce new file mode 100755 index 0000000..214e31c --- /dev/null +++ b/Working_Examples/2777/CH5/EX5.7/Ex5_7.sce @@ -0,0 +1,36 @@ +// ELECTRICAL MACHINES
+// R.K.Srivastava
+// First Impression 2011
+// CENGAGE LEARNING INDIA PVT. LTD
+
+// CHAPTER : 5 : INDUCTION MACHINES
+
+// EXAMPLE : 5.7
+
+clear ; clc ; close ; // Clear the work space and console
+
+
+// GIVEN DATA
+
+f = 50; // Frequency of the 2-pole Induction Motor
+p = 2; // Total Number of Poles
+
+
+// CALCULATIONS
+
+Ns = (120*f)/p; // Synchronous Speed in RPM
+Ns5 = -(120*f)/(5*p); // Synchronous Speed of 5th order space harmonic in RPM
+N5 = -(120*5*f)/p; // Synchronous Speed of 5th order time harmonic in RPM
+Ns7 = (120*f)/(7*p); // Synchronous Speed of 7th order space harmonic in RPM
+N7 = (120*7*f)/p; // Synchronous Speed of 7th order time harmonic in RPM
+
+
+// DISPLAY RESULTS
+
+disp("EXAMPLE : 5.7 : SOLUTION :-");
+printf("\n (a.1) Synchronous Speed of 5th order space harmonic, Ns5 = %.f RPM \n",Ns5)
+printf("\n (a.2) Synchronous Speed of 5th order time harmonic, N5 = %.f RPM \n",N5)
+printf("\n (b.1) Synchronous Speed of 7th order space harmonic, Ns7 = %.2f RPM \n",Ns7)
+printf("\n (b.2) Synchronous Speed of 7th order time harmonic, N7 = %.f RPM \n",N7)
+
+
diff --git a/Working_Examples/2777/CH5/EX5.8/Ex5_8.sce b/Working_Examples/2777/CH5/EX5.8/Ex5_8.sce new file mode 100755 index 0000000..b8b1079 --- /dev/null +++ b/Working_Examples/2777/CH5/EX5.8/Ex5_8.sce @@ -0,0 +1,34 @@ +// ELECTRICAL MACHINES
+// R.K.Srivastava
+// First Impression 2011
+// CENGAGE LEARNING INDIA PVT. LTD
+
+// CHAPTER : 5 : INDUCTION MACHINES
+
+// EXAMPLE : 5.8
+
+clear ; clc ; close ; // Clear the work space and console
+
+
+// GIVEN DATA
+
+p_a = 6; // Total number of Poles in the Alternator
+p_m = 4; // Total number of Poles of Induction Motor
+N_a = 900; // Running Speed of the Alternator in RPM
+N_m = 1250; // Running Speed of the Induction Motor in RPM
+m = 3; // Total Number of phase in Induction Motor
+
+
+// CALCULATIONS
+
+f = (N_a*p_a)/120; // Frequency of the 6-pole Alternator running at 900 RPM in Hertz
+Ns = (120*f)/p_m; // Synchronous Speed of 4-pole Induction Motor in RPM
+s = (Ns-N_m)/Ns; // Slip
+fr = s*f; // Frequency of the Rotor Current in Hertz
+
+
+// DISPLAY RESULTS
+
+disp("EXAMPLE : 5.8 : SOLUTION :-");
+printf("\n (a) Frequency of the Rotor Current, fr = %.2f Hz \n",fr)
+
diff --git a/Working_Examples/2777/CH5/EX5.9/Ex5_9.sce b/Working_Examples/2777/CH5/EX5.9/Ex5_9.sce new file mode 100755 index 0000000..ebc4ea3 --- /dev/null +++ b/Working_Examples/2777/CH5/EX5.9/Ex5_9.sce @@ -0,0 +1,35 @@ +// ELECTRICAL MACHINES
+// R.K.Srivastava
+// First Impression 2011
+// CENGAGE LEARNING INDIA PVT. LTD
+
+// CHAPTER : 5 : INDUCTION MACHINES
+
+// EXAMPLE : 5.9
+
+clear ; clc ; close ; // Clear the work space and console
+
+
+// GIVEN DATA
+
+p = 2; // Total number of Poles of Induction Motor
+f = 50; // Frequency in Hertz
+Nr = 2800; // Running Speed of the Induction Motor in RPM
+m = 3; // Total Number of phase in Induction Motor
+V = 400; // Operating Voltage of Induction Motor in Volts
+
+
+// CALCULATIONS
+
+Ns = (120*f)/p; // Synchronous Speed in RPM
+s = 100*((Ns-Nr)/Ns); // Slip in Percentage
+fr = (s/100)*f; // Frequency of the Rotor Current in Hertz
+
+
+// DISPLAY RESULTS
+
+disp("EXAMPLE : 5.9 : SOLUTION :-");
+printf("\n (a) Slip, s = %.2f percent \n",s);
+printf("\n (b) Frequency of the Rotor Current, fr = %.2f Hz \n",fr)
+
+
diff --git a/Working_Examples/2777/CH6/EX6.1/Ex6_1.sce b/Working_Examples/2777/CH6/EX6.1/Ex6_1.sce new file mode 100755 index 0000000..8eace61 --- /dev/null +++ b/Working_Examples/2777/CH6/EX6.1/Ex6_1.sce @@ -0,0 +1,47 @@ +
+// ELECTRICAL MACHINES
+// R.K.Srivastava
+// First Impression 2011
+// CENGAGE LEARNING INDIA PVT. LTD
+
+// CHAPTER : 6 : SYNCHRONOUS MACHINES
+
+// EXAMPLE : 6.1
+
+clear ; clc ; close ; // Clear the work space and console
+
+
+// GIVEN DATA
+
+f = 50; // Generating Frequency in Hertz
+
+
+// CALCULATIONS
+// For Case(a)
+
+Ns_a = 3000; // Synchronous speed in RPM
+p_a = (120*f)/Ns_a; // Number of poles
+
+// For Case(b)
+
+Ns_b = 1000; // Synchronous speed in RPM
+p_b = (120*f)/Ns_b; // Number of poles
+
+// For Case(c)
+
+Ns_c = 300; // Synchronous speed in RPM
+p_c = (120*f)/Ns_c; // Number of poles
+
+// For Case(d)
+
+Ns_d = 40; // Synchronous speed in RPM
+p_d = (120*f)/Ns_d; // Number of poles
+
+
+// DISPLAY RESULTS
+
+disp("EXAMPLE : 6.1 : SOLUTION :-") ;
+printf("\n For Case(a) Ns = %.f, p = %.f \n ",Ns_a,p_a);
+printf("\n For Case(b) Ns = %.f, p = %.f \n ",Ns_b,p_b);
+printf("\n For Case(c) Ns = %.f, p = %.f \n ",Ns_c,p_c);
+printf("\n For Case(d) Ns = %.f, p = %.f \n ",Ns_d,p_d);
diff --git a/Working_Examples/2777/CH6/EX6.10/Ex6_10.sce b/Working_Examples/2777/CH6/EX6.10/Ex6_10.sce new file mode 100755 index 0000000..d8e74d0 --- /dev/null +++ b/Working_Examples/2777/CH6/EX6.10/Ex6_10.sce @@ -0,0 +1,44 @@ +
+// ELECTRICAL MACHINES
+// R.K.Srivastava
+// First Impression 2011
+// CENGAGE LEARNING INDIA PVT. LTD
+
+// CHAPTER : 6 : SYNCHRONOUS MACHINES
+
+// EXAMPLE : 6.10
+
+clear ; clc ; close ; // Clear the work space and console
+
+
+// GIVEN DATA
+
+m = 3; // Total Number of Phase in Alternator
+p = 2; // Total number of Poles of Alternator
+V = 11*10^3; // Operating voltage of the Alternator in Volts
+VA = 10*10^6; // VA rating of the Alternator in Volts-Amphere
+f = 50; // Operating Frequency of the alternator in Hertz
+pf = 0.8; // Power factor (lagging)
+Vf = 12*10^3; // Operating field voltage of the Alternator in Volts
+If = 160; // Field Current in Amphere
+Ra = 0.05; // Armature Resistance per phase in Ohms
+Xs = 1.5; // Winding leakage reactance per phase in Ohms
+A = 150; // The armature MMF at rated current is equivalent to Field Current in Amphere
+
+
+// CALCULATIONS
+
+Vt = V/sqrt(3); // Rated per phase Voltage in Volts
+Ia = VA/(sqrt(3)*V); // Rated Armature Current in Amphere
+pfa = acosd(pf); // Power factor angle in degree
+Er = Vt+Ia*(cosd(pfa)-%i*sind(pfa))*(Ra+%i*Xs); // Induced EMF in Volts
+R_a = 90 + atand(imag(Er),real(Er)); // Angle of R in Degree
+R = 160 * exp( %i * (R_a) * %pi/180); // (Line-line Voltage) Er = 11902.40V will get R from Air gap Characteristics
+A_n = A * exp( %i * (-pfa) * %pi/180);
+F = R - A_n; // Field Current required to produce the excitation EMF in Amphere
+
+
+// DISPLAY RESULTS
+
+disp("EXAMPLE : 6.10: SOLUTION :-");
+printf("\n (a) Field Current required to produce the excitation EMF, F = %.2f A \n",abs(F))
diff --git a/Working_Examples/2777/CH6/EX6.11/Ex6_11.sce b/Working_Examples/2777/CH6/EX6.11/Ex6_11.sce new file mode 100755 index 0000000..442c25c --- /dev/null +++ b/Working_Examples/2777/CH6/EX6.11/Ex6_11.sce @@ -0,0 +1,81 @@ +
+// ELECTRICAL MACHINES
+// R.K.Srivastava
+// First Impression 2011
+// CENGAGE LEARNING INDIA PVT. LTD
+
+// CHAPTER : 6 : SYNCHRONOUS MACHINES
+
+// EXAMPLE : 6.11
+
+clear ; clc ; close ; // Clear the work space and console
+
+
+// GIVEN DATA
+
+printf("\n EXAMPLE : 6.11 : \n\n Given Data \n");
+printf("\n Voc( V) 12 13 13.8 14.5 15.1 \n");
+printf("\n If(A) 175 200 225 250 275 \n\n");
+V = 11*10^3; // Operating voltage of the Synchronous generator in Volts
+VA = 50*10^6; // VA rating of the Synchronous generator in Volts-Amphere
+f = 50; // Operating Frequency of the Synchronous generator in Hertz
+N = 1500; // Speed of the Synchronous generator in RPM
+If_scc = 200; // SCC test field Rated current in Amphere at rated Short circuit current
+If_zpf = 400; // ZPF test field Rated current in Amphere at rated voltage and rated current
+pf = 0.8; // Power factor (lagging)
+
+
+// CALCULATIONS
+// Some of the data obtained from OCC and SCC test Graph or Pottier triangle in Figure6.30 & Page no:-413
+
+Vt = V/sqrt(3); // Rated per phase Voltage in Volts
+Ia = VA/(sqrt(3)*V); // Rated Armature Current in Amphere
+pfa = acosd(pf); // Power factor angle in degree
+O = 13000; // Open circuit Voltage in Volts obtained from OCC and SCC test Graph or Pottier triangle Figure6.30 & Page no:-413
+Xs = O/(sqrt(3)*Ia); // Synchronous reactance per phase in Ohms
+BC = 4000; // Open circuit Voltage in Volts obtained from OCC and SCC test Graph or Pottier triangle Figure6.30 & Page no:-413
+Xl = BC/(sqrt(3)*Ia ); // Per phase leakage reactance in Ohms
+
+// For Case (a) General (ZPF) Method
+
+Er_a = Vt+Ia*(cosd(pfa)-%i*sind(pfa))*(%i*Xl); // Induced EMF in Volts
+R_a = 220; A_a = 200; //From OCC the field current required for Er_a (Should be in Line-line Voltage) Er_a = 13776V will get R_a & A_a value Respectively from SCC (Figure6.30 & Page no:-403)
+angle_a = 140.3; // Angle between R_a & A_a = 90'+13.43'+36.87' = 140.3'
+F_a = sqrt((R_a^2)+(A_a^2)-(2*R_a*A_a*cosd(angle_a))); // From phasor diagram in figure 6.16(a) & Page no:-388 the neccessary field excitation in Amphere
+Eo_a = 20000; // Corresponding to field current F_a = 470.90 A the open circuit EMF from OCC is 20000 V (Figure6.30 & Page no:-413)
+r_a = 100*((Eo_a-V)/V); // Percentage regulation
+
+
+// For Case(b) EMF Method
+
+Er_b = Vt+Ia*(cosd(pfa)-%i*sind(pfa))*(%i*Xs); // Induced Voltage in Volts
+F_b = 500; //From OCC the field current required for Er_b (Should be in Line-line Voltage) Er_b = 21404 V will get 500A from SCC (Figure6.15 & Page no:-386)
+
+// For Case (c) MMF Method
+
+Er_c = Vt+Ia*(cosd(pfa)-%i*sind(pfa))*0; // Induced Voltage in Volts ( Zero is multipied because Armature reistance is zero (not mentioned))
+R_c = 160; A_c = 200; //From OCC the field current required for Er_c (Should be in Line-line Voltage) Er_c = 11000 V will get R_c & A_c value Respectively from SCC (Figure6.30 & Page no:-413)
+angle_c = 126.27; // Angle between R_c & A_c = 90'-0'+36.87' = 126.27' {can refer figure 6.21a at page no:-400}
+F_c = sqrt((R_c^2)+(A_c^2)-(2*R_c*A_c*cosd(angle_c))); // From phasor diagram {can refer figure 6.21a at page no:-400} the neccessary field excitation in Amphere
+
+
+// For Case (d) ASA Method
+
+Er_d = Vt+Ia*(cosd(pfa)-%i*sind(pfa))*(%i*Xl); // Induced Voltage in Volts
+R_d = 220; A_d = 200; //From OCC the field current required for Er_d (Should be in Line-line Voltage) Er_d = 13800 V will get R_d & A_d value Respectively from SCC (Figure6.30 & Page no:-413)
+angle_d = 126.87; // Angle between R_d & A_d = 90'+36.87' = 126.87'{can refer figure 6.22a at page no:-40}
+F_d1 = sqrt((R_d^2)+(A_d^2)-(2*R_d*A_d*cosd(angle_d))); // from Phasor diagram {can refer figure 6.2a at page no:-400 The neccessary field excitation in Amphere
+F_d = F_d1 + 30; // from Phasor diagram {can refer figure 6.2a at page no:-400 The Total neccessary field excitation in Amphere
+
+
+// DISPLAY RESULTS
+
+disp(" SOLUTION :-");
+printf("\n (a) Leakage Reactance, Xl = %.2f Ohms \n",Xl)
+printf("\n (b) Synchronous Reactance, Xs = %.2f Ohms \n",Xs)
+printf("\n For Case (a) General (ZPF) Method \n Field Current required for maintaing the rated terminal voltage for rated kVA rating at %.2f Lagging Power factor , F = %.2f A \n",pf,F_a)
+printf("\n For Case (a) EMF Method \n Field Current required for maintaing the rated terminal voltage for rated kVA rating at %.2f Lagging Power factor , F = %.f A \n",pf,F_b)
+printf("\n For Case (a) MMF Method \n Field Current required for maintaing the rated terminal voltage for rated kVA rating at %.2f Lagging Power factor , F = %.2f A \n",pf,F_c)
+printf("\n For Case (a) ASA Method \n Field Current required for maintaing the rated terminal voltage for rated kVA rating at %.2f Lagging Power factor , F = %.f A \n",pf,F_d)
+printf("\n\n [ TEXT BOOK SOLUTION IS PRINTED WRONGLY ( I verified by manual calculation )]\n" );
+printf("\n WRONGLY PRINTED ANSWERS ARE :- For Case (a) General (ZPF) Method \n (a) Field Current required for maintaining the rated terminal voltage for rated kVA rating at %.2f Lagging Power factor , F = 470.90 A instead of %.2f A \n",pf,F_a);
diff --git a/Working_Examples/2777/CH6/EX6.12/Ex6_12.sce b/Working_Examples/2777/CH6/EX6.12/Ex6_12.sce new file mode 100755 index 0000000..d4b040a --- /dev/null +++ b/Working_Examples/2777/CH6/EX6.12/Ex6_12.sce @@ -0,0 +1,52 @@ +
+// ELECTRICAL MACHINES
+// R.K.Srivastava
+// First Impression 2011
+// CENGAGE LEARNING INDIA PVT. LTD
+
+// CHAPTER : 6 : SYNCHRONOUS MACHINES
+
+// EXAMPLE : 6.12
+
+clear ; clc ; close ; // Clear the work space and console
+
+
+// GIVEN DATA
+
+
+printf("\n EXAMPLE : 6.12 : \n\n Given Data \n");
+printf("\n Voc(V) 175 250 280 300 330 350 370 380 \n");
+printf("\n If(A) 10 17 20 23 30 38 50 60 \n");
+printf("\n Vzpf(V) - - - 0 130 210 265 280 \n\n");
+V = 433; // Operating voltage of the Alternator in Volts
+N = 3000; // speed of the Alternator in RPM
+VA = 20*10^3; // VA rating of the Alternator in Volts-Amphere
+f = 50; // Operating Frequency of the Alternator in Hertz
+pf = 0.8; // Power factor (lagging)
+
+
+// CALCULATIONS
+// Some of the data obtained from OCC and SCC test Graph or Pottier triangle in Figure6.35 & Page no:-420
+
+Vt = V/sqrt(3); // Rated per phase Voltage in Volts
+Ia = VA/(sqrt(3)*V); // Rated Armature Current in Amphere
+pfa = acosd(pf); // Power factor angle in degree
+O = 298; // Open circuit Voltage in Volts obtained from OCC and SCC test Graph or Pottier triangle Figure6.30 & Page no:-413
+Xs = O/(sqrt(3)*Ia); // Synchronous reactance per phase in Ohms
+BC = 70; // Open circuit Voltage in Volts obtained from OCC and SCC test Graph or Pottier triangle Figure6.30 & Page no:-413
+Xl = BC/(sqrt(3)*Ia ); // Per phase leakage reactance in Ohms
+E = Vt+Ia*(cosd(pfa)-%i*sind(pfa))*(%i*Xs); // Induced EMF in Volts using EMF Method
+c = 380-60; // The open Voltage voltage is 694.50V (line-line) its Obatained by extrapolation
+y = 694.50; // The open Voltage voltage is 694.50V (line-line) its Obatained by extrapolation
+// Extrapolation Equation is y = (x*(380-370)/(60-50))*c
+x = y - c; // The required field current in Amphere
+
+
+// DISPLAY RESULTS
+
+disp(" SOLUTION :-");
+printf("\n (a) Leakage Reactance, Xl = %.2f Ohms \n",Xl)
+printf("\n (b) Synchronous Reactance, Xs = %.2f Ohms \n",Xs)
+printf("\n (c) Field Current required for maintaing the rated terminal voltage for rated kVA rating at %.2f Lagging Power factor , F = %.2f A \n",pf,x)
+
+
diff --git a/Working_Examples/2777/CH6/EX6.13/Ex6_13.sce b/Working_Examples/2777/CH6/EX6.13/Ex6_13.sce new file mode 100755 index 0000000..b159320 --- /dev/null +++ b/Working_Examples/2777/CH6/EX6.13/Ex6_13.sce @@ -0,0 +1,71 @@ +
+// ELECTRICAL MACHINES
+// R.K.Srivastava
+// First Impression 2011
+// CENGAGE LEARNING INDIA PVT. LTD
+
+// CHAPTER : 6 : SYNCHRONOUS MACHINES
+
+// EXAMPLE : 6.13
+
+clear ; clc ; close ; // Clear the work space and console
+
+
+// GIVEN DATA
+
+
+V = 400; // Operating voltage of the Synchronous generator in Volts
+VA = 60*10^3; // VA rating of the Synchronous generator in Volts-Amphere
+f = 50; // Operating Frequency of the Synchronous generator in Hertz
+xd = 1.5; // Direct axis reactances in Ohms
+xq = 0.6; // Quadrature axis reactances in Ohms
+
+
+// CALCULATIONS
+
+I = VA/(sqrt(3)*V); // Rated current in Amphere
+v = V/sqrt(3); // Rated Phase Votage in Volts
+
+// For Case (a) 0.80 lagging Power factor (Refer figure 6.36 page no. 421)
+
+pf_a = 0.8; // Power factor
+pfa_a = acosd(pf_a); // Power factor angle in deg
+pa_a = atand((I*xq*cosd(pfa_a))/(v+I*xq*sind(pfa_a))); // Power angle in deg
+Iq_a = I*cosd(pfa_a+pa_a); // Current in Amphere
+Id_a = I*sind(pfa_a+pa_a); // Current in Amphere
+Eo_a = sqrt((v+Id_a*xd*cosd(pa_a)-Iq_a*xq*sind(pa_a))^2 + (Id_a*xd*sind(pa_a)+Iq_a*xq*cosd(pa_a))^2); // Induced EMF in Volts
+pr_a = ((Eo_a-v)/v)*100; // Percentage regulation
+
+// For Case (b) Unity Power factor (Refer figure 6.37 page no. 422)
+
+pf_b = 1.0; // Power factor
+pfa_b= acosd(pf_b); // Power factor angle in deg
+pa_b = atand((I*xq*cosd(pfa_b))/(v+I*xq*sind(pfa_b))); // Power angle in deg
+Iq_b = I*cosd(pfa_b+pa_b);
+Id_b = I*sind(pfa_b+pa_b);
+Eo_b = sqrt((v+Id_b*xd*cosd(pa_b)-Iq_b*xq*sind(pa_b))^2 + (Id_b*xd*sind(pa_b)+Iq_b*xq*cosd(pa_b))^2); // Induced EMF in Volts
+pr_b = ((Eo_b-v)/v)*100; // Percentage regulation
+
+// For Case (c) 0.80 lagging Power factor (Refer figure 6.36 page no. 421)
+
+pf_c = 0.8; // Power factor
+pfa_c = acosd(pf_c); // Power factor angle in deg
+pa_c = atand((I*xq*cosd(pfa_c))/(v-I*xq*sind(pfa_c))); // Power angle in deg
+Iq_c = I*cosd(pfa_c-pa_c);
+Id_c = I*sind(pfa_c-pa_c);
+Eo_c = sqrt((v-Id_c*xd*cosd(pa_c)-Iq_c*xq*sind(pa_c))^2 + (-Id_c*xd*sind(pa_c)+Iq_c*xq*cosd(pa_c))^2); // Induced EMF in Volts
+pr_c = ((Eo_c-v)/v)*100; // Percentage regulation
+
+
+// DISPLAY RESULTS
+
+disp("EXAMPLE : 6.13: SOLUTION :-");
+printf("\n For Case (a) 0.80 lagging Power factor \n Induced EMF, EMF = %.2f V \n",Eo_a)
+printf("\n Power angle = %.3f degree \n",pa_a)
+printf("\n Percenatge Regulation, R = %.1f Percenatge \n",pr_a)
+printf("\n For Case (b) Unity Power factor \n Induced EMF, EMF = %.2f V \n",Eo_b)
+printf("\n Power angle = %.2f degree \n",pa_b)
+printf("\n Percenatge Regulation, R = %.2f Percenatge \n",pr_b)
+printf("\n For Case (c) 0.80 leading Power factor \n Induced EMF, EMF = %.2f V \n",Eo_c)
+printf("\n Power angle = %.2f degree \n",pa_c)
+printf("\n Percenatge Regulation, R = %.2f Percenatge \n",pr_c)
diff --git a/Working_Examples/2777/CH6/EX6.14/Ex6_14.sce b/Working_Examples/2777/CH6/EX6.14/Ex6_14.sce new file mode 100755 index 0000000..54830d7 --- /dev/null +++ b/Working_Examples/2777/CH6/EX6.14/Ex6_14.sce @@ -0,0 +1,67 @@ +
+// ELECTRICAL MACHINES
+// R.K.Srivastava
+// First Impression 2011
+// CENGAGE LEARNING INDIA PVT. LTD
+
+// CHAPTER : 6 : SYNCHRONOUS MACHINES
+
+// EXAMPLE : 6.14
+
+clear ; clc ; close ; // Clear the work space and console
+
+
+// GIVEN DATA
+
+
+v = 1.0; // Operating voltage of the Synchronous generator in pu
+xd = 1.0; // Direct axis reactances in pu
+xq = 0.5; // Quadrature axis reactances in pu
+I = 1.0; // Rated current in pu
+
+
+// CALCULATIONS
+
+// For Case (a) 0.80 lagging Power factor (Refer figure 6.36 page no. 421)
+
+pf_a = 0.8; // Power factor
+pfa_a = acosd(pf_a); // Power factor angle in deg
+pa_a = atand((I*xq*cosd(pfa_a))/(v+I*xq*sind(pfa_a))); // Power angle in deg
+Iq_a = I*cosd(pfa_a+pa_a);
+Id_a = I*sind(pfa_a+pa_a);
+Eo_a = sqrt((v+Id_a*xd*cosd(pa_a)-Iq_a*xq*sind(pa_a))^2 + (Id_a*xd*sind(pa_a)+Iq_a*xq*cosd(pa_a))^2); // Induced EMF in Volts
+pr_a = ((Eo_a-v)/v)*100; // Percentage regulation
+
+// For Case (b) Unity Power factor (Refer figure 6.37 page no. 422)
+
+pf_b = 1.0; // Power factor
+pfa_b= acosd(pf_b); // Power factor angle in deg
+pa_b = atand((I*xq*cosd(pfa_b))/(v+I*xq*sind(pfa_b))); // Power angle in deg
+Iq_b = I*cosd(pfa_b+pa_b);
+Id_b = I*sind(pfa_b+pa_b);
+Eo_b = sqrt((v+Id_b*xd*cosd(pa_b)-Iq_b*xq*sind(pa_b))^2 + (Id_b*xd*sind(pa_b)+Iq_b*xq*cosd(pa_b))^2); // Induced EMF in Volts
+pr_b = ((Eo_b-v)/v)*100; // Percentage regulation
+
+// For Case (c) 0.80 lagging Power factor (Refer figure 6.36 page no. 421)
+
+pf_c = 0.8; // Power factor
+pfa_c = acosd(pf_c); // Power factor angle in deg
+pa_c = atand((I*xq*cosd(pfa_c))/(v-I*xq*sind(pfa_c))); // Power angle in deg
+Iq_c = I*cosd(pfa_c-pa_c);
+Id_c = I*sind(pfa_c-pa_c);
+Eo_c = sqrt((v-Id_c*xd*cosd(pa_c)-Iq_c*xq*sind(pa_c))^2 + (-Id_c*xd*sind(pa_c)+Iq_c*xq*cosd(pa_c))^2); // Induced EMF in Volts
+pr_c = ((Eo_c-v)/v)*100; // Percentage regulation
+
+
+// DISPLAY RESULTS
+
+disp("EXAMPLE : 6.14: SOLUTION :-");
+printf("\n For Case (a) 0.80 lagging Power factor \n Induced EMF, EMF = %.4f V \n",Eo_a)
+printf("\n Power angle = %.1f degree \n",pa_a)
+printf("\n Percenatge Regulation, R = %.2f Percenatge \n",pr_a)
+printf("\n For Case (b) Unity Power factor \n Induced EMF, EMF = %.2f V \n",Eo_b)
+printf("\n Power angle = %.2f degree \n",pa_b)
+printf("\n Percenatge Regulation, R = %.2f Percenatge \n",pr_b)
+printf("\n For Case (c) 0.80 leading Power factor \n Induced EMF, EMF = %.4f V \n",Eo_c)
+printf("\n Power angle = %.2f degree \n",pa_c)
+printf("\n Percenatge Regulation, R = %.2f Percenatge \n",pr_c)
diff --git a/Working_Examples/2777/CH6/EX6.15/Ex6_15.sce b/Working_Examples/2777/CH6/EX6.15/Ex6_15.sce new file mode 100755 index 0000000..277dbeb --- /dev/null +++ b/Working_Examples/2777/CH6/EX6.15/Ex6_15.sce @@ -0,0 +1,36 @@ +
+// ELECTRICAL MACHINES
+// R.K.Srivastava
+// First Impression 2011
+// CENGAGE LEARNING INDIA PVT. LTD
+
+// CHAPTER : 6 : SYNCHRONOUS MACHINES
+
+// EXAMPLE : 6.15
+
+clear ; clc ; close ; // Clear the work space and console
+
+
+// GIVEN DATA
+
+
+If = 1.25; // Given that rated voltage at air gap line for this field current in pu
+IF = 0.75; // Rated current in SC test for this field current in pu
+Ia = 1.0; // Rated current in Per unit
+pf = 0.8; // Power factor
+V = 1.0; // Rated Volatge in pu
+
+
+// CALCULATIONS
+
+pfa = acosd(pf); // Power factor angle in deg
+Voc = (V*IF)/If; // Open circuit volatge in pu
+xs = Voc/Ia; // Syncronous reactance in pu
+E = V + Ia*(cosd(pfa)-(%i)*sind(pfa))*(%i*xs); // Induced EMF in pu
+a = abs(E)*If;
+
+// DISPLAY RESULTS
+
+disp("EXAMPLE : 6.15: SOLUTION :-");
+printf("\n Induced EMF, E = %.2f < %.2f pu \n ",abs(E),atand(imag(E),real(E)))
+printf("\n The field current required for %.2f pu voltage on air gap line %.1f pu \n",abs(E),a)
diff --git a/Working_Examples/2777/CH6/EX6.16/Ex6_16.sce b/Working_Examples/2777/CH6/EX6.16/Ex6_16.sce new file mode 100755 index 0000000..a7e20a6 --- /dev/null +++ b/Working_Examples/2777/CH6/EX6.16/Ex6_16.sce @@ -0,0 +1,51 @@ +
+// ELECTRICAL MACHINES
+// R.K.Srivastava
+// First Impression 2011
+// CENGAGE LEARNING INDIA PVT. LTD
+
+// CHAPTER : 6 : SYNCHRONOUS MACHINES
+
+// EXAMPLE : 6.16
+
+clear ; clc ; close ; // Clear the work space and console
+
+
+// GIVEN DATA
+
+
+V = 440; // Operating voltage of the alternator in Volts
+VA = 20*10^3; // VA rating of the alternator in Volts-Amphere
+f = 50; // Operating Frequency of the alternator in Hertz
+N = 3000; // Rotation of the alternator in RPM
+Ra = 0.0; // Armature reistance in Ohms
+xl = 0.6; // Armature reactances in Ohms
+pf = 0.8; // Power factor lagging
+pfa = acosd(pf); // ower factor angle in deg
+p = (120*f)/N; // Number of poles
+w = (2*%pi*f); // Rotation speed in Radians per second
+v = V/sqrt(3); // Rated phase voltage in Volts
+I = VA/(sqrt(3)*V); // Rated curent in Amphere
+If = I; // Given field current = armature current from SCC test in Amphere
+E = 16*If; // Open-circuit EMF at field current in Volts given from Equation E = 16If refer page no. 431
+xs = E/(If*sqrt(3)); // Synchronous reactance in Ohms
+Eo = sqrt((v+I*xs*sind(pfa))^2 + (I*xs*cosd(pfa))^2); // Induced EMF in Volts
+pa = atand(193.98/399.49); // From above equation Eo
+pr = ((Eo-v)/v)*100; // Percent regulation
+P = (3*v*Eo*sind(pa))/(xs*1000); // Power inKilo-Watts
+T = (P*1000)/w; // Torque devolped in Newton-meter
+
+
+// DISPLAY RESULTS
+
+disp("EXAMPLE : 6.16: SOLUTION :-");
+printf("\n Induced EMF, EMF = %.f V \n",Eo)
+printf("\n Power angle = %.2f degree \n",pa)
+printf("\n Power, P = %.3f kW \n",P)
+printf("\n Counter Torque, T = %.2f N-m \n",T)
+printf("\n\n [ TEXT BOOK SOLUTION IS PRINTED WRONGLY ( I verified by manual calculation )]\n" );
+printf("\n WRONGLY PRINTED ANSWERS ARE :- \n (a) Induced EMF, EMF = 471 V instead of %.f V \n",Eo)
+printf("\n (b) Power angle = 18.05 degree instead of %.2f degree \n",pa)
+printf("\n (c) Power, P = 12.003 kV instead of %.3f kW \n",P)
+printf("\n (d) Counter Torque, T = 38.23 N-m instead of %.2f N-m \n",T)
+printf("\n From Calculation of the Induced EMF(E), rest all the Calculated values in the TEXT BOOK is WRONG because of the Induced EMF(E) value is WRONGLY calculated and the same used for the further Calculation part \n")
diff --git a/Working_Examples/2777/CH6/EX6.17/Ex6_17.sce b/Working_Examples/2777/CH6/EX6.17/Ex6_17.sce new file mode 100755 index 0000000..16e28f5 --- /dev/null +++ b/Working_Examples/2777/CH6/EX6.17/Ex6_17.sce @@ -0,0 +1,59 @@ +
+// ELECTRICAL MACHINES
+// R.K.Srivastava
+// First Impression 2011
+// CENGAGE LEARNING INDIA PVT. LTD
+
+// CHAPTER : 6 : SYNCHRONOUS MACHINES
+
+// EXAMPLE : 6.17
+
+clear ; clc ; close ; // Clear the work space and console
+
+
+// GIVEN DATA
+
+
+V = 440; // Operating voltage of the Synchronous Motor in pu
+E = 200; // Induced voltage in Volts
+xs = 8.0; // Synchronous reactance in Ohms
+f = 50; // Frequency in Hertz
+pa = 36; // Power angle in degree
+
+
+// CALCULATIONS
+
+v = V/sqrt(3); // Rated phase voltage in Volts
+ws = 2*%pi*f; // Synchronous speed in Radians per second
+// To calculate the power factor angle refer page no 438 n figure 6.50
+// Since E*cos(delta) < v so Power factor is lagging, let power factor angle be theta from ohasor diagram figure 6.50:- page no. 438
+// v = E*cos(delta) + I*xs*sin(theta), I*sin(theta) = (254-0.809*200)/8 = 11.525
+// Similarly, E*sin(delta) = I*xs*cos(theta), I*cos(theta) = (200*0.59)8 = 14.70
+// From above two equations, tan(theta) = 0.784
+theta = -38.1; // Power factor angle in degree (minus sign because of lagging)
+pf = cosd(theta); // Power factor lagging
+I = 14.7/cosd(theta); // Line current in Amphere (I*cos(theta) = 14.7)
+p = 3 * v * 14.7; // Input to motor in watts ( p = 3*V*I*cos(theta), I*cos(theta) = 14.7)
+P = (3*E*v*sind(pa))/(xs*1000); // Power in Kilo-watts
+T = (P*1000)/ws; // Torque in Newton-meter
+// For Power factor unity
+// let the current will be I2, thus 3*v*I2 = 3*v*I*cos(theta) , I2 = I*cos(theta) = 14.10 A
+// let ecitation will be E2, thus v = E2*cos(delta2) and E2*sin(delta2) = I2*xs, E2*cos(delta2) = 254 and E2*sin(delta2) = 117.60, by solving these two equations we get E2 = sqrt(254^2+117.6^2) = 279.90 V and delta2 = atand(117.6/254) = 24.84 degree
+E2 = 279.90;
+delta2 = 24.84;
+P_1 = (3*v*E2*sind(delta2))/(xs*1000); // Power in kilo-watts
+T_1 = (P_1*1000)/ws; // Torque in Newton-meter
+
+
+// DISPLAY RESULTS
+
+disp("EXAMPLE : 6.17: SOLUTION :-");
+printf("\n (a) Line current, I = %.2f A \n",I)
+printf("\n (b) Power factor angle = %.1f degree \n",theta)
+printf("\n (c) Power , P = %.3f kW \n",P)
+printf("\n (d) Torque , T = %.2f N-m \n",T)
+printf("\n (e) Power factor = %.2f lagging \n",pf)
+printf("\n To make the Power factor to UNITY requirements are:- \n (a) Excitation EMF, E = %.2f V \n",E2)
+printf("\n (b) Power angle = %.2f degree \n",delta2)
+printf("\n (c) Power , P = %.3f kW \n",P_1)
+printf("\n (d) Torque , T = %.2f N-m \n",T_1)
diff --git a/Working_Examples/2777/CH6/EX6.18/Ex6_18.sce b/Working_Examples/2777/CH6/EX6.18/Ex6_18.sce new file mode 100755 index 0000000..aec7ef6 --- /dev/null +++ b/Working_Examples/2777/CH6/EX6.18/Ex6_18.sce @@ -0,0 +1,51 @@ +
+// ELECTRICAL MACHINES
+// R.K.Srivastava
+// First Impression 2011
+// CENGAGE LEARNING INDIA PVT. LTD
+// CHAPTER : 6 : SYNCHRONOUS MACHINES
+
+// EXAMPLE : 6.18
+
+clear ; clc ; close ; // Clear the work space and console
+
+
+// GIVEN DATA
+
+
+v = 1100; // Operating voltage of the Synchronous Motor in Volts
+p = 4; // Total number of Poles
+m = 3; // number of phase
+xs = 5.0; // Synchrouons reactances in Ohms
+f = 50; // Frequency in Hertz
+delta = 9; // Power angle in degree
+p_hp = 150; // Motor delivering power in HP
+eta = 89/100; // Efficiency of motor
+
+
+// CALCULATIONS
+
+V = v/sqrt(3); // Phase voltage in Volts
+ws = (4*%pi*f)/p; // Synchronous speed in Radians per second
+// We have (746*150)/0.89) = 125730.34 W = sqrt(3)*1100*I*cos(theta) refer page no. 440, thus we get I*cos(theta) = 12530.34/(1100*sqrt(3)) = 65.99 and E*sin(delta) = I*xs*cos(theta)
+E = (xs*65.99)/sind(delta); // Exitation EMF per phase in Volts
+// since E*cos(delta) > V, therefore the machine is over excited and power factor is leading, thus we get V = E*cos(delta) + I*xs*sin(theta), I*sin(theta) = (635.1-2109.2*cos(9)/5 = -289.586 and we have I*cos(theta) = 65.99 thus by solving these two equations we get theta = atand(-286.586/65.99) = 77.16 degre
+theta = 77.16; // Power factor angle in degree
+I = 65.99/cosd(theta); // Current in Amphere
+pf = cosd(theta); // Power factor leading
+P = (3*V*E*sind(delta))/(xs*1000); // Power in kilo-Watts
+T = (P*1000)/ws; // torque in Newton-meter
+
+
+// DISPLAY RESULTS
+
+disp("EXAMPLE : 6.18: SOLUTION :-");
+printf("\n (a) Excitation EMF, E = %.1f V \n",E)
+printf("\n (b) Line current, I = %.2f A \n",I)
+printf("\n (c) Power factor = %.3f leading \n",pf)
+printf("\n (d) Power , P = %.4f kW \n",P)
+printf("\n (e) Torque , T = %.2f N-m \n",T)
+printf("\n\n [ TEXT BOOK SOLUTION IS PRINTED WRONGLY ( I verified by manual calculation )]\n" );
+printf("\n WRONGLY PRINTED ANSWERS ARE :- \n (a) Power , P = 13.0667 kW instaed of %.4f kW \n",P)
+printf("\n (b) Torque , T = 83.22 N-m instaed of %.2f N-m \n",T)
+printf("\n From Calculation of the Power(P), rest all the Calculated values in the TEXT BOOK is WRONG because of the Power(P) value is WRONGLY calculated and the same used for the further Calculation part \n")
diff --git a/Working_Examples/2777/CH6/EX6.19/Ex6_19.sce b/Working_Examples/2777/CH6/EX6.19/Ex6_19.sce new file mode 100755 index 0000000..c80914d --- /dev/null +++ b/Working_Examples/2777/CH6/EX6.19/Ex6_19.sce @@ -0,0 +1,47 @@ +
+// ELECTRICAL MACHINES
+// R.K.Srivastava
+// First Impression 2011
+// CENGAGE LEARNING INDIA PVT. LTD
+// CHAPTER : 6 : SYNCHRONOUS MACHINES
+
+// EXAMPLE : 6.19
+
+clear ; clc ; close ; // Clear the work space and console
+
+
+// GIVEN DATA
+
+v = 440; // Operating voltage of the Synchronous Motor in Volts
+p = 6; // Total number of Poles
+m = 3; // Number of phase
+xs = 5; // Synchrouons reactances per phase in Ohms
+f = 50; // Frequency in Hertz
+p_hp = 10; // Motor delivering power in HP
+loss = 1000; // Total iron,copper and friction losses in Watts
+pf = 0.8; // Power factor lagging
+I = 10; // Motor drawing current in Amphere at 0.8 PF lagging
+
+
+// CALCULATIONS
+
+V = v/sqrt(3); // Phase voltage in Volts
+ws = (4*%pi*f)/p; // Synchronous speed in Radians per second
+theta = acosd(pf); // Power factor angle in degree
+Po = p_hp*746; // Output power in Watts
+Pi = Po+loss; // Input power in Watts
+eta = (Po/Pi)*100; // Efficiency
+// we have V = E*cos(delta) - I*xs*sin(theta), 254 = E*cos(delta) - 5*10*0.6, so E*cos(delta) = 254 + 30 = 284 and E*sin(delta) = I*xs*cos(theta) = 5*10*0.8 = 40 by solving these two equations we get delta = atand(40/284) = 8.01 degree
+delta = 8.01; // Power angle in degree
+E = 40/sind(delta); // Induced EMF per phase in Volts
+P = (3*V*E*sind(delta))/(xs*1000); // Power in Kilo-watts
+T = (P*1000)/ws; // Torque in Newton-meter
+
+
+// DISPLAY RESULTS
+
+disp("EXAMPLE : 6.19: SOLUTION :-");
+printf("\n (a) Efficiency, eta = %.2f Percent \n",eta)
+printf("\n (b) Induced EMF, E = %.f V per phase and \n\n Power (Torque) angle = %.2f degree \n",E,delta)
+printf("\n (c) Power , P = %.4f kW \n",P)
+printf("\n (d) Torque , T = %.2f N-m \n",T)
diff --git a/Working_Examples/2777/CH6/EX6.2/Ex6_2.sce b/Working_Examples/2777/CH6/EX6.2/Ex6_2.sce new file mode 100755 index 0000000..4884b1f --- /dev/null +++ b/Working_Examples/2777/CH6/EX6.2/Ex6_2.sce @@ -0,0 +1,30 @@ +
+// ELECTRICAL MACHINES
+// R.K.Srivastava
+// First Impression 2011
+// CENGAGE LEARNING INDIA PVT. LTD
+
+// CHAPTER : 6 : SYNCHRONOUS MACHINES
+
+// EXAMPLE : 6.2
+
+clear ; clc ; close ; // Clear the work space and console
+
+
+// GIVEN DATA
+
+f = 60; // Generating Frequency in Hertz
+Ns = 1200; // Synchronous speed in RPM
+Ns_r = 1000; // Alternator running speed in RPM
+
+
+// CALCULATIONS
+
+p = (120*f)/Ns; // Total number of poles
+f_r = (p*Ns_r)/120; // Alternator running frequency in Hertz
+
+
+// DISPLAY RESULTS
+
+disp("EXAMPLE : 6.2 : SOLUTION :-") ;
+printf("\n Alternator running frequency, f = %.f Hz \n ",f_r);
diff --git a/Working_Examples/2777/CH6/EX6.20/Ex6_20.sce b/Working_Examples/2777/CH6/EX6.20/Ex6_20.sce new file mode 100755 index 0000000..d3f8b1a --- /dev/null +++ b/Working_Examples/2777/CH6/EX6.20/Ex6_20.sce @@ -0,0 +1,73 @@ +
+// ELECTRICAL MACHINES
+// R.K.Srivastava
+// First Impression 2011
+// CENGAGE LEARNING INDIA PVT. LTD
+// CHAPTER : 6 : SYNCHRONOUS MACHINES
+
+// EXAMPLE : 6.20
+
+clear ; clc ; close ; // Clear the work space and console
+
+
+// GIVEN DATA
+
+
+v = 11*10^3; // Operating voltage of the Synchronous Motor in Volts
+p = 4; // Total number of Poles
+m = 3; // number of phase
+xs = 7; // Synchrouons reactances per phase in Ohms
+f = 50; // Frequency in Hertz
+KVA = 1500; // KVA rating (whole)
+kva = 500; // Each case KVA rating
+
+
+// CALCULATIONS
+
+V = v/sqrt(3); // Phase voltage in Volts
+ws = (4*%pi*f)/p; // Synchronous speed in Radians per second
+I = (sqrt(3)*kva)/v; // Phase Current in Amphere
+
+// For Case (a) 0.8 pf lagging
+
+pf_a = 0.8; // Power factor lagging
+pfa_a = acosd(pf_a); // Power factor angle in degree
+// we have E*cos(delta) = V - I*xs*sin(theta) = 6351-78.73*7*0.6 = 6020.334 and E*sin(delta) = I*xs*cos(theta) = 78.73*7*0.8 = 440.888 thus we get by sloving these two equatins E = 6036.46 V and delta = atand(440.888/6020.334) = 4.19 degree
+E_a = 6036.46; // Induced Voltage in Volts
+delta_a = 4.19; // Power angle in degree
+P_a = (3*V*E_a*sind(delta_a))/(xs*10^6); // Power in Mega-Watts
+T_a = (P_a*10^6)/ws; // Torque in Newton-meter
+
+// For Case (b) 0.8 pf leading
+
+pf_b = 0.8; // Power factor lagging
+pfa_b = acosd(pf_b); // Power factor angle in degree
+// we have E*cos(delta) = V + I*xs*sin(theta) = 6351+78.73*7*0.6 = 6681.666 and E*sin(delta) = I*xs*cos(theta) = 78.73*7*0.8 = 440.888 thus we get by sloving these two equatins E = 6696.2 V and delta = atand(440.888/6681.666) = 3.78 degree
+E_b = 6696.2; // Induced Voltage in Volts
+delta_b = 3.78; // Power angle in degree
+P_b = (3*V*E_b*sind(delta_b))/(xs*10^6); // Power in Mega-Watts
+T_b = (P_b*10^6)/ws; // Torque in Newton-meter
+
+// For Case (c) UPf
+
+pf_c = 1.0; // Power factor lagging
+pfa_c = acosd(pf_c); // Power factor angle in degree
+// we have E*cos(delta) = V = 6351 and E*sin(delta) = I*xs = 78.73*7 = 551.11 thus we get by sloving these two equatins E = 6374.9 V and delta = atand(551.11/6351) = 4.96 degree
+E_c = 6374.9; // Induced Voltage in Volts
+delta_c = 4.96; // Power angle in degree
+P_c = (3*V*E_c*sind(delta_c))/(xs*10^6); // Power in Mega-Watts
+T_c = (P_c*10^6)/ws; // Torque in Newton-meter
+
+
+// DISPLAY RESULTS
+
+disp("EXAMPLE : 6.20: SOLUTION :-");
+printf("\n For Case (a) 0.80 pf lagging :- \n (a) Induced EMF, E = %.2f V \n",E_a)
+printf("\n (b) Power , P = %.1f MW \n",P_a)
+printf("\n (c) Torque , T = %.2f N-m \n",T_a)
+printf("\n For Case (b) 0.80 pf leading :- \n (a) Induced EMF, E = %.1f V \n",E_b)
+printf("\n (b) Power , P = %.3f MW \n",P_b)
+printf("\n (c) Torque , T = %.2f N-m \n",T_b)
+printf("\n For Case (a) UPf :- \n (a) Induced EMF, E = %.1f V \n",E_c)
+printf("\n (b) Power , P = %.2f MW \n",P_c)
+printf("\n (c) Torque , T = %.f N-m \n",T_c)
diff --git a/Working_Examples/2777/CH6/EX6.21/Ex6_21.sce b/Working_Examples/2777/CH6/EX6.21/Ex6_21.sce new file mode 100755 index 0000000..de2ad26 --- /dev/null +++ b/Working_Examples/2777/CH6/EX6.21/Ex6_21.sce @@ -0,0 +1,55 @@ +
+// ELECTRICAL MACHINES
+// R.K.Srivastava
+// First Impression 2011
+// CENGAGE LEARNING INDIA PVT. LTD
+
+// CHAPTER : 6 : SYNCHRONOUS MACHINES
+
+// EXAMPLE : 6.21
+
+clear ; clc ; close ; // Clear the work space and console
+
+
+// GIVEN DATA
+
+v = 440; // Operating voltage of the Synchronous Motor in Volts
+f = 50; // Operating Frequency of the Synchronous Motor in Hertz
+xd = 10; // Direct axis reactances in Ohms
+xq = 7.0; // Quadrature axis reactances in Ohms
+p = 6; // Total number of Poles
+pf = 0.8; // Power factor lagging
+i = 10; // Motor drawing current in Amphere
+
+
+// CALCULATIONS
+
+V = v/sqrt(3); // Phase voltage in Volts
+ws = (4*%pi*f)/p; // Synchronous speed in Radians per second
+theta = acosd(pf); // Power factor angle in degree
+I = 10*(cosd(theta)+(%i*sind(theta))); // Motor drawing current in Amphere at 0.8 PF leading
+delta = atand((i*xq*cosd(theta))/(V+i*xq*sind(theta))); // Power angle for motoring mode in degree
+Iq = i*cosd(theta+delta); // Current in Amphere
+Id = i*sind(theta+delta); // Current in Amphere
+Eo = V*cosd(delta) + Id*xd; // Induced EMF in Volts
+P = ((3*V*Eo*sind(delta))/xd)+(3*V^2*((1/xq)-(1/xd))*sind(2*delta))/2; // Power in Watts
+T = ((3*V*Eo*sind(delta))/(xd*ws))+(3*V^2*((1/xq)-(1/xd))*sind(2*delta))/(2*ws); // Torque in Newton-meter
+
+// when the machine is running as alternator, the magnitude of induced EMF = 323.38V. Let the new current will be Inew at lagging power factor thetanew. Now torque angle is 10.71 deg from phasor diagram Figure 6.51 and page no. 444 we get V+Id*xd*cos(delta)-Iq*xq*sin(delta) = Eo*cos(delta), 254+9.825*Id-1.3Iq = 317.75, 9.825*Id-1.3*Iq = 63.75, 7.56*Id-Iq = 49 and we have Id*xd*sin(delta)+Iq*xq*cosdelta) = Eo*sin(delta), 1.85*Id+6.88*Iq = 60.1, 0.27*Id+Iq = 8.74 by solving these two equations we get Idnew = 123.85/10.095 = 12.27A and Iqnew = 5.43A
+Iqnew = 5.43; // New current in Amphere
+Idnew = 12.27; // New current in Amphere
+Inew = sqrt(Idnew^2 + Iqnew^2); // New total Current in Amphere
+// We know that torque angle, tan(delta) = (I*xd*cos(theta))/(V+I*Xq*sin(theta)) so by calutaion for new power factor angle thetanew we get, tan(10.17) = (13.42*7*cos(thetanew))/(254+13.42*7*sin(thetanew)), 0.189(254+13.42*7*sin(thetanew) = 13.42*7*cos(thetanew), 48-93.94cos(thetanew)+17.75*sin(thetanew) = 0 by solving this equatuon we gwt thetanew = 49.5 lagging
+thetanew = 49.5; // New power factor angle in degree
+pfnew = cosd(thetanew); // Power factor lagging
+
+
+// DISPLAY RESULTS
+
+disp("EXAMPLE : 6.21: SOLUTION :-");
+printf("\n (a) Induced EMF, E = %.2f V \n",Eo)
+printf("\n (b) Power (Torque) angle = %.2f degree \n",delta)
+printf("\n Power , P = %.2f W \n",P)
+printf("\n Torque , T = %.2f N-m \n",T)
+printf("\n (c) when the machine is running as alternator requirements are:- \n\n New Current = %.2f A\n",Inew)
+printf("\n Power factor = %.3f lagging \n",pfnew)
diff --git a/Working_Examples/2777/CH6/EX6.22/Ex6_22.sce b/Working_Examples/2777/CH6/EX6.22/Ex6_22.sce new file mode 100755 index 0000000..2714e32 --- /dev/null +++ b/Working_Examples/2777/CH6/EX6.22/Ex6_22.sce @@ -0,0 +1,42 @@ +
+// ELECTRICAL MACHINES
+// R.K.Srivastava
+// First Impression 2011
+// CENGAGE LEARNING INDIA PVT. LTD
+// CHAPTER : 6 : SYNCHRONOUS MACHINES
+
+// EXAMPLE : 6.22
+
+clear ; clc ; close ; // Clear the work space and console
+
+
+// GIVEN DATA
+
+E1 = 1100 + (%i*0); // EMFs of two identicel synchronous Generators in Volts per phase
+E2 = 1100*(cosd(5)-(%i*sind(5))); // EMF in Volts per phase
+Zl = 1.0 + (%i*1.0); // Load impedance in Ohms per phase
+Zs1 = 0.15 + (%i*2.1); // Synchronous impedance in Ohms per phase
+Zs2 = 0.2 + (%i*3.3); // Synchronous impedance in Ohms per phase
+f = 50; // Frequency in Hertz
+
+
+// CALCULATONS
+
+Ys1 = 1/Zs1; // Synchronous Admittance in Ohms per phase
+Ys2 = 1/Zs2; // Synchronous Admittance in Ohms per ohase
+Yl = 1/Zl; // Load Admittance in Ohms per ohase
+V = ((E1*Ys1)+(E2*Ys2))/(Yl+Ys2+Ys1); // Terminal Voltage in Volts per phase (From Millman's Theorem)
+I1 = (E1-V)/Zs1; // Individual current in Amphere per phase
+I2 = (E2-V)/Zs2; // Individual current in Amphere per phase
+P1 = abs(V)*abs(I1)*cosd(atand(imag(V),real(V))-atand(imag(I1),real(I1))); // Per phase actice power in Watts
+P2 = abs(V)*abs(I2)*cosd(atand(imag(V),real(V))-atand(imag(I2),real(I2))); // Per phase actice power in Watts
+Ic = (E2-E1)/(Zs1+Zs2); // No-load circulating current in Amphere per phase
+
+
+// DISPLAY RESULTS
+
+disp("EXAMPLE : 6.22 : SOLUTION :-");
+printf("\n (a) Terminal Voltage per phase, V = %.2f < %.1f V \n",abs(V),atand(imag(V),real(V)))
+printf("\n (b) Individual currents per phase, I1 = %.f < %.1f A \n\n I2 = %.1f < %.1f A \n",abs(I1),atand(imag(I1),real(I1)),abs(I2),atand(imag(I2),real(I2)))
+printf("\n (c) Per phase Active Power , P1 = %.f W \n\n P2 = %.1f W \n ",P1,P2)
+printf("\n (d) No-load current per phase, Ic = %.2f < %.2f A \n",abs(Ic),atand(imag(Ic),real(Ic)))
diff --git a/Working_Examples/2777/CH6/EX6.23/Ex6_23.png b/Working_Examples/2777/CH6/EX6.23/Ex6_23.png Binary files differnew file mode 100755 index 0000000..f8cb7f6 --- /dev/null +++ b/Working_Examples/2777/CH6/EX6.23/Ex6_23.png diff --git a/Working_Examples/2777/CH6/EX6.23/Ex6_23.sce b/Working_Examples/2777/CH6/EX6.23/Ex6_23.sce new file mode 100755 index 0000000..0fb8aba --- /dev/null +++ b/Working_Examples/2777/CH6/EX6.23/Ex6_23.sce @@ -0,0 +1,49 @@ +
+// ELECTRICAL MACHINES
+// R.K.Srivastava
+// First Impression 2011
+// CENGAGE LEARNING INDIA PVT. LTD
+// CHAPTER : 6 : SYNCHRONOUS MACHINES
+
+// EXAMPLE : 6.23
+
+clear ; clc ; close ; // Clear the work space and console
+
+
+// GIVEN DATA
+
+p = 4; // Number of the poles in the Alternator
+f = 50; // Frequency in Hertz
+pkw = 500; // Alternator delivering load in kilo-watts
+pkwinc = 1000; // Generator increases its share of the common elictrical in kilo-watts
+Kj = 1.5; // Inertia acceleration coefficient for the combined prime mover-alternator in N-m/elec deg/second square
+Kd = 12; // Damping torque coefficient in N-m/elec deg/second
+delta1 = 9; // Initial value of the Power angle in degree
+
+
+// CALCULATIONS
+
+delta2 = (pkwinc/pkw)*delta1; // Final value (maximum value) of the Power angle in degree (considering Linear variation)
+ws = (4*%pi*f)/p; // Rotational speed in Radians per second
+Ts = (pkw*1000)/ws; // Synchornizing torque at 500kW in N-m
+Ks = Ts/delta1; // Synchornizing torque cofficient at 500kW in N-m/elec-deg
+// Laplace transform of the swing Equation can be written as :- s^2 + ((Kd/Kj)*s) + (Ks/Kj) = 0, s^2 + (12/1.5)s + (353.86/1.5) = 0 and compring with the standard equation s^2 + s(2*zeta*Wn) + Wn^2 = 0 we get:- mentined below (refer page no. 454 and 455)
+Wn = sqrt(Ks/Kj); // Natural frequency of oscillations in Radians per second
+fn = Wn/(2*%pi); // Frequency of natural oscillations in Hertz
+zeta = (1*Kd)/(2*Wn*Kj); // Damping ratio
+Wd = Wn*(sqrt(1-zeta^2)); // Frequency of damped oscillations in radians/s
+fd = Wd/(2*%pi); // Frequency of damped oscillations in Hertz
+ts = 5/(zeta*Wn); // Settling time in second
+deltamax = delta1 + 1.42*(delta2-delta1); // The maximum overshoot for damping ratio of 0.2604 is about 42% the maximum appoximate value of the overshoot in terms of 1% tolearance band in Electrical degree
+
+
+// DISPLAY RESULTS
+
+disp("EXAMPLE : 6.23: SOLUTION :-");
+printf("\n (a.1) Final value (maximum value) of the Power angle (considering Linear variation), delta2 = %.f degree \n",delta2)
+printf("\n (a.2) Natural frequency of oscillations, Ns = %.2f radians/s \n",Wn)
+printf("\n (a.3) Damping ratio, zeta = %.4f \n",zeta)
+printf("\n (a.4) Frequency of damped oscillations, Wd = %.2f radians/s \n",Wd)
+printf("\n (a.5) Settling time, ts = %.2f seconds \n",ts)
+printf("\n (b) The maximum overshoot for damping ratio of 0.2604 is about 42 percent the maximum appoximate value of the overshoot in terms of 1 percent tolearance band is, deltamax = %.2f degree \n",deltamax)
+printf("\n\n FOR CASE (C) CANNOT BE DO IT IN THIS BECAUSE AS IT REQUIRES MATLAB SIMULINK \n")
diff --git a/Working_Examples/2777/CH6/EX6.23/Ex6_23.xcos b/Working_Examples/2777/CH6/EX6.23/Ex6_23.xcos new file mode 100755 index 0000000..fdebe0f --- /dev/null +++ b/Working_Examples/2777/CH6/EX6.23/Ex6_23.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" title="Ex6_23"><!--Xcos - 1.0 - scilab-5.5.2 - 20160406 2040--><Array as="context" scilabClass="String[]"><add value="k=0.2604"/><add value="w=14.83"/></Array><mxGraphModel as="model"><root><mxCell id="6521d368:1479034e794:-7f9f"/><mxCell id="6521d368:1479034e794:-7fa0" parent="6521d368:1479034e794:-7f9f"/><BasicBlock dependsOnT="1" id="6521d368:1479034e794:-7f86" interfaceFunctionName="CLR" ordering="1" parent="6521d368:1479034e794:-7fa0" simulationFunctionName="csslti4" simulationFunctionType="C_OR_FORTRAN" style="CLR;flip=false;mirror=false"><ScilabString as="exprs" height="2" width="1"><data column="0" line="0" value="1"/><data column="0" line="1" value="s^2+2*k*w*s+w^2"/></ScilabString><ScilabDouble as="realParameters" height="9" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="-219.9289"/><data column="0" line="2" realPart="1.0"/><data column="0" line="3" realPart="-7.723464000000001"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="1.0"/><data column="0" line="6" realPart="1.0"/><data column="0" line="7" realPart="0.0"/><data column="0" line="8" realPart="0.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="state" height="2" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="50.0" width="210.0" x="170.0" y="150.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1ed01205:147908cd41d:-7e4b" ordering="1" parent="6521d368:1479034e794:-7f86" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1ed01205:147908cd41d:-7e4a" ordering="1" parent="6521d368:1479034e794:-7f86" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="210.0" y="16.0"/></ExplicitOutputPort><BasicBlock blockType="d" id="6521d368:1479034e794:-7f7b" interfaceFunctionName="CONST" ordering="2" parent="6521d368:1479034e794:-7fa0" simulationFunctionName="cstblk4" simulationFunctionType="C_OR_FORTRAN" style="CONST;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="3184.7"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="3184.7"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="70.0" y="150.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="6521d368:1479034e794:-7f57" ordering="1" parent="6521d368:1479034e794:-7f7b" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ExplicitLink id="6521d368:1479034e794:-7f60" parent="6521d368:1479034e794:-7fa0" source="6521d368:1479034e794:-7f57" target="-1ed01205:147908cd41d:-7e4b"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="110.0" y="170.0"/><mxPoint as="targetPoint" x="210.0" y="170.0"/></mxGeometry></ExplicitLink><BasicBlock dependsOnU="1" id="-1ed01205:147908cd41d:-7eff" interfaceFunctionName="CSCOPE" ordering="3" parent="6521d368:1479034e794:-7fa0" simulationFunctionName="cscope" simulationFunctionType="C_OR_FORTRAN" style="CSCOPE;flip=false;mirror=false"><ScilabString as="exprs" height="10" width="1"><data column="0" line="0" value="1 3 5 7 9 11 13 15"/><data column="0" line="1" value="-1"/><data column="0" line="2" value="[]"/><data column="0" line="3" value="[600;400]"/><data column="0" line="4" value="9"/><data column="0" line="5" value="25"/><data column="0" line="6" value="2"/><data column="0" line="7" value="30"/><data column="0" line="8" value="0"/><data column="0" line="9" value=""/></ScilabString><ScilabDouble as="realParameters" height="4" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="9.0"/><data column="0" line="2" realPart="25.0"/><data column="0" line="3" realPart="2.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="15" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="30.0"/><data column="0" line="3" realPart="1.0"/><data column="0" line="4" realPart="3.0"/><data column="0" line="5" realPart="5.0"/><data column="0" line="6" realPart="7.0"/><data column="0" line="7" realPart="9.0"/><data column="0" line="8" realPart="11.0"/><data column="0" line="9" realPart="13.0"/><data column="0" line="10" realPart="15.0"/><data column="0" line="11" realPart="-1.0"/><data column="0" line="12" realPart="-1.0"/><data column="0" line="13" realPart="600.0"/><data column="0" line="14" realPart="400.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="430.0" y="150.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="9df4a92:166ce22b39e:-7f7d" ordering="1" parent="-1ed01205:147908cd41d:-7eff" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ControlPort dataType="UNKNOW_TYPE" id="9df4a92:166ce22b39e:-7f7c" ordering="1" parent="-1ed01205:147908cd41d:-7eff" style="ControlPort;align=center;verticalAlign=top;spacing=10.0;rotation=90"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><mxCell connectable="0" id="-1ed01205:147908cd41d:-7eff#identifier" parent="-1ed01205:147908cd41d:-7eff" style="noLabel=0;opacity=0;" vertex="1"><mxGeometry as="geometry" relative="1" x="0.5" y="1.1"/></mxCell><BasicBlock blockType="h" id="-1ed01205:147908cd41d:-7efa" interfaceFunctionName="CLOCK_c" ordering="4" parent="6521d368:1479034e794:-7fa0" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="1.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="179.0"/><data column="1" line="0" realPart="-210.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="507f9e24:14797a76a04:-7f47"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="507f9e24:14797a76a04:-7f47"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.1"/><data column="0" line="1" value="0.1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.1"/><data column="0" line="1" realPart="0.1"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.1"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="507f9e24:14797a76a04:-7f45"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="507f9e24:14797a76a04:-7f45"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="222.3773266666667"/><data column="1" line="0" realPart="-268.3333333333333"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="7.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="5.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="507f9e24:14797a76a04:-7f42"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="507f9e24:14797a76a04:-7f42"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="220.0"/><data column="0" line="2" realPart="232.8773266666667"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-44.0"/><data column="0" line="1" realPart="-300.0"/><data column="0" line="2" realPart="-257.3333333333333"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="231.71066000000005"/><data column="0" line="1" realPart="209.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-272.3333333333333"/><data column="0" line="1" realPart="-186.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="234.04399333333336"/><data column="0" line="1" realPart="260.71"/><data column="0" line="2" realPart="220.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-272.3333333333333"/><data column="0" line="1" realPart="-170.0"/><data column="0" line="2" realPart="-170.0"/><data column="0" line="3" realPart="4.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="430.0" y="30.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="-1ed01205:147908cd41d:-7ef9" ordering="1" parent="-1ed01205:147908cd41d:-7efa" style="CommandPort;align=center;verticalAlign=bottom;spacing=10.0;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><ExplicitLink id="-1ed01205:147908cd41d:-7ef3" parent="6521d368:1479034e794:-7fa0" source="-1ed01205:147908cd41d:-7e4a" target="9df4a92:166ce22b39e:-7f7d"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="380.0" y="170.0"/><mxPoint as="targetPoint" x="420.0" y="170.0"/></mxGeometry></ExplicitLink><CommandControlLink id="-1ed01205:147908cd41d:-7ef2" parent="6521d368:1479034e794:-7fa0" source="-1ed01205:147908cd41d:-7ef9" target="9df4a92:166ce22b39e:-7f7c"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="450.0" y="150.0"/><mxPoint as="targetPoint" x="450.0" y="50.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="450.0" y="80.0"/></Array></mxGeometry></CommandControlLink><BasicBlock blockType="h" id="-1ed01205:147908cd41d:-7eeb" interfaceFunctionName="ENDBLK" ordering="5" parent="6521d368:1479034e794:-7fa0" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="ENDBLK;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="ENDBLK"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-4"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=" "/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="2"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"END_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="END_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="scicosexit"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="507f9e24:14797a76a04:-7f38"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="END_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="507f9e24:14797a76a04:-7f38"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="6" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="220.0"/><data column="0" line="2" realPart="189.73333000000002"/><data column="0" line="3" realPart="189.73333000000002"/><data column="0" line="4" realPart="220.0"/><data column="0" line="5" realPart="60.0"/></ScilabDouble><ScilabDouble height="6" width="1"><data column="0" line="0" realPart="-44.0"/><data column="0" line="1" realPart="-254.66666000000004"/><data column="0" line="2" realPart="-254.66666000000004"/><data column="0" line="3" realPart="-183.53333000000003"/><data column="0" line="4" realPart="-183.53333000000003"/><data column="0" line="5" realPart="4.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="440.0" y="310.0"/></BasicBlock></root></mxGraphModel><mxCell as="defaultParent" id="6521d368:1479034e794:-7fa0" parent="6521d368:1479034e794:-7f9f"/></XcosDiagram>
\ No newline at end of file diff --git a/Working_Examples/2777/CH6/EX6.25/Ex6_25.sce b/Working_Examples/2777/CH6/EX6.25/Ex6_25.sce new file mode 100755 index 0000000..1259182 --- /dev/null +++ b/Working_Examples/2777/CH6/EX6.25/Ex6_25.sce @@ -0,0 +1,46 @@ +
+// ELECTRICAL MACHINES
+// R.K.Srivastava
+// First Impression 2011
+// CENGAGE LEARNING INDIA PVT. LTD
+
+// CHAPTER : 6 : SYNCHRONOUS MACHINES
+
+// EXAMPLE : 6.25
+
+clear ; clc ; close ; // Clear the work space and console
+
+
+// GIVEN DATA
+
+v = 440; // Operating voltage of the Synchronous generator in Volts
+f = 50; // Operating Frequency of the Synchronous generator in Hertz
+m = 3; // Total number of Phase
+pf = 0.8; // Power factor lagging
+Il = 100; // Motor drawing current in Amphere
+xs = 2; // Synchronous reactances in Ohms
+delta = 20; // Power angle in degree
+P = 50*10^3; // Total Power developed by the motor in Watts
+Ppp = (50*10^3)/3; // Power developed by the motor per phase in Watts
+
+
+// CALCULATIONS
+
+V = v/sqrt(3); // Phase voltage in Volts
+Eo = (Ppp*xs)/(3*V*sind(delta)); // Per phase Induced voltage in Volts
+// Let us assume thetam is Power factor angle in degree and Im is the Motor current now, from phasor diagram figure 6.67 page no. 465 we get, Eo*cosd(delta) = V+Im*xs*sind(thetam), Im*sind(thetam) = ((383.84*cosd(20))-254.03)/2 = 53.35 and Im*xs*cosd(thetam) = Eo*sin(delta), Im*cosd(theta) = ((383.84*sind(20))/2 = 65.60 by sloving these two equations we get Im = sqrt(65.60^2 + 53.35^2) = 84.56 A and thetam = atand(53.35/65.60) = 39.13 degree
+Im = sqrt(65.60^2 + 53.35^2); // Motor current in Amphere
+thetam = atand(53.35/65.60); // Power factor angle in degree
+kVA = (sqrt(3)*V*Im*sind(thetam))/1000; // Rective kVA of the motor in kVAR
+thetal = acosd(pf); // Load power factor angle in degree
+thetaR = atand((Im*sind(thetam)-Il*sind(thetal))/(Im*cosd(thetam)+Il*cosd(thetal))); // Resultant Power factor angle in degree
+ovpf = cosd(thetaR); // Overall Power factor lagging
+IR = sqrt((Im*sind(thetam)-Il*sind(thetal))^2 + (Im*cosd(thetam)+Il*cosd(thetal))^2); // Resultant (magnitude) current in Amphere refer phasor diagram figure 6.69 page no. 467
+
+
+// DISPLAY RESULTS
+
+disp("EXAMPLE : 6.25: SOLUTION :-");
+printf("\n (a) Rective kVA of the motor = %.3f kVAR \n",kVA)
+printf("\n (b) Overall Power factor of the load and motor = %.4f lagging and \n",ovpf)
+printf("\n Resultant (magnitude) current = %.2f A \n",IR)
diff --git a/Working_Examples/2777/CH6/EX6.27/Ex6_27.sce b/Working_Examples/2777/CH6/EX6.27/Ex6_27.sce new file mode 100755 index 0000000..e2a3646 --- /dev/null +++ b/Working_Examples/2777/CH6/EX6.27/Ex6_27.sce @@ -0,0 +1,52 @@ +
+// ELECTRICAL MACHINES
+// R.K.Srivastava
+// First Impression 2011
+// CENGAGE LEARNING INDIA PVT. LTD
+// CHAPTER : 6 : SYNCHRONOUS MACHINES
+
+// EXAMPLE : 6.27
+
+clear ; clc ; close ; // Clear the work space and console
+
+
+// GIVEN DATA
+
+v = 440; // Operating voltage of the Synchronous generator in Volts
+f = 50; // Operating Frequency of the Synchronous generator in Hertz
+m = 3; // Total number of Phase
+xs = 5; // Synchronous reactances in Ohms
+Eo = 500; // Indduced Voltage in Volts per phase
+R1 = 0.1; // Circuit Parameter in Ohms
+R2 = 0.1; // Circuit Parameter in Ohms
+X1 = 1.55; // Circuit Parameter in Ohms
+X2 = 1.55; // Circuit Parameter in Ohms
+s = 0.03; // Slip
+P = 30*10^3; // Total Power developed by the motor in Watts
+
+
+// CALCULATIONS
+
+V = v/sqrt(3); // Phase voltage in Volts
+Ii = V/sqrt((R1+R2/s)^2 + (X1+X2)^2); // Per phase induction motor current in Amphere
+thetal = atand((X1+X2)/(R1+R2/s)); // Power factor angle of the induction motor in degree
+pf = cosd(thetal); // Power factor of the induction motor lagging
+// Let us assume thetam is leading Power factor angle in degree and Im is the synchronous Motor current now, from phasor diagram figure 6.70 page no. 469
+delta = asind((xs*P)/(3*V*Eo)); // Power angle in degree
+// From phasor diagram figure 6.70 page no. 469 we have, Im*xs*cos(thetam) = Eo*sin(delta), Im*cos(delta) = ((500*sind(23.18))/5 = 39.37 and Eo*cosd(delta) = V+Im*xs*sind(thetam), Im*sind(thetam) = ((500*cosd(23.18))-254.03)/5 = 41.12 by sloving these two equations we get Im = sqrt(39.37^2 + 41.12^2) = 56.93 A and thetam = atand(41.12/39.37) = 46.25 degree
+Im = sqrt(39.37^2 + 41.12^2); // Motor current in Amphere
+thetam = atand(41.12/39.37); // Power factor angle in degree
+kVA = (sqrt(3)*V*Im*sind(thetam))/1000; // Rective kVA of the motor in kVAR
+II = Ii * exp( %i * (-thetal) * %pi/180); // Induction Motor current in Amphere
+Im = Im * exp( %i * thetam * %pi/180); // Synchronous Motor current in Amphere
+It = II + Im; // Total per phase current in Amphere
+ovpf = cosd(atand(imag(It),real(It))); // Overall Power factor leading
+
+
+// DISPLAY RESULTS
+
+disp("EXAMPLE : 6.27: SOLUTION :-");
+printf("\n (a) Reactive kVA of the motor = %.3f kVAR \n",kVA)
+printf("\n (b) Individual currents:- \n Induction Motor current, II = %.2f + i(%.2f) A \n\n Synchronous Motor current, Im = %.2f + i(%.2f) A \n",real(II),imag(II),real(Im),imag(Im))
+printf("\n (c) Resultant (overall) current = %.2f < %.2f A \n",abs(It),atand(imag(It),real(It)))
+printf("\n (d) Overall Power factor = %.4f leading \n",ovpf)
diff --git a/Working_Examples/2777/CH6/EX6.28/Ex6_28.sce b/Working_Examples/2777/CH6/EX6.28/Ex6_28.sce new file mode 100755 index 0000000..264cf05 --- /dev/null +++ b/Working_Examples/2777/CH6/EX6.28/Ex6_28.sce @@ -0,0 +1,38 @@ +
+// ELECTRICAL MACHINES
+// R.K.Srivastava
+// First Impression 2011
+// CENGAGE LEARNING INDIA PVT. LTD
+
+// CHAPTER : 6 : SYNCHRONOUS MACHINES
+
+// EXAMPLE : 6.28
+
+clear ; clc ; close ; // Clear the work space and console
+
+
+// GIVEN DATA
+
+
+V = 400; // Operating voltage of the Synchronous generator in Volts
+f = 50; // Operating Frequency of the Synchronous generator in Hertz
+xd = 12; // Direct axis reactances in Ohms
+xq = 5; // Quadrature axis reactances in Ohms
+delta = 15; // Power(Torque) angle in degree
+p = 2; // Number of the poles
+m = 3; // Number of the phase
+
+
+// CALCULATIONS
+
+v = V/sqrt(3); // Rated Phase Votage in Volts
+Ns = (120*f)/p; // Operating speed in RPM
+Ws = (2*%pi*f)/(p/2); // Synchronous speed in radians/s
+T = (3*v^2*sind(2*delta)/(2*Ws))*((1/xq)-(1/xd)); // Developed Torque in Newton-meter
+
+
+// DISPLAY RESULTS
+
+disp("EXAMPLE : 6.28: SOLUTION :-");
+printf("\n (a) Operating speed, Ns = %.f RPM \n",Ns)
+printf("\n (b) Developed Torque , T = %.2f N-m \n",T)
diff --git a/Working_Examples/2777/CH6/EX6.29/Ex6_29.sce b/Working_Examples/2777/CH6/EX6.29/Ex6_29.sce new file mode 100755 index 0000000..ca9535b --- /dev/null +++ b/Working_Examples/2777/CH6/EX6.29/Ex6_29.sce @@ -0,0 +1,46 @@ +
+// ELECTRICAL MACHINES
+// R.K.Srivastava
+// First Impression 2011
+// CENGAGE LEARNING INDIA PVT. LTD
+
+// CHAPTER : 6 : SYNCHRONOUS MACHINES
+
+// EXAMPLE : 6.29
+
+clear ; clc ; close ; // Clear the work space and console
+
+
+// GIVEN DATA
+
+f = 400; // Operating Frequency of the Synchronous generator in Hertz
+Ld = 50*10^-3; // Direct axis reactances in Henry
+Lq = 15*10^-3; // Quadrature axis reactances in Henry
+delta = 15; // Power(Torque) angle in degree
+p = 2; // Number of the poles
+m = 3; // Number of the phase
+I = 10; // Operating current in Amphere
+
+
+// CALCULATIONS
+
+Ns = (120*f)/p; // Operating speed in RPM
+Ws = (2*%pi*f)/(p/2); // Synchronous speed in radians/s
+xd = 2*%pi*f*Ld; // Direct axis reactances in reactance
+xq = 2*%pi*f*Lq; // Quadrature axis reactances in reactance
+E1 = 0; // Induced EMF in Volts (Its ZERO beacuse when field winding current is zero)
+v = xq*I; // Applied voltage in Volts
+T = (3*v^2*sind(2*delta)/(2*Ws))*((1/xq)-(1/xd)); // Developed Torque in Newton-meter
+
+
+// DISPLAY RESULTS
+
+disp("EXAMPLE : 6.29: SOLUTION :-");
+printf("\n (a) Operating speed, Ns = %.f RPM \n",Ns)
+printf("\n (b) Developed Torque , T = %.5f N-m \n",T)
+printf("\n\n [ TEXT BOOK SOLUTION IS PRINTED WRONGLY ( I verified by manual calculation )]\n" );
+printf("\n WRONGLY PRINTED ANSWERS ARE :- (a) xd = 12.56 instead of %.2f Ohms \n ",xd);
+printf("\n (b) xq = 3.768 instead of %.2f Ohms \n ",xq);
+printf("\n (c) v = 36.68 instead of %.2f V \n ",v);
+printf("\n (d) T = 0.07875 instead of %.4f N-m \n ",T);
+printf("\n From Calculation of the d-axis and q-axis reactance (xd and xq respectively), rest all the Calculated values in the TEXT BOOK is WRONG because of the d-axis and q-axis reactance (xd and xq respectively) value is WRONGLY calculated and the same used for the further Calculation part \n")
diff --git a/Working_Examples/2777/CH6/EX6.3/Ex6_3.sce b/Working_Examples/2777/CH6/EX6.3/Ex6_3.sce new file mode 100755 index 0000000..2bb72bf --- /dev/null +++ b/Working_Examples/2777/CH6/EX6.3/Ex6_3.sce @@ -0,0 +1,53 @@ +
+// ELECTRICAL MACHINES
+// R.K.Srivastava
+// First Impression 2011
+// CENGAGE LEARNING INDIA PVT. LTD
+
+// CHAPTER : 6 : SYNCHRONOUS MACHINES
+
+// EXAMPLE : 6.3
+
+clear ; clc ; close ; // Clear the work space and console
+
+
+// GIVEN DATA
+
+p = 2; // Total number of poles
+
+
+// CALCULATIONS
+// For Case(a)
+
+f_a = 10; // Frequency in Hertz
+Ns_a = (120*f_a)/p; // Synchronous speed in RPM
+
+// For Case(b)
+
+f_b = 50; // Frequency in Hertz
+Ns_b = (120*f_b)/p; // Synchronous speed in RPM
+
+// For Case(c)
+
+f_c = 60; // Frequency in Hertz
+Ns_c = (120*f_c)/p; // Synchronous speed in RPM
+
+// For Case(d)
+
+f_d = 100; // Frequency in Hertz
+Ns_d = (120*f_d)/p; // Synchronous speed in RPM
+
+// For Case(e)
+
+f_e = 400; // Frequency in Hertz
+Ns_e = (120*f_e)/p; // Synchronous speed in RPM
+
+
+// DISPLAY RESULTS
+
+disp("EXAMPLE : 6.3 : SOLUTION :-");
+printf("\n For Case (a) When f = %.f, Synchronous speed, Ns = %.f RPM \n",f_a,Ns_a)
+printf("\n For Case (b) When f = %.f, Synchronous speed, Ns = %.f RPM \n",f_b,Ns_b)
+printf("\n For Case (c) When f = %.f, Synchronous speed, Ns = %.f RPM \n",f_c,Ns_c)
+printf("\n For Case (d) When f = %.f, Synchronous speed, Ns = %.f RPM \n",f_d,Ns_d)
+printf("\n For Case (e) When f = %.f, Synchronous speed, Ns = %.f RPM \n",f_e,Ns_e)
diff --git a/Working_Examples/2777/CH6/EX6.30/Ex6_30.sce b/Working_Examples/2777/CH6/EX6.30/Ex6_30.sce new file mode 100755 index 0000000..d2172dd --- /dev/null +++ b/Working_Examples/2777/CH6/EX6.30/Ex6_30.sce @@ -0,0 +1,34 @@ +
+// ELECTRICAL MACHINES
+// R.K.Srivastava
+// First Impression 2011
+// CENGAGE LEARNING INDIA PVT. LTD
+
+// CHAPTER : 6 : SYNCHRONOUS MACHINES
+
+// EXAMPLE : 6.30
+
+clear ; clc ; close ; // Clear the work space and console
+
+
+// GIVEN DATA
+
+f = 50; // Operating Frequency of the Synchronous generator in Hertz
+p = 2; // Number of the poles
+Pt = 800; // Total loss in Watts
+Pr = 10; // Rotational loss in Watts
+
+
+// CALCULATIONS
+
+Ws = (4*%pi*f)/p; // Synchronous speed in radians/s
+Ph = Pt-Pr; // Hysteresis loss refered to stator in Watts
+Th = Ph/Ws; // Torque at the shaft in Newton-meter
+
+
+// DISPLAY RESULTS
+
+disp("EXAMPLE : 6.30: SOLUTION :-");
+printf("\n (a) Power at the shaft, Ph = %.f W \n",Ph)
+printf("\n )b) Torque at the shaft , Th = %.2f N-m \n",Th)
+
diff --git a/Working_Examples/2777/CH6/EX6.31/Ex6_31.sce b/Working_Examples/2777/CH6/EX6.31/Ex6_31.sce new file mode 100755 index 0000000..7cd049b --- /dev/null +++ b/Working_Examples/2777/CH6/EX6.31/Ex6_31.sce @@ -0,0 +1,75 @@ +
+// ELECTRICAL MACHINES
+// R.K.Srivastava
+// First Impression 2011
+// CENGAGE LEARNING INDIA PVT. LTD
+// CHAPTER : 6 : SYNCHRONOUS MACHINES
+
+// EXAMPLE : 6.31
+
+clear ; clc ; close ; // Clear the work space and console
+
+
+// GIVEN DATA
+
+Pi = 2*10^6; // Power input in Volt-Amphere
+v = 6.6*10^3; // Operating voltage in Volts
+
+
+// CALCULATIONS
+
+I = Pi/(v*sqrt(3)); // Rated current in Amphere
+V = v/sqrt(3); // Phase voltage in Volts
+xs = v/(I*sqrt(3)); // Synchronous reactance in Ohms
+
+// For case (a) 0.8 pf lagging
+
+pf_a = 0.8; // Power factor
+pfa_a = acosd(pf_a); // Power factor angle in degree
+a_a = (V + (I*xs*sind(pfa_a)));
+b_a = (I*xs*cosd(pfa_a));
+E_a = sqrt(a_a^2 + b_a^2); // Induced EMF in Volts
+delta_a = atand(b_a/a_a); // Torque (power) angle in degree
+P_a = (3*V*E_a*sind(delta_a))/(xs*10^6); // Power developed in MVA
+
+// For case (b) 0.8 pf leading
+
+pf_b = 0.8; // Power factor
+pfa_b = acosd(pf_b); // Power factor angle in degree
+a_b = (V - (I*xs*sind(pfa_a)));
+b_b = (I*xs*cosd(pfa_b));
+E_b = sqrt(a_b^2 + b_b^2); // Induced EMF in Volts
+delta_b = atand(b_b/a_b); // Torque (power) angle in degree
+P_b = (3*V*E_b*sind(delta_b))/(xs*10^6); // Power developed in MVA
+
+// For case (c) UPF
+
+pf_c = 1.0; // Power factor
+pfa_c = acosd(pf_c); // Power factor angle in degree
+a_c = V;
+b_c = I*xs;
+E_c = sqrt(a_c^2 + b_c^2); // Induced EMF in Volts
+delta_c = atand(b_c/a_c); // Torque (power) angle in degree
+P_c = (3*V*E_c*sind(delta_c))/(xs*10^6); // Power developed in MVA
+
+
+disp("EXAMPLE : 6.31: SOLUTION :-");
+printf("\n For Case (a) 0.80 lagging Power factor \n Induced EMF, EMF = %.2f V \n",E_a)
+printf("\n Power (Torque) angle = %.2f degree \n",delta_a)
+printf("\n Power developed, P = %.1f MVA \n",P_a)
+printf("\n For Case (b) 0.80 leading Power factor \n Induced EMF, EMF = %.f V \n",E_b)
+printf("\n Power (Torque) angle = %.2f degree \n",delta_b)
+printf("\n Power developed, P = %.3f MVA \n",P_b)
+printf("\n For Case (c) Unity Power Factor \n Induced EMF, EMF = %.1f V \n",E_c)
+printf("\n Power (Torque) angle = %.2f degree \n",delta_c)
+printf("\n Power developed, P = %.1f MVA \n",P_c)
+printf("\n\n [ TEXT BOOK SOLUTION IS PRINTED WRONGLY ( I verified by manual calculation )]\n" );
+printf("\n WRONGLY PRINTED ANSWERS ARE :- xs = 20.14 instead of %.2f Ohms \n ",xs);
+printf("\n For Case (a) 0.80 lagging Pf (a.1) E = 6561.42 instead of %.2f V \n ",E_a);
+printf("\n (a.2) delta = 25.45 instead of %.2f degree \n ",delta_a);
+printf("\n For Case (b) 0.80 leading Pf (b.1) E = 3290 instead of %.1f V \n ",E_b);
+printf("\n (b.2) delta = 58.98 instead of %.2f degree \n ",delta_b);
+printf("\n (b.3) Power developed = 1.617 instead of %.3f MVA \n ",P_b);
+printf("\n For Case (c) UPF (c.1) E = 5190.2 instead of %.2f V \n ",E_c);
+printf("\n (c.2) delta = 42.77 instead of %.2f degree \n ",delta_c);
+printf("\n In all the three cases from Calculation of the Synchronous reactance (xs), rest all the Calculated values in the TEXT BOOK is WRONG because of the Synchronous reactance (xs) value is WRONGLY calculated and the same used for the further Calculation part \n")
diff --git a/Working_Examples/2777/CH6/EX6.32/Ex6_32.sce b/Working_Examples/2777/CH6/EX6.32/Ex6_32.sce new file mode 100755 index 0000000..1642d8a --- /dev/null +++ b/Working_Examples/2777/CH6/EX6.32/Ex6_32.sce @@ -0,0 +1,41 @@ +
+// ELECTRICAL MACHINES
+// R.K.Srivastava
+// First Impression 2011
+// CENGAGE LEARNING INDIA PVT. LTD
+
+// CHAPTER : 6 : SYNCHRONOUS MACHINES
+
+// EXAMPLE : 6.32
+
+clear ; clc ; close ; // Clear the work space and console
+
+
+// GIVEN DATA
+// Refer phasor diagram figure 6.76 and page no. 476
+
+pf = 0.8; // Power factor lagging
+pa = acosd(pf); // Power factor angle in degree
+v = 1.0 * exp( %i * pa * %pi/180); // Operating voltage of the alternator in pu
+xd = 0.8; // Direct axis reactances in pu
+xq = 0.4; // Quadrature axis reactances in pu
+I = 1.0; // Current in pu taking this as reference
+
+
+// CALCULATIONS
+
+A = v + (%i*xq*I);
+delta = atand(imag(A),real(A))-pa; // Power angle in degree
+Iq = I * cosd(atand(imag(A),real(A))); // d-axis currents in Amphere
+
+Id = I * sind(atand(imag(A),real(A))); // q-axis currents in Amphere
+E = abs(v)*cosd(delta) + Id*xd; // Induced EMF per phase in Per unit
+pr = ((abs(E)-abs(v))/abs(v))*100; // Percentage regulation
+
+// DISPLAY RESULTS
+
+disp("EXAMPLE : 6.32: SOLUTION :-");
+printf("\n (a) Induced EMF per phase, E = %.4f < %.2f pu \n",E,delta)
+printf("\n (b) Power angle = %.2f degree \n",delta)
+printf("\n (C) Percenatge Regulation, R = %.2f Percent \n",pr)
+printf("\n\n IN THIS PROBLEM PERCENTAGE REGULATION IS NOT CALCULATED IN THE TEXT BOOK\n")
diff --git a/Working_Examples/2777/CH6/EX6.33/Ex6_33.sce b/Working_Examples/2777/CH6/EX6.33/Ex6_33.sce new file mode 100755 index 0000000..27c1e6a --- /dev/null +++ b/Working_Examples/2777/CH6/EX6.33/Ex6_33.sce @@ -0,0 +1,44 @@ +
+// ELECTRICAL MACHINES
+// R.K.Srivastava
+// First Impression 2011
+// CENGAGE LEARNING INDIA PVT. LTD
+
+// CHAPTER : 6 : SYNCHRONOUS MACHINES
+
+// EXAMPLE : 6.33
+
+clear ; clc ; close ; // Clear the work space and console
+
+
+// GIVEN DATA
+
+v = 6.6*10^3; // Operating voltage of the Synchronous motor in Volts
+P = 5*10^6; // Operating power of the Synchronous motor in Watts
+pf = 1.0; // Power factor
+xd = 3.0; // Direct axis reactances in Ohms
+xq = 1.0; // Quadrature axis reactances in Ohms
+eta = 0.98; // OPerating efficiency
+
+
+// CALCULATIONS
+
+V = v/sqrt(3); // Per phase voltage in Volts
+I = P/(eta*v*sqrt(3)); // Line current in Amphere
+delta = atand((xq*I)/v); // power angle in degree
+E = v*cosd(delta) + xd*I*sind(delta); // Induced EMF in Volts
+Tmax = ((3*E*V*sind(90))/xd) + ((3*V^2*sind(180))/2)*((1/xq)-(1/xd)); // Maximum electromagnetic torque in N-m
+T = ((3*E*V*sind(delta))/xd) + ((3*V^2*sind(2*delta))/2)*((1/xq)-(1/xd));
+ // Actual electromagnetic torque in N-m
+Ratio = Tmax/T; // Ratio of the Maximum electromagnetic torque to the actual electromagnetic torque
+
+
+// DISPLAY RESULTS
+
+disp("EXAMPLE : 6.33: SOLUTION :-");
+printf("\n (a) Ratio of the Maximum electromagnetic torque to the actual electromagnetic torque is %.2f \n",Ratio)
+printf("\n\n [ TEXT BOOK SOLUTION IS PRINTED WRONGLY ( I verified by manual calculation )]\n" );
+printf("\n WRONGLY PRINTED ANSWERS ARE :- (a) delta = 2.41 instead of %.2f degree \n ",delta);
+printf("\n (b) E = 6379 instead of %.2f V \n ",E);
+printf("\n (c) Ratio = 10.84 instead of %.2f \n ",Ratio);
+printf("\n From Calculation of the Power angle (delta), rest all the Calculated values in the TEXT BOOK is WRONG because of the Power angle (delta) value is WRONGLY calculated and the same used for the further Calculation part \n")
diff --git a/Working_Examples/2777/CH6/EX6.4/Ex6_4.sce b/Working_Examples/2777/CH6/EX6.4/Ex6_4.sce new file mode 100755 index 0000000..bf5422e --- /dev/null +++ b/Working_Examples/2777/CH6/EX6.4/Ex6_4.sce @@ -0,0 +1,112 @@ +
+// ELECTRICAL MACHINES
+// R.K.Srivastava
+// First Impression 2011
+// CENGAGE LEARNING INDIA PVT. LTD
+
+// CHAPTER : 6 : SYNCHRONOUS MACHINES
+
+// EXAMPLE : 6.4
+
+clear ; clc ; close ; // Clear the work space and console
+
+
+// GIVEN DATA
+
+printf("\n EXAMPLE : 6.4 : \n\n Given Data \n");
+printf("\n Voc(v) 215 284 320 380 400 422 452 472 488 508 520 532 540 552 560 \n");
+printf("\n If(A) 6.5 8 9 10 11 12 14 15 16 17 18 19 20 22 24 \n\n");
+m = 3; // Total Number of phase
+p = 6; // Total number of Poles
+V = 400; // Operating voltage in Volts
+I = 13.5; // Operating current in Amphere
+N = 1000; // Speed in RPM
+Ia_scc = 13.5; // SCC test Armature current in Amphere at If = 9.5 A
+If_scc = 9.5; // SCC test field Rated current in Amphere
+Ia_zpf = 13.5; // ZPF test Armature current in Amphere at If = 24 A
+If_zpf = 24; // ZPF test field Rated current in Amphere
+
+
+// CALCULATIONS
+// Some of the data obtained from OCC and SCC test Graph or Pottier triangle in Figure6.15 & Page no:-386
+Ra = 1.0; // Armature resistance in Ohms
+
+// For case (a)
+
+BC = 120; // Open circuit Voltage in Volts obtained from OCC and SCC test Graph or Pottier triangle Figure6.15 & Page no:-386
+Xl = BC/(sqrt(3)*Ia_scc); // Per phase leakage reactance in Ohms
+
+
+// For Case (b.1) 0.8 pf Lagging
+
+pfa_b1 = acosd(0.8); // Power factor angle in degree
+Er_b1 = (V/sqrt(3))+(Ia_scc*(cosd(pfa_b1)-%i*sind(pfa_b1))*(Ra+%i*Xl)); // Induced Voltage in Volts
+R_b1 = 10; A_b1 = 9.5; //From OCC the field current required for Er_b1 (Should be in Line-line Voltage) Er_b1 = 379.12V will get R_b1 & A_b1 value Respectively from SCC (Figure6.15 & Page no:-386)
+angle_b1 = 136.35; // Angle between R_b1 & A_b1 (figure 6.16(a) & Page no:-388) = 90'+9.48'+36.87' = 136.35'
+F_b1 = sqrt((R_b1^2)+(A_b1^2)-(2*R_b1*A_b1*cosd(angle_b1))); // From phasor diagram in figure 6.16(a) & Page no:-388 the neccessary field excitation in Amphere
+Eo_b1 = 525; // Corresponding to field current F_b1 = 18.12 A the open circuit EMF from OCC is 525 V (Figure6.15 & Page no:-386)
+r_b1 = 100*((Eo_b1-V)/V); // Percentage regulation
+
+
+// For Case (b.2) 0.8 pf Leading
+
+pfa_b2 = acosd(0.8); // Power factor angle in degree
+Er_b2 = (V/sqrt(3))+(Ia_scc*(cosd(pfa_b2)+%i*sind(pfa_b2))*(Ra+%i*Xl)); // Induced Voltage in Volts
+R_b2 = 8.3; A_b2 = 9.5; //From OCC the field current required for Er_b2 (Should be in Line-line Voltage) Er_b1 = 363.71 V will get R_b2 & A_b2 value Respectively from SCC (Figure6.15 & Page no:-386)
+angle_b2 = 70.61; // Angle between R_b2 & A_b2 (figure 6.16(b) & Page no:-388) = 90'+17.48'-36.87' = 70.61'
+F_b2 = sqrt((R_b2^2)+(A_b2^2)-(2*R_b2*A_b2*cosd(angle_b2))); // From phasor diagram in figure 6.16(b) & Page no:-388 the neccessary field excitation in Amphere
+Eo_b2 = 338; // Corresponding to field current F_b2 = 10.36 A the open circuit EMF from OCC is 338 V (Figure6.15 & Page no:-386)
+r_b2 = 100*((Eo_b2-V)/V); // Percentage regulation
+
+
+// For Case (b.3) Unity pf Leading
+
+pfa_b3 = acosd(1.0); // Power factor angle in degree
+Er_b3 = (V/sqrt(3))+(Ia_scc*(cosd(pfa_b3)-%i*sind(pfa_b3))*(Ra+%i*Xl)); // Induced Voltage in Volts
+R_b3 = 13; A_b3 = 9.5; //From OCC the field current required for Er_b3 (Should be in Line-line Voltage) Er_b1 = 440.30 V will get R_b3 & A_b3 value Respectively from SCC (Figure6.15 & Page no:-386)
+angle_b3 = 105.81; // Angle between R_b3 & A_b3 (figure 6.16(c) & Page no:-388) = 90'+15.81' = 105.81'
+F_b3 = sqrt((R_b3^2)+(A_b3^2)-(2*R_b3*A_b3*cosd(angle_b3))); // From phasor diagram in figure 6.16(c) & Page no:-388 the neccessary field excitation in Amphere
+Eo_b3 = 520; // Corresponding to field current F_b2 = 18.10 A the open circuit EMF from OCC is 520 V (Figure6.15 & Page no:-386)
+r_b3 = 100*((Eo_b3-V)/V); // Percentage regulation
+
+
+// For Case (b.4) ZPF Lagging
+
+pfa_b4 = acosd(0); // Power factor angle in degree
+Er_b4 = (V/sqrt(3))+(Ia_scc*(cosd(pfa_b4)-%i*sind(pfa_b4))*(Ra+%i*Xl)); // Induced Voltage in Volts
+R_b4 = 18; A_b4 = 9.5; //From OCC the field current required for Er_b4 (Should be in Line-line Voltage) Er_b4 = 521 V will get R_b4 & A_b4 value Respectively from SCC (Figure6.15 & Page no:-386)
+angle_b4 = 177.57; // Angle between R_b4 & A_b4 = 90'-2.43'+90' = 177.57'
+F_b4 = sqrt((R_b4^2)+(A_b4^2)-(2*R_b4*A_b4*cosd(angle_b4))); // The neccessary field excitation in Amphere
+Eo_b4 = 570; // Corresponding to field current F_b4 = 27.50 A the open circuit EMF from OCC is 525 V (Figure6.15 & Page no:-386)
+r_b4 = 100*((Eo_b4-V)/V); // Percentage regulation
+
+
+// For Case (b.4) ZPF Lagging
+
+pfa_b5 = acosd(0); // Power factor angle in degree
+Er_b5 = (V/sqrt(3))+(Ia_scc*(cosd(pfa_b5)+%i*sind(pfa_b5))*(Ra+%i*Xl)); // Induced Voltage in Volts
+R_b5 = 6.0; A_b5 = 9.50; //From OCC the field current required for Er_b5 (Should be in Line-line Voltage) Er_b5 = 280.70 V will get R_b5 & A_b5 value Respectively from SCC (Figure6.15 & Page no:-386)
+angle_b5 = 4.77; // Angle between R_b5 & A_b5 = 90'-4.77'-90' = 4.77'
+F_b5 = sqrt((R_b5^2)+(A_b5^2)-(2*R_b5*A_b5*cosd(angle_b5))); // The neccessary field excitation in Amphere
+Eo_b5 = 135; // Corresponding to field current F_b4 = 27.50 A the open circuit EMF from OCC is 135 V (Figure6.15 & Page no:-386)
+r_b5 = 100*((Eo_b5-V)/V); // Percentage regulation
+
+
+// DISPLAY RESULTS
+
+disp(" SOLUTION :-");
+printf("\n (a) Per phase leakage reactance, Xl = %.2f Ohms \n",Xl)
+printf("\n For Case (b.1) 0.8 pf Lagging \n Open circuit EMF, EMF = %.f V \n",Eo_b1)
+printf("\n Percenatge Regulation, R = %.2f Percenatge \n",r_b1)
+printf("\n For Case (b.2) 0.8 pf Leading \n Open circuit EMF, EMF = %.f V \n",Eo_b2)
+printf("\n Percenatge Regulation, R = %.1f Percenatge \n",r_b2)
+printf("\n For Case (b.3) Unity pf Lagging \n Open circuit EMF, EMF = %.f V \n",Eo_b3)
+printf("\n Percenatge Regulation, R = %.f Percenatge \n",r_b3)
+printf("\n For Case (b.4) ZPF Lagging \n Open circuit EMF, EMF = %.f V\n",Eo_b4)
+printf("\n Percenatge Regulation, R = %.2f Percenatge \n",r_b4)
+printf("\n For Case (b.5) ZPF Leading \n Open circuit EMF, EMF = %.f V \n",Eo_b5)
+printf("\n Percenatge Regulation, R = %.2f Percenatge \n\n",r_b5)
+disp(" Calculated Answer in Tabular Column")
+printf("\n Power Factor 0.8 Lag 0.8 Lead 1.0 ZPF Lag ZPF Lead \n")
+printf("\n Open circuit EMF (V) %.f %.f %.f %.f %.f \n",Eo_b1,Eo_b2,Eo_b3,Eo_b4,Eo_b5)
+printf("\n Percenatge Regulation %.2f %.1f %.f. %.2f %.2f \n",r_b1,r_b2,r_b3,r_b4,r_b5)
diff --git a/Working_Examples/2777/CH6/EX6.5a/Ex6_5a.sce b/Working_Examples/2777/CH6/EX6.5a/Ex6_5a.sce new file mode 100755 index 0000000..ab6c379 --- /dev/null +++ b/Working_Examples/2777/CH6/EX6.5a/Ex6_5a.sce @@ -0,0 +1,118 @@ +
+// ELECTRICAL MACHINES
+// R.K.Srivastava
+// First Impression 2011
+// CENGAGE LEARNING INDIA PVT. LTD
+
+// CHAPTER : 6 : SYNCHRONOUS MACHINES
+
+// EXAMPLE : 6.5a
+
+clear ; clc ; close ; // Clear the work space and console
+
+
+// GIVEN DATA
+
+printf("\n EXAMPLE : 6.5a( Data is same as Example 6.4): \n\n Given Data \n");
+printf("\n Voc(v) 215 284 320 380 400 422 452 472 488 508 520 532 540 552 560 \n");
+printf("\n If(A) 6.5 8 9 10 11 12 14 15 16 17 18 19 20 22 24 \n\n");
+m = 3; // Total Number of phase in Induction Motor
+p = 6; // Total number of Poles of Induction Motor
+V = 400; // Operating voltage of the Induction motor in Volts
+I = 13.5; // Operating current of the Induction motor in Amphere
+N = 1000; // speed of the Induction motor in RPM
+Ia_scc = 13.5; // SCC test Armature current in Amphere at If = 9.5 A
+If_scc = 9.5; // SCC test field Rated current in Amphere
+Ia_zpf = 13.5; // ZPF test Armature current in Amphere at If = 24 A
+If_zpf = 24; // ZPF test field Rated current in Amphere
+
+
+// CALCULATIONS
+// Some of the data obtained from OCC and SCC test Graph or Pottier triangle in Figure6.15 & Page no:-386
+Ra = 1.0; // Armature resistance in Ohms
+v = V/sqrt(3); // Rated phase Voltage in Volts
+
+// For case (a)
+
+EMF_a1 = 345; // From OCC and SCC test Graph or Pottier triangle in Figure6.15 & Page no:-386 open-circuit line-line voltage per phase is 345vVfor If = 9.50A in Volts
+Zs_a1 = EMF_a1/(Ia_zpf*sqrt(3)); // Unsaturated synchronous impedance at If=9.50A in Ohms
+Xs_a1 = sqrt((Zs_a1^2)-(Ra^2)); // Synchronous reactance at If =9.50A in Ohms
+Ia_a2 = 15.75; // Current from SCC in Figure6.15 & Page no:-386 is 15.75A for correspounding to the rated Voltage in Volts
+Zs_a2 = V/(Ia_a2*sqrt(3)); // Unsaturated synchronous impedance at If=9.50A in Ohms
+Xs_a2 = sqrt((Zs_a2^2)-(Ra^2)); // Synchronous reactance at If =9.50A in Ohms
+
+// For Case (b.1) 0.8 pf Lagging
+
+pfa_b1 = acosd(0.8); // Power factor angle in degree
+real_b1 = (v+Ia_zpf*Ra*cosd(pfa_b1)+Ia_zpf*Xs_a1*sind(pfa_b1));
+imag_b1 = (Ia_zpf*Xs_a1*cosd(pfa_b1)-Ia_zpf*Ra*sind(pfa_b1));
+E_b1 = sqrt(real_b1^2+imag_b1^2); // Induced Voltage pr phase in Volts from Figure6.19 (a) & Page no:-394 shows the phasor diagram for lagging pf
+del_b1 = atand(imag_b1/real_b1); // Power angle in degree
+r_b1 = 100*(E_b1-v)/v; // Percantage regulation
+
+
+// For Case (b.2) 0.8 pf Leading
+
+pfa_b2 = acosd(0.8); // Power factor angle in degree
+real_b2 = (v+Ia_zpf*Ra*cosd(pfa_b2)-Ia_zpf*Xs_a1*sind(pfa_b2));
+imag_b2 = (Ia_zpf*Xs_a1*cosd(pfa_b2)+Ia_zpf*Ra*sind(pfa_b2));
+E_b2 = sqrt(real_b2^2+imag_b2^2); // Induced Voltage pr phase in Volts from Figure6.19 (b) & Page no:-394 shows the phasor diagram for leading pf
+del_b2 = atand(imag_b2/real_b2); // Power angle in degree
+r_b2 = 100*(E_b2-v)/v; // Percantage regulation
+
+
+// For Case (b.3) Unity pf
+
+pfa_b3 = acosd(1.0); // Power factor angle in degree
+real_b3 = (v+Ia_zpf*Ra);
+imag_b3 = (Ia_zpf*Xs_a1);
+E_b3 = sqrt(real_b3^2+imag_b3^2); // Induced Voltage pr phase in Volts from Figure6.19 (a) & Page no:-394 shows the phasor diagram for unity pf
+del_b3 = atand(imag_b3/real_b3); // Power angle in degree
+r_b3 = 100*(E_b3-v)/v; // Percantage regulation
+
+// For Case (b.4) ZPF pf Lagging
+
+pfa_b4 = acosd(0); // Power factor angle in degree
+real_b4 = (v+Ia_zpf*Xs_a1);
+imag_b4 = (-Ia_zpf*Ra);
+E_b4 = sqrt(real_b4^2+imag_b4^2); // Induced Voltage pr phase in Volts ZPF for lagging pf
+del_b4 = atand(imag_b4/real_b4); // Power angle in degree
+r_b4 = 100*(E_b4-v)/v; // Percantage regulation
+
+// For Case (b.5) ZPF pf Leading
+
+pfa_b5 = acosd(0); // Power factor angle in degree
+real_b5 = (v-Ia_zpf*Xs_a1);
+imag_b5 = (Ia_zpf*Ra);
+E_b5 = sqrt(real_b5^2+imag_b5^2); // Induced Voltage pr phase in Volts ZPF for lagging pf
+del_b5 = atand(imag_b5/real_b5); // Power angle in degree
+r_b5 = 100*(E_b5-v)/v; // Percantage regulation
+
+
+
+
+// DISPLAY RESULTS
+
+disp(" SOLUTION :-");
+printf("\n (a.1) Synchronous reactance for rated current at If = %.2f, Xs = %.2f Ohms \n",If_scc,Xs_a1)
+printf("\n (a.2) Synchronous reactance for rated per phase Voltage at v = %.f, Xs = %.2f Ohms \n",v,Xs_a2)
+printf("\n For Case (b.1) 0.8 pf Lagging \n Induced EMF per phase , EMF = %.2f V \n",E_b1)
+printf("\n Percenatge Regulation, R = %.2f Percenatge \n",r_b1)
+printf("\n Power angle = %.2f degree \n",del_b1)
+printf("\n For Case (b.2) 0.8 pf Leading \n Induced EMF per phase, EMF = %.2f V \n",E_b2)
+printf("\n Percenatge Regulation, R = %.2f Percenatge \n",r_b2)
+printf("\n Power angle = %.2f degree \n",del_b2)
+printf("\n For Case (b.3) Unity pf Lagging \n Induced EMF per phase, EMF = %.2f V \n",E_b3)
+printf("\n Percenatge Regulation, R = %.2f Percenatge \n",r_b3)
+printf("\n Power angle = %.2f degree \n",del_b3)
+printf("\n For Case (b.4) ZPF Lagging \n Induced EMF per phase, EMF = %.2f V\n",E_b4)
+printf("\n Percenatge Regulation, R = %.2f Percenatge \n",r_b4)
+printf("\n Power angle = %.1f degree \n",del_b4)
+printf("\n For Case (b.5) ZPF Leading \n Induced EMF per phase, EMF = %.2f V \n",E_b5)
+printf("\n Percenatge Regulation, R = %.2f Percenatge \n",r_b5)
+printf("\n Power angle = %.2f degree \n\n",del_b5)
+disp(" Calculated Answer in Tabular Column")
+printf("\n Power Factor 0.8 Lag 0.8 Lead 1.0 ZPF Lag ZPF Lead \n")
+printf("\n Open circuit EMF (V) %.2f %.2f %.2f %.2f %.2f \n",E_b1,E_b2,E_b3,E_b4,E_b5)
+printf("\n Percenatge Regulation %.2f %.2f %.2f. %.2f %.2f \n",r_b1,r_b2,r_b3,r_b4,r_b5)
+printf("\n Power angle %.2f %.2f %.2f. %.1f %.2f \n",del_b1,del_b2,del_b3,del_b4,del_b5)
diff --git a/Working_Examples/2777/CH6/EX6.6/Ex6_6.sce b/Working_Examples/2777/CH6/EX6.6/Ex6_6.sce new file mode 100755 index 0000000..ec33d7a --- /dev/null +++ b/Working_Examples/2777/CH6/EX6.6/Ex6_6.sce @@ -0,0 +1,106 @@ +
+// ELECTRICAL MACHINES
+// R.K.Srivastava
+// First Impression 2011
+// CENGAGE LEARNING INDIA PVT. LTD
+
+// CHAPTER : 6 : SYNCHRONOUS MACHINES
+
+// EXAMPLE : 6.6
+
+clear ; clc ; close ; // Clear the work space and console
+
+
+// GIVEN DATA
+
+printf("\n EXAMPLE : 6.4 ( Data is same as Exaple 6.4 ): \n\n Given Data \n");
+printf("\n Voc(v) 215 284 320 380 400 422 452 472 488 508 520 532 540 552 560 \n");
+printf("\n If(A) 6.5 8 9 10 11 12 14 15 16 17 18 19 20 22 24 \n\n");
+m = 3; // Total Number of phase in Induction Motor
+p = 6; // Total number of Poles of Induction Motor
+V = 400; // Operating voltage of the Induction motor in Volts
+I = 13.5; // Operating current of the Induction motor in Amphere
+N = 1000; // speed of the Induction motor in RPM
+Ia_scc = 13.5; // SCC test Armature current in Amphere at If = 9.5 A
+If_scc = 9.5; // SCC test field Rated current in Amphere
+Ia_zpf = 13.5; // ZPF test Armature current in Amphere at If = 24 A
+If_zpf = 24; // ZPF test field Rated current in Amphere
+
+
+// CALCULATIONS
+// Some of the data obtained from OCC and SCC test Graph or Pottier triangle in Figure6.15 & Page no:-386
+Ra = 1.0; // Armature resistance in Ohms
+v = V/sqrt(3); // Rated phase voltage in Volts
+
+
+// For Case (a) 0.8 pf Lagging
+
+pfa_a = acosd(0.8); // Power factor angle in degree
+E_a = v+(Ia_scc*(cosd(pfa_a)-%i*sind(pfa_a))*Ra); // Induced Voltage in Volts
+R1_a = 11.8; A_a = 9.50; //From OCC the field current required for E_a (Should be in Line-line Voltage) E_a = 419.05V will get R1_a & A_a value Respectively from SCC (Figure6.15 & Page no:-386)
+angle_a = 124.95; // Angle between R1_a & A_a (Figure6.21a & Page no:-400) = 90'-1.92'+36.87' = 124.95'
+F_a = sqrt((R1_a^2)+(A_a^2)-(2*R1_a*A_a*cosd(angle_a))); // From phasor diagram in figure 6.21(a) & Page no:-400 the neccessary field excitation in Amphere
+Eo_a = 538; // Corresponding to field current F_a = 18.94 A the open circuit EMF from OCC is 538 V (Figure6.15 & Page no:-386)
+r_a = 100*((Eo_a-V)/V); // Percentage regulation
+
+
+// For Case (b) 0.8 pf Leading
+
+pfa_b = acosd(0.8); // Power factor angle in degree
+E_b = v+(Ia_scc*(cosd(pfa_b)+%i*sind(pfa_b))*Ra); // Induced Voltage in Volts
+R1_b = 11.80; A_b = 9.50; //From OCC the field current required for E_b (Should be in Line-line Voltage) E_b = 419.10V will get R1_b & A_b value Respectively from SCC (Figure6.15 & Page no:-386)
+angle_b = 55.07; // Angle between R1_b & A_b (Figure6.21b & Page no:-400) = 90'-1.92'-36.87' = 55.07'
+F_b = sqrt((R1_b^2)+(A_b^2)-(2*R1_b*A_b*cosd(angle_b))); // From phasor diagram in figure 6.21(b) & Page no:-400 the neccessary field excitation in Amphere
+Eo_b = 382; // Corresponding to field current F_b = 10.10 A the open circuit EMF from OCC is 382 V (Figure6.15 & Page no:-386)
+r_b = 100*((Eo_b-V)/V); // Percentage regulation
+
+// For Case (c) Unity pf
+
+pfa_c = acosd(1); // Power factor angle in degree
+E_c = v+(Ia_scc*(cosd(pfa_c)+%i*sind(pfa_c))*Ra) // Induced Voltage in Volts
+R1_c = 12.10; A_c = 9.50; //From OCC the field current required for E_c (Should be in Line-line Voltage) E_c = 423.50V will get R1_c & A_c value Respectively from SCC (Figure6.15 & Page no:-386)
+angle_c = 90; // Angle between R1_a & A_a (Figure6.21a & Page no:-400) = 90'
+F_c = sqrt((R1_c^2)+(A_c^2)-(2*R1_c*A_c*cosd(angle_c))); // From phasor diagram in figure 6.21(c) & Page no:-400 the neccessary field excitation in Amphere
+Eo_c = 480; // Corresponding to field current F_c = 15.38 A the open circuit EMF from OCC is 538 V (Figure6.15 & Page no:-386)
+r_c = 100*((Eo_c-V)/V); // Percentage regulation
+
+
+// For Case (d) ZPF Lagging
+
+pfa_d = acosd(0.0); // Power factor angle in degree
+E_d = v+(Ia_scc*(cosd(pfa_d)-%i*sind(pfa_d))*Ra) // Induced Voltage in Volts
+R1_d = 11.20; A_d = 9.50; //From OCC the field current required for E_d (Should be in Line-line Voltage) E_d = 400.80V will get R1_d & A_d value Respectively from SCC (Figure6.15 & Page no:-386)
+angle_d = 179.40; // Angle between R1_d & A_d = 90'-0.6'+90' = 179.40'
+F_d = sqrt((R1_d^2)+(A_d^2)-(2*R1_d*A_d*cosd(angle_d))); // From phasor diagram the neccessary field excitation in Amphere
+Eo_d = 545; // Corresponding to field current F_d = 18.12 A the open circuit EMF from OCC is 545 V (Figure6.15 & Page no:-386)
+r_d = 100*((Eo_d-V)/V); // Percentage regulation
+
+// For Case (d) ZPF Lagging
+
+pfa_e = acosd(0.0); // Power factor angle in degree
+E_e = v+(Ia_scc*(cosd(pfa_e)+%i*sind(pfa_e))*Ra) // Induced Voltage in Volts
+R1_e = 11.20; A_e = 9.50; //From OCC the field current required for E_e (Should be in Line-line Voltage) E_d = 400.80V will get R1_e & A_e value Respectively from SCC (Figure6.15 & Page no:-386)
+angle_e = 0.60; // Angle between R1_e & A_e = 90'+0.6'-90' = 0.60'
+F_e = sqrt((R1_e^2)+(A_e^2)-(2*R1_e*A_e*cosd(angle_e))); // From phasor diagram the neccessary field excitation in Amphere
+Eo_e = 63; // Corresponding to field current F_e = 1.70 A the open circuit EMF from OCC is 545 V (Figure6.15 & Page no:-386)
+r_e = 100*((Eo_e-V)/V); // Percentage regulation
+
+
+
+// DISPLAY RESULTS
+
+disp(" SOLUTION :-");
+printf("\n For Case (a) 0.8 pf Lagging \n Open circuit EMF, EMF = %.f V \n",Eo_a)
+printf("\n Percenatge Regulation, R = %.2f Percenatge \n",r_a)
+printf("\n For Case (b) 0.8 pf Leading \n Open circuit EMF, EMF = %.f V \n",Eo_b)
+printf("\n Percenatge Regulation, R = %.2f Percenatge \n",r_b)
+printf("\n For Case (c) Unity pf Lagging \n Open circuit EMF, EMF = %.f V \n",Eo_c)
+printf("\n Percenatge Regulation, R = %.f Percenatge \n",r_c)
+printf("\n For Case (d) ZPF Lagging \n Open circuit EMF, EMF = %.f V\n",Eo_d)
+printf("\n Percenatge Regulation, R = %.2f Percenatge \n",r_d)
+printf("\n For Case (e) ZPF Leading \n Open circuit EMF, EMF = %.f V \n",Eo_e)
+printf("\n Percenatge Regulation, R = %.2f Percenatge \n\n",r_e)
+disp(" Calculated Answer in Tabular Column")
+printf("\n Power Factor 0.8 Lag 0.8 Lead 1.0 ZPF Lag ZPF Lead \n")
+printf("\n Open circuit EMF (V) %.f %.f %.f %.f %.f \n",Eo_a,Eo_b,Eo_c,Eo_d,Eo_e)
+printf("\n Percenatge Regulation %.2f %.2f %.f %.2f %.2f \n",r_a,r_b,r_c,r_d,r_e)
diff --git a/Working_Examples/2777/CH6/EX6.7/Ex6_7.sce b/Working_Examples/2777/CH6/EX6.7/Ex6_7.sce new file mode 100755 index 0000000..6ca6d00 --- /dev/null +++ b/Working_Examples/2777/CH6/EX6.7/Ex6_7.sce @@ -0,0 +1,108 @@ +
+// ELECTRICAL MACHINES
+// R.K.Srivastava
+// First Impression 2011
+// CENGAGE LEARNING INDIA PVT. LTD
+
+// CHAPTER : 6 : SYNCHRONOUS MACHINES
+
+// EXAMPLE : 6.7
+
+clear ; clc ; close ; // Clear the work space and console
+
+
+// GIVEN DATA
+
+printf("\n EXAMPLE : 6.7 ( Data as same as Example 6.4 ) : \n\n Given Data \n");
+printf("\n Voc(v) 215 284 320 380 400 422 452 472 488 508 520 532 540 552 560 \n");
+printf("\n If(A) 6.5 8 9 10 11 12 14 15 16 17 18 19 20 22 24 \n\n");
+m = 3; // Total Number of phase in Induction Motor
+p = 6; // Total number of Poles of Induction Motor
+V = 400; // Operating voltage of the Induction motor in Volts
+I = 13.5; // Operating current of the Induction motor in Amphere
+N = 1000; // speed of the Induction motor in RPM
+Ia_scc = 13.5; // SCC test Armature current in Amphere at If = 9.5 A
+If_scc = 9.5; // SCC test field Rated current in Amphere
+Ia_zpf = 13.5; // ZPF test Armature current in Amphere at If = 24 A
+If_zpf = 24; // ZPF test field Rated current in Amphere
+
+
+// CALCULATIONS
+// Some of the data obtained from OCC and SCC test Graph or Pottier triangle in Figure6.15 & Page no:-386
+Ra = 1.0; // Armature resistance in Ohms
+BC = 120; // Open circuit Voltage in Volts obtained from OCC and SCC test Graph or Pottier triangle Figure6.15 & Page no:-386
+Xl = BC/(sqrt(3)*Ia_scc); // Per phase leakage reactance in Ohms for this referring to example6.4 & page no:- 386
+
+// For Case (a) 0.8 pf Lagging
+
+pfa_a = acosd(0.8); // Power factor angle in degree
+Er_a = (V/sqrt(3))+(Ia_scc*(cosd(pfa_a)-%i*sind(pfa_a))*(Ra+%i*Xl)); // Induced Voltage in Volts
+R_a = 9.8; A_a = 9.5; //From OCC the field current required for Er_a (Should be in Line-line Voltage) Er_a = 479.60V will get R_a & A_a value Respectively from SCC (Figure6.15 & Page no:-386)
+angle_a = 126.87; // Angle between R_a & A_a (Figure6.22(a) & Page no:-403) = 90'+36.87' = 126.87'
+F_a = sqrt((R_a^2)+(A_a^2)-(2*R_a*A_a*cosd(angle_a))); // From phasor diagram in figure 6.22(a) & Page no:-403 the neccessary field excitation in Amphere
+Eo_a = 560; // Corresponding to field current ( OF'=OF+FF'), F_a = 17.28 + 6.2 = 23.46 A the open circuit EMF from OCC is 560 V (Figure6.15 & Page no:-386)
+r_a = 100*((Eo_a-V)/V); // Percentage regulation
+
+
+// For Case (b) 0.8 pf Leading
+
+pfa_b = acosd(0.8); // Power factor angle in degree
+Er_b = (V/sqrt(3))+(Ia_scc*(cosd(pfa_b)+%i*sind(pfa_b))*(Ra+%i*Xl)); // Induced Voltage in Volts
+R_b = 9.8; A_b = 9.5; //From OCC the field current required for Er_b (Should be in Line-line Voltage) Er_b = 363.90 V will get R_b & A_b value Respectively from SCC (Figure6.15 & Page no:-386)
+angle_b = 53.13; // Angle between R_b2 & A_b2 (Figure6.22b & Page no:-403) = 90'-36.87' = 53.13'
+F_b = sqrt((R_b^2)+(A_b^2)-(2*R_b*A_b*cosd(angle_b))); // From phasor diagram in figure 6.22(b) & Page no:-403 the neccessary field excitation in Amphere
+Eo_b = 380; // Corresponding to field current ( OF'=OF+FF') F_b = 8.62+1.5=10.12 A the open circuit EMF from OCC is 380 V (Figure6.15 & Page no:-386)
+r_b = 100*((Eo_b-V)/V); // Percentage regulation
+
+
+// For Case (c) Unity pf Leading
+
+pfa_c = acosd(1.0); // Power factor angle in degree
+Er_c = (V/sqrt(3))+(Ia_scc*(cosd(pfa_c)-%i*sind(pfa_c))*(Ra+%i*Xl)); // Induced Voltage in Volts
+R_c = 9.8; A_c = 9.5; //From OCC the field current required for Er_c (Should be in Line-line Voltage) Er_c = 440.11 V will get R_c & A_c value Respectively from SCC (Figure6.15 & Page no:-386)
+angle_c = 90; // Angle between R_c & A_c (Figure6.22c & Page no:-403) = 90' = 90'
+F_c = sqrt((R_c^2)+(A_c^2)-(2*R_c*A_c*cosd(angle_c))); // From phasor diagram in figure 6.22(c) & Page no:-403 the neccessary field excitation in Amphere
+Eo_c = 510; // Corresponding to field current ( OF'=OF+FF') F_c = 13.65+3.0=16.65A the open circuit EMF from OCC is 510 V (Figure6.15 & Page no:-386)
+r_c = 100*((Eo_c-V)/V); // Percentage regulation
+
+
+// For Case (d) ZPF Lagging
+
+pfa_d = acosd(0); // Power factor angle in degree
+Er_d = (V/sqrt(3))+(Ia_scc*(cosd(pfa_d)-%i*sind(pfa_d))*(Ra+%i*Xl)); // Induced Voltage in Volts
+R_d = 9.8; A_d = 9.5; //From OCC the field current required for Er_d (Should be in Line-line Voltage) Er_d = 570.20 V will get R_d & A_d value Respectively from SCC (Figure6.15 & Page no:-386)
+angle_d = 180.0; // Angle between R_d & A_d = 90'+90' = 180'
+F_d = sqrt((R_d^2)+(A_d^2)-(2*R_d*A_d*cosd(angle_d))); // The neccessary field excitation in Amphere
+Eo_d = 600; // Corresponding to field current ( OF'=OF+FF') F_d = 19.3+16=35.30 A the open circuit EMF from OCC is 525 V (Figure6.15 & Page no:-386)
+r_d = 100*((Eo_d-V)/V); // Percentage regulation
+
+
+// For Case (e) ZPF Lagging
+
+pfa_e = acosd(0); // Power factor angle in degree
+Er_e = (V/sqrt(3))+(Ia_scc*(cosd(pfa_e)+%i*sind(pfa_e))*(Ra+%i*Xl)); // Induced Voltage in Volts
+R_e = 9.8; A_e = 9.50; //From OCC the field current required for Er_e (Should be in Line-line Voltage) Er_e = 281.10 V will get R_e & A_e value Respectively from SCC (Figure6.15 & Page no:-386)
+angle_e = 0.0; // Angle between R_e & A_e = 90'-90' = 0.0'
+F_e = sqrt((R_e^2)+(A_e^2)-(2*R_e*A_e*cosd(angle_e))); // The neccessary field excitation in Amphere
+Eo_e = 5; // Corresponding to field current ( OF'=OF+FF') F_e = 0.0+0.30=0.30 A the open circuit EMF from OCC is 5 V (Figure6.15 & Page no:-386)
+r_e = 100*((Eo_e-V)/V); // Percentage regulation
+
+
+// DISPLAY RESULTS
+
+disp(" SOLUTION :-");
+printf("\n Per phase leakage reactance, Xl = %.2f Ohms \n",Xl)
+printf("\n For Case (a) 0.8 pf Lagging \n Open circuit EMF, EMF = %.f V \n",Eo_a)
+printf("\n Percenatge Regulation, R = %.f Percenatge \n",r_a)
+printf("\n For Case (b) 0.8 pf Leading \n Open circuit EMF, EMF = %.f V \n",Eo_b)
+printf("\n Percenatge Regulation, R = %.f Percenatge \n",r_b)
+printf("\n For Case (c) Unity pf Lagging \n Open circuit EMF, EMF = %.f V \n",Eo_c)
+printf("\n Percenatge Regulation, R = %.f Percenatge \n",r_c)
+printf("\n For Case (d) ZPF Lagging \n Open circuit EMF, EMF = %.f V\n",Eo_d)
+printf("\n Percenatge Regulation, R = %.f Percenatge \n",r_d)
+printf("\n For Case (e) ZPF Leading \n Open circuit EMF, EMF = %.f V \n",Eo_e)
+printf("\n Percenatge Regulation, R = %.2f Percenatge \n\n",r_e)
+disp(" Calculated Answer in Tabular Column")
+printf("\n Power Factor 0.8 Lag 0.8 Lead 1.0 ZPF Lag ZPF Lead \n")
+printf("\n Open circuit EMF (V) %.f %.f %.f %.f %.f \n",Eo_a,Eo_b,Eo_c,Eo_d,Eo_e)
+printf("\n Percenatge Regulation %.f %.f %.1f %.f %.2f \n",r_a,r_b,r_c,r_d,r_e)
diff --git a/Working_Examples/2777/CH6/EX6.9/Ex6_9.sce b/Working_Examples/2777/CH6/EX6.9/Ex6_9.sce new file mode 100755 index 0000000..a20cbc0 --- /dev/null +++ b/Working_Examples/2777/CH6/EX6.9/Ex6_9.sce @@ -0,0 +1,71 @@ +
+// ELECTRICAL MACHINES
+// R.K.Srivastava
+// First Impression 2011
+// CENGAGE LEARNING INDIA PVT. LTD
+
+// CHAPTER : 6 : SYNCHRONOUS MACHINES
+
+// EXAMPLE : 6.9
+
+clear ; clc ; close ; // Clear the work space and console
+
+
+// GIVEN DATA
+
+printf("\n EXAMPLE : 6.9 : \n\n Given Data \n");
+printf("\n Voc(kV) 10 10.80 11.50 12.10 12.60 13 14 14.50 14.80 \n");
+printf("\n If(A) 175 200 225 250 275 300 400 450 500 \n\n");
+p = 6; // Total number of Poles of Alternator
+V = 11*10^3; // Operating voltage of the Alternator in Volts
+N = 1500; // speed of the Alternator in RPM
+Ia_scc = 2099; // SCC test Armature current in Amphere at If = 200 A
+If_scc = 200; // SCC test field Rated current in Amphere
+Ia_pt = 2099; // Pottier test Armature current in Amphere at If = 450 A
+If_pt = 450; // Pottier test field Rated current in Amphere
+VA = 40*10^6; // VA rating of the Alternator in Volts-Amphere
+f = 50; // Operating Frequency of the Alternator in Hertz
+pf = 0.8; // Power factor (lagging)
+
+// CALCULATIONS
+// Some of the data obtained from OCC and SCC test Graph or Pottier triangle in Figure6.24 & Page no:-407
+
+v = V/sqrt(3); // Rated phase Voltage in Volts
+I = VA/(sqrt(3)*V); // Full-load phase current in Amphere
+Xl = 0.4481; // Leakage reactance in Ohms From OCC and SCC test Graph or Pottier triangle in Figure6.24 & Page no:-407
+
+
+// For Case(a) General Method
+
+pfa_a = acosd(pf); // Power factor angle in degree
+Er_a = (V/sqrt(3))+(Ia_scc*(cosd(pfa_a)-%i*sind(pfa_a))*Xl); // Induced Voltage in Volts
+R_a = 208.4; A_a = 200; //From OCC the field current required for Er_a (Should be in Line-line Voltage) Er_a = 11043.66 V will get R_a & A_a value Respectively from SCC (Figure6.24 & Page no:-407)
+angle_a = 131.93; // Angle between R_a & A_a (Figure6.25(a) & Page no:-408) = 90'+5.06'+36.87' = 131.93'
+F_a = sqrt((R_a^2)+(A_a^2)-(2*R_a*A_a*cosd(angle_a))); // From phasor diagram in figure 6.25(a) & Page no:-408 the neccessary field excitation in Amphere
+Eo_a = 13720; // Corresponding to field current, F_a = 373 A the open circuit EMF from OCC is 560 V (Figure6.15 & Page no:-386)
+r_a = 100*((Eo_a-V)/V); // Percentage regulation
+
+
+// For Case (b) ASA Method
+
+pfa_b = acosd(pf); // Power factor angle in degree
+Er_b = (V/sqrt(3))+Ia_scc*(cosd(pfa_b)-%i*sind(pfa_b))*Xl; // Induced Voltage in Volts
+R_b = 160; A_b = 200; //From OCC the field current required for Er_b (Should be in Line-line Voltage) Er_b = 11043.66 V will get R_b & A_b value Respectively from SCC (Figure6.24 & Page no:-407)
+angle_b = 126.87; // Angle between R_b2 & A_b2 (Figure6.22b & Page no:-403) = 90'+36.87' = 126.87'
+F_b = sqrt((R_b^2)+(A_b^2)-(2*R_b*A_b*cosd(angle_b))); // From phasor diagram in figure 6.25(b) & Page no:-408 the neccessary field excitation in Amphere
+Eo_b = 13660; // Corresponding to field current ( OF'=OF+FF') F_b = 337.88+15.38=337.88 A the open circuit EMF from OCC is 13660 V (Figure6.15 & Page no:-386)
+r_b = 100*((Eo_b-V)/V); // Percentage regulation
+
+
+// DISPLAY RESULTS
+
+disp(" SOLUTION :-");
+printf("\n For Case (a) General(ZPF) Method \n Induced EMF, EMF = %.f < %.2f V \n",abs(Er_a),atand(imag(Er_a),real(Er_a)))
+printf("\n Percenatge Regulation, R = %.2f Percenatge \n",r_a)
+printf("\n For Case (b) ASA Method \n Induced EMF, EMF = %.f < %.2f V \n",abs(Er_b),atand(imag(Er_b),real(Er_b)))
+printf("\n Percenatge Regulation, R = %.2f Percenatge \n",r_b)
+printf("\n\n [ TEXT BOOK SOLUTION IS PRINTED WRONGLY ( I verified by manual calculation )]\n" );
+printf("\n WRONGLY PRINTED ANSWERS ARE :- For Case (a) General(ZPF) Method (a) Induced EMF = 6376<-5.07 degree instead of %.f < %.2f \n ",abs(Er_a),atand(imag(Er_a),real(Er_a)))
+printf("\n For Case (b) ASA Method (a) Induced EMF = 6376<-5.07 degree instead of %.f < %.2f \n\n ",abs(Er_b),atand(imag(Er_b),real(Er_b)))
+printf(" CALCULATION OF THE POWER ANGLE IS NOT CALCULATED IN THE TEXT BOOK FOR THIS PROBLEM\n ")
+printf("\n INDUCED EMF AND PERCENTAGE REGULATION IS APPROXIMATED VALUE BECACUSE IN THE TEXT BOOK, CALCULATED INDUCED EMF IS WRONGLY PRINTED")
diff --git a/Working_Examples/2777/CH7/EX7.1/Ex7_1.sce b/Working_Examples/2777/CH7/EX7.1/Ex7_1.sce new file mode 100755 index 0000000..afbd574 --- /dev/null +++ b/Working_Examples/2777/CH7/EX7.1/Ex7_1.sce @@ -0,0 +1,31 @@ +
+// ELECTRICAL MACHINES
+// R.K.Srivastava
+// First Impression 2011
+// CENGAGE LEARNING INDIA PVT. LTD
+
+// CHAPTER : 7 : SPECIAL MOTORS AND INTRODUCTION TO GENERALIZED MACHINE THEORY
+
+// EXAMPLE : 7.1
+
+clear ; clc ; close ; // Clear the work space and console
+
+
+// GIVEN DATA
+
+D = 35*10^-2; // Outer diameter of the conducting disk in Meter
+d = 10*10^-2; // Inner diameter of the conducting disk in Meter
+B = 1.0; // Axial magnetic field in Telsa
+N = 900; // Rotating shaft running in RPM
+
+
+// CALCULATIONS
+
+Wr = (2*%pi*N)/60; // Rotational angular speed in radians/s
+Er = ((D^2-d^2)*B*Wr)/8; // EMF induced in Volts
+
+
+// DISPLAY RESULTS
+
+disp("EXAMPLE : 7.1: SOLUTION :-");
+printf("\n (a) Induced EMF in the outer and inner rims of the disk, Er = %.4f V \n",Er)
diff --git a/Working_Examples/2777/CH7/EX7.10/Ex7_10.sce b/Working_Examples/2777/CH7/EX7.10/Ex7_10.sce new file mode 100755 index 0000000..97b59e5 --- /dev/null +++ b/Working_Examples/2777/CH7/EX7.10/Ex7_10.sce @@ -0,0 +1,41 @@ +
+// ELECTRICAL MACHINES
+// R.K.Srivastava
+// First Impression 2011
+// CENGAGE LEARNING INDIA PVT. LTD
+
+// CHAPTER : 7 : SPECIAL MOTORS AND INTRODUCTION TO GENERALIZED MACHINE THEORY
+
+// EXAMPLE : 7.10
+
+clear ; clc ; close ; // Clear the work space and console
+
+
+// GIVEN DATA
+
+L = 1.0; // Length in Meter
+S = 60; // Number of slots
+f = 50; // Frequency in Hertz
+v = 440; // Operating Volage of the Motor in Volts
+V = 11.5; // Running speed of the motor in Meter/second
+m = 3; // Number of phases
+p = 8; // Total number of Poles
+
+
+// CALCULATIONS
+
+Vs = (2*L*f)/p; // Synchronous linear speed in Meter/second
+s = (Vs-V)/Vs; // Linear slip
+Vph = v/sqrt(3); // Phase Voltage in Volts
+Z1 = 6.0 + %i*5; // Impedance in Ohms refer figure and page no. 526
+Z2 = ((100*%i)*(5*%i+8.2/s))/(100*%i+5*%i+8.2/s); // Impedance in Ohms refer figure and page no. 526
+Z = Z1 + Z2; // Total Impedance in Ohms
+I = Vph/Z; // Per phase Current when Machine is running at 11.5 m/s in Amphere
+pf = cosd(atand(imag(I),real(I))); // Power factor lagging
+
+
+// DISPLAY RESULTS
+
+disp("EXAMPLE : 7.10 : SOLUTION :-") ;
+printf("\n (a) Synchronous linear speed, Vs = %.1f m/s \n ",Vs);
+printf("\n (b) Per phase current when Machine is running at 11.5 m/s, I = %.2f < %.2f A \n",abs(I),atand(imag(I),real(I)))
diff --git a/Working_Examples/2777/CH7/EX7.11/Ex7_11.sce b/Working_Examples/2777/CH7/EX7.11/Ex7_11.sce new file mode 100755 index 0000000..f079848 --- /dev/null +++ b/Working_Examples/2777/CH7/EX7.11/Ex7_11.sce @@ -0,0 +1,29 @@ +
+// ELECTRICAL MACHINES
+// R.K.Srivastava
+// First Impression 2011
+// CENGAGE LEARNING INDIA PVT. LTD
+
+// CHAPTER : 7 : SPECIAL MOTORS AND INTRODUCTION TO GENERALIZED MACHINE THEORY
+
+// EXAMPLE : 7.11
+
+clear ; clc ; close ; // Clear the work space and console
+
+
+// GIVEN DATA
+
+s = 9; // Degree per step of the stepper motor
+N = 200; // Rotation Speed of the Stepper motor in RPM
+
+
+// CALCULATIONS
+
+spr = 360/s; // Steps Per Revolution (360 is full revolution)
+pps = (N*spr)/60; // Input pulse rate in pulses per second
+
+
+// DISPLAY RESULTS
+
+disp("EXAMPLE : 7.11: SOLUTION :-");
+printf("\n (a) Input pulse rate is %.2f pulses per second \n",pps)
diff --git a/Working_Examples/2777/CH7/EX7.13/Ex7_13.sce b/Working_Examples/2777/CH7/EX7.13/Ex7_13.sce new file mode 100755 index 0000000..cacb284 --- /dev/null +++ b/Working_Examples/2777/CH7/EX7.13/Ex7_13.sce @@ -0,0 +1,34 @@ +
+// ELECTRICAL MACHINES
+// R.K.Srivastava
+// First Impression 2011
+// CENGAGE LEARNING INDIA PVT. LTD
+
+// CHAPTER : 7 : SPECIAL MOTORS AND INTRODUCTION TO GENERALIZED MACHINE THEORY
+
+// EXAMPLE : 7.13
+
+clear ; clc ; close ; // Clear the work space and console
+
+
+// GIVEN DATA
+
+L1 = 1.1; // Inductance in Henry
+L2 = 1.07; // Inductance in Henry
+dtheta = 1; // Rotor rotation in Mechanical degree
+r = 0.10; // Radius of the rotor in Meter
+I = 20; // Coil Current in Amphere
+
+
+// CALCULATIONS
+
+dl = L1-L2; // Change in Inductance of one of its stator coils in Henry
+F = (I^2*dl)/(2*dtheta); // Force on the single rotor pole in Newton
+T = F*r; // Instantaneous Torque in Newton-meter
+
+
+// DISPLAY RESULTS
+
+disp("EXAMPLE : 7.13: SOLUTION :-");
+printf("\n (a) Instantaneous Torque, T = %.1f N-m \n\n",T)
+printf("The force is a motoring force since inductance of the coil is rising")
diff --git a/Working_Examples/2777/CH7/EX7.14/Ex7_14.sce b/Working_Examples/2777/CH7/EX7.14/Ex7_14.sce new file mode 100755 index 0000000..2b3a13c --- /dev/null +++ b/Working_Examples/2777/CH7/EX7.14/Ex7_14.sce @@ -0,0 +1,37 @@ +
+// ELECTRICAL MACHINES
+// R.K.Srivastava
+// First Impression 2011
+// CENGAGE LEARNING INDIA PVT. LTD
+
+// CHAPTER : 7 : SPECIAL MOTORS AND INTRODUCTION TO GENERALIZED MACHINE THEORY
+
+// EXAMPLE : 7.14
+
+clear ; clc ; close ; // Clear the work space and console
+
+
+// GIVEN DATA
+
+Va = 220 * exp( %i * 0 * %pi/180); // Three phase in Volts
+Vb = 230 * exp( %i * (-115) * %pi/180); // Three phase in Volts
+Vc = 250 * exp( %i * (-245) * %pi/180); // Three phase in Volts
+
+
+// CALCUALTIONS
+// We know that operator :-
+
+alpha = 1 * exp( %i * 120 * %pi/180);
+alpha2 = 1 * exp( %i * (-120) * %pi/180);
+Va0 = (Va+Vb+Vc)/3 // Zero sequence Voltage in Volts
+Va1 = (Va+alpha*Vb+alpha2*Vc)/3 // Positive sequence Voltage in Volts
+Va2 = (Va+alpha2*Vb+alpha*Vc)/3 // Negative sequence Voltage in Volts
+
+
+// DISPLAY RESULTS
+
+disp("EXAMPLE : 7.14 : SOLUTION :-") ;
+printf("\n (a) Zero sequence Voltage, Va0 = %.2f < %.2f V \n",abs(Va0),atand(imag(Va0),real(Va0)))
+printf("\n (b) Positive sequence Voltage, Va1 = %.3f < %.2f V \n",abs(Va1),atand(imag(Va1),real(Va1)))
+printf("\n (c) Negative sequence Voltage, Va1 = %.2f < %.1f V \n",abs(Va2),atand(imag(Va2),real(Va2)))
+
diff --git a/Working_Examples/2777/CH7/EX7.2/Ex7_2.sce b/Working_Examples/2777/CH7/EX7.2/Ex7_2.sce new file mode 100755 index 0000000..8e518d8 --- /dev/null +++ b/Working_Examples/2777/CH7/EX7.2/Ex7_2.sce @@ -0,0 +1,37 @@ +
+// ELECTRICAL MACHINES
+// R.K.Srivastava
+// First Impression 2011
+// CENGAGE LEARNING INDIA PVT. LTD
+
+// CHAPTER : 7 : SPECIAL MOTORS AND INTRODUCTION TO GENERALIZED MACHINE THEORY
+
+// EXAMPLE : 7.2
+
+clear ; clc ; close ; // Clear the work space and console
+
+
+// GIVEN DATA
+
+D = 0.120; // Outer Radius of the Printed Circuit Motor in meter
+d = 0.060; // Inner Radius of the Printed Circuit Motor in meter
+ B = 0.7; // Axial Flux Density in Telsa
+V = 12; // Volage Supplied to the Motor in Volts
+R = 2700; // Motor Speed in RPM
+n = 0.65; // Efficiency of Motor
+p = 94; // Output Power of Motor in Watts
+I = 12; // Motor current in Ampheres
+
+
+// CALCULATIONS
+
+w = ((2*(%pi))*R)/60; // The Angular Velocity in Radians/second
+T = p/w; // Torque in Newton-Meter
+N = (8*T)/((D^2-d^2)*B*I) // Total Number of Conductors
+
+
+// DISPLAY RESULTS
+
+disp("EXAMPLE : 7.2 : SOLUTION :-") ;
+printf("\n (a) Torque, T = %.2f N-m \n ",T);
+printf("\n (b) Total Number of Conductors, N = %.2f nearly 30 \n",N);
diff --git a/Working_Examples/2777/CH7/EX7.3/Ex7_3.sce b/Working_Examples/2777/CH7/EX7.3/Ex7_3.sce new file mode 100755 index 0000000..f214279 --- /dev/null +++ b/Working_Examples/2777/CH7/EX7.3/Ex7_3.sce @@ -0,0 +1,54 @@ +
+// ELECTRICAL MACHINES
+// R.K.Srivastava
+// First Impression 2011
+// CENGAGE LEARNING INDIA PVT. LTD
+
+// CHAPTER : 7 : SPECIAL MOTORS AND INTRODUCTION TO GENERALIZED MACHINE THEORY
+
+// EXAMPLE : 7.3
+
+clear ; clc ; close ; // Clear the work space and console
+
+
+// GIVEN DATA
+
+m = 2; // Total number of phase in servo Motor
+f = 50; // Frequency in Hertz
+V = 220; // Operating Voltage of the servo Motor in Volts
+R1 = 250; // Circuit Parameter in Ohms
+R2 = 750; // Circuit Parameter in Ohms
+X1 = 50; // Circuit Parameter in Ohms
+X2 = 50; // Circuit Parameter in Ohms
+Xm = 1000; // Circuit Parameter in Ohms
+s = 0.6; // Slip
+Va = 220; // Unbalanced Voltage in Volts
+Vb = 150 * exp(%i * (-60) * %pi/180); // Unbalanced Voltage in Volts
+
+
+// CALCULATIONS
+
+Va1 = (Va + %i*Vb)/2; // Positive sequence voltage in Volts
+Va2 = (Va - %i*Vb)/2; // Negative sequence voltage in Volts
+Z11 = (R1+%i*X1);
+Z12 = (((%i*Xm)*(R2/s+%i*X2))/(%i*Xm+R2/s+%i*X2));
+Z1 = Z11 + Z12 ; // Positive sequence impedance in Ohms
+Z2 = (R1+%i*X1) + (((%i*Xm)*(R2/(2-s)+%i*X2))/(%i*Xm+R2/(2-s)+%i*X2)); // Negative sequence impedance in Ohms
+Ia1 = Va1/Z1; // Positive sequence current in Amphere
+I12 = (Ia1*Z12)/(R2/s); // Positive sequence current in Amphere
+Ia2 = Va2/Z2; // Negative sequence current in Amphere
+I22 = (Ia2*Z2)/(R2/(2-s)); // Negative sequence current in Amphere
+T1 = 2*(abs(I12)^2)*R2/s; // Positive sequence torque in Newton-meter
+T2 = 2*(abs(I22)^2)*R2/(2-s); // Negative sequence torque in Newton-meter
+T = T1 - T2; // Resultant torque in Newton-meter
+Ia = Ia1 + Ia2; // Line current in Amphere
+Ib = (-%i*Ia1) + (%i*Ia2); // Line current in Amphere
+
+
+// DISPLAY RESULTS
+
+disp("EXAMPLE : 7.3: SOLUTION :-");
+printf("\n (a) Resultant torque, T = %.2f N-m \n",T)
+printf("\n (b) Phase currents (line currents), Ia = %.2f < %.2f A \n\n Ib = %.2f < %.2f \n",abs(Ia),atand(imag(Ia),real(Ia)),abs(Ib),atand(imag(Ib),real(Ib)))
+printf("\n\n IN THE ABOVE PROBLEM ALL THE VALUES PRINTED IN THE TEXT BOOK ARE NOT ACCURATE, SO VALUE OF THE TORQUE AND LINE CURRENTS ARE DIFFERING, WHEN WE COMPARED TO THE TEXT BOOK ANSWERS FOR THE SAME. \n\n")
+printf("\n IN EVERY CALCULATED PARAMETER IN THE TEXT BOOK SLIGHT VARIATION IS THERE AS WE COMPARED TO MANUAL CALCULATION ITS FROM POSITIVE SEQUENCE VOLTAGE (Va1) \n")
diff --git a/Working_Examples/2777/CH7/EX7.4/Ex7_4.sce b/Working_Examples/2777/CH7/EX7.4/Ex7_4.sce new file mode 100755 index 0000000..ddb5252 --- /dev/null +++ b/Working_Examples/2777/CH7/EX7.4/Ex7_4.sce @@ -0,0 +1,51 @@ +
+// ELECTRICAL MACHINES
+// R.K.Srivastava
+// First Impression 2011
+// CENGAGE LEARNING INDIA PVT. LTD
+
+// CHAPTER : 7 : SPECIAL MOTORS AND INTRODUCTION TO GENERALIZED MACHINE THEORY
+
+// EXAMPLE : 7.4
+
+clear ; clc ; close ; // Clear the work space and console
+
+
+// GIVEN DATA
+
+m = 2; // Total number of phase in AC drag-cup servo Motor
+p = 2; // Number of poles
+Va = 220; // Operating Voltage of the servo Motor in Volts
+R1 = 350; // Circuit Parameter in Ohms
+R2 = 250; // Circuit Parameter in Ohms
+X1 = 60; // Circuit Parameter in Ohms
+X2 = 50; // Circuit Parameter in Ohms
+Xm = 900; // Circuit Parameter in Ohms
+s = 0.3; // Slip
+p = 0.8; // Ratio of the control winding and main winding voltage
+
+
+// CALCULATIONS
+
+Va1 = (Va*(1+p))/2; // Positive sequence voltage in Volts
+Va2 = (Va*(1-p))/2; // Negative sequence voltage in Volts
+Z11 = (R1+%i*X1);
+Z12 = (((%i*Xm)*(R2/s+%i*X2))/(%i*Xm+R2/s+%i*X2));
+Z1 = Z11 + Z12 ; // Positive sequence impedance in Ohms
+Z2 = (R1+%i*X1) + (((%i*Xm)*(R2/(2-s)+%i*X2))/(%i*Xm+R2/(2-s)+%i*X2)); // Negative sequence impedance in Ohms
+Ia1 = Va1/Z1; // Positive sequence current in Amphere
+I12 = (Ia1*Z12)/(R2/s); // Positive sequence current in Amphere
+Ia2 = Va2/Z2; // Negative sequence current in Amphere
+I22 = (Ia2*Z2)/(R2/(2-s)); // Negative sequence current in Amphere
+T1 = 2*(abs(I12)^2)*R2/s; // Positive sequence torque in Newton-meter
+T2 = 2*(abs(I22)^2)*R2/(2-s); // Negative sequence torque in Newton-meter
+T = T1 - T2; // Resultant torque in Newton-meter
+
+
+// DISPLAY RESULTS
+
+disp("EXAMPLE : 7.4: SOLUTION :-");
+printf("\n (a) Resultant torque, T = %.2f N-m \n",T)
+printf("\n\n IN THE ABOVE PROBLEM ALL THE VALUES PRINTED IN THE TEXT BOOK ARE NOT ACCURATE, SO VALUE OF THE TORQUE AND LINE CURRENTS ARE DIFFERING WHEN WE COMPARED TO THE TEXT BOOK ANSWERS FOR THE SAME. \n\n")
+printf("\n IN EVERY CALCULATED PARAMETER IN THE TEXT BOOK SLIGHT VARIATION IS THERE AS WE COMPARED TO MANUAL CALCULATION ITS FROM POSITIVE SEQUENCE IMPEDANCE (Z1) \n")
+
diff --git a/Working_Examples/2777/CH7/EX7.5/Ex7_5.sce b/Working_Examples/2777/CH7/EX7.5/Ex7_5.sce new file mode 100755 index 0000000..9711507 --- /dev/null +++ b/Working_Examples/2777/CH7/EX7.5/Ex7_5.sce @@ -0,0 +1,35 @@ +
+// ELECTRICAL MACHINES
+// R.K.Srivastava
+// First Impression 2011
+// CENGAGE LEARNING INDIA PVT. LTD
+
+// CHAPTER : 7 : SPECIAL MOTORS AND INTRODUCTION TO GENERALIZED MACHINE THEORY
+
+// EXAMPLE : 7.5
+
+clear ; clc ; close ; // Clear the work space and console
+
+
+// GIVEN DATA
+
+R = 15; // Resistance of the fractional horse power AC series motor in Ohms
+V = 230; // AC supply voltage in Volts
+f = 50; // Frequency in Hertz
+I = 1.2; // Motor current in Amphere
+NDC = 2500; // Rotating speed of the Motor during DC Operation in RPM
+L = 0.5; // Total inductance in Henry
+
+
+// CALCUALTIONS
+
+X = 2*%pi*f*L; // Reactance in Ohms
+NAC = NDC * (sqrt(V^2-(I*X)^2)-(I*R)) / (V-(I*R)); // Rotating speed of the Motor during AC Operation in RPM
+pf = sqrt(1-((I*X)/V)^2); // Power factor lagging
+
+
+// DISPLAY RESULTS
+
+disp("EXAMPLE : 7.5: SOLUTION :-");
+printf("\n When the Motor operting at AC 230V, 50 Hz \n\n (a) NAC = %.f RPM \n",NAC)
+printf("\n (b) Power factor = %.4f lagging \n",pf)
diff --git a/Working_Examples/2777/CH7/EX7.6/Ex7_6.sce b/Working_Examples/2777/CH7/EX7.6/Ex7_6.sce new file mode 100755 index 0000000..4bf4f07 --- /dev/null +++ b/Working_Examples/2777/CH7/EX7.6/Ex7_6.sce @@ -0,0 +1,54 @@ +
+// ELECTRICAL MACHINES
+// R.K.Srivastava
+// First Impression 2011
+// CENGAGE LEARNING INDIA PVT. LTD
+
+// CHAPTER : 7 : SPECIAL MOTORS AND INTRODUCTION TO GENERALIZED MACHINE THEORY
+
+// EXAMPLE : 7.6
+
+clear ; clc ; close ; // Clear the work space and console
+
+
+// GIVEN DATA
+
+R = 1.4; // Total Resistance of the AC series motor in Ohms
+V = 115; // supply voltage in Volts
+f = 50; // Frequency in Hertz
+N = 5000; // Rotating speed in RPM
+X = 12; // Total reactance in Ohms
+P = 250; // Electrical power output in Watts
+loss = 18; // Rotational losses in Watts
+
+
+// CALCULATIONS
+
+Pd = P + loss; // Mechanical power developed in Watts
+// We know that Er = Pd/I and from phasor diagram in figure 7.11 page no. 501 V^2 = (Er+I*R)^2+(I*X)^2, 115^2 = (268/I-1.4*I)^2+(12*I)^2, 13225*I^2 = 71824+2.036*I^4-750.4*I^2+144*I^2, solving this we get 2.036*I^4-13831.4*I^2+71824 = 0, I^4-6793.42*I^2+3577 = 0 this gives I = 2.28A or 82.38A (The above calculation part is wrong )
+i = poly ([3577 0 -6793.42 0 1],'x','coeff'); // Expression for the Current in Quadratic form
+a = roots (i); // 4-Value of the current in Amphere
+I = a(4,1); // Curent in Amphere neglecting higher value and negative value
+
+pf_a = sqrt(1-((I*X)/V)^2); // Power factor lagging
+Er_a = sqrt(V^2-(I*X)^2)-(I*R); // Rotational Voltage in Volts
+T_a = (Er_a*I)/(2*%pi*N/60); // Developed torque in Newton-meter
+Ih = I/2; // Current halved in Amphere
+pf_b = sqrt(1-((Ih*X)/V)^2); // Power factor lagging when load current halved
+Er_b = sqrt(V^2-(Ih*X)^2)-(Ih*R); // Rotational Voltage in Volts when load current halved
+N2 = (N*Er_b*I)/(Er_a*Ih); // New speed in RPM when load current halved
+T_b = (Er_b*Ih)/(2*%pi*N2/60); // Developed torque in Newton-meter when load current halved
+eta = 100*(Er_b*Ih)/(V*Ih*pf_b); // Efficiency when load current halved
+
+
+// DISPLAY RESULTS
+
+disp("EXAMPLE : 7.6: SOLUTION :-");
+printf("\n At rated condition, \n\n (a.1) Current, I = %.2f A \n",I)
+printf("\n (a.2) Power factor = %.3f lagging \n",pf_a)
+printf("\n (a.3) Developed torque = %.2f N-m \n",T_a)
+printf("\n When load current halved (reduced to half), \n\n (b.1) Speed, N2 = %.f RPM \n",N2)
+printf("\n (b.2) Power factor = %.4f lagging \n",pf_b)
+printf("\n (b.3) Developed torque = %.2f N-m \n",T_b)
+printf("\n (b.4) Efficiency = %.1f percenatge \n",eta)
+printf("\n From Calculation of the Current(I), rest all the Calculated values in the TEXT BOOK is WRONG because of the Current equation and its value both are WRONGLY calculated and the same used for the further Calculation part, so all the values are in the TEXT BOOK IS WRONG \n")
diff --git a/Working_Examples/2777/CH7/EX7.7/Ex7_7.sce b/Working_Examples/2777/CH7/EX7.7/Ex7_7.sce new file mode 100755 index 0000000..79bd9e0 --- /dev/null +++ b/Working_Examples/2777/CH7/EX7.7/Ex7_7.sce @@ -0,0 +1,51 @@ +
+// ELECTRICAL MACHINES
+// R.K.Srivastava
+// First Impression 2011
+// CENGAGE LEARNING INDIA PVT. LTD
+
+// CHAPTER : 7 : SPECIAL MOTORS AND INTRODUCTION TO GENERALIZED MACHINE THEORY
+
+// EXAMPLE : 7.7
+
+clear ; clc ; close ; // Clear the work space and console
+
+
+// GIVEN DATA
+
+V = 220; // supply voltage in Volts
+f = 50; // Frequency in Hertz
+p = 4; // Number of poles
+Xm = 50; // Mutual reactance in Ohms
+Rs = 0.4; // Resistance of stator windings in Ohms
+Xs = 2.5; // Leakage reactance of stator windings in Ohms
+Ra = 2.2; // Resistance of Armature windings in Ohms
+Xa = 3.1; // Leakage reactance of armature windings in Ohms
+loss = 30; // Rotational losses in Watts
+N = 2000; // Motor running speed in RPM
+
+
+// CALCULATIONS
+
+Ns = (120*f)/p; // Synchronous speed in RPM
+s = N/Ns; // Speed ratio
+I1 = V/(2*Rs + 2*%i*Xs + 2*%i*Xm + (%i*Xm^2)*((s-%i)/(Ra+%i*Xa+%i*Xm)));// line current in Amphere
+pf = cosd(atand(imag(I1),real(I1))); // Power factor lagging
+I2 = (s-%i)*(%i*Xm*I1)/(Ra+%i*Xa+%i*Xm); // line current in Amphere
+P1 = V*abs(I1)*cosd(atand(imag(I1),real(I1))); // Input power in Watts
+Pm = P1 - 2*(abs(I1)^2)*Rs - (abs(I2)^2)*Ra; // Mechanical power developed in Watts
+Po = Pm - loss; // output power in Watts
+eta = 100*(Po/P1); // Efficiency
+
+
+// DISPLAY RESULTS
+
+disp("EXAMPLE : 7.7: SOLUTION :-");
+printf("\n (a) Line currents, I1 = %.2f < %.2f A and I2 = %.2f < %.2f A \n",abs(I1),atand(imag(I1),real(I1)),abs(I2),atand(imag(I2),real(I2)))
+printf("\n (b) Power factor = %.2f lagging \n",pf)
+printf("\n (c) Efficiency = %.2f percentage \n",eta)
+printf("\n\n [ TEXT BOOK SOLUTION IS PRINTED WRONGLY ( I verified by manual calculation )]\n" );
+printf("\n WRONGLY PRINTED ANSWERS ARE :- (a) I1 = 3.37 < -42.78 A instead of %.2f < j(%.2f) A \n ",abs(I1),atand(imag(I1),real(I1)));
+printf("\n (b) I2 = 5.26 < -77.34 A instead of %.2f < j(%.2f) A \n ",abs(I2),atand(imag(I2),real(I2)));
+printf("\n (b) eta = 81.53 percent instead of %.2f percent \n ",eta)
+printf("\n From Calculation of the I1, rest all the Calculated values in the TEXT BOOK is WRONG because of the I1 value is WRONGLY calculated and the same used for the further Calculation part \n")
diff --git a/Working_Examples/2777/CH7/EX7.8/Ex7_8.sce b/Working_Examples/2777/CH7/EX7.8/Ex7_8.sce new file mode 100755 index 0000000..0c7e9ea --- /dev/null +++ b/Working_Examples/2777/CH7/EX7.8/Ex7_8.sce @@ -0,0 +1,40 @@ +
+// ELECTRICAL MACHINES
+// R.K.Srivastava
+// First Impression 2011
+// CENGAGE LEARNING INDIA PVT. LTD
+
+// CHAPTER : 7 : SPECIAL MOTORS AND INTRODUCTION TO GENERALIZED MACHINE THEORY
+
+// EXAMPLE : 7.8
+
+clear ; clc ; close ; // Clear the work space and console
+
+
+// GIVEN DATA
+
+V = 220; // supply voltage in Volts
+f = 50; // Frequency in Hertz
+p = 4; // Number of poles
+Xm = 60; // Mutual reactance in Ohms
+Rs = 1.0; // Resistance of stator windings in Ohms
+Xs = 6.0; // Leakage reactance of stator windings in Ohms
+Ra = 2.5; // Resistance of Armature windings in Ohms
+Xa = 6.0; // Leakage reactance of armature windings in Ohms
+P_hp = 1; // Output power in HP
+N = 1400; // Motor running speed in RPM
+alpha = 15; // Brush displacement from the low-impedance position in degree
+
+// CALCULATIONS
+
+Ns = (120*f)/p; // Synchronous speed in RPM
+s = N/Ns; // Speed ratio
+I = V / (Rs + %i*(Xs+Xm) + (%i*Xm^2*cosd(alpha))*(s*sind(alpha)-(%i*cosd(alpha)))/(Ra+%i*(Xa+Xm))); // Curent in Amphere
+pf = cosd(atand(imag(I),real(I))); // Power factor lagging
+
+
+// DISPLAY RESULTS
+
+disp("EXAMPLE : 7.8: SOLUTION :-");
+printf("\n (a) Currents, I = %.2f < %.2f A \n",abs(I),atand(imag(I),real(I)))
+printf("\n (b) Power factor = %.4f lagging \n",pf)
diff --git a/Working_Examples/2777/CH7/EX7.9/Ex7_9.sce b/Working_Examples/2777/CH7/EX7.9/Ex7_9.sce new file mode 100755 index 0000000..2afaf6b --- /dev/null +++ b/Working_Examples/2777/CH7/EX7.9/Ex7_9.sce @@ -0,0 +1,32 @@ +
+// ELECTRICAL MACHINES
+// R.K.Srivastava
+// First Impression 2011
+// CENGAGE LEARNING INDIA PVT. LTD
+
+// CHAPTER : 7 : SPECIAL MOTORS AND INTRODUCTION TO GENERALIZED MACHINE THEORY
+
+// EXAMPLE : 7.9
+
+clear ; clc ; close ; // Clear the work space and console
+
+
+// GIVEN DATA
+
+E2 = 100; // Per phase standstill EMF in Volts
+Z2s = 0.025 + %i*0.08; // Rotor circuit impedance at standstill
+E = 50; // Injected EMF in Volts
+
+
+// CALCULATIONS
+
+I2 = 0; // Assuming Current is zero
+s1 = (E/E2)+(I2*Z2s)/E2; // Slip when injected EMF is opposite to the E2
+s2 = (-E/E2)+(I2*Z2s)/E2; // Slip when injected EMF is phase with E2
+
+
+// DISPLAY RESULTS
+
+disp("EXAMPLE : 7.9: SOLUTION :-");
+printf("\n (a) Slip when injected EMF is opposite to the E2, s = %.1f \n",s1)
+printf("\n (b) Slip when injected EMF is phase with E2, s = %.1f \n",s2)
diff --git a/Working_Examples/293.zip b/Working_Examples/293.zip Binary files differnew file mode 100644 index 0000000..59b66db --- /dev/null +++ b/Working_Examples/293.zip diff --git a/Working_Examples/293/CH1/EX1.1/eg1_1.sce b/Working_Examples/293/CH1/EX1.1/eg1_1.sce new file mode 100755 index 0000000..8854506 --- /dev/null +++ b/Working_Examples/293/CH1/EX1.1/eg1_1.sce @@ -0,0 +1,8 @@ +E0 = 1/(36*%pi*10^9); //permitivity in free space
+k = 4*%pi*E0 ;
+q1 = 1; // charge on the first particle in coulombs
+q2 = 1; // charge on the second particle in coulombs
+d = 1; // distance between the particles in meter
+F = (q1*q2)/(k*d^2); //force between the two particles in newtons
+
+disp(F, "force in free space between the two particles is in Newtons is:")
\ No newline at end of file diff --git a/Working_Examples/293/CH11/EX11.1/eg11_1.sce b/Working_Examples/293/CH11/EX11.1/eg11_1.sce new file mode 100755 index 0000000..d7a5df0 --- /dev/null +++ b/Working_Examples/293/CH11/EX11.1/eg11_1.sce @@ -0,0 +1,11 @@ +//a
+N2 = '101'; //binary ordered sequence
+N = bin2dec(N2); //decimal equivalent of N2
+disp("a")
+disp(N, "decimal equivalent of 101 = ")
+
+//b
+N2 = '11011'; //binary ordered sequence
+N = bin2dec(N2); //decimal equivalent of N2
+disp("b")
+disp(N, "decimal equivalent of 11011 = ")
\ No newline at end of file diff --git a/Working_Examples/293/CH11/EX11.2/eg11_2.sce b/Working_Examples/293/CH11/EX11.2/eg11_2.sce new file mode 100755 index 0000000..2158620 --- /dev/null +++ b/Working_Examples/293/CH11/EX11.2/eg11_2.sce @@ -0,0 +1,11 @@ +//a
+N8 = '432'; //octal number
+N = oct2dec(N8); //decimal representation of N8
+disp("a")
+disp(N,"decimal equivalent of 432 = ")
+
+//b
+N16 = 'C4F'; //hexadecimal number
+N = hex2dec(N16); //decimal representation of N16
+disp("b")
+disp(N,"decimal equivalent of C4F = ")
diff --git a/Working_Examples/293/CH11/EX11.3/eg11_3.sce b/Working_Examples/293/CH11/EX11.3/eg11_3.sce new file mode 100755 index 0000000..3d06f04 --- /dev/null +++ b/Working_Examples/293/CH11/EX11.3/eg11_3.sce @@ -0,0 +1,5 @@ +N = 247;
+N2 = dec2bin(N); //binary equivalent of N
+N8 = dec2oct(N); //octal equivalent of N
+disp(N2, "binary equivalent of 247 = ")
+disp(N8, "octal equivalent of 247 = ")
\ No newline at end of file diff --git a/Working_Examples/293/CH12/EX12.2/eg12_2.pdf b/Working_Examples/293/CH12/EX12.2/eg12_2.pdf Binary files differnew file mode 100755 index 0000000..7ca568c --- /dev/null +++ b/Working_Examples/293/CH12/EX12.2/eg12_2.pdf diff --git a/Working_Examples/293/CH12/EX12.2/eg12_2.xcos b/Working_Examples/293/CH12/EX12.2/eg12_2.xcos new file mode 100755 index 0000000..f105056 --- /dev/null +++ b/Working_Examples/293/CH12/EX12.2/eg12_2.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" finalIntegrationTime="4.0" title="eg12_2"><!--Xcos - 1.0 - scilab-5.5.2 - 20160406 2040--><mxGraphModel as="model"><root><mxCell id="47283b12:1341c9b3c8b:-78f6"/><mxCell id="47283b12:1341c9b3c8b:-78f7" parent="47283b12:1341c9b3c8b:-78f6"/><BasicBlock blockType="d" id="47283b12:1341c9b3c8b:-78e6" interfaceFunctionName="GENSQR_f" ordering="1" parent="47283b12:1341c9b3c8b:-78f7" simulationFunctionName="gensqr" simulationFunctionType="DEFAULT" style="GENSQR_f;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="dState" height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="70.0" x="30.0" y="280.0"/></BasicBlock><ControlPort dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-78e4" ordering="1" parent="47283b12:1341c9b3c8b:-78e6" style="ControlPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="36.0" y="-8.0"/></ControlPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="47283b12:1341c9b3c8b:-78e5" ordering="1" parent="47283b12:1341c9b3c8b:-78e6" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="70.0" y="16.0"/></ExplicitOutputPort><BasicBlock blockType="h" id="47283b12:1341c9b3c8b:-78e3" interfaceFunctionName="CLOCK_c" ordering="2" parent="47283b12:1341c9b3c8b:-78f7" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="139.0"/><data column="1" line="0" realPart="-170.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="793b78b8:134842cf157:-7f59"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="793b78b8:134842cf157:-7f59"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="2"/><data column="0" line="1" value="0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="2.0"/><data column="0" line="1" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="793b78b8:134842cf157:-7f55"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="793b78b8:134842cf157:-7f55"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="156.71066000000002"/><data column="1" line="0" realPart="-196.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="8.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="5.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="793b78b8:134842cf157:-7f50"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="793b78b8:134842cf157:-7f50"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="152.0"/><data column="0" line="2" realPart="168.71066000000002"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-44.0"/><data column="0" line="1" realPart="-252.0"/><data column="0" line="2" realPart="-184.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="167.37732666666668"/><data column="0" line="1" realPart="169.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-200.0"/><data column="0" line="1" realPart="-146.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="170.04399333333336"/><data column="0" line="1" realPart="202.70999999999998"/><data column="0" line="2" realPart="162.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-200.0"/><data column="0" line="1" realPart="-106.0"/><data column="0" line="2" realPart="-106.0"/><data column="0" line="3" realPart="4.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="50.0" y="210.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-78e2" ordering="1" parent="47283b12:1341c9b3c8b:-78e3" style="CommandPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><BasicBlock blockType="h" id="47283b12:1341c9b3c8b:-78e1" interfaceFunctionName="CLOCK_c" ordering="3" parent="47283b12:1341c9b3c8b:-78f7" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="139.0"/><data column="1" line="0" realPart="-170.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="793b78b8:134842cf157:-7f47"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="793b78b8:134842cf157:-7f47"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="1"/><data column="0" line="1" value="0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="1.0"/><data column="0" line="1" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="793b78b8:134842cf157:-7f43"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="793b78b8:134842cf157:-7f43"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="156.71066000000002"/><data column="1" line="0" realPart="-196.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="8.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="5.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="793b78b8:134842cf157:-7f3e"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="793b78b8:134842cf157:-7f3e"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="152.0"/><data column="0" line="2" realPart="168.71066000000002"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-44.0"/><data column="0" line="1" realPart="-252.0"/><data column="0" line="2" realPart="-184.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="167.37732666666668"/><data column="0" line="1" realPart="169.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-200.0"/><data column="0" line="1" realPart="-146.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="170.04399333333336"/><data column="0" line="1" realPart="202.70999999999998"/><data column="0" line="2" realPart="162.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-200.0"/><data column="0" line="1" realPart="-106.0"/><data column="0" line="2" realPart="-106.0"/><data column="0" line="3" realPart="4.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="50.0" y="90.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-78e0" ordering="1" parent="47283b12:1341c9b3c8b:-78e1" style="CommandPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><CommandControlLink id="47283b12:1341c9b3c8b:-78df" parent="47283b12:1341c9b3c8b:-78f7" source="47283b12:1341c9b3c8b:-78e0" target="47283b12:1341c9b3c8b:-78e7"><mxGeometry as="geometry" x="-240.0" y="90.0"><mxPoint as="sourcePoint" x="70.0" y="134.0"/><mxPoint as="targetPoint" x="70.0" y="150.0"/></mxGeometry></CommandControlLink><CommandControlLink id="47283b12:1341c9b3c8b:-78de" parent="47283b12:1341c9b3c8b:-78f7" source="47283b12:1341c9b3c8b:-78e2" target="47283b12:1341c9b3c8b:-78e4"><mxGeometry as="geometry" x="-240.0" y="80.0"><mxPoint as="sourcePoint" x="70.0" y="254.0"/><mxPoint as="targetPoint" x="70.0" y="270.0"/></mxGeometry></CommandControlLink><BasicBlock dependsOnU="1" id="47283b12:1341c9b3c8b:-78d2" interfaceFunctionName="LOGIC" ordering="4" parent="47283b12:1341c9b3c8b:-78f7" simulationFunctionName="logic" simulationFunctionType="C_OR_FORTRAN" style="LOGIC;flip=false;mirror=false"><ScilabString as="exprs" height="2" width="1"><data column="0" line="0" value="[0;1;1;1]"/><data column="0" line="1" value="1"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"><ScilabInteger height="4" intPrecision="sci_int8" width="1"><data column="0" line="0" value="0"/><data column="0" line="1" value="1"/><data column="0" line="2" value="1"/><data column="0" line="3" value="1"/></ScilabInteger></Array><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="50.0" width="60.0" x="340.0" y="170.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-78bf" ordering="1" parent="47283b12:1341c9b3c8b:-78d2" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ExplicitInputPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-78be" ordering="2" parent="47283b12:1341c9b3c8b:-78d2" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="36.0"/></ExplicitInputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-78bd" ordering="1" parent="47283b12:1341c9b3c8b:-78d2" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="60.0" y="16.0"/></ExplicitOutputPort><BasicBlock blockType="h" id="47283b12:1341c9b3c8b:-780f" interfaceFunctionName="CLOCK_c" ordering="5" parent="47283b12:1341c9b3c8b:-78f7" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="139.0"/><data column="1" line="0" realPart="-170.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="793b78b8:134842cf157:-7f35"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="793b78b8:134842cf157:-7f35"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.005"/><data column="0" line="1" value="0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.005"/><data column="0" line="1" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="793b78b8:134842cf157:-7f31"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="793b78b8:134842cf157:-7f31"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="156.71066000000002"/><data column="1" line="0" realPart="-196.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="8.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="5.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="793b78b8:134842cf157:-7f2c"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="793b78b8:134842cf157:-7f2c"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="152.0"/><data column="0" line="2" realPart="168.71066000000002"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-44.0"/><data column="0" line="1" realPart="-252.0"/><data column="0" line="2" realPart="-184.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="167.37732666666668"/><data column="0" line="1" realPart="169.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-200.0"/><data column="0" line="1" realPart="-146.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="170.04399333333336"/><data column="0" line="1" realPart="202.70999999999998"/><data column="0" line="2" realPart="162.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-200.0"/><data column="0" line="1" realPart="-106.0"/><data column="0" line="2" realPart="-106.0"/><data column="0" line="3" realPart="4.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="660.0" y="120.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-780e" ordering="1" parent="47283b12:1341c9b3c8b:-780f" style="CommandPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><BasicBlock dependsOnU="1" id="47283b12:1341c9b3c8b:-780d" interfaceFunctionName="CMSCOPE" ordering="6" parent="47283b12:1341c9b3c8b:-78f7" simulationFunctionName="cmscope" simulationFunctionType="C_OR_FORTRAN" style="CMSCOPE;flip=false;mirror=false"><ScilabString as="exprs" height="11" width="1"><data column="0" line="0" value="1 1 1 1"/><data column="0" line="1" value="1 3 5 7 9 11 13 15"/><data column="0" line="2" value="-1"/><data column="0" line="3" value="[]"/><data column="0" line="4" value="[]"/><data column="0" line="5" value="-0.2 -0.2 -0.2 -0.2"/><data column="0" line="6" value="1.2 1.2 1.2 1.2 "/><data column="0" line="7" value="4 4 4 4"/><data column="0" line="8" value="20"/><data column="0" line="9" value="0"/><data column="0" line="10" value=""/></ScilabString><ScilabDouble as="realParameters" height="13" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="4.0"/><data column="0" line="2" realPart="4.0"/><data column="0" line="3" realPart="4.0"/><data column="0" line="4" realPart="4.0"/><data column="0" line="5" realPart="-0.2"/><data column="0" line="6" realPart="1.2"/><data column="0" line="7" realPart="-0.2"/><data column="0" line="8" realPart="1.2"/><data column="0" line="9" realPart="-0.2"/><data column="0" line="10" realPart="1.2"/><data column="0" line="11" realPart="-0.2"/><data column="0" line="12" realPart="1.2"/></ScilabDouble><ScilabDouble as="integerParameters" height="16" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="4.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="-1.0"/><data column="0" line="4" realPart="-1.0"/><data column="0" line="5" realPart="-1.0"/><data column="0" line="6" realPart="-1.0"/><data column="0" line="7" realPart="1.0"/><data column="0" line="8" realPart="1.0"/><data column="0" line="9" realPart="1.0"/><data column="0" line="10" realPart="1.0"/><data column="0" line="11" realPart="1.0"/><data column="0" line="12" realPart="3.0"/><data column="0" line="13" realPart="5.0"/><data column="0" line="14" realPart="7.0"/><data column="0" line="15" realPart="0.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="80.0" width="40.0" x="660.0" y="190.0"/></BasicBlock><ControlPort dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-77f7" ordering="1" parent="47283b12:1341c9b3c8b:-780d" style="ControlPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="47283b12:1341c9b3c8b:-77fa" ordering="2" parent="47283b12:1341c9b3c8b:-780d" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="26.0"/></ExplicitInputPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="47283b12:1341c9b3c8b:-77f9" ordering="3" parent="47283b12:1341c9b3c8b:-780d" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="46.0"/></ExplicitInputPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="47283b12:1341c9b3c8b:-77f8" ordering="4" parent="47283b12:1341c9b3c8b:-780d" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="66.0"/></ExplicitInputPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="47283b12:1341c9b3c8b:-77fb" ordering="1" parent="47283b12:1341c9b3c8b:-780d" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ExplicitInputPort><CommandControlLink id="47283b12:1341c9b3c8b:-7807" parent="47283b12:1341c9b3c8b:-78f7" source="47283b12:1341c9b3c8b:-780e" target="47283b12:1341c9b3c8b:-77f7"><mxGeometry as="geometry" x="240.0" y="60.0"><mxPoint as="sourcePoint" x="680.0" y="164.0"/><mxPoint as="targetPoint" x="680.0" y="180.0"/></mxGeometry></CommandControlLink><SuperBlock id="47283b12:1341c9b3c8b:-77f5" ordering="7" parent="47283b12:1341c9b3c8b:-78f7" simulationFunctionType="DEFAULT" style="SUPER_f;flip=false;mirror=false"><SuperBlockDiagram as="child" background="-1" title=""><!--Xcos - 1.0 - scilab-5.5.2 - 20160406 2040--><mxGraphModel as="model"><root><mxCell id="47283b12:1341c9b3c8b:-77f3"/><mxCell id="47283b12:1341c9b3c8b:-77f4" parent="47283b12:1341c9b3c8b:-77f3"/><BasicBlock dependsOnU="1" id="47283b12:1341c9b3c8b:-78ab" interfaceFunctionName="LOGIC" ordering="1" parent="47283b12:1341c9b3c8b:-77f4" simulationFunctionName="logic" simulationFunctionType="C_OR_FORTRAN" style="LOGIC;flip=false;mirror=false"><ScilabString as="exprs" height="2" width="1"><data column="0" line="0" value="[0;1;1;1]"/><data column="0" line="1" value="1"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"><ScilabInteger height="4" intPrecision="sci_int8" width="1"><data column="0" line="0" value="0"/><data column="0" line="1" value="1"/><data column="0" line="2" value="1"/><data column="0" line="3" value="1"/></ScilabInteger></Array><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="50.0" width="60.0" x="380.0" y="200.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-78a2" ordering="1" parent="47283b12:1341c9b3c8b:-78ab" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ExplicitInputPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-78a1" ordering="2" parent="47283b12:1341c9b3c8b:-78ab" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="36.0"/></ExplicitInputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-78a0" ordering="1" parent="47283b12:1341c9b3c8b:-78ab" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="60.0" y="16.0"/></ExplicitOutputPort><BasicBlock dependsOnU="1" id="47283b12:1341c9b3c8b:-789e" interfaceFunctionName="LOGIC" ordering="2" parent="47283b12:1341c9b3c8b:-77f4" simulationFunctionName="logic" simulationFunctionType="C_OR_FORTRAN" style="LOGIC;flip=false;mirror=false"><ScilabString as="exprs" height="2" width="1"><data column="0" line="0" value="[0;0;0;1]"/><data column="0" line="1" value="1"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"><ScilabInteger height="4" intPrecision="sci_int8" width="1"><data column="0" line="0" value="0"/><data column="0" line="1" value="0"/><data column="0" line="2" value="0"/><data column="0" line="3" value="1"/></ScilabInteger></Array><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="50.0" width="60.0" x="280.0" y="190.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-7895" ordering="1" parent="47283b12:1341c9b3c8b:-789e" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ExplicitInputPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-7894" ordering="2" parent="47283b12:1341c9b3c8b:-789e" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="36.0"/></ExplicitInputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-7893" ordering="1" parent="47283b12:1341c9b3c8b:-789e" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="60.0" y="16.0"/></ExplicitOutputPort><ExplicitLink id="47283b12:1341c9b3c8b:-7885" parent="47283b12:1341c9b3c8b:-77f4" source="47283b12:1341c9b3c8b:-78b4" target="47283b12:1341c9b3c8b:-7895"><mxGeometry as="geometry" x="-160.0"><mxPoint as="sourcePoint" x="244.0" y="200.0"/><mxPoint as="targetPoint" x="270.0" y="200.0"/></mxGeometry></ExplicitLink><ExplicitLink id="47283b12:1341c9b3c8b:-7880" parent="47283b12:1341c9b3c8b:-77f4" source="47283b12:1341c9b3c8b:-7893" target="47283b12:1341c9b3c8b:-78a2"><mxGeometry as="geometry" x="-160.0"><mxPoint as="sourcePoint" x="344.0" y="210.0"/><mxPoint as="targetPoint" x="380.0" y="210.0"/></mxGeometry></ExplicitLink><ExplicitOutBlock id="47283b12:1341c9b3c8b:-77f2" ordering="3" parent="47283b12:1341c9b3c8b:-77f4" simulationFunctionType="DEFAULT" style="OUT_f;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble as="integerParameters" height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><mxGeometry as="geometry" height="40.0" width="40.0" x="490.0" y="200.0"/></ExplicitOutBlock><ExplicitInputPort dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-77f1" ordering="1" parent="47283b12:1341c9b3c8b:-77f2" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitInBlock id="47283b12:1341c9b3c8b:-77ee" ordering="4" parent="47283b12:1341c9b3c8b:-77f4" simulationFunctionType="DEFAULT" style="IN_f;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble as="integerParameters" height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><mxGeometry as="geometry" height="40.0" width="40.0" x="20.5" y="180.5"/></ExplicitInBlock><ExplicitOutputPort dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-77ed" ordering="1" parent="47283b12:1341c9b3c8b:-77ee" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ExplicitInBlock id="47283b12:1341c9b3c8b:-77ea" ordering="5" parent="47283b12:1341c9b3c8b:-77f4" simulationFunctionType="DEFAULT" style="IN_f;flip=false;mirror=false" value="2"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="2"/></ScilabString><ScilabDouble as="integerParameters" height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble><mxGeometry as="geometry" height="40.0" width="40.0" x="60.5" y="210.5"/></ExplicitInBlock><ExplicitOutputPort dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-77e9" ordering="1" parent="47283b12:1341c9b3c8b:-77ea" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><TextBlock id="47283b12:1341c9b3c8b:-76b3" parent="47283b12:1341c9b3c8b:-77f4" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="NOT"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="NOT"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="NOT"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="200.0" y="160.0"/></TextBlock><TextBlock id="47283b12:1341c9b3c8b:-76b2" parent="47283b12:1341c9b3c8b:-77f4" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="AND"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="AND"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="AND"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="300.0" y="160.0"/></TextBlock><TextBlock id="47283b12:1341c9b3c8b:-76aa" parent="47283b12:1341c9b3c8b:-77f4" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="OR"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="OR"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="OR"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="390.0" y="170.0"/></TextBlock><ExplicitLink id="47283b12:1341c9b3c8b:-762b" parent="47283b12:1341c9b3c8b:-77f4" source="47283b12:1341c9b3c8b:-77e9" target="47283b12:1341c9b3c8b:-7894"><mxGeometry as="geometry" x="-80.0" y="10.0"><mxPoint as="sourcePoint" x="104.5" y="230.5"/><mxPoint as="targetPoint" x="270.0" y="230.0"/></mxGeometry></ExplicitLink><SplitBlock id="47283b12:1341c9b3c8b:-7629" ordering="6" parent="47283b12:1341c9b3c8b:-77f4" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="137.0" y="197.0"/></SplitBlock><ExplicitOutputPort dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-7627" ordering="1" parent="47283b12:1341c9b3c8b:-7629" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-7626" ordering="2" parent="47283b12:1341c9b3c8b:-7629" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ExplicitOutputPort><ExplicitInputPort dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-7628" ordering="1" parent="47283b12:1341c9b3c8b:-7629" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ExplicitInputPort><ExplicitLink id="47283b12:1341c9b3c8b:-7625" parent="47283b12:1341c9b3c8b:-77f4" source="47283b12:1341c9b3c8b:-77ed" target="47283b12:1341c9b3c8b:-7628"><mxGeometry as="geometry" x="-80.0" y="10.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ExplicitLink><ExplicitLink id="47283b12:1341c9b3c8b:-7624" parent="47283b12:1341c9b3c8b:-77f4" source="47283b12:1341c9b3c8b:-7627" target="47283b12:1341c9b3c8b:-78b5"><mxGeometry as="geometry" x="-80.0" y="10.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ExplicitLink><ExplicitLink id="47283b12:1341c9b3c8b:-762a" parent="47283b12:1341c9b3c8b:-77f4" source="47283b12:1341c9b3c8b:-7626" target="47283b12:1341c9b3c8b:-78a1"><mxGeometry as="geometry" x="-80.0" y="10.0"><mxPoint as="sourcePoint" x="376.0" y="240.0"/><mxPoint as="targetPoint" x="140.0" y="200.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="140.0" y="200.0"/><mxPoint x="140.0" y="260.0"/><mxPoint x="350.0" y="260.0"/><mxPoint x="350.0" y="240.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="47283b12:1341c9b3c8b:-756f" parent="47283b12:1341c9b3c8b:-77f4" source="47283b12:1341c9b3c8b:-78a0" target="47283b12:1341c9b3c8b:-77f1"><mxGeometry as="geometry" x="-80.0" y="10.0"><mxPoint as="sourcePoint" x="444.0" y="220.0"/><mxPoint as="targetPoint" x="490.0" y="220.0"/></mxGeometry></ExplicitLink><BasicBlock dependsOnU="1" id="47283b12:1341c9b3c8b:-78bb" interfaceFunctionName="LOGIC" ordering="7" parent="47283b12:1341c9b3c8b:-77f4" simulationFunctionName="logic" simulationFunctionType="C_OR_FORTRAN" style="LOGIC;flip=false;mirror=false"><ScilabString as="exprs" height="2" width="1"><data column="0" line="0" value="[1;0]"/><data column="0" line="1" value="1"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"><ScilabInteger height="2" intPrecision="sci_int8" width="1"><data column="0" line="0" value="1"/><data column="0" line="1" value="0"/></ScilabInteger></Array><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="20.0" width="60.0" x="180.0" y="190.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-78b5" ordering="1" parent="47283b12:1341c9b3c8b:-78bb" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ExplicitInputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-78b4" ordering="1" parent="47283b12:1341c9b3c8b:-78bb" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="60.0" y="6.0"/></ExplicitOutputPort></root></mxGraphModel><mxCell as="defaultParent" id="47283b12:1341c9b3c8b:-77f4" parent="47283b12:1341c9b3c8b:-77f3"/></SuperBlockDiagram><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="1.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="320.0"/><data column="1" line="0" realPart="-200.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="60.0"/><data column="1" line="0" realPart="50.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="[0;1;1;1]"/><data column="0" line="1" value="1"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="9.0"/><data column="0" line="1" realPart="13.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="14.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"LOGIC",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="E"/><data column="0" line="1" value="E"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/><data column="0" line="1" value="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value=""/><data column="0" line="1" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="LOGIC;flip=false;mirror=false"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="logic"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="1.0"/><data column="0" line="1" realPart="1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="1.0"/><data column="0" line="1" realPart="1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabInteger height="4" intPrecision="sci_int8" width="1"><data column="0" line="0" value="0"/><data column="0" line="1" value="1"/><data column="0" line="2" value="1"/><data column="0" line="3" value="1"/></ScilabInteger></Array><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="true"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="47283b12:1341c9b3c8b:-78ab"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="LOGIC"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="47283b12:1341c9b3c8b:-78ab"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="220.0"/><data column="1" line="0" realPart="-190.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="60.0"/><data column="1" line="0" realPart="50.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="[0;0;0;1]"/><data column="0" line="1" value="1"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="8.0"/><data column="0" line="1" realPart="10.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="9.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"LOGIC",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="E"/><data column="0" line="1" value="E"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/><data column="0" line="1" value="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value=""/><data column="0" line="1" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="LOGIC;flip=false;mirror=false"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="logic"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="1.0"/><data column="0" line="1" realPart="1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="1.0"/><data column="0" line="1" realPart="1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabInteger height="4" intPrecision="sci_int8" width="1"><data column="0" line="0" value="0"/><data column="0" line="1" value="0"/><data column="0" line="2" value="0"/><data column="0" line="3" value="1"/></ScilabInteger></Array><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="true"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="47283b12:1341c9b3c8b:-789e"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="LOGIC"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="47283b12:1341c9b3c8b:-789e"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="450.0"/><data column="1" line="0" realPart="-200.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="14.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"OUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="OUT_f;flip=false;mirror=false"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-2.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="47283b12:1341c9b3c8b:-77f2"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="OUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="47283b12:1341c9b3c8b:-77f2"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="-19.5"/><data column="1" line="0" realPart="-180.5"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="11.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"IN_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="IN_f;flip=false;mirror=false"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="input"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-2.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="47283b12:1341c9b3c8b:-77ee"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="IN_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="47283b12:1341c9b3c8b:-77ee"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.5"/><data column="1" line="0" realPart="-210.5"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="2"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="10.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"IN_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="IN_f;flip=false;mirror=false"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="input"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-2.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="47283b12:1341c9b3c8b:-77ea"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="IN_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="47283b12:1341c9b3c8b:-77ea"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="130.0"/><data column="1" line="0" realPart="-197.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="7.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="11.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="12.0"/><data column="0" line="1" realPart="13.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"SPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="E"/><data column="0" line="1" value="E"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/><data column="0" line="1" value="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value=""/><data column="0" line="1" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="SPLIT_f;flip=false;mirror=false"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="lsplit"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-2.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-2.0"/><data column="0" line="1" realPart="-2.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="47283b12:1341c9b3c8b:-7629"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="SPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="47283b12:1341c9b3c8b:-7629"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="120.0"/><data column="1" line="0" realPart="-190.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="60.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="[1;0]"/><data column="0" line="1" value="1"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="12.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"LOGIC",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="LOGIC;flip=false;mirror=false"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="logic"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabInteger height="2" intPrecision="sci_int8" width="1"><data column="0" line="0" value="1"/><data column="0" line="1" value="0"/></ScilabInteger></Array><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="true"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="47283b12:1341c9b3c8b:-78bb"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="LOGIC"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="47283b12:1341c9b3c8b:-78bb"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="244.0"/><data column="0" line="1" realPart="276.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-180.0"/><data column="0" line="1" realPart="-150.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="344.0"/><data column="0" line="1" realPart="376.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-160.0"/><data column="0" line="1" realPart="-160.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="104.5"/><data column="0" line="1" realPart="276.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-190.5"/><data column="0" line="1" realPart="-180.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="64.5"/><data column="0" line="1" realPart="133.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-160.5"/><data column="0" line="1" realPart="-190.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="6.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="148.0"/><data column="0" line="1" realPart="176.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-190.0"/><data column="0" line="1" realPart="-180.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="6.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="6" width="1"><data column="0" line="0" realPart="148.0"/><data column="0" line="1" realPart="140.0"/><data column="0" line="2" realPart="140.0"/><data column="0" line="3" realPart="350.0"/><data column="0" line="4" realPart="350.0"/><data column="0" line="5" realPart="376.0"/></ScilabDouble><ScilabDouble height="6" width="1"><data column="0" line="0" realPart="-200.0"/><data column="0" line="1" realPart="-200.0"/><data column="0" line="2" realPart="-260.0"/><data column="0" line="3" realPart="-260.0"/><data column="0" line="4" realPart="-240.0"/><data column="0" line="5" realPart="-190.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="6.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="444.0"/><data column="0" line="1" realPart="486.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-170.0"/><data column="0" line="1" realPart="-180.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="350.5" y="250.0"/></SuperBlock><ExplicitInputPort dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-76a7" ordering="1" parent="47283b12:1341c9b3c8b:-77f5" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ExplicitInputPort><ExplicitInputPort dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-76a6" ordering="2" parent="47283b12:1341c9b3c8b:-77f5" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="26.0"/></ExplicitInputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-77f0" ordering="1" parent="47283b12:1341c9b3c8b:-77f5" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><TextBlock id="47283b12:1341c9b3c8b:-76e0" parent="47283b12:1341c9b3c8b:-78f7" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="40.0" width="40.0" x="450.0" y="130.0"/></TextBlock><TextBlock id="47283b12:1341c9b3c8b:-76c5" parent="47283b12:1341c9b3c8b:-78f7" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="A"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="A"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="A"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="-10.0" y="160.0"/></TextBlock><TextBlock id="47283b12:1341c9b3c8b:-76c4" parent="47283b12:1341c9b3c8b:-78f7" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="B"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="B"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="B"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="-10.0" y="280.0"/></TextBlock><TextBlock id="47283b12:1341c9b3c8b:-76c2" parent="47283b12:1341c9b3c8b:-78f7" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="OR"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="OR"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="OR"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="350.0" y="160.0"/></TextBlock><TextBlock id="47283b12:1341c9b3c8b:-76c1" parent="47283b12:1341c9b3c8b:-78f7" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="A + B"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="A + B"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="A + B"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="350.0" y="210.0"/></TextBlock><TextBlock id="47283b12:1341c9b3c8b:-76c0" parent="47283b12:1341c9b3c8b:-78f7" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="A + (~A).B"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="A + (~A).B"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="A + (~A).B"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="350.0" y="280.0"/></TextBlock><TextBlock id="47283b12:1341c9b3c8b:-76bf" parent="47283b12:1341c9b3c8b:-78f7" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="A B Z<br>1 1 1<br>1 0 0<br>0 1 1<br>0 0 0"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="A B Z<br>1 1 1<br>1 0 0<br>0 1 1<br>0 0 0"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="A B Z<br>1 1 1<br>1 0 0<br>0 1 1<br>0 0 0"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="310.0" y="390.0"/></TextBlock><TextBlock id="47283b12:1341c9b3c8b:-76be" parent="47283b12:1341c9b3c8b:-78f7" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="Truth Table"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="Truth Table"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="Truth Table"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="310.0" y="340.0"/></TextBlock><BasicBlock dependsOnU="1" id="47283b12:1341c9b3c8b:-75cd" interfaceFunctionName="CONVERT" ordering="8" parent="47283b12:1341c9b3c8b:-78f7" simulationFunctionName="convert" simulationFunctionType="C_OR_FORTRAN" style="CONVERT;flip=false;mirror=false"><ScilabString as="exprs" height="3" width="1"><data column="0" line="0" value="1"/><data column="0" line="1" value="5"/><data column="0" line="2" value="0"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="20.0" width="80.0" x="150.0" y="170.0"/></BasicBlock><ExplicitInputPort dataType="REAL_MATRIX" id="47283b12:1341c9b3c8b:-75cb" ordering="1" parent="47283b12:1341c9b3c8b:-75cd" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ExplicitInputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-75cc" ordering="1" parent="47283b12:1341c9b3c8b:-75cd" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="80.0" y="6.0"/></ExplicitOutputPort><ExplicitLink id="47283b12:1341c9b3c8b:-75c7" parent="47283b12:1341c9b3c8b:-78f7" source="47283b12:1341c9b3c8b:-78e8" target="47283b12:1341c9b3c8b:-75cb"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="104.0" y="180.0"/><mxPoint as="targetPoint" x="150.0" y="180.0"/></mxGeometry></ExplicitLink><BasicBlock dependsOnU="1" id="47283b12:1341c9b3c8b:-75c3" interfaceFunctionName="CONVERT" ordering="9" parent="47283b12:1341c9b3c8b:-78f7" simulationFunctionName="convert" simulationFunctionType="C_OR_FORTRAN" style="CONVERT;flip=false;mirror=false"><ScilabString as="exprs" height="3" width="1"><data column="0" line="0" value="1"/><data column="0" line="1" value="5"/><data column="0" line="2" value="0"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="20.0" width="80.0" x="150.0" y="290.0"/></BasicBlock><ExplicitInputPort dataType="REAL_MATRIX" id="47283b12:1341c9b3c8b:-75c1" ordering="1" parent="47283b12:1341c9b3c8b:-75c3" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ExplicitInputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-75c2" ordering="1" parent="47283b12:1341c9b3c8b:-75c3" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="80.0" y="6.0"/></ExplicitOutputPort><ExplicitLink id="47283b12:1341c9b3c8b:-75b3" parent="47283b12:1341c9b3c8b:-78f7" source="47283b12:1341c9b3c8b:-78e5" target="47283b12:1341c9b3c8b:-75c1"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="104.0" y="300.0"/><mxPoint as="targetPoint" x="140.0" y="300.0"/></mxGeometry></ExplicitLink><BasicBlock dependsOnU="1" id="47283b12:1341c9b3c8b:-7545" interfaceFunctionName="CONVERT" ordering="10" parent="47283b12:1341c9b3c8b:-78f7" simulationFunctionName="convert" simulationFunctionType="C_OR_FORTRAN" style="CONVERT;flip=false;mirror=false"><ScilabString as="exprs" height="3" width="1"><data column="0" line="0" value="5"/><data column="0" line="1" value="1"/><data column="0" line="2" value="0"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="1" width="1"><data column="0" line="0" realPart="18.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="20.0" width="80.0" x="540.0" y="190.0"/></BasicBlock><ExplicitInputPort dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-752c" ordering="1" parent="47283b12:1341c9b3c8b:-7545" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ExplicitInputPort><ExplicitOutputPort dataType="REAL_MATRIX" id="47283b12:1341c9b3c8b:-752b" ordering="1" parent="47283b12:1341c9b3c8b:-7545" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="80.0" y="6.0"/></ExplicitOutputPort><BasicBlock dependsOnU="1" id="47283b12:1341c9b3c8b:-7542" interfaceFunctionName="CONVERT" ordering="11" parent="47283b12:1341c9b3c8b:-78f7" simulationFunctionName="convert" simulationFunctionType="C_OR_FORTRAN" style="CONVERT;flip=false;mirror=false"><ScilabString as="exprs" height="3" width="1"><data column="0" line="0" value="5"/><data column="0" line="1" value="1"/><data column="0" line="2" value="0"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="1" width="1"><data column="0" line="0" realPart="18.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="20.0" width="80.0" x="540.0" y="210.0"/></BasicBlock><ExplicitInputPort dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-7540" ordering="1" parent="47283b12:1341c9b3c8b:-7542" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ExplicitInputPort><ExplicitOutputPort dataType="REAL_MATRIX" id="47283b12:1341c9b3c8b:-7541" ordering="1" parent="47283b12:1341c9b3c8b:-7542" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="80.0" y="6.0"/></ExplicitOutputPort><BasicBlock dependsOnU="1" id="47283b12:1341c9b3c8b:-753f" interfaceFunctionName="CONVERT" ordering="12" parent="47283b12:1341c9b3c8b:-78f7" simulationFunctionName="convert" simulationFunctionType="C_OR_FORTRAN" style="CONVERT;flip=false;mirror=false"><ScilabString as="exprs" height="3" width="1"><data column="0" line="0" value="5"/><data column="0" line="1" value="1"/><data column="0" line="2" value="0"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="1" width="1"><data column="0" line="0" realPart="18.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="20.0" width="80.0" x="540.0" y="230.0"/></BasicBlock><ExplicitInputPort dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-753d" ordering="1" parent="47283b12:1341c9b3c8b:-753f" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ExplicitInputPort><ExplicitOutputPort dataType="REAL_MATRIX" id="47283b12:1341c9b3c8b:-753e" ordering="1" parent="47283b12:1341c9b3c8b:-753f" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="80.0" y="6.0"/></ExplicitOutputPort><ExplicitLink id="47283b12:1341c9b3c8b:-7529" parent="47283b12:1341c9b3c8b:-78f7" source="47283b12:1341c9b3c8b:-752b" target="47283b12:1341c9b3c8b:-77fb"><mxGeometry as="geometry" x="50.0"><mxPoint as="sourcePoint" x="624.0" y="200.0"/><mxPoint as="targetPoint" x="650.0" y="200.0"/></mxGeometry></ExplicitLink><ExplicitLink id="47283b12:1341c9b3c8b:-7528" parent="47283b12:1341c9b3c8b:-78f7" source="47283b12:1341c9b3c8b:-7541" target="47283b12:1341c9b3c8b:-77fa"><mxGeometry as="geometry" x="50.0"><mxPoint as="sourcePoint" x="624.0" y="220.0"/><mxPoint as="targetPoint" x="650.0" y="220.0"/></mxGeometry></ExplicitLink><ExplicitLink id="47283b12:1341c9b3c8b:-7527" parent="47283b12:1341c9b3c8b:-78f7" source="47283b12:1341c9b3c8b:-753e" target="47283b12:1341c9b3c8b:-77f9"><mxGeometry as="geometry" x="50.0"><mxPoint as="sourcePoint" x="624.0" y="240.0"/><mxPoint as="targetPoint" x="650.0" y="240.0"/></mxGeometry></ExplicitLink><ExplicitLink id="47283b12:1341c9b3c8b:-7526" parent="47283b12:1341c9b3c8b:-78f7" source="47283b12:1341c9b3c8b:-753b" target="47283b12:1341c9b3c8b:-77f8"><mxGeometry as="geometry" x="50.0"><mxPoint as="sourcePoint" x="624.0" y="260.0"/><mxPoint as="targetPoint" x="650.0" y="260.0"/></mxGeometry></ExplicitLink><SplitBlock id="47283b12:1341c9b3c8b:-7507" ordering="13" parent="47283b12:1341c9b3c8b:-78f7" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="257.0" y="177.0"/></SplitBlock><ExplicitOutputPort dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-7505" ordering="1" parent="47283b12:1341c9b3c8b:-7507" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-7504" ordering="2" parent="47283b12:1341c9b3c8b:-7507" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ExplicitOutputPort><ExplicitInputPort dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-7506" ordering="1" parent="47283b12:1341c9b3c8b:-7507" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ExplicitInputPort><ExplicitLink id="47283b12:1341c9b3c8b:-7503" parent="47283b12:1341c9b3c8b:-78f7" source="47283b12:1341c9b3c8b:-75cc" target="47283b12:1341c9b3c8b:-7506"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ExplicitLink><ExplicitLink id="47283b12:1341c9b3c8b:-7508" parent="47283b12:1341c9b3c8b:-78f7" source="47283b12:1341c9b3c8b:-7504" target="47283b12:1341c9b3c8b:-76a7"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="346.5" y="260.0"/><mxPoint as="targetPoint" x="260.0" y="180.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="260.0" y="260.0"/></Array></mxGeometry></ExplicitLink><SplitBlock id="47283b12:1341c9b3c8b:-7500" ordering="14" parent="47283b12:1341c9b3c8b:-78f7" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="287.0" y="277.0"/></SplitBlock><ExplicitOutputPort dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-74fe" ordering="1" parent="47283b12:1341c9b3c8b:-7500" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-74fd" ordering="2" parent="47283b12:1341c9b3c8b:-7500" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ExplicitOutputPort><ExplicitInputPort dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-74ff" ordering="1" parent="47283b12:1341c9b3c8b:-7500" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ExplicitInputPort><ExplicitLink id="47283b12:1341c9b3c8b:-74fc" parent="47283b12:1341c9b3c8b:-78f7" source="47283b12:1341c9b3c8b:-75c2" target="47283b12:1341c9b3c8b:-74ff"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="290.0" y="300.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="47283b12:1341c9b3c8b:-7501" parent="47283b12:1341c9b3c8b:-78f7" source="47283b12:1341c9b3c8b:-74fd" target="47283b12:1341c9b3c8b:-76a6"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="346.5" y="280.0"/><mxPoint as="targetPoint" x="290.0" y="280.0"/></mxGeometry></ExplicitLink><BasicBlock dependsOnU="1" id="47283b12:1341c9b3c8b:-753c" interfaceFunctionName="CONVERT" ordering="15" parent="47283b12:1341c9b3c8b:-78f7" simulationFunctionName="convert" simulationFunctionType="C_OR_FORTRAN" style="CONVERT;flip=false;mirror=false"><ScilabString as="exprs" height="3" width="1"><data column="0" line="0" value="5"/><data column="0" line="1" value="1"/><data column="0" line="2" value="0"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="1" width="1"><data column="0" line="0" realPart="18.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="20.0" width="80.0" x="540.0" y="250.0"/></BasicBlock><ExplicitInputPort dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-753a" ordering="1" parent="47283b12:1341c9b3c8b:-753c" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ExplicitInputPort><ExplicitOutputPort dataType="REAL_MATRIX" id="47283b12:1341c9b3c8b:-753b" ordering="1" parent="47283b12:1341c9b3c8b:-753c" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="80.0" y="6.0"/></ExplicitOutputPort><ExplicitLink id="47283b12:1341c9b3c8b:-74f6" parent="47283b12:1341c9b3c8b:-78f7" source="47283b12:1341c9b3c8b:-77f0" target="47283b12:1341c9b3c8b:-753a"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="394.5" y="270.0"/><mxPoint as="targetPoint" x="530.0" y="260.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="480.0" y="270.0"/><mxPoint x="480.0" y="260.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="47283b12:1341c9b3c8b:-74f4" parent="47283b12:1341c9b3c8b:-78f7" source="47283b12:1341c9b3c8b:-78bd" target="47283b12:1341c9b3c8b:-753d"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="404.0" y="190.0"/><mxPoint as="targetPoint" x="530.0" y="240.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="470.0" y="190.0"/><mxPoint x="470.0" y="240.0"/></Array></mxGeometry></ExplicitLink><SplitBlock id="47283b12:1341c9b3c8b:-74f2" ordering="16" parent="47283b12:1341c9b3c8b:-78f7" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="307.0" y="207.0"/></SplitBlock><ExplicitOutputPort dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-74f0" ordering="1" parent="47283b12:1341c9b3c8b:-74f2" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-74ef" ordering="2" parent="47283b12:1341c9b3c8b:-74f2" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ExplicitOutputPort><ExplicitInputPort dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-74f1" ordering="1" parent="47283b12:1341c9b3c8b:-74f2" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ExplicitInputPort><ExplicitLink id="47283b12:1341c9b3c8b:-74ee" parent="47283b12:1341c9b3c8b:-78f7" source="47283b12:1341c9b3c8b:-74fe" target="47283b12:1341c9b3c8b:-74f1"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="290.0" y="210.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="47283b12:1341c9b3c8b:-74ed" parent="47283b12:1341c9b3c8b:-78f7" source="47283b12:1341c9b3c8b:-74f0" target="47283b12:1341c9b3c8b:-78be"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ExplicitLink><ExplicitLink id="47283b12:1341c9b3c8b:-74f3" parent="47283b12:1341c9b3c8b:-78f7" source="47283b12:1341c9b3c8b:-74ef" target="47283b12:1341c9b3c8b:-7540"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="536.0" y="220.0"/><mxPoint as="targetPoint" x="310.0" y="210.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="310.0" y="150.0"/><mxPoint x="490.0" y="150.0"/><mxPoint x="490.0" y="220.0"/></Array></mxGeometry></ExplicitLink><SplitBlock id="47283b12:1341c9b3c8b:-74eb" ordering="17" parent="47283b12:1341c9b3c8b:-78f7" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="287.0" y="177.0"/></SplitBlock><ExplicitOutputPort dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-74e9" ordering="1" parent="47283b12:1341c9b3c8b:-74eb" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-74e8" ordering="2" parent="47283b12:1341c9b3c8b:-74eb" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ExplicitOutputPort><ExplicitInputPort dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-74ea" ordering="1" parent="47283b12:1341c9b3c8b:-74eb" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ExplicitInputPort><ExplicitLink id="47283b12:1341c9b3c8b:-74e7" parent="47283b12:1341c9b3c8b:-78f7" source="47283b12:1341c9b3c8b:-7505" target="47283b12:1341c9b3c8b:-74ea"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ExplicitLink><ExplicitLink id="47283b12:1341c9b3c8b:-74e6" parent="47283b12:1341c9b3c8b:-78f7" source="47283b12:1341c9b3c8b:-74e9" target="47283b12:1341c9b3c8b:-78bf"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ExplicitLink><ExplicitLink id="47283b12:1341c9b3c8b:-74ec" parent="47283b12:1341c9b3c8b:-78f7" source="47283b12:1341c9b3c8b:-74e8" target="47283b12:1341c9b3c8b:-752c"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="536.0" y="200.0"/><mxPoint as="targetPoint" x="290.0" y="180.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="290.0" y="130.0"/><mxPoint x="510.0" y="130.0"/><mxPoint x="510.0" y="200.0"/></Array></mxGeometry></ExplicitLink><TextBlock id="47283b12:1341c9b3c8b:-74e3" parent="47283b12:1341c9b3c8b:-78f7" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="From the graphs we can see that both the logics are following the same<br>truth <br> table"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="From the graphs we can see that both the logics are following the same<br>truth <br> table"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="From the graphs we can see that both the logics are following the same<br>truth <br> table"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="270.0" y="460.0"/></TextBlock><BasicBlock blockType="d" id="47283b12:1341c9b3c8b:-78e9" interfaceFunctionName="GENSQR_f" ordering="18" parent="47283b12:1341c9b3c8b:-78f7" simulationFunctionName="gensqr" simulationFunctionType="DEFAULT" style="GENSQR_f;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="dState" height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="70.0" x="30.0" y="160.0"/></BasicBlock><ControlPort dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-78e7" ordering="1" parent="47283b12:1341c9b3c8b:-78e9" style="ControlPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="36.0" y="-8.0"/></ControlPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="47283b12:1341c9b3c8b:-78e8" ordering="1" parent="47283b12:1341c9b3c8b:-78e9" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="70.0" y="16.0"/></ExplicitOutputPort><TextBlock id="793b78b8:134842cf157:-7f28" parent="47283b12:1341c9b3c8b:-78f7" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="To prove : A + (~A)B = A + B"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="To prove : A + (~A)B = A + B"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="To prove : A + (~A)B = A + B"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="230.0" y="10.0"/></TextBlock></root></mxGraphModel><mxCell as="defaultParent" id="47283b12:1341c9b3c8b:-78f7" parent="47283b12:1341c9b3c8b:-78f6"/><mxPoint as="origin" x="-10.0"/></XcosDiagram>
\ No newline at end of file diff --git a/Working_Examples/293/CH12/EX12.3.a/eg12_3a.pdf b/Working_Examples/293/CH12/EX12.3.a/eg12_3a.pdf Binary files differnew file mode 100755 index 0000000..1e06038 --- /dev/null +++ b/Working_Examples/293/CH12/EX12.3.a/eg12_3a.pdf diff --git a/Working_Examples/293/CH12/EX12.3.a/eg12_3a.xcos b/Working_Examples/293/CH12/EX12.3.a/eg12_3a.xcos new file mode 100755 index 0000000..a7528d7 --- /dev/null +++ b/Working_Examples/293/CH12/EX12.3.a/eg12_3a.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" finalIntegrationTime="8.0" title="eg12_3a"><!--Xcos - 1.0 - scilab-5.5.2 - 20160406 2040--><mxGraphModel as="model"><root><mxCell id="47283b12:1341c9b3c8b:-7fff"/><mxCell id="47283b12:1341c9b3c8b:-8000" parent="47283b12:1341c9b3c8b:-7fff"/><BasicBlock blockType="h" id="47283b12:1341c9b3c8b:-7dca" interfaceFunctionName="CLOCK_c" ordering="1" parent="47283b12:1341c9b3c8b:-8000" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="99.0"/><data column="1" line="0" realPart="-152.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="47283b12:1341c9b3c8b:-7aa0"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="47283b12:1341c9b3c8b:-7aa0"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-62.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.005"/><data column="0" line="1" value="0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.005"/><data column="0" line="1" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="47283b12:1341c9b3c8b:-7a9c"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="47283b12:1341c9b3c8b:-7a9c"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="92.71066000000002"/><data column="1" line="0" realPart="-154.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="8.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="4.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="47283b12:1341c9b3c8b:-7a97"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="47283b12:1341c9b3c8b:-7a97"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="66.0"/><data column="0" line="2" realPart="103.37732666666669"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-18.0"/><data column="0" line="1" realPart="-186.0"/><data column="0" line="2" realPart="-158.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="104.71066000000002"/><data column="0" line="1" realPart="129.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-142.0"/><data column="0" line="1" realPart="-128.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="106.04399333333335"/><data column="0" line="1" realPart="111.70999999999998"/><data column="0" line="2" realPart="71.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-158.0"/><data column="0" line="1" realPart="-40.0"/><data column="0" line="2" realPart="-40.0"/><data column="0" line="3" realPart="-66.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="420.0" y="60.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-7dc2" ordering="1" parent="47283b12:1341c9b3c8b:-7dca" style="CommandPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><BasicBlock blockType="d" id="47283b12:1341c9b3c8b:-7d8d" interfaceFunctionName="GENSQR_f" ordering="2" parent="47283b12:1341c9b3c8b:-8000" simulationFunctionName="gensqr" simulationFunctionType="DEFAULT" style="GENSQR_f;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="dState" height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="70.0" x="80.0" y="120.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="47283b12:1341c9b3c8b:-7d8b" ordering="1" parent="47283b12:1341c9b3c8b:-7d8d" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="70.0" y="16.0"/></ExplicitOutputPort><ControlPort dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-7d8c" ordering="1" parent="47283b12:1341c9b3c8b:-7d8d" style="ControlPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="36.0" y="-8.0"/></ControlPort><BasicBlock blockType="d" id="47283b12:1341c9b3c8b:-7d33" interfaceFunctionName="GENSQR_f" ordering="3" parent="47283b12:1341c9b3c8b:-8000" simulationFunctionName="gensqr" simulationFunctionType="DEFAULT" style="GENSQR_f;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="dState" height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="70.0" x="80.0" y="240.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="47283b12:1341c9b3c8b:-7d31" ordering="1" parent="47283b12:1341c9b3c8b:-7d33" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="70.0" y="16.0"/></ExplicitOutputPort><ControlPort dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-7d32" ordering="1" parent="47283b12:1341c9b3c8b:-7d33" style="ControlPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="36.0" y="-8.0"/></ControlPort><BasicBlock blockType="d" id="47283b12:1341c9b3c8b:-7d30" interfaceFunctionName="GENSQR_f" ordering="4" parent="47283b12:1341c9b3c8b:-8000" simulationFunctionName="gensqr" simulationFunctionType="DEFAULT" style="GENSQR_f;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="dState" height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="70.0" x="80.0" y="360.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="47283b12:1341c9b3c8b:-7d2e" ordering="1" parent="47283b12:1341c9b3c8b:-7d30" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="70.0" y="16.0"/></ExplicitOutputPort><ControlPort dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-7d2f" ordering="1" parent="47283b12:1341c9b3c8b:-7d30" style="ControlPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="36.0" y="-8.0"/></ControlPort><SuperBlock id="47283b12:1341c9b3c8b:-7d28" ordering="5" parent="47283b12:1341c9b3c8b:-8000" simulationFunctionType="DEFAULT" style="SUPER_f;flip=false;mirror=false"><SuperBlockDiagram as="child" background="-1" title=""><!--Xcos - 1.0 - scilab-5.5.2 - 20160406 2040--><mxGraphModel as="model"><root><mxCell id="47283b12:1341c9b3c8b:-7d26"/><mxCell id="47283b12:1341c9b3c8b:-7d27" parent="47283b12:1341c9b3c8b:-7d26"/><BasicBlock dependsOnU="1" id="47283b12:1341c9b3c8b:-7f53" interfaceFunctionName="LOGIC" ordering="1" parent="47283b12:1341c9b3c8b:-7d27" simulationFunctionName="logic" simulationFunctionType="C_OR_FORTRAN" style="LOGIC;flip=false;mirror=false"><ScilabString as="exprs" height="2" width="1"><data column="0" line="0" value="[0;0;0;1]"/><data column="0" line="1" value="1"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"><ScilabInteger height="4" intPrecision="sci_int8" width="1"><data column="0" line="0" value="0"/><data column="0" line="1" value="0"/><data column="0" line="2" value="0"/><data column="0" line="3" value="1"/></ScilabInteger></Array><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="50.0" x="260.0" y="260.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-7f50" ordering="2" parent="47283b12:1341c9b3c8b:-7f53" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="26.0"/></ExplicitInputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-7f52" ordering="1" parent="47283b12:1341c9b3c8b:-7f53" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="50.0" y="16.0"/></ExplicitOutputPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-7f51" ordering="1" parent="47283b12:1341c9b3c8b:-7f53" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ExplicitInputPort><BasicBlock dependsOnU="1" id="47283b12:1341c9b3c8b:-7f3e" interfaceFunctionName="LOGIC" ordering="2" parent="47283b12:1341c9b3c8b:-7d27" simulationFunctionName="logic" simulationFunctionType="C_OR_FORTRAN" style="LOGIC;flip=false;mirror=false"><ScilabString as="exprs" height="2" width="1"><data column="0" line="0" value="[0;1;1;1;1;1;1;1]"/><data column="0" line="1" value="1"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"><ScilabInteger height="8" intPrecision="sci_int8" width="1"><data column="0" line="0" value="0"/><data column="0" line="1" value="1"/><data column="0" line="2" value="1"/><data column="0" line="3" value="1"/><data column="0" line="4" value="1"/><data column="0" line="5" value="1"/><data column="0" line="6" value="1"/><data column="0" line="7" value="1"/></ScilabInteger></Array><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="60.0" width="50.0" x="410.0" y="190.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-7f2f" ordering="2" parent="47283b12:1341c9b3c8b:-7f3e" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="26.0"/></ExplicitInputPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-7f2e" ordering="3" parent="47283b12:1341c9b3c8b:-7f3e" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="46.0"/></ExplicitInputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-7f2d" ordering="1" parent="47283b12:1341c9b3c8b:-7f3e" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="50.0" y="26.0"/></ExplicitOutputPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-7f30" ordering="1" parent="47283b12:1341c9b3c8b:-7f3e" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ExplicitInputPort><BasicBlock dependsOnU="1" id="47283b12:1341c9b3c8b:-7e71" interfaceFunctionName="CONVERT" ordering="3" parent="47283b12:1341c9b3c8b:-7d27" simulationFunctionName="convert" simulationFunctionType="C_OR_FORTRAN" style="CONVERT;flip=false;mirror=false"><ScilabString as="exprs" height="3" width="1"><data column="0" line="0" value="5"/><data column="0" line="1" value="1"/><data column="0" line="2" value="0"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="1" width="1"><data column="0" line="0" realPart="18.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="20.0" width="60.0" x="490.0" y="210.0"/></BasicBlock><ExplicitInputPort dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-7e4d" ordering="1" parent="47283b12:1341c9b3c8b:-7e71" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ExplicitInputPort><ExplicitOutputPort dataType="REAL_MATRIX" id="47283b12:1341c9b3c8b:-7e4c" ordering="1" parent="47283b12:1341c9b3c8b:-7e71" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="60.0" y="6.0"/></ExplicitOutputPort><BasicBlock dependsOnU="1" id="47283b12:1341c9b3c8b:-7f6f" interfaceFunctionName="LOGIC" ordering="4" parent="47283b12:1341c9b3c8b:-7d27" simulationFunctionName="logic" simulationFunctionType="C_OR_FORTRAN" style="LOGIC;flip=false;mirror=false"><ScilabString as="exprs" height="2" width="1"><data column="0" line="0" value="[0;0;0;1]"/><data column="0" line="1" value="1"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"><ScilabInteger height="4" intPrecision="sci_int8" width="1"><data column="0" line="0" value="0"/><data column="0" line="1" value="0"/><data column="0" line="2" value="0"/><data column="0" line="3" value="1"/></ScilabInteger></Array><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="50.0" x="260.0" y="140.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-7f5e" ordering="2" parent="47283b12:1341c9b3c8b:-7f6f" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="26.0"/></ExplicitInputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-7f5d" ordering="1" parent="47283b12:1341c9b3c8b:-7f6f" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="50.0" y="16.0"/></ExplicitOutputPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-7f5f" ordering="1" parent="47283b12:1341c9b3c8b:-7f6f" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ExplicitInputPort><BasicBlock dependsOnU="1" id="47283b12:1341c9b3c8b:-7d87" interfaceFunctionName="CONVERT" ordering="5" parent="47283b12:1341c9b3c8b:-7d27" simulationFunctionName="convert" simulationFunctionType="C_OR_FORTRAN" style="CONVERT;flip=false;mirror=false"><ScilabString as="exprs" height="3" width="1"><data column="0" line="0" value="1"/><data column="0" line="1" value="5"/><data column="0" line="2" value="0"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="20.0" width="60.0" x="110.0" y="150.0"/></BasicBlock><ExplicitInputPort dataType="REAL_MATRIX" id="47283b12:1341c9b3c8b:-7d69" ordering="1" parent="47283b12:1341c9b3c8b:-7d87" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ExplicitInputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-7d68" ordering="1" parent="47283b12:1341c9b3c8b:-7d87" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="60.0" y="6.0"/></ExplicitOutputPort><BasicBlock dependsOnU="1" id="47283b12:1341c9b3c8b:-7d84" interfaceFunctionName="CONVERT" ordering="6" parent="47283b12:1341c9b3c8b:-7d27" simulationFunctionName="convert" simulationFunctionType="C_OR_FORTRAN" style="CONVERT;flip=false;mirror=false"><ScilabString as="exprs" height="3" width="1"><data column="0" line="0" value="1"/><data column="0" line="1" value="5"/><data column="0" line="2" value="0"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="20.0" width="60.0" x="110.0" y="210.0"/></BasicBlock><ExplicitInputPort dataType="REAL_MATRIX" id="47283b12:1341c9b3c8b:-7d76" ordering="1" parent="47283b12:1341c9b3c8b:-7d84" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ExplicitInputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-7d75" ordering="1" parent="47283b12:1341c9b3c8b:-7d84" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="60.0" y="6.0"/></ExplicitOutputPort><BasicBlock dependsOnU="1" id="47283b12:1341c9b3c8b:-7d81" interfaceFunctionName="CONVERT" ordering="7" parent="47283b12:1341c9b3c8b:-7d27" simulationFunctionName="convert" simulationFunctionType="C_OR_FORTRAN" style="CONVERT;flip=false;mirror=false"><ScilabString as="exprs" height="3" width="1"><data column="0" line="0" value="1"/><data column="0" line="1" value="5"/><data column="0" line="2" value="0"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="20.0" width="60.0" x="110.0" y="270.0"/></BasicBlock><ExplicitInputPort dataType="REAL_MATRIX" id="47283b12:1341c9b3c8b:-7d7a" ordering="1" parent="47283b12:1341c9b3c8b:-7d81" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ExplicitInputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-7d79" ordering="1" parent="47283b12:1341c9b3c8b:-7d81" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="60.0" y="6.0"/></ExplicitOutputPort><SplitBlock id="47283b12:1341c9b3c8b:-7d57" ordering="8" parent="47283b12:1341c9b3c8b:-7d27" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="217.0" y="217.0"/></SplitBlock><ExplicitOutputPort dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-7d55" ordering="1" parent="47283b12:1341c9b3c8b:-7d57" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-7d54" ordering="2" parent="47283b12:1341c9b3c8b:-7d57" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ExplicitOutputPort><ExplicitInputPort dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-7d56" ordering="1" parent="47283b12:1341c9b3c8b:-7d57" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ExplicitInputPort><SplitBlock id="47283b12:1341c9b3c8b:-7d4f" ordering="9" parent="47283b12:1341c9b3c8b:-7d27" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="197.0" y="157.0"/></SplitBlock><ExplicitOutputPort dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-7d4d" ordering="1" parent="47283b12:1341c9b3c8b:-7d4f" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-7d4c" ordering="2" parent="47283b12:1341c9b3c8b:-7d4f" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ExplicitOutputPort><ExplicitInputPort dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-7d4e" ordering="1" parent="47283b12:1341c9b3c8b:-7d4f" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ExplicitInputPort><SplitBlock id="47283b12:1341c9b3c8b:-7d47" ordering="10" parent="47283b12:1341c9b3c8b:-7d27" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="207.0" y="277.0"/></SplitBlock><ExplicitOutputPort dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-7d45" ordering="1" parent="47283b12:1341c9b3c8b:-7d47" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-7d44" ordering="2" parent="47283b12:1341c9b3c8b:-7d47" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ExplicitOutputPort><ExplicitInputPort dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-7d46" ordering="1" parent="47283b12:1341c9b3c8b:-7d47" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ExplicitInputPort><ExplicitLink id="47283b12:1341c9b3c8b:-7d50" parent="47283b12:1341c9b3c8b:-7d27" source="47283b12:1341c9b3c8b:-7d4c" target="47283b12:1341c9b3c8b:-7f55"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="256.0" y="210.0"/><mxPoint as="targetPoint" x="200.0" y="160.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="200.0" y="210.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="47283b12:1341c9b3c8b:-7d48" parent="47283b12:1341c9b3c8b:-7d27" source="47283b12:1341c9b3c8b:-7d44" target="47283b12:1341c9b3c8b:-7f54"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="256.0" y="230.0"/><mxPoint as="targetPoint" x="210.0" y="280.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="210.0" y="230.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="47283b12:1341c9b3c8b:-7f2a" parent="47283b12:1341c9b3c8b:-7d27" source="47283b12:1341c9b3c8b:-7f56" target="47283b12:1341c9b3c8b:-7f2f"><mxGeometry as="geometry" x="90.0"><mxPoint as="sourcePoint" x="314.0" y="220.0"/><mxPoint as="targetPoint" x="400.0" y="220.0"/></mxGeometry></ExplicitLink><ExplicitLink id="47283b12:1341c9b3c8b:-7d52" parent="47283b12:1341c9b3c8b:-7d27" source="47283b12:1341c9b3c8b:-7d55" target="47283b12:1341c9b3c8b:-7f51"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="220.0" y="270.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="47283b12:1341c9b3c8b:-7d42" parent="47283b12:1341c9b3c8b:-7d27" source="47283b12:1341c9b3c8b:-7d45" target="47283b12:1341c9b3c8b:-7f50"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="210.0" y="290.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="47283b12:1341c9b3c8b:-7f29" parent="47283b12:1341c9b3c8b:-7d27" source="47283b12:1341c9b3c8b:-7f52" target="47283b12:1341c9b3c8b:-7f2e"><mxGeometry as="geometry" x="90.0"><mxPoint as="sourcePoint" x="314.0" y="280.0"/><mxPoint as="targetPoint" x="400.0" y="240.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="360.0" y="280.0"/><mxPoint x="360.0" y="240.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="47283b12:1341c9b3c8b:-7f2b" parent="47283b12:1341c9b3c8b:-7d27" source="47283b12:1341c9b3c8b:-7f5d" target="47283b12:1341c9b3c8b:-7f30"><mxGeometry as="geometry" x="90.0"><mxPoint as="sourcePoint" x="314.0" y="160.0"/><mxPoint as="targetPoint" x="400.0" y="200.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="360.0" y="160.0"/><mxPoint x="360.0" y="200.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="47283b12:1341c9b3c8b:-7e2d" parent="47283b12:1341c9b3c8b:-7d27" source="47283b12:1341c9b3c8b:-7f2d" target="47283b12:1341c9b3c8b:-7e4d"><mxGeometry as="geometry" x="90.0"><mxPoint as="sourcePoint" x="464.0" y="220.0"/><mxPoint as="targetPoint" x="480.0" y="220.0"/></mxGeometry></ExplicitLink><ExplicitLink id="47283b12:1341c9b3c8b:-7d4a" parent="47283b12:1341c9b3c8b:-7d27" source="47283b12:1341c9b3c8b:-7d4d" target="47283b12:1341c9b3c8b:-7f5f"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="200.0" y="160.0"/><mxPoint x="200.0" y="150.0"/><mxPoint x="250.0" y="150.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="47283b12:1341c9b3c8b:-7d58" parent="47283b12:1341c9b3c8b:-7d27" source="47283b12:1341c9b3c8b:-7d54" target="47283b12:1341c9b3c8b:-7f5e"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="256.0" y="170.0"/><mxPoint as="targetPoint" x="220.0" y="220.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="220.0" y="220.0"/><mxPoint x="220.0" y="220.0"/><mxPoint x="220.0" y="170.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="47283b12:1341c9b3c8b:-7d4b" parent="47283b12:1341c9b3c8b:-7d27" source="47283b12:1341c9b3c8b:-7d68" target="47283b12:1341c9b3c8b:-7d4e"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ExplicitLink><ExplicitLink id="47283b12:1341c9b3c8b:-7d53" parent="47283b12:1341c9b3c8b:-7d27" source="47283b12:1341c9b3c8b:-7d75" target="47283b12:1341c9b3c8b:-7d56"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ExplicitLink><ExplicitLink id="47283b12:1341c9b3c8b:-7d43" parent="47283b12:1341c9b3c8b:-7d27" source="47283b12:1341c9b3c8b:-7d79" target="47283b12:1341c9b3c8b:-7d46"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ExplicitLink><ExplicitInBlock id="47283b12:1341c9b3c8b:-7d25" ordering="11" parent="47283b12:1341c9b3c8b:-7d27" simulationFunctionType="DEFAULT" style="IN_f;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble as="integerParameters" height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><mxGeometry as="geometry" height="40.0" width="40.0" x="49.0" y="140.0"/></ExplicitInBlock><ExplicitOutputPort dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-7d24" ordering="1" parent="47283b12:1341c9b3c8b:-7d25" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ExplicitLink id="47283b12:1341c9b3c8b:-7d22" parent="47283b12:1341c9b3c8b:-7d27" source="47283b12:1341c9b3c8b:-7d24" target="47283b12:1341c9b3c8b:-7d69"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="84.0" y="160.0"/><mxPoint as="targetPoint" x="100.0" y="160.0"/></mxGeometry></ExplicitLink><ExplicitInBlock id="47283b12:1341c9b3c8b:-7d21" ordering="12" parent="47283b12:1341c9b3c8b:-7d27" simulationFunctionType="DEFAULT" style="IN_f;flip=false;mirror=false" value="2"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="2"/></ScilabString><ScilabDouble as="integerParameters" height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble><mxGeometry as="geometry" height="40.0" width="40.0" x="49.0" y="200.0"/></ExplicitInBlock><ExplicitOutputPort dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-7d20" ordering="1" parent="47283b12:1341c9b3c8b:-7d21" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ExplicitLink id="47283b12:1341c9b3c8b:-7d1e" parent="47283b12:1341c9b3c8b:-7d27" source="47283b12:1341c9b3c8b:-7d20" target="47283b12:1341c9b3c8b:-7d76"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="84.0" y="220.0"/><mxPoint as="targetPoint" x="100.0" y="220.0"/></mxGeometry></ExplicitLink><ExplicitOutBlock id="47283b12:1341c9b3c8b:-7d1d" ordering="13" parent="47283b12:1341c9b3c8b:-7d27" simulationFunctionType="DEFAULT" style="OUT_f;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble as="integerParameters" height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><mxGeometry as="geometry" height="40.0" width="40.0" x="566.0" y="200.0"/></ExplicitOutBlock><ExplicitInputPort dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-7d1c" ordering="1" parent="47283b12:1341c9b3c8b:-7d1d" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitLink id="47283b12:1341c9b3c8b:-7d1a" parent="47283b12:1341c9b3c8b:-7d27" source="47283b12:1341c9b3c8b:-7e4c" target="47283b12:1341c9b3c8b:-7d1c"><mxGeometry as="geometry" x="90.0"><mxPoint as="sourcePoint" x="554.0" y="220.0"/><mxPoint as="targetPoint" x="580.0" y="220.0"/></mxGeometry></ExplicitLink><ExplicitInBlock id="47283b12:1341c9b3c8b:-7d19" ordering="14" parent="47283b12:1341c9b3c8b:-7d27" simulationFunctionType="DEFAULT" style="IN_f;flip=false;mirror=false" value="3"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="3"/></ScilabString><ScilabDouble as="integerParameters" height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble><mxGeometry as="geometry" height="40.0" width="40.0" x="49.0" y="260.0"/></ExplicitInBlock><ExplicitOutputPort dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-7d18" ordering="1" parent="47283b12:1341c9b3c8b:-7d19" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ExplicitLink id="47283b12:1341c9b3c8b:-7d16" parent="47283b12:1341c9b3c8b:-7d27" source="47283b12:1341c9b3c8b:-7d18" target="47283b12:1341c9b3c8b:-7d7a"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="84.0" y="280.0"/><mxPoint as="targetPoint" x="100.0" y="280.0"/></mxGeometry></ExplicitLink><TextBlock id="47283b12:1341c9b3c8b:-7ccc" parent="47283b12:1341c9b3c8b:-7d27" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="AND"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="AND"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="AND"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="260.0" y="110.0"/></TextBlock><TextBlock id="47283b12:1341c9b3c8b:-7cca" parent="47283b12:1341c9b3c8b:-7d27" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="AND"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="AND"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="AND"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="260.0" y="170.0"/></TextBlock><TextBlock id="47283b12:1341c9b3c8b:-7cc9" parent="47283b12:1341c9b3c8b:-7d27" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="40.0" width="40.0" x="400.0" y="90.0"/></TextBlock><TextBlock id="47283b12:1341c9b3c8b:-7cc8" parent="47283b12:1341c9b3c8b:-7d27" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="AND"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="AND"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="AND"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="260.0" y="230.0"/></TextBlock><TextBlock id="47283b12:1341c9b3c8b:-7cc7" parent="47283b12:1341c9b3c8b:-7d27" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="OR"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="OR"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="OR"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="410.0" y="240.0"/></TextBlock><BasicBlock dependsOnU="1" id="47283b12:1341c9b3c8b:-7f57" interfaceFunctionName="LOGIC" ordering="15" parent="47283b12:1341c9b3c8b:-7d27" simulationFunctionName="logic" simulationFunctionType="C_OR_FORTRAN" style="LOGIC;flip=false;mirror=false"><ScilabString as="exprs" height="2" width="1"><data column="0" line="0" value="[0;0;0;1]"/><data column="0" line="1" value="1"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"><ScilabInteger height="4" intPrecision="sci_int8" width="1"><data column="0" line="0" value="0"/><data column="0" line="1" value="0"/><data column="0" line="2" value="0"/><data column="0" line="3" value="1"/></ScilabInteger></Array><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="50.0" x="260.0" y="200.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-7f54" ordering="2" parent="47283b12:1341c9b3c8b:-7f57" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="26.0"/></ExplicitInputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-7f56" ordering="1" parent="47283b12:1341c9b3c8b:-7f57" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="50.0" y="16.0"/></ExplicitOutputPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-7f55" ordering="1" parent="47283b12:1341c9b3c8b:-7f57" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ExplicitInputPort></root></mxGraphModel><mxCell as="defaultParent" id="47283b12:1341c9b3c8b:-7d27" parent="47283b12:1341c9b3c8b:-7d26"/></SuperBlockDiagram><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="1.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="210.0"/><data column="1" line="0" realPart="-260.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="50.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="[0;0;0;1]"/><data column="0" line="1" value="1"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="20.0"/><data column="0" line="1" realPart="19.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="21.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"LOGIC",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="E"/><data column="0" line="1" value="E"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/><data column="0" line="1" value="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value=""/><data column="0" line="1" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="LOGIC;flip=false;mirror=false"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="logic"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="1.0"/><data column="0" line="1" realPart="1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="1.0"/><data column="0" line="1" realPart="1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabInteger height="4" intPrecision="sci_int8" width="1"><data column="0" line="0" value="0"/><data column="0" line="1" value="0"/><data column="0" line="2" value="0"/><data column="0" line="3" value="1"/></ScilabInteger></Array><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="true"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="47283b12:1341c9b3c8b:-7f53"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="LOGIC"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="47283b12:1341c9b3c8b:-7f53"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="360.0"/><data column="1" line="0" realPart="-190.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="50.0"/><data column="1" line="0" realPart="60.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="[0;1;1;1;1;1;1;1]"/><data column="0" line="1" value="1"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="18.0"/><data column="0" line="1" realPart="21.0"/><data column="0" line="2" realPart="22.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="23.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"LOGIC",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="3" width="1"><data column="0" line="0" value="E"/><data column="0" line="1" value="E"/><data column="0" line="2" value="E"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabString height="3" width="1"><data column="0" line="0" value="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/><data column="0" line="1" value="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/><data column="0" line="2" value="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/></ScilabString><ScilabString height="3" width="1"><data column="0" line="0" value=""/><data column="0" line="1" value=""/><data column="0" line="2" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="LOGIC;flip=false;mirror=false"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="logic"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="1.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="1.0"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="1.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="1.0"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/><data column="0" line="2" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabInteger height="8" intPrecision="sci_int8" width="1"><data column="0" line="0" value="0"/><data column="0" line="1" value="1"/><data column="0" line="2" value="1"/><data column="0" line="3" value="1"/><data column="0" line="4" value="1"/><data column="0" line="5" value="1"/><data column="0" line="6" value="1"/><data column="0" line="7" value="1"/></ScilabInteger></Array><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="true"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="47283b12:1341c9b3c8b:-7f3e"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="LOGIC"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="47283b12:1341c9b3c8b:-7f3e"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="430.0"/><data column="1" line="0" realPart="-210.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="60.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="3" width="1"><data column="0" line="0" value="5"/><data column="0" line="1" value="1"/><data column="0" line="2" value="0"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="23.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="31.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CONVERT",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CONVERT;flip=false;mirror=false"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="convert"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-2.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-2.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="18.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="true"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="47283b12:1341c9b3c8b:-7e71"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CONVERT"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="47283b12:1341c9b3c8b:-7e71"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="210.0"/><data column="1" line="0" realPart="-140.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="50.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="[0;0;0;1]"/><data column="0" line="1" value="1"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="25.0"/><data column="0" line="1" realPart="24.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="22.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"LOGIC",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="E"/><data column="0" line="1" value="E"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/><data column="0" line="1" value="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value=""/><data column="0" line="1" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="LOGIC;flip=false;mirror=false"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="logic"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="1.0"/><data column="0" line="1" realPart="1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="1.0"/><data column="0" line="1" realPart="1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabInteger height="4" intPrecision="sci_int8" width="1"><data column="0" line="0" value="0"/><data column="0" line="1" value="0"/><data column="0" line="2" value="0"/><data column="0" line="3" value="1"/></ScilabInteger></Array><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="true"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="47283b12:1341c9b3c8b:-7f6f"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="LOGIC"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="47283b12:1341c9b3c8b:-7f6f"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="50.0"/><data column="1" line="0" realPart="-150.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="60.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="3" width="1"><data column="0" line="0" value="1"/><data column="0" line="1" value="5"/><data column="0" line="2" value="0"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="29.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="26.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CONVERT",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CONVERT;flip=false;mirror=false"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="convert"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-2.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-2.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="true"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="47283b12:1341c9b3c8b:-7d87"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CONVERT"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="47283b12:1341c9b3c8b:-7d87"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="50.0"/><data column="1" line="0" realPart="-210.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="60.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="3" width="1"><data column="0" line="0" value="1"/><data column="0" line="1" value="5"/><data column="0" line="2" value="0"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="30.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="27.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CONVERT",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CONVERT;flip=false;mirror=false"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="convert"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-2.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-2.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="true"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="47283b12:1341c9b3c8b:-7d84"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CONVERT"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="47283b12:1341c9b3c8b:-7d84"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="50.0"/><data column="1" line="0" realPart="-270.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="60.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="3" width="1"><data column="0" line="0" value="1"/><data column="0" line="1" value="5"/><data column="0" line="2" value="0"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="32.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="28.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CONVERT",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CONVERT;flip=false;mirror=false"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="convert"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-2.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-2.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="true"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="47283b12:1341c9b3c8b:-7d81"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CONVERT"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="47283b12:1341c9b3c8b:-7d81"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="210.0"/><data column="1" line="0" realPart="-217.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="7.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="27.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="19.0"/><data column="0" line="1" realPart="25.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"SPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="E"/><data column="0" line="1" value="E"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/><data column="0" line="1" value="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value=""/><data column="0" line="1" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="SPLIT_f;flip=false;mirror=false"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="lsplit"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-2.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-2.0"/><data column="0" line="1" realPart="-2.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="47283b12:1341c9b3c8b:-7d57"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="SPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="47283b12:1341c9b3c8b:-7d57"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="190.0"/><data column="1" line="0" realPart="-157.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="7.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="26.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="24.0"/><data column="0" line="1" realPart="16.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"SPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="E"/><data column="0" line="1" value="E"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/><data column="0" line="1" value="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value=""/><data column="0" line="1" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="SPLIT_f;flip=false;mirror=false"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="lsplit"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-2.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-2.0"/><data column="0" line="1" realPart="-2.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="47283b12:1341c9b3c8b:-7d4f"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="SPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="47283b12:1341c9b3c8b:-7d4f"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="200.0"/><data column="1" line="0" realPart="-277.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="7.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="28.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="20.0"/><data column="0" line="1" realPart="17.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"SPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="E"/><data column="0" line="1" value="E"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/><data column="0" line="1" value="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value=""/><data column="0" line="1" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="SPLIT_f;flip=false;mirror=false"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="lsplit"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-2.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-2.0"/><data column="0" line="1" realPart="-2.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="47283b12:1341c9b3c8b:-7d47"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="SPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="47283b12:1341c9b3c8b:-7d47"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="9.0"/><data column="1" line="0" realPart="-140.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="29.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"IN_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="IN_f;flip=false;mirror=false"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="input"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-2.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="47283b12:1341c9b3c8b:-7d25"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="IN_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="47283b12:1341c9b3c8b:-7d25"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="9.0"/><data column="1" line="0" realPart="-200.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="2"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="30.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"IN_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="IN_f;flip=false;mirror=false"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="input"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-2.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="47283b12:1341c9b3c8b:-7d21"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="IN_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="47283b12:1341c9b3c8b:-7d21"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="526.0"/><data column="1" line="0" realPart="-200.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="31.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"OUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="OUT_f;flip=false;mirror=false"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-2.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="47283b12:1341c9b3c8b:-7d1d"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="OUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="47283b12:1341c9b3c8b:-7d1d"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="9.0"/><data column="1" line="0" realPart="-260.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="3"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="32.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"IN_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="IN_f;flip=false;mirror=false"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="input"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-2.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="47283b12:1341c9b3c8b:-7d19"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="IN_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="47283b12:1341c9b3c8b:-7d19"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="210.0"/><data column="1" line="0" realPart="-200.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="50.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="[0;0;0;1]"/><data column="0" line="1" value="1"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="17.0"/><data column="0" line="1" realPart="16.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="18.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"LOGIC",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="E"/><data column="0" line="1" value="E"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/><data column="0" line="1" value="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value=""/><data column="0" line="1" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="LOGIC;flip=false;mirror=false"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="logic"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="1.0"/><data column="0" line="1" realPart="1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="1.0"/><data column="0" line="1" realPart="1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabInteger height="4" intPrecision="sci_int8" width="1"><data column="0" line="0" value="0"/><data column="0" line="1" value="0"/><data column="0" line="2" value="0"/><data column="0" line="3" value="1"/></ScilabInteger></Array><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="true"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="47283b12:1341c9b3c8b:-7f57"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="LOGIC"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="47283b12:1341c9b3c8b:-7f57"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="208.0"/><data column="0" line="1" realPart="200.0"/><data column="0" line="2" realPart="256.0"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-160.0"/><data column="0" line="1" realPart="-210.0"/><data column="0" line="2" realPart="-170.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="9.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="15.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="218.0"/><data column="0" line="1" realPart="210.0"/><data column="0" line="2" realPart="256.0"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-280.0"/><data column="0" line="1" realPart="-230.0"/><data column="0" line="2" realPart="-190.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="10.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="15.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="314.0"/><data column="0" line="1" realPart="406.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-180.0"/><data column="0" line="1" realPart="-160.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="15.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="228.0"/><data column="0" line="1" realPart="220.0"/><data column="0" line="2" realPart="256.0"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-210.0"/><data column="0" line="1" realPart="-270.0"/><data column="0" line="2" realPart="-230.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="218.0"/><data column="0" line="1" realPart="210.0"/><data column="0" line="2" realPart="256.0"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-270.0"/><data column="0" line="1" realPart="-290.0"/><data column="0" line="2" realPart="-250.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="10.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="314.0"/><data column="0" line="1" realPart="360.0"/><data column="0" line="2" realPart="360.0"/><data column="0" line="3" realPart="406.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-240.0"/><data column="0" line="1" realPart="-280.0"/><data column="0" line="2" realPart="-240.0"/><data column="0" line="3" realPart="-180.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="3.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="314.0"/><data column="0" line="1" realPart="360.0"/><data column="0" line="2" realPart="360.0"/><data column="0" line="3" realPart="406.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-120.0"/><data column="0" line="1" realPart="-160.0"/><data column="0" line="2" realPart="-200.0"/><data column="0" line="3" realPart="-140.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="464.0"/><data column="0" line="1" realPart="486.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-160.0"/><data column="0" line="1" realPart="-200.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="5" width="1"><data column="0" line="0" realPart="208.0"/><data column="0" line="1" realPart="200.0"/><data column="0" line="2" realPart="200.0"/><data column="0" line="3" realPart="250.0"/><data column="0" line="4" realPart="256.0"/></ScilabDouble><ScilabDouble height="5" width="1"><data column="0" line="0" realPart="-150.0"/><data column="0" line="1" realPart="-160.0"/><data column="0" line="2" realPart="-150.0"/><data column="0" line="3" realPart="-150.0"/><data column="0" line="4" realPart="-110.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="9.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="5" width="1"><data column="0" line="0" realPart="228.0"/><data column="0" line="1" realPart="220.0"/><data column="0" line="2" realPart="220.0"/><data column="0" line="3" realPart="220.0"/><data column="0" line="4" realPart="256.0"/></ScilabDouble><ScilabDouble height="5" width="1"><data column="0" line="0" realPart="-220.0"/><data column="0" line="1" realPart="-220.0"/><data column="0" line="2" realPart="-220.0"/><data column="0" line="3" realPart="-170.0"/><data column="0" line="4" realPart="-130.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="174.0"/><data column="0" line="1" realPart="193.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-140.0"/><data column="0" line="1" realPart="-150.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="9.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="174.0"/><data column="0" line="1" realPart="213.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-200.0"/><data column="0" line="1" realPart="-210.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="6.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="174.0"/><data column="0" line="1" realPart="203.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-260.0"/><data column="0" line="1" realPart="-270.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="10.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="93.0"/><data column="0" line="1" realPart="106.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-120.0"/><data column="0" line="1" realPart="-140.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="11.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="93.0"/><data column="0" line="1" realPart="106.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-180.0"/><data column="0" line="1" realPart="-200.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="12.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="6.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="554.0"/><data column="0" line="1" realPart="562.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-200.0"/><data column="0" line="1" realPart="-180.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="13.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="93.0"/><data column="0" line="1" realPart="106.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-240.0"/><data column="0" line="1" realPart="-260.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="14.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="310.0" y="240.0"/></SuperBlock><ExplicitInputPort dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-7d1f" ordering="2" parent="47283b12:1341c9b3c8b:-7d28" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-7d1b" ordering="1" parent="47283b12:1341c9b3c8b:-7d28" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ExplicitInputPort dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-7d17" ordering="3" parent="47283b12:1341c9b3c8b:-7d28" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="26.0"/></ExplicitInputPort><ExplicitInputPort dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-7d23" ordering="1" parent="47283b12:1341c9b3c8b:-7d28" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ExplicitInputPort><BasicBlock blockType="h" id="47283b12:1341c9b3c8b:-7d09" interfaceFunctionName="CLOCK_c" ordering="6" parent="47283b12:1341c9b3c8b:-8000" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="99.0"/><data column="1" line="0" realPart="-152.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="47283b12:1341c9b3c8b:-7a8e"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="47283b12:1341c9b3c8b:-7a8e"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-62.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="4"/><data column="0" line="1" value="0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="4.0"/><data column="0" line="1" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="47283b12:1341c9b3c8b:-7a8a"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="47283b12:1341c9b3c8b:-7a8a"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="92.71066000000002"/><data column="1" line="0" realPart="-154.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="8.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="4.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="47283b12:1341c9b3c8b:-7a85"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="47283b12:1341c9b3c8b:-7a85"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="66.0"/><data column="0" line="2" realPart="103.37732666666669"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-18.0"/><data column="0" line="1" realPart="-186.0"/><data column="0" line="2" realPart="-158.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="104.71066000000002"/><data column="0" line="1" realPart="129.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-142.0"/><data column="0" line="1" realPart="-128.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="106.04399333333335"/><data column="0" line="1" realPart="111.70999999999998"/><data column="0" line="2" realPart="71.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-158.0"/><data column="0" line="1" realPart="-40.0"/><data column="0" line="2" realPart="-40.0"/><data column="0" line="3" realPart="-66.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="100.0" y="290.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-7cf4" ordering="1" parent="47283b12:1341c9b3c8b:-7d09" style="CommandPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><BasicBlock blockType="h" id="47283b12:1341c9b3c8b:-7d07" interfaceFunctionName="CLOCK_c" ordering="7" parent="47283b12:1341c9b3c8b:-8000" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="99.0"/><data column="1" line="0" realPart="-152.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="47283b12:1341c9b3c8b:-7a7c"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="47283b12:1341c9b3c8b:-7a7c"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-62.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="2"/><data column="0" line="1" value="0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="2.0"/><data column="0" line="1" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="47283b12:1341c9b3c8b:-7a78"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="47283b12:1341c9b3c8b:-7a78"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="92.71066000000002"/><data column="1" line="0" realPart="-154.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="8.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="4.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="47283b12:1341c9b3c8b:-7a73"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="47283b12:1341c9b3c8b:-7a73"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="66.0"/><data column="0" line="2" realPart="103.37732666666669"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-18.0"/><data column="0" line="1" realPart="-186.0"/><data column="0" line="2" realPart="-158.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="104.71066000000002"/><data column="0" line="1" realPart="129.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-142.0"/><data column="0" line="1" realPart="-128.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="106.04399333333335"/><data column="0" line="1" realPart="111.70999999999998"/><data column="0" line="2" realPart="71.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-158.0"/><data column="0" line="1" realPart="-40.0"/><data column="0" line="2" realPart="-40.0"/><data column="0" line="3" realPart="-66.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="100.0" y="170.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-7cf9" ordering="1" parent="47283b12:1341c9b3c8b:-7d07" style="CommandPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><BasicBlock blockType="h" id="47283b12:1341c9b3c8b:-7d05" interfaceFunctionName="CLOCK_c" ordering="8" parent="47283b12:1341c9b3c8b:-8000" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="99.0"/><data column="1" line="0" realPart="-152.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="47283b12:1341c9b3c8b:-7a6a"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="47283b12:1341c9b3c8b:-7a6a"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-62.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="1"/><data column="0" line="1" value="0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="1.0"/><data column="0" line="1" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="47283b12:1341c9b3c8b:-7a66"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="47283b12:1341c9b3c8b:-7a66"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="92.71066000000002"/><data column="1" line="0" realPart="-154.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="8.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="4.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="47283b12:1341c9b3c8b:-7a61"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="47283b12:1341c9b3c8b:-7a61"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="66.0"/><data column="0" line="2" realPart="103.37732666666669"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-18.0"/><data column="0" line="1" realPart="-186.0"/><data column="0" line="2" realPart="-158.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="104.71066000000002"/><data column="0" line="1" realPart="129.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-142.0"/><data column="0" line="1" realPart="-128.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="106.04399333333335"/><data column="0" line="1" realPart="111.70999999999998"/><data column="0" line="2" realPart="71.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-158.0"/><data column="0" line="1" realPart="-40.0"/><data column="0" line="2" realPart="-40.0"/><data column="0" line="3" realPart="-66.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="100.0" y="50.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-7cff" ordering="1" parent="47283b12:1341c9b3c8b:-7d05" style="CommandPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><CommandControlLink id="47283b12:1341c9b3c8b:-7d01" parent="47283b12:1341c9b3c8b:-8000" source="47283b12:1341c9b3c8b:-7cff" target="47283b12:1341c9b3c8b:-7d8c"><mxGeometry as="geometry" x="-190.0" y="50.0"><mxPoint as="sourcePoint" x="120.0" y="94.0"/><mxPoint as="targetPoint" x="120.0" y="110.0"/></mxGeometry></CommandControlLink><CommandControlLink id="47283b12:1341c9b3c8b:-7cfb" parent="47283b12:1341c9b3c8b:-8000" source="47283b12:1341c9b3c8b:-7cf9" target="47283b12:1341c9b3c8b:-7d32"><mxGeometry as="geometry" x="-190.0" y="40.0"><mxPoint as="sourcePoint" x="120.0" y="214.0"/><mxPoint as="targetPoint" x="120.0" y="230.0"/></mxGeometry></CommandControlLink><CommandControlLink id="47283b12:1341c9b3c8b:-7cf2" parent="47283b12:1341c9b3c8b:-8000" source="47283b12:1341c9b3c8b:-7cf4" target="47283b12:1341c9b3c8b:-7d2f"><mxGeometry as="geometry" x="-190.0" y="20.0"><mxPoint as="sourcePoint" x="120.0" y="334.0"/><mxPoint as="targetPoint" x="120.0" y="350.0"/></mxGeometry></CommandControlLink><TextBlock id="47283b12:1341c9b3c8b:-7ccd" parent="47283b12:1341c9b3c8b:-8000" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="digital logic circuit"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="digital logic circuit"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="digital logic circuit"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="310.0" y="270.0"/></TextBlock><BasicBlock dependsOnU="1" id="47283b12:1341c9b3c8b:-791c" interfaceFunctionName="CMSCOPE" ordering="9" parent="47283b12:1341c9b3c8b:-8000" simulationFunctionName="cmscope" simulationFunctionType="C_OR_FORTRAN" style="CMSCOPE;flip=false;mirror=false"><ScilabString as="exprs" height="11" width="1"><data column="0" line="0" value="1 1 1 1"/><data column="0" line="1" value="1 3 5 7 9 11 13 15"/><data column="0" line="2" value="-1"/><data column="0" line="3" value="[]"/><data column="0" line="4" value="[]"/><data column="0" line="5" value="-0.2 -0.2 -0.2 -0.2"/><data column="0" line="6" value="1.2 1.2 1.2 1.2 "/><data column="0" line="7" value="8 8 8 8"/><data column="0" line="8" value="20"/><data column="0" line="9" value="0"/><data column="0" line="10" value=""/></ScilabString><ScilabDouble as="realParameters" height="13" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="8.0"/><data column="0" line="2" realPart="8.0"/><data column="0" line="3" realPart="8.0"/><data column="0" line="4" realPart="8.0"/><data column="0" line="5" realPart="-0.2"/><data column="0" line="6" realPart="1.2"/><data column="0" line="7" realPart="-0.2"/><data column="0" line="8" realPart="1.2"/><data column="0" line="9" realPart="-0.2"/><data column="0" line="10" realPart="1.2"/><data column="0" line="11" realPart="-0.2"/><data column="0" line="12" realPart="1.2"/></ScilabDouble><ScilabDouble as="integerParameters" height="16" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="4.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="-1.0"/><data column="0" line="4" realPart="-1.0"/><data column="0" line="5" realPart="-1.0"/><data column="0" line="6" realPart="-1.0"/><data column="0" line="7" realPart="1.0"/><data column="0" line="8" realPart="1.0"/><data column="0" line="9" realPart="1.0"/><data column="0" line="10" realPart="1.0"/><data column="0" line="11" realPart="1.0"/><data column="0" line="12" realPart="3.0"/><data column="0" line="13" realPart="5.0"/><data column="0" line="14" realPart="7.0"/><data column="0" line="15" realPart="0.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="80.0" width="40.0" x="420.0" y="130.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="47283b12:1341c9b3c8b:-791b" ordering="1" parent="47283b12:1341c9b3c8b:-791c" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ExplicitInputPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="47283b12:1341c9b3c8b:-791a" ordering="2" parent="47283b12:1341c9b3c8b:-791c" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="26.0"/></ExplicitInputPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="47283b12:1341c9b3c8b:-7919" ordering="3" parent="47283b12:1341c9b3c8b:-791c" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="46.0"/></ExplicitInputPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="47283b12:1341c9b3c8b:-7918" ordering="4" parent="47283b12:1341c9b3c8b:-791c" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="66.0"/></ExplicitInputPort><ControlPort dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-7917" ordering="1" parent="47283b12:1341c9b3c8b:-791c" style="ControlPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><SplitBlock id="47283b12:1341c9b3c8b:-790f" ordering="10" parent="47283b12:1341c9b3c8b:-8000" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="237.0" y="137.0"/></SplitBlock><ExplicitInputPort dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-790e" ordering="1" parent="47283b12:1341c9b3c8b:-790f" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ExplicitInputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-790d" ordering="1" parent="47283b12:1341c9b3c8b:-790f" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-790c" ordering="2" parent="47283b12:1341c9b3c8b:-790f" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ExplicitOutputPort><ExplicitLink id="47283b12:1341c9b3c8b:-790b" parent="47283b12:1341c9b3c8b:-8000" source="47283b12:1341c9b3c8b:-7d8b" target="47283b12:1341c9b3c8b:-790e"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ExplicitLink><ExplicitLink id="47283b12:1341c9b3c8b:-790a" parent="47283b12:1341c9b3c8b:-8000" source="47283b12:1341c9b3c8b:-790d" target="47283b12:1341c9b3c8b:-7d23"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="240.0" y="250.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="47283b12:1341c9b3c8b:-7910" parent="47283b12:1341c9b3c8b:-8000" source="47283b12:1341c9b3c8b:-790c" target="47283b12:1341c9b3c8b:-791b"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="416.0" y="140.0"/><mxPoint as="targetPoint" x="240.0" y="140.0"/></mxGeometry></ExplicitLink><SplitBlock id="47283b12:1341c9b3c8b:-7908" ordering="11" parent="47283b12:1341c9b3c8b:-8000" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="247.0" y="257.0"/></SplitBlock><ExplicitInputPort dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-7907" ordering="1" parent="47283b12:1341c9b3c8b:-7908" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ExplicitInputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-7906" ordering="1" parent="47283b12:1341c9b3c8b:-7908" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-7905" ordering="2" parent="47283b12:1341c9b3c8b:-7908" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ExplicitOutputPort><ExplicitLink id="47283b12:1341c9b3c8b:-7904" parent="47283b12:1341c9b3c8b:-8000" source="47283b12:1341c9b3c8b:-7d31" target="47283b12:1341c9b3c8b:-7907"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ExplicitLink><ExplicitLink id="47283b12:1341c9b3c8b:-7903" parent="47283b12:1341c9b3c8b:-8000" source="47283b12:1341c9b3c8b:-7906" target="47283b12:1341c9b3c8b:-7d1f"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ExplicitLink><ExplicitLink id="47283b12:1341c9b3c8b:-7909" parent="47283b12:1341c9b3c8b:-8000" source="47283b12:1341c9b3c8b:-7905" target="47283b12:1341c9b3c8b:-791a"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="416.0" y="160.0"/><mxPoint as="targetPoint" x="250.0" y="260.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="250.0" y="160.0"/></Array></mxGeometry></ExplicitLink><SplitBlock id="47283b12:1341c9b3c8b:-7901" ordering="12" parent="47283b12:1341c9b3c8b:-8000" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="257.0" y="267.0"/></SplitBlock><ExplicitInputPort dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-7900" ordering="1" parent="47283b12:1341c9b3c8b:-7901" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ExplicitInputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-78ff" ordering="1" parent="47283b12:1341c9b3c8b:-7901" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-78fe" ordering="2" parent="47283b12:1341c9b3c8b:-7901" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ExplicitOutputPort><ExplicitLink id="47283b12:1341c9b3c8b:-78fd" parent="47283b12:1341c9b3c8b:-8000" source="47283b12:1341c9b3c8b:-7d2e" target="47283b12:1341c9b3c8b:-7900"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="240.0" y="380.0"/><mxPoint x="240.0" y="270.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="47283b12:1341c9b3c8b:-78fc" parent="47283b12:1341c9b3c8b:-8000" source="47283b12:1341c9b3c8b:-78ff" target="47283b12:1341c9b3c8b:-7d17"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ExplicitLink><ExplicitLink id="47283b12:1341c9b3c8b:-7902" parent="47283b12:1341c9b3c8b:-8000" source="47283b12:1341c9b3c8b:-78fe" target="47283b12:1341c9b3c8b:-7919"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="416.0" y="180.0"/><mxPoint as="targetPoint" x="260.0" y="270.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="260.0" y="180.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="47283b12:1341c9b3c8b:-78fb" parent="47283b12:1341c9b3c8b:-8000" source="47283b12:1341c9b3c8b:-7d1b" target="47283b12:1341c9b3c8b:-7918"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="416.0" y="200.0"/><mxPoint as="targetPoint" x="360.0" y="260.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="370.0" y="260.0"/><mxPoint x="370.0" y="200.0"/></Array></mxGeometry></ExplicitLink><CommandControlLink id="47283b12:1341c9b3c8b:-78f8" parent="47283b12:1341c9b3c8b:-8000" source="47283b12:1341c9b3c8b:-7dc2" target="47283b12:1341c9b3c8b:-7917"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="440.0" y="104.0"/><mxPoint as="targetPoint" x="440.0" y="120.0"/></mxGeometry></CommandControlLink><TextBlock id="47283b12:1341c9b3c8b:-76d1" parent="47283b12:1341c9b3c8b:-8000" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="A"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="A"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="A"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="40.0" y="120.0"/></TextBlock><TextBlock id="47283b12:1341c9b3c8b:-76d0" parent="47283b12:1341c9b3c8b:-8000" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="B"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="B"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="B"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="40.0" y="240.0"/></TextBlock><TextBlock id="47283b12:1341c9b3c8b:-76cf" parent="47283b12:1341c9b3c8b:-8000" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="C"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="C"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="C"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="40.0" y="360.0"/></TextBlock><TextBlock id="47283b12:1341c9b3c8b:-76ce" parent="47283b12:1341c9b3c8b:-8000" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="<br><br> A B C Z<br>1 1 1 1<br>1 1 0 1<br>1 0 1 1<br>1 0 0 0<br>0 1 1 1<br>0 <br> 1 0 0<br>0 0 1 0<br>0 0 0 0"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="<br><br> A B C Z<br>1 1 1 1<br>1 1 0 1<br>1 0 1 1<br>1 0 0 0<br>0 1 1 1<br>0 <br> 1 0 0<br>0 0 1 0<br>0 0 0 0"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="<br><br> A B C Z<br>1 1 1 1<br>1 1 0 1<br>1 0 1 1<br>1 0 0 0<br>0 1 1 1<br>0 <br> 1 0 0<br>0 0 1 0<br>0 0 0 0"/></ScilabString><mxGeometry as="geometry" height="100.0" width="60.0" x="510.0" y="250.0"/></TextBlock><TextBlock id="47283b12:1341c9b3c8b:-76cd" parent="47283b12:1341c9b3c8b:-8000" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="40.0" width="40.0" x="610.0" y="260.0"/></TextBlock><TextBlock id="47283b12:1341c9b3c8b:-76cb" parent="47283b12:1341c9b3c8b:-8000" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="Truth Table"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="Truth Table"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="Truth Table"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="520.0" y="200.0"/></TextBlock></root></mxGraphModel><mxCell as="defaultParent" id="47283b12:1341c9b3c8b:-8000" parent="47283b12:1341c9b3c8b:-7fff"/></XcosDiagram>
\ No newline at end of file diff --git a/Working_Examples/293/CH12/EX12.3.b/eg12_3b.pdf b/Working_Examples/293/CH12/EX12.3.b/eg12_3b.pdf Binary files differnew file mode 100755 index 0000000..23307f5 --- /dev/null +++ b/Working_Examples/293/CH12/EX12.3.b/eg12_3b.pdf diff --git a/Working_Examples/293/CH12/EX12.3.b/eg12_3b.xcos b/Working_Examples/293/CH12/EX12.3.b/eg12_3b.xcos new file mode 100755 index 0000000..19b9efd --- /dev/null +++ b/Working_Examples/293/CH12/EX12.3.b/eg12_3b.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" finalIntegrationTime="8.0" title="eg12_3b"><!--Xcos - 1.0 - scilab-5.5.2 - 20160406 2040--><mxGraphModel as="model"><root><mxCell id="47283b12:1341c9b3c8b:-7c5a"/><mxCell id="47283b12:1341c9b3c8b:-7c5b" parent="47283b12:1341c9b3c8b:-7c5a"/><BasicBlock blockType="d" id="47283b12:1341c9b3c8b:-7c50" interfaceFunctionName="GENSQR_f" ordering="1" parent="47283b12:1341c9b3c8b:-7c5b" simulationFunctionName="gensqr" simulationFunctionType="DEFAULT" style="GENSQR_f;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="dState" height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="70.0" x="90.0" y="210.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="47283b12:1341c9b3c8b:-7c4e" ordering="1" parent="47283b12:1341c9b3c8b:-7c50" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="70.0" y="16.0"/></ExplicitOutputPort><ControlPort dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-7c4f" ordering="1" parent="47283b12:1341c9b3c8b:-7c50" style="ControlPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="36.0" y="-8.0"/></ControlPort><BasicBlock blockType="d" id="47283b12:1341c9b3c8b:-7c4d" interfaceFunctionName="GENSQR_f" ordering="2" parent="47283b12:1341c9b3c8b:-7c5b" simulationFunctionName="gensqr" simulationFunctionType="DEFAULT" style="GENSQR_f;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="dState" height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="70.0" x="90.0" y="330.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="47283b12:1341c9b3c8b:-7c4b" ordering="1" parent="47283b12:1341c9b3c8b:-7c4d" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="70.0" y="16.0"/></ExplicitOutputPort><ControlPort dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-7c4c" ordering="1" parent="47283b12:1341c9b3c8b:-7c4d" style="ControlPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="36.0" y="-8.0"/></ControlPort><SuperBlock id="47283b12:1341c9b3c8b:-7c4a" ordering="3" parent="47283b12:1341c9b3c8b:-7c5b" simulationFunctionType="DEFAULT" style="SUPER_f;flip=false;mirror=false"><SuperBlockDiagram as="child" background="-1" title=""><!--Xcos - 1.0 - scilab-5.5.2 - 20160406 2040--><mxGraphModel as="model"><root><mxCell id="47283b12:1341c9b3c8b:-7c48"/><mxCell id="47283b12:1341c9b3c8b:-7c49" parent="47283b12:1341c9b3c8b:-7c48"/><BasicBlock dependsOnU="1" id="47283b12:1341c9b3c8b:-7c43" interfaceFunctionName="LOGIC" ordering="1" parent="47283b12:1341c9b3c8b:-7c49" simulationFunctionName="logic" simulationFunctionType="C_OR_FORTRAN" style="LOGIC;flip=false;mirror=false"><ScilabString as="exprs" height="2" width="1"><data column="0" line="0" value="[1;1;1;0]"/><data column="0" line="1" value="1"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"><ScilabInteger height="4" intPrecision="sci_int8" width="1"><data column="0" line="0" value="1"/><data column="0" line="1" value="1"/><data column="0" line="2" value="1"/><data column="0" line="3" value="0"/></ScilabInteger></Array><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="50.0" x="260.0" y="260.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-7b76" ordering="1" parent="47283b12:1341c9b3c8b:-7c43" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="50.0" y="16.0"/></ExplicitOutputPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-7b77" ordering="2" parent="47283b12:1341c9b3c8b:-7c43" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="26.0"/></ExplicitInputPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-7b78" ordering="1" parent="47283b12:1341c9b3c8b:-7c43" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ExplicitInputPort><BasicBlock dependsOnU="1" id="47283b12:1341c9b3c8b:-7c3f" interfaceFunctionName="LOGIC" ordering="2" parent="47283b12:1341c9b3c8b:-7c49" simulationFunctionName="logic" simulationFunctionType="C_OR_FORTRAN" style="LOGIC;flip=false;mirror=false"><ScilabString as="exprs" height="2" width="1"><data column="0" line="0" value="[1;1;1;1;1;1;1;0]"/><data column="0" line="1" value="1"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"><ScilabInteger height="8" intPrecision="sci_int8" width="1"><data column="0" line="0" value="1"/><data column="0" line="1" value="1"/><data column="0" line="2" value="1"/><data column="0" line="3" value="1"/><data column="0" line="4" value="1"/><data column="0" line="5" value="1"/><data column="0" line="6" value="1"/><data column="0" line="7" value="0"/></ScilabInteger></Array><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="60.0" width="50.0" x="410.0" y="190.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-7b70" ordering="1" parent="47283b12:1341c9b3c8b:-7c3f" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="50.0" y="26.0"/></ExplicitOutputPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-7b72" ordering="2" parent="47283b12:1341c9b3c8b:-7c3f" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="26.0"/></ExplicitInputPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-7b71" ordering="3" parent="47283b12:1341c9b3c8b:-7c3f" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="46.0"/></ExplicitInputPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-7b73" ordering="1" parent="47283b12:1341c9b3c8b:-7c3f" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ExplicitInputPort><BasicBlock dependsOnU="1" id="47283b12:1341c9b3c8b:-7c3a" interfaceFunctionName="CONVERT" ordering="3" parent="47283b12:1341c9b3c8b:-7c49" simulationFunctionName="convert" simulationFunctionType="C_OR_FORTRAN" style="CONVERT;flip=false;mirror=false"><ScilabString as="exprs" height="3" width="1"><data column="0" line="0" value="5"/><data column="0" line="1" value="1"/><data column="0" line="2" value="0"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="1" width="1"><data column="0" line="0" realPart="18.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="20.0" width="60.0" x="490.0" y="210.0"/></BasicBlock><ExplicitInputPort dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-7c38" ordering="1" parent="47283b12:1341c9b3c8b:-7c3a" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ExplicitInputPort><ExplicitOutputPort dataType="REAL_MATRIX" id="47283b12:1341c9b3c8b:-7c39" ordering="1" parent="47283b12:1341c9b3c8b:-7c3a" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="60.0" y="6.0"/></ExplicitOutputPort><BasicBlock dependsOnU="1" id="47283b12:1341c9b3c8b:-7c37" interfaceFunctionName="LOGIC" ordering="4" parent="47283b12:1341c9b3c8b:-7c49" simulationFunctionName="logic" simulationFunctionType="C_OR_FORTRAN" style="LOGIC;flip=false;mirror=false"><ScilabString as="exprs" height="2" width="1"><data column="0" line="0" value="[1;1;1;0]"/><data column="0" line="1" value="1"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"><ScilabInteger height="4" intPrecision="sci_int8" width="1"><data column="0" line="0" value="1"/><data column="0" line="1" value="1"/><data column="0" line="2" value="1"/><data column="0" line="3" value="0"/></ScilabInteger></Array><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="50.0" x="260.0" y="140.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-7b80" ordering="1" parent="47283b12:1341c9b3c8b:-7c37" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="50.0" y="16.0"/></ExplicitOutputPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-7b81" ordering="2" parent="47283b12:1341c9b3c8b:-7c37" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="26.0"/></ExplicitInputPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-7b82" ordering="1" parent="47283b12:1341c9b3c8b:-7c37" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ExplicitInputPort><BasicBlock dependsOnU="1" id="47283b12:1341c9b3c8b:-7c33" interfaceFunctionName="CONVERT" ordering="5" parent="47283b12:1341c9b3c8b:-7c49" simulationFunctionName="convert" simulationFunctionType="C_OR_FORTRAN" style="CONVERT;flip=false;mirror=false"><ScilabString as="exprs" height="3" width="1"><data column="0" line="0" value="1"/><data column="0" line="1" value="5"/><data column="0" line="2" value="0"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="20.0" width="60.0" x="110.0" y="150.0"/></BasicBlock><ExplicitInputPort dataType="REAL_MATRIX" id="47283b12:1341c9b3c8b:-7c31" ordering="1" parent="47283b12:1341c9b3c8b:-7c33" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ExplicitInputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-7c32" ordering="1" parent="47283b12:1341c9b3c8b:-7c33" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="60.0" y="6.0"/></ExplicitOutputPort><BasicBlock dependsOnU="1" id="47283b12:1341c9b3c8b:-7c30" interfaceFunctionName="CONVERT" ordering="6" parent="47283b12:1341c9b3c8b:-7c49" simulationFunctionName="convert" simulationFunctionType="C_OR_FORTRAN" style="CONVERT;flip=false;mirror=false"><ScilabString as="exprs" height="3" width="1"><data column="0" line="0" value="1"/><data column="0" line="1" value="5"/><data column="0" line="2" value="0"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="20.0" width="60.0" x="110.0" y="210.0"/></BasicBlock><ExplicitInputPort dataType="REAL_MATRIX" id="47283b12:1341c9b3c8b:-7c2e" ordering="1" parent="47283b12:1341c9b3c8b:-7c30" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ExplicitInputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-7c2f" ordering="1" parent="47283b12:1341c9b3c8b:-7c30" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="60.0" y="6.0"/></ExplicitOutputPort><BasicBlock dependsOnU="1" id="47283b12:1341c9b3c8b:-7c2d" interfaceFunctionName="CONVERT" ordering="7" parent="47283b12:1341c9b3c8b:-7c49" simulationFunctionName="convert" simulationFunctionType="C_OR_FORTRAN" style="CONVERT;flip=false;mirror=false"><ScilabString as="exprs" height="3" width="1"><data column="0" line="0" value="1"/><data column="0" line="1" value="5"/><data column="0" line="2" value="0"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="20.0" width="60.0" x="110.0" y="270.0"/></BasicBlock><ExplicitInputPort dataType="REAL_MATRIX" id="47283b12:1341c9b3c8b:-7c2b" ordering="1" parent="47283b12:1341c9b3c8b:-7c2d" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ExplicitInputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-7c2c" ordering="1" parent="47283b12:1341c9b3c8b:-7c2d" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="60.0" y="6.0"/></ExplicitOutputPort><SplitBlock id="47283b12:1341c9b3c8b:-7c2a" ordering="8" parent="47283b12:1341c9b3c8b:-7c49" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="217.0" y="217.0"/></SplitBlock><ExplicitOutputPort dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-7c28" ordering="1" parent="47283b12:1341c9b3c8b:-7c2a" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-7c27" ordering="2" parent="47283b12:1341c9b3c8b:-7c2a" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ExplicitOutputPort><ExplicitInputPort dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-7c29" ordering="1" parent="47283b12:1341c9b3c8b:-7c2a" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ExplicitInputPort><SplitBlock id="47283b12:1341c9b3c8b:-7c26" ordering="9" parent="47283b12:1341c9b3c8b:-7c49" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="197.0" y="157.0"/></SplitBlock><ExplicitOutputPort dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-7c24" ordering="1" parent="47283b12:1341c9b3c8b:-7c26" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-7c23" ordering="2" parent="47283b12:1341c9b3c8b:-7c26" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ExplicitOutputPort><ExplicitInputPort dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-7c25" ordering="1" parent="47283b12:1341c9b3c8b:-7c26" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ExplicitInputPort><SplitBlock id="47283b12:1341c9b3c8b:-7c22" ordering="10" parent="47283b12:1341c9b3c8b:-7c49" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="207.0" y="277.0"/></SplitBlock><ExplicitOutputPort dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-7c20" ordering="1" parent="47283b12:1341c9b3c8b:-7c22" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-7c1f" ordering="2" parent="47283b12:1341c9b3c8b:-7c22" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ExplicitOutputPort><ExplicitInputPort dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-7c21" ordering="1" parent="47283b12:1341c9b3c8b:-7c22" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ExplicitInputPort><ExplicitLink id="47283b12:1341c9b3c8b:-7c1e" parent="47283b12:1341c9b3c8b:-7c49" source="47283b12:1341c9b3c8b:-7c23" target="47283b12:1341c9b3c8b:-7b7d"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="256.0" y="210.0"/><mxPoint as="targetPoint" x="200.0" y="160.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="200.0" y="210.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="47283b12:1341c9b3c8b:-7c1d" parent="47283b12:1341c9b3c8b:-7c49" source="47283b12:1341c9b3c8b:-7c1f" target="47283b12:1341c9b3c8b:-7b7c"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="256.0" y="230.0"/><mxPoint as="targetPoint" x="210.0" y="280.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="210.0" y="230.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="47283b12:1341c9b3c8b:-7c1c" parent="47283b12:1341c9b3c8b:-7c49" source="47283b12:1341c9b3c8b:-7b7b" target="47283b12:1341c9b3c8b:-7b72"><mxGeometry as="geometry" x="90.0"><mxPoint as="sourcePoint" x="314.0" y="220.0"/><mxPoint as="targetPoint" x="400.0" y="220.0"/></mxGeometry></ExplicitLink><ExplicitLink id="47283b12:1341c9b3c8b:-7c1b" parent="47283b12:1341c9b3c8b:-7c49" source="47283b12:1341c9b3c8b:-7c28" target="47283b12:1341c9b3c8b:-7b78"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="220.0" y="270.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="47283b12:1341c9b3c8b:-7c1a" parent="47283b12:1341c9b3c8b:-7c49" source="47283b12:1341c9b3c8b:-7c20" target="47283b12:1341c9b3c8b:-7b77"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="210.0" y="290.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="47283b12:1341c9b3c8b:-7c19" parent="47283b12:1341c9b3c8b:-7c49" source="47283b12:1341c9b3c8b:-7b76" target="47283b12:1341c9b3c8b:-7b71"><mxGeometry as="geometry" x="90.0"><mxPoint as="sourcePoint" x="314.0" y="280.0"/><mxPoint as="targetPoint" x="400.0" y="240.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="360.0" y="280.0"/><mxPoint x="360.0" y="240.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="47283b12:1341c9b3c8b:-7c18" parent="47283b12:1341c9b3c8b:-7c49" source="47283b12:1341c9b3c8b:-7b80" target="47283b12:1341c9b3c8b:-7b73"><mxGeometry as="geometry" x="90.0"><mxPoint as="sourcePoint" x="314.0" y="160.0"/><mxPoint as="targetPoint" x="400.0" y="200.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="360.0" y="160.0"/><mxPoint x="360.0" y="200.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="47283b12:1341c9b3c8b:-7c17" parent="47283b12:1341c9b3c8b:-7c49" source="47283b12:1341c9b3c8b:-7b70" target="47283b12:1341c9b3c8b:-7c38"><mxGeometry as="geometry" x="90.0"><mxPoint as="sourcePoint" x="464.0" y="220.0"/><mxPoint as="targetPoint" x="480.0" y="220.0"/></mxGeometry></ExplicitLink><ExplicitLink id="47283b12:1341c9b3c8b:-7c16" parent="47283b12:1341c9b3c8b:-7c49" source="47283b12:1341c9b3c8b:-7c24" target="47283b12:1341c9b3c8b:-7b82"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="200.0" y="160.0"/><mxPoint x="200.0" y="150.0"/><mxPoint x="250.0" y="150.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="47283b12:1341c9b3c8b:-7c15" parent="47283b12:1341c9b3c8b:-7c49" source="47283b12:1341c9b3c8b:-7c27" target="47283b12:1341c9b3c8b:-7b81"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="256.0" y="170.0"/><mxPoint as="targetPoint" x="220.0" y="220.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="220.0" y="220.0"/><mxPoint x="220.0" y="220.0"/><mxPoint x="220.0" y="170.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="47283b12:1341c9b3c8b:-7c14" parent="47283b12:1341c9b3c8b:-7c49" source="47283b12:1341c9b3c8b:-7c32" target="47283b12:1341c9b3c8b:-7c25"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ExplicitLink><ExplicitLink id="47283b12:1341c9b3c8b:-7c13" parent="47283b12:1341c9b3c8b:-7c49" source="47283b12:1341c9b3c8b:-7c2f" target="47283b12:1341c9b3c8b:-7c29"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ExplicitLink><ExplicitLink id="47283b12:1341c9b3c8b:-7c12" parent="47283b12:1341c9b3c8b:-7c49" source="47283b12:1341c9b3c8b:-7c2c" target="47283b12:1341c9b3c8b:-7c21"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ExplicitLink><ExplicitInBlock id="47283b12:1341c9b3c8b:-7c11" ordering="11" parent="47283b12:1341c9b3c8b:-7c49" simulationFunctionType="DEFAULT" style="IN_f;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble as="integerParameters" height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><mxGeometry as="geometry" height="40.0" width="40.0" x="49.0" y="140.0"/></ExplicitInBlock><ExplicitOutputPort dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-7c10" ordering="1" parent="47283b12:1341c9b3c8b:-7c11" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ExplicitLink id="47283b12:1341c9b3c8b:-7c0f" parent="47283b12:1341c9b3c8b:-7c49" source="47283b12:1341c9b3c8b:-7c10" target="47283b12:1341c9b3c8b:-7c31"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="84.0" y="160.0"/><mxPoint as="targetPoint" x="100.0" y="160.0"/></mxGeometry></ExplicitLink><ExplicitInBlock id="47283b12:1341c9b3c8b:-7c0e" ordering="12" parent="47283b12:1341c9b3c8b:-7c49" simulationFunctionType="DEFAULT" style="IN_f;flip=false;mirror=false" value="2"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="2"/></ScilabString><ScilabDouble as="integerParameters" height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble><mxGeometry as="geometry" height="40.0" width="40.0" x="49.0" y="200.0"/></ExplicitInBlock><ExplicitOutputPort dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-7c0d" ordering="1" parent="47283b12:1341c9b3c8b:-7c0e" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ExplicitLink id="47283b12:1341c9b3c8b:-7c0c" parent="47283b12:1341c9b3c8b:-7c49" source="47283b12:1341c9b3c8b:-7c0d" target="47283b12:1341c9b3c8b:-7c2e"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="84.0" y="220.0"/><mxPoint as="targetPoint" x="100.0" y="220.0"/></mxGeometry></ExplicitLink><ExplicitOutBlock id="47283b12:1341c9b3c8b:-7c0b" ordering="13" parent="47283b12:1341c9b3c8b:-7c49" simulationFunctionType="DEFAULT" style="OUT_f;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble as="integerParameters" height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><mxGeometry as="geometry" height="40.0" width="40.0" x="566.0" y="200.0"/></ExplicitOutBlock><ExplicitInputPort dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-7c0a" ordering="1" parent="47283b12:1341c9b3c8b:-7c0b" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitLink id="47283b12:1341c9b3c8b:-7c09" parent="47283b12:1341c9b3c8b:-7c49" source="47283b12:1341c9b3c8b:-7c39" target="47283b12:1341c9b3c8b:-7c0a"><mxGeometry as="geometry" x="90.0"><mxPoint as="sourcePoint" x="554.0" y="220.0"/><mxPoint as="targetPoint" x="580.0" y="220.0"/></mxGeometry></ExplicitLink><ExplicitInBlock id="47283b12:1341c9b3c8b:-7c08" ordering="14" parent="47283b12:1341c9b3c8b:-7c49" simulationFunctionType="DEFAULT" style="IN_f;flip=false;mirror=false" value="3"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="3"/></ScilabString><ScilabDouble as="integerParameters" height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble><mxGeometry as="geometry" height="40.0" width="40.0" x="49.0" y="260.0"/></ExplicitInBlock><ExplicitOutputPort dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-7c07" ordering="1" parent="47283b12:1341c9b3c8b:-7c08" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ExplicitLink id="47283b12:1341c9b3c8b:-7c06" parent="47283b12:1341c9b3c8b:-7c49" source="47283b12:1341c9b3c8b:-7c07" target="47283b12:1341c9b3c8b:-7c2b"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="84.0" y="280.0"/><mxPoint as="targetPoint" x="100.0" y="280.0"/></mxGeometry></ExplicitLink><TextBlock id="47283b12:1341c9b3c8b:-7c05" parent="47283b12:1341c9b3c8b:-7c49" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="NAND"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="NAND"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="NAND"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="260.0" y="110.0"/></TextBlock><TextBlock id="47283b12:1341c9b3c8b:-7c04" parent="47283b12:1341c9b3c8b:-7c49" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="NAND"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="NAND"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="NAND"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="260.0" y="170.0"/></TextBlock><TextBlock id="47283b12:1341c9b3c8b:-7c03" parent="47283b12:1341c9b3c8b:-7c49" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="40.0" width="40.0" x="400.0" y="90.0"/></TextBlock><TextBlock id="47283b12:1341c9b3c8b:-7c02" parent="47283b12:1341c9b3c8b:-7c49" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="NAND"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="NAND"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="NAND"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="260.0" y="230.0"/></TextBlock><TextBlock id="47283b12:1341c9b3c8b:-7c01" parent="47283b12:1341c9b3c8b:-7c49" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="NAND"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="NAND"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="NAND"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="410.0" y="240.0"/></TextBlock><BasicBlock dependsOnU="1" id="47283b12:1341c9b3c8b:-7c47" interfaceFunctionName="LOGIC" ordering="15" parent="47283b12:1341c9b3c8b:-7c49" simulationFunctionName="logic" simulationFunctionType="C_OR_FORTRAN" style="LOGIC;flip=false;mirror=false"><ScilabString as="exprs" height="2" width="1"><data column="0" line="0" value="[1;1;1;0]"/><data column="0" line="1" value="1"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"><ScilabInteger height="4" intPrecision="sci_int8" width="1"><data column="0" line="0" value="1"/><data column="0" line="1" value="1"/><data column="0" line="2" value="1"/><data column="0" line="3" value="0"/></ScilabInteger></Array><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="50.0" x="260.0" y="200.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-7b7b" ordering="1" parent="47283b12:1341c9b3c8b:-7c47" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="50.0" y="16.0"/></ExplicitOutputPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-7b7c" ordering="2" parent="47283b12:1341c9b3c8b:-7c47" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="26.0"/></ExplicitInputPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-7b7d" ordering="1" parent="47283b12:1341c9b3c8b:-7c47" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ExplicitInputPort></root></mxGraphModel><mxCell as="defaultParent" id="47283b12:1341c9b3c8b:-7c49" parent="47283b12:1341c9b3c8b:-7c48"/></SuperBlockDiagram><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="1.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="210.0"/><data column="1" line="0" realPart="-260.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="50.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="[1;1;1;0]"/><data column="0" line="1" value="1"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="20.0"/><data column="0" line="1" realPart="19.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="21.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"LOGIC",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="E"/><data column="0" line="1" value="E"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/><data column="0" line="1" value="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value=""/><data column="0" line="1" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="LOGIC;flip=false;mirror=false"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="logic"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="1.0"/><data column="0" line="1" realPart="1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="1.0"/><data column="0" line="1" realPart="1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabInteger height="4" intPrecision="sci_int8" width="1"><data column="0" line="0" value="1"/><data column="0" line="1" value="1"/><data column="0" line="2" value="1"/><data column="0" line="3" value="0"/></ScilabInteger></Array><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="true"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="47283b12:1341c9b3c8b:-7c43"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="LOGIC"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="47283b12:1341c9b3c8b:-7c43"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="360.0"/><data column="1" line="0" realPart="-190.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="50.0"/><data column="1" line="0" realPart="60.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="[1;1;1;1;1;1;1;0]"/><data column="0" line="1" value="1"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="18.0"/><data column="0" line="1" realPart="21.0"/><data column="0" line="2" realPart="22.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="23.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"LOGIC",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="3" width="1"><data column="0" line="0" value="E"/><data column="0" line="1" value="E"/><data column="0" line="2" value="E"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabString height="3" width="1"><data column="0" line="0" value="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/><data column="0" line="1" value="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/><data column="0" line="2" value="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/></ScilabString><ScilabString height="3" width="1"><data column="0" line="0" value=""/><data column="0" line="1" value=""/><data column="0" line="2" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="LOGIC;flip=false;mirror=false"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="logic"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="1.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="1.0"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="1.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="1.0"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/><data column="0" line="2" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabInteger height="8" intPrecision="sci_int8" width="1"><data column="0" line="0" value="1"/><data column="0" line="1" value="1"/><data column="0" line="2" value="1"/><data column="0" line="3" value="1"/><data column="0" line="4" value="1"/><data column="0" line="5" value="1"/><data column="0" line="6" value="1"/><data column="0" line="7" value="0"/></ScilabInteger></Array><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="true"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="47283b12:1341c9b3c8b:-7c3f"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="LOGIC"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="47283b12:1341c9b3c8b:-7c3f"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="430.0"/><data column="1" line="0" realPart="-210.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="60.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="3" width="1"><data column="0" line="0" value="5"/><data column="0" line="1" value="1"/><data column="0" line="2" value="0"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="23.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="31.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CONVERT",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CONVERT;flip=false;mirror=false"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="convert"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-2.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-2.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="18.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="true"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="47283b12:1341c9b3c8b:-7c3a"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CONVERT"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="47283b12:1341c9b3c8b:-7c3a"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="210.0"/><data column="1" line="0" realPart="-140.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="50.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="[1;1;1;0]"/><data column="0" line="1" value="1"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="25.0"/><data column="0" line="1" realPart="24.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="22.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"LOGIC",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="E"/><data column="0" line="1" value="E"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/><data column="0" line="1" value="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value=""/><data column="0" line="1" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="LOGIC;flip=false;mirror=false"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="logic"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="1.0"/><data column="0" line="1" realPart="1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="1.0"/><data column="0" line="1" realPart="1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabInteger height="4" intPrecision="sci_int8" width="1"><data column="0" line="0" value="1"/><data column="0" line="1" value="1"/><data column="0" line="2" value="1"/><data column="0" line="3" value="0"/></ScilabInteger></Array><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="true"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="47283b12:1341c9b3c8b:-7c37"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="LOGIC"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="47283b12:1341c9b3c8b:-7c37"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="50.0"/><data column="1" line="0" realPart="-150.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="60.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="3" width="1"><data column="0" line="0" value="1"/><data column="0" line="1" value="5"/><data column="0" line="2" value="0"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="29.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="26.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CONVERT",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CONVERT;flip=false;mirror=false"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="convert"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-2.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-2.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="true"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="47283b12:1341c9b3c8b:-7c33"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CONVERT"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="47283b12:1341c9b3c8b:-7c33"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="50.0"/><data column="1" line="0" realPart="-210.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="60.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="3" width="1"><data column="0" line="0" value="1"/><data column="0" line="1" value="5"/><data column="0" line="2" value="0"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="30.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="27.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CONVERT",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CONVERT;flip=false;mirror=false"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="convert"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-2.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-2.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="true"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="47283b12:1341c9b3c8b:-7c30"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CONVERT"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="47283b12:1341c9b3c8b:-7c30"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="50.0"/><data column="1" line="0" realPart="-270.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="60.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="3" width="1"><data column="0" line="0" value="1"/><data column="0" line="1" value="5"/><data column="0" line="2" value="0"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="32.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="28.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CONVERT",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CONVERT;flip=false;mirror=false"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="convert"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-2.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-2.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="true"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="47283b12:1341c9b3c8b:-7c2d"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CONVERT"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="47283b12:1341c9b3c8b:-7c2d"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="210.0"/><data column="1" line="0" realPart="-217.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="7.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="27.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="19.0"/><data column="0" line="1" realPart="25.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"SPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="E"/><data column="0" line="1" value="E"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/><data column="0" line="1" value="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value=""/><data column="0" line="1" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="SPLIT_f;flip=false;mirror=false"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="lsplit"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-2.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-2.0"/><data column="0" line="1" realPart="-2.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="47283b12:1341c9b3c8b:-7c2a"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="SPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="47283b12:1341c9b3c8b:-7c2a"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="190.0"/><data column="1" line="0" realPart="-157.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="7.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="26.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="24.0"/><data column="0" line="1" realPart="16.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"SPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="E"/><data column="0" line="1" value="E"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/><data column="0" line="1" value="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value=""/><data column="0" line="1" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="SPLIT_f;flip=false;mirror=false"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="lsplit"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-2.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-2.0"/><data column="0" line="1" realPart="-2.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="47283b12:1341c9b3c8b:-7c26"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="SPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="47283b12:1341c9b3c8b:-7c26"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="200.0"/><data column="1" line="0" realPart="-277.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="7.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="28.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="20.0"/><data column="0" line="1" realPart="17.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"SPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="E"/><data column="0" line="1" value="E"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/><data column="0" line="1" value="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value=""/><data column="0" line="1" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="SPLIT_f;flip=false;mirror=false"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="lsplit"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-2.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-2.0"/><data column="0" line="1" realPart="-2.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="47283b12:1341c9b3c8b:-7c22"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="SPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="47283b12:1341c9b3c8b:-7c22"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="9.0"/><data column="1" line="0" realPart="-140.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="29.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"IN_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="IN_f;flip=false;mirror=false"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="input"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-2.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="47283b12:1341c9b3c8b:-7c11"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="IN_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="47283b12:1341c9b3c8b:-7c11"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="9.0"/><data column="1" line="0" realPart="-200.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="2"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="30.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"IN_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="IN_f;flip=false;mirror=false"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="input"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-2.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="47283b12:1341c9b3c8b:-7c0e"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="IN_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="47283b12:1341c9b3c8b:-7c0e"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="526.0"/><data column="1" line="0" realPart="-200.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="31.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"OUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="OUT_f;flip=false;mirror=false"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-2.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="47283b12:1341c9b3c8b:-7c0b"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="OUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="47283b12:1341c9b3c8b:-7c0b"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="9.0"/><data column="1" line="0" realPart="-260.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="3"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="32.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"IN_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="IN_f;flip=false;mirror=false"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="input"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-2.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="47283b12:1341c9b3c8b:-7c08"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="IN_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="47283b12:1341c9b3c8b:-7c08"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="210.0"/><data column="1" line="0" realPart="-200.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="50.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="[1;1;1;0]"/><data column="0" line="1" value="1"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="17.0"/><data column="0" line="1" realPart="16.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="18.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"LOGIC",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="E"/><data column="0" line="1" value="E"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/><data column="0" line="1" value="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value=""/><data column="0" line="1" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="LOGIC;flip=false;mirror=false"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="logic"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="1.0"/><data column="0" line="1" realPart="1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="1.0"/><data column="0" line="1" realPart="1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabInteger height="4" intPrecision="sci_int8" width="1"><data column="0" line="0" value="1"/><data column="0" line="1" value="1"/><data column="0" line="2" value="1"/><data column="0" line="3" value="0"/></ScilabInteger></Array><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="true"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="47283b12:1341c9b3c8b:-7c47"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="LOGIC"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="47283b12:1341c9b3c8b:-7c47"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="208.0"/><data column="0" line="1" realPart="200.0"/><data column="0" line="2" realPart="256.0"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-160.0"/><data column="0" line="1" realPart="-210.0"/><data column="0" line="2" realPart="-170.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="9.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="15.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="218.0"/><data column="0" line="1" realPart="210.0"/><data column="0" line="2" realPart="256.0"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-280.0"/><data column="0" line="1" realPart="-230.0"/><data column="0" line="2" realPart="-190.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="10.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="15.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="314.0"/><data column="0" line="1" realPart="406.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-180.0"/><data column="0" line="1" realPart="-160.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="15.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="228.0"/><data column="0" line="1" realPart="220.0"/><data column="0" line="2" realPart="256.0"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-210.0"/><data column="0" line="1" realPart="-270.0"/><data column="0" line="2" realPart="-230.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="218.0"/><data column="0" line="1" realPart="210.0"/><data column="0" line="2" realPart="256.0"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-270.0"/><data column="0" line="1" realPart="-290.0"/><data column="0" line="2" realPart="-250.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="10.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="314.0"/><data column="0" line="1" realPart="360.0"/><data column="0" line="2" realPart="360.0"/><data column="0" line="3" realPart="406.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-240.0"/><data column="0" line="1" realPart="-280.0"/><data column="0" line="2" realPart="-240.0"/><data column="0" line="3" realPart="-180.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="3.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="314.0"/><data column="0" line="1" realPart="360.0"/><data column="0" line="2" realPart="360.0"/><data column="0" line="3" realPart="406.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-120.0"/><data column="0" line="1" realPart="-160.0"/><data column="0" line="2" realPart="-200.0"/><data column="0" line="3" realPart="-140.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="464.0"/><data column="0" line="1" realPart="486.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-160.0"/><data column="0" line="1" realPart="-200.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="5" width="1"><data column="0" line="0" realPart="208.0"/><data column="0" line="1" realPart="200.0"/><data column="0" line="2" realPart="200.0"/><data column="0" line="3" realPart="250.0"/><data column="0" line="4" realPart="256.0"/></ScilabDouble><ScilabDouble height="5" width="1"><data column="0" line="0" realPart="-150.0"/><data column="0" line="1" realPart="-160.0"/><data column="0" line="2" realPart="-150.0"/><data column="0" line="3" realPart="-150.0"/><data column="0" line="4" realPart="-110.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="9.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="5" width="1"><data column="0" line="0" realPart="228.0"/><data column="0" line="1" realPart="220.0"/><data column="0" line="2" realPart="220.0"/><data column="0" line="3" realPart="220.0"/><data column="0" line="4" realPart="256.0"/></ScilabDouble><ScilabDouble height="5" width="1"><data column="0" line="0" realPart="-220.0"/><data column="0" line="1" realPart="-220.0"/><data column="0" line="2" realPart="-220.0"/><data column="0" line="3" realPart="-170.0"/><data column="0" line="4" realPart="-130.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="174.0"/><data column="0" line="1" realPart="193.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-140.0"/><data column="0" line="1" realPart="-150.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="9.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="174.0"/><data column="0" line="1" realPart="213.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-200.0"/><data column="0" line="1" realPart="-210.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="6.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="174.0"/><data column="0" line="1" realPart="203.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-260.0"/><data column="0" line="1" realPart="-270.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="10.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="93.0"/><data column="0" line="1" realPart="106.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-120.0"/><data column="0" line="1" realPart="-140.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="11.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="93.0"/><data column="0" line="1" realPart="106.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-180.0"/><data column="0" line="1" realPart="-200.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="12.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="6.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="554.0"/><data column="0" line="1" realPart="562.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-200.0"/><data column="0" line="1" realPart="-180.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="13.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="93.0"/><data column="0" line="1" realPart="106.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-240.0"/><data column="0" line="1" realPart="-260.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="14.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="320.0" y="210.0"/></SuperBlock><ExplicitInputPort dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-7bff" ordering="2" parent="47283b12:1341c9b3c8b:-7c4a" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-7bfe" ordering="1" parent="47283b12:1341c9b3c8b:-7c4a" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ExplicitInputPort dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-7bfd" ordering="3" parent="47283b12:1341c9b3c8b:-7c4a" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="26.0"/></ExplicitInputPort><ExplicitInputPort dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-7c00" ordering="1" parent="47283b12:1341c9b3c8b:-7c4a" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ExplicitInputPort><BasicBlock blockType="h" id="47283b12:1341c9b3c8b:-7bfb" interfaceFunctionName="CLOCK_c" ordering="4" parent="47283b12:1341c9b3c8b:-7c5b" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="99.0"/><data column="1" line="0" realPart="-152.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="47283b12:1341c9b3c8b:-7965"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="47283b12:1341c9b3c8b:-7965"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-62.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="4"/><data column="0" line="1" value="0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="4.0"/><data column="0" line="1" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="47283b12:1341c9b3c8b:-7961"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="47283b12:1341c9b3c8b:-7961"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="92.71066000000002"/><data column="1" line="0" realPart="-154.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="8.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="4.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="47283b12:1341c9b3c8b:-795c"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="47283b12:1341c9b3c8b:-795c"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="66.0"/><data column="0" line="2" realPart="103.37732666666669"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-18.0"/><data column="0" line="1" realPart="-186.0"/><data column="0" line="2" realPart="-158.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="104.71066000000002"/><data column="0" line="1" realPart="129.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-142.0"/><data column="0" line="1" realPart="-128.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="106.04399333333335"/><data column="0" line="1" realPart="111.70999999999998"/><data column="0" line="2" realPart="71.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-158.0"/><data column="0" line="1" realPart="-40.0"/><data column="0" line="2" realPart="-40.0"/><data column="0" line="3" realPart="-66.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="110.0" y="260.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-7bfa" ordering="1" parent="47283b12:1341c9b3c8b:-7bfb" style="CommandPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><BasicBlock blockType="h" id="47283b12:1341c9b3c8b:-7bf9" interfaceFunctionName="CLOCK_c" ordering="5" parent="47283b12:1341c9b3c8b:-7c5b" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="99.0"/><data column="1" line="0" realPart="-152.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="47283b12:1341c9b3c8b:-7953"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="47283b12:1341c9b3c8b:-7953"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-62.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="2"/><data column="0" line="1" value="0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="2.0"/><data column="0" line="1" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="47283b12:1341c9b3c8b:-794f"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="47283b12:1341c9b3c8b:-794f"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="92.71066000000002"/><data column="1" line="0" realPart="-154.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="8.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="4.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="47283b12:1341c9b3c8b:-794a"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="47283b12:1341c9b3c8b:-794a"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="66.0"/><data column="0" line="2" realPart="103.37732666666669"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-18.0"/><data column="0" line="1" realPart="-186.0"/><data column="0" line="2" realPart="-158.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="104.71066000000002"/><data column="0" line="1" realPart="129.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-142.0"/><data column="0" line="1" realPart="-128.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="106.04399333333335"/><data column="0" line="1" realPart="111.70999999999998"/><data column="0" line="2" realPart="71.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-158.0"/><data column="0" line="1" realPart="-40.0"/><data column="0" line="2" realPart="-40.0"/><data column="0" line="3" realPart="-66.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="110.0" y="140.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-7bf8" ordering="1" parent="47283b12:1341c9b3c8b:-7bf9" style="CommandPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><BasicBlock blockType="h" id="47283b12:1341c9b3c8b:-7bf7" interfaceFunctionName="CLOCK_c" ordering="6" parent="47283b12:1341c9b3c8b:-7c5b" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="99.0"/><data column="1" line="0" realPart="-152.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="47283b12:1341c9b3c8b:-7941"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="47283b12:1341c9b3c8b:-7941"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-62.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="1"/><data column="0" line="1" value="0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="1.0"/><data column="0" line="1" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="47283b12:1341c9b3c8b:-793d"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="47283b12:1341c9b3c8b:-793d"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="92.71066000000002"/><data column="1" line="0" realPart="-154.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="8.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="4.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="47283b12:1341c9b3c8b:-7938"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="47283b12:1341c9b3c8b:-7938"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="66.0"/><data column="0" line="2" realPart="103.37732666666669"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-18.0"/><data column="0" line="1" realPart="-186.0"/><data column="0" line="2" realPart="-158.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="104.71066000000002"/><data column="0" line="1" realPart="129.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-142.0"/><data column="0" line="1" realPart="-128.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="106.04399333333335"/><data column="0" line="1" realPart="111.70999999999998"/><data column="0" line="2" realPart="71.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-158.0"/><data column="0" line="1" realPart="-40.0"/><data column="0" line="2" realPart="-40.0"/><data column="0" line="3" realPart="-66.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="110.0" y="20.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-7bf6" ordering="1" parent="47283b12:1341c9b3c8b:-7bf7" style="CommandPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><CommandControlLink id="47283b12:1341c9b3c8b:-7bf5" parent="47283b12:1341c9b3c8b:-7c5b" source="47283b12:1341c9b3c8b:-7bf6" target="47283b12:1341c9b3c8b:-7c52"><mxGeometry as="geometry" x="-180.0" y="20.0"><mxPoint as="sourcePoint" x="130.0" y="64.0"/><mxPoint as="targetPoint" x="130.0" y="80.0"/></mxGeometry></CommandControlLink><CommandControlLink id="47283b12:1341c9b3c8b:-7bf4" parent="47283b12:1341c9b3c8b:-7c5b" source="47283b12:1341c9b3c8b:-7bf8" target="47283b12:1341c9b3c8b:-7c4f"><mxGeometry as="geometry" x="-180.0" y="10.0"><mxPoint as="sourcePoint" x="130.0" y="184.0"/><mxPoint as="targetPoint" x="130.0" y="200.0"/></mxGeometry></CommandControlLink><CommandControlLink id="47283b12:1341c9b3c8b:-7bf3" parent="47283b12:1341c9b3c8b:-7c5b" source="47283b12:1341c9b3c8b:-7bfa" target="47283b12:1341c9b3c8b:-7c4c"><mxGeometry as="geometry" x="-180.0" y="-10.0"><mxPoint as="sourcePoint" x="130.0" y="304.0"/><mxPoint as="targetPoint" x="130.0" y="320.0"/></mxGeometry></CommandControlLink><TextBlock id="47283b12:1341c9b3c8b:-7bef" parent="47283b12:1341c9b3c8b:-7c5b" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="digital logic circuit"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="digital logic circuit"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="digital logic circuit"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="320.0" y="240.0"/></TextBlock><BasicBlock dependsOnU="1" id="47283b12:1341c9b3c8b:-7b61" interfaceFunctionName="CMSCOPE" ordering="7" parent="47283b12:1341c9b3c8b:-7c5b" simulationFunctionName="cmscope" simulationFunctionType="C_OR_FORTRAN" style="CMSCOPE;flip=false;mirror=false"><ScilabString as="exprs" height="11" width="1"><data column="0" line="0" value="1 1 1 1"/><data column="0" line="1" value="1 3 5 7 9 11 13 15"/><data column="0" line="2" value="-1"/><data column="0" line="3" value="[]"/><data column="0" line="4" value="[]"/><data column="0" line="5" value="-0.2 -0.2 -0.2 -0.2"/><data column="0" line="6" value="1.2 1.2 1.2 1.2 "/><data column="0" line="7" value="8 8 8 8"/><data column="0" line="8" value="20"/><data column="0" line="9" value="0"/><data column="0" line="10" value=""/></ScilabString><ScilabDouble as="realParameters" height="13" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="8.0"/><data column="0" line="2" realPart="8.0"/><data column="0" line="3" realPart="8.0"/><data column="0" line="4" realPart="8.0"/><data column="0" line="5" realPart="-0.2"/><data column="0" line="6" realPart="1.2"/><data column="0" line="7" realPart="-0.2"/><data column="0" line="8" realPart="1.2"/><data column="0" line="9" realPart="-0.2"/><data column="0" line="10" realPart="1.2"/><data column="0" line="11" realPart="-0.2"/><data column="0" line="12" realPart="1.2"/></ScilabDouble><ScilabDouble as="integerParameters" height="16" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="4.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="-1.0"/><data column="0" line="4" realPart="-1.0"/><data column="0" line="5" realPart="-1.0"/><data column="0" line="6" realPart="-1.0"/><data column="0" line="7" realPart="1.0"/><data column="0" line="8" realPart="1.0"/><data column="0" line="9" realPart="1.0"/><data column="0" line="10" realPart="1.0"/><data column="0" line="11" realPart="1.0"/><data column="0" line="12" realPart="3.0"/><data column="0" line="13" realPart="5.0"/><data column="0" line="14" realPart="7.0"/><data column="0" line="15" realPart="0.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="80.0" width="40.0" x="410.0" y="120.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="47283b12:1341c9b3c8b:-7b18" ordering="1" parent="47283b12:1341c9b3c8b:-7b61" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ExplicitInputPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="47283b12:1341c9b3c8b:-7b17" ordering="2" parent="47283b12:1341c9b3c8b:-7b61" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="26.0"/></ExplicitInputPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="47283b12:1341c9b3c8b:-7b16" ordering="3" parent="47283b12:1341c9b3c8b:-7b61" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="46.0"/></ExplicitInputPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="47283b12:1341c9b3c8b:-7b15" ordering="4" parent="47283b12:1341c9b3c8b:-7b61" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="66.0"/></ExplicitInputPort><ControlPort dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-7b14" ordering="1" parent="47283b12:1341c9b3c8b:-7b61" style="ControlPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><SplitBlock id="47283b12:1341c9b3c8b:-7b31" ordering="8" parent="47283b12:1341c9b3c8b:-7c5b" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="297.0" y="237.0"/></SplitBlock><ExplicitOutputPort dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-7b2f" ordering="1" parent="47283b12:1341c9b3c8b:-7b31" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-7b2e" ordering="2" parent="47283b12:1341c9b3c8b:-7b31" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ExplicitOutputPort><ExplicitInputPort dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-7b30" ordering="1" parent="47283b12:1341c9b3c8b:-7b31" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ExplicitInputPort><ExplicitLink id="47283b12:1341c9b3c8b:-7b2d" parent="47283b12:1341c9b3c8b:-7c5b" source="47283b12:1341c9b3c8b:-7c4b" target="47283b12:1341c9b3c8b:-7b30"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="250.0" y="350.0"/><mxPoint x="250.0" y="240.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="47283b12:1341c9b3c8b:-7b2c" parent="47283b12:1341c9b3c8b:-7c5b" source="47283b12:1341c9b3c8b:-7b2f" target="47283b12:1341c9b3c8b:-7bfd"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ExplicitLink><ExplicitLink id="47283b12:1341c9b3c8b:-7b32" parent="47283b12:1341c9b3c8b:-7c5b" source="47283b12:1341c9b3c8b:-7b2e" target="47283b12:1341c9b3c8b:-7b16"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="406.0" y="170.0"/><mxPoint as="targetPoint" x="300.0" y="240.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="300.0" y="170.0"/></Array></mxGeometry></ExplicitLink><SplitBlock id="47283b12:1341c9b3c8b:-7b2a" ordering="9" parent="47283b12:1341c9b3c8b:-7c5b" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="277.0" y="227.0"/></SplitBlock><ExplicitOutputPort dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-7b28" ordering="1" parent="47283b12:1341c9b3c8b:-7b2a" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-7b27" ordering="2" parent="47283b12:1341c9b3c8b:-7b2a" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ExplicitOutputPort><ExplicitInputPort dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-7b29" ordering="1" parent="47283b12:1341c9b3c8b:-7b2a" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ExplicitInputPort><ExplicitLink id="47283b12:1341c9b3c8b:-7b26" parent="47283b12:1341c9b3c8b:-7c5b" source="47283b12:1341c9b3c8b:-7c4e" target="47283b12:1341c9b3c8b:-7b29"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ExplicitLink><ExplicitLink id="47283b12:1341c9b3c8b:-7b25" parent="47283b12:1341c9b3c8b:-7c5b" source="47283b12:1341c9b3c8b:-7b28" target="47283b12:1341c9b3c8b:-7bff"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ExplicitLink><ExplicitLink id="47283b12:1341c9b3c8b:-7b2b" parent="47283b12:1341c9b3c8b:-7c5b" source="47283b12:1341c9b3c8b:-7b27" target="47283b12:1341c9b3c8b:-7b17"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="406.0" y="150.0"/><mxPoint as="targetPoint" x="280.0" y="230.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="280.0" y="150.0"/></Array></mxGeometry></ExplicitLink><SplitBlock id="47283b12:1341c9b3c8b:-7b23" ordering="10" parent="47283b12:1341c9b3c8b:-7c5b" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="247.0" y="107.0"/></SplitBlock><ExplicitOutputPort dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-7b21" ordering="1" parent="47283b12:1341c9b3c8b:-7b23" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-7b20" ordering="2" parent="47283b12:1341c9b3c8b:-7b23" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ExplicitOutputPort><ExplicitInputPort dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-7b22" ordering="1" parent="47283b12:1341c9b3c8b:-7b23" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ExplicitInputPort><ExplicitLink id="47283b12:1341c9b3c8b:-7b1f" parent="47283b12:1341c9b3c8b:-7c5b" source="47283b12:1341c9b3c8b:-7c51" target="47283b12:1341c9b3c8b:-7b22"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ExplicitLink><ExplicitLink id="47283b12:1341c9b3c8b:-7b1e" parent="47283b12:1341c9b3c8b:-7c5b" source="47283b12:1341c9b3c8b:-7b21" target="47283b12:1341c9b3c8b:-7c00"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="250.0" y="220.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="47283b12:1341c9b3c8b:-7b24" parent="47283b12:1341c9b3c8b:-7c5b" source="47283b12:1341c9b3c8b:-7b20" target="47283b12:1341c9b3c8b:-7b18"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="406.0" y="130.0"/><mxPoint as="targetPoint" x="250.0" y="110.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="270.0" y="110.0"/><mxPoint x="270.0" y="130.0"/></Array></mxGeometry></ExplicitLink><BasicBlock blockType="h" id="47283b12:1341c9b3c8b:-7c56" interfaceFunctionName="CLOCK_c" ordering="11" parent="47283b12:1341c9b3c8b:-7c5b" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="99.0"/><data column="1" line="0" realPart="-152.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="47283b12:1341c9b3c8b:-792f"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="47283b12:1341c9b3c8b:-792f"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-62.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.005"/><data column="0" line="1" value="0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.005"/><data column="0" line="1" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="47283b12:1341c9b3c8b:-792b"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="47283b12:1341c9b3c8b:-792b"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="92.71066000000002"/><data column="1" line="0" realPart="-154.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="8.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="4.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="47283b12:1341c9b3c8b:-7926"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="47283b12:1341c9b3c8b:-7926"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="66.0"/><data column="0" line="2" realPart="103.37732666666669"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-18.0"/><data column="0" line="1" realPart="-186.0"/><data column="0" line="2" realPart="-158.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="104.71066000000002"/><data column="0" line="1" realPart="129.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-142.0"/><data column="0" line="1" realPart="-128.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="106.04399333333335"/><data column="0" line="1" realPart="111.70999999999998"/><data column="0" line="2" realPart="71.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-158.0"/><data column="0" line="1" realPart="-40.0"/><data column="0" line="2" realPart="-40.0"/><data column="0" line="3" realPart="-66.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="410.0" y="40.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-7c55" ordering="1" parent="47283b12:1341c9b3c8b:-7c56" style="CommandPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><CommandControlLink id="47283b12:1341c9b3c8b:-7b1b" parent="47283b12:1341c9b3c8b:-7c5b" source="47283b12:1341c9b3c8b:-7c55" target="47283b12:1341c9b3c8b:-7b14"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="430.0" y="84.0"/><mxPoint as="targetPoint" x="430.0" y="110.0"/></mxGeometry></CommandControlLink><ExplicitLink id="47283b12:1341c9b3c8b:-7b1a" parent="47283b12:1341c9b3c8b:-7c5b" source="47283b12:1341c9b3c8b:-7bfe" target="47283b12:1341c9b3c8b:-7b15"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="364.0" y="230.0"/><mxPoint as="targetPoint" x="400.0" y="190.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="380.0" y="230.0"/><mxPoint x="380.0" y="190.0"/></Array></mxGeometry></ExplicitLink><BasicBlock blockType="d" id="47283b12:1341c9b3c8b:-7c53" interfaceFunctionName="GENSQR_f" ordering="12" parent="47283b12:1341c9b3c8b:-7c5b" simulationFunctionName="gensqr" simulationFunctionType="DEFAULT" style="GENSQR_f;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="dState" height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="70.0" x="90.0" y="90.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="47283b12:1341c9b3c8b:-7c51" ordering="1" parent="47283b12:1341c9b3c8b:-7c53" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="70.0" y="16.0"/></ExplicitOutputPort><ControlPort dataType="UNKNOW_TYPE" id="47283b12:1341c9b3c8b:-7c52" ordering="1" parent="47283b12:1341c9b3c8b:-7c53" style="ControlPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="36.0" y="-8.0"/></ControlPort><TextBlock id="47283b12:1341c9b3c8b:-76ca" parent="47283b12:1341c9b3c8b:-7c5b" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="<br><br> <br><br> A B C Z<br>1 1 1 1<br>1 1 0 1<br>1 0 1 1<br>1 0 0 0<br>0 1 1 1<br>0 1 0 0<br>0 <br> 0 1 0<br>0 0 0 0"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="<br><br> <br><br> A B C Z<br>1 1 1 1<br>1 1 0 1<br>1 0 1 1<br>1 0 0 0<br>0 1 1 1<br>0 1 0 0<br>0 <br> 0 1 0<br>0 0 0 0"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="<br><br> <br><br> A B C Z<br>1 1 1 1<br>1 1 0 1<br>1 0 1 1<br>1 0 0 0<br>0 1 1 1<br>0 1 0 0<br>0 <br> 0 1 0<br>0 0 0 0"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="540.0" y="220.0"/></TextBlock><TextBlock id="47283b12:1341c9b3c8b:-76c9" parent="47283b12:1341c9b3c8b:-7c5b" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="Truth Table"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="Truth Table"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="Truth Table"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="540.0" y="140.0"/></TextBlock><TextBlock id="47283b12:1341c9b3c8b:-76c8" parent="47283b12:1341c9b3c8b:-7c5b" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="A"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="A"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="A"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="50.0" y="90.0"/></TextBlock><TextBlock id="47283b12:1341c9b3c8b:-76c7" parent="47283b12:1341c9b3c8b:-7c5b" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="B"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="B"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="B"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="50.0" y="210.0"/></TextBlock><TextBlock id="47283b12:1341c9b3c8b:-76c6" parent="47283b12:1341c9b3c8b:-7c5b" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="C"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="C"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="C"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="50.0" y="330.0"/></TextBlock></root></mxGraphModel><mxCell as="defaultParent" id="47283b12:1341c9b3c8b:-7c5b" parent="47283b12:1341c9b3c8b:-7c5a"/></XcosDiagram>
\ No newline at end of file diff --git a/Working_Examples/293/CH15/EX15.1/eg15_1.sce b/Working_Examples/293/CH15/EX15.1/eg15_1.sce new file mode 100755 index 0000000..2417766 --- /dev/null +++ b/Working_Examples/293/CH15/EX15.1/eg15_1.sce @@ -0,0 +1,42 @@ +//a
+phi = 6*10^-4; //given magnetic flux (in Wb)
+A = 0.001; // cross sectional area (in meter square)
+B = phi/A ; //
+Ha = 10; //magnetic field intensity of material a needed to establish the given magnetic flux
+Hb = 77; // magnetic field intensity of material b
+Hc = 270; // magnetic field intensity of material c
+La = 0.3; //arc length of material a (in meters)
+Lb = 0.2; //arc length of material b (in meters)
+Lc = 0.1; //arc length of material c (in meters)
+
+F = Ha*La + Hb*Lb + Hc*Lc; //magnetomotive force
+disp("a")
+disp(F, "magnetomotive force needed to establish a flux of 6*10^-4(in At) = ")
+
+//b
+N = 100; //no. of turns
+I = F/N; //current in amps
+disp("b")
+disp(I,"current that must be made to flow through the coil(in amps) = ")
+
+//c
+MU0 = 4*%pi*10^-7;
+MUa = B/Ha; //permeability of material a
+MUb = B/Hb; //permeability of material b
+MUc = B/Hc; //permeability of material c
+
+MUra = MUa/MU0; //relative permeability of material a
+MUrb = MUb/MU0; //relative permeability of material b
+MUrc = MUc/MU0; //relative permeability of material c
+
+Ra = Ha*La/phi; //reluctance of material a
+Rb = Hb*Lb/phi; //reluctance of material b
+Rc = Hc*Lc/phi; //reluctance of material c
+
+disp("c")
+disp(MUra,"relative permeability of material a = ")
+disp(MUrb,"relative permeability of material b = ")
+disp(MUrc,"relative permeability of material c = ")
+disp(Ra,"reluctance of material a = ")
+disp(Rb,"reluctance of material b = ")
+disp(Rc,"reluctance of material c = ")
\ No newline at end of file diff --git a/Working_Examples/293/CH15/EX15.3/eg15_3.sce b/Working_Examples/293/CH15/EX15.3/eg15_3.sce new file mode 100755 index 0000000..db0e188 --- /dev/null +++ b/Working_Examples/293/CH15/EX15.3/eg15_3.sce @@ -0,0 +1,39 @@ +mu0 = 4*%pi*10^-7;
+A = 0.0025; //cross sectional area of the coil
+//dimensions of the coil (in meters)
+Lg = 0.002; //air gap length (in meters)
+Lbd = 0.025;
+Lde = 0.1;
+Lef = 0.025;
+Lfk = 0.2;
+Lbc = 0.175;
+Lcab = 0.5;
+
+Lbghc = 2*(Lbd + Lde + Lef + (Lfk/2)) - Lg;//length of the ferromagnetic material involved here
+
+phig = 4*10^-4; //air gap flux (in Wb)
+Bg = phig/A ; //air gap flux density (in tesla)
+Hg = Bg/mu0 ; //feild intensity of the air gap
+mmfg = Hg*Lg ; //mmf produced in the air gap (in At)
+
+Bbc = 1.38 ; //flux density corresponding to cast steel
+
+Hbghc = 125; //field intensity corresponding to flux density of 0.16T in the steel
+mmfbghc = Hbghc*Lbghc ; // mmf corresponding to bghc
+
+mmfbc = mmfg + mmfbghc ; //mmf across path bc
+Hbc = mmfbc/Lbc;
+phibc = Bbc*A ; //flux produced in bc
+
+phicab = phig + phibc; //total fiux existing in leg cab
+Bcab = phicab/0.00375; //flux density
+Hcab = 690;
+mmfcab = Hcab*Lcab; //mmf in leg cab
+
+mmf = mmfbc + mmfcab ; //mmf produced by the coil
+
+disp(mmf,"mmf produced by the coil(in At) = ")
+
+
+
+
diff --git a/Working_Examples/293/CH15/EX15.5/eg15_5.sce b/Working_Examples/293/CH15/EX15.5/eg15_5.sce new file mode 100755 index 0000000..151ccb4 --- /dev/null +++ b/Working_Examples/293/CH15/EX15.5/eg15_5.sce @@ -0,0 +1,12 @@ +//b
+mu0 = 4*%pi*10^-7 ;
+//plunger magnet dimensions (in meters)
+x = 0.025;
+h = 0.05;
+a = 0.025;
+g = 0.00125;
+
+mmf = 1414; //(in At)
+
+F = %pi*a*mu0*(mmf^2)*(h^2)*(1/(x + h)^2)/g; //magnitude of the force
+disp(F, "magnitude of the force (in Newtons) = ")
\ No newline at end of file diff --git a/Working_Examples/293/CH16/EX16.1/eg16_1.sce b/Working_Examples/293/CH16/EX16.1/eg16_1.sce new file mode 100755 index 0000000..dde1653 --- /dev/null +++ b/Working_Examples/293/CH16/EX16.1/eg16_1.sce @@ -0,0 +1,56 @@ +//a
+V1 = 1100; //higher voltage
+V2 = 220; //lower voltage
+a = V1/V2; //turns ratio
+r1 = 0.1; //high voltage winding resistance(in ohms)
+x1 = 0.3; //high voltage leakage reactance(in ohms)
+r2 = 0.004; //low voltage winding resistance(in ohms)
+x2 = 0.012; //low voltage leakage reactance(in ohms)
+
+Re1 = r1 + (a^2)*r2 ; //equivalent winding resistance referred to the primary side
+Xe1 = x1 + (a^2)*x2 ; //equivalent leakage reactance referred to the primary side
+Re2 = (r1/a^2) + r2 ; //equivalent winding resistance referred to the secondary side
+Xe2 = (x1/a^2) + x2 ; //equivalent leakage reactance referred to the secondary side
+
+disp("a")
+disp(Re1,"equivalent winding resistance referred to the primary side")
+disp(Xe1,"equivalent leakage reactance referred to the primary side")
+disp(Re2,"equivalent winding resistance referred to the secondary side")
+disp(Xe2,"equivalent leakage reactance referred to the secondary side")
+
+//b
+P = 100; //power (in kVA)
+I21 = P*1000/V1; //primary winding current rating
+Vre1 = I21*Re1; //equivalent resistance drop (in volts)
+VperR1 = Vre1*100/V1 ; // % equivalent resistance drop
+
+Vxe1 = I21*Xe1; //equivalent reactance drop (in volts)
+VperX1 = Vxe1*100/V1; // % equivalent reactance drop
+
+disp("b")
+disp(Vre1,"equivalent resistance drop expressed in terms of primary quantities(in volts) = ")
+disp(VperR1,"% equivalent resistance drop expressed in terms of primary quantities = ")
+disp(Vxe1,"equivalent reactance drop expressed in terms of primary quantities(in volts) =")
+disp(VperX1,"% equivalent reactance drop expressed in terms of primary quantities = ")
+
+//c
+I2 = a*I21; // secondary winding current rating
+Vre2 = I2*Re2; //equivalent resistance drop (in volts)
+VperR2 = Vre2*100/V2 ; // % equivalent resistance drop
+
+Vxe2 = I2*Xe2; //equivalent reactance drop (in volts)
+VperX2 = Vxe2*100/V2; // % equivalent reactance drop
+
+disp("c")
+disp(Vre2,"equivalent resistance drop expressed in terms of secondary quantities(in volts) = ")
+disp(VperR2,"% equivalent resistance drop expressed in terms of secondary quantities = ")
+disp(Vxe2,"equivalent reactance drop expressed in terms of secondary quantities(in volts) =")
+disp(VperX2,"% equivalent reactance drop expressed in terms of secondary quantities = ")
+
+//d
+Ze1 = complex(Re1,Xe1); //equivalent leakage impedance referred to the primary
+Ze2 = Ze1/a ; //equivalent leakage impedance referred to the secondary
+
+disp("d")
+disp(Ze1,"equivalent leakage impedance referred to the primary = ")
+disp(Ze2,"equivalent leakage impedance referred to the secondary = ")
\ No newline at end of file diff --git a/Working_Examples/293/CH16/EX16.2/eg16_2.sce b/Working_Examples/293/CH16/EX16.2/eg16_2.sce new file mode 100755 index 0000000..978e1e7 --- /dev/null +++ b/Working_Examples/293/CH16/EX16.2/eg16_2.sce @@ -0,0 +1,31 @@ +Pl = 396; //wattmeter reading on open circuit test
+Vl = 120; //voltmeter reading on open circuit test
+Il = 9.65; //ammeter reading o open circuit test
+a = 2400/120; //turns ratio
+
+theata = acos(Pl/(Vl*Il)); //phase difference between voltage and current
+Irl = Il*cos(theata); //resistive part of Im
+Ixl = Il*sin(theata); //reactive part of Im
+
+rl = Vl/Irl; //low voltage winding resistance
+rh = (a^2)*rl; //rl on the high side
+xl = Vl/Ixl; //magnetizing reactance referred to the lower side
+xh = (a^2)*xl; //corresponding high side value
+
+Ph = 810; //wattmeter reading on short circuit test
+Vh = 92; //voltmeter reading on short circuit test
+Ih = 20.8; //ammeter reading on short circuit test
+
+Zeh = Vh/Ih; //equivalent impeadance referred to the higher side
+Zel = Zeh/(a^2); //equivalent impedance referred to the lower side
+Reh = Ph/(Ih^2); //equivalent resistance referred to the higher side
+Rel = Reh/(a^2); //equivalent resistance referred to the lower side
+Xeh = sqrt((Zeh^2) - (Reh^2)); //equivalent reactance referred to the higher side
+Xel = Xeh/(a^2); //equivalent reactance referred to the lower side
+
+disp(Zeh,"equivalent impeadance referred to the higher side = ")
+disp(Zel,"equivalent impedance referred to the lower side = ")
+disp(Reh,"equivalent resistance referred to the higher side = ")
+disp(Rel,"equivalent resistance referred to the lower side = ")
+disp(Xeh,"equivalent reactance referred to the higher side = ")
+disp(Xel,"equivalent reactance referred to the lower side = ")
diff --git a/Working_Examples/293/CH16/EX16.3/eg16_3.sce b/Working_Examples/293/CH16/EX16.3/eg16_3.sce new file mode 100755 index 0000000..fb5fa91 --- /dev/null +++ b/Working_Examples/293/CH16/EX16.3/eg16_3.sce @@ -0,0 +1,25 @@ +//a
+P = 50; //power rating (in kVA)
+Ph = 810; //wattmeter reading on short circuit test
+Pl = 396; //wattmeter reading on open circuit test
+Ih = 20.8; //ammeter reading on short circuit test
+pf = 0.8; //power factor = 0.8 lagging
+
+losses = (Ph + Pl)/1000; //losses in kW
+outputP = P*pf; //output power
+inputP = outputP + losses ; //input power
+
+efficiency = outputP/inputP ;
+disp("a")
+disp(efficiency,"efficiency = ")
+
+//b
+Xeh = 4; //equivalent reactance referred to the higher side
+Reh = 1.87; //equivalent resistance referred to the higher side
+Zeh = complex(Reh, Xeh); //equivalent impedance referred to the higher side
+ih = complex(Ih*pf, -Ih*sqrt(1 - (pf^2)));
+V1 = 2400 + Zeh*ih ; //primary voltage
+
+voltageRegulation = (real(V1)-2400)*100/2400;//percent voltage regulation
+disp("b")
+disp(voltageRegulation,"percent voltage regulaton = ")
\ No newline at end of file diff --git a/Working_Examples/293/CH18/EX18.1/eg18_1.sce b/Working_Examples/293/CH18/EX18.1/eg18_1.sce new file mode 100755 index 0000000..068b46b --- /dev/null +++ b/Working_Examples/293/CH18/EX18.1/eg18_1.sce @@ -0,0 +1,50 @@ +//a
+V1 = 440/sqrt(3);
+s = 0.025; //slip
+r1 = 0.1;
+r2 = 0.12;
+x1 = 0.35;
+x2 = 0.4;
+
+z = complex(r1 + r2/s, x1 + x2);
+i2 = V1/z; //input line current
+I2 = sqrt(real(i2)^2 + imag(i2)^2); //magnitude of input line current
+disp("a")
+disp(i2,"input line current = ")
+
+i1 = complex(18*cos(-1.484), 18*sin(-1.484)); // magnetizing current
+I1 = sqrt(real(i1)^2 + imag(i1)^2); //magnitude of magnetizing current
+i = i1 + i2; //total current drawn from the voltage source
+I = sqrt(real(i)^2 + imag(i)^2); //magnitude of total current
+theta = atan(imag(i)/real(i)); //phase difference between current and voltage
+pf = cos(theta); //power factor
+disp(pf,"power factor = ")
+if theta >= 0 then
+ disp("leading")
+else disp("lagging")
+end
+
+//b
+f = 60; //hertz
+ns = 1800;
+ws = 2*%pi*ns/f; //stator angular velocity
+Pg = 3*I2^2*r2/s; //power
+T = Pg/ws; //developed electromagnetic torque
+disp("b")
+disp(T,"developed electromagneic torque (in Newton-meter) = ")
+
+//c
+Prot = 950; //rotational losses (in watts)
+Po = Pg*(1 - s) - Prot ; //output power
+HPo = Po/746; //output horse power
+disp("c")
+disp(HPo,"output horse power = ")
+
+//d
+Pc = 1200; //core losses (in W)
+SCL = 3*I^2*r1; //stator copper loss
+RCL = 3*I2^2*r2; //rotar copper loss
+loss = Pc + SCL + RCL + Prot; //total losses
+Pi = real(3*V1*i); //input power
+efficiency = 1 - (loss/Pi);
+disp(efficiency,"efficiency = ")
\ No newline at end of file diff --git a/Working_Examples/293/CH19/EX19.1/eg19_1.sce b/Working_Examples/293/CH19/EX19.1/eg19_1.sce new file mode 100755 index 0000000..a1f4f18 --- /dev/null +++ b/Working_Examples/293/CH19/EX19.1/eg19_1.sce @@ -0,0 +1,30 @@ +//a
+efficiency = 0.9;
+Pi = 200*746/efficiency; //input power
+x = 11; //reactance of the motor
+V1 = 2300/sqrt(3); //voltage rating
+delta = 15*%pi/180; //power angle
+Ef = Pi*x/(3*V1*sin(delta)); //the induced excitation voltage per phase
+disp("a")
+disp(Ef,"the induced excitation voltage per phase = ")
+
+//b
+z = complex(0,x); //impedance of the motor
+ef = complex(Ef*cos(-delta),Ef*sin(-delta));
+
+Ia = (V1 - ef)/z ; //armature current
+disp("b")
+disp(Ia,"armatur current = ")
+
+//c
+theata = atan(imag(Ia)/real(Ia)); //phase difference between Ia and V1
+pf = cos(theata); //power factor
+
+disp("c")
+disp(pf,"power factor = ")
+
+if sin(theata)> 0 then
+ disp("leading")
+else
+ disp("lagging")
+end
\ No newline at end of file diff --git a/Working_Examples/293/CH2/EX2.1.a/eg2_1a.sce b/Working_Examples/293/CH2/EX2.1.a/eg2_1a.sce new file mode 100755 index 0000000..993d36f --- /dev/null +++ b/Working_Examples/293/CH2/EX2.1.a/eg2_1a.sce @@ -0,0 +1,6 @@ +V = 1; // voltage supply
+R = 10; // resistance in ohms
+I = V/R //current flowing through R
+disp("a)")
+disp(V,"voltage across the resistor (in volts)=")
+disp(I,"current flowing through the resistor (in amps) =")
diff --git a/Working_Examples/293/CH2/EX2.1.b/eg2_1b.sce b/Working_Examples/293/CH2/EX2.1.b/eg2_1b.sce new file mode 100755 index 0000000..154f28e --- /dev/null +++ b/Working_Examples/293/CH2/EX2.1.b/eg2_1b.sce @@ -0,0 +1,10 @@ +V = 1; // voltage supply
+R1 = 10; // first resistance in ohms
+R2 = 5; //resistance of the second resistor
+Vr1 = V * (R1/(R1 + R2)); //voltage across R1
+Vr2 = V - Vr1; //voltage across R2
+Ir = Vr1/R1; //current flowing through R
+
+disp(Vr1,"voltage across the first resistor (in volts)=")
+disp(Vr2,"voltage across the second resistor (in volts)=")
+disp(Ir,"current flowing through the resistor (in amps) =")
\ No newline at end of file diff --git a/Working_Examples/293/CH2/EX2.1.c/eg2_1c.sce b/Working_Examples/293/CH2/EX2.1.c/eg2_1c.sce new file mode 100755 index 0000000..a0f263d --- /dev/null +++ b/Working_Examples/293/CH2/EX2.1.c/eg2_1c.sce @@ -0,0 +1,15 @@ +//c - a +R1 = 10; // first resistance in ohms + R2 = 5; +I = 1; // current source +V = I*R1; // voltage across R +disp("c - a)") +disp(V,"voltage across the resistor (in volts)=") +disp(I,"current flowing through the resistor (in amps) =") + +//c - b +Vr1 = I*R1; // voltage across R1 +Vr2 = I*R2; //voltage across R2 +disp("c - b)") +disp(V,"voltage across the resistor (in volts)=") +disp(I,"current flowing through the resistor (in amps) =")
\ No newline at end of file diff --git a/Working_Examples/293/CH2/EX2.10/eg210.xcos b/Working_Examples/293/CH2/EX2.10/eg210.xcos new file mode 100644 index 0000000..305262f --- /dev/null +++ b/Working_Examples/293/CH2/EX2.10/eg210.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" finalIntegrationTime="10.0" title="eg2_10"><!--Xcos - 1.0 - scilab-5.5.2 - 20160406 2040--><mxGraphModel as="model"><root><mxCell id="200893ff:13428736452:-7fff"/><mxCell id="200893ff:13428736452:-8000" parent="200893ff:13428736452:-7fff"/><BasicBlock id="200893ff:13428736452:-7fb6" interfaceFunctionName="ConstantVoltage" ordering="1" parent="200893ff:13428736452:-8000" simulationFunctionName="ConstantVoltage" simulationFunctionType="DEFAULT" style="ConstantVoltage;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="10"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="10.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ConstantVoltage"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="V"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="10.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="160.0" y="120.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="200893ff:13428736452:-7e36" ordering="1" parent="200893ff:13428736452:-7fb6" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="200893ff:13428736452:-7e35" ordering="1" parent="200893ff:13428736452:-7fb6" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><BasicBlock blockType="h" id="200893ff:13428736452:-7ef9" interfaceFunctionName="CLOCK_c" ordering="2" parent="200893ff:13428736452:-8000" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="199.0"/><data column="1" line="0" realPart="-230.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="5e46b397:13489a649a8:-7f03"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="5e46b397:13489a649a8:-7f03"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.1"/><data column="0" line="1" value="0.1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.1"/><data column="0" line="1" realPart="0.1"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.1"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="5e46b397:13489a649a8:-7eff"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="5e46b397:13489a649a8:-7eff"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="252.71066000000002"/><data column="1" line="0" realPart="-292.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="8.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="4.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="5e46b397:13489a649a8:-7efa"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="5e46b397:13489a649a8:-7efa"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="266.0"/><data column="0" line="2" realPart="263.3773266666667"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="4.0"/><data column="0" line="1" realPart="-364.0"/><data column="0" line="2" realPart="-296.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="264.71066"/><data column="0" line="1" realPart="229.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-280.0"/><data column="0" line="1" realPart="-206.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="266.04399333333333"/><data column="0" line="1" realPart="311.71"/><data column="0" line="2" realPart="271.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-296.0"/><data column="0" line="1" realPart="-218.0"/><data column="0" line="2" realPart="-218.0"/><data column="0" line="3" realPart="-44.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="510.0" y="50.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="200893ff:13428736452:-7ef8" ordering="1" parent="200893ff:13428736452:-7ef9" style="CommandPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><BasicBlock dependsOnU="1" id="200893ff:13428736452:-7ef0" interfaceFunctionName="CSCOPE" ordering="3" parent="200893ff:13428736452:-8000" simulationFunctionName="cscope" simulationFunctionType="C_OR_FORTRAN" style="CSCOPE;flip=false;mirror=false"><ScilabString as="exprs" height="10" width="1"><data column="0" line="0" value="1 3 5 7 9 11 13 15"/><data column="0" line="1" value="-1"/><data column="0" line="2" value="[]"/><data column="0" line="3" value="[600;400]"/><data column="0" line="4" value="-15"/><data column="0" line="5" value="15"/><data column="0" line="6" value="10"/><data column="0" line="7" value="20"/><data column="0" line="8" value="0"/><data column="0" line="9" value=""/></ScilabString><ScilabDouble as="realParameters" height="4" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="-15.0"/><data column="0" line="2" realPart="15.0"/><data column="0" line="3" realPart="10.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="15" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="1.0"/><data column="0" line="4" realPart="3.0"/><data column="0" line="5" realPart="5.0"/><data column="0" line="6" realPart="7.0"/><data column="0" line="7" realPart="9.0"/><data column="0" line="8" realPart="11.0"/><data column="0" line="9" realPart="13.0"/><data column="0" line="10" realPart="15.0"/><data column="0" line="11" realPart="-1.0"/><data column="0" line="12" realPart="-1.0"/><data column="0" line="13" realPart="600.0"/><data column="0" line="14" realPart="400.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="510.0" y="160.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="200893ff:13428736452:-7e3a" ordering="1" parent="200893ff:13428736452:-7ef0" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ControlPort dataType="UNKNOW_TYPE" id="200893ff:13428736452:-7e39" ordering="1" parent="200893ff:13428736452:-7ef0" style="ControlPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><CommandControlLink id="200893ff:13428736452:-7ee5" parent="200893ff:13428736452:-8000" source="200893ff:13428736452:-7ef8" target="200893ff:13428736452:-7e39"><mxGeometry as="geometry" x="-620.0" y="-80.0"><mxPoint as="sourcePoint" x="530.0" y="94.0"/><mxPoint as="targetPoint" x="530.0" y="140.0"/></mxGeometry></CommandControlLink><VoltageSensorBlock dependsOnU="1" id="200893ff:13428736452:-7edb" interfaceFunctionName="VoltageSensor" ordering="4" parent="200893ff:13428736452:-8000" simulationFunctionName="VoltageSensor" simulationFunctionType="DEFAULT" style="VoltageSensor;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="VoltageSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="v"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="420.0" y="160.0"/></VoltageSensorBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="200893ff:13428736452:-7ed9" ordering="2" parent="200893ff:13428736452:-7edb" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="200893ff:13428736452:-7ed8" ordering="1" parent="200893ff:13428736452:-7edb" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="200893ff:13428736452:-7eda" ordering="1" parent="200893ff:13428736452:-7edb" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><Orientation as="orientation" value="SOUTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ExplicitLink id="200893ff:13428736452:-7ecb" parent="200893ff:13428736452:-8000" source="200893ff:13428736452:-7ed9" target="200893ff:13428736452:-7e3a"><mxGeometry as="geometry" x="-590.0" y="-80.0"><mxPoint as="sourcePoint" x="464.0" y="180.0"/><mxPoint as="targetPoint" x="530.0" y="180.0"/></mxGeometry></ExplicitLink><SuperBlock id="200893ff:13428736452:-7eb0" ordering="5" parent="200893ff:13428736452:-8000" simulationFunctionType="DEFAULT" style="SUPER_f;flip=false;mirror=false"><SuperBlockDiagram as="child" background="-1" title="Untitled - 2:46:56 PM"><!--Xcos - 1.0 - scilab-5.5.2 - 20160406 2040--><mxGraphModel as="model"><root><mxCell id="200893ff:13428736452:-7eae"/><mxCell id="200893ff:13428736452:-7eaf" parent="200893ff:13428736452:-7eae"/><BasicBlock dependsOnU="1" id="200893ff:13428736452:-7fd4" interfaceFunctionName="OpAmp" ordering="1" parent="200893ff:13428736452:-7eaf" simulationFunctionName="OpAmp" simulationFunctionType="DEFAULT" style="OpAmp;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="OpAmp"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="in_p"/><data column="0" line="1" value="in_n"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="out"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/></Array></Array><mxGeometry as="geometry" height="70.0" width="50.0" x="500.0" y="220.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="200893ff:13428736452:-7fd2" ordering="1" parent="200893ff:13428736452:-7fd4" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="200893ff:13428736452:-7fd1" ordering="2" parent="200893ff:13428736452:-7fd4" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="46.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="200893ff:13428736452:-7fd3" ordering="1" parent="200893ff:13428736452:-7fd4" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="50.0" y="36.0"/></ImplicitOutputPort><BasicBlock dependsOnU="1" id="200893ff:13428736452:-7fa9" interfaceFunctionName="Resistor" ordering="2" parent="200893ff:13428736452:-7eaf" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="30000"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="30000.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="30000.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="160.0" y="280.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="200893ff:13428736452:-7f9d" ordering="1" parent="200893ff:13428736452:-7fa9" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="200893ff:13428736452:-7f9c" ordering="1" parent="200893ff:13428736452:-7fa9" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><BasicBlock dependsOnU="1" id="200893ff:13428736452:-7f8d" interfaceFunctionName="Resistor" ordering="3" parent="200893ff:13428736452:-7eaf" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="30000"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="30000.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="30000.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="260.0" y="340.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="200893ff:13428736452:-7f8b" ordering="1" parent="200893ff:13428736452:-7f8d" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="200893ff:13428736452:-7f8c" ordering="1" parent="200893ff:13428736452:-7f8d" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><SplitBlock id="200893ff:13428736452:-7f7f" ordering="4" parent="200893ff:13428736452:-7eaf" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="227.0" y="297.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="200893ff:13428736452:-7f7d" ordering="1" parent="200893ff:13428736452:-7f7f" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="200893ff:13428736452:-7f7c" ordering="2" parent="200893ff:13428736452:-7f7f" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="200893ff:13428736452:-7f7e" ordering="1" parent="200893ff:13428736452:-7f7f" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="200893ff:13428736452:-7f79" interfaceFunctionName="Resistor" ordering="5" parent="200893ff:13428736452:-7eaf" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="15000"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="15000.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="15000.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="390.0" y="250.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="200893ff:13428736452:-7f72" ordering="1" parent="200893ff:13428736452:-7f79" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="200893ff:13428736452:-7f71" ordering="1" parent="200893ff:13428736452:-7f79" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><BasicBlock dependsOnU="1" id="200893ff:13428736452:-7f69" interfaceFunctionName="Resistor" ordering="6" parent="200893ff:13428736452:-7eaf" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="10000"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="10000.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="10000.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="390.0" y="180.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="200893ff:13428736452:-7f62" ordering="1" parent="200893ff:13428736452:-7f69" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="200893ff:13428736452:-7f61" ordering="1" parent="200893ff:13428736452:-7f69" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><SplitBlock id="200893ff:13428736452:-7f5e" ordering="7" parent="200893ff:13428736452:-7eaf" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="457.0" y="267.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="200893ff:13428736452:-7f5c" ordering="1" parent="200893ff:13428736452:-7f5e" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="200893ff:13428736452:-7f5b" ordering="2" parent="200893ff:13428736452:-7f5e" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="200893ff:13428736452:-7f5d" ordering="1" parent="200893ff:13428736452:-7f5e" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="200893ff:13428736452:-7f58" interfaceFunctionName="Resistor" ordering="8" parent="200893ff:13428736452:-7eaf" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="30000"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="30000.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="30000.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="490.0" y="130.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="200893ff:13428736452:-7f56" ordering="1" parent="200893ff:13428736452:-7f58" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="200893ff:13428736452:-7f57" ordering="1" parent="200893ff:13428736452:-7f58" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><SplitBlock id="200893ff:13428736452:-7f51" ordering="9" parent="200893ff:13428736452:-7eaf" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="457.0" y="197.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="200893ff:13428736452:-7f4f" ordering="1" parent="200893ff:13428736452:-7f51" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="200893ff:13428736452:-7f4e" ordering="2" parent="200893ff:13428736452:-7f51" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="200893ff:13428736452:-7f50" ordering="1" parent="200893ff:13428736452:-7f51" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><SplitBlock id="200893ff:13428736452:-7f04" ordering="10" parent="200893ff:13428736452:-7eaf" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="357.0" y="287.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="200893ff:13428736452:-7f02" ordering="1" parent="200893ff:13428736452:-7f04" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="200893ff:13428736452:-7f01" ordering="2" parent="200893ff:13428736452:-7f04" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="200893ff:13428736452:-7f03" ordering="1" parent="200893ff:13428736452:-7f04" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><SplitBlock id="200893ff:13428736452:-7ed1" ordering="11" parent="200893ff:13428736452:-7eaf" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="567.0" y="257.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="200893ff:13428736452:-7ecf" ordering="1" parent="200893ff:13428736452:-7ed1" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="200893ff:13428736452:-7ece" ordering="2" parent="200893ff:13428736452:-7ed1" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="200893ff:13428736452:-7ed0" ordering="1" parent="200893ff:13428736452:-7ed1" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="200893ff:13428736452:-7f00" parent="200893ff:13428736452:-7eaf" source="200893ff:13428736452:-7fdb" target="200893ff:13428736452:-7f03"><mxGeometry as="geometry" x="-360.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="200893ff:13428736452:-7f7a" parent="200893ff:13428736452:-7eaf" source="200893ff:13428736452:-7f7d" target="200893ff:13428736452:-7fd9"><mxGeometry as="geometry" x="-370.0" y="20.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="200893ff:13428736452:-7ecd" parent="200893ff:13428736452:-7eaf" source="200893ff:13428736452:-7fd3" target="200893ff:13428736452:-7ed0"><mxGeometry as="geometry" x="-360.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="200893ff:13428736452:-7f59" parent="200893ff:13428736452:-7eaf" source="200893ff:13428736452:-7f5c" target="200893ff:13428736452:-7fd1"><mxGeometry as="geometry" x="-360.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="200893ff:13428736452:-7f7b" parent="200893ff:13428736452:-7eaf" source="200893ff:13428736452:-7f9c" target="200893ff:13428736452:-7f7e"><mxGeometry as="geometry" x="-370.0" y="20.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="200893ff:13428736452:-7f05" parent="200893ff:13428736452:-7eaf" source="200893ff:13428736452:-7f8c" target="200893ff:13428736452:-7f01"><mxGeometry as="geometry" x="-370.0"><mxPoint as="sourcePoint" x="294.0" y="360.0"/><mxPoint as="targetPoint" x="350.0" y="290.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="360.0" y="360.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="200893ff:13428736452:-7f80" parent="200893ff:13428736452:-7eaf" source="200893ff:13428736452:-7f7c" target="200893ff:13428736452:-7f8b"><mxGeometry as="geometry" x="-370.0" y="20.0"><mxPoint as="sourcePoint" x="256.0" y="360.0"/><mxPoint as="targetPoint" x="230.0" y="300.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="230.0" y="360.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="200893ff:13428736452:-7f5a" parent="200893ff:13428736452:-7eaf" source="200893ff:13428736452:-7f71" target="200893ff:13428736452:-7f5d"><mxGeometry as="geometry" x="-360.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="200893ff:13428736452:-7eff" parent="200893ff:13428736452:-7eaf" source="200893ff:13428736452:-7f02" target="200893ff:13428736452:-7f72"><mxGeometry as="geometry" x="-360.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="360.0" y="270.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="200893ff:13428736452:-7f4d" parent="200893ff:13428736452:-7eaf" source="200893ff:13428736452:-7f61" target="200893ff:13428736452:-7f50"><mxGeometry as="geometry" x="-360.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="200893ff:13428736452:-7f4c" parent="200893ff:13428736452:-7eaf" source="200893ff:13428736452:-7f5b" target="200893ff:13428736452:-7f4f"><mxGeometry as="geometry" x="-360.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="200893ff:13428736452:-7ed2" parent="200893ff:13428736452:-7eaf" source="200893ff:13428736452:-7f57" target="200893ff:13428736452:-7ece"><mxGeometry as="geometry" x="-360.0"><mxPoint as="sourcePoint" x="534.0" y="150.0"/><mxPoint as="targetPoint" x="570.0" y="260.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="570.0" y="150.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="200893ff:13428736452:-7f52" parent="200893ff:13428736452:-7eaf" source="200893ff:13428736452:-7f4e" target="200893ff:13428736452:-7f56"><mxGeometry as="geometry" x="-360.0"><mxPoint as="sourcePoint" x="486.0" y="150.0"/><mxPoint as="targetPoint" x="460.0" y="200.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="460.0" y="150.0"/></Array></mxGeometry></ImplicitLink><ImplicitInBlock id="200893ff:13428736452:-7ead" ordering="12" parent="200893ff:13428736452:-7eaf" simulationFunctionType="DEFAULT" style="INIMPL_f;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble as="integerParameters" height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><mxGeometry as="geometry" height="40.0" width="40.0" x="14.0" y="180.0"/></ImplicitInBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="200893ff:13428736452:-7eac" ordering="1" parent="200893ff:13428736452:-7ead" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><ImplicitLink id="200893ff:13428736452:-7eaa" parent="200893ff:13428736452:-7eaf" source="200893ff:13428736452:-7eac" target="200893ff:13428736452:-7f62"><mxGeometry as="geometry" x="-360.0"><mxPoint as="sourcePoint" x="34.0" y="210.0"/><mxPoint as="targetPoint" x="390.0" y="200.0"/></mxGeometry></ImplicitLink><ImplicitOutBlock id="200893ff:13428736452:-7ea9" ordering="13" parent="200893ff:13428736452:-7eaf" simulationFunctionType="DEFAULT" style="OUTIMPL_f;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble as="integerParameters" height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><mxGeometry as="geometry" height="40.0" width="40.0" x="626.0" y="240.0"/></ImplicitOutBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="200893ff:13428736452:-7ea8" ordering="1" parent="200893ff:13428736452:-7ea9" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitLink id="200893ff:13428736452:-7ea6" parent="200893ff:13428736452:-7eaf" source="200893ff:13428736452:-7ecf" target="200893ff:13428736452:-7ea8"><mxGeometry as="geometry" x="-360.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitInBlock id="200893ff:13428736452:-7ea5" ordering="14" parent="200893ff:13428736452:-7eaf" simulationFunctionType="DEFAULT" style="INIMPL_f;flip=false;mirror=false" value="2"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="2"/></ScilabString><ScilabDouble as="integerParameters" height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble><mxGeometry as="geometry" height="40.0" width="40.0" x="14.0" y="280.0"/></ImplicitInBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="200893ff:13428736452:-7ea4" ordering="1" parent="200893ff:13428736452:-7ea5" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><ImplicitLink id="200893ff:13428736452:-7ea2" parent="200893ff:13428736452:-7eaf" source="200893ff:13428736452:-7ea4" target="200893ff:13428736452:-7f9d"><mxGeometry as="geometry" x="-360.0"><mxPoint as="sourcePoint" x="34.0" y="300.0"/><mxPoint as="targetPoint" x="150.0" y="300.0"/></mxGeometry></ImplicitLink><ImplicitInBlock id="200893ff:13428736452:-7e96" ordering="15" parent="200893ff:13428736452:-7eaf" simulationFunctionType="DEFAULT" style="INIMPL_f;flip=false;mirror=false" value="3"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="3"/></ScilabString><ScilabDouble as="integerParameters" height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="PORT"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="40.0" y="360.0"/></ImplicitInBlock><ImplicitOutputPort dataColumns="1" dataType="REAL_MATRIX" id="200893ff:13428736452:-7e92" ordering="1" parent="200893ff:13428736452:-7e96" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><SplitBlock id="200893ff:13428736452:-7e82" ordering="16" parent="200893ff:13428736452:-7eaf" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="97.0" y="267.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="200893ff:13428736452:-7e80" ordering="1" parent="200893ff:13428736452:-7e82" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="200893ff:13428736452:-7e7f" ordering="2" parent="200893ff:13428736452:-7e82" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="200893ff:13428736452:-7e81" ordering="1" parent="200893ff:13428736452:-7e82" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="200893ff:13428736452:-7e7e" parent="200893ff:13428736452:-7eaf" source="200893ff:13428736452:-7fda" target="200893ff:13428736452:-7e81"><mxGeometry as="geometry" x="-360.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="200893ff:13428736452:-7e7d" parent="200893ff:13428736452:-7eaf" source="200893ff:13428736452:-7e80" target="200893ff:13428736452:-7fd2"><mxGeometry as="geometry" x="-360.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="100.0" y="240.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="200893ff:13428736452:-7e83" parent="200893ff:13428736452:-7eaf" source="200893ff:13428736452:-7e92" target="200893ff:13428736452:-7e7f"><mxGeometry as="geometry" x="-360.0"><mxPoint as="sourcePoint" x="84.0" y="380.0"/><mxPoint as="targetPoint" x="100.0" y="270.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="100.0" y="380.0"/></Array></mxGeometry></ImplicitLink><TextBlock id="200893ff:13428736452:-7e44" parent="200893ff:13428736452:-7eaf" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="30 k ohm"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="30 k ohm"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="30 k ohm"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="160.0" y="310.0"/></TextBlock><TextBlock id="200893ff:13428736452:-7e43" parent="200893ff:13428736452:-7eaf" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="30 k ohm"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="30 k ohm"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="30 k ohm"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="260.0" y="370.0"/></TextBlock><TextBlock id="200893ff:13428736452:-7e42" parent="200893ff:13428736452:-7eaf" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="15 k ohm"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="15 k ohm"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="15 k ohm"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="390.0" y="280.0"/></TextBlock><TextBlock id="200893ff:13428736452:-7e41" parent="200893ff:13428736452:-7eaf" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="10 k ohm"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="10 k ohm"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="10 k ohm"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="390.0" y="150.0"/></TextBlock><TextBlock id="200893ff:13428736452:-7e40" parent="200893ff:13428736452:-7eaf" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="30 k ohm"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="30 k ohm"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="30 k ohm"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="490.0" y="100.0"/></TextBlock><TextBlock id="200893ff:13428736452:-7e3f" parent="200893ff:13428736452:-7eaf" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="y"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="y"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="y"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="10.0" y="150.0"/></TextBlock><TextBlock id="200893ff:13428736452:-7e3e" parent="200893ff:13428736452:-7eaf" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="x"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="x"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="x"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="10.0" y="250.0"/></TextBlock><TextBlock id="200893ff:13428736452:-7e3d" parent="200893ff:13428736452:-7eaf" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="ground"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="ground"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="ground"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="40.0" y="390.0"/></TextBlock><TextBlock id="200893ff:13428736452:-7e3c" parent="200893ff:13428736452:-7eaf" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="2x - 3y"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="2x - 3y"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="2x - 3y"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="630.0" y="280.0"/></TextBlock><BasicBlock dependsOnU="1" id="200893ff:13428736452:-7fdc" interfaceFunctionName="OpAmp" ordering="17" parent="200893ff:13428736452:-7eaf" simulationFunctionName="OpAmp" simulationFunctionType="DEFAULT" style="OpAmp;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="OpAmp"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="in_p"/><data column="0" line="1" value="in_n"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="out"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/></Array></Array><mxGeometry as="geometry" height="70.0" width="50.0" x="260.0" y="250.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="200893ff:13428736452:-7fda" ordering="1" parent="200893ff:13428736452:-7fdc" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="200893ff:13428736452:-7fd9" ordering="2" parent="200893ff:13428736452:-7fdc" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="46.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="200893ff:13428736452:-7fdb" ordering="1" parent="200893ff:13428736452:-7fdc" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="50.0" y="36.0"/></ImplicitOutputPort></root></mxGraphModel><mxCell as="defaultParent" id="200893ff:13428736452:-7eaf" parent="200893ff:13428736452:-7eae"/></SuperBlockDiagram><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled__24656_PM"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="1.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="450.0"/><data column="1" line="0" realPart="-220.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="50.0"/><data column="1" line="0" realPart="70.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="35.0"/><data column="0" line="1" realPart="21.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="20.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"OpAmp",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="I"/><data column="0" line="1" value="I"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="I"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/><data column="0" line="1" value="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value=""/><data column="0" line="1" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="OpAmp;flip=false;mirror=false"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="OpAmp"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="1.0"/><data column="0" line="1" realPart="1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="1.0"/><data column="0" line="1" realPart="1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="1.0"/><data column="0" line="1" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="true"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="OpAmp"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="in_p"/><data column="0" line="1" value="in_n"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="out"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value="200893ff:13428736452:-7fd4"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="OpAmp"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="200893ff:13428736452:-7fd4"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="120.0"/><data column="1" line="0" realPart="-280.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="30000"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="22.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"Resistor",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="I"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="I"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor;flip=false;mirror=false"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="resistor"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="30000.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="true"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="30000.0"/></ScilabDouble></Array></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value="200893ff:13428736452:-7fa9"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="200893ff:13428736452:-7fa9"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="220.0"/><data column="1" line="0" realPart="-340.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="30000"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="24.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="23.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"Resistor",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="I"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="I"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor;flip=false;mirror=false"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="resistor"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="30000.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="true"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="30000.0"/></ScilabDouble></Array></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value="200893ff:13428736452:-7f8d"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="200893ff:13428736452:-7f8d"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="220.0"/><data column="1" line="0" realPart="-297.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="7.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="22.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="19.0"/><data column="0" line="1" realPart="24.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"SPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="I"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="I"/><data column="0" line="1" value="I"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/><data column="0" line="1" value="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value=""/><data column="0" line="1" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="SPLIT_f;flip=false;mirror=false"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="lsplit"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-2.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-2.0"/><data column="0" line="1" realPart="-2.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="200893ff:13428736452:-7f7f"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="SPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="200893ff:13428736452:-7f7f"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="350.0"/><data column="1" line="0" realPart="-250.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="15000"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="26.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="25.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"Resistor",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="I"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="I"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor;flip=false;mirror=false"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="resistor"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="15000.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="true"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="15000.0"/></ScilabDouble></Array></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value="200893ff:13428736452:-7f79"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="200893ff:13428736452:-7f79"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="350.0"/><data column="1" line="0" realPart="-180.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="10000"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="31.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="27.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"Resistor",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="I"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="I"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor;flip=false;mirror=false"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="resistor"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="10000.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="true"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="10000.0"/></ScilabDouble></Array></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value="200893ff:13428736452:-7f69"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="200893ff:13428736452:-7f69"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="450.0"/><data column="1" line="0" realPart="-267.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="7.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="25.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="21.0"/><data column="0" line="1" realPart="28.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"SPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="I"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="I"/><data column="0" line="1" value="I"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/><data column="0" line="1" value="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value=""/><data column="0" line="1" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="SPLIT_f;flip=false;mirror=false"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="lsplit"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-2.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-2.0"/><data column="0" line="1" realPart="-2.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="200893ff:13428736452:-7f5e"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="SPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="200893ff:13428736452:-7f5e"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="450.0"/><data column="1" line="0" realPart="-130.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="30000"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="30.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="29.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"Resistor",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="I"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="I"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor;flip=false;mirror=false"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="resistor"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="30000.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="true"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="30000.0"/></ScilabDouble></Array></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value="200893ff:13428736452:-7f58"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="200893ff:13428736452:-7f58"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="450.0"/><data column="1" line="0" realPart="-197.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="7.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="27.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="28.0"/><data column="0" line="1" realPart="30.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"SPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="I"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="I"/><data column="0" line="1" value="I"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/><data column="0" line="1" value="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value=""/><data column="0" line="1" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="SPLIT_f;flip=false;mirror=false"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="lsplit"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-2.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-2.0"/><data column="0" line="1" realPart="-2.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="200893ff:13428736452:-7f51"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="SPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="200893ff:13428736452:-7f51"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="350.0"/><data column="1" line="0" realPart="-287.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="7.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="18.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="26.0"/><data column="0" line="1" realPart="23.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"SPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="I"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="I"/><data column="0" line="1" value="I"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/><data column="0" line="1" value="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value=""/><data column="0" line="1" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="SPLIT_f;flip=false;mirror=false"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="lsplit"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-2.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-2.0"/><data column="0" line="1" realPart="-2.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="200893ff:13428736452:-7f04"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="SPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="200893ff:13428736452:-7f04"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="560.0"/><data column="1" line="0" realPart="-257.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="7.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="20.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="32.0"/><data column="0" line="1" realPart="29.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"SPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="I"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="I"/><data column="0" line="1" value="I"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/><data column="0" line="1" value="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value=""/><data column="0" line="1" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="SPLIT_f;flip=false;mirror=false"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="lsplit"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-2.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-2.0"/><data column="0" line="1" realPart="-2.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="200893ff:13428736452:-7ed1"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="SPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="200893ff:13428736452:-7ed1"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="-26.0"/><data column="1" line="0" realPart="-180.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="31.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"INIMPL_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="I"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="INIMPL_f;flip=false;mirror=false"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="inimpl"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-2.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="200893ff:13428736452:-7ead"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="INIMPL_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="200893ff:13428736452:-7ead"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="586.0"/><data column="1" line="0" realPart="-240.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="32.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"OUTIMPL_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="I"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="OUTIMPL_f;flip=false;mirror=false"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="outimpl"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-2.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="200893ff:13428736452:-7ea9"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="OUTIMPL_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="200893ff:13428736452:-7ea9"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="-26.0"/><data column="1" line="0" realPart="-280.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="2"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"INIMPL_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="I"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="INIMPL_f;flip=false;mirror=false"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="inimpl"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-2.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="200893ff:13428736452:-7ea5"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="INIMPL_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="200893ff:13428736452:-7ea5"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-360.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="3"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="36.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"INIMPL_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="I"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="INIMPL_f;flip=false;mirror=false"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="inimpl"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="PORT"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value="200893ff:13428736452:-7e96"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="INIMPL_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="200893ff:13428736452:-7e96"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="90.0"/><data column="1" line="0" realPart="-267.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="7.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="34.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="35.0"/><data column="0" line="1" realPart="36.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"SPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="I"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="I"/><data column="0" line="1" value="I"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/><data column="0" line="1" value="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value=""/><data column="0" line="1" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="SPLIT_f;flip=false;mirror=false"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="lsplit"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-2.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-2.0"/><data column="0" line="1" realPart="-2.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="200893ff:13428736452:-7e82"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="SPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="200893ff:13428736452:-7e82"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="210.0"/><data column="1" line="0" realPart="-250.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="50.0"/><data column="1" line="0" realPart="70.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="34.0"/><data column="0" line="1" realPart="19.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="18.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"OpAmp",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="I"/><data column="0" line="1" value="I"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="I"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/><data column="0" line="1" value="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value=""/><data column="0" line="1" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="OpAmp;flip=false;mirror=false"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="OpAmp"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="1.0"/><data column="0" line="1" realPart="1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="1.0"/><data column="0" line="1" realPart="1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="1.0"/><data column="0" line="1" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="true"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="OpAmp"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="in_p"/><data column="0" line="1" value="in_n"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="out"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value="200893ff:13428736452:-7fdc"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="OpAmp"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="200893ff:13428736452:-7fdc"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="314.0"/><data column="0" line="1" realPart="353.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-220.0"/><data column="0" line="1" realPart="-280.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="2.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="17.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="10.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="238.0"/><data column="0" line="1" realPart="256.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-290.0"/><data column="0" line="1" realPart="-230.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="2.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="17.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="554.0"/><data column="0" line="1" realPart="563.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-190.0"/><data column="0" line="1" realPart="-250.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="2.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="11.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="468.0"/><data column="0" line="1" realPart="496.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-260.0"/><data column="0" line="1" realPart="-200.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="2.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="204.0"/><data column="0" line="1" realPart="223.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-260.0"/><data column="0" line="1" realPart="-290.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="2.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="304.0"/><data column="0" line="1" realPart="360.0"/><data column="0" line="2" realPart="368.0"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-320.0"/><data column="0" line="1" realPart="-360.0"/><data column="0" line="2" realPart="-290.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="2.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="10.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="238.0"/><data column="0" line="1" realPart="230.0"/><data column="0" line="2" realPart="256.0"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-300.0"/><data column="0" line="1" realPart="-360.0"/><data column="0" line="2" realPart="-320.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="2.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="434.0"/><data column="0" line="1" realPart="453.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-230.0"/><data column="0" line="1" realPart="-260.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="2.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="368.0"/><data column="0" line="1" realPart="360.0"/><data column="0" line="2" realPart="386.0"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-280.0"/><data column="0" line="1" realPart="-270.0"/><data column="0" line="2" realPart="-230.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="2.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="10.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="434.0"/><data column="0" line="1" realPart="453.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-160.0"/><data column="0" line="1" realPart="-190.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="2.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="6.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="9.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="468.0"/><data column="0" line="1" realPart="468.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-270.0"/><data column="0" line="1" realPart="-190.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="2.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="9.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="534.0"/><data column="0" line="1" realPart="570.0"/><data column="0" line="2" realPart="578.0"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-110.0"/><data column="0" line="1" realPart="-150.0"/><data column="0" line="2" realPart="-260.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="2.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="11.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="468.0"/><data column="0" line="1" realPart="460.0"/><data column="0" line="2" realPart="486.0"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-200.0"/><data column="0" line="1" realPart="-150.0"/><data column="0" line="2" realPart="-110.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="2.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="9.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="58.0"/><data column="0" line="1" realPart="386.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-160.0"/><data column="0" line="1" realPart="-160.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="2.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="12.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="6.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="578.0"/><data column="0" line="1" realPart="622.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-250.0"/><data column="0" line="1" realPart="-220.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="2.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="11.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="13.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="58.0"/><data column="0" line="1" realPart="156.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-260.0"/><data column="0" line="1" realPart="-260.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="2.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="14.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="256.0"/><data column="0" line="1" realPart="93.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-200.0"/><data column="0" line="1" realPart="-260.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="2.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="17.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="16.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="108.0"/><data column="0" line="1" realPart="100.0"/><data column="0" line="2" realPart="496.0"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-260.0"/><data column="0" line="1" realPart="-240.0"/><data column="0" line="2" realPart="-170.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="2.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="16.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="84.0"/><data column="0" line="1" realPart="100.0"/><data column="0" line="2" realPart="108.0"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-340.0"/><data column="0" line="1" realPart="-380.0"/><data column="0" line="2" realPart="-270.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="2.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="15.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="16.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><mxGeometry as="geometry" height="130.0" width="40.0" x="310.0" y="120.0"/></SuperBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="200893ff:13428736452:-7ea7" ordering="1" parent="200893ff:13428736452:-7eb0" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="56.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="200893ff:13428736452:-7ea3" ordering="2" parent="200893ff:13428736452:-7eb0" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="56.0"/></ImplicitInputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="200893ff:13428736452:-7e94" ordering="3" parent="200893ff:13428736452:-7eb0" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="106.0"/></ImplicitInputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="200893ff:13428736452:-7eab" ordering="1" parent="200893ff:13428736452:-7eb0" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitLink id="200893ff:13428736452:-7ecc" parent="200893ff:13428736452:-8000" source="200893ff:13428736452:-7ea7" target="200893ff:13428736452:-7ed8"><mxGeometry as="geometry" x="-370.0" y="-100.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="200893ff:13428736452:-7e6b" parent="200893ff:13428736452:-8000" source="200893ff:13428736452:-7e35" target="200893ff:13428736452:-7eab"><mxGeometry as="geometry" x="-370.0" y="-100.0"><mxPoint as="sourcePoint" x="24.0" y="140.0"/><mxPoint as="targetPoint" x="300.0" y="140.0"/></mxGeometry></ImplicitLink><SplitBlock id="200893ff:13428736452:-7e5a" ordering="6" parent="200893ff:13428736452:-8000" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="117.0" y="227.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="200893ff:13428736452:-7e58" ordering="1" parent="200893ff:13428736452:-7e5a" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="200893ff:13428736452:-7e57" ordering="2" parent="200893ff:13428736452:-7e5a" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="200893ff:13428736452:-7e59" ordering="1" parent="200893ff:13428736452:-7e5a" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="200893ff:13428736452:-7e56" parent="200893ff:13428736452:-8000" source="200893ff:13428736452:-7e94" target="200893ff:13428736452:-7e59"><mxGeometry as="geometry" x="-370.0" y="-100.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><SplitBlock id="200893ff:13428736452:-7e4c" ordering="7" parent="200893ff:13428736452:-8000" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="117.0" y="257.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="200893ff:13428736452:-7e4a" ordering="1" parent="200893ff:13428736452:-7e4c" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="200893ff:13428736452:-7e49" ordering="2" parent="200893ff:13428736452:-7e4c" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="200893ff:13428736452:-7e4b" ordering="1" parent="200893ff:13428736452:-7e4c" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="200893ff:13428736452:-7e48" parent="200893ff:13428736452:-8000" source="200893ff:13428736452:-7e58" target="200893ff:13428736452:-7e4b"><mxGeometry as="geometry" x="-370.0" y="-100.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="200893ff:13428736452:-7e47" parent="200893ff:13428736452:-8000" source="200893ff:13428736452:-7e4a" target="200893ff:13428736452:-7fbe"><mxGeometry as="geometry" x="-370.0" y="-100.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="200893ff:13428736452:-7e4d" parent="200893ff:13428736452:-8000" source="200893ff:13428736452:-7eda" target="200893ff:13428736452:-7e49"><mxGeometry as="geometry" x="-370.0" y="-100.0"><mxPoint as="sourcePoint" x="440.0" y="204.0"/><mxPoint as="targetPoint" x="120.0" y="260.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="440.0" y="260.0"/></Array></mxGeometry></ImplicitLink><TextBlock id="200893ff:13428736452:-7e46" parent="200893ff:13428736452:-8000" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="y"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="y"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="y"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="190.0" y="100.0"/></TextBlock><TextBlock id="200893ff:13428736452:-7e45" parent="200893ff:13428736452:-8000" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="x"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="x"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="x"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="190.0" y="140.0"/></TextBlock><TextBlock id="200893ff:13428736452:-7e2f" parent="200893ff:13428736452:-8000" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="op amp circuit"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="op amp circuit"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="op amp circuit"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="310.0" y="90.0"/></TextBlock><TextBlock id="200893ff:13428736452:-7e2e" parent="200893ff:13428736452:-8000" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="value of &quot;x&quot; and &quot;y&quot; can be changed by changing the values of the voltage <br> sources"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="value of &quot;x&quot; and &quot;y&quot; can be changed by changing the values of the voltage <br> sources"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="value of &quot;x&quot; and &quot;y&quot; can be changed by changing the values of the voltage <br> sources"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="310.0" y="340.0"/></TextBlock><GroundBlock dependsOnU="1" id="200893ff:13428736452:-7fbf" interfaceFunctionName="Ground" ordering="8" parent="200893ff:13428736452:-8000" simulationFunctionName="Ground" simulationFunctionType="DEFAULT" style="Ground;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Ground"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="30.0" width="30.0" x="100.0" y="290.0"/></GroundBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="200893ff:13428736452:-7fbe" ordering="1" parent="200893ff:13428736452:-7fbf" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><Orientation as="orientation" value="NORTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><TextBlock id="5e46b397:13489a649a8:-7ef6" parent="200893ff:13428736452:-8000" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="z = 2x - 3y"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="z = 2x - 3y"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="z = 2x - 3y"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="240.0" y="20.0"/></TextBlock><BasicBlock id="536aec7f:166be961161:-7dc4" interfaceFunctionName="ConstantVoltage" ordering="9" parent="200893ff:13428736452:-8000" simulationFunctionName="ConstantVoltage" simulationFunctionType="DEFAULT" style="ConstantVoltage;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="10"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="10.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ConstantVoltage"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="V"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="10.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="22.0" width="30.0" x="160.0" y="170.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="536aec7f:166be961161:-7d0b" ordering="1" parent="536aec7f:166be961161:-7dc4" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="536aec7f:166be961161:-7d0a" ordering="1" parent="536aec7f:166be961161:-7dc4" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="30.0" y="6.0"/></ImplicitOutputPort><SplitBlock id="536aec7f:166be961161:-7dbd" interfaceFunctionName="IMPSPLIT_f" ordering="10" parent="200893ff:13428736452:-8000" simulationFunctionType="DEFAULT" style="IMPSPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="117.0" y="177.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="536aec7f:166be961161:-7dbc" ordering="1" parent="536aec7f:166be961161:-7dbd" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="536aec7f:166be961161:-7dbb" ordering="1" parent="536aec7f:166be961161:-7dbd" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="536aec7f:166be961161:-7dba" ordering="2" parent="536aec7f:166be961161:-7dbd" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="536aec7f:166be961161:-7db9" parent="200893ff:13428736452:-8000" source="200893ff:13428736452:-7e57" target="536aec7f:166be961161:-7dbc"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="536aec7f:166be961161:-7db8" parent="200893ff:13428736452:-8000" source="536aec7f:166be961161:-7dbb" target="200893ff:13428736452:-7e36"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="120.0" y="140.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="536aec7f:166be961161:-7dbe" parent="200893ff:13428736452:-8000" source="536aec7f:166be961161:-7dba" target="536aec7f:166be961161:-7d0b"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="160.0" y="180.0"/><mxPoint as="targetPoint" x="120.0" y="180.0"/></mxGeometry></ImplicitLink><ImplicitLink id="536aec7f:166be961161:-7db7" parent="200893ff:13428736452:-8000" source="536aec7f:166be961161:-7d0a" target="200893ff:13428736452:-7ea3"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="190.0" y="180.0"/><mxPoint as="targetPoint" x="310.0" y="180.0"/></mxGeometry></ImplicitLink></root></mxGraphModel><mxCell as="defaultParent" id="200893ff:13428736452:-8000" parent="200893ff:13428736452:-7fff"/></XcosDiagram>
\ No newline at end of file diff --git a/Working_Examples/293/CH2/EX2.10/eg2_10.pdf b/Working_Examples/293/CH2/EX2.10/eg2_10.pdf Binary files differnew file mode 100755 index 0000000..824c087 --- /dev/null +++ b/Working_Examples/293/CH2/EX2.10/eg2_10.pdf diff --git a/Working_Examples/293/CH2/EX2.10/eg2_10.xcos b/Working_Examples/293/CH2/EX2.10/eg2_10.xcos new file mode 100755 index 0000000..3fbb262 --- /dev/null +++ b/Working_Examples/293/CH2/EX2.10/eg2_10.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" finalIntegrationTime="10.0" title="eg2_10"><!--Xcos - 1.0 - scilab-5.5.2 - 20160406 2040--><mxGraphModel as="model"><root><mxCell id="200893ff:13428736452:-7fff"/><mxCell id="200893ff:13428736452:-8000" parent="200893ff:13428736452:-7fff"/><BasicBlock id="200893ff:13428736452:-7fb6" interfaceFunctionName="ConstantVoltage" ordering="1" parent="200893ff:13428736452:-8000" simulationFunctionName="ConstantVoltage" simulationFunctionType="DEFAULT" style="ConstantVoltage;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="10"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="10.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ConstantVoltage"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="V"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="10.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="160.0" y="120.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="200893ff:13428736452:-7e36" ordering="1" parent="200893ff:13428736452:-7fb6" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="200893ff:13428736452:-7e35" ordering="1" parent="200893ff:13428736452:-7fb6" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><BasicBlock blockType="h" id="200893ff:13428736452:-7ef9" interfaceFunctionName="CLOCK_c" ordering="2" parent="200893ff:13428736452:-8000" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="179.0"/><data column="1" line="0" realPart="-210.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="5e46b397:13489a649a8:-7f03"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="5e46b397:13489a649a8:-7f03"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.1"/><data column="0" line="1" value="0.1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.1"/><data column="0" line="1" realPart="0.1"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.1"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="5e46b397:13489a649a8:-7eff"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="5e46b397:13489a649a8:-7eff"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="220.71066000000002"/><data column="1" line="0" realPart="-260.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="8.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="4.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="5e46b397:13489a649a8:-7efa"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="5e46b397:13489a649a8:-7efa"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="226.0"/><data column="0" line="2" realPart="231.37732666666668"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="4.0"/><data column="0" line="1" realPart="-324.0"/><data column="0" line="2" realPart="-264.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="232.71066000000002"/><data column="0" line="1" realPart="209.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-248.0"/><data column="0" line="1" realPart="-186.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="234.04399333333336"/><data column="0" line="1" realPart="271.71"/><data column="0" line="2" realPart="231.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-264.0"/><data column="0" line="1" realPart="-178.0"/><data column="0" line="2" realPart="-178.0"/><data column="0" line="3" realPart="-44.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="510.0" y="50.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="200893ff:13428736452:-7ef8" ordering="1" parent="200893ff:13428736452:-7ef9" style="CommandPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><BasicBlock dependsOnU="1" id="200893ff:13428736452:-7ef0" interfaceFunctionName="CSCOPE" ordering="3" parent="200893ff:13428736452:-8000" simulationFunctionName="cscope" simulationFunctionType="C_OR_FORTRAN" style="CSCOPE;flip=false;mirror=false"><ScilabString as="exprs" height="10" width="1"><data column="0" line="0" value="1 3 5 7 9 11 13 15"/><data column="0" line="1" value="-1"/><data column="0" line="2" value="[]"/><data column="0" line="3" value="[600;400]"/><data column="0" line="4" value="-15"/><data column="0" line="5" value="15"/><data column="0" line="6" value="10"/><data column="0" line="7" value="20"/><data column="0" line="8" value="0"/><data column="0" line="9" value=""/></ScilabString><ScilabDouble as="realParameters" height="4" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="-15.0"/><data column="0" line="2" realPart="15.0"/><data column="0" line="3" realPart="10.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="15" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="1.0"/><data column="0" line="4" realPart="3.0"/><data column="0" line="5" realPart="5.0"/><data column="0" line="6" realPart="7.0"/><data column="0" line="7" realPart="9.0"/><data column="0" line="8" realPart="11.0"/><data column="0" line="9" realPart="13.0"/><data column="0" line="10" realPart="15.0"/><data column="0" line="11" realPart="-1.0"/><data column="0" line="12" realPart="-1.0"/><data column="0" line="13" realPart="600.0"/><data column="0" line="14" realPart="400.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="510.0" y="160.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="200893ff:13428736452:-7e3a" ordering="1" parent="200893ff:13428736452:-7ef0" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ControlPort dataType="UNKNOW_TYPE" id="200893ff:13428736452:-7e39" ordering="1" parent="200893ff:13428736452:-7ef0" style="ControlPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><CommandControlLink id="200893ff:13428736452:-7ee5" parent="200893ff:13428736452:-8000" source="200893ff:13428736452:-7ef8" target="200893ff:13428736452:-7e39"><mxGeometry as="geometry" x="-620.0" y="-80.0"><mxPoint as="sourcePoint" x="530.0" y="94.0"/><mxPoint as="targetPoint" x="530.0" y="140.0"/></mxGeometry></CommandControlLink><VoltageSensorBlock dependsOnU="1" id="200893ff:13428736452:-7edb" interfaceFunctionName="VoltageSensor" ordering="4" parent="200893ff:13428736452:-8000" simulationFunctionName="VoltageSensor" simulationFunctionType="DEFAULT" style="VoltageSensor;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="VoltageSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="v"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="420.0" y="160.0"/></VoltageSensorBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="200893ff:13428736452:-7ed9" ordering="2" parent="200893ff:13428736452:-7edb" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="200893ff:13428736452:-7ed8" ordering="1" parent="200893ff:13428736452:-7edb" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="200893ff:13428736452:-7eda" ordering="1" parent="200893ff:13428736452:-7edb" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><Orientation as="orientation" value="SOUTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ExplicitLink id="200893ff:13428736452:-7ecb" parent="200893ff:13428736452:-8000" source="200893ff:13428736452:-7ed9" target="200893ff:13428736452:-7e3a"><mxGeometry as="geometry" x="-590.0" y="-80.0"><mxPoint as="sourcePoint" x="464.0" y="180.0"/><mxPoint as="targetPoint" x="530.0" y="180.0"/></mxGeometry></ExplicitLink><SuperBlock id="200893ff:13428736452:-7eb0" ordering="5" parent="200893ff:13428736452:-8000" simulationFunctionType="DEFAULT" style="SUPER_f;flip=false;mirror=false"><SuperBlockDiagram as="child" background="-1" title="Untitled - 2:46:56 PM"><!--Xcos - 1.0 - scilab-5.5.2 - 20160406 2040--><mxGraphModel as="model"><root><mxCell id="200893ff:13428736452:-7eae"/><mxCell id="200893ff:13428736452:-7eaf" parent="200893ff:13428736452:-7eae"/><BasicBlock dependsOnU="1" id="200893ff:13428736452:-7fd4" interfaceFunctionName="OpAmp" ordering="1" parent="200893ff:13428736452:-7eaf" simulationFunctionName="OpAmp" simulationFunctionType="DEFAULT" style="OpAmp;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="OpAmp"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="in_p"/><data column="0" line="1" value="in_n"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="out"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/></Array></Array><mxGeometry as="geometry" height="70.0" width="50.0" x="500.0" y="220.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="200893ff:13428736452:-7fd2" ordering="1" parent="200893ff:13428736452:-7fd4" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="200893ff:13428736452:-7fd1" ordering="2" parent="200893ff:13428736452:-7fd4" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="46.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="200893ff:13428736452:-7fd3" ordering="1" parent="200893ff:13428736452:-7fd4" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="50.0" y="36.0"/></ImplicitOutputPort><BasicBlock dependsOnU="1" id="200893ff:13428736452:-7fa9" interfaceFunctionName="Resistor" ordering="2" parent="200893ff:13428736452:-7eaf" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="30000"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="30000.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="30000.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="160.0" y="280.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="200893ff:13428736452:-7f9d" ordering="1" parent="200893ff:13428736452:-7fa9" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="200893ff:13428736452:-7f9c" ordering="1" parent="200893ff:13428736452:-7fa9" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><BasicBlock dependsOnU="1" id="200893ff:13428736452:-7f8d" interfaceFunctionName="Resistor" ordering="3" parent="200893ff:13428736452:-7eaf" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="30000"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="30000.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="30000.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="260.0" y="340.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="200893ff:13428736452:-7f8b" ordering="1" parent="200893ff:13428736452:-7f8d" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="200893ff:13428736452:-7f8c" ordering="1" parent="200893ff:13428736452:-7f8d" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><SplitBlock id="200893ff:13428736452:-7f7f" ordering="4" parent="200893ff:13428736452:-7eaf" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="227.0" y="297.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="200893ff:13428736452:-7f7d" ordering="1" parent="200893ff:13428736452:-7f7f" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="200893ff:13428736452:-7f7c" ordering="2" parent="200893ff:13428736452:-7f7f" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="200893ff:13428736452:-7f7e" ordering="1" parent="200893ff:13428736452:-7f7f" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="200893ff:13428736452:-7f79" interfaceFunctionName="Resistor" ordering="5" parent="200893ff:13428736452:-7eaf" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="15000"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="15000.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="15000.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="390.0" y="250.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="200893ff:13428736452:-7f72" ordering="1" parent="200893ff:13428736452:-7f79" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="200893ff:13428736452:-7f71" ordering="1" parent="200893ff:13428736452:-7f79" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><BasicBlock dependsOnU="1" id="200893ff:13428736452:-7f69" interfaceFunctionName="Resistor" ordering="6" parent="200893ff:13428736452:-7eaf" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="10000"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="10000.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="10000.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="390.0" y="180.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="200893ff:13428736452:-7f62" ordering="1" parent="200893ff:13428736452:-7f69" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="200893ff:13428736452:-7f61" ordering="1" parent="200893ff:13428736452:-7f69" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><SplitBlock id="200893ff:13428736452:-7f5e" ordering="7" parent="200893ff:13428736452:-7eaf" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="457.0" y="267.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="200893ff:13428736452:-7f5c" ordering="1" parent="200893ff:13428736452:-7f5e" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="200893ff:13428736452:-7f5b" ordering="2" parent="200893ff:13428736452:-7f5e" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="200893ff:13428736452:-7f5d" ordering="1" parent="200893ff:13428736452:-7f5e" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="200893ff:13428736452:-7f58" interfaceFunctionName="Resistor" ordering="8" parent="200893ff:13428736452:-7eaf" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="30000"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="30000.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="30000.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="490.0" y="130.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="200893ff:13428736452:-7f56" ordering="1" parent="200893ff:13428736452:-7f58" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="200893ff:13428736452:-7f57" ordering="1" parent="200893ff:13428736452:-7f58" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><SplitBlock id="200893ff:13428736452:-7f51" ordering="9" parent="200893ff:13428736452:-7eaf" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="457.0" y="197.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="200893ff:13428736452:-7f4f" ordering="1" parent="200893ff:13428736452:-7f51" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="200893ff:13428736452:-7f4e" ordering="2" parent="200893ff:13428736452:-7f51" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="200893ff:13428736452:-7f50" ordering="1" parent="200893ff:13428736452:-7f51" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><SplitBlock id="200893ff:13428736452:-7f04" ordering="10" parent="200893ff:13428736452:-7eaf" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="357.0" y="287.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="200893ff:13428736452:-7f02" ordering="1" parent="200893ff:13428736452:-7f04" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="200893ff:13428736452:-7f01" ordering="2" parent="200893ff:13428736452:-7f04" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="200893ff:13428736452:-7f03" ordering="1" parent="200893ff:13428736452:-7f04" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><SplitBlock id="200893ff:13428736452:-7ed1" ordering="11" parent="200893ff:13428736452:-7eaf" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="567.0" y="257.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="200893ff:13428736452:-7ecf" ordering="1" parent="200893ff:13428736452:-7ed1" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="200893ff:13428736452:-7ece" ordering="2" parent="200893ff:13428736452:-7ed1" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="200893ff:13428736452:-7ed0" ordering="1" parent="200893ff:13428736452:-7ed1" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="200893ff:13428736452:-7f00" parent="200893ff:13428736452:-7eaf" source="200893ff:13428736452:-7fdb" target="200893ff:13428736452:-7f03"><mxGeometry as="geometry" x="-360.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="200893ff:13428736452:-7f7a" parent="200893ff:13428736452:-7eaf" source="200893ff:13428736452:-7f7d" target="200893ff:13428736452:-7fd9"><mxGeometry as="geometry" x="-370.0" y="20.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="200893ff:13428736452:-7ecd" parent="200893ff:13428736452:-7eaf" source="200893ff:13428736452:-7fd3" target="200893ff:13428736452:-7ed0"><mxGeometry as="geometry" x="-360.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="200893ff:13428736452:-7f59" parent="200893ff:13428736452:-7eaf" source="200893ff:13428736452:-7f5c" target="200893ff:13428736452:-7fd1"><mxGeometry as="geometry" x="-360.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="200893ff:13428736452:-7f7b" parent="200893ff:13428736452:-7eaf" source="200893ff:13428736452:-7f9c" target="200893ff:13428736452:-7f7e"><mxGeometry as="geometry" x="-370.0" y="20.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="200893ff:13428736452:-7f05" parent="200893ff:13428736452:-7eaf" source="200893ff:13428736452:-7f8c" target="200893ff:13428736452:-7f01"><mxGeometry as="geometry" x="-370.0"><mxPoint as="sourcePoint" x="294.0" y="360.0"/><mxPoint as="targetPoint" x="350.0" y="290.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="360.0" y="360.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="200893ff:13428736452:-7f80" parent="200893ff:13428736452:-7eaf" source="200893ff:13428736452:-7f7c" target="200893ff:13428736452:-7f8b"><mxGeometry as="geometry" x="-370.0" y="20.0"><mxPoint as="sourcePoint" x="256.0" y="360.0"/><mxPoint as="targetPoint" x="230.0" y="300.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="230.0" y="360.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="200893ff:13428736452:-7f5a" parent="200893ff:13428736452:-7eaf" source="200893ff:13428736452:-7f71" target="200893ff:13428736452:-7f5d"><mxGeometry as="geometry" x="-360.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="200893ff:13428736452:-7eff" parent="200893ff:13428736452:-7eaf" source="200893ff:13428736452:-7f02" target="200893ff:13428736452:-7f72"><mxGeometry as="geometry" x="-360.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="360.0" y="270.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="200893ff:13428736452:-7f4d" parent="200893ff:13428736452:-7eaf" source="200893ff:13428736452:-7f61" target="200893ff:13428736452:-7f50"><mxGeometry as="geometry" x="-360.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="200893ff:13428736452:-7f4c" parent="200893ff:13428736452:-7eaf" source="200893ff:13428736452:-7f5b" target="200893ff:13428736452:-7f4f"><mxGeometry as="geometry" x="-360.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="200893ff:13428736452:-7ed2" parent="200893ff:13428736452:-7eaf" source="200893ff:13428736452:-7f57" target="200893ff:13428736452:-7ece"><mxGeometry as="geometry" x="-360.0"><mxPoint as="sourcePoint" x="534.0" y="150.0"/><mxPoint as="targetPoint" x="570.0" y="260.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="570.0" y="150.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="200893ff:13428736452:-7f52" parent="200893ff:13428736452:-7eaf" source="200893ff:13428736452:-7f4e" target="200893ff:13428736452:-7f56"><mxGeometry as="geometry" x="-360.0"><mxPoint as="sourcePoint" x="486.0" y="150.0"/><mxPoint as="targetPoint" x="460.0" y="200.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="460.0" y="150.0"/></Array></mxGeometry></ImplicitLink><ImplicitInBlock id="200893ff:13428736452:-7ead" ordering="12" parent="200893ff:13428736452:-7eaf" simulationFunctionType="DEFAULT" style="INIMPL_f;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble as="integerParameters" height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><mxGeometry as="geometry" height="40.0" width="40.0" x="14.0" y="180.0"/></ImplicitInBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="200893ff:13428736452:-7eac" ordering="1" parent="200893ff:13428736452:-7ead" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><ImplicitLink id="200893ff:13428736452:-7eaa" parent="200893ff:13428736452:-7eaf" source="200893ff:13428736452:-7eac" target="200893ff:13428736452:-7f62"><mxGeometry as="geometry" x="-360.0"><mxPoint as="sourcePoint" x="34.0" y="210.0"/><mxPoint as="targetPoint" x="390.0" y="200.0"/></mxGeometry></ImplicitLink><ImplicitOutBlock id="200893ff:13428736452:-7ea9" ordering="13" parent="200893ff:13428736452:-7eaf" simulationFunctionType="DEFAULT" style="OUTIMPL_f;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble as="integerParameters" height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><mxGeometry as="geometry" height="40.0" width="40.0" x="626.0" y="240.0"/></ImplicitOutBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="200893ff:13428736452:-7ea8" ordering="1" parent="200893ff:13428736452:-7ea9" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitLink id="200893ff:13428736452:-7ea6" parent="200893ff:13428736452:-7eaf" source="200893ff:13428736452:-7ecf" target="200893ff:13428736452:-7ea8"><mxGeometry as="geometry" x="-360.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitInBlock id="200893ff:13428736452:-7ea5" ordering="14" parent="200893ff:13428736452:-7eaf" simulationFunctionType="DEFAULT" style="INIMPL_f;flip=false;mirror=false" value="2"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="2"/></ScilabString><ScilabDouble as="integerParameters" height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble><mxGeometry as="geometry" height="40.0" width="40.0" x="14.0" y="280.0"/></ImplicitInBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="200893ff:13428736452:-7ea4" ordering="1" parent="200893ff:13428736452:-7ea5" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><ImplicitLink id="200893ff:13428736452:-7ea2" parent="200893ff:13428736452:-7eaf" source="200893ff:13428736452:-7ea4" target="200893ff:13428736452:-7f9d"><mxGeometry as="geometry" x="-360.0"><mxPoint as="sourcePoint" x="34.0" y="300.0"/><mxPoint as="targetPoint" x="150.0" y="300.0"/></mxGeometry></ImplicitLink><ImplicitInBlock id="200893ff:13428736452:-7e96" ordering="15" parent="200893ff:13428736452:-7eaf" simulationFunctionType="DEFAULT" style="INIMPL_f;flip=false;mirror=false" value="3"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="3"/></ScilabString><ScilabDouble as="integerParameters" height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="PORT"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="40.0" y="360.0"/></ImplicitInBlock><ImplicitOutputPort dataColumns="1" dataType="REAL_MATRIX" id="200893ff:13428736452:-7e92" ordering="1" parent="200893ff:13428736452:-7e96" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><SplitBlock id="200893ff:13428736452:-7e82" ordering="16" parent="200893ff:13428736452:-7eaf" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="97.0" y="267.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="200893ff:13428736452:-7e80" ordering="1" parent="200893ff:13428736452:-7e82" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="200893ff:13428736452:-7e7f" ordering="2" parent="200893ff:13428736452:-7e82" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="200893ff:13428736452:-7e81" ordering="1" parent="200893ff:13428736452:-7e82" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="200893ff:13428736452:-7e7e" parent="200893ff:13428736452:-7eaf" source="200893ff:13428736452:-7fda" target="200893ff:13428736452:-7e81"><mxGeometry as="geometry" x="-360.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="200893ff:13428736452:-7e7d" parent="200893ff:13428736452:-7eaf" source="200893ff:13428736452:-7e80" target="200893ff:13428736452:-7fd2"><mxGeometry as="geometry" x="-360.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="100.0" y="240.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="200893ff:13428736452:-7e83" parent="200893ff:13428736452:-7eaf" source="200893ff:13428736452:-7e92" target="200893ff:13428736452:-7e7f"><mxGeometry as="geometry" x="-360.0"><mxPoint as="sourcePoint" x="84.0" y="380.0"/><mxPoint as="targetPoint" x="100.0" y="270.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="100.0" y="380.0"/></Array></mxGeometry></ImplicitLink><TextBlock id="200893ff:13428736452:-7e44" parent="200893ff:13428736452:-7eaf" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="30 k ohm"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="30 k ohm"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="30 k ohm"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="160.0" y="310.0"/></TextBlock><TextBlock id="200893ff:13428736452:-7e43" parent="200893ff:13428736452:-7eaf" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="30 k ohm"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="30 k ohm"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="30 k ohm"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="260.0" y="370.0"/></TextBlock><TextBlock id="200893ff:13428736452:-7e42" parent="200893ff:13428736452:-7eaf" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="15 k ohm"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="15 k ohm"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="15 k ohm"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="390.0" y="280.0"/></TextBlock><TextBlock id="200893ff:13428736452:-7e41" parent="200893ff:13428736452:-7eaf" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="10 k ohm"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="10 k ohm"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="10 k ohm"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="390.0" y="150.0"/></TextBlock><TextBlock id="200893ff:13428736452:-7e40" parent="200893ff:13428736452:-7eaf" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="30 k ohm"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="30 k ohm"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="30 k ohm"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="490.0" y="100.0"/></TextBlock><TextBlock id="200893ff:13428736452:-7e3f" parent="200893ff:13428736452:-7eaf" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="y"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="y"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="y"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="10.0" y="150.0"/></TextBlock><TextBlock id="200893ff:13428736452:-7e3e" parent="200893ff:13428736452:-7eaf" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="x"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="x"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="x"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="10.0" y="250.0"/></TextBlock><TextBlock id="200893ff:13428736452:-7e3d" parent="200893ff:13428736452:-7eaf" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="ground"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="ground"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="ground"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="40.0" y="390.0"/></TextBlock><TextBlock id="200893ff:13428736452:-7e3c" parent="200893ff:13428736452:-7eaf" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="2x - 3y"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="2x - 3y"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="2x - 3y"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="630.0" y="280.0"/></TextBlock><BasicBlock dependsOnU="1" id="200893ff:13428736452:-7fdc" interfaceFunctionName="OpAmp" ordering="17" parent="200893ff:13428736452:-7eaf" simulationFunctionName="OpAmp" simulationFunctionType="DEFAULT" style="OpAmp;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="OpAmp"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="in_p"/><data column="0" line="1" value="in_n"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="out"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/></Array></Array><mxGeometry as="geometry" height="70.0" width="50.0" x="260.0" y="250.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="200893ff:13428736452:-7fda" ordering="1" parent="200893ff:13428736452:-7fdc" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="200893ff:13428736452:-7fd9" ordering="2" parent="200893ff:13428736452:-7fdc" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="46.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="200893ff:13428736452:-7fdb" ordering="1" parent="200893ff:13428736452:-7fdc" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="50.0" y="36.0"/></ImplicitOutputPort></root></mxGraphModel><mxCell as="defaultParent" id="200893ff:13428736452:-7eaf" parent="200893ff:13428736452:-7eae"/></SuperBlockDiagram><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled__24656_PM"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="1.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="450.0"/><data column="1" line="0" realPart="-220.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="50.0"/><data column="1" line="0" realPart="70.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="35.0"/><data column="0" line="1" realPart="21.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="20.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"OpAmp",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="I"/><data column="0" line="1" value="I"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="I"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/><data column="0" line="1" value="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value=""/><data column="0" line="1" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="OpAmp;flip=false;mirror=false"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="OpAmp"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="1.0"/><data column="0" line="1" realPart="1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="1.0"/><data column="0" line="1" realPart="1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="1.0"/><data column="0" line="1" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="true"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="OpAmp"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="in_p"/><data column="0" line="1" value="in_n"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="out"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value="200893ff:13428736452:-7fd4"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="OpAmp"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="200893ff:13428736452:-7fd4"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="120.0"/><data column="1" line="0" realPart="-280.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="30000"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="22.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"Resistor",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="I"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="I"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor;flip=false;mirror=false"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="resistor"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="30000.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="true"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="30000.0"/></ScilabDouble></Array></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value="200893ff:13428736452:-7fa9"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="200893ff:13428736452:-7fa9"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="220.0"/><data column="1" line="0" realPart="-340.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="30000"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="24.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="23.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"Resistor",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="I"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="I"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor;flip=false;mirror=false"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="resistor"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="30000.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="true"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="30000.0"/></ScilabDouble></Array></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value="200893ff:13428736452:-7f8d"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="200893ff:13428736452:-7f8d"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="220.0"/><data column="1" line="0" realPart="-297.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="7.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="22.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="19.0"/><data column="0" line="1" realPart="24.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"SPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="I"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="I"/><data column="0" line="1" value="I"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/><data column="0" line="1" value="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value=""/><data column="0" line="1" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="SPLIT_f;flip=false;mirror=false"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="lsplit"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-2.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-2.0"/><data column="0" line="1" realPart="-2.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="200893ff:13428736452:-7f7f"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="SPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="200893ff:13428736452:-7f7f"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="350.0"/><data column="1" line="0" realPart="-250.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="15000"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="26.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="25.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"Resistor",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="I"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="I"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor;flip=false;mirror=false"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="resistor"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="15000.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="true"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="15000.0"/></ScilabDouble></Array></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value="200893ff:13428736452:-7f79"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="200893ff:13428736452:-7f79"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="350.0"/><data column="1" line="0" realPart="-180.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="10000"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="31.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="27.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"Resistor",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="I"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="I"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor;flip=false;mirror=false"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="resistor"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="10000.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="true"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="10000.0"/></ScilabDouble></Array></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value="200893ff:13428736452:-7f69"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="200893ff:13428736452:-7f69"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="450.0"/><data column="1" line="0" realPart="-267.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="7.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="25.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="21.0"/><data column="0" line="1" realPart="28.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"SPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="I"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="I"/><data column="0" line="1" value="I"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/><data column="0" line="1" value="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value=""/><data column="0" line="1" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="SPLIT_f;flip=false;mirror=false"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="lsplit"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-2.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-2.0"/><data column="0" line="1" realPart="-2.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="200893ff:13428736452:-7f5e"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="SPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="200893ff:13428736452:-7f5e"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="450.0"/><data column="1" line="0" realPart="-130.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="30000"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="30.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="29.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"Resistor",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="I"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="I"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor;flip=false;mirror=false"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="resistor"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="30000.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="true"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="30000.0"/></ScilabDouble></Array></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value="200893ff:13428736452:-7f58"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="200893ff:13428736452:-7f58"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="450.0"/><data column="1" line="0" realPart="-197.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="7.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="27.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="28.0"/><data column="0" line="1" realPart="30.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"SPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="I"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="I"/><data column="0" line="1" value="I"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/><data column="0" line="1" value="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value=""/><data column="0" line="1" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="SPLIT_f;flip=false;mirror=false"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="lsplit"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-2.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-2.0"/><data column="0" line="1" realPart="-2.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="200893ff:13428736452:-7f51"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="SPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="200893ff:13428736452:-7f51"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="350.0"/><data column="1" line="0" realPart="-287.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="7.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="18.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="26.0"/><data column="0" line="1" realPart="23.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"SPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="I"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="I"/><data column="0" line="1" value="I"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/><data column="0" line="1" value="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value=""/><data column="0" line="1" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="SPLIT_f;flip=false;mirror=false"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="lsplit"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-2.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-2.0"/><data column="0" line="1" realPart="-2.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="200893ff:13428736452:-7f04"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="SPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="200893ff:13428736452:-7f04"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="560.0"/><data column="1" line="0" realPart="-257.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="7.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="20.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="32.0"/><data column="0" line="1" realPart="29.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"SPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="I"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="I"/><data column="0" line="1" value="I"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/><data column="0" line="1" value="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value=""/><data column="0" line="1" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="SPLIT_f;flip=false;mirror=false"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="lsplit"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-2.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-2.0"/><data column="0" line="1" realPart="-2.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="200893ff:13428736452:-7ed1"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="SPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="200893ff:13428736452:-7ed1"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="-26.0"/><data column="1" line="0" realPart="-180.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="31.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"INIMPL_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="I"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="INIMPL_f;flip=false;mirror=false"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="inimpl"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-2.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="200893ff:13428736452:-7ead"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="INIMPL_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="200893ff:13428736452:-7ead"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="586.0"/><data column="1" line="0" realPart="-240.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="32.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"OUTIMPL_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="I"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="OUTIMPL_f;flip=false;mirror=false"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="outimpl"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-2.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="200893ff:13428736452:-7ea9"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="OUTIMPL_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="200893ff:13428736452:-7ea9"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="-26.0"/><data column="1" line="0" realPart="-280.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="2"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"INIMPL_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="I"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="INIMPL_f;flip=false;mirror=false"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="inimpl"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-2.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="200893ff:13428736452:-7ea5"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="INIMPL_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="200893ff:13428736452:-7ea5"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-360.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="3"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="36.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"INIMPL_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="I"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="INIMPL_f;flip=false;mirror=false"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="inimpl"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="PORT"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value="200893ff:13428736452:-7e96"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="INIMPL_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="200893ff:13428736452:-7e96"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="90.0"/><data column="1" line="0" realPart="-267.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="7.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="34.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="35.0"/><data column="0" line="1" realPart="36.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"SPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="I"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="I"/><data column="0" line="1" value="I"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/><data column="0" line="1" value="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value=""/><data column="0" line="1" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="SPLIT_f;flip=false;mirror=false"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="lsplit"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-2.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-2.0"/><data column="0" line="1" realPart="-2.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="200893ff:13428736452:-7e82"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="SPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="200893ff:13428736452:-7e82"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="210.0"/><data column="1" line="0" realPart="-250.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="50.0"/><data column="1" line="0" realPart="70.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="34.0"/><data column="0" line="1" realPart="19.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="18.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"OpAmp",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="I"/><data column="0" line="1" value="I"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="I"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/><data column="0" line="1" value="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value=""/><data column="0" line="1" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="OpAmp;flip=false;mirror=false"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="OpAmp"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="1.0"/><data column="0" line="1" realPart="1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="1.0"/><data column="0" line="1" realPart="1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="1.0"/><data column="0" line="1" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="true"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="OpAmp"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="in_p"/><data column="0" line="1" value="in_n"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="out"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value="200893ff:13428736452:-7fdc"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="OpAmp"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="200893ff:13428736452:-7fdc"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="314.0"/><data column="0" line="1" realPart="353.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-220.0"/><data column="0" line="1" realPart="-280.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="2.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="17.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="10.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="238.0"/><data column="0" line="1" realPart="256.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-290.0"/><data column="0" line="1" realPart="-230.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="2.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="17.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="554.0"/><data column="0" line="1" realPart="563.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-190.0"/><data column="0" line="1" realPart="-250.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="2.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="11.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="468.0"/><data column="0" line="1" realPart="496.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-260.0"/><data column="0" line="1" realPart="-200.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="2.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="204.0"/><data column="0" line="1" realPart="223.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-260.0"/><data column="0" line="1" realPart="-290.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="2.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="304.0"/><data column="0" line="1" realPart="360.0"/><data column="0" line="2" realPart="368.0"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-320.0"/><data column="0" line="1" realPart="-360.0"/><data column="0" line="2" realPart="-290.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="2.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="10.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="238.0"/><data column="0" line="1" realPart="230.0"/><data column="0" line="2" realPart="256.0"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-300.0"/><data column="0" line="1" realPart="-360.0"/><data column="0" line="2" realPart="-320.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="2.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="434.0"/><data column="0" line="1" realPart="453.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-230.0"/><data column="0" line="1" realPart="-260.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="2.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="368.0"/><data column="0" line="1" realPart="360.0"/><data column="0" line="2" realPart="386.0"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-280.0"/><data column="0" line="1" realPart="-270.0"/><data column="0" line="2" realPart="-230.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="2.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="10.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="434.0"/><data column="0" line="1" realPart="453.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-160.0"/><data column="0" line="1" realPart="-190.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="2.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="6.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="9.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="468.0"/><data column="0" line="1" realPart="468.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-270.0"/><data column="0" line="1" realPart="-190.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="2.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="9.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="534.0"/><data column="0" line="1" realPart="570.0"/><data column="0" line="2" realPart="578.0"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-110.0"/><data column="0" line="1" realPart="-150.0"/><data column="0" line="2" realPart="-260.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="2.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="11.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="468.0"/><data column="0" line="1" realPart="460.0"/><data column="0" line="2" realPart="486.0"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-200.0"/><data column="0" line="1" realPart="-150.0"/><data column="0" line="2" realPart="-110.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="2.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="9.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="58.0"/><data column="0" line="1" realPart="386.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-160.0"/><data column="0" line="1" realPart="-160.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="2.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="12.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="6.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="578.0"/><data column="0" line="1" realPart="622.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-250.0"/><data column="0" line="1" realPart="-220.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="2.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="11.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="13.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="58.0"/><data column="0" line="1" realPart="156.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-260.0"/><data column="0" line="1" realPart="-260.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="2.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="14.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="256.0"/><data column="0" line="1" realPart="93.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-200.0"/><data column="0" line="1" realPart="-260.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="2.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="17.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="16.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="108.0"/><data column="0" line="1" realPart="100.0"/><data column="0" line="2" realPart="496.0"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-260.0"/><data column="0" line="1" realPart="-240.0"/><data column="0" line="2" realPart="-170.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="2.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="16.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="84.0"/><data column="0" line="1" realPart="100.0"/><data column="0" line="2" realPart="108.0"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-340.0"/><data column="0" line="1" realPart="-380.0"/><data column="0" line="2" realPart="-270.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="2.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="15.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="16.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><mxGeometry as="geometry" height="130.0" width="40.0" x="310.0" y="120.0"/></SuperBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="200893ff:13428736452:-7ea7" ordering="1" parent="200893ff:13428736452:-7eb0" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="56.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="200893ff:13428736452:-7ea3" ordering="2" parent="200893ff:13428736452:-7eb0" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="56.0"/></ImplicitInputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="200893ff:13428736452:-7e94" ordering="3" parent="200893ff:13428736452:-7eb0" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="106.0"/></ImplicitInputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="200893ff:13428736452:-7eab" ordering="1" parent="200893ff:13428736452:-7eb0" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitLink id="200893ff:13428736452:-7ecc" parent="200893ff:13428736452:-8000" source="200893ff:13428736452:-7ea7" target="200893ff:13428736452:-7ed8"><mxGeometry as="geometry" x="-370.0" y="-100.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="200893ff:13428736452:-7e6b" parent="200893ff:13428736452:-8000" source="200893ff:13428736452:-7e35" target="200893ff:13428736452:-7eab"><mxGeometry as="geometry" x="-370.0" y="-100.0"><mxPoint as="sourcePoint" x="24.0" y="140.0"/><mxPoint as="targetPoint" x="300.0" y="140.0"/></mxGeometry></ImplicitLink><SplitBlock id="200893ff:13428736452:-7e5a" ordering="6" parent="200893ff:13428736452:-8000" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="117.0" y="227.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="200893ff:13428736452:-7e58" ordering="1" parent="200893ff:13428736452:-7e5a" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="200893ff:13428736452:-7e57" ordering="2" parent="200893ff:13428736452:-7e5a" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="200893ff:13428736452:-7e59" ordering="1" parent="200893ff:13428736452:-7e5a" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="200893ff:13428736452:-7e56" parent="200893ff:13428736452:-8000" source="200893ff:13428736452:-7e94" target="200893ff:13428736452:-7e59"><mxGeometry as="geometry" x="-370.0" y="-100.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><SplitBlock id="200893ff:13428736452:-7e4c" ordering="7" parent="200893ff:13428736452:-8000" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="117.0" y="257.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="200893ff:13428736452:-7e4a" ordering="1" parent="200893ff:13428736452:-7e4c" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="200893ff:13428736452:-7e49" ordering="2" parent="200893ff:13428736452:-7e4c" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="200893ff:13428736452:-7e4b" ordering="1" parent="200893ff:13428736452:-7e4c" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="200893ff:13428736452:-7e48" parent="200893ff:13428736452:-8000" source="200893ff:13428736452:-7e58" target="200893ff:13428736452:-7e4b"><mxGeometry as="geometry" x="-370.0" y="-100.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="200893ff:13428736452:-7e47" parent="200893ff:13428736452:-8000" source="200893ff:13428736452:-7e4a" target="200893ff:13428736452:-7fbe"><mxGeometry as="geometry" x="-370.0" y="-100.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="200893ff:13428736452:-7e4d" parent="200893ff:13428736452:-8000" source="200893ff:13428736452:-7eda" target="200893ff:13428736452:-7e49"><mxGeometry as="geometry" x="-370.0" y="-100.0"><mxPoint as="sourcePoint" x="440.0" y="204.0"/><mxPoint as="targetPoint" x="120.0" y="260.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="440.0" y="260.0"/></Array></mxGeometry></ImplicitLink><TextBlock id="200893ff:13428736452:-7e46" parent="200893ff:13428736452:-8000" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="y"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="y"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="y"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="190.0" y="100.0"/></TextBlock><TextBlock id="200893ff:13428736452:-7e45" parent="200893ff:13428736452:-8000" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="x"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="x"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="x"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="190.0" y="140.0"/></TextBlock><TextBlock id="200893ff:13428736452:-7e2f" parent="200893ff:13428736452:-8000" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="op amp circuit"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="op amp circuit"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="op amp circuit"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="310.0" y="90.0"/></TextBlock><TextBlock id="200893ff:13428736452:-7e2e" parent="200893ff:13428736452:-8000" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="value of &quot;x&quot; and &quot;y&quot; can be changed by changing the values of the voltage <br> sources"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="value of &quot;x&quot; and &quot;y&quot; can be changed by changing the values of the voltage <br> sources"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="value of &quot;x&quot; and &quot;y&quot; can be changed by changing the values of the voltage <br> sources"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="310.0" y="340.0"/></TextBlock><GroundBlock dependsOnU="1" id="200893ff:13428736452:-7fbf" interfaceFunctionName="Ground" ordering="8" parent="200893ff:13428736452:-8000" simulationFunctionName="Ground" simulationFunctionType="DEFAULT" style="Ground;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Ground"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="30.0" width="30.0" x="100.0" y="290.0"/></GroundBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="200893ff:13428736452:-7fbe" ordering="1" parent="200893ff:13428736452:-7fbf" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><Orientation as="orientation" value="NORTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><TextBlock id="5e46b397:13489a649a8:-7ef6" parent="200893ff:13428736452:-8000" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="z = 2x - 3y"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="z = 2x - 3y"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="z = 2x - 3y"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="240.0" y="20.0"/></TextBlock><BasicBlock id="536aec7f:166be961161:-7dc4" interfaceFunctionName="ConstantVoltage" ordering="9" parent="200893ff:13428736452:-8000" simulationFunctionName="ConstantVoltage" simulationFunctionType="DEFAULT" style="ConstantVoltage;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="10"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="10.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ConstantVoltage"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="V"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="10.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="22.0" width="30.0" x="160.0" y="170.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="536aec7f:166be961161:-7d0b" ordering="1" parent="536aec7f:166be961161:-7dc4" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="536aec7f:166be961161:-7d0a" ordering="1" parent="536aec7f:166be961161:-7dc4" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="30.0" y="6.0"/></ImplicitOutputPort><SplitBlock id="536aec7f:166be961161:-7dbd" interfaceFunctionName="IMPSPLIT_f" ordering="10" parent="200893ff:13428736452:-8000" simulationFunctionType="DEFAULT" style="IMPSPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="117.0" y="177.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="536aec7f:166be961161:-7dbc" ordering="1" parent="536aec7f:166be961161:-7dbd" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="536aec7f:166be961161:-7dbb" ordering="1" parent="536aec7f:166be961161:-7dbd" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="536aec7f:166be961161:-7dba" ordering="2" parent="536aec7f:166be961161:-7dbd" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="536aec7f:166be961161:-7db9" parent="200893ff:13428736452:-8000" source="200893ff:13428736452:-7e57" target="536aec7f:166be961161:-7dbc"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="536aec7f:166be961161:-7db8" parent="200893ff:13428736452:-8000" source="536aec7f:166be961161:-7dbb" target="200893ff:13428736452:-7e36"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="120.0" y="140.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="536aec7f:166be961161:-7dbe" parent="200893ff:13428736452:-8000" source="536aec7f:166be961161:-7dba" target="536aec7f:166be961161:-7d0b"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="160.0" y="180.0"/><mxPoint as="targetPoint" x="120.0" y="180.0"/></mxGeometry></ImplicitLink><ImplicitLink id="536aec7f:166be961161:-7db7" parent="200893ff:13428736452:-8000" source="536aec7f:166be961161:-7d0a" target="200893ff:13428736452:-7ea3"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="190.0" y="180.0"/><mxPoint as="targetPoint" x="310.0" y="180.0"/></mxGeometry></ImplicitLink></root></mxGraphModel><mxCell as="defaultParent" id="200893ff:13428736452:-8000" parent="200893ff:13428736452:-7fff"/></XcosDiagram>
\ No newline at end of file diff --git a/Working_Examples/293/CH2/EX2.2/eg2_2.sce b/Working_Examples/293/CH2/EX2.2/eg2_2.sce new file mode 100755 index 0000000..3714ebb --- /dev/null +++ b/Working_Examples/293/CH2/EX2.2/eg2_2.sce @@ -0,0 +1,17 @@ +R = 100; // resistance in ohms
+I = 0.3; // current in amps
+P = I^2 * R; // power
+//power specification of the resistors available in the stock
+Pa = 5;
+Pb = 7.5;
+Pc = 10;
+
+if Pa > P then
+ disp("we should select resistor a")
+end
+if Pb > P then
+ disp("we should select resistor b")
+end
+if Pc > P then
+ disp("we should select resistor c")
+end
\ No newline at end of file diff --git a/Working_Examples/293/CH2/EX2.3/eg2_3.sce b/Working_Examples/293/CH2/EX2.3/eg2_3.sce new file mode 100755 index 0000000..9a2694b --- /dev/null +++ b/Working_Examples/293/CH2/EX2.3/eg2_3.sce @@ -0,0 +1,6 @@ +L = 1; //length of the copper wire in meters
+A = 1 * 10^-4; // cross sectional area of the wire in meter square
+rho = 1.724 * 10^-8; // resistivity of copper in ohm meter
+R = rho*L / A; // resistance of the wire in ohm
+
+disp(R, "resistance of the wire (in ohms)=")
\ No newline at end of file diff --git a/Working_Examples/293/CH2/EX2.4/eg2_4.sce b/Working_Examples/293/CH2/EX2.4/eg2_4.sce new file mode 100755 index 0000000..2ea3640 --- /dev/null +++ b/Working_Examples/293/CH2/EX2.4/eg2_4.sce @@ -0,0 +1,8 @@ +//1 inches = 0.0254meters
+//1 foot = 0.3048 meters
+d = 0.1*0.0254; // diameter of the wire in meters
+L = 10*0.3048; //length of the wire in meters
+rho = 1.724*10^-8; // resistivity of the wire in ohm-meter
+A = %pi*(d/2)^2; // cross sectional area of the wire
+R = rho*L/A; //resistance of the wire in ohm
+disp(R,"resistance of the wire (in ohm)=")
\ No newline at end of file diff --git a/Working_Examples/293/CH2/EX2.5/eg2_5.pdf b/Working_Examples/293/CH2/EX2.5/eg2_5.pdf Binary files differnew file mode 100755 index 0000000..f55213b --- /dev/null +++ b/Working_Examples/293/CH2/EX2.5/eg2_5.pdf diff --git a/Working_Examples/293/CH2/EX2.5/eg2_5.sce b/Working_Examples/293/CH2/EX2.5/eg2_5.sce new file mode 100755 index 0000000..f1659ed --- /dev/null +++ b/Working_Examples/293/CH2/EX2.5/eg2_5.sce @@ -0,0 +1,22 @@ +L = 0.1; // inductance of the coil in henry
+t1 = [0:0.001:0.1];
+t2 = [0.101:0.001:0.3];
+t3 = [0.301:0.001:0.6];
+t4 = [0.601:0.001:0.7];
+t5 = [0.701:0.001:0.9]
+//current variation as a function of time
+i1 = 100*t1;
+i2 = (-50*t2) + 15;
+i3 = -100*sin(%pi*(t3-0.3)/0.3);
+i4 = (100*t4) - 60;
+i5 = (-50*t5) + 45;
+
+t = [t1,t2,t3,t4,t5];
+i = [i1,i2,i3,i4,i5];
+plot(t, i)
+
+dt = 0.001;
+di = diff(i);
+V = L*di/dt; //voltage drop appearing across the inductor terminals
+Tv = [0:0.001:0.899];
+plot(Tv, V, "green")
\ No newline at end of file diff --git a/Working_Examples/293/CH2/EX2.6/eg2_6.pdf b/Working_Examples/293/CH2/EX2.6/eg2_6.pdf Binary files differnew file mode 100755 index 0000000..7e625db --- /dev/null +++ b/Working_Examples/293/CH2/EX2.6/eg2_6.pdf diff --git a/Working_Examples/293/CH2/EX2.6/eg2_6.sce b/Working_Examples/293/CH2/EX2.6/eg2_6.sce new file mode 100755 index 0000000..5094d17 --- /dev/null +++ b/Working_Examples/293/CH2/EX2.6/eg2_6.sce @@ -0,0 +1,26 @@ +C = 0.01; // capacitance of the capacitor in Farads
+t1 = [0:0.001:0.1];
+t2 = [0.101:0.001:0.3];
+t3 = [0.301:0.001:0.6];
+t4 = [0.601:0.001:0.7];
+t5 = [0.701:0.001:0.9]
+//current variation as a function of time
+i1 = 100*t1;
+i2 = (-50*t2) + 15;
+i3 = -100*sin(%pi*(t3-0.3)/0.3);
+i4 = (100*t4) - 60;
+i5 = (-50*t5) + 45;
+
+t = [t1,t2,t3,t4,t5];
+i = [i1,i2,i3,i4,i5];
+plot(t, i)
+
+// voltage across the capacitor as a function of time
+V1 = (1/C)*integrate('100*t','t',0,t1);
+V2 = (1/C)*integrate('(-50*t)+15','t',0.101,t2);
+V3 = (1/C)*integrate('-100*sin(%pi*(t-0.3)/0.3)','t',0.301,t3);
+V4 = (1/C)*integrate('(100*t) - 60','t',0.601,t4);
+V5 = (1/C)*integrate('(-50*t) + 45','t',0.701,t5);
+V = [V1, V2, V3, V4, V5];
+
+plot(t, V, "green")
\ No newline at end of file diff --git a/Working_Examples/293/CH2/EX2.7/eg2_7.sce b/Working_Examples/293/CH2/EX2.7/eg2_7.sce new file mode 100755 index 0000000..3f437fe --- /dev/null +++ b/Working_Examples/293/CH2/EX2.7/eg2_7.sce @@ -0,0 +1,17 @@ +//a
+Ri = 1;
+Rf = 39;
+A = 10^5; //open loop gain of the op-amp
+G = A/(1 + (A*Ri/(Ri+Rf))); //actual voltage gain of the circuit
+disp("a")
+disp(G,"actual voltage of the circuit =")
+
+//b
+G1 = 1 + (Rf/Ri); // voltage gain of the circuit with infinite open loop gain
+disp("b")
+disp(G1,"for ideal case the voltage gain =")
+
+//c
+er = ((G1 - G)/G)*100; //percent error
+disp("c")
+disp(er,"percent error of the ideal value compared to the actual value=")
\ No newline at end of file diff --git a/Working_Examples/293/CH2/EX2.8/eg2_8.sce b/Working_Examples/293/CH2/EX2.8/eg2_8.sce new file mode 100755 index 0000000..9a60968 --- /dev/null +++ b/Working_Examples/293/CH2/EX2.8/eg2_8.sce @@ -0,0 +1,5 @@ +G = 4; // voltage gain of the circuit
+r = G -1; // ratio of the resistances in the non-inverting op-amp circuit
+disp(r,"Rf/Ri =")
+//Result:
+//A suitable choice for R1 is 10K, Hence Rf = 30K
diff --git a/Working_Examples/293/CH2/EX2.9/eg2_9.sce b/Working_Examples/293/CH2/EX2.9/eg2_9.sce new file mode 100755 index 0000000..b204274 --- /dev/null +++ b/Working_Examples/293/CH2/EX2.9/eg2_9.sce @@ -0,0 +1,6 @@ +G = 4;
+r = G; // ratio of the resistances in the inverting op-amp circuit
+disp(r,"Rf/Ri")
+//Result;
+//A suitable choice for Rf=30K and R1=7.5K
+//therefore input resistance R1 = 7.5K
diff --git a/Working_Examples/293/CH20/EX20.2/eg20_2.sce b/Working_Examples/293/CH20/EX20.2/eg20_2.sce new file mode 100755 index 0000000..396caca --- /dev/null +++ b/Working_Examples/293/CH20/EX20.2/eg20_2.sce @@ -0,0 +1,36 @@ +//a
+Vt = 230; //(in volts)
+Ia = 73; //armature current (in amps)
+If = 1.6; //feild current (in amps)
+Ra = 0.188; //armature circuit resistance(in ohms)
+n = 1150; //rated speed of the rotor(in rpm)
+Po = 20*746; //output power (in watts)
+
+Ea = Vt - (Ia*Ra); //armature voltage
+wm = 2*%pi*n/60; //rated speed of the rotor (in rad/sec)
+T = Ea*Ia/wm ; //electromagnetic torque
+
+disp("a")
+disp(T,"electromagnetic torque = ")
+
+//b
+a = 4; //no. of parallel armature paths
+p = 4; //no. of poles
+z = 882; //no. of armature conductors
+flux = Ea*60*a/(p*z*n); //flux per pole (in Wb)
+
+disp("b")
+disp(flux,"flux per pole = ")
+
+//c
+Prot = (Ea*Ia) - Po; //rotational loss (in watt)
+disp("c")
+disp(Prot,"rotational losses = ")
+
+//d
+losses = Prot + (Ia^2 * Ra) + (Vt * If) ;
+Pi = (Ea*Ia) + (Ia^2 * Ra) + (Vt * If); //input power
+efficiency = 1 - (losses/Pi);
+
+disp("d")
+disp(efficiency,"efficiency = ")
\ No newline at end of file diff --git a/Working_Examples/293/CH20/EX20.3/eg20_3.sce b/Working_Examples/293/CH20/EX20.3/eg20_3.sce new file mode 100755 index 0000000..5f7c18b --- /dev/null +++ b/Working_Examples/293/CH20/EX20.3/eg20_3.sce @@ -0,0 +1,13 @@ +// final flux = 0.8*initial flux
+Ia1 = 73; //initial armature current (in amps)
+Vt = 230; //(in volts)
+Ra = 0.188; //armature circuit resistance
+n1 = 1150; //initial rotor speed (in rpm)
+Ea1 = 216.3; //initial armature voltage
+
+Ia2 = (1/0.8)*Ia1 ; //final armature current
+Ea2 = Vt - (Ia2*Ra); //final armature voltage
+
+n2 = (Ea2/Ea1)*(1/0.8)*n1; //final rotor speed
+
+disp(n2,"final rotor speed(in rpm) = ")
\ No newline at end of file diff --git a/Working_Examples/293/CH20/EX20.4/eg20_4.sce b/Working_Examples/293/CH20/EX20.4/eg20_4.sce new file mode 100755 index 0000000..c792906 --- /dev/null +++ b/Working_Examples/293/CH20/EX20.4/eg20_4.sce @@ -0,0 +1,38 @@ +//a
+rop = 0.4; //ratio of ON time T0 to cycle time Tp
+Vb =550; //rated terminal voltage of the dc motor
+Ia = 30; //current drawn by the motor (in amps)
+Ra = 1; //armature circuit resistance (in ohms)
+ts = 5.94; //torque and speed parameter of the motor (in N-m/A)
+
+Vm = rop*Vb; //average value of the armature terminal voltage
+Ea = Vm - (Ia*Ra); //induced armature voltage
+
+wm = Ea/ts; //motor speed (in rad/s)
+disp("a")
+disp(wm,"motor speed (in rad/s) = ")
+
+//b
+deltaI = 5; //change of armature current during the ON period
+La = 0.1; //armature winding inductance (in H)
+To = La*deltaI/(Vb - Ea); //ON time
+Tp = To/rop; //cycle time
+
+f = 1/Tp ; //required pulses per second
+disp("b")
+disp(f,"required pulses per second = ")
+
+//c
+rop = 0.7; //new ratio of ON time T0 to cycle time Tp
+Vm = rop*Vb; //average value of the armature terminal voltage
+Ea = Vm - (Ia*Ra); //induced armature voltage
+
+wm = Ea/ts; //motor speed (in rad/s)
+disp("c")
+disp(wm,"motor speed with To/Tp equal to 0.7 (in rad/s) = ")
+
+To = La*deltaI/(Vb - Ea); //ON time
+Tp = To/rop; //cycle time
+
+f = 1/Tp ; //required pulses per second
+disp(f,"required pulses per second with To/Tp equal to 0.7 = ")
\ No newline at end of file diff --git a/Working_Examples/293/CH23/EX23.1/eg23_1.sce b/Working_Examples/293/CH23/EX23.1/eg23_1.sce new file mode 100755 index 0000000..18ac13b --- /dev/null +++ b/Working_Examples/293/CH23/EX23.1/eg23_1.sce @@ -0,0 +1,12 @@ +deltaGi = 420 - 380; //variation in the without feedback gain
+Gi = 400; //without feedback gain
+T = 400; //transfer function of the closed loop system
+// (variation in T)/T = (change in G)/G * (1/ 1+H*G) = 0.02
+//1 + H*G = R
+R = (deltaGi/Gi)/0.02;
+
+G = T*R; //new direct transmission gain with feedback
+H = (G/T - 1)/G; //feedback factor
+
+disp(G,"new direct transmission gain with feedback = ")
+disp(H,"feedback factors = ")
\ No newline at end of file diff --git a/Working_Examples/293/CH24/EX24.2/eg24_2.sce b/Working_Examples/293/CH24/EX24.2/eg24_2.sce new file mode 100755 index 0000000..fa8965c --- /dev/null +++ b/Working_Examples/293/CH24/EX24.2/eg24_2.sce @@ -0,0 +1,39 @@ +//a
+//parameter values
+Kp = 0.5; //V/rad
+Ka = 100; //V/V
+Km = 2*10^-4 ; //lb-ft/V
+F = 1.5*10^-4; //lb-ft/rad/s
+J = 10^-5 //slug-ft^2
+
+K = Kp*Ka*Km ; //loop propotional gain
+dr = F/(2*sqrt(K*J)); //damping ratio
+wn = sqrt(K/J);
+ts = 5/(dr*wn);
+wd = wn*sqrt(1 - dr^2); //frequency at which damped oscillations occur
+disp("a")
+disp(wd, "damped oscillations occur at a frequency = ")
+disp(dr,"damping ratio = ")
+
+//b
+Tl = 10^-3; //load disturbance (lb-ft)
+e = Tl/K; //position lag error
+disp("b")
+disp(e,"position lag error (in rad) = ")
+
+//c
+KaNew = (e/0.025)*Ka; //new loop gain
+disp("c")
+disp(KaNew,"new loop gain for which the position lag error is equal to 0.025rad = ")
+
+//d
+drNew = F/(2*sqrt(Kp*KaNew*Km*J)); //new damping ratio
+disp("d")
+disp(drNew,"new damping ratio = ")
+
+//e
+//for a maximum overshoot of 25% , (F + Qo)/2*sqrt(K*J) = 0.4
+Qo = (0.4*2*sqrt(Kp*KaNew*Km*J)) - F ;
+Ko = Qo/(KaNew*K) ; //output gain factor
+disp("e")
+disp(Ko,"output gain factor = ")
\ No newline at end of file diff --git a/Working_Examples/293/CH3/EX3.1/eg3_1.sce b/Working_Examples/293/CH3/EX3.1/eg3_1.sce new file mode 100755 index 0000000..5f9ef05 --- /dev/null +++ b/Working_Examples/293/CH3/EX3.1/eg3_1.sce @@ -0,0 +1,10 @@ +V = 100; // volatage supply in volts
+Rs = 40; //resistance in series in ohms
+// parallel resistances in ohms
+Rp1 = 33.33;
+Rp2 = 50;
+Rp3 = 20;
+Rpinv = (1/Rp1)+(1/Rp2)+(1/Rp3); //reciprocal of equivalent resistance in parallel
+Req = Rs + (1/Rpinv) ;
+I = V/Req; //current flowing from the voltage source in amps
+disp(I,"current flowing from the voltage source(in amps) = ")
\ No newline at end of file diff --git a/Working_Examples/293/CH3/EX3.10/eg3_10.pdf b/Working_Examples/293/CH3/EX3.10/eg3_10.pdf Binary files differnew file mode 100755 index 0000000..8bdf4a6 --- /dev/null +++ b/Working_Examples/293/CH3/EX3.10/eg3_10.pdf diff --git a/Working_Examples/293/CH3/EX3.10/eg3_10.xcos b/Working_Examples/293/CH3/EX3.10/eg3_10.xcos new file mode 100755 index 0000000..e07264c --- /dev/null +++ b/Working_Examples/293/CH3/EX3.10/eg3_10.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" finalIntegrationTime="10.0" title="eg3_10"><!--Xcos - 1.0 - scilab-5.5.2 - 20160406 2040--><mxGraphModel as="model"><root><mxCell id="-108078b6:1345b8f2778:-7b1c"/><mxCell id="-108078b6:1345b8f2778:-7b1d" parent="-108078b6:1345b8f2778:-7b1c"/><BasicBlock angle="90" id="-108078b6:1345b8f2778:-7b14" interfaceFunctionName="ConstantVoltage" ordering="1" parent="-108078b6:1345b8f2778:-7b1d" simulationFunctionName="ConstantVoltage" simulationFunctionType="DEFAULT" style="ConstantVoltage;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="24"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="24.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ConstantVoltage"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="V"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="24.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="90.0" y="190.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-7a8b" ordering="1" parent="-108078b6:1345b8f2778:-7b14" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-7a8c" ordering="1" parent="-108078b6:1345b8f2778:-7b14" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock angle="90" id="-108078b6:1345b8f2778:-7b0e" interfaceFunctionName="ConstantVoltage" ordering="2" parent="-108078b6:1345b8f2778:-7b1d" simulationFunctionName="ConstantVoltage" simulationFunctionType="DEFAULT" style="ConstantVoltage;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="12"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="12.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ConstantVoltage"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="V"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="12.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="600.0" y="190.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-7a2b" ordering="1" parent="-108078b6:1345b8f2778:-7b0e" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-7a2c" ordering="1" parent="-108078b6:1345b8f2778:-7b0e" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock angle="180" id="-108078b6:1345b8f2778:-7b08" interfaceFunctionName="ConstantVoltage" ordering="3" parent="-108078b6:1345b8f2778:-7b1d" simulationFunctionName="ConstantVoltage" simulationFunctionType="DEFAULT" style="ConstantVoltage;rotation=180;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="6"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ConstantVoltage"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="V"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="390.0" y="70.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-7a54" ordering="1" parent="-108078b6:1345b8f2778:-7b08" style="ImplicitOutputPort;align=left;verticalAlign=middle;spacing=10;rotation=180;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-7a55" ordering="1" parent="-108078b6:1345b8f2778:-7b08" style="ImplicitInputPort;align=right;verticalAlign=middle;spacing=10;rotation=180;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="-108078b6:1345b8f2778:-7af8" interfaceFunctionName="Resistor" ordering="4" parent="-108078b6:1345b8f2778:-7b1d" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="10"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="10.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="10.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="170.0" y="70.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-7a86" ordering="1" parent="-108078b6:1345b8f2778:-7af8" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-7a87" ordering="1" parent="-108078b6:1345b8f2778:-7af8" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitLink id="-108078b6:1345b8f2778:-7af5" parent="-108078b6:1345b8f2778:-7b1d" source="-108078b6:1345b8f2778:-7a8c" target="-108078b6:1345b8f2778:-7a87"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="110.0" y="126.0"/><mxPoint as="targetPoint" x="160.0" y="90.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="110.0" y="90.0"/></Array></mxGeometry></ImplicitLink><BasicBlock angle="90" dependsOnU="1" id="-108078b6:1345b8f2778:-7af1" interfaceFunctionName="Resistor" ordering="5" parent="-108078b6:1345b8f2778:-7b1d" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="2"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="230.0" y="190.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-7a7c" ordering="1" parent="-108078b6:1345b8f2778:-7af1" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-7a7d" ordering="1" parent="-108078b6:1345b8f2778:-7af1" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="-108078b6:1345b8f2778:-7ae5" interfaceFunctionName="Resistor" ordering="6" parent="-108078b6:1345b8f2778:-7b1d" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="3"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="300.0" y="70.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-7a80" ordering="1" parent="-108078b6:1345b8f2778:-7ae5" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-7a81" ordering="1" parent="-108078b6:1345b8f2778:-7ae5" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><SplitBlock id="-108078b6:1345b8f2778:-7add" ordering="7" parent="-108078b6:1345b8f2778:-7b1d" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="247.0" y="87.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="-108078b6:1345b8f2778:-7adc" ordering="1" parent="-108078b6:1345b8f2778:-7add" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-108078b6:1345b8f2778:-7adb" ordering="1" parent="-108078b6:1345b8f2778:-7add" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-108078b6:1345b8f2778:-7ada" ordering="2" parent="-108078b6:1345b8f2778:-7add" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitLink id="-108078b6:1345b8f2778:-7ad9" parent="-108078b6:1345b8f2778:-7b1d" source="-108078b6:1345b8f2778:-7a86" target="-108078b6:1345b8f2778:-7adc"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-108078b6:1345b8f2778:-7ad8" parent="-108078b6:1345b8f2778:-7b1d" source="-108078b6:1345b8f2778:-7adb" target="-108078b6:1345b8f2778:-7a81"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-108078b6:1345b8f2778:-7ad7" parent="-108078b6:1345b8f2778:-7b1d" source="-108078b6:1345b8f2778:-7a54" target="-108078b6:1345b8f2778:-7a80"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="344.0" y="90.0"/><mxPoint as="targetPoint" x="380.0" y="90.0"/></mxGeometry></ImplicitLink><BasicBlock angle="90" dependsOnU="1" id="-108078b6:1345b8f2778:-7ad6" interfaceFunctionName="Resistor" ordering="8" parent="-108078b6:1345b8f2778:-7b1d" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="450.0" y="190.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-7a4a" ordering="1" parent="-108078b6:1345b8f2778:-7ad6" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-7a4b" ordering="1" parent="-108078b6:1345b8f2778:-7ad6" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="-108078b6:1345b8f2778:-7acd" interfaceFunctionName="Resistor" ordering="9" parent="-108078b6:1345b8f2778:-7b1d" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="5"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="510.0" y="70.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-7a4f" ordering="1" parent="-108078b6:1345b8f2778:-7acd" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-7a50" ordering="1" parent="-108078b6:1345b8f2778:-7acd" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><SplitBlock id="-108078b6:1345b8f2778:-7ac4" ordering="10" parent="-108078b6:1345b8f2778:-7b1d" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="467.0" y="87.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="-108078b6:1345b8f2778:-7ac3" ordering="1" parent="-108078b6:1345b8f2778:-7ac4" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-108078b6:1345b8f2778:-7ac2" ordering="1" parent="-108078b6:1345b8f2778:-7ac4" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-108078b6:1345b8f2778:-7ac1" ordering="2" parent="-108078b6:1345b8f2778:-7ac4" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitLink id="-108078b6:1345b8f2778:-7ac0" parent="-108078b6:1345b8f2778:-7b1d" source="-108078b6:1345b8f2778:-7a55" target="-108078b6:1345b8f2778:-7ac3"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-108078b6:1345b8f2778:-7abf" parent="-108078b6:1345b8f2778:-7b1d" source="-108078b6:1345b8f2778:-7ac2" target="-108078b6:1345b8f2778:-7a50"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-108078b6:1345b8f2778:-7abb" parent="-108078b6:1345b8f2778:-7b1d" source="-108078b6:1345b8f2778:-7a4f" target="-108078b6:1345b8f2778:-7a2c"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="554.0" y="90.0"/><mxPoint as="targetPoint" x="620.0" y="180.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="620.0" y="90.0"/></Array></mxGeometry></ImplicitLink><GroundBlock dependsOnU="1" id="-108078b6:1345b8f2778:-7ab5" interfaceFunctionName="Ground" ordering="11" parent="-108078b6:1345b8f2778:-7b1d" simulationFunctionName="Ground" simulationFunctionType="DEFAULT" style="Ground;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Ground"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="30.0" width="40.0" x="90.0" y="310.0"/></GroundBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-7ab4" ordering="1" parent="-108078b6:1345b8f2778:-7ab5" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><Orientation as="orientation" value="NORTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><SplitBlock id="-108078b6:1345b8f2778:-7aa8" ordering="12" parent="-108078b6:1345b8f2778:-7b1d" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="107.0" y="287.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="-108078b6:1345b8f2778:-7aa7" ordering="1" parent="-108078b6:1345b8f2778:-7aa8" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-108078b6:1345b8f2778:-7aa6" ordering="1" parent="-108078b6:1345b8f2778:-7aa8" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-108078b6:1345b8f2778:-7aa5" ordering="2" parent="-108078b6:1345b8f2778:-7aa8" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitLink id="-108078b6:1345b8f2778:-7aa4" parent="-108078b6:1345b8f2778:-7b1d" source="-108078b6:1345b8f2778:-7a8b" target="-108078b6:1345b8f2778:-7aa7"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-108078b6:1345b8f2778:-7aa3" parent="-108078b6:1345b8f2778:-7b1d" source="-108078b6:1345b8f2778:-7aa6" target="-108078b6:1345b8f2778:-7ab4"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><SplitBlock id="-108078b6:1345b8f2778:-7aa1" ordering="13" parent="-108078b6:1345b8f2778:-7b1d" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="247.0" y="287.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="-108078b6:1345b8f2778:-7aa0" ordering="1" parent="-108078b6:1345b8f2778:-7aa1" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-108078b6:1345b8f2778:-7a9f" ordering="1" parent="-108078b6:1345b8f2778:-7aa1" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-108078b6:1345b8f2778:-7a9e" ordering="2" parent="-108078b6:1345b8f2778:-7aa1" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitLink id="-108078b6:1345b8f2778:-7a9d" parent="-108078b6:1345b8f2778:-7b1d" source="-108078b6:1345b8f2778:-7a7c" target="-108078b6:1345b8f2778:-7aa0"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-108078b6:1345b8f2778:-7a9c" parent="-108078b6:1345b8f2778:-7b1d" source="-108078b6:1345b8f2778:-7aa5" target="-108078b6:1345b8f2778:-7a9f"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><SplitBlock id="-108078b6:1345b8f2778:-7a93" ordering="14" parent="-108078b6:1345b8f2778:-7b1d" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="467.0" y="287.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="-108078b6:1345b8f2778:-7a92" ordering="1" parent="-108078b6:1345b8f2778:-7a93" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-108078b6:1345b8f2778:-7a91" ordering="1" parent="-108078b6:1345b8f2778:-7a93" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-108078b6:1345b8f2778:-7a90" ordering="2" parent="-108078b6:1345b8f2778:-7a93" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitLink id="-108078b6:1345b8f2778:-7a8f" parent="-108078b6:1345b8f2778:-7b1d" source="-108078b6:1345b8f2778:-7a4a" target="-108078b6:1345b8f2778:-7a92"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><TextBlock id="-108078b6:1345b8f2778:-7a89" parent="-108078b6:1345b8f2778:-7b1d" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="E1 = 24V"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="E1 = 24V"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="E1 = 24V"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="40.0" y="190.0"/></TextBlock><TextBlock id="-108078b6:1345b8f2778:-7a84" parent="-108078b6:1345b8f2778:-7b1d" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="R1 = 10"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="R1 = 10"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="R1 = 10"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="170.0" y="40.0"/></TextBlock><TextBlock id="-108078b6:1345b8f2778:-7a83" parent="-108078b6:1345b8f2778:-7b1d" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="R3 = 3"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="R3 = 3"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="R3 = 3"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="300.0" y="40.0"/></TextBlock><TextBlock id="-108078b6:1345b8f2778:-7a7a" parent="-108078b6:1345b8f2778:-7b1d" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="R2 = 2"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="R2 = 2"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="R2 = 2"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="190.0" y="190.0"/></TextBlock><VoltageSensorBlock dependsOnU="1" id="-108078b6:1345b8f2778:-7a70" interfaceFunctionName="VoltageSensor" ordering="15" parent="-108078b6:1345b8f2778:-7b1d" simulationFunctionName="VoltageSensor" simulationFunctionType="DEFAULT" style="VoltageSensor;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="VoltageSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="v"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="300.0" y="120.0"/></VoltageSensorBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-7a6f" ordering="1" parent="-108078b6:1345b8f2778:-7a70" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><Orientation as="orientation" value="SOUTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-7a6e" ordering="2" parent="-108078b6:1345b8f2778:-7a70" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-7a6d" ordering="1" parent="-108078b6:1345b8f2778:-7a70" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><SplitBlock id="-108078b6:1345b8f2778:-7a6b" ordering="16" parent="-108078b6:1345b8f2778:-7b1d" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="317.0" y="287.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="-108078b6:1345b8f2778:-7a6a" ordering="1" parent="-108078b6:1345b8f2778:-7a6b" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-108078b6:1345b8f2778:-7a69" ordering="1" parent="-108078b6:1345b8f2778:-7a6b" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-108078b6:1345b8f2778:-7a68" ordering="2" parent="-108078b6:1345b8f2778:-7a6b" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitLink id="-108078b6:1345b8f2778:-7a67" parent="-108078b6:1345b8f2778:-7b1d" source="-108078b6:1345b8f2778:-7a9e" target="-108078b6:1345b8f2778:-7a6a"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-108078b6:1345b8f2778:-7a66" parent="-108078b6:1345b8f2778:-7b1d" source="-108078b6:1345b8f2778:-7a91" target="-108078b6:1345b8f2778:-7a69"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-108078b6:1345b8f2778:-7a6c" parent="-108078b6:1345b8f2778:-7b1d" source="-108078b6:1345b8f2778:-7a6f" target="-108078b6:1345b8f2778:-7a68"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="320.0" y="214.0"/><mxPoint as="targetPoint" x="320.0" y="290.0"/></mxGeometry></ImplicitLink><SplitBlock id="-108078b6:1345b8f2778:-7a5c" ordering="17" parent="-108078b6:1345b8f2778:-7b1d" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="247.0" y="137.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="-108078b6:1345b8f2778:-7a5b" ordering="1" parent="-108078b6:1345b8f2778:-7a5c" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-108078b6:1345b8f2778:-7a5a" ordering="1" parent="-108078b6:1345b8f2778:-7a5c" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-108078b6:1345b8f2778:-7a59" ordering="2" parent="-108078b6:1345b8f2778:-7a5c" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitLink id="-108078b6:1345b8f2778:-7a58" parent="-108078b6:1345b8f2778:-7b1d" source="-108078b6:1345b8f2778:-7ada" target="-108078b6:1345b8f2778:-7a5b"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-108078b6:1345b8f2778:-7a57" parent="-108078b6:1345b8f2778:-7b1d" source="-108078b6:1345b8f2778:-7a5a" target="-108078b6:1345b8f2778:-7a7d"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="250.0" y="150.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-108078b6:1345b8f2778:-7a5d" parent="-108078b6:1345b8f2778:-7b1d" source="-108078b6:1345b8f2778:-7a59" target="-108078b6:1345b8f2778:-7a6d"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="296.0" y="140.0"/><mxPoint as="targetPoint" x="250.0" y="140.0"/></mxGeometry></ImplicitLink><TextBlock id="-108078b6:1345b8f2778:-7a52" parent="-108078b6:1345b8f2778:-7b1d" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="E3 = 6V"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="E3 = 6V"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="E3 = 6V"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="390.0" y="40.0"/></TextBlock><TextBlock id="-108078b6:1345b8f2778:-7a4d" parent="-108078b6:1345b8f2778:-7b1d" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="R5 = 5"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="R5 = 5"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="R5 = 5"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="510.0" y="40.0"/></TextBlock><TextBlock id="-108078b6:1345b8f2778:-7a48" parent="-108078b6:1345b8f2778:-7b1d" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="R4 = 1"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="R4 = 1"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="R4 = 1"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="410.0" y="190.0"/></TextBlock><VoltageSensorBlock dependsOnU="1" id="-108078b6:1345b8f2778:-7a43" interfaceFunctionName="VoltageSensor" ordering="18" parent="-108078b6:1345b8f2778:-7b1d" simulationFunctionName="VoltageSensor" simulationFunctionType="DEFAULT" style="VoltageSensor;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="VoltageSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="v"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="510.0" y="150.0"/></VoltageSensorBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-7a42" ordering="1" parent="-108078b6:1345b8f2778:-7a43" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><Orientation as="orientation" value="SOUTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-7a41" ordering="2" parent="-108078b6:1345b8f2778:-7a43" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-7a40" ordering="1" parent="-108078b6:1345b8f2778:-7a43" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><SplitBlock id="-108078b6:1345b8f2778:-7a3a" ordering="19" parent="-108078b6:1345b8f2778:-7b1d" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="467.0" y="167.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="-108078b6:1345b8f2778:-7a39" ordering="1" parent="-108078b6:1345b8f2778:-7a3a" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-108078b6:1345b8f2778:-7a38" ordering="1" parent="-108078b6:1345b8f2778:-7a3a" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-108078b6:1345b8f2778:-7a37" ordering="2" parent="-108078b6:1345b8f2778:-7a3a" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitLink id="-108078b6:1345b8f2778:-7a36" parent="-108078b6:1345b8f2778:-7b1d" source="-108078b6:1345b8f2778:-7ac1" target="-108078b6:1345b8f2778:-7a39"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-108078b6:1345b8f2778:-7a35" parent="-108078b6:1345b8f2778:-7b1d" source="-108078b6:1345b8f2778:-7a38" target="-108078b6:1345b8f2778:-7a4b"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-108078b6:1345b8f2778:-7a3b" parent="-108078b6:1345b8f2778:-7b1d" source="-108078b6:1345b8f2778:-7a37" target="-108078b6:1345b8f2778:-7a40"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="506.0" y="170.0"/><mxPoint as="targetPoint" x="470.0" y="170.0"/></mxGeometry></ImplicitLink><SplitBlock id="-108078b6:1345b8f2778:-7a33" ordering="20" parent="-108078b6:1345b8f2778:-7b1d" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="527.0" y="287.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="-108078b6:1345b8f2778:-7a32" ordering="1" parent="-108078b6:1345b8f2778:-7a33" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-108078b6:1345b8f2778:-7a31" ordering="1" parent="-108078b6:1345b8f2778:-7a33" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-108078b6:1345b8f2778:-7a30" ordering="2" parent="-108078b6:1345b8f2778:-7a33" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitLink id="-108078b6:1345b8f2778:-7a2f" parent="-108078b6:1345b8f2778:-7b1d" source="-108078b6:1345b8f2778:-7a2b" target="-108078b6:1345b8f2778:-7a32"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="620.0" y="290.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-108078b6:1345b8f2778:-7a2e" parent="-108078b6:1345b8f2778:-7b1d" source="-108078b6:1345b8f2778:-7a90" target="-108078b6:1345b8f2778:-7a31"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-108078b6:1345b8f2778:-7a34" parent="-108078b6:1345b8f2778:-7b1d" source="-108078b6:1345b8f2778:-7a42" target="-108078b6:1345b8f2778:-7a30"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="530.0" y="194.0"/><mxPoint as="targetPoint" x="530.0" y="290.0"/></mxGeometry></ImplicitLink><TextBlock id="-108078b6:1345b8f2778:-7a29" parent="-108078b6:1345b8f2778:-7b1d" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="E2 = 12V"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="E2 = 12V"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="E2 = 12V"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="550.0" y="190.0"/></TextBlock><BasicBlock dependsOnU="1" id="-108078b6:1345b8f2778:-7a1f" interfaceFunctionName="CMSCOPE" ordering="21" parent="-108078b6:1345b8f2778:-7b1d" simulationFunctionName="cmscope" simulationFunctionType="C_OR_FORTRAN" style="CMSCOPE;flip=false;mirror=false"><ScilabString as="exprs" height="11" width="1"><data column="0" line="0" value="1 1"/><data column="0" line="1" value="1 3 5 7 9 11 13 15"/><data column="0" line="2" value="-1"/><data column="0" line="3" value="[]"/><data column="0" line="4" value="[]"/><data column="0" line="5" value="-5 -5"/><data column="0" line="6" value="5 5"/><data column="0" line="7" value="10 10 "/><data column="0" line="8" value="20"/><data column="0" line="9" value="0"/><data column="0" line="10" value=""/></ScilabString><ScilabDouble as="realParameters" height="7" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="10.0"/><data column="0" line="2" realPart="10.0"/><data column="0" line="3" realPart="-5.0"/><data column="0" line="4" realPart="5.0"/><data column="0" line="5" realPart="-5.0"/><data column="0" line="6" realPart="5.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="12" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="2.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="-1.0"/><data column="0" line="4" realPart="-1.0"/><data column="0" line="5" realPart="-1.0"/><data column="0" line="6" realPart="-1.0"/><data column="0" line="7" realPart="1.0"/><data column="0" line="8" realPart="1.0"/><data column="0" line="9" realPart="1.0"/><data column="0" line="10" realPart="3.0"/><data column="0" line="11" realPart="0.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="50.0" width="40.0" x="730.0" y="130.0"/></BasicBlock><ControlPort dataType="UNKNOW_TYPE" id="-108078b6:1345b8f2778:-7a0d" ordering="1" parent="-108078b6:1345b8f2778:-7a1f" style="ControlPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-7a0f" ordering="1" parent="-108078b6:1345b8f2778:-7a1f" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ExplicitInputPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-7a0e" ordering="2" parent="-108078b6:1345b8f2778:-7a1f" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="36.0"/></ExplicitInputPort><BasicBlock blockType="h" id="-108078b6:1345b8f2778:-7a16" interfaceFunctionName="CLOCK_c" ordering="22" parent="-108078b6:1345b8f2778:-7b1d" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="139.0"/><data column="1" line="0" realPart="-170.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="536aec7f:166be961161:-7b66"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="536aec7f:166be961161:-7b66"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.1"/><data column="0" line="1" value="0.1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.1"/><data column="0" line="1" realPart="0.1"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.1"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="536aec7f:166be961161:-7b64"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="536aec7f:166be961161:-7b64"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="156.3773266666667"/><data column="1" line="0" realPart="-202.33333333333331"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="7.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="5.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="536aec7f:166be961161:-7b61"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="536aec7f:166be961161:-7b61"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="140.0"/><data column="0" line="2" realPart="166.8773266666667"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-44.0"/><data column="0" line="1" realPart="-220.0"/><data column="0" line="2" realPart="-191.33333333333331"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="165.71066000000005"/><data column="0" line="1" realPart="169.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-206.33333333333331"/><data column="0" line="1" realPart="-146.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="168.04399333333336"/><data column="0" line="1" realPart="180.70999999999998"/><data column="0" line="2" realPart="140.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-206.33333333333331"/><data column="0" line="1" realPart="-90.0"/><data column="0" line="2" realPart="-90.0"/><data column="0" line="3" realPart="4.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="730.0" y="40.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="-108078b6:1345b8f2778:-79fb" ordering="1" parent="-108078b6:1345b8f2778:-7a16" style="CommandPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><ExplicitLink id="-108078b6:1345b8f2778:-7a07" parent="-108078b6:1345b8f2778:-7b1d" source="-108078b6:1345b8f2778:-7a41" target="-108078b6:1345b8f2778:-7a0e"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="554.0" y="170.0"/><mxPoint as="targetPoint" x="720.0" y="170.0"/></mxGeometry></ExplicitLink><ExplicitLink id="-108078b6:1345b8f2778:-7a06" parent="-108078b6:1345b8f2778:-7b1d" source="-108078b6:1345b8f2778:-7a6e" target="-108078b6:1345b8f2778:-7a0f"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="344.0" y="140.0"/><mxPoint as="targetPoint" x="720.0" y="150.0"/></mxGeometry></ExplicitLink><CommandControlLink id="-108078b6:1345b8f2778:-7a03" parent="-108078b6:1345b8f2778:-7b1d" source="-108078b6:1345b8f2778:-79fb" target="-108078b6:1345b8f2778:-7a0d"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="750.0" y="84.0"/><mxPoint as="targetPoint" x="750.0" y="130.0"/></mxGeometry></CommandControlLink><TextBlock id="-108078b6:1345b8f2778:-7a02" parent="-108078b6:1345b8f2778:-7b1d" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="V1"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="V1"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="V1"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="320.0" y="150.0"/></TextBlock><TextBlock id="-108078b6:1345b8f2778:-7a00" parent="-108078b6:1345b8f2778:-7b1d" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="V2"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="V2"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="V2"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="490.0" y="180.0"/></TextBlock></root></mxGraphModel><mxCell as="defaultParent" id="-108078b6:1345b8f2778:-7b1d" parent="-108078b6:1345b8f2778:-7b1c"/></XcosDiagram>
\ No newline at end of file diff --git a/Working_Examples/293/CH3/EX3.11/eg3_11.pdf b/Working_Examples/293/CH3/EX3.11/eg3_11.pdf Binary files differnew file mode 100755 index 0000000..9b32ee7 --- /dev/null +++ b/Working_Examples/293/CH3/EX3.11/eg3_11.pdf diff --git a/Working_Examples/293/CH3/EX3.11/eg3_11.xcos b/Working_Examples/293/CH3/EX3.11/eg3_11.xcos new file mode 100755 index 0000000..a1abe1b --- /dev/null +++ b/Working_Examples/293/CH3/EX3.11/eg3_11.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" finalIntegrationTime="10.0" title="eg3_11"><!--Xcos - 1.0 - scilab-5.5.2 - 20160406 2040--><mxGraphModel as="model"><root><mxCell id="-108078b6:1345b8f2778:-79f8"/><mxCell id="-108078b6:1345b8f2778:-79f9" parent="-108078b6:1345b8f2778:-79f8"/><BasicBlock angle="90" id="-108078b6:1345b8f2778:-79f0" interfaceFunctionName="ConstantVoltage" ordering="1" parent="-108078b6:1345b8f2778:-79f9" simulationFunctionName="ConstantVoltage" simulationFunctionType="DEFAULT" style="ConstantVoltage;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="120"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="120.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ConstantVoltage"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="V"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="120.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="30.0" y="220.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-7965" ordering="1" parent="-108078b6:1345b8f2778:-79f0" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-7966" ordering="1" parent="-108078b6:1345b8f2778:-79f0" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock angle="90" id="-108078b6:1345b8f2778:-79ea" interfaceFunctionName="ConstantVoltage" ordering="2" parent="-108078b6:1345b8f2778:-79f9" simulationFunctionName="ConstantVoltage" simulationFunctionType="DEFAULT" style="ConstantVoltage;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="65"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="65.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ConstantVoltage"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="V"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="65.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="400.0" y="250.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-7954" ordering="1" parent="-108078b6:1345b8f2778:-79ea" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-7955" ordering="1" parent="-108078b6:1345b8f2778:-79ea" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="-108078b6:1345b8f2778:-79dd" interfaceFunctionName="Resistor" ordering="3" parent="-108078b6:1345b8f2778:-79f9" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="40"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="40.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="40.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="100.0" y="130.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-7960" ordering="1" parent="-108078b6:1345b8f2778:-79dd" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-7961" ordering="1" parent="-108078b6:1345b8f2778:-79dd" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><BasicBlock angle="90" dependsOnU="1" id="-108078b6:1345b8f2778:-79d7" interfaceFunctionName="Resistor" ordering="4" parent="-108078b6:1345b8f2778:-79f9" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="11"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="11.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="11.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="230.0" y="260.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-794f" ordering="1" parent="-108078b6:1345b8f2778:-79d7" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-7950" ordering="1" parent="-108078b6:1345b8f2778:-79d7" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="-108078b6:1345b8f2778:-79d4" interfaceFunctionName="Resistor" ordering="5" parent="-108078b6:1345b8f2778:-79f9" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="60"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="60.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="60.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="300.0" y="130.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-7958" ordering="1" parent="-108078b6:1345b8f2778:-79d4" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-7959" ordering="1" parent="-108078b6:1345b8f2778:-79d4" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitLink id="-108078b6:1345b8f2778:-79c8" parent="-108078b6:1345b8f2778:-79f9" source="-108078b6:1345b8f2778:-7966" target="-108078b6:1345b8f2778:-7961"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="50.0" y="216.0"/><mxPoint as="targetPoint" x="110.0" y="150.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="50.0" y="150.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-108078b6:1345b8f2778:-79b6" parent="-108078b6:1345b8f2778:-79f9" source="-108078b6:1345b8f2778:-7958" target="-108078b6:1345b8f2778:-7955"><mxGeometry as="geometry" x="70.0"><mxPoint as="sourcePoint" x="364.0" y="150.0"/><mxPoint as="targetPoint" x="420.0" y="210.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="420.0" y="150.0"/></Array></mxGeometry></ImplicitLink><GroundBlock dependsOnU="1" id="-108078b6:1345b8f2778:-79a2" interfaceFunctionName="Ground" ordering="6" parent="-108078b6:1345b8f2778:-79f9" simulationFunctionName="Ground" simulationFunctionType="DEFAULT" style="Ground;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Ground"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="30.0" width="30.0" x="30.0" y="360.0"/></GroundBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-79a1" ordering="1" parent="-108078b6:1345b8f2778:-79a2" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><Orientation as="orientation" value="NORTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><SplitBlock id="-108078b6:1345b8f2778:-799a" ordering="7" parent="-108078b6:1345b8f2778:-79f9" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="47.0" y="337.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="-108078b6:1345b8f2778:-7999" ordering="1" parent="-108078b6:1345b8f2778:-799a" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-108078b6:1345b8f2778:-7998" ordering="1" parent="-108078b6:1345b8f2778:-799a" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-108078b6:1345b8f2778:-7997" ordering="2" parent="-108078b6:1345b8f2778:-799a" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitLink id="-108078b6:1345b8f2778:-7996" parent="-108078b6:1345b8f2778:-79f9" source="-108078b6:1345b8f2778:-7965" target="-108078b6:1345b8f2778:-7999"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-108078b6:1345b8f2778:-7995" parent="-108078b6:1345b8f2778:-79f9" source="-108078b6:1345b8f2778:-7998" target="-108078b6:1345b8f2778:-79a1"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><SplitBlock id="-108078b6:1345b8f2778:-7993" ordering="8" parent="-108078b6:1345b8f2778:-79f9" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="247.0" y="337.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="-108078b6:1345b8f2778:-7992" ordering="1" parent="-108078b6:1345b8f2778:-7993" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-108078b6:1345b8f2778:-7991" ordering="1" parent="-108078b6:1345b8f2778:-7993" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-108078b6:1345b8f2778:-7990" ordering="2" parent="-108078b6:1345b8f2778:-7993" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitLink id="-108078b6:1345b8f2778:-798f" parent="-108078b6:1345b8f2778:-79f9" source="-108078b6:1345b8f2778:-794f" target="-108078b6:1345b8f2778:-7992"><mxGeometry as="geometry" x="50.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-108078b6:1345b8f2778:-798e" parent="-108078b6:1345b8f2778:-79f9" source="-108078b6:1345b8f2778:-7997" target="-108078b6:1345b8f2778:-7991"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-108078b6:1345b8f2778:-7994" parent="-108078b6:1345b8f2778:-79f9" source="-108078b6:1345b8f2778:-7954" target="-108078b6:1345b8f2778:-7990"><mxGeometry as="geometry" x="50.0"><mxPoint as="sourcePoint" x="420.0" y="294.0"/><mxPoint as="targetPoint" x="250.0" y="340.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="420.0" y="340.0"/><mxPoint x="420.0" y="340.0"/></Array></mxGeometry></ImplicitLink><BasicBlock dependsOnU="1" id="-108078b6:1345b8f2778:-798d" interfaceFunctionName="CurrentSensor" ordering="9" parent="-108078b6:1345b8f2778:-79f9" simulationFunctionName="CurrentSensor" simulationFunctionType="DEFAULT" style="CurrentSensor;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CurrentSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="i"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="190.0" y="190.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-798c" ordering="1" parent="-108078b6:1345b8f2778:-798d" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="6.0"/></ImplicitOutputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-798b" ordering="2" parent="-108078b6:1345b8f2778:-798d" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="26.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-798a" ordering="1" parent="-108078b6:1345b8f2778:-798d" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><SplitBlock id="-108078b6:1345b8f2778:-7988" ordering="10" parent="-108078b6:1345b8f2778:-79f9" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="167.0" y="147.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="-108078b6:1345b8f2778:-7987" ordering="1" parent="-108078b6:1345b8f2778:-7988" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-108078b6:1345b8f2778:-7986" ordering="1" parent="-108078b6:1345b8f2778:-7988" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-108078b6:1345b8f2778:-7985" ordering="2" parent="-108078b6:1345b8f2778:-7988" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitLink id="-108078b6:1345b8f2778:-7984" parent="-108078b6:1345b8f2778:-79f9" source="-108078b6:1345b8f2778:-7960" target="-108078b6:1345b8f2778:-7987"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-108078b6:1345b8f2778:-7983" parent="-108078b6:1345b8f2778:-79f9" source="-108078b6:1345b8f2778:-7986" target="-108078b6:1345b8f2778:-7959"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="250.0" y="150.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-108078b6:1345b8f2778:-7989" parent="-108078b6:1345b8f2778:-79f9" source="-108078b6:1345b8f2778:-7985" target="-108078b6:1345b8f2778:-798a"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="186.0" y="210.0"/><mxPoint as="targetPoint" x="170.0" y="150.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="170.0" y="210.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-108078b6:1345b8f2778:-7982" parent="-108078b6:1345b8f2778:-79f9" source="-108078b6:1345b8f2778:-798c" target="-108078b6:1345b8f2778:-7950"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="234.0" y="200.0"/><mxPoint as="targetPoint" x="250.0" y="260.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="250.0" y="200.0"/></Array></mxGeometry></ImplicitLink><BasicBlock dependsOnU="1" id="-108078b6:1345b8f2778:-797a" interfaceFunctionName="CSCOPE" ordering="11" parent="-108078b6:1345b8f2778:-79f9" simulationFunctionName="cscope" simulationFunctionType="C_OR_FORTRAN" style="CSCOPE;flip=false;mirror=false"><ScilabString as="exprs" height="10" width="1"><data column="0" line="0" value="1 3 5 7 9 11 13 15"/><data column="0" line="1" value="-1"/><data column="0" line="2" value="[]"/><data column="0" line="3" value="[600;400]"/><data column="0" line="4" value="0"/><data column="0" line="5" value="3"/><data column="0" line="6" value="10"/><data column="0" line="7" value="20"/><data column="0" line="8" value="0"/><data column="0" line="9" value=""/></ScilabString><ScilabDouble as="realParameters" height="4" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="0.0"/><data column="0" line="2" realPart="3.0"/><data column="0" line="3" realPart="10.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="15" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="1.0"/><data column="0" line="4" realPart="3.0"/><data column="0" line="5" realPart="5.0"/><data column="0" line="6" realPart="7.0"/><data column="0" line="7" realPart="9.0"/><data column="0" line="8" realPart="11.0"/><data column="0" line="9" realPart="13.0"/><data column="0" line="10" realPart="15.0"/><data column="0" line="11" realPart="-1.0"/><data column="0" line="12" realPart="-1.0"/><data column="0" line="13" realPart="600.0"/><data column="0" line="14" realPart="400.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="490.0" y="200.0"/></BasicBlock><ControlPort dataType="UNKNOW_TYPE" id="-108078b6:1345b8f2778:-7969" ordering="1" parent="-108078b6:1345b8f2778:-797a" style="ControlPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-796a" ordering="1" parent="-108078b6:1345b8f2778:-797a" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitLink id="-108078b6:1345b8f2778:-7974" parent="-108078b6:1345b8f2778:-79f9" source="-108078b6:1345b8f2778:-798b" target="-108078b6:1345b8f2778:-796a"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="234.0" y="220.0"/><mxPoint as="targetPoint" x="480.0" y="220.0"/></mxGeometry></ExplicitLink><BasicBlock blockType="h" id="-108078b6:1345b8f2778:-796e" interfaceFunctionName="CLOCK_c" ordering="12" parent="-108078b6:1345b8f2778:-79f9" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="119.0"/><data column="1" line="0" realPart="-150.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-1de3cc81:16a44b61d89:-7f99"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-1de3cc81:16a44b61d89:-7f99"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.1"/><data column="0" line="1" value="0.1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.1"/><data column="0" line="1" realPart="0.1"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.1"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-1de3cc81:16a44b61d89:-7f97"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-1de3cc81:16a44b61d89:-7f97"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="123.3773266666667"/><data column="1" line="0" realPart="-169.33333333333331"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="7.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="5.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-1de3cc81:16a44b61d89:-7f94"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-1de3cc81:16a44b61d89:-7f94"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="100.0"/><data column="0" line="2" realPart="133.8773266666667"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-44.0"/><data column="0" line="1" realPart="-180.0"/><data column="0" line="2" realPart="-158.33333333333331"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="132.71066000000005"/><data column="0" line="1" realPart="149.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-173.33333333333331"/><data column="0" line="1" realPart="-126.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="135.04399333333336"/><data column="0" line="1" realPart="140.70999999999998"/><data column="0" line="2" realPart="100.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-173.33333333333331"/><data column="0" line="1" realPart="-50.0"/><data column="0" line="2" realPart="-50.0"/><data column="0" line="3" realPart="4.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="490.0" y="110.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="-108078b6:1345b8f2778:-796d" ordering="1" parent="-108078b6:1345b8f2778:-796e" style="CommandPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><CommandControlLink id="-108078b6:1345b8f2778:-796c" parent="-108078b6:1345b8f2778:-79f9" source="-108078b6:1345b8f2778:-796d" target="-108078b6:1345b8f2778:-7969"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="510.0" y="154.0"/><mxPoint as="targetPoint" x="510.0" y="190.0"/></mxGeometry></CommandControlLink><TextBlock id="-108078b6:1345b8f2778:-7963" parent="-108078b6:1345b8f2778:-79f9" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="E1 = 120V"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="E1 = 120V"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="E1 = 120V"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="80.0" y="220.0"/></TextBlock><TextBlock id="-108078b6:1345b8f2778:-795e" parent="-108078b6:1345b8f2778:-79f9" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="R1 = 40"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="R1 = 40"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="R1 = 40"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="100.0" y="100.0"/></TextBlock><TextBlock id="-108078b6:1345b8f2778:-795d" parent="-108078b6:1345b8f2778:-79f9" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="R3 = 60"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="R3 = 60"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="R3 = 60"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="300.0" y="100.0"/></TextBlock><TextBlock id="-108078b6:1345b8f2778:-795c" parent="-108078b6:1345b8f2778:-79f9" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="R2"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="R2"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="R2"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="260.0" y="260.0"/></TextBlock><TextBlock id="-108078b6:1345b8f2778:-795b" parent="-108078b6:1345b8f2778:-79f9" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="E2 = 65V"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="E2 = 65V"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="E2 = 65V"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="350.0" y="250.0"/></TextBlock><TextBlock id="-108078b6:1345b8f2778:-7952" parent="-108078b6:1345b8f2778:-79f9" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="double click R2 to change its value<br><br>values of R2: 11, 19, 46, 176 <br> ohm<br><br>r"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="double click R2 to change its value<br><br>values of R2: 11, 19, 46, 176 <br> ohm<br><br>r"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="double click R2 to change its value<br><br>values of R2: 11, 19, 46, 176 <br> ohm<br><br>r"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="110.0" y="430.0"/></TextBlock></root></mxGraphModel><mxCell as="defaultParent" id="-108078b6:1345b8f2778:-79f9" parent="-108078b6:1345b8f2778:-79f8"/></XcosDiagram>
\ No newline at end of file diff --git a/Working_Examples/293/CH3/EX3.12/eg3_12.sce b/Working_Examples/293/CH3/EX3.12/eg3_12.sce new file mode 100755 index 0000000..178b314 --- /dev/null +++ b/Working_Examples/293/CH3/EX3.12/eg3_12.sce @@ -0,0 +1,29 @@ +//a
+// circuit parameters
+E1 = 120;
+R1 = 40;
+R2 = 20;
+R3 = 60;
+
+Voc = E1*R2/(R2 + R1); //open circuit voltage appearing at terminal 1
+Ri = R3 + (R1*R2/(R1 + R2)); //equivalent resistance looking into the network from terminal pair 01
+
+function I = Il(Rl)
+ I = Voc/(Ri + Rl) //current through Rl
+endfunction
+
+Il1 = Il(10); //Rl = 10 ohm
+Il2 = Il(50); //Rl = 50 ohm
+Il3 = Il(200); //Rl = 200 ohm
+
+disp("a")
+disp(Il1,"Il (Rl = 10ohm) = ")
+disp(Il2,"Il (Rl = 50ohm) = ")
+disp(Il3,"Il (Rl = 200ohm) = ")
+
+//b
+//for maximum power Rl = Ri
+Rl = Ri;
+Plmax = (Voc/(2*Ri))^2 * Ri ; //maximum power to Rl
+disp("b")
+disp(Plmax,"maximum power to Rl(in Watt) = ")
\ No newline at end of file diff --git a/Working_Examples/293/CH3/EX3.13/eg3_13.sce b/Working_Examples/293/CH3/EX3.13/eg3_13.sce new file mode 100755 index 0000000..7de1797 --- /dev/null +++ b/Working_Examples/293/CH3/EX3.13/eg3_13.sce @@ -0,0 +1,15 @@ +//circuit parameters
+//voltage sources
+E1 = 120;
+E2 = 65;
+//resistances
+R1 = 40;
+R2 = 11;
+R3 = 60;
+
+I = (E1/R1) + (E2/R3); //norton's current source
+Req = R1*R3/(R1 + R3); //equivalent resistance
+
+I2 = I*Req/(Req + R2); //current flowing through R2
+
+disp(I2,"current flowing through R2 = ")
\ No newline at end of file diff --git a/Working_Examples/293/CH3/EX3.14/eg3_14.pdf b/Working_Examples/293/CH3/EX3.14/eg3_14.pdf Binary files differnew file mode 100755 index 0000000..2a35a98 --- /dev/null +++ b/Working_Examples/293/CH3/EX3.14/eg3_14.pdf diff --git a/Working_Examples/293/CH3/EX3.14/eg3_14.xcos b/Working_Examples/293/CH3/EX3.14/eg3_14.xcos new file mode 100755 index 0000000..717c835 --- /dev/null +++ b/Working_Examples/293/CH3/EX3.14/eg3_14.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" finalIntegrationTime="10.0" title="eg3_14"><!--Xcos - 1.0 - scilab-5.5.2 - 20160406 2040--><mxGraphModel as="model"><root><mxCell id="-108078b6:1345b8f2778:-794c"/><mxCell id="-108078b6:1345b8f2778:-794d" parent="-108078b6:1345b8f2778:-794c"/><BasicBlock angle="90" id="-108078b6:1345b8f2778:-7944" interfaceFunctionName="ConstantVoltage" ordering="1" parent="-108078b6:1345b8f2778:-794d" simulationFunctionName="ConstantVoltage" simulationFunctionType="DEFAULT" style="ConstantVoltage;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="39.6"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="39.6"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ConstantVoltage"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="V"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="39.6"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="100.0" y="230.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-793f" ordering="1" parent="-108078b6:1345b8f2778:-7944" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-7940" ordering="1" parent="-108078b6:1345b8f2778:-7944" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock angle="90" dependsOnU="1" id="-108078b6:1345b8f2778:-7936" interfaceFunctionName="Resistor" ordering="2" parent="-108078b6:1345b8f2778:-794d" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="66000"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="66000.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="66000.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="100.0" y="140.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-78df" ordering="1" parent="-108078b6:1345b8f2778:-7936" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-78e0" ordering="1" parent="-108078b6:1345b8f2778:-7936" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitLink id="-108078b6:1345b8f2778:-792d" parent="-108078b6:1345b8f2778:-794d" source="-108078b6:1345b8f2778:-78df" target="-108078b6:1345b8f2778:-7940"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="120.0" y="226.0"/><mxPoint as="targetPoint" x="120.0" y="190.0"/></mxGeometry></ImplicitLink><GroundBlock dependsOnU="1" id="-108078b6:1345b8f2778:-7927" interfaceFunctionName="Ground" ordering="3" parent="-108078b6:1345b8f2778:-794d" simulationFunctionName="Ground" simulationFunctionType="DEFAULT" style="Ground;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Ground"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="30.0" width="30.0" x="100.0" y="320.0"/></GroundBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-7926" ordering="1" parent="-108078b6:1345b8f2778:-7927" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><Orientation as="orientation" value="NORTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock angle="90" dependsOnU="1" id="-108078b6:1345b8f2778:-7921" interfaceFunctionName="Resistor" ordering="4" parent="-108078b6:1345b8f2778:-794d" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="147000"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="147000.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="147000.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="170.0" y="190.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-78d6" ordering="1" parent="-108078b6:1345b8f2778:-7921" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-78d7" ordering="1" parent="-108078b6:1345b8f2778:-7921" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock angle="90" dependsOnU="1" id="-108078b6:1345b8f2778:-791e" interfaceFunctionName="Resistor" ordering="5" parent="-108078b6:1345b8f2778:-794d" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="100000"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="260.0" y="190.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-78d2" ordering="1" parent="-108078b6:1345b8f2778:-791e" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-78d3" ordering="1" parent="-108078b6:1345b8f2778:-791e" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><SplitBlock id="-108078b6:1345b8f2778:-7913" ordering="6" parent="-108078b6:1345b8f2778:-794d" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="117.0" y="297.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="-108078b6:1345b8f2778:-7912" ordering="1" parent="-108078b6:1345b8f2778:-7913" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-108078b6:1345b8f2778:-7911" ordering="1" parent="-108078b6:1345b8f2778:-7913" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-108078b6:1345b8f2778:-7910" ordering="2" parent="-108078b6:1345b8f2778:-7913" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitLink id="-108078b6:1345b8f2778:-790f" parent="-108078b6:1345b8f2778:-794d" source="-108078b6:1345b8f2778:-793f" target="-108078b6:1345b8f2778:-7912"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-108078b6:1345b8f2778:-790e" parent="-108078b6:1345b8f2778:-794d" source="-108078b6:1345b8f2778:-7911" target="-108078b6:1345b8f2778:-7926"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><SplitBlock id="-108078b6:1345b8f2778:-7909" ordering="7" parent="-108078b6:1345b8f2778:-794d" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="187.0" y="117.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="-108078b6:1345b8f2778:-7908" ordering="1" parent="-108078b6:1345b8f2778:-7909" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-108078b6:1345b8f2778:-7907" ordering="1" parent="-108078b6:1345b8f2778:-7909" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-108078b6:1345b8f2778:-7906" ordering="2" parent="-108078b6:1345b8f2778:-7909" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitLink id="-108078b6:1345b8f2778:-7905" parent="-108078b6:1345b8f2778:-794d" source="-108078b6:1345b8f2778:-78e0" target="-108078b6:1345b8f2778:-7908"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="120.0" y="120.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-108078b6:1345b8f2778:-7904" parent="-108078b6:1345b8f2778:-794d" source="-108078b6:1345b8f2778:-7907" target="-108078b6:1345b8f2778:-78d7"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="190.0" y="120.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="-108078b6:1345b8f2778:-7902" ordering="8" parent="-108078b6:1345b8f2778:-794d" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="187.0" y="297.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="-108078b6:1345b8f2778:-7901" ordering="1" parent="-108078b6:1345b8f2778:-7902" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-108078b6:1345b8f2778:-7900" ordering="1" parent="-108078b6:1345b8f2778:-7902" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-108078b6:1345b8f2778:-78ff" ordering="2" parent="-108078b6:1345b8f2778:-7902" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitLink id="-108078b6:1345b8f2778:-78fe" parent="-108078b6:1345b8f2778:-794d" source="-108078b6:1345b8f2778:-78d6" target="-108078b6:1345b8f2778:-7901"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-108078b6:1345b8f2778:-78fd" parent="-108078b6:1345b8f2778:-794d" source="-108078b6:1345b8f2778:-7910" target="-108078b6:1345b8f2778:-7900"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><VoltageSensorBlock dependsOnU="1" id="-108078b6:1345b8f2778:-78f3" interfaceFunctionName="VoltageSensor" ordering="9" parent="-108078b6:1345b8f2778:-794d" simulationFunctionName="VoltageSensor" simulationFunctionType="DEFAULT" style="VoltageSensor;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="VoltageSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="v"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="350.0" y="190.0"/></VoltageSensorBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-78f2" ordering="1" parent="-108078b6:1345b8f2778:-78f3" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><Orientation as="orientation" value="SOUTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-78f1" ordering="2" parent="-108078b6:1345b8f2778:-78f3" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-78f0" ordering="1" parent="-108078b6:1345b8f2778:-78f3" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><SplitBlock id="-108078b6:1345b8f2778:-78ee" ordering="10" parent="-108078b6:1345b8f2778:-794d" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="277.0" y="117.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="-108078b6:1345b8f2778:-78ed" ordering="1" parent="-108078b6:1345b8f2778:-78ee" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-108078b6:1345b8f2778:-78ec" ordering="1" parent="-108078b6:1345b8f2778:-78ee" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-108078b6:1345b8f2778:-78eb" ordering="2" parent="-108078b6:1345b8f2778:-78ee" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitLink id="-108078b6:1345b8f2778:-78ea" parent="-108078b6:1345b8f2778:-794d" source="-108078b6:1345b8f2778:-7906" target="-108078b6:1345b8f2778:-78ed"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-108078b6:1345b8f2778:-78e9" parent="-108078b6:1345b8f2778:-794d" source="-108078b6:1345b8f2778:-78ec" target="-108078b6:1345b8f2778:-78d3"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-108078b6:1345b8f2778:-78ef" parent="-108078b6:1345b8f2778:-794d" source="-108078b6:1345b8f2778:-78eb" target="-108078b6:1345b8f2778:-78f0"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="346.0" y="210.0"/><mxPoint as="targetPoint" x="280.0" y="120.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="320.0" y="120.0"/><mxPoint x="320.0" y="120.0"/><mxPoint x="320.0" y="210.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="-108078b6:1345b8f2778:-78e7" ordering="11" parent="-108078b6:1345b8f2778:-794d" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="277.0" y="297.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="-108078b6:1345b8f2778:-78e6" ordering="1" parent="-108078b6:1345b8f2778:-78e7" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-108078b6:1345b8f2778:-78e5" ordering="1" parent="-108078b6:1345b8f2778:-78e7" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-108078b6:1345b8f2778:-78e4" ordering="2" parent="-108078b6:1345b8f2778:-78e7" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitLink id="-108078b6:1345b8f2778:-78e3" parent="-108078b6:1345b8f2778:-794d" source="-108078b6:1345b8f2778:-78d2" target="-108078b6:1345b8f2778:-78e6"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-108078b6:1345b8f2778:-78e2" parent="-108078b6:1345b8f2778:-794d" source="-108078b6:1345b8f2778:-78ff" target="-108078b6:1345b8f2778:-78e5"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-108078b6:1345b8f2778:-78e8" parent="-108078b6:1345b8f2778:-794d" source="-108078b6:1345b8f2778:-78f2" target="-108078b6:1345b8f2778:-78e4"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="370.0" y="234.0"/><mxPoint as="targetPoint" x="280.0" y="300.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="370.0" y="300.0"/></Array></mxGeometry></ImplicitLink><TextBlock id="-108078b6:1345b8f2778:-78dd" parent="-108078b6:1345b8f2778:-794d" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="rp = 66K"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="rp = 66K"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="rp = 66K"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="50.0" y="140.0"/></TextBlock><TextBlock id="-108078b6:1345b8f2778:-78db" parent="-108078b6:1345b8f2778:-794d" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="E = 99*0.4 V"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="E = 99*0.4 V"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="E = 99*0.4 V"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="40.0" y="230.0"/></TextBlock><TextBlock id="-108078b6:1345b8f2778:-78da" parent="-108078b6:1345b8f2778:-794d" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="R1 = 147 K"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="R1 = 147 K"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="R1 = 147 K"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="200.0" y="230.0"/></TextBlock><TextBlock id="-108078b6:1345b8f2778:-78d9" parent="-108078b6:1345b8f2778:-794d" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="R2 = 100K"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="R2 = 100K"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="R2 = 100K"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="290.0" y="230.0"/></TextBlock><BasicBlock dependsOnU="1" id="-108078b6:1345b8f2778:-78c9" interfaceFunctionName="CSCOPE" ordering="12" parent="-108078b6:1345b8f2778:-794d" simulationFunctionName="cscope" simulationFunctionType="C_OR_FORTRAN" style="CSCOPE;flip=false;mirror=false"><ScilabString as="exprs" height="10" width="1"><data column="0" line="0" value="1 3 5 7 9 11 13 15"/><data column="0" line="1" value="-1"/><data column="0" line="2" value="[]"/><data column="0" line="3" value="[600;400]"/><data column="0" line="4" value="0"/><data column="0" line="5" value="20"/><data column="0" line="6" value="10"/><data column="0" line="7" value="20"/><data column="0" line="8" value="0"/><data column="0" line="9" value=""/></ScilabString><ScilabDouble as="realParameters" height="4" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="0.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="10.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="15" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="1.0"/><data column="0" line="4" realPart="3.0"/><data column="0" line="5" realPart="5.0"/><data column="0" line="6" realPart="7.0"/><data column="0" line="7" realPart="9.0"/><data column="0" line="8" realPart="11.0"/><data column="0" line="9" realPart="13.0"/><data column="0" line="10" realPart="15.0"/><data column="0" line="11" realPart="-1.0"/><data column="0" line="12" realPart="-1.0"/><data column="0" line="13" realPart="600.0"/><data column="0" line="14" realPart="400.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="440.0" y="190.0"/></BasicBlock><ControlPort dataType="UNKNOW_TYPE" id="-108078b6:1345b8f2778:-78bb" ordering="1" parent="-108078b6:1345b8f2778:-78c9" style="ControlPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-78bc" ordering="1" parent="-108078b6:1345b8f2778:-78c9" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitLink id="-108078b6:1345b8f2778:-78c6" parent="-108078b6:1345b8f2778:-794d" source="-108078b6:1345b8f2778:-78f1" target="-108078b6:1345b8f2778:-78bc"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="394.0" y="210.0"/><mxPoint as="targetPoint" x="430.0" y="210.0"/></mxGeometry></ExplicitLink><BasicBlock blockType="h" id="-108078b6:1345b8f2778:-78c0" interfaceFunctionName="CLOCK_c" ordering="13" parent="-108078b6:1345b8f2778:-794d" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="119.0"/><data column="1" line="0" realPart="-150.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-1de3cc81:16a44b61d89:-7f3b"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-1de3cc81:16a44b61d89:-7f3b"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.1"/><data column="0" line="1" value="0.1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.1"/><data column="0" line="1" realPart="0.1"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.1"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-1de3cc81:16a44b61d89:-7f39"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-1de3cc81:16a44b61d89:-7f39"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="123.3773266666667"/><data column="1" line="0" realPart="-169.33333333333331"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="7.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="5.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-1de3cc81:16a44b61d89:-7f36"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-1de3cc81:16a44b61d89:-7f36"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="100.0"/><data column="0" line="2" realPart="133.8773266666667"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-44.0"/><data column="0" line="1" realPart="-180.0"/><data column="0" line="2" realPart="-158.33333333333331"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="132.71066000000005"/><data column="0" line="1" realPart="149.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-173.33333333333331"/><data column="0" line="1" realPart="-126.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="135.04399333333336"/><data column="0" line="1" realPart="140.70999999999998"/><data column="0" line="2" realPart="100.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-173.33333333333331"/><data column="0" line="1" realPart="-50.0"/><data column="0" line="2" realPart="-50.0"/><data column="0" line="3" realPart="4.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="440.0" y="100.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="-108078b6:1345b8f2778:-78bf" ordering="1" parent="-108078b6:1345b8f2778:-78c0" style="CommandPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><CommandControlLink id="-108078b6:1345b8f2778:-78be" parent="-108078b6:1345b8f2778:-794d" source="-108078b6:1345b8f2778:-78bf" target="-108078b6:1345b8f2778:-78bb"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="460.0" y="144.0"/><mxPoint as="targetPoint" x="460.0" y="190.0"/></mxGeometry></CommandControlLink></root></mxGraphModel><mxCell as="defaultParent" id="-108078b6:1345b8f2778:-794d" parent="-108078b6:1345b8f2778:-794c"/></XcosDiagram>
\ No newline at end of file diff --git a/Working_Examples/293/CH3/EX3.15/eg3_15.pdf b/Working_Examples/293/CH3/EX3.15/eg3_15.pdf Binary files differnew file mode 100755 index 0000000..6f2f32b --- /dev/null +++ b/Working_Examples/293/CH3/EX3.15/eg3_15.pdf diff --git a/Working_Examples/293/CH3/EX3.15/eg3_15.xcos b/Working_Examples/293/CH3/EX3.15/eg3_15.xcos new file mode 100755 index 0000000..dce3033 --- /dev/null +++ b/Working_Examples/293/CH3/EX3.15/eg3_15.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" finalIntegrationTime="10.0" title="eg3_15"><!--Xcos - 1.0 - scilab-5.5.2 - 20160406 2040--><mxGraphModel as="model"><root><mxCell id="-108078b6:1345b8f2778:-78b8"/><mxCell id="-108078b6:1345b8f2778:-78b9" parent="-108078b6:1345b8f2778:-78b8"/><BasicBlock angle="90" id="-108078b6:1345b8f2778:-78b0" interfaceFunctionName="ConstantVoltage" ordering="1" parent="-108078b6:1345b8f2778:-78b9" simulationFunctionName="ConstantVoltage" simulationFunctionType="DEFAULT" style="ConstantVoltage;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="220"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="220.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ConstantVoltage"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="V"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="220.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="100.0" y="200.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-780a" ordering="1" parent="-108078b6:1345b8f2778:-78b0" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-780b" ordering="1" parent="-108078b6:1345b8f2778:-78b0" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="-108078b6:1345b8f2778:-78a6" interfaceFunctionName="Resistor" ordering="2" parent="-108078b6:1345b8f2778:-78b9" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="30"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="30.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="30.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="370.0" y="230.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-77fb" ordering="1" parent="-108078b6:1345b8f2778:-78a6" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-77fc" ordering="1" parent="-108078b6:1345b8f2778:-78a6" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><GroundBlock dependsOnU="1" id="-108078b6:1345b8f2778:-789e" interfaceFunctionName="Ground" ordering="3" parent="-108078b6:1345b8f2778:-78b9" simulationFunctionName="Ground" simulationFunctionType="DEFAULT" style="Ground;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Ground"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="30.0" width="30.0" x="100.0" y="400.0"/></GroundBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-789d" ordering="1" parent="-108078b6:1345b8f2778:-789e" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><Orientation as="orientation" value="NORTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="-108078b6:1345b8f2778:-7892" interfaceFunctionName="CurrentSensor" ordering="4" parent="-108078b6:1345b8f2778:-78b9" simulationFunctionName="CurrentSensor" simulationFunctionType="DEFAULT" style="CurrentSensor;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CurrentSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="i"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="140.0" y="90.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-7891" ordering="1" parent="-108078b6:1345b8f2778:-7892" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="6.0"/></ImplicitOutputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-7890" ordering="2" parent="-108078b6:1345b8f2778:-7892" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="26.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-788f" ordering="1" parent="-108078b6:1345b8f2778:-7892" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><BasicBlock angle="90" dependsOnU="1" id="-108078b6:1345b8f2778:-788a" interfaceFunctionName="Resistor" ordering="5" parent="-108078b6:1345b8f2778:-78b9" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="5"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="310.0" y="280.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-77f3" ordering="1" parent="-108078b6:1345b8f2778:-788a" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-77f4" ordering="1" parent="-108078b6:1345b8f2778:-788a" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock angle="90" dependsOnU="1" id="-108078b6:1345b8f2778:-7887" interfaceFunctionName="Resistor" ordering="6" parent="-108078b6:1345b8f2778:-78b9" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="24"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="24.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="24.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="430.0" y="280.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-77ef" ordering="1" parent="-108078b6:1345b8f2778:-7887" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-77f0" ordering="1" parent="-108078b6:1345b8f2778:-7887" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock angle="90" dependsOnU="1" id="-108078b6:1345b8f2778:-7884" interfaceFunctionName="Resistor" ordering="7" parent="-108078b6:1345b8f2778:-78b9" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="20"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="20.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="20.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="430.0" y="180.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-77f7" ordering="1" parent="-108078b6:1345b8f2778:-7884" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-77f8" ordering="1" parent="-108078b6:1345b8f2778:-7884" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock angle="90" dependsOnU="1" id="-108078b6:1345b8f2778:-7881" interfaceFunctionName="Resistor" ordering="8" parent="-108078b6:1345b8f2778:-78b9" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="50"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="50.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="50.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="310.0" y="180.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-77ff" ordering="1" parent="-108078b6:1345b8f2778:-7881" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-7800" ordering="1" parent="-108078b6:1345b8f2778:-7881" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><SplitBlock id="-108078b6:1345b8f2778:-7857" ordering="9" parent="-108078b6:1345b8f2778:-78b9" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="327.0" y="247.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="-108078b6:1345b8f2778:-7856" ordering="1" parent="-108078b6:1345b8f2778:-7857" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-108078b6:1345b8f2778:-7855" ordering="1" parent="-108078b6:1345b8f2778:-7857" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-108078b6:1345b8f2778:-7854" ordering="2" parent="-108078b6:1345b8f2778:-7857" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitLink id="-108078b6:1345b8f2778:-7853" parent="-108078b6:1345b8f2778:-78b9" source="-108078b6:1345b8f2778:-77ff" target="-108078b6:1345b8f2778:-7856"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-108078b6:1345b8f2778:-7852" parent="-108078b6:1345b8f2778:-78b9" source="-108078b6:1345b8f2778:-7855" target="-108078b6:1345b8f2778:-77f4"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-108078b6:1345b8f2778:-7858" parent="-108078b6:1345b8f2778:-78b9" source="-108078b6:1345b8f2778:-7854" target="-108078b6:1345b8f2778:-77fc"><mxGeometry as="geometry" y="40.0"><mxPoint as="sourcePoint" x="366.0" y="290.0"/><mxPoint as="targetPoint" x="330.0" y="280.0"/></mxGeometry></ImplicitLink><SplitBlock id="-108078b6:1345b8f2778:-7850" ordering="10" parent="-108078b6:1345b8f2778:-78b9" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="447.0" y="247.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="-108078b6:1345b8f2778:-784f" ordering="1" parent="-108078b6:1345b8f2778:-7850" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-108078b6:1345b8f2778:-784e" ordering="1" parent="-108078b6:1345b8f2778:-7850" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-108078b6:1345b8f2778:-784d" ordering="2" parent="-108078b6:1345b8f2778:-7850" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitLink id="-108078b6:1345b8f2778:-784c" parent="-108078b6:1345b8f2778:-78b9" source="-108078b6:1345b8f2778:-77f7" target="-108078b6:1345b8f2778:-784f"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-108078b6:1345b8f2778:-784b" parent="-108078b6:1345b8f2778:-78b9" source="-108078b6:1345b8f2778:-784e" target="-108078b6:1345b8f2778:-77f0"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-108078b6:1345b8f2778:-7851" parent="-108078b6:1345b8f2778:-78b9" source="-108078b6:1345b8f2778:-77fb" target="-108078b6:1345b8f2778:-784d"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="414.0" y="250.0"/><mxPoint as="targetPoint" x="450.0" y="250.0"/></mxGeometry></ImplicitLink><SplitBlock id="-108078b6:1345b8f2778:-7838" ordering="11" parent="-108078b6:1345b8f2778:-78b9" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="117.0" y="377.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="-108078b6:1345b8f2778:-7837" ordering="1" parent="-108078b6:1345b8f2778:-7838" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-108078b6:1345b8f2778:-7836" ordering="1" parent="-108078b6:1345b8f2778:-7838" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-108078b6:1345b8f2778:-7835" ordering="2" parent="-108078b6:1345b8f2778:-7838" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitLink id="-108078b6:1345b8f2778:-7834" parent="-108078b6:1345b8f2778:-78b9" source="-108078b6:1345b8f2778:-780a" target="-108078b6:1345b8f2778:-7837"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-108078b6:1345b8f2778:-7833" parent="-108078b6:1345b8f2778:-78b9" source="-108078b6:1345b8f2778:-7836" target="-108078b6:1345b8f2778:-789d"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><SplitBlock id="-108078b6:1345b8f2778:-7831" ordering="12" parent="-108078b6:1345b8f2778:-78b9" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="327.0" y="347.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="-108078b6:1345b8f2778:-7830" ordering="1" parent="-108078b6:1345b8f2778:-7831" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-108078b6:1345b8f2778:-782f" ordering="1" parent="-108078b6:1345b8f2778:-7831" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-108078b6:1345b8f2778:-782e" ordering="2" parent="-108078b6:1345b8f2778:-7831" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitLink id="-108078b6:1345b8f2778:-782d" parent="-108078b6:1345b8f2778:-78b9" source="-108078b6:1345b8f2778:-77f3" target="-108078b6:1345b8f2778:-7830"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-108078b6:1345b8f2778:-782c" parent="-108078b6:1345b8f2778:-78b9" source="-108078b6:1345b8f2778:-7835" target="-108078b6:1345b8f2778:-782f"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="330.0" y="380.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-108078b6:1345b8f2778:-7832" parent="-108078b6:1345b8f2778:-78b9" source="-108078b6:1345b8f2778:-77ef" target="-108078b6:1345b8f2778:-782e"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="450.0" y="324.0"/><mxPoint as="targetPoint" x="330.0" y="350.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="450.0" y="350.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-108078b6:1345b8f2778:-782b" parent="-108078b6:1345b8f2778:-78b9" source="-108078b6:1345b8f2778:-788f" target="-108078b6:1345b8f2778:-780b"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="136.0" y="110.0"/><mxPoint as="targetPoint" x="120.0" y="200.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="120.0" y="110.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="-108078b6:1345b8f2778:-7829" ordering="13" parent="-108078b6:1345b8f2778:-78b9" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="387.0" y="147.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="-108078b6:1345b8f2778:-7828" ordering="1" parent="-108078b6:1345b8f2778:-7829" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-108078b6:1345b8f2778:-7827" ordering="1" parent="-108078b6:1345b8f2778:-7829" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-108078b6:1345b8f2778:-7826" ordering="2" parent="-108078b6:1345b8f2778:-7829" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitLink id="-108078b6:1345b8f2778:-7825" parent="-108078b6:1345b8f2778:-78b9" source="-108078b6:1345b8f2778:-7800" target="-108078b6:1345b8f2778:-7828"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="330.0" y="150.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-108078b6:1345b8f2778:-7824" parent="-108078b6:1345b8f2778:-78b9" source="-108078b6:1345b8f2778:-7827" target="-108078b6:1345b8f2778:-77f8"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="450.0" y="150.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-108078b6:1345b8f2778:-782a" parent="-108078b6:1345b8f2778:-78b9" source="-108078b6:1345b8f2778:-7891" target="-108078b6:1345b8f2778:-7826"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="184.0" y="100.0"/><mxPoint as="targetPoint" x="390.0" y="150.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="390.0" y="100.0"/></Array></mxGeometry></ImplicitLink><BasicBlock dependsOnU="1" id="-108078b6:1345b8f2778:-781c" interfaceFunctionName="CSCOPE" ordering="14" parent="-108078b6:1345b8f2778:-78b9" simulationFunctionName="cscope" simulationFunctionType="C_OR_FORTRAN" style="CSCOPE;flip=false;mirror=false"><ScilabString as="exprs" height="10" width="1"><data column="0" line="0" value="1 3 5 7 9 11 13 15"/><data column="0" line="1" value="-1"/><data column="0" line="2" value="[]"/><data column="0" line="3" value="[600;400]"/><data column="0" line="4" value="0"/><data column="0" line="5" value="10.2"/><data column="0" line="6" value="10"/><data column="0" line="7" value="20"/><data column="0" line="8" value="0"/><data column="0" line="9" value=""/></ScilabString><ScilabDouble as="realParameters" height="4" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="0.0"/><data column="0" line="2" realPart="10.2"/><data column="0" line="3" realPart="10.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="15" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="1.0"/><data column="0" line="4" realPart="3.0"/><data column="0" line="5" realPart="5.0"/><data column="0" line="6" realPart="7.0"/><data column="0" line="7" realPart="9.0"/><data column="0" line="8" realPart="11.0"/><data column="0" line="9" realPart="13.0"/><data column="0" line="10" realPart="15.0"/><data column="0" line="11" realPart="-1.0"/><data column="0" line="12" realPart="-1.0"/><data column="0" line="13" realPart="600.0"/><data column="0" line="14" realPart="400.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="510.0" y="100.0"/></BasicBlock><ControlPort dataType="UNKNOW_TYPE" id="-108078b6:1345b8f2778:-77e7" ordering="1" parent="-108078b6:1345b8f2778:-781c" style="ControlPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-77e8" ordering="1" parent="-108078b6:1345b8f2778:-781c" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><BasicBlock blockType="h" id="-108078b6:1345b8f2778:-7814" interfaceFunctionName="CLOCK_c" ordering="15" parent="-108078b6:1345b8f2778:-78b9" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="119.0"/><data column="1" line="0" realPart="-150.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-1de3cc81:16a44b61d89:-7ed3"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-1de3cc81:16a44b61d89:-7ed3"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.1"/><data column="0" line="1" value="0.1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.1"/><data column="0" line="1" realPart="0.1"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.1"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-1de3cc81:16a44b61d89:-7ed1"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-1de3cc81:16a44b61d89:-7ed1"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="123.3773266666667"/><data column="1" line="0" realPart="-169.33333333333331"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="7.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="5.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-1de3cc81:16a44b61d89:-7ece"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-1de3cc81:16a44b61d89:-7ece"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="100.0"/><data column="0" line="2" realPart="133.8773266666667"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-44.0"/><data column="0" line="1" realPart="-180.0"/><data column="0" line="2" realPart="-158.33333333333331"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="132.71066000000005"/><data column="0" line="1" realPart="149.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-173.33333333333331"/><data column="0" line="1" realPart="-126.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="135.04399333333336"/><data column="0" line="1" realPart="140.70999999999998"/><data column="0" line="2" realPart="100.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-173.33333333333331"/><data column="0" line="1" realPart="-50.0"/><data column="0" line="2" realPart="-50.0"/><data column="0" line="3" realPart="4.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="510.0" y="20.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="-108078b6:1345b8f2778:-7813" ordering="1" parent="-108078b6:1345b8f2778:-7814" style="CommandPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><CommandControlLink id="-108078b6:1345b8f2778:-7812" parent="-108078b6:1345b8f2778:-78b9" source="-108078b6:1345b8f2778:-7813" target="-108078b6:1345b8f2778:-77e7"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="530.0" y="64.0"/><mxPoint as="targetPoint" x="530.0" y="100.0"/></mxGeometry></CommandControlLink><ExplicitLink id="-108078b6:1345b8f2778:-7811" parent="-108078b6:1345b8f2778:-78b9" source="-108078b6:1345b8f2778:-7890" target="-108078b6:1345b8f2778:-77e8"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="184.0" y="120.0"/><mxPoint as="targetPoint" x="500.0" y="120.0"/></mxGeometry></ExplicitLink><TextBlock id="-108078b6:1345b8f2778:-7808" parent="-108078b6:1345b8f2778:-78b9" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="E = 220V"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="E = 220V"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="E = 220V"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="50.0" y="200.0"/></TextBlock><TextBlock id="-108078b6:1345b8f2778:-7807" parent="-108078b6:1345b8f2778:-78b9" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="Ra = 20"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="Ra = 20"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="Ra = 20"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="480.0" y="180.0"/></TextBlock><TextBlock id="-108078b6:1345b8f2778:-7806" parent="-108078b6:1345b8f2778:-78b9" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="Rd = 24"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="Rd = 24"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="Rd = 24"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="480.0" y="270.0"/></TextBlock><TextBlock id="-108078b6:1345b8f2778:-7805" parent="-108078b6:1345b8f2778:-78b9" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="Rb = 30"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="Rb = 30"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="Rb = 30"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="370.0" y="200.0"/></TextBlock><TextBlock id="-108078b6:1345b8f2778:-7804" parent="-108078b6:1345b8f2778:-78b9" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="Rc = 50"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="Rc = 50"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="Rc = 50"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="270.0" y="180.0"/></TextBlock><TextBlock id="-108078b6:1345b8f2778:-7802" parent="-108078b6:1345b8f2778:-78b9" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="Re = 5"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="Re = 5"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="Re = 5"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="270.0" y="280.0"/></TextBlock></root></mxGraphModel><mxCell as="defaultParent" id="-108078b6:1345b8f2778:-78b9" parent="-108078b6:1345b8f2778:-78b8"/></XcosDiagram>
\ No newline at end of file diff --git a/Working_Examples/293/CH3/EX3.2/eg3_2.sce b/Working_Examples/293/CH3/EX3.2/eg3_2.sce new file mode 100755 index 0000000..9a23d58 --- /dev/null +++ b/Working_Examples/293/CH3/EX3.2/eg3_2.sce @@ -0,0 +1,10 @@ +V = 100; // volatage supply in volts
+Rs = 40; //resistance in series in ohms
+// parallel resistances in ohms
+Rp1 = 33.33;
+Rp2 = 50;
+Rp3 = 20;
+Rpinv = (1/Rp1)+(1/Rp2)+(1/Rp3); //reciprocal of equivalent resistance in parallel
+Rp = 1/Rpinv; // equivalent esistance in parallel
+Vbc = V*(Rp/(Rs + Rp)); // potential difference across bc
+disp(Vbc,"potential difference across bc = ")
\ No newline at end of file diff --git a/Working_Examples/293/CH3/EX3.3/eg3_3.sce b/Working_Examples/293/CH3/EX3.3/eg3_3.sce new file mode 100755 index 0000000..980d333 --- /dev/null +++ b/Working_Examples/293/CH3/EX3.3/eg3_3.sce @@ -0,0 +1,12 @@ +// resistances in ohms
+R1 = 25;
+R2 = 300;
+R3 = 80;
+R4 = 30;
+R5 = 60;
+
+Rcd = R5*R4/(R5 + R4);
+Rbd1 = Rcd + R3;
+Rbd = Rbd1*R2/(Rbd1 + R2);
+Req = Rbd + R1; // equivalent resistance
+disp(Req, "equivalent resistance = ")
\ No newline at end of file diff --git a/Working_Examples/293/CH3/EX3.4/eg3_4.sce b/Working_Examples/293/CH3/EX3.4/eg3_4.sce new file mode 100755 index 0000000..38faaca --- /dev/null +++ b/Working_Examples/293/CH3/EX3.4/eg3_4.sce @@ -0,0 +1,25 @@ +// resistances in ohms
+R1 = 25;
+R2 = 300;
+R3 = 80;
+R4 = 30;
+R5 = 60;
+
+P5 = 15; //power dissipated in R5 (in watt)
+
+I5 = sqrt(P5/R5); //current flowing through R5
+V5 = R5*I5 ; //voltage across R5
+Vcd = V5; //voltage across cd
+
+I4 = Vcd/R4; //current flowing through R4
+Icd = I5 + I4; //current flowing through cd
+
+Vbd = (Icd*R3)+Vcd ; //voltage across bd
+Ibd = (Vbd/R2)+Icd; //current through bd
+
+V1 = R1*Ibd; //voltage across R1
+
+E = V1 + Vbd;
+disp(E,"E = ")
+
+//Result : Value of E for which power dissipation in R is 15W = 200V
\ No newline at end of file diff --git a/Working_Examples/293/CH3/EX3.5/eg3_5.pdf b/Working_Examples/293/CH3/EX3.5/eg3_5.pdf Binary files differnew file mode 100755 index 0000000..81434c8 --- /dev/null +++ b/Working_Examples/293/CH3/EX3.5/eg3_5.pdf diff --git a/Working_Examples/293/CH3/EX3.5/eg3_5.xcos b/Working_Examples/293/CH3/EX3.5/eg3_5.xcos new file mode 100755 index 0000000..b09dccc --- /dev/null +++ b/Working_Examples/293/CH3/EX3.5/eg3_5.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" finalIntegrationTime="10.0" title="eg3_5"><!--Xcos - 1.0 - scilab-5.5.2 - 20160406 2040--><mxGraphModel as="model"><root><mxCell id="-108078b6:1345b8f2778:-7fff"/><mxCell id="-108078b6:1345b8f2778:-8000" parent="-108078b6:1345b8f2778:-7fff"/><BasicBlock dependsOnU="1" id="-108078b6:1345b8f2778:-7fcd" interfaceFunctionName="Resistor" ordering="1" parent="-108078b6:1345b8f2778:-8000" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="10"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="10.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="10.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="230.0" y="120.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-7fc6" ordering="1" parent="-108078b6:1345b8f2778:-7fcd" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-7fc5" ordering="1" parent="-108078b6:1345b8f2778:-7fcd" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><BasicBlock angle="90" dependsOnU="1" id="-108078b6:1345b8f2778:-7fbd" interfaceFunctionName="Resistor" ordering="2" parent="-108078b6:1345b8f2778:-8000" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="60"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="60.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="60.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="430.0" y="180.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-7fa2" ordering="1" parent="-108078b6:1345b8f2778:-7fbd" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-7fa1" ordering="1" parent="-108078b6:1345b8f2778:-7fbd" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><BasicBlock angle="90" dependsOnU="1" id="-108078b6:1345b8f2778:-7fba" interfaceFunctionName="Resistor" ordering="3" parent="-108078b6:1345b8f2778:-8000" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="20"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="20.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="20.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="350.0" y="180.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-7fa6" ordering="1" parent="-108078b6:1345b8f2778:-7fba" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-7fa5" ordering="1" parent="-108078b6:1345b8f2778:-7fba" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><BasicBlock angle="180" dependsOnU="1" id="-108078b6:1345b8f2778:-7fc0" interfaceFunctionName="Resistor" ordering="4" parent="-108078b6:1345b8f2778:-8000" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=180;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="30"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="30.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="30.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="230.0" y="380.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-7faa" ordering="1" parent="-108078b6:1345b8f2778:-7fc0" style="ImplicitInputPort;align=right;verticalAlign=middle;spacing=10;rotation=180;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-7fa9" ordering="1" parent="-108078b6:1345b8f2778:-7fc0" style="ImplicitOutputPort;align=left;verticalAlign=middle;spacing=10;rotation=180;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitOutputPort><GroundBlock dependsOnU="1" id="-108078b6:1345b8f2778:-7f9a" interfaceFunctionName="Ground" ordering="5" parent="-108078b6:1345b8f2778:-8000" simulationFunctionName="Ground" simulationFunctionType="DEFAULT" style="Ground;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Ground"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="30.0" width="30.0" x="90.0" y="420.0"/></GroundBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-7f99" ordering="1" parent="-108078b6:1345b8f2778:-7f9a" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><Orientation as="orientation" value="NORTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitLink id="-108078b6:1345b8f2778:-7f97" parent="-108078b6:1345b8f2778:-8000" source="-108078b6:1345b8f2778:-7fd7" target="-108078b6:1345b8f2778:-7fc6"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="110.0" y="176.0"/><mxPoint as="targetPoint" x="220.0" y="140.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="110.0" y="140.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="-108078b6:1345b8f2778:-7f86" ordering="6" parent="-108078b6:1345b8f2778:-8000" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="407.0" y="157.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-108078b6:1345b8f2778:-7f84" ordering="1" parent="-108078b6:1345b8f2778:-7f86" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-108078b6:1345b8f2778:-7f83" ordering="2" parent="-108078b6:1345b8f2778:-7f86" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-108078b6:1345b8f2778:-7f85" ordering="1" parent="-108078b6:1345b8f2778:-7f86" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-108078b6:1345b8f2778:-7f82" parent="-108078b6:1345b8f2778:-8000" source="-108078b6:1345b8f2778:-7fa6" target="-108078b6:1345b8f2778:-7f85"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="370.0" y="160.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-108078b6:1345b8f2778:-7f81" parent="-108078b6:1345b8f2778:-8000" source="-108078b6:1345b8f2778:-7f84" target="-108078b6:1345b8f2778:-7fa2"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="450.0" y="160.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-108078b6:1345b8f2778:-7f87" parent="-108078b6:1345b8f2778:-8000" source="-108078b6:1345b8f2778:-7fc5" target="-108078b6:1345b8f2778:-7f83"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="274.0" y="140.0"/><mxPoint as="targetPoint" x="410.0" y="160.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="410.0" y="140.0"/></Array></mxGeometry></ImplicitLink><BasicBlock angle="90" id="-108078b6:1345b8f2778:-7f7d" interfaceFunctionName="ConstantVoltage" ordering="7" parent="-108078b6:1345b8f2778:-8000" simulationFunctionName="ConstantVoltage" simulationFunctionType="DEFAULT" style="ConstantVoltage;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="65"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="65.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ConstantVoltage"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="V"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="65.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="380.0" y="340.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-7f76" ordering="1" parent="-108078b6:1345b8f2778:-7f7d" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-7f75" ordering="1" parent="-108078b6:1345b8f2778:-7f7d" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><BasicBlock angle="90" dependsOnU="1" id="-108078b6:1345b8f2778:-7f69" interfaceFunctionName="CurrentSensor" ordering="8" parent="-108078b6:1345b8f2778:-8000" simulationFunctionName="CurrentSensor" simulationFunctionType="DEFAULT" style="CurrentSensor;rotation=90;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CurrentSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="i"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="350.0" y="250.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-7f67" ordering="2" parent="-108078b6:1345b8f2778:-7f69" style="ExplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="26.0" y="40.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-7f66" ordering="1" parent="-108078b6:1345b8f2778:-7f69" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-7f68" ordering="1" parent="-108078b6:1345b8f2778:-7f69" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="6.0" y="40.0"/></ImplicitOutputPort><ImplicitLink id="-108078b6:1345b8f2778:-7f5a" parent="-108078b6:1345b8f2778:-8000" source="-108078b6:1345b8f2778:-7fa5" target="-108078b6:1345b8f2778:-7f66"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="370.0" y="224.0"/><mxPoint as="targetPoint" x="370.0" y="250.0"/></mxGeometry></ImplicitLink><SplitBlock id="-108078b6:1345b8f2778:-7f54" ordering="9" parent="-108078b6:1345b8f2778:-8000" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="397.0" y="317.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-108078b6:1345b8f2778:-7f52" ordering="1" parent="-108078b6:1345b8f2778:-7f54" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-108078b6:1345b8f2778:-7f51" ordering="2" parent="-108078b6:1345b8f2778:-7f54" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-108078b6:1345b8f2778:-7f53" ordering="1" parent="-108078b6:1345b8f2778:-7f54" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-108078b6:1345b8f2778:-7f50" parent="-108078b6:1345b8f2778:-8000" source="-108078b6:1345b8f2778:-7f68" target="-108078b6:1345b8f2778:-7f53"><mxGeometry as="geometry" y="10.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="360.0" y="320.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-108078b6:1345b8f2778:-7f4f" parent="-108078b6:1345b8f2778:-8000" source="-108078b6:1345b8f2778:-7fa1" target="-108078b6:1345b8f2778:-7f52"><mxGeometry as="geometry" y="10.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="450.0" y="320.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-108078b6:1345b8f2778:-7f55" parent="-108078b6:1345b8f2778:-8000" source="-108078b6:1345b8f2778:-7f51" target="-108078b6:1345b8f2778:-7f76"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="400.0" y="336.0"/><mxPoint as="targetPoint" x="400.0" y="310.0"/></mxGeometry></ImplicitLink><ImplicitLink id="-108078b6:1345b8f2778:-7f4e" parent="-108078b6:1345b8f2778:-8000" source="-108078b6:1345b8f2778:-7f75" target="-108078b6:1345b8f2778:-7faa"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="400.0" y="384.0"/><mxPoint as="targetPoint" x="280.0" y="400.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="400.0" y="400.0"/><mxPoint x="280.0" y="400.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="-108078b6:1345b8f2778:-7f4c" ordering="10" parent="-108078b6:1345b8f2778:-8000" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="107.0" y="397.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-108078b6:1345b8f2778:-7f4a" ordering="1" parent="-108078b6:1345b8f2778:-7f4c" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-108078b6:1345b8f2778:-7f49" ordering="2" parent="-108078b6:1345b8f2778:-7f4c" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-108078b6:1345b8f2778:-7f4b" ordering="1" parent="-108078b6:1345b8f2778:-7f4c" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-108078b6:1345b8f2778:-7f48" parent="-108078b6:1345b8f2778:-8000" source="-108078b6:1345b8f2778:-7fd6" target="-108078b6:1345b8f2778:-7f4b"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="110.0" y="330.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-108078b6:1345b8f2778:-7f47" parent="-108078b6:1345b8f2778:-8000" source="-108078b6:1345b8f2778:-7f4a" target="-108078b6:1345b8f2778:-7f99"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-108078b6:1345b8f2778:-7f4d" parent="-108078b6:1345b8f2778:-8000" source="-108078b6:1345b8f2778:-7fa9" target="-108078b6:1345b8f2778:-7f49"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="226.0" y="400.0"/><mxPoint as="targetPoint" x="110.0" y="400.0"/></mxGeometry></ImplicitLink><BasicBlock dependsOnU="1" id="-108078b6:1345b8f2778:-7f3f" interfaceFunctionName="CSCOPE" ordering="11" parent="-108078b6:1345b8f2778:-8000" simulationFunctionName="cscope" simulationFunctionType="C_OR_FORTRAN" style="CSCOPE;flip=false;mirror=false"><ScilabString as="exprs" height="10" width="1"><data column="0" line="0" value="1 3 5 7 9 11 13 15"/><data column="0" line="1" value="-1"/><data column="0" line="2" value="[]"/><data column="0" line="3" value="[600;400]"/><data column="0" line="4" value="-1"/><data column="0" line="5" value="1"/><data column="0" line="6" value="10"/><data column="0" line="7" value="20"/><data column="0" line="8" value="0"/><data column="0" line="9" value=""/></ScilabString><ScilabDouble as="realParameters" height="4" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="-1.0"/><data column="0" line="2" realPart="1.0"/><data column="0" line="3" realPart="10.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="15" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="1.0"/><data column="0" line="4" realPart="3.0"/><data column="0" line="5" realPart="5.0"/><data column="0" line="6" realPart="7.0"/><data column="0" line="7" realPart="9.0"/><data column="0" line="8" realPart="11.0"/><data column="0" line="9" realPart="13.0"/><data column="0" line="10" realPart="15.0"/><data column="0" line="11" realPart="-1.0"/><data column="0" line="12" realPart="-1.0"/><data column="0" line="13" realPart="600.0"/><data column="0" line="14" realPart="400.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="510.0" y="280.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-7f16" ordering="1" parent="-108078b6:1345b8f2778:-7f3f" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ControlPort dataType="UNKNOW_TYPE" id="-108078b6:1345b8f2778:-7f15" ordering="1" parent="-108078b6:1345b8f2778:-7f3f" style="ControlPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><ExplicitLink id="-108078b6:1345b8f2778:-7f35" parent="-108078b6:1345b8f2778:-8000" source="-108078b6:1345b8f2778:-7f67" target="-108078b6:1345b8f2778:-7f16"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="380.0" y="294.0"/><mxPoint as="targetPoint" x="510.0" y="300.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="380.0" y="300.0"/></Array></mxGeometry></ExplicitLink><BasicBlock blockType="h" id="-108078b6:1345b8f2778:-7f2f" interfaceFunctionName="CLOCK_c" ordering="12" parent="-108078b6:1345b8f2778:-8000" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="119.0"/><data column="1" line="0" realPart="-150.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="7727d8d6:134717c1794:-7f90"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="7727d8d6:134717c1794:-7f90"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.1"/><data column="0" line="1" value="0.1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.1"/><data column="0" line="1" realPart="0.1"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.1"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="7727d8d6:134717c1794:-7f8c"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="7727d8d6:134717c1794:-7f8c"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="124.71066000000002"/><data column="1" line="0" realPart="-164.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="8.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="4.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="7727d8d6:134717c1794:-7f87"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="7727d8d6:134717c1794:-7f87"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="106.0"/><data column="0" line="2" realPart="135.37732666666668"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="4.0"/><data column="0" line="1" realPart="-204.0"/><data column="0" line="2" realPart="-168.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="136.71066000000002"/><data column="0" line="1" realPart="149.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-152.0"/><data column="0" line="1" realPart="-126.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="138.04399333333336"/><data column="0" line="1" realPart="151.70999999999998"/><data column="0" line="2" realPart="111.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-168.0"/><data column="0" line="1" realPart="-58.0"/><data column="0" line="2" realPart="-58.0"/><data column="0" line="3" realPart="-44.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="510.0" y="200.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="7727d8d6:134717c1794:-7f82" ordering="1" parent="-108078b6:1345b8f2778:-7f2f" style="CommandPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><CommandControlLink id="-108078b6:1345b8f2778:-7f2a" parent="-108078b6:1345b8f2778:-8000" source="7727d8d6:134717c1794:-7f82" target="-108078b6:1345b8f2778:-7f15"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="530.0" y="244.0"/><mxPoint as="targetPoint" x="530.0" y="270.0"/></mxGeometry></CommandControlLink><TextBlock id="-108078b6:1345b8f2778:-7ea3" parent="-108078b6:1345b8f2778:-8000" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="E1 = 120V"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="E1 = 120V"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="E1 = 120V"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="40.0" y="250.0"/></TextBlock><TextBlock id="-108078b6:1345b8f2778:-7ea2" parent="-108078b6:1345b8f2778:-8000" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="R1 = 10"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="R1 = 10"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="R1 = 10"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="230.0" y="90.0"/></TextBlock><TextBlock id="-108078b6:1345b8f2778:-7ea1" parent="-108078b6:1345b8f2778:-8000" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="40.0" width="40.0" x="330.0" y="40.0"/></TextBlock><TextBlock id="-108078b6:1345b8f2778:-7ea0" parent="-108078b6:1345b8f2778:-8000" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="R2 = 20"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="R2 = 20"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="R2 = 20"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="300.0" y="180.0"/></TextBlock><TextBlock id="-108078b6:1345b8f2778:-7e9f" parent="-108078b6:1345b8f2778:-8000" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="R3 = 60"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="R3 = 60"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="R3 = 60"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="470.0" y="180.0"/></TextBlock><TextBlock id="-108078b6:1345b8f2778:-7e9e" parent="-108078b6:1345b8f2778:-8000" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="E2 = 65V"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="E2 = 65V"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="E2 = 65V"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="430.0" y="340.0"/></TextBlock><TextBlock id="-108078b6:1345b8f2778:-7e9d" parent="-108078b6:1345b8f2778:-8000" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="R4 = 30"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="R4 = 30"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="R4 = 30"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="230.0" y="350.0"/></TextBlock><BasicBlock angle="90" id="-108078b6:1345b8f2778:-7fde" interfaceFunctionName="ConstantVoltage" ordering="13" parent="-108078b6:1345b8f2778:-8000" simulationFunctionName="ConstantVoltage" simulationFunctionType="DEFAULT" style="ConstantVoltage;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="120"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="120.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ConstantVoltage"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="V"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="120.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="90.0" y="250.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-7fd7" ordering="1" parent="-108078b6:1345b8f2778:-7fde" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-7fd6" ordering="1" parent="-108078b6:1345b8f2778:-7fde" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort></root></mxGraphModel><mxCell as="defaultParent" id="-108078b6:1345b8f2778:-8000" parent="-108078b6:1345b8f2778:-7fff"/></XcosDiagram>
\ No newline at end of file diff --git a/Working_Examples/293/CH3/EX3.6/eg3_6.pdf b/Working_Examples/293/CH3/EX3.6/eg3_6.pdf Binary files differnew file mode 100755 index 0000000..452931f --- /dev/null +++ b/Working_Examples/293/CH3/EX3.6/eg3_6.pdf diff --git a/Working_Examples/293/CH3/EX3.6/eg3_6.xcos b/Working_Examples/293/CH3/EX3.6/eg3_6.xcos new file mode 100755 index 0000000..297fc80 --- /dev/null +++ b/Working_Examples/293/CH3/EX3.6/eg3_6.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" finalIntegrationTime="10.0" title="eg3_6"><!--Xcos - 1.0 - scilab-5.5.2 - 20160406 2040--><mxGraphModel as="model"><root><mxCell id="-108078b6:1345b8f2778:-7edb"/><mxCell id="-108078b6:1345b8f2778:-7edc" parent="-108078b6:1345b8f2778:-7edb"/><BasicBlock angle="90" id="-108078b6:1345b8f2778:-7eda" interfaceFunctionName="ConstantVoltage" ordering="1" parent="-108078b6:1345b8f2778:-7edc" simulationFunctionName="ConstantVoltage" simulationFunctionType="DEFAULT" style="ConstantVoltage;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="120"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="120.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ConstantVoltage"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="V"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="120.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="100.0" y="260.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-7ed9" ordering="1" parent="-108078b6:1345b8f2778:-7eda" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-7ed8" ordering="1" parent="-108078b6:1345b8f2778:-7eda" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="-108078b6:1345b8f2778:-7ed7" interfaceFunctionName="Resistor" ordering="2" parent="-108078b6:1345b8f2778:-7edc" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="10"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="10.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="10.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="180.0" y="130.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-7ed6" ordering="1" parent="-108078b6:1345b8f2778:-7ed7" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-7ed5" ordering="1" parent="-108078b6:1345b8f2778:-7ed7" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><BasicBlock angle="90" dependsOnU="1" id="-108078b6:1345b8f2778:-7ed4" interfaceFunctionName="Resistor" ordering="3" parent="-108078b6:1345b8f2778:-7edc" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="60"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="60.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="60.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="440.0" y="240.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-7ed3" ordering="1" parent="-108078b6:1345b8f2778:-7ed4" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-7ed2" ordering="1" parent="-108078b6:1345b8f2778:-7ed4" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock angle="90" dependsOnU="1" id="-108078b6:1345b8f2778:-7ed1" interfaceFunctionName="Resistor" ordering="4" parent="-108078b6:1345b8f2778:-7edc" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="20"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="20.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="20.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="340.0" y="240.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-7ed0" ordering="1" parent="-108078b6:1345b8f2778:-7ed1" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-7ecf" ordering="1" parent="-108078b6:1345b8f2778:-7ed1" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock angle="180" dependsOnU="1" id="-108078b6:1345b8f2778:-7ece" interfaceFunctionName="Resistor" ordering="5" parent="-108078b6:1345b8f2778:-7edc" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=180;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="30"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="30.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="30.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="240.0" y="390.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-7ecd" ordering="1" parent="-108078b6:1345b8f2778:-7ece" style="ImplicitOutputPort;align=left;verticalAlign=middle;spacing=10;rotation=180;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-7ecc" ordering="1" parent="-108078b6:1345b8f2778:-7ece" style="ImplicitInputPort;align=right;verticalAlign=middle;spacing=10;rotation=180;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitInputPort><GroundBlock dependsOnU="1" id="-108078b6:1345b8f2778:-7ecb" interfaceFunctionName="Ground" ordering="6" parent="-108078b6:1345b8f2778:-7edc" simulationFunctionName="Ground" simulationFunctionType="DEFAULT" style="Ground;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Ground"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="30.0" width="30.0" x="100.0" y="430.0"/></GroundBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-7eca" ordering="1" parent="-108078b6:1345b8f2778:-7ecb" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><Orientation as="orientation" value="NORTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitLink id="-108078b6:1345b8f2778:-7ec9" parent="-108078b6:1345b8f2778:-7edc" source="-108078b6:1345b8f2778:-7ed8" target="-108078b6:1345b8f2778:-7ed5"><mxGeometry as="geometry" x="10.0" y="10.0"><mxPoint as="sourcePoint" x="120.0" y="186.0"/><mxPoint as="targetPoint" x="230.0" y="150.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="120.0" y="150.0"/></Array></mxGeometry></ImplicitLink><BasicBlock angle="90" id="-108078b6:1345b8f2778:-7ec1" interfaceFunctionName="ConstantVoltage" ordering="7" parent="-108078b6:1345b8f2778:-7edc" simulationFunctionName="ConstantVoltage" simulationFunctionType="DEFAULT" style="ConstantVoltage;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="65"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="65.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ConstantVoltage"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="V"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="65.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="390.0" y="350.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-7ec0" ordering="1" parent="-108078b6:1345b8f2778:-7ec1" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-7ebf" ordering="1" parent="-108078b6:1345b8f2778:-7ec1" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="-108078b6:1345b8f2778:-7ebe" interfaceFunctionName="CurrentSensor" ordering="8" parent="-108078b6:1345b8f2778:-7edc" simulationFunctionName="CurrentSensor" simulationFunctionType="DEFAULT" style="CurrentSensor;rotation=0;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CurrentSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="i"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="270.0" y="130.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-7ebd" ordering="1" parent="-108078b6:1345b8f2778:-7ebe" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="6.0"/></ImplicitOutputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-7ebc" ordering="2" parent="-108078b6:1345b8f2778:-7ebe" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="26.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-7ebb" ordering="1" parent="-108078b6:1345b8f2778:-7ebe" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitLink id="-108078b6:1345b8f2778:-7eb2" parent="-108078b6:1345b8f2778:-7edc" source="-108078b6:1345b8f2778:-7ec0" target="-108078b6:1345b8f2778:-7ecc"><mxGeometry as="geometry" x="10.0" y="10.0"><mxPoint as="sourcePoint" x="410.0" y="394.0"/><mxPoint as="targetPoint" x="290.0" y="410.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="410.0" y="410.0"/><mxPoint x="290.0" y="410.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="-108078b6:1345b8f2778:-7eb1" ordering="9" parent="-108078b6:1345b8f2778:-7edc" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="117.0" y="407.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="-108078b6:1345b8f2778:-7eb0" ordering="1" parent="-108078b6:1345b8f2778:-7eb1" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-108078b6:1345b8f2778:-7eaf" ordering="1" parent="-108078b6:1345b8f2778:-7eb1" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-108078b6:1345b8f2778:-7eae" ordering="2" parent="-108078b6:1345b8f2778:-7eb1" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitLink id="-108078b6:1345b8f2778:-7ead" parent="-108078b6:1345b8f2778:-7edc" source="-108078b6:1345b8f2778:-7ed9" target="-108078b6:1345b8f2778:-7eb0"><mxGeometry as="geometry" x="10.0" y="10.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="120.0" y="340.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-108078b6:1345b8f2778:-7eac" parent="-108078b6:1345b8f2778:-7edc" source="-108078b6:1345b8f2778:-7eaf" target="-108078b6:1345b8f2778:-7eca"><mxGeometry as="geometry" x="10.0" y="10.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-108078b6:1345b8f2778:-7eab" parent="-108078b6:1345b8f2778:-7edc" source="-108078b6:1345b8f2778:-7ecd" target="-108078b6:1345b8f2778:-7eae"><mxGeometry as="geometry" x="10.0" y="10.0"><mxPoint as="sourcePoint" x="236.0" y="410.0"/><mxPoint as="targetPoint" x="120.0" y="410.0"/></mxGeometry></ImplicitLink><BasicBlock dependsOnU="1" id="-108078b6:1345b8f2778:-7eaa" interfaceFunctionName="CSCOPE" ordering="10" parent="-108078b6:1345b8f2778:-7edc" simulationFunctionName="cscope" simulationFunctionType="C_OR_FORTRAN" style="CSCOPE;flip=false;mirror=false"><ScilabString as="exprs" height="10" width="1"><data column="0" line="0" value="1 3 5 7 9 11 13 15"/><data column="0" line="1" value="-1"/><data column="0" line="2" value="[]"/><data column="0" line="3" value="[600;400]"/><data column="0" line="4" value="0"/><data column="0" line="5" value="15"/><data column="0" line="6" value="10"/><data column="0" line="7" value="20"/><data column="0" line="8" value="0"/><data column="0" line="9" value=""/></ScilabString><ScilabDouble as="realParameters" height="4" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="0.0"/><data column="0" line="2" realPart="15.0"/><data column="0" line="3" realPart="10.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="15" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="1.0"/><data column="0" line="4" realPart="3.0"/><data column="0" line="5" realPart="5.0"/><data column="0" line="6" realPart="7.0"/><data column="0" line="7" realPart="9.0"/><data column="0" line="8" realPart="11.0"/><data column="0" line="9" realPart="13.0"/><data column="0" line="10" realPart="15.0"/><data column="0" line="11" realPart="-1.0"/><data column="0" line="12" realPart="-1.0"/><data column="0" line="13" realPart="600.0"/><data column="0" line="14" realPart="400.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="640.0" y="100.0"/></BasicBlock><ControlPort dataType="UNKNOW_TYPE" id="-108078b6:1345b8f2778:-7e28" ordering="1" parent="-108078b6:1345b8f2778:-7eaa" style="ControlPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-7e29" ordering="1" parent="-108078b6:1345b8f2778:-7eaa" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><BasicBlock blockType="h" id="-108078b6:1345b8f2778:-7ea6" interfaceFunctionName="CLOCK_c" ordering="11" parent="-108078b6:1345b8f2778:-7edc" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="119.0"/><data column="1" line="0" realPart="-150.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-1de3cc81:16a44b61d89:-7e07"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-1de3cc81:16a44b61d89:-7e07"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.1"/><data column="0" line="1" value="0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.1"/><data column="0" line="1" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-1de3cc81:16a44b61d89:-7e05"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-1de3cc81:16a44b61d89:-7e05"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="123.3773266666667"/><data column="1" line="0" realPart="-169.33333333333331"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="7.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="5.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-1de3cc81:16a44b61d89:-7e02"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-1de3cc81:16a44b61d89:-7e02"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="100.0"/><data column="0" line="2" realPart="133.8773266666667"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-44.0"/><data column="0" line="1" realPart="-180.0"/><data column="0" line="2" realPart="-158.33333333333331"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="132.71066000000005"/><data column="0" line="1" realPart="149.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-173.33333333333331"/><data column="0" line="1" realPart="-126.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="135.04399333333336"/><data column="0" line="1" realPart="140.70999999999998"/><data column="0" line="2" realPart="100.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-173.33333333333331"/><data column="0" line="1" realPart="-50.0"/><data column="0" line="2" realPart="-50.0"/><data column="0" line="3" realPart="4.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="640.0" y="20.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="-108078b6:1345b8f2778:-7ea5" ordering="1" parent="-108078b6:1345b8f2778:-7ea6" style="CommandPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><CommandControlLink id="-108078b6:1345b8f2778:-7ea4" parent="-108078b6:1345b8f2778:-7edc" source="-108078b6:1345b8f2778:-7ea5" target="-108078b6:1345b8f2778:-7e28"><mxGeometry as="geometry" x="130.0" y="-180.0"><mxPoint as="sourcePoint" x="660.0" y="64.0"/><mxPoint as="targetPoint" x="660.0" y="90.0"/></mxGeometry></CommandControlLink><SplitBlock id="-108078b6:1345b8f2778:-7e94" ordering="12" parent="-108078b6:1345b8f2778:-7edc" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="407.0" y="327.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="-108078b6:1345b8f2778:-7e93" ordering="1" parent="-108078b6:1345b8f2778:-7e94" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-108078b6:1345b8f2778:-7e92" ordering="1" parent="-108078b6:1345b8f2778:-7e94" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-108078b6:1345b8f2778:-7e91" ordering="2" parent="-108078b6:1345b8f2778:-7e94" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitLink id="-108078b6:1345b8f2778:-7e90" parent="-108078b6:1345b8f2778:-7edc" source="-108078b6:1345b8f2778:-7ed3" target="-108078b6:1345b8f2778:-7e93"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="460.0" y="330.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-108078b6:1345b8f2778:-7e8f" parent="-108078b6:1345b8f2778:-7edc" source="-108078b6:1345b8f2778:-7e92" target="-108078b6:1345b8f2778:-7ebf"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-108078b6:1345b8f2778:-7e95" parent="-108078b6:1345b8f2778:-7edc" source="-108078b6:1345b8f2778:-7ed0" target="-108078b6:1345b8f2778:-7e91"><mxGeometry as="geometry" x="-20.0"><mxPoint as="sourcePoint" x="360.0" y="274.0"/><mxPoint as="targetPoint" x="390.0" y="330.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="360.0" y="330.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-108078b6:1345b8f2778:-7e82" parent="-108078b6:1345b8f2778:-7edc" source="-108078b6:1345b8f2778:-7ed6" target="-108078b6:1345b8f2778:-7ebb"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="224.0" y="150.0"/><mxPoint as="targetPoint" x="260.0" y="150.0"/></mxGeometry></ImplicitLink><SplitBlock id="-108078b6:1345b8f2778:-7e80" ordering="13" parent="-108078b6:1345b8f2778:-7edc" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="407.0" y="187.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="-108078b6:1345b8f2778:-7e7f" ordering="1" parent="-108078b6:1345b8f2778:-7e80" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-108078b6:1345b8f2778:-7e7e" ordering="1" parent="-108078b6:1345b8f2778:-7e80" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-108078b6:1345b8f2778:-7e7d" ordering="2" parent="-108078b6:1345b8f2778:-7e80" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitLink id="-108078b6:1345b8f2778:-7e7c" parent="-108078b6:1345b8f2778:-7edc" source="-108078b6:1345b8f2778:-7ecf" target="-108078b6:1345b8f2778:-7e7f"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="360.0" y="190.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-108078b6:1345b8f2778:-7e7b" parent="-108078b6:1345b8f2778:-7edc" source="-108078b6:1345b8f2778:-7e7e" target="-108078b6:1345b8f2778:-7ed2"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="460.0" y="190.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-108078b6:1345b8f2778:-7e81" parent="-108078b6:1345b8f2778:-7edc" source="-108078b6:1345b8f2778:-7ebd" target="-108078b6:1345b8f2778:-7e7d"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="314.0" y="140.0"/><mxPoint as="targetPoint" x="410.0" y="190.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="410.0" y="140.0"/></Array></mxGeometry></ImplicitLink><TextBlock id="-108078b6:1345b8f2778:-7e74" parent="-108078b6:1345b8f2778:-7edc" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="E1 = 120V"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="E1 = 120V"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="E1 = 120V"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="50.0" y="260.0"/></TextBlock><TextBlock id="-108078b6:1345b8f2778:-7e73" parent="-108078b6:1345b8f2778:-7edc" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="R1 = 10"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="R1 = 10"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="R1 = 10"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="180.0" y="100.0"/></TextBlock><TextBlock id="-108078b6:1345b8f2778:-7e71" parent="-108078b6:1345b8f2778:-7edc" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="R2 = 20"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="R2 = 20"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="R2 = 20"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="290.0" y="240.0"/></TextBlock><TextBlock id="-108078b6:1345b8f2778:-7e70" parent="-108078b6:1345b8f2778:-7edc" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="R3 = 60"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="R3 = 60"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="R3 = 60"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="490.0" y="240.0"/></TextBlock><TextBlock id="-108078b6:1345b8f2778:-7e6f" parent="-108078b6:1345b8f2778:-7edc" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="E2 = 65V"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="E2 = 65V"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="E2 = 65V"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="440.0" y="350.0"/></TextBlock><TextBlock id="-108078b6:1345b8f2778:-7e6e" parent="-108078b6:1345b8f2778:-7edc" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="R4 = 30"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="R4 = 30"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="R4 = 30"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="240.0" y="360.0"/></TextBlock><BasicBlock dependsOnU="1" id="-108078b6:1345b8f2778:-7e66" interfaceFunctionName="POWBLK_f" ordering="14" parent="-108078b6:1345b8f2778:-7edc" simulationFunctionName="powblk" simulationFunctionType="DEFAULT" style="POWBLK_f;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="2"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="20.0" width="50.0" x="440.0" y="150.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-7e61" ordering="1" parent="-108078b6:1345b8f2778:-7e66" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="50.0" y="6.0"/></ExplicitOutputPort><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-7e62" ordering="1" parent="-108078b6:1345b8f2778:-7e66" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ExplicitInputPort><ExplicitLink id="-108078b6:1345b8f2778:-7e5c" parent="-108078b6:1345b8f2778:-7edc" source="-108078b6:1345b8f2778:-7ebc" target="-108078b6:1345b8f2778:-7e62"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="314.0" y="160.0"/><mxPoint as="targetPoint" x="430.0" y="160.0"/></mxGeometry></ExplicitLink><BasicBlock blockType="d" id="-108078b6:1345b8f2778:-7e56" interfaceFunctionName="CONST_m" ordering="15" parent="-108078b6:1345b8f2778:-7edc" simulationFunctionName="cstblk4" simulationFunctionType="C_OR_FORTRAN" style="CONST_m;flip=false;mirror=false" value="10"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="10"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="10.0"/></ScilabDouble></Array><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="20.0" width="40.0" x="440.0" y="110.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-7e53" ordering="1" parent="-108078b6:1345b8f2778:-7e56" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="6.0"/></ExplicitOutputPort><TextBlock id="-108078b6:1345b8f2778:-7e51" parent="-108078b6:1345b8f2778:-7edc" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="40.0" width="40.0" x="340.0" y="70.0"/></TextBlock><RoundBlock dependsOnU="1" id="-108078b6:1345b8f2778:-7e45" interfaceFunctionName="PROD_f" ordering="16" parent="-108078b6:1345b8f2778:-7edc" simulationFunctionName="prod" simulationFunctionType="TYPE_2" style="PROD_f;flip=false;mirror=false" value="×"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="560.0" y="100.0"/></RoundBlock><ExplicitOutputPort dataColumns="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-7e44" ordering="1" parent="-108078b6:1345b8f2778:-7e45" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-7e43" ordering="1" parent="-108078b6:1345b8f2778:-7e45" style="ExplicitInputPort;align=center;verticalAlign=bottom;spacing=10;rotation=270;flip=false;mirror=false" value=""><Orientation as="orientation" value="SOUTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ExplicitInputPort><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-7e42" ordering="2" parent="-108078b6:1345b8f2778:-7e45" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitLink id="-108078b6:1345b8f2778:-7e33" parent="-108078b6:1345b8f2778:-7edc" source="-108078b6:1345b8f2778:-7e61" target="-108078b6:1345b8f2778:-7e43"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="494.0" y="160.0"/><mxPoint as="targetPoint" x="580.0" y="150.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="580.0" y="160.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="-108078b6:1345b8f2778:-7e32" parent="-108078b6:1345b8f2778:-7edc" source="-108078b6:1345b8f2778:-7e53" target="-108078b6:1345b8f2778:-7e42"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="484.0" y="120.0"/><mxPoint as="targetPoint" x="550.0" y="120.0"/></mxGeometry></ExplicitLink><ExplicitLink id="-108078b6:1345b8f2778:-7e2b" parent="-108078b6:1345b8f2778:-7edc" source="-108078b6:1345b8f2778:-7e44" target="-108078b6:1345b8f2778:-7e29"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="604.0" y="120.0"/><mxPoint as="targetPoint" x="630.0" y="120.0"/></mxGeometry></ExplicitLink><TextBlock id="-108078b6:1345b8f2778:-7e26" parent="-108078b6:1345b8f2778:-7edc" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="current through R1"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="current through R1"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="current through R1"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="270.0" y="100.0"/></TextBlock><TextBlock id="-108078b6:1345b8f2778:-7e25" parent="-108078b6:1345b8f2778:-7edc" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="R1"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="R1"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="R1"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="440.0" y="80.0"/></TextBlock><TextBlock id="-108078b6:1345b8f2778:-7e24" parent="-108078b6:1345b8f2778:-7edc" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="I^2"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="I^2"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="I^2"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="450.0" y="160.0"/></TextBlock><TextBlock id="-108078b6:1345b8f2778:-7e23" parent="-108078b6:1345b8f2778:-7edc" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="Power = (I^2)*R1"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="Power = (I^2)*R1"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="Power = (I^2)*R1"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="560.0" y="70.0"/></TextBlock></root></mxGraphModel><mxCell as="defaultParent" id="-108078b6:1345b8f2778:-7edc" parent="-108078b6:1345b8f2778:-7edb"/></XcosDiagram>
\ No newline at end of file diff --git a/Working_Examples/293/CH3/EX3.7/eg3_7.pdf b/Working_Examples/293/CH3/EX3.7/eg3_7.pdf Binary files differnew file mode 100755 index 0000000..621f2d8 --- /dev/null +++ b/Working_Examples/293/CH3/EX3.7/eg3_7.pdf diff --git a/Working_Examples/293/CH3/EX3.7/eg3_7.xcos b/Working_Examples/293/CH3/EX3.7/eg3_7.xcos new file mode 100755 index 0000000..9b81978 --- /dev/null +++ b/Working_Examples/293/CH3/EX3.7/eg3_7.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" finalIntegrationTime="10.0" title="eg3_7"><!--Xcos - 1.0 - scilab-5.5.2 - 20160406 2040--><mxGraphModel as="model"><root><mxCell id="-108078b6:1345b8f2778:-7e21"/><mxCell id="-108078b6:1345b8f2778:-7e22" parent="-108078b6:1345b8f2778:-7e21"/><BasicBlock angle="90" id="-108078b6:1345b8f2778:-7e19" interfaceFunctionName="ConstantVoltage" ordering="1" parent="-108078b6:1345b8f2778:-7e22" simulationFunctionName="ConstantVoltage" simulationFunctionType="DEFAULT" style="ConstantVoltage;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="120"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="120.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ConstantVoltage"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="V"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="120.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="80.0" y="110.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-7e04" ordering="1" parent="-108078b6:1345b8f2778:-7e19" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-7e05" ordering="1" parent="-108078b6:1345b8f2778:-7e19" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="-108078b6:1345b8f2778:-7e0f" interfaceFunctionName="Resistor" ordering="2" parent="-108078b6:1345b8f2778:-7e22" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="10"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="10.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="10.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="140.0" y="20.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-7dfd" ordering="1" parent="-108078b6:1345b8f2778:-7e0f" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-7dfe" ordering="1" parent="-108078b6:1345b8f2778:-7e0f" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitLink id="-108078b6:1345b8f2778:-7dfb" parent="-108078b6:1345b8f2778:-7e22" source="-108078b6:1345b8f2778:-7e05" target="-108078b6:1345b8f2778:-7dfe"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="100.0" y="106.0"/><mxPoint as="targetPoint" x="130.0" y="40.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="100.0" y="40.0"/></Array></mxGeometry></ImplicitLink><BasicBlock dependsOnU="1" id="-108078b6:1345b8f2778:-7df7" interfaceFunctionName="Resistor" ordering="3" parent="-108078b6:1345b8f2778:-7e22" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="60"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="60.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="60.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="260.0" y="20.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-7c44" ordering="1" parent="-108078b6:1345b8f2778:-7df7" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-7c45" ordering="1" parent="-108078b6:1345b8f2778:-7df7" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><BasicBlock angle="270" dependsOnU="1" id="-108078b6:1345b8f2778:-7df4" interfaceFunctionName="Resistor" ordering="4" parent="-108078b6:1345b8f2778:-7e22" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=270;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="20"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="20.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="20.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="200.0" y="140.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-7dde" ordering="1" parent="-108078b6:1345b8f2778:-7df4" style="ImplicitOutputPort;align=center;verticalAlign=top;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-7ddf" ordering="1" parent="-108078b6:1345b8f2778:-7df4" style="ImplicitInputPort;align=center;verticalAlign=bottom;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="-108078b6:1345b8f2778:-7df1" interfaceFunctionName="Resistor" ordering="5" parent="-108078b6:1345b8f2778:-7e22" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="30"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="30.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="30.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="140.0" y="190.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-7de8" ordering="1" parent="-108078b6:1345b8f2778:-7df1" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-7de9" ordering="1" parent="-108078b6:1345b8f2778:-7df1" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><BasicBlock angle="90" dependsOnU="1" id="-108078b6:1345b8f2778:-7db6" interfaceFunctionName="CurrentSensor" ordering="6" parent="-108078b6:1345b8f2778:-7e22" simulationFunctionName="CurrentSensor" simulationFunctionType="DEFAULT" style="CurrentSensor;rotation=90;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CurrentSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="i"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="210.0" y="60.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-7db5" ordering="1" parent="-108078b6:1345b8f2778:-7db6" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="6.0" y="40.0"/></ImplicitOutputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-7db4" ordering="2" parent="-108078b6:1345b8f2778:-7db6" style="ExplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="26.0" y="40.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-7db3" ordering="1" parent="-108078b6:1345b8f2778:-7db6" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><GroundBlock dependsOnU="1" id="-108078b6:1345b8f2778:-7d98" interfaceFunctionName="Ground" ordering="7" parent="-108078b6:1345b8f2778:-7e22" simulationFunctionName="Ground" simulationFunctionType="DEFAULT" style="Ground;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Ground"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="30.0" width="30.0" x="80.0" y="250.0"/></GroundBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-7d97" ordering="1" parent="-108078b6:1345b8f2778:-7d98" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><Orientation as="orientation" value="NORTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><SplitBlock id="-108078b6:1345b8f2778:-7d93" ordering="8" parent="-108078b6:1345b8f2778:-7e22" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="97.0" y="207.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="-108078b6:1345b8f2778:-7d92" ordering="1" parent="-108078b6:1345b8f2778:-7d93" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-108078b6:1345b8f2778:-7d91" ordering="1" parent="-108078b6:1345b8f2778:-7d93" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-108078b6:1345b8f2778:-7d90" ordering="2" parent="-108078b6:1345b8f2778:-7d93" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitLink id="-108078b6:1345b8f2778:-7d8f" parent="-108078b6:1345b8f2778:-7e22" source="-108078b6:1345b8f2778:-7e04" target="-108078b6:1345b8f2778:-7d92"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-108078b6:1345b8f2778:-7d8e" parent="-108078b6:1345b8f2778:-7e22" source="-108078b6:1345b8f2778:-7d91" target="-108078b6:1345b8f2778:-7de9"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-108078b6:1345b8f2778:-7d94" parent="-108078b6:1345b8f2778:-7e22" source="-108078b6:1345b8f2778:-7d90" target="-108078b6:1345b8f2778:-7d97"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="100.0" y="246.0"/><mxPoint as="targetPoint" x="100.0" y="210.0"/></mxGeometry></ImplicitLink><BasicBlock dependsOnU="1" id="-108078b6:1345b8f2778:-7d71" interfaceFunctionName="Resistor" ordering="9" parent="-108078b6:1345b8f2778:-7e22" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="10"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="10.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="10.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="150.0" y="320.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-7d70" ordering="1" parent="-108078b6:1345b8f2778:-7d71" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-7d6f" ordering="1" parent="-108078b6:1345b8f2778:-7d71" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><BasicBlock angle="90" id="-108078b6:1345b8f2778:-7d3e" interfaceFunctionName="ConstantVoltage" ordering="10" parent="-108078b6:1345b8f2778:-7e22" simulationFunctionName="ConstantVoltage" simulationFunctionType="DEFAULT" style="ConstantVoltage;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="65"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="65.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ConstantVoltage"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="V"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="65.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="340.0" y="390.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-7d30" ordering="1" parent="-108078b6:1345b8f2778:-7d3e" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-7d31" ordering="1" parent="-108078b6:1345b8f2778:-7d3e" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="-108078b6:1345b8f2778:-7d2b" interfaceFunctionName="Resistor" ordering="11" parent="-108078b6:1345b8f2778:-7e22" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="30"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="30.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="30.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="150.0" y="490.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-7d2a" ordering="1" parent="-108078b6:1345b8f2778:-7d2b" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-7d29" ordering="1" parent="-108078b6:1345b8f2778:-7d2b" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><BasicBlock angle="270" dependsOnU="1" id="-108078b6:1345b8f2778:-7d22" interfaceFunctionName="Resistor" ordering="12" parent="-108078b6:1345b8f2778:-7e22" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=270;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="20"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="20.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="20.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="220.0" y="360.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-7d21" ordering="1" parent="-108078b6:1345b8f2778:-7d22" style="ImplicitOutputPort;align=center;verticalAlign=top;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-7d20" ordering="1" parent="-108078b6:1345b8f2778:-7d22" style="ImplicitInputPort;align=center;verticalAlign=bottom;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="-108078b6:1345b8f2778:-7d15" interfaceFunctionName="Resistor" ordering="13" parent="-108078b6:1345b8f2778:-7e22" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="60"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="60.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="60.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="280.0" y="320.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-7c48" ordering="1" parent="-108078b6:1345b8f2778:-7d15" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-7c49" ordering="1" parent="-108078b6:1345b8f2778:-7d15" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><SplitBlock id="-108078b6:1345b8f2778:-7d0d" ordering="14" parent="-108078b6:1345b8f2778:-7e22" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="237.0" y="337.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="-108078b6:1345b8f2778:-7d0c" ordering="1" parent="-108078b6:1345b8f2778:-7d0d" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-108078b6:1345b8f2778:-7d0b" ordering="1" parent="-108078b6:1345b8f2778:-7d0d" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-108078b6:1345b8f2778:-7d0a" ordering="2" parent="-108078b6:1345b8f2778:-7d0d" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitLink id="-108078b6:1345b8f2778:-7d09" parent="-108078b6:1345b8f2778:-7e22" source="-108078b6:1345b8f2778:-7d70" target="-108078b6:1345b8f2778:-7d0c"><mxGeometry as="geometry" x="20.0" y="-60.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-108078b6:1345b8f2778:-7d08" parent="-108078b6:1345b8f2778:-7e22" source="-108078b6:1345b8f2778:-7d0b" target="-108078b6:1345b8f2778:-7c49"><mxGeometry as="geometry" x="20.0" y="-60.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-108078b6:1345b8f2778:-7d0e" parent="-108078b6:1345b8f2778:-7e22" source="-108078b6:1345b8f2778:-7d21" target="-108078b6:1345b8f2778:-7d0a"><mxGeometry as="geometry" x="20.0" y="-60.0"><mxPoint as="sourcePoint" x="240.0" y="356.0"/><mxPoint as="targetPoint" x="240.0" y="340.0"/></mxGeometry></ImplicitLink><BasicBlock angle="90" dependsOnU="1" id="-108078b6:1345b8f2778:-7d03" interfaceFunctionName="CurrentSensor" ordering="15" parent="-108078b6:1345b8f2778:-7e22" simulationFunctionName="CurrentSensor" simulationFunctionType="DEFAULT" style="CurrentSensor;rotation=90;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CurrentSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="i"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="220.0" y="430.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-7d02" ordering="1" parent="-108078b6:1345b8f2778:-7d03" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="6.0" y="40.0"/></ImplicitOutputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-7d01" ordering="2" parent="-108078b6:1345b8f2778:-7d03" style="ExplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="26.0" y="40.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-7d00" ordering="1" parent="-108078b6:1345b8f2778:-7d03" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitLink id="-108078b6:1345b8f2778:-7cfb" parent="-108078b6:1345b8f2778:-7e22" source="-108078b6:1345b8f2778:-7d20" target="-108078b6:1345b8f2778:-7d00"><mxGeometry as="geometry" x="20.0" y="-60.0"><mxPoint as="sourcePoint" x="240.0" y="404.0"/><mxPoint as="targetPoint" x="240.0" y="420.0"/></mxGeometry></ImplicitLink><ImplicitLink id="-108078b6:1345b8f2778:-7cf6" parent="-108078b6:1345b8f2778:-7e22" source="-108078b6:1345b8f2778:-7c48" target="-108078b6:1345b8f2778:-7d31"><mxGeometry as="geometry" x="20.0" y="-60.0"><mxPoint as="sourcePoint" x="324.0" y="340.0"/><mxPoint as="targetPoint" x="360.0" y="380.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="360.0" y="340.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="-108078b6:1345b8f2778:-7cf4" ordering="16" parent="-108078b6:1345b8f2778:-7e22" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="227.0" y="507.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="-108078b6:1345b8f2778:-7cf3" ordering="1" parent="-108078b6:1345b8f2778:-7cf4" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-108078b6:1345b8f2778:-7cf2" ordering="1" parent="-108078b6:1345b8f2778:-7cf4" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-108078b6:1345b8f2778:-7cf1" ordering="2" parent="-108078b6:1345b8f2778:-7cf4" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitLink id="-108078b6:1345b8f2778:-7cf0" parent="-108078b6:1345b8f2778:-7e22" source="-108078b6:1345b8f2778:-7d2a" target="-108078b6:1345b8f2778:-7cf3"><mxGeometry as="geometry" x="20.0" y="-60.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-108078b6:1345b8f2778:-7cef" parent="-108078b6:1345b8f2778:-7e22" source="-108078b6:1345b8f2778:-7d02" target="-108078b6:1345b8f2778:-7cf2"><mxGeometry as="geometry" x="20.0" y="-60.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><GroundBlock dependsOnU="1" id="-108078b6:1345b8f2778:-7cec" interfaceFunctionName="Ground" ordering="17" parent="-108078b6:1345b8f2778:-7e22" simulationFunctionName="Ground" simulationFunctionType="DEFAULT" style="Ground;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Ground"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="30.0" width="30.0" x="340.0" y="530.0"/></GroundBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-7ceb" ordering="1" parent="-108078b6:1345b8f2778:-7cec" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><Orientation as="orientation" value="NORTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><SplitBlock id="-108078b6:1345b8f2778:-7ce7" ordering="18" parent="-108078b6:1345b8f2778:-7e22" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="357.0" y="507.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="-108078b6:1345b8f2778:-7ce6" ordering="1" parent="-108078b6:1345b8f2778:-7ce7" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-108078b6:1345b8f2778:-7ce5" ordering="1" parent="-108078b6:1345b8f2778:-7ce7" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-108078b6:1345b8f2778:-7ce4" ordering="2" parent="-108078b6:1345b8f2778:-7ce7" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitLink id="-108078b6:1345b8f2778:-7ce3" parent="-108078b6:1345b8f2778:-7e22" source="-108078b6:1345b8f2778:-7d30" target="-108078b6:1345b8f2778:-7ce6"><mxGeometry as="geometry" x="20.0" y="-60.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-108078b6:1345b8f2778:-7ce2" parent="-108078b6:1345b8f2778:-7e22" source="-108078b6:1345b8f2778:-7cf1" target="-108078b6:1345b8f2778:-7ce5"><mxGeometry as="geometry" x="20.0" y="-60.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-108078b6:1345b8f2778:-7ce8" parent="-108078b6:1345b8f2778:-7e22" source="-108078b6:1345b8f2778:-7ce4" target="-108078b6:1345b8f2778:-7ceb"><mxGeometry as="geometry" x="20.0" y="-60.0"><mxPoint as="sourcePoint" x="360.0" y="526.0"/><mxPoint as="targetPoint" x="360.0" y="510.0"/></mxGeometry></ImplicitLink><ImplicitLink id="-108078b6:1345b8f2778:-7c8b" parent="-108078b6:1345b8f2778:-7e22" source="-108078b6:1345b8f2778:-7d6f" target="-108078b6:1345b8f2778:-7d29"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="146.0" y="340.0"/><mxPoint as="targetPoint" x="140.0" y="510.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="100.0" y="340.0"/><mxPoint x="100.0" y="510.0"/><mxPoint x="100.0" y="510.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="-108078b6:1345b8f2778:-7c65" ordering="19" parent="-108078b6:1345b8f2778:-7e22" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="217.0" y="207.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="-108078b6:1345b8f2778:-7c64" ordering="1" parent="-108078b6:1345b8f2778:-7c65" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-108078b6:1345b8f2778:-7c63" ordering="1" parent="-108078b6:1345b8f2778:-7c65" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-108078b6:1345b8f2778:-7c62" ordering="2" parent="-108078b6:1345b8f2778:-7c65" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitLink id="-108078b6:1345b8f2778:-7c61" parent="-108078b6:1345b8f2778:-7e22" source="-108078b6:1345b8f2778:-7c44" target="-108078b6:1345b8f2778:-7c64"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="350.0" y="40.0"/><mxPoint x="350.0" y="40.0"/><mxPoint x="350.0" y="210.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-108078b6:1345b8f2778:-7c60" parent="-108078b6:1345b8f2778:-7e22" source="-108078b6:1345b8f2778:-7de8" target="-108078b6:1345b8f2778:-7c63"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-108078b6:1345b8f2778:-7c66" parent="-108078b6:1345b8f2778:-7e22" source="-108078b6:1345b8f2778:-7c62" target="-108078b6:1345b8f2778:-7ddf"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="220.0" y="134.0"/><mxPoint as="targetPoint" x="220.0" y="210.0"/></mxGeometry></ImplicitLink><ImplicitLink id="-108078b6:1345b8f2778:-7c5b" parent="-108078b6:1345b8f2778:-7e22" source="-108078b6:1345b8f2778:-7dde" target="-108078b6:1345b8f2778:-7db5"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="220.0" y="104.0"/><mxPoint as="targetPoint" x="220.0" y="130.0"/></mxGeometry></ImplicitLink><SplitBlock id="-108078b6:1345b8f2778:-7c50" ordering="20" parent="-108078b6:1345b8f2778:-7e22" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="227.0" y="37.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="-108078b6:1345b8f2778:-7c4f" ordering="1" parent="-108078b6:1345b8f2778:-7c50" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-108078b6:1345b8f2778:-7c4e" ordering="1" parent="-108078b6:1345b8f2778:-7c50" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-108078b6:1345b8f2778:-7c4d" ordering="2" parent="-108078b6:1345b8f2778:-7c50" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitLink id="-108078b6:1345b8f2778:-7c4c" parent="-108078b6:1345b8f2778:-7e22" source="-108078b6:1345b8f2778:-7dfd" target="-108078b6:1345b8f2778:-7c4f"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="220.0" y="40.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-108078b6:1345b8f2778:-7c4b" parent="-108078b6:1345b8f2778:-7e22" source="-108078b6:1345b8f2778:-7c4e" target="-108078b6:1345b8f2778:-7c45"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-108078b6:1345b8f2778:-7c51" parent="-108078b6:1345b8f2778:-7e22" source="-108078b6:1345b8f2778:-7c4d" target="-108078b6:1345b8f2778:-7db3"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="230.0" y="56.0"/><mxPoint as="targetPoint" x="230.0" y="40.0"/></mxGeometry></ImplicitLink><RoundBlock dependsOnU="1" id="-108078b6:1345b8f2778:-7c32" interfaceFunctionName="SUM_f" ordering="21" parent="-108078b6:1345b8f2778:-7e22" simulationFunctionName="plusblk" simulationFunctionType="TYPE_2" style="SUM_f;flip=false;mirror=false" value="+"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="60.0" width="50.0" x="470.0" y="230.0"/></RoundBlock><ExplicitOutputPort dataColumns="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-7c31" ordering="1" parent="-108078b6:1345b8f2778:-7c32" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="50.0" y="26.0"/></ExplicitOutputPort><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-7c30" ordering="1" parent="-108078b6:1345b8f2778:-7c32" style="ExplicitInputPort;align=center;verticalAlign=bottom;spacing=10;rotation=270;flip=false;mirror=false" value=""><Orientation as="orientation" value="SOUTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="60.0"/></ExplicitInputPort><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-7c2f" ordering="2" parent="-108078b6:1345b8f2778:-7c32" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="26.0"/></ExplicitInputPort><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-7c2e" ordering="3" parent="-108078b6:1345b8f2778:-7c32" style="ExplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false" value=""><Orientation as="orientation" value="NORTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ExplicitInputPort><ExplicitLink id="-108078b6:1345b8f2778:-7c28" parent="-108078b6:1345b8f2778:-7e22" source="-108078b6:1345b8f2778:-7db4" target="-108078b6:1345b8f2778:-7c2e"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="240.0" y="104.0"/><mxPoint as="targetPoint" x="490.0" y="220.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="240.0" y="120.0"/><mxPoint x="240.0" y="120.0"/><mxPoint x="490.0" y="120.0"/><mxPoint x="490.0" y="220.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="-108078b6:1345b8f2778:-7c27" parent="-108078b6:1345b8f2778:-7e22" source="-108078b6:1345b8f2778:-7d01" target="-108078b6:1345b8f2778:-7c30"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="250.0" y="474.0"/><mxPoint as="targetPoint" x="490.0" y="300.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="250.0" y="490.0"/><mxPoint x="490.0" y="490.0"/></Array></mxGeometry></ExplicitLink><BasicBlock dependsOnU="1" id="-108078b6:1345b8f2778:-7c1f" interfaceFunctionName="CSCOPE" ordering="22" parent="-108078b6:1345b8f2778:-7e22" simulationFunctionName="cscope" simulationFunctionType="C_OR_FORTRAN" style="CSCOPE;flip=false;mirror=false"><ScilabString as="exprs" height="10" width="1"><data column="0" line="0" value="1 3 5 7 9 11 13 15"/><data column="0" line="1" value="-1"/><data column="0" line="2" value="[]"/><data column="0" line="3" value="[600;400]"/><data column="0" line="4" value="0"/><data column="0" line="5" value="3"/><data column="0" line="6" value="10"/><data column="0" line="7" value="20"/><data column="0" line="8" value="0"/><data column="0" line="9" value=""/></ScilabString><ScilabDouble as="realParameters" height="4" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="0.0"/><data column="0" line="2" realPart="3.0"/><data column="0" line="3" realPart="10.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="15" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="1.0"/><data column="0" line="4" realPart="3.0"/><data column="0" line="5" realPart="5.0"/><data column="0" line="6" realPart="7.0"/><data column="0" line="7" realPart="9.0"/><data column="0" line="8" realPart="11.0"/><data column="0" line="9" realPart="13.0"/><data column="0" line="10" realPart="15.0"/><data column="0" line="11" realPart="-1.0"/><data column="0" line="12" realPart="-1.0"/><data column="0" line="13" realPart="600.0"/><data column="0" line="14" realPart="400.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="580.0" y="240.0"/></BasicBlock><ControlPort dataType="UNKNOW_TYPE" id="-108078b6:1345b8f2778:-7c0e" ordering="1" parent="-108078b6:1345b8f2778:-7c1f" style="ControlPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-7c0f" ordering="1" parent="-108078b6:1345b8f2778:-7c1f" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitLink id="-108078b6:1345b8f2778:-7c1c" parent="-108078b6:1345b8f2778:-7e22" source="-108078b6:1345b8f2778:-7c31" target="-108078b6:1345b8f2778:-7c0f"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="524.0" y="260.0"/><mxPoint as="targetPoint" x="570.0" y="260.0"/></mxGeometry></ExplicitLink><BasicBlock blockType="h" id="-108078b6:1345b8f2778:-7c16" interfaceFunctionName="CLOCK_c" ordering="23" parent="-108078b6:1345b8f2778:-7e22" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="119.0"/><data column="1" line="0" realPart="-150.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-1de3cc81:16a44b61d89:-7d74"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-1de3cc81:16a44b61d89:-7d74"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.1"/><data column="0" line="1" value="0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.1"/><data column="0" line="1" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-1de3cc81:16a44b61d89:-7d72"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-1de3cc81:16a44b61d89:-7d72"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="123.3773266666667"/><data column="1" line="0" realPart="-169.33333333333331"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="7.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="5.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-1de3cc81:16a44b61d89:-7d6f"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-1de3cc81:16a44b61d89:-7d6f"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="100.0"/><data column="0" line="2" realPart="133.8773266666667"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-44.0"/><data column="0" line="1" realPart="-180.0"/><data column="0" line="2" realPart="-158.33333333333331"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="132.71066000000005"/><data column="0" line="1" realPart="149.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-173.33333333333331"/><data column="0" line="1" realPart="-126.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="135.04399333333336"/><data column="0" line="1" realPart="140.70999999999998"/><data column="0" line="2" realPart="100.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-173.33333333333331"/><data column="0" line="1" realPart="-50.0"/><data column="0" line="2" realPart="-50.0"/><data column="0" line="3" realPart="4.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="580.0" y="160.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="-108078b6:1345b8f2778:-7c12" ordering="1" parent="-108078b6:1345b8f2778:-7c16" style="CommandPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><CommandControlLink id="-108078b6:1345b8f2778:-7c14" parent="-108078b6:1345b8f2778:-7e22" source="-108078b6:1345b8f2778:-7c12" target="-108078b6:1345b8f2778:-7c0e"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="600.0" y="204.0"/><mxPoint as="targetPoint" x="600.0" y="230.0"/></mxGeometry></CommandControlLink><TextBlock id="-108078b6:1345b8f2778:-7c0c" parent="-108078b6:1345b8f2778:-7e22" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="E1 = 120V"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="E1 = 120V"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="E1 = 120V"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="30.0" y="110.0"/></TextBlock><TextBlock id="-108078b6:1345b8f2778:-7c0b" parent="-108078b6:1345b8f2778:-7e22" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="E2 = 65V"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="E2 = 65V"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="E2 = 65V"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="390.0" y="390.0"/></TextBlock><TextBlock id="-108078b6:1345b8f2778:-7c0a" parent="-108078b6:1345b8f2778:-7e22" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="R1 = 10"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="R1 = 10"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="R1 = 10"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="140.0" y="50.0"/></TextBlock><TextBlock id="-108078b6:1345b8f2778:-7c09" parent="-108078b6:1345b8f2778:-7e22" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="R1 = 10"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="R1 = 10"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="R1 = 10"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="150.0" y="350.0"/></TextBlock><TextBlock id="-108078b6:1345b8f2778:-7c08" parent="-108078b6:1345b8f2778:-7e22" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="R4 = 30"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="R4 = 30"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="R4 = 30"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="140.0" y="220.0"/></TextBlock><TextBlock id="-108078b6:1345b8f2778:-7c07" parent="-108078b6:1345b8f2778:-7e22" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="R4 = 30"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="R4 = 30"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="R4 = 30"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="150.0" y="520.0"/></TextBlock><TextBlock id="-108078b6:1345b8f2778:-7c06" parent="-108078b6:1345b8f2778:-7e22" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="R2 = 20"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="R2 = 20"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="R2 = 20"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="250.0" y="140.0"/></TextBlock><TextBlock id="-108078b6:1345b8f2778:-7c05" parent="-108078b6:1345b8f2778:-7e22" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="R2 = 20"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="R2 = 20"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="R2 = 20"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="260.0" y="370.0"/></TextBlock><TextBlock id="-108078b6:1345b8f2778:-7c04" parent="-108078b6:1345b8f2778:-7e22" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="R3 = 60"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="R3 = 60"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="R3 = 60"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="260.0" y="50.0"/></TextBlock><TextBlock id="-108078b6:1345b8f2778:-7c03" parent="-108078b6:1345b8f2778:-7e22" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="R3 = 60"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="R3 = 60"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="R3 = 60"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="280.0" y="290.0"/></TextBlock><TextBlock id="-108078b6:1345b8f2778:-7c02" parent="-108078b6:1345b8f2778:-7e22" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="Response due to E1 alone"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="Response due to E1 alone"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="Response due to E1 alone"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="240.0" y="230.0"/></TextBlock><TextBlock id="-108078b6:1345b8f2778:-7c01" parent="-108078b6:1345b8f2778:-7e22" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="Response due to E2 alone"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="Response due to E2 alone"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="Response due to E2 alone"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="250.0" y="540.0"/></TextBlock><TextBlock id="-108078b6:1345b8f2778:-7c00" parent="-108078b6:1345b8f2778:-7e22" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="Total current flowing through R2"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="Total current flowing through R2"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="Total current flowing through R2"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="380.0" y="280.0"/></TextBlock></root></mxGraphModel><mxCell as="defaultParent" id="-108078b6:1345b8f2778:-7e22" parent="-108078b6:1345b8f2778:-7e21"/></XcosDiagram>
\ No newline at end of file diff --git a/Working_Examples/293/CH3/EX3.8/eg3_8.sce b/Working_Examples/293/CH3/EX3.8/eg3_8.sce new file mode 100755 index 0000000..78d7228 --- /dev/null +++ b/Working_Examples/293/CH3/EX3.8/eg3_8.sce @@ -0,0 +1,17 @@ +//mesh equations:
+//60*I1 - 20*I2 = 20
+//-20*I1 + 80*I2 = -65
+
+R = [60 -20;-20 80];
+E = [120;-65];
+I = inv(R)*E;
+I1 = I(1,:); //current flowing in first mesh
+I2 = I(2,:); //current flowing in second mesh
+
+Ibd = I1 - I2; //current flowing through branch bd
+Iab = I1; //current flowing through branch ab
+Icb = -I2; //current flowing through branch cb
+
+disp(Ibd, "current flowing through branch bd = ")
+disp(Iab,"current flowing through branch ab = ")
+disp(Icb,"current flowing through branch cb = ")
diff --git a/Working_Examples/293/CH3/EX3.9/eg3_9.pdf b/Working_Examples/293/CH3/EX3.9/eg3_9.pdf Binary files differnew file mode 100755 index 0000000..ec1a8c3 --- /dev/null +++ b/Working_Examples/293/CH3/EX3.9/eg3_9.pdf diff --git a/Working_Examples/293/CH3/EX3.9/eg3_9.xcos b/Working_Examples/293/CH3/EX3.9/eg3_9.xcos new file mode 100755 index 0000000..57ac65b --- /dev/null +++ b/Working_Examples/293/CH3/EX3.9/eg3_9.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" finalIntegrationTime="10.0" title="eg3_9"><!--Xcos - 1.0 - scilab-5.5.2 - 20160406 2040--><mxGraphModel as="model"><root><mxCell id="-108078b6:1345b8f2778:-7bfe"/><mxCell id="-108078b6:1345b8f2778:-7bff" parent="-108078b6:1345b8f2778:-7bfe"/><BasicBlock angle="90" id="-108078b6:1345b8f2778:-7be6" interfaceFunctionName="ConstantVoltage" ordering="1" parent="-108078b6:1345b8f2778:-7bff" simulationFunctionName="ConstantVoltage" simulationFunctionType="DEFAULT" style="ConstantVoltage;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="65"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="65.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ConstantVoltage"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="V"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="65.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="470.0" y="170.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-7bdf" ordering="1" parent="-108078b6:1345b8f2778:-7be6" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-7bde" ordering="1" parent="-108078b6:1345b8f2778:-7be6" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><BasicBlock dependsOnU="1" id="-108078b6:1345b8f2778:-7bd5" interfaceFunctionName="Resistor" ordering="2" parent="-108078b6:1345b8f2778:-7bff" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="40"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="40.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="40.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="120.0" y="120.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-7bc2" ordering="1" parent="-108078b6:1345b8f2778:-7bd5" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-7bc1" ordering="1" parent="-108078b6:1345b8f2778:-7bd5" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><BasicBlock angle="90" dependsOnU="1" id="-108078b6:1345b8f2778:-7bcf" interfaceFunctionName="Resistor" ordering="3" parent="-108078b6:1345b8f2778:-7bff" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="20"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="20.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="20.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="260.0" y="180.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-7bac" ordering="1" parent="-108078b6:1345b8f2778:-7bcf" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-7bab" ordering="1" parent="-108078b6:1345b8f2778:-7bcf" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><BasicBlock dependsOnU="1" id="-108078b6:1345b8f2778:-7bcc" interfaceFunctionName="Resistor" ordering="4" parent="-108078b6:1345b8f2778:-7bff" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="60"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="60.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="60.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="320.0" y="110.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-7b8a" ordering="1" parent="-108078b6:1345b8f2778:-7bcc" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-7b89" ordering="1" parent="-108078b6:1345b8f2778:-7bcc" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><ImplicitLink id="-108078b6:1345b8f2778:-7bbf" parent="-108078b6:1345b8f2778:-7bff" source="-108078b6:1345b8f2778:-7bec" target="-108078b6:1345b8f2778:-7bc2"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="70.0" y="186.0"/><mxPoint as="targetPoint" x="120.0" y="140.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="70.0" y="140.0"/></Array></mxGeometry></ImplicitLink><BasicBlock dependsOnU="1" id="-108078b6:1345b8f2778:-7bb5" interfaceFunctionName="CurrentSensor" ordering="5" parent="-108078b6:1345b8f2778:-7bff" simulationFunctionName="CurrentSensor" simulationFunctionType="DEFAULT" style="CurrentSensor;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CurrentSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="i"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="200.0" y="120.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-7bb3" ordering="2" parent="-108078b6:1345b8f2778:-7bb5" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="26.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-7bb2" ordering="1" parent="-108078b6:1345b8f2778:-7bb5" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-7bb4" ordering="1" parent="-108078b6:1345b8f2778:-7bb5" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="6.0"/></ImplicitOutputPort><ImplicitLink id="-108078b6:1345b8f2778:-7bb1" parent="-108078b6:1345b8f2778:-7bff" source="-108078b6:1345b8f2778:-7bc1" target="-108078b6:1345b8f2778:-7bb2"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="164.0" y="140.0"/><mxPoint as="targetPoint" x="190.0" y="140.0"/></mxGeometry></ImplicitLink><BasicBlock angle="90" dependsOnU="1" id="-108078b6:1345b8f2778:-7ba1" interfaceFunctionName="CurrentSensor" ordering="6" parent="-108078b6:1345b8f2778:-7bff" simulationFunctionName="CurrentSensor" simulationFunctionType="DEFAULT" style="CurrentSensor;rotation=90;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CurrentSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="i"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="260.0" y="250.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-7b9f" ordering="2" parent="-108078b6:1345b8f2778:-7ba1" style="ExplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="26.0" y="40.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-7b9e" ordering="1" parent="-108078b6:1345b8f2778:-7ba1" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-7ba0" ordering="1" parent="-108078b6:1345b8f2778:-7ba1" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="6.0" y="40.0"/></ImplicitOutputPort><SplitBlock id="-108078b6:1345b8f2778:-7b91" ordering="7" parent="-108078b6:1345b8f2778:-7bff" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="277.0" y="127.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-108078b6:1345b8f2778:-7b8f" ordering="1" parent="-108078b6:1345b8f2778:-7b91" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-108078b6:1345b8f2778:-7b8e" ordering="2" parent="-108078b6:1345b8f2778:-7b91" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-108078b6:1345b8f2778:-7b90" ordering="1" parent="-108078b6:1345b8f2778:-7b91" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-108078b6:1345b8f2778:-7b8d" parent="-108078b6:1345b8f2778:-7bff" source="-108078b6:1345b8f2778:-7bb4" target="-108078b6:1345b8f2778:-7b90"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-108078b6:1345b8f2778:-7b8c" parent="-108078b6:1345b8f2778:-7bff" source="-108078b6:1345b8f2778:-7b8f" target="-108078b6:1345b8f2778:-7bac"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-108078b6:1345b8f2778:-7b92" parent="-108078b6:1345b8f2778:-7bff" source="-108078b6:1345b8f2778:-7b8e" target="-108078b6:1345b8f2778:-7b8a"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="316.0" y="130.0"/><mxPoint as="targetPoint" x="280.0" y="130.0"/></mxGeometry></ImplicitLink><BasicBlock dependsOnU="1" id="-108078b6:1345b8f2778:-7b87" interfaceFunctionName="CurrentSensor" ordering="8" parent="-108078b6:1345b8f2778:-7bff" simulationFunctionName="CurrentSensor" simulationFunctionType="DEFAULT" style="CurrentSensor;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CurrentSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="i"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="400.0" y="110.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-7b85" ordering="2" parent="-108078b6:1345b8f2778:-7b87" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="26.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-7b84" ordering="1" parent="-108078b6:1345b8f2778:-7b87" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-7b86" ordering="1" parent="-108078b6:1345b8f2778:-7b87" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="6.0"/></ImplicitOutputPort><ImplicitLink id="-108078b6:1345b8f2778:-7b7f" parent="-108078b6:1345b8f2778:-7bff" source="-108078b6:1345b8f2778:-7b89" target="-108078b6:1345b8f2778:-7b84"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="364.0" y="130.0"/><mxPoint as="targetPoint" x="380.0" y="130.0"/></mxGeometry></ImplicitLink><ImplicitLink id="-108078b6:1345b8f2778:-7b7b" parent="-108078b6:1345b8f2778:-7bff" source="-108078b6:1345b8f2778:-7b86" target="-108078b6:1345b8f2778:-7bdf"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="444.0" y="120.0"/><mxPoint as="targetPoint" x="490.0" y="170.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="490.0" y="120.0"/></Array></mxGeometry></ImplicitLink><GroundBlock dependsOnU="1" id="-108078b6:1345b8f2778:-7b75" interfaceFunctionName="Ground" ordering="9" parent="-108078b6:1345b8f2778:-7bff" simulationFunctionName="Ground" simulationFunctionType="DEFAULT" style="Ground;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Ground"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="30.0" width="30.0" x="50.0" y="360.0"/></GroundBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-7b74" ordering="1" parent="-108078b6:1345b8f2778:-7b75" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><Orientation as="orientation" value="NORTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitLink id="-108078b6:1345b8f2778:-7b67" parent="-108078b6:1345b8f2778:-7bff" source="-108078b6:1345b8f2778:-7bab" target="-108078b6:1345b8f2778:-7b9e"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="280.0" y="224.0"/><mxPoint as="targetPoint" x="280.0" y="250.0"/></mxGeometry></ImplicitLink><SplitBlock id="-108078b6:1345b8f2778:-7b57" ordering="10" parent="-108078b6:1345b8f2778:-7bff" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="67.0" y="337.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-108078b6:1345b8f2778:-7b55" ordering="1" parent="-108078b6:1345b8f2778:-7b57" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-108078b6:1345b8f2778:-7b54" ordering="2" parent="-108078b6:1345b8f2778:-7b57" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-108078b6:1345b8f2778:-7b56" ordering="1" parent="-108078b6:1345b8f2778:-7b57" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-108078b6:1345b8f2778:-7b53" parent="-108078b6:1345b8f2778:-7bff" source="-108078b6:1345b8f2778:-7beb" target="-108078b6:1345b8f2778:-7b56"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-108078b6:1345b8f2778:-7b52" parent="-108078b6:1345b8f2778:-7bff" source="-108078b6:1345b8f2778:-7b55" target="-108078b6:1345b8f2778:-7b74"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><SplitBlock id="-108078b6:1345b8f2778:-7b50" ordering="11" parent="-108078b6:1345b8f2778:-7bff" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="267.0" y="337.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-108078b6:1345b8f2778:-7b4e" ordering="1" parent="-108078b6:1345b8f2778:-7b50" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-108078b6:1345b8f2778:-7b4d" ordering="2" parent="-108078b6:1345b8f2778:-7b50" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-108078b6:1345b8f2778:-7b4f" ordering="1" parent="-108078b6:1345b8f2778:-7b50" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-108078b6:1345b8f2778:-7b4c" parent="-108078b6:1345b8f2778:-7bff" source="-108078b6:1345b8f2778:-7ba0" target="-108078b6:1345b8f2778:-7b4f"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-108078b6:1345b8f2778:-7b4b" parent="-108078b6:1345b8f2778:-7bff" source="-108078b6:1345b8f2778:-7b54" target="-108078b6:1345b8f2778:-7b4e"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="270.0" y="340.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-108078b6:1345b8f2778:-7b51" parent="-108078b6:1345b8f2778:-7bff" source="-108078b6:1345b8f2778:-7bde" target="-108078b6:1345b8f2778:-7b4d"><mxGeometry as="geometry" y="10.0"><mxPoint as="sourcePoint" x="490.0" y="224.0"/><mxPoint as="targetPoint" x="270.0" y="340.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="490.0" y="340.0"/></Array></mxGeometry></ImplicitLink><BasicBlock dependsOnU="1" id="-108078b6:1345b8f2778:-7b41" interfaceFunctionName="CMSCOPE" ordering="12" parent="-108078b6:1345b8f2778:-7bff" simulationFunctionName="cmscope" simulationFunctionType="C_OR_FORTRAN" style="CMSCOPE;flip=false;mirror=false"><ScilabString as="exprs" height="11" width="1"><data column="0" line="0" value="1 1 1"/><data column="0" line="1" value="1 3 5 7 9 11 13 15"/><data column="0" line="2" value="-1"/><data column="0" line="3" value="[]"/><data column="0" line="4" value="[]"/><data column="0" line="5" value="-3 -3 -3 "/><data column="0" line="6" value="3 3 3"/><data column="0" line="7" value="10 10 10 "/><data column="0" line="8" value="20"/><data column="0" line="9" value="0"/><data column="0" line="10" value=""/></ScilabString><ScilabDouble as="realParameters" height="10" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="10.0"/><data column="0" line="2" realPart="10.0"/><data column="0" line="3" realPart="10.0"/><data column="0" line="4" realPart="-3.0"/><data column="0" line="5" realPart="3.0"/><data column="0" line="6" realPart="-3.0"/><data column="0" line="7" realPart="3.0"/><data column="0" line="8" realPart="-3.0"/><data column="0" line="9" realPart="3.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="14" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="3.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="-1.0"/><data column="0" line="4" realPart="-1.0"/><data column="0" line="5" realPart="-1.0"/><data column="0" line="6" realPart="-1.0"/><data column="0" line="7" realPart="1.0"/><data column="0" line="8" realPart="1.0"/><data column="0" line="9" realPart="1.0"/><data column="0" line="10" realPart="1.0"/><data column="0" line="11" realPart="3.0"/><data column="0" line="12" realPart="5.0"/><data column="0" line="13" realPart="0.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="80.0" width="40.0" x="630.0" y="190.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-7b3c" ordering="1" parent="-108078b6:1345b8f2778:-7b41" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ExplicitInputPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-7b3b" ordering="2" parent="-108078b6:1345b8f2778:-7b41" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="36.0"/></ExplicitInputPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-7b3a" ordering="3" parent="-108078b6:1345b8f2778:-7b41" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="66.0"/></ExplicitInputPort><ControlPort dataType="UNKNOW_TYPE" id="-108078b6:1345b8f2778:-7b39" ordering="1" parent="-108078b6:1345b8f2778:-7b41" style="ControlPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><BasicBlock blockType="h" id="-108078b6:1345b8f2778:-7b31" interfaceFunctionName="CLOCK_c" ordering="13" parent="-108078b6:1345b8f2778:-7bff" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="119.0"/><data column="1" line="0" realPart="-150.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="7727d8d6:134717c1794:-7e46"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="7727d8d6:134717c1794:-7e46"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.1"/><data column="0" line="1" value="0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.1"/><data column="0" line="1" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="7727d8d6:134717c1794:-7e42"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="7727d8d6:134717c1794:-7e42"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="124.71066000000002"/><data column="1" line="0" realPart="-164.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="8.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="4.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="7727d8d6:134717c1794:-7e3d"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="7727d8d6:134717c1794:-7e3d"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="106.0"/><data column="0" line="2" realPart="135.37732666666668"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="4.0"/><data column="0" line="1" realPart="-204.0"/><data column="0" line="2" realPart="-168.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="136.71066000000002"/><data column="0" line="1" realPart="149.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-152.0"/><data column="0" line="1" realPart="-126.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="138.04399333333336"/><data column="0" line="1" realPart="151.70999999999998"/><data column="0" line="2" realPart="111.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-168.0"/><data column="0" line="1" realPart="-58.0"/><data column="0" line="2" realPart="-58.0"/><data column="0" line="3" realPart="-44.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="630.0" y="10.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="-108078b6:1345b8f2778:-7b2b" ordering="1" parent="-108078b6:1345b8f2778:-7b31" style="CommandPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><CommandControlLink id="-108078b6:1345b8f2778:-7b2d" parent="-108078b6:1345b8f2778:-7bff" source="-108078b6:1345b8f2778:-7b2b" target="-108078b6:1345b8f2778:-7b39"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="650.0" y="54.0"/><mxPoint as="targetPoint" x="650.0" y="180.0"/></mxGeometry></CommandControlLink><ExplicitLink id="-108078b6:1345b8f2778:-7b29" parent="-108078b6:1345b8f2778:-7bff" source="-108078b6:1345b8f2778:-7b85" target="-108078b6:1345b8f2778:-7b3b"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="444.0" y="140.0"/><mxPoint as="targetPoint" x="620.0" y="230.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="550.0" y="140.0"/><mxPoint x="550.0" y="230.0"/><mxPoint x="620.0" y="230.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="-108078b6:1345b8f2778:-7b28" parent="-108078b6:1345b8f2778:-7bff" source="-108078b6:1345b8f2778:-7b9f" target="-108078b6:1345b8f2778:-7b3a"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="290.0" y="294.0"/><mxPoint as="targetPoint" x="620.0" y="260.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="290.0" y="320.0"/><mxPoint x="560.0" y="320.0"/><mxPoint x="560.0" y="320.0"/><mxPoint x="560.0" y="260.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="-108078b6:1345b8f2778:-7b27" parent="-108078b6:1345b8f2778:-7bff" source="-108078b6:1345b8f2778:-7bb3" target="-108078b6:1345b8f2778:-7b3c"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="244.0" y="150.0"/><mxPoint as="targetPoint" x="620.0" y="200.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="260.0" y="150.0"/><mxPoint x="260.0" y="80.0"/><mxPoint x="570.0" y="80.0"/><mxPoint x="570.0" y="200.0"/></Array></mxGeometry></ExplicitLink><TextBlock id="-108078b6:1345b8f2778:-7b26" parent="-108078b6:1345b8f2778:-7bff" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="E1 = 120V"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="E1 = 120V"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="E1 = 120V"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="100.0" y="190.0"/></TextBlock><TextBlock id="-108078b6:1345b8f2778:-7b25" parent="-108078b6:1345b8f2778:-7bff" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="R1 = 40"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="R1 = 40"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="R1 = 40"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="120.0" y="90.0"/></TextBlock><TextBlock id="-108078b6:1345b8f2778:-7b24" parent="-108078b6:1345b8f2778:-7bff" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="R2 = 20"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="R2 = 20"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="R2 = 20"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="310.0" y="180.0"/></TextBlock><TextBlock id="-108078b6:1345b8f2778:-7b23" parent="-108078b6:1345b8f2778:-7bff" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="R3 = 60"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="R3 = 60"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="R3 = 60"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="320.0" y="80.0"/></TextBlock><TextBlock id="-108078b6:1345b8f2778:-7b22" parent="-108078b6:1345b8f2778:-7bff" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="E2 = 65V"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="E2 = 65V"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="E2 = 65V"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="430.0" y="170.0"/></TextBlock><TextBlock id="-108078b6:1345b8f2778:-7b21" parent="-108078b6:1345b8f2778:-7bff" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="I1"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="I1"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="I1"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="190.0" y="150.0"/></TextBlock><TextBlock id="-108078b6:1345b8f2778:-7b20" parent="-108078b6:1345b8f2778:-7bff" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="I2"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="I2"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="I2"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="400.0" y="140.0"/></TextBlock><TextBlock id="-108078b6:1345b8f2778:-7b1f" parent="-108078b6:1345b8f2778:-7bff" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="I3"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="I3"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="I3"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="290.0" y="250.0"/></TextBlock><TextBlock id="-108078b6:1345b8f2778:-7b1e" parent="-108078b6:1345b8f2778:-7bff" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="40.0" width="40.0" x="570.0" y="490.0"/></TextBlock><BasicBlock angle="90" id="-108078b6:1345b8f2778:-7bf6" interfaceFunctionName="ConstantVoltage" ordering="14" parent="-108078b6:1345b8f2778:-7bff" simulationFunctionName="ConstantVoltage" simulationFunctionType="DEFAULT" style="ConstantVoltage;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="120"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="120.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ConstantVoltage"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="V"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="120.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="50.0" y="190.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-7bec" ordering="1" parent="-108078b6:1345b8f2778:-7bf6" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-108078b6:1345b8f2778:-7beb" ordering="1" parent="-108078b6:1345b8f2778:-7bf6" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><TextBlock id="7727d8d6:134717c1794:-7e39" parent="-108078b6:1345b8f2778:-7bff" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value=""><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value=""/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="40.0" y="110.0"/></TextBlock><TextBlock id="7727d8d6:134717c1794:-7e38" parent="-108078b6:1345b8f2778:-7bff" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="in the current sensor black to white is considered as possitive direction"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="in the current sensor black to white is considered as possitive direction"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="in the current sensor black to white is considered as possitive direction"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="200.0" y="380.0"/></TextBlock></root></mxGraphModel><mxCell as="defaultParent" id="-108078b6:1345b8f2778:-7bff" parent="-108078b6:1345b8f2778:-7bfe"/></XcosDiagram>
\ No newline at end of file diff --git a/Working_Examples/293/CH4/EX4.3/eg4_3.sce b/Working_Examples/293/CH4/EX4.3/eg4_3.sce new file mode 100755 index 0000000..2aac486 --- /dev/null +++ b/Working_Examples/293/CH4/EX4.3/eg4_3.sce @@ -0,0 +1,10 @@ +//ad
+Zab = complex(1,-0.5); //impedance appearing across terminals ab
+Zbg = complex(1); //impedance appearing across terminals bg
+Zbcd = complex(2+1,2); //impedance appearing across terminals bcd
+Zad = Zab + (Zbg*Zbcd/(Zbg + Zbcd)); //impedance appearing across terminals ad
+disp(Zad,"impedance appearing across terminals ad = ")
+
+//dg
+Zdg = Zbg + (Zab*Zbcd/(Zab+Zbcd)); //impedance appearing across termainals dg
+disp(Zdg,"impedance appearing across terminals dg = ")
\ No newline at end of file diff --git a/Working_Examples/293/CH5/EX5.1/eg5_1.pdf b/Working_Examples/293/CH5/EX5.1/eg5_1.pdf Binary files differnew file mode 100755 index 0000000..6c14bf8 --- /dev/null +++ b/Working_Examples/293/CH5/EX5.1/eg5_1.pdf diff --git a/Working_Examples/293/CH5/EX5.1/eg5_1.xcos b/Working_Examples/293/CH5/EX5.1/eg5_1.xcos new file mode 100755 index 0000000..bcb39be --- /dev/null +++ b/Working_Examples/293/CH5/EX5.1/eg5_1.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" finalIntegrationTime="20.0" title="eg5_1"><!--Xcos - 1.0 - scilab-5.5.2 - 20160406 2040--><mxGraphModel as="model"><root><mxCell id="7ce57742:133f8596f12:-7f11"/><mxCell id="7ce57742:133f8596f12:-7f12" parent="7ce57742:133f8596f12:-7f11"/><BasicBlock angle="90" id="4c3b265:134192dde3e:-7fad" interfaceFunctionName="ConstantVoltage" ordering="1" parent="7ce57742:133f8596f12:-7f12" simulationFunctionName="ConstantVoltage" simulationFunctionType="DEFAULT" style="ConstantVoltage;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="12"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="12.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ConstantVoltage"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="V"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="12.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="40.0" y="220.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="4c3b265:134192dde3e:-7fa8" ordering="1" parent="4c3b265:134192dde3e:-7fad" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="4c3b265:134192dde3e:-7fa9" ordering="1" parent="4c3b265:134192dde3e:-7fad" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock angle="180" dependsOnU="1" id="4c3b265:134192dde3e:-7f9c" interfaceFunctionName="Resistor" ordering="2" parent="7ce57742:133f8596f12:-7f12" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=180;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="2"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="130.0" y="160.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="4c3b265:134192dde3e:-7f96" ordering="1" parent="4c3b265:134192dde3e:-7f9c" style="ImplicitOutputPort;align=left;verticalAlign=middle;spacing=10;rotation=180;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="4c3b265:134192dde3e:-7f97" ordering="1" parent="4c3b265:134192dde3e:-7f9c" style="ImplicitInputPort;align=right;verticalAlign=middle;spacing=10;rotation=180;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitInputPort><TextBlock id="4c3b265:134192dde3e:-7f99" parent="7ce57742:133f8596f12:-7f12" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="40.0" width="40.0" x="200.0" y="210.0"/></TextBlock><BasicBlock angle="180" dependsOnU="1" id="4c3b265:134192dde3e:-7f8e" interfaceFunctionName="Resistor" ordering="3" parent="7ce57742:133f8596f12:-7f12" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=180;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="4"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="260.0" y="160.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="4c3b265:134192dde3e:-7f83" ordering="1" parent="4c3b265:134192dde3e:-7f8e" style="ImplicitOutputPort;align=left;verticalAlign=middle;spacing=10;rotation=180;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="4c3b265:134192dde3e:-7f84" ordering="1" parent="4c3b265:134192dde3e:-7f8e" style="ImplicitInputPort;align=right;verticalAlign=middle;spacing=10;rotation=180;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitInputPort><BasicBlock angle="270" dependsOnU="1" id="4c3b265:134192dde3e:-7f7a" interfaceFunctionName="Inductor" ordering="4" parent="7ce57742:133f8596f12:-7f12" simulationFunctionName="Inductor" simulationFunctionType="DEFAULT" style="Inductor;rotation=270;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="2"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Inductor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="L"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="420.0" y="220.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="4c3b265:134192dde3e:-7f75" ordering="1" parent="4c3b265:134192dde3e:-7f7a" style="ImplicitOutputPort;align=center;verticalAlign=top;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="4c3b265:134192dde3e:-7f76" ordering="1" parent="4c3b265:134192dde3e:-7f7a" style="ImplicitInputPort;align=center;verticalAlign=bottom;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitInputPort><GroundBlock dependsOnU="1" id="4c3b265:134192dde3e:-7f6a" interfaceFunctionName="Ground" ordering="5" parent="7ce57742:133f8596f12:-7f12" simulationFunctionName="Ground" simulationFunctionType="DEFAULT" style="Ground;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Ground"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="140.0" y="320.0"/></GroundBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="4c3b265:134192dde3e:-7f69" ordering="1" parent="4c3b265:134192dde3e:-7f6a" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><Orientation as="orientation" value="NORTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><TextBlock id="4c3b265:134192dde3e:-7f61" parent="7ce57742:133f8596f12:-7f12" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="40.0" width="40.0" x="190.0" y="330.0"/></TextBlock><BasicBlock dependsOnU="1" id="4c3b265:134192dde3e:-7f4a" interfaceFunctionName="CSCOPE" ordering="6" parent="7ce57742:133f8596f12:-7f12" simulationFunctionName="cscope" simulationFunctionType="C_OR_FORTRAN" style="CSCOPE;flip=false;mirror=false"><ScilabString as="exprs" height="10" width="1"><data column="0" line="0" value="1 3 5 7 9 11 13 15"/><data column="0" line="1" value="-1"/><data column="0" line="2" value="[]"/><data column="0" line="3" value="[600;400]"/><data column="0" line="4" value="0"/><data column="0" line="5" value="3.2"/><data column="0" line="6" value="10"/><data column="0" line="7" value="20"/><data column="0" line="8" value="0"/><data column="0" line="9" value=""/></ScilabString><ScilabDouble as="realParameters" height="4" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="0.0"/><data column="0" line="2" realPart="3.2"/><data column="0" line="3" realPart="10.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="15" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="1.0"/><data column="0" line="4" realPart="3.0"/><data column="0" line="5" realPart="5.0"/><data column="0" line="6" realPart="7.0"/><data column="0" line="7" realPart="9.0"/><data column="0" line="8" realPart="11.0"/><data column="0" line="9" realPart="13.0"/><data column="0" line="10" realPart="15.0"/><data column="0" line="11" realPart="-1.0"/><data column="0" line="12" realPart="-1.0"/><data column="0" line="13" realPart="600.0"/><data column="0" line="14" realPart="400.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="510.0" y="170.0"/></BasicBlock><ControlPort dataType="UNKNOW_TYPE" id="4c3b265:134192dde3e:-7eda" ordering="1" parent="4c3b265:134192dde3e:-7f4a" style="ControlPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="4c3b265:134192dde3e:-7edb" ordering="1" parent="4c3b265:134192dde3e:-7f4a" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><BasicBlock dependsOnU="1" id="4c3b265:134192dde3e:-7f3d" interfaceFunctionName="CurrentSensor" ordering="7" parent="7ce57742:133f8596f12:-7f12" simulationFunctionName="CurrentSensor" simulationFunctionType="DEFAULT" style="CurrentSensor;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CurrentSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="i"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="350.0" y="160.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="4c3b265:134192dde3e:-7f3c" ordering="1" parent="4c3b265:134192dde3e:-7f3d" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="6.0"/></ImplicitOutputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="4c3b265:134192dde3e:-7f3b" ordering="2" parent="4c3b265:134192dde3e:-7f3d" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="26.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="4c3b265:134192dde3e:-7f3a" ordering="1" parent="4c3b265:134192dde3e:-7f3d" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitLink id="4c3b265:134192dde3e:-7f39" parent="7ce57742:133f8596f12:-7f12" source="4c3b265:134192dde3e:-7f84" target="4c3b265:134192dde3e:-7f3a"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="304.0" y="180.0"/><mxPoint as="targetPoint" x="340.0" y="180.0"/></mxGeometry></ImplicitLink><ImplicitLink id="4c3b265:134192dde3e:-7f38" parent="7ce57742:133f8596f12:-7f12" source="4c3b265:134192dde3e:-7f75" target="4c3b265:134192dde3e:-7f3c"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="394.0" y="170.0"/><mxPoint as="targetPoint" x="440.0" y="210.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="440.0" y="210.0"/><mxPoint x="440.0" y="170.0"/><mxPoint x="430.0" y="170.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="4c3b265:134192dde3e:-7f36" ordering="8" parent="7ce57742:133f8596f12:-7f12" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="157.0" y="277.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="4c3b265:134192dde3e:-7f35" ordering="1" parent="4c3b265:134192dde3e:-7f36" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="4c3b265:134192dde3e:-7f34" ordering="1" parent="4c3b265:134192dde3e:-7f36" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="4c3b265:134192dde3e:-7f33" ordering="2" parent="4c3b265:134192dde3e:-7f36" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitLink id="4c3b265:134192dde3e:-7f32" parent="7ce57742:133f8596f12:-7f12" source="4c3b265:134192dde3e:-7fa8" target="4c3b265:134192dde3e:-7f35"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="60.0" y="280.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="4c3b265:134192dde3e:-7f31" parent="7ce57742:133f8596f12:-7f12" source="4c3b265:134192dde3e:-7f34" target="4c3b265:134192dde3e:-7f69"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="4c3b265:134192dde3e:-7f37" parent="7ce57742:133f8596f12:-7f12" source="4c3b265:134192dde3e:-7f33" target="4c3b265:134192dde3e:-7f76"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="440.0" y="264.0"/><mxPoint as="targetPoint" x="160.0" y="280.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="440.0" y="280.0"/></Array></mxGeometry></ImplicitLink><ExplicitLink id="4c3b265:134192dde3e:-7f2a" parent="7ce57742:133f8596f12:-7f12" source="4c3b265:134192dde3e:-7f3b" target="4c3b265:134192dde3e:-7edb"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="394.0" y="190.0"/><mxPoint as="targetPoint" x="500.0" y="190.0"/></mxGeometry></ExplicitLink><BasicBlock blockType="h" id="4c3b265:134192dde3e:-7f24" interfaceFunctionName="CLOCK_c" ordering="9" parent="7ce57742:133f8596f12:-7f12" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="119.0"/><data column="1" line="0" realPart="-150.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-1de3cc81:16a44b61d89:-7caa"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-1de3cc81:16a44b61d89:-7caa"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.005"/><data column="0" line="1" value="0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.005"/><data column="0" line="1" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-1de3cc81:16a44b61d89:-7ca8"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-1de3cc81:16a44b61d89:-7ca8"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="123.3773266666667"/><data column="1" line="0" realPart="-169.33333333333331"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="7.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="5.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-1de3cc81:16a44b61d89:-7ca5"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-1de3cc81:16a44b61d89:-7ca5"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="100.0"/><data column="0" line="2" realPart="133.8773266666667"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-44.0"/><data column="0" line="1" realPart="-180.0"/><data column="0" line="2" realPart="-158.33333333333331"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="132.71066000000005"/><data column="0" line="1" realPart="149.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-173.33333333333331"/><data column="0" line="1" realPart="-126.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="135.04399333333336"/><data column="0" line="1" realPart="140.70999999999998"/><data column="0" line="2" realPart="100.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-173.33333333333331"/><data column="0" line="1" realPart="-50.0"/><data column="0" line="2" realPart="-50.0"/><data column="0" line="3" realPart="4.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="510.0" y="70.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="4c3b265:134192dde3e:-7f20" ordering="1" parent="4c3b265:134192dde3e:-7f24" style="CommandPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><CommandControlLink id="4c3b265:134192dde3e:-7f22" parent="7ce57742:133f8596f12:-7f12" source="4c3b265:134192dde3e:-7f20" target="4c3b265:134192dde3e:-7eda"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="530.0" y="114.0"/><mxPoint as="targetPoint" x="530.0" y="160.0"/></mxGeometry></CommandControlLink><BasicBlock dependsOnU="1" id="4c3b265:134192dde3e:-7f09" interfaceFunctionName="Switch" ordering="10" parent="7ce57742:133f8596f12:-7f12" simulationFunctionName="Switch" simulationFunctionType="DEFAULT" style="Switch;flip=false;mirror=false"><ScilabString as="exprs" height="2" width="1"><data column="0" line="0" value="0"/><data column="0" line="1" value="100000"/></ScilabString><ScilabDouble as="realParameters" height="2" width="1"><data column="0" line="0" realPart="0.01"/><data column="0" line="1" realPart="100000.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Switch"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="p"/><data column="0" line="1" value="inp"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="2" width="1"><data column="0" line="0" value="Ron"/><data column="0" line="1" value="Roff"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="130.0" y="90.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="4c3b265:134192dde3e:-7ee5" ordering="1" parent="4c3b265:134192dde3e:-7f09" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="4c3b265:134192dde3e:-7ee7" ordering="1" parent="4c3b265:134192dde3e:-7f09" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ImplicitInputPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="4c3b265:134192dde3e:-7ee6" ordering="2" parent="4c3b265:134192dde3e:-7f09" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="26.0"/></ExplicitInputPort><SplitBlock id="4c3b265:134192dde3e:-7efd" ordering="11" parent="7ce57742:133f8596f12:-7f12" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="97.0" y="177.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="4c3b265:134192dde3e:-7efc" ordering="1" parent="4c3b265:134192dde3e:-7efd" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="4c3b265:134192dde3e:-7efb" ordering="1" parent="4c3b265:134192dde3e:-7efd" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="4c3b265:134192dde3e:-7efa" ordering="2" parent="4c3b265:134192dde3e:-7efd" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitLink id="4c3b265:134192dde3e:-7ef9" parent="7ce57742:133f8596f12:-7f12" source="4c3b265:134192dde3e:-7f96" target="4c3b265:134192dde3e:-7efc"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="4c3b265:134192dde3e:-7ef8" parent="7ce57742:133f8596f12:-7f12" source="4c3b265:134192dde3e:-7efb" target="4c3b265:134192dde3e:-7fa9"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="60.0" y="180.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="4c3b265:134192dde3e:-7efe" parent="7ce57742:133f8596f12:-7f12" source="4c3b265:134192dde3e:-7efa" target="4c3b265:134192dde3e:-7ee7"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="126.0" y="100.0"/><mxPoint as="targetPoint" x="100.0" y="180.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="100.0" y="100.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="4c3b265:134192dde3e:-7ef6" ordering="12" parent="7ce57742:133f8596f12:-7f12" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="207.0" y="177.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="4c3b265:134192dde3e:-7ef5" ordering="1" parent="4c3b265:134192dde3e:-7ef6" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="4c3b265:134192dde3e:-7ef4" ordering="1" parent="4c3b265:134192dde3e:-7ef6" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="4c3b265:134192dde3e:-7ef3" ordering="2" parent="4c3b265:134192dde3e:-7ef6" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitLink id="4c3b265:134192dde3e:-7ef2" parent="7ce57742:133f8596f12:-7f12" source="4c3b265:134192dde3e:-7f83" target="4c3b265:134192dde3e:-7ef5"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="4c3b265:134192dde3e:-7ef1" parent="7ce57742:133f8596f12:-7f12" source="4c3b265:134192dde3e:-7ef4" target="4c3b265:134192dde3e:-7f97"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="4c3b265:134192dde3e:-7ef7" parent="7ce57742:133f8596f12:-7f12" source="4c3b265:134192dde3e:-7ee5" target="4c3b265:134192dde3e:-7ef3"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="174.0" y="110.0"/><mxPoint as="targetPoint" x="210.0" y="180.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="210.0" y="110.0"/></Array></mxGeometry></ImplicitLink><BasicBlock blockType="h" id="4c3b265:134192dde3e:-7eeb" interfaceFunctionName="STEP_FUNCTION" ordering="13" parent="7ce57742:133f8596f12:-7f12" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="STEP_FUNCTION;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="STEP_FUNCTION"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-4"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="14.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=" "/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="3" width="1"><data column="0" line="0" value="10"/><data column="0" line="1" value="0"/><data column="0" line="2" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"STEP",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="STEP"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="step_func"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="10.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="true"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-1de3cc81:16a44b61d89:-7c9c"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="STEP"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-1de3cc81:16a44b61d89:-7c9c"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="108.57143300000001"/><data column="1" line="0" realPart="-70.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"OUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="OUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-2.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-1de3cc81:16a44b61d89:-7c98"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="OUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-1de3cc81:16a44b61d89:-7c98"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="6" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="100.00000299999999"/><data column="0" line="2" realPart="61.478395"/><data column="0" line="3" realPart="61.478395"/><data column="0" line="4" realPart="100.00000299999999"/><data column="0" line="5" realPart="60.0"/></ScilabDouble><ScilabDouble height="6" width="1"><data column="0" line="0" realPart="-44.0"/><data column="0" line="1" realPart="-150.39289999999994"/><data column="0" line="2" realPart="-150.39289999999994"/><data column="0" line="3" realPart="-60.69677999999999"/><data column="0" line="4" realPart="-60.69677999999999"/><data column="0" line="5" realPart="4.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="84.0"/><data column="0" line="1" realPart="124.57143300000001"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-20.0"/><data column="0" line="1" realPart="-60.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="20.0" y="100.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataType="REAL_MATRIX" id="4c3b265:134192dde3e:-7ee2" ordering="1" parent="4c3b265:134192dde3e:-7eeb" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ExplicitLink id="4c3b265:134192dde3e:-7ee9" parent="7ce57742:133f8596f12:-7f12" source="4c3b265:134192dde3e:-7ee2" target="4c3b265:134192dde3e:-7ee6"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="64.0" y="120.0"/><mxPoint as="targetPoint" x="120.0" y="120.0"/></mxGeometry></ExplicitLink><TextBlock id="4c3b265:134192dde3e:-7ed8" parent="7ce57742:133f8596f12:-7f12" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="E = 12V"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="E = 12V"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="E = 12V"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="90.0" y="220.0"/></TextBlock><TextBlock id="4c3b265:134192dde3e:-7ed6" parent="7ce57742:133f8596f12:-7f12" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="R1 = 2 ohm"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="R1 = 2 ohm"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="R1 = 2 ohm"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="130.0" y="190.0"/></TextBlock><TextBlock id="4c3b265:134192dde3e:-7ed3" parent="7ce57742:133f8596f12:-7f12" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="R2 = 4 ohm"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="R2 = 4 ohm"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="R2 = 4 ohm"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="260.0" y="190.0"/></TextBlock><TextBlock id="4c3b265:134192dde3e:-7ed2" parent="7ce57742:133f8596f12:-7f12" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="L = 2H"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="L = 2H"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="L = 2H"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="470.0" y="220.0"/></TextBlock><TextBlock id="4c3b265:134192dde3e:-7ed1" parent="7ce57742:133f8596f12:-7f12" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="we are closing the switch at t = 10sec"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="we are closing the switch at t = 10sec"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="we are closing the switch at t = 10sec"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="120.0" y="20.0"/></TextBlock></root></mxGraphModel><mxCell as="defaultParent" id="7ce57742:133f8596f12:-7f12" parent="7ce57742:133f8596f12:-7f11"/></XcosDiagram>
\ No newline at end of file diff --git a/Working_Examples/293/CH5/EX5.2/eg5_2.pdf b/Working_Examples/293/CH5/EX5.2/eg5_2.pdf Binary files differnew file mode 100755 index 0000000..c5a9d74 --- /dev/null +++ b/Working_Examples/293/CH5/EX5.2/eg5_2.pdf diff --git a/Working_Examples/293/CH5/EX5.2/eg5_2.sce b/Working_Examples/293/CH5/EX5.2/eg5_2.sce new file mode 100755 index 0000000..1010bcd --- /dev/null +++ b/Working_Examples/293/CH5/EX5.2/eg5_2.sce @@ -0,0 +1,9 @@ +C = 10*10^-6 ; //capacitance(in farads)
+R = 0.2*10^6; //resistance (in ohms)
+Vi = 40; //initial voltage of the capacitor (in volts)
+Wc = (1/2)*C*Vi^2; //energy stored in the capacitor
+//current flowing in circuit as a function of time i(t) = 2*10^-4*exp(-t/2)
+//power dissipated in the resistor = R*i^2
+Wr = integrate('R*4*10^-8*exp(-t)','t',0,100)
+disp(Wc,"energy stored in the capacitor(in Joules) = ")
+disp(Wr,"energy dissipated in the resistor(in Joules) = ")
\ No newline at end of file diff --git a/Working_Examples/293/CH5/EX5.2/eg5_2.xcos b/Working_Examples/293/CH5/EX5.2/eg5_2.xcos new file mode 100755 index 0000000..6a93136 --- /dev/null +++ b/Working_Examples/293/CH5/EX5.2/eg5_2.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" finalIntegrationTime="30.0" title="eg5_2"><!--Xcos - 1.0 - scilab-5.5.2 - 20160406 2040--><mxGraphModel as="model"><root><mxCell id="4c3b265:134192dde3e:-7ecf"/><mxCell id="4c3b265:134192dde3e:-7ed0" parent="4c3b265:134192dde3e:-7ecf"/><BasicBlock angle="90" dependsOnU="1" id="4c3b265:134192dde3e:-7ec5" interfaceFunctionName="Capacitor" ordering="1" parent="4c3b265:134192dde3e:-7ed0" simulationFunctionName="Capacitor" simulationFunctionType="DEFAULT" style="Capacitor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="2" width="1"><data column="0" line="0" value="0.00001"/><data column="0" line="1" value="40"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="1.0E-5"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Capacitor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="2"><data column="0" line="0" value="C"/><data column="1" line="0" value="v"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0E-5"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="40.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="370.0" y="200.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="4c3b265:134192dde3e:-7e19" ordering="1" parent="4c3b265:134192dde3e:-7ec5" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="4c3b265:134192dde3e:-7e18" ordering="1" parent="4c3b265:134192dde3e:-7ec5" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><BasicBlock dependsOnU="1" id="4c3b265:134192dde3e:-7ebb" interfaceFunctionName="Resistor" ordering="2" parent="4c3b265:134192dde3e:-7ed0" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="200000"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="200000.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="200000.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="210.0" y="110.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="4c3b265:134192dde3e:-7e74" ordering="1" parent="4c3b265:134192dde3e:-7ebb" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="4c3b265:134192dde3e:-7e73" ordering="1" parent="4c3b265:134192dde3e:-7ebb" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><BasicBlock dependsOnU="1" id="4c3b265:134192dde3e:-7eaf" interfaceFunctionName="Switch" ordering="3" parent="4c3b265:134192dde3e:-7ed0" simulationFunctionName="Switch" simulationFunctionType="DEFAULT" style="Switch;flip=false;mirror=false"><ScilabString as="exprs" height="2" width="1"><data column="0" line="0" value="0.01"/><data column="0" line="1" value="100000"/></ScilabString><ScilabDouble as="realParameters" height="2" width="1"><data column="0" line="0" realPart="0.01"/><data column="0" line="1" realPart="100000.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Switch"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="p"/><data column="0" line="1" value="inp"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="2" width="1"><data column="0" line="0" value="Ron"/><data column="0" line="1" value="Roff"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.01"/><data column="0" line="1" realPart="100000.0"/></ScilabDouble></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="130.0" y="110.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="4c3b265:134192dde3e:-7ead" ordering="1" parent="4c3b265:134192dde3e:-7eaf" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ImplicitInputPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="4c3b265:134192dde3e:-7eac" ordering="2" parent="4c3b265:134192dde3e:-7eaf" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="26.0"/></ExplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="4c3b265:134192dde3e:-7eae" ordering="1" parent="4c3b265:134192dde3e:-7eaf" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><BasicBlock dependsOnU="1" id="4c3b265:134192dde3e:-7e97" interfaceFunctionName="CSCOPE" ordering="4" parent="4c3b265:134192dde3e:-7ed0" simulationFunctionName="cscope" simulationFunctionType="C_OR_FORTRAN" style="CSCOPE;flip=false;mirror=false"><ScilabString as="exprs" height="10" width="1"><data column="0" line="0" value="1 3 5 7 9 11 13 15"/><data column="0" line="1" value="-1"/><data column="0" line="2" value="[]"/><data column="0" line="3" value="[600;400]"/><data column="0" line="4" value="-0.0002"/><data column="0" line="5" value="0.0002"/><data column="0" line="6" value="30"/><data column="0" line="7" value="20"/><data column="0" line="8" value="0"/><data column="0" line="9" value=""/></ScilabString><ScilabDouble as="realParameters" height="4" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="-2.0E-4"/><data column="0" line="2" realPart="2.0E-4"/><data column="0" line="3" realPart="30.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="15" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="1.0"/><data column="0" line="4" realPart="3.0"/><data column="0" line="5" realPart="5.0"/><data column="0" line="6" realPart="7.0"/><data column="0" line="7" realPart="9.0"/><data column="0" line="8" realPart="11.0"/><data column="0" line="9" realPart="13.0"/><data column="0" line="10" realPart="15.0"/><data column="0" line="11" realPart="-1.0"/><data column="0" line="12" realPart="-1.0"/><data column="0" line="13" realPart="600.0"/><data column="0" line="14" realPart="400.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="430.0" y="120.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="5f9ca566:13492e0ce3c:-7f31" ordering="1" parent="4c3b265:134192dde3e:-7e97" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ControlPort dataType="UNKNOW_TYPE" id="5f9ca566:13492e0ce3c:-7f30" ordering="1" parent="4c3b265:134192dde3e:-7e97" style="ControlPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><BasicBlock blockType="h" id="4c3b265:134192dde3e:-7e8f" interfaceFunctionName="CLOCK_c" ordering="5" parent="4c3b265:134192dde3e:-7ed0" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="119.0"/><data column="1" line="0" realPart="-150.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="5f9ca566:13492e0ce3c:-7fa3"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="5f9ca566:13492e0ce3c:-7fa3"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.005"/><data column="0" line="1" value="0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.005"/><data column="0" line="1" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="5f9ca566:13492e0ce3c:-7f9f"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="5f9ca566:13492e0ce3c:-7f9f"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="124.71066000000002"/><data column="1" line="0" realPart="-164.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="8.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="4.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="5f9ca566:13492e0ce3c:-7f9a"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="5f9ca566:13492e0ce3c:-7f9a"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="106.0"/><data column="0" line="2" realPart="135.37732666666668"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="4.0"/><data column="0" line="1" realPart="-204.0"/><data column="0" line="2" realPart="-168.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="136.71066000000002"/><data column="0" line="1" realPart="149.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-152.0"/><data column="0" line="1" realPart="-126.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="138.04399333333336"/><data column="0" line="1" realPart="151.70999999999998"/><data column="0" line="2" realPart="111.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-168.0"/><data column="0" line="1" realPart="-58.0"/><data column="0" line="2" realPart="-58.0"/><data column="0" line="3" realPart="-44.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="430.0" y="40.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="4c3b265:134192dde3e:-7e3d" ordering="1" parent="4c3b265:134192dde3e:-7e8f" style="CommandPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><GroundBlock dependsOnU="1" id="4c3b265:134192dde3e:-7e88" interfaceFunctionName="Ground" ordering="6" parent="4c3b265:134192dde3e:-7ed0" simulationFunctionName="Ground" simulationFunctionType="DEFAULT" style="Ground;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Ground"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="90.0" y="290.0"/></GroundBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="4c3b265:134192dde3e:-7e87" ordering="1" parent="4c3b265:134192dde3e:-7e88" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><Orientation as="orientation" value="NORTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitLink id="4c3b265:134192dde3e:-7e66" parent="4c3b265:134192dde3e:-7ed0" source="4c3b265:134192dde3e:-7eae" target="4c3b265:134192dde3e:-7e74"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="174.0" y="130.0"/><mxPoint as="targetPoint" x="200.0" y="130.0"/></mxGeometry></ImplicitLink><ExplicitLink id="4c3b265:134192dde3e:-7e63" parent="4c3b265:134192dde3e:-7ed0" source="4c3b265:134192dde3e:-7e61" target="4c3b265:134192dde3e:-7eac"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="64.0" y="140.0"/><mxPoint as="targetPoint" x="120.0" y="140.0"/></mxGeometry></ExplicitLink><SplitBlock id="4c3b265:134192dde3e:-7e5b" ordering="7" parent="4c3b265:134192dde3e:-7ed0" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="107.0" y="267.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="4c3b265:134192dde3e:-7e59" ordering="1" parent="4c3b265:134192dde3e:-7e5b" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="4c3b265:134192dde3e:-7e58" ordering="2" parent="4c3b265:134192dde3e:-7e5b" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="4c3b265:134192dde3e:-7e5a" ordering="1" parent="4c3b265:134192dde3e:-7e5b" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="4c3b265:134192dde3e:-7e57" parent="4c3b265:134192dde3e:-7ed0" source="4c3b265:134192dde3e:-7ead" target="4c3b265:134192dde3e:-7e5a"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="110.0" y="120.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="4c3b265:134192dde3e:-7e56" parent="4c3b265:134192dde3e:-7ed0" source="4c3b265:134192dde3e:-7e59" target="4c3b265:134192dde3e:-7e87"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><CommandControlLink id="4c3b265:134192dde3e:-7e3b" parent="4c3b265:134192dde3e:-7ed0" source="4c3b265:134192dde3e:-7e3d" target="5f9ca566:13492e0ce3c:-7f30"><mxGeometry as="geometry" x="-20.0" y="10.0"><mxPoint as="sourcePoint" x="450.0" y="84.0"/><mxPoint as="targetPoint" x="450.0" y="110.0"/></mxGeometry></CommandControlLink><TextBlock id="4c3b265:134192dde3e:-7e32" parent="4c3b265:134192dde3e:-7ed0" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="R = 0.2 M ohm"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="R = 0.2 M ohm"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="R = 0.2 M ohm"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="210.0" y="80.0"/></TextBlock><TextBlock id="4c3b265:134192dde3e:-7e30" parent="4c3b265:134192dde3e:-7ed0" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="C = 10 micro F"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="C = 10 micro F"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="C = 10 micro F"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="310.0" y="200.0"/></TextBlock><BasicBlock blockType="h" id="4c3b265:134192dde3e:-7ece" interfaceFunctionName="STEP_FUNCTION" ordering="8" parent="4c3b265:134192dde3e:-7ed0" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="STEP_FUNCTION;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="STEP_FUNCTION"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-4"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="14.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=" "/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="3" width="1"><data column="0" line="0" value="0"/><data column="0" line="1" value="0"/><data column="0" line="2" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"STEP",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="STEP"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="step_func"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="1.0"/><data column="0" line="1" realPart="1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="true"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="5f9ca566:13492e0ce3c:-7f8f"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="STEP"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="5f9ca566:13492e0ce3c:-7f8f"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="108.57143300000001"/><data column="1" line="0" realPart="-70.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"OUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="OUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-2.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="5f9ca566:13492e0ce3c:-7f8c"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="OUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="5f9ca566:13492e0ce3c:-7f8c"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="6" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="116.00000299999998"/><data column="0" line="2" realPart="77.47839499999999"/><data column="0" line="3" realPart="77.47839499999999"/><data column="0" line="4" realPart="116.00000299999998"/><data column="0" line="5" realPart="60.0"/></ScilabDouble><ScilabDouble height="6" width="1"><data column="0" line="0" realPart="4.0"/><data column="0" line="1" realPart="-174.39289999999994"/><data column="0" line="2" realPart="-174.39289999999994"/><data column="0" line="3" realPart="-84.69677999999999"/><data column="0" line="4" realPart="-84.69677999999999"/><data column="0" line="5" realPart="-44.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="84.0"/><data column="0" line="1" realPart="124.57143300000001"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-20.0"/><data column="0" line="1" realPart="-60.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="20.0" y="120.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataType="REAL_MATRIX" id="4c3b265:134192dde3e:-7e61" ordering="1" parent="4c3b265:134192dde3e:-7ece" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ImplicitLink id="5f9ca566:13492e0ce3c:-7f55" parent="4c3b265:134192dde3e:-7ed0" source="4c3b265:134192dde3e:-7e58" target="4c3b265:134192dde3e:-7e18"><mxGeometry as="geometry" x="80.0" y="60.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="390.0" y="270.0"/></Array></mxGeometry></ImplicitLink><BasicBlock dependsOnU="1" id="5f9ca566:13492e0ce3c:-7f4b" interfaceFunctionName="CurrentSensor" ordering="9" parent="4c3b265:134192dde3e:-7ed0" simulationFunctionName="CurrentSensor" simulationFunctionType="DEFAULT" style="CurrentSensor;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CurrentSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="i"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="300.0" y="110.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5f9ca566:13492e0ce3c:-7f4a" ordering="1" parent="5f9ca566:13492e0ce3c:-7f4b" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="6.0"/></ImplicitOutputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5f9ca566:13492e0ce3c:-7f49" ordering="2" parent="5f9ca566:13492e0ce3c:-7f4b" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="26.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5f9ca566:13492e0ce3c:-7f48" ordering="1" parent="5f9ca566:13492e0ce3c:-7f4b" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitLink id="5f9ca566:13492e0ce3c:-7f43" parent="4c3b265:134192dde3e:-7ed0" source="4c3b265:134192dde3e:-7e73" target="5f9ca566:13492e0ce3c:-7f48"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="254.0" y="130.0"/><mxPoint as="targetPoint" x="290.0" y="130.0"/></mxGeometry></ImplicitLink><ImplicitLink id="5f9ca566:13492e0ce3c:-7f42" parent="4c3b265:134192dde3e:-7ed0" source="5f9ca566:13492e0ce3c:-7f4a" target="4c3b265:134192dde3e:-7e19"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="344.0" y="120.0"/><mxPoint as="targetPoint" x="390.0" y="190.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="390.0" y="120.0"/></Array></mxGeometry></ImplicitLink><ExplicitLink id="5f9ca566:13492e0ce3c:-7f3b" parent="4c3b265:134192dde3e:-7ed0" source="5f9ca566:13492e0ce3c:-7f49" target="5f9ca566:13492e0ce3c:-7f31"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="344.0" y="140.0"/><mxPoint as="targetPoint" x="420.0" y="140.0"/></mxGeometry></ExplicitLink></root></mxGraphModel><mxCell as="defaultParent" id="4c3b265:134192dde3e:-7ed0" parent="4c3b265:134192dde3e:-7ecf"/></XcosDiagram>
\ No newline at end of file diff --git a/Working_Examples/293/CH5/EX5.3/eg5_3.pdf b/Working_Examples/293/CH5/EX5.3/eg5_3.pdf Binary files differnew file mode 100755 index 0000000..d5db5d5 --- /dev/null +++ b/Working_Examples/293/CH5/EX5.3/eg5_3.pdf diff --git a/Working_Examples/293/CH5/EX5.3/eg5_3.xcos b/Working_Examples/293/CH5/EX5.3/eg5_3.xcos new file mode 100755 index 0000000..9bf6b61 --- /dev/null +++ b/Working_Examples/293/CH5/EX5.3/eg5_3.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" finalIntegrationTime="50.0" title="eg5_3"><!--Xcos - 1.0 - scilab-5.5.2 - 20160406 2040--><mxGraphModel as="model"><root><mxCell id="4c3b265:134192dde3e:-7e2d"/><mxCell id="4c3b265:134192dde3e:-7e2e" parent="4c3b265:134192dde3e:-7e2d"/><BasicBlock angle="90" dependsOnU="1" id="4c3b265:134192dde3e:-7e25" interfaceFunctionName="Capacitor" ordering="1" parent="4c3b265:134192dde3e:-7e2e" simulationFunctionName="Capacitor" simulationFunctionType="DEFAULT" style="Capacitor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="2" width="1"><data column="0" line="0" value="0.000005"/><data column="0" line="1" value="100"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="5.0E-6"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Capacitor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="2"><data column="0" line="0" value="C"/><data column="1" line="0" value="v"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0E-6"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="300.0" y="150.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="4c3b265:134192dde3e:-7e1c" ordering="1" parent="4c3b265:134192dde3e:-7e25" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="4c3b265:134192dde3e:-7e1d" ordering="1" parent="4c3b265:134192dde3e:-7e25" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock angle="90" dependsOnU="1" id="4c3b265:134192dde3e:-7e0f" interfaceFunctionName="Capacitor" ordering="2" parent="4c3b265:134192dde3e:-7e2e" simulationFunctionName="Capacitor" simulationFunctionType="DEFAULT" style="Capacitor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="2" width="1"><data column="0" line="0" value="0.00002"/><data column="0" line="1" value="0"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="2.0E-5"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Capacitor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="2"><data column="0" line="0" value="C"/><data column="1" line="0" value="v"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="2.0E-5"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="300.0" y="240.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="4c3b265:134192dde3e:-7e07" ordering="1" parent="4c3b265:134192dde3e:-7e0f" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="4c3b265:134192dde3e:-7e08" ordering="1" parent="4c3b265:134192dde3e:-7e0f" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="4c3b265:134192dde3e:-7dfb" interfaceFunctionName="Switch" ordering="3" parent="4c3b265:134192dde3e:-7e2e" simulationFunctionName="Switch" simulationFunctionType="DEFAULT" style="Switch;flip=false;mirror=false"><ScilabString as="exprs" height="2" width="1"><data column="0" line="0" value="0"/><data column="0" line="1" value="100000"/></ScilabString><ScilabDouble as="realParameters" height="2" width="1"><data column="0" line="0" realPart="0.01"/><data column="0" line="1" realPart="100000.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Switch"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="p"/><data column="0" line="1" value="inp"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="2" width="1"><data column="0" line="0" value="Ron"/><data column="0" line="1" value="Roff"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="240.0" y="90.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="4c3b265:134192dde3e:-7dda" ordering="1" parent="4c3b265:134192dde3e:-7dfb" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="4c3b265:134192dde3e:-7ddc" ordering="1" parent="4c3b265:134192dde3e:-7dfb" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ImplicitInputPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="4c3b265:134192dde3e:-7ddb" ordering="2" parent="4c3b265:134192dde3e:-7dfb" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="26.0"/></ExplicitInputPort><BasicBlock angle="90" dependsOnU="1" id="4c3b265:134192dde3e:-7def" interfaceFunctionName="Resistor" ordering="4" parent="4c3b265:134192dde3e:-7e2e" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="1000000"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="1000000.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1000000.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="170.0" y="190.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="4c3b265:134192dde3e:-7de9" ordering="1" parent="4c3b265:134192dde3e:-7def" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="4c3b265:134192dde3e:-7dea" ordering="1" parent="4c3b265:134192dde3e:-7def" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><GroundBlock dependsOnU="1" id="4c3b265:134192dde3e:-7de6" interfaceFunctionName="Ground" ordering="5" parent="4c3b265:134192dde3e:-7e2e" simulationFunctionName="Ground" simulationFunctionType="DEFAULT" style="Ground;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Ground"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="230.0" y="340.0"/></GroundBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="4c3b265:134192dde3e:-7de5" ordering="1" parent="4c3b265:134192dde3e:-7de6" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><Orientation as="orientation" value="NORTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock blockType="h" id="4c3b265:134192dde3e:-7dd3" interfaceFunctionName="STEP_FUNCTION" ordering="6" parent="4c3b265:134192dde3e:-7e2e" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="STEP_FUNCTION;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="STEP_FUNCTION"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-4"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="14.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=" "/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="18.521605"/><data column="1" line="0" realPart="-59.30322000000001"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="3" width="1"><data column="0" line="0" value="0"/><data column="0" line="1" value="0"/><data column="0" line="2" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"STEP",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="STEP"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="step_func"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="1.0"/><data column="0" line="1" realPart="1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="true"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-1de3cc81:16a44b61d89:-7b66"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="STEP"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-1de3cc81:16a44b61d89:-7b66"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="107.093038"/><data column="1" line="0" realPart="-69.30322000000001"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"OUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="OUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-2.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-1de3cc81:16a44b61d89:-7b62"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="OUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-1de3cc81:16a44b61d89:-7b62"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="6" width="1"><data column="0" line="0" realPart="78.521605"/><data column="0" line="1" realPart="78.52160799999999"/><data column="0" line="2" realPart="40.0"/><data column="0" line="3" realPart="40.0"/><data column="0" line="4" realPart="78.52160799999999"/><data column="0" line="5" realPart="78.521605"/></ScilabDouble><ScilabDouble height="6" width="1"><data column="0" line="0" realPart="-63.30322000000001"/><data column="0" line="1" realPart="-129.69611999999995"/><data column="0" line="2" realPart="-129.69611999999995"/><data column="0" line="3" realPart="-40.0"/><data column="0" line="4" realPart="-40.0"/><data column="0" line="5" realPart="-15.30322000000001"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="102.521605"/><data column="0" line="1" realPart="123.093038"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-39.30322000000001"/><data column="0" line="1" realPart="-59.30322000000001"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="70.0" y="100.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataType="REAL_MATRIX" id="4c3b265:134192dde3e:-7dce" ordering="1" parent="4c3b265:134192dde3e:-7dd3" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ExplicitLink id="4c3b265:134192dde3e:-7dcc" parent="4c3b265:134192dde3e:-7e2e" source="4c3b265:134192dde3e:-7dce" target="4c3b265:134192dde3e:-7ddb"><mxGeometry as="geometry" x="10.0" y="10.0"><mxPoint as="sourcePoint" x="114.0" y="120.0"/><mxPoint as="targetPoint" x="230.0" y="120.0"/></mxGeometry></ExplicitLink><VoltageSensorBlock dependsOnU="1" id="4c3b265:134192dde3e:-7dc2" interfaceFunctionName="VoltageSensor" ordering="7" parent="4c3b265:134192dde3e:-7e2e" simulationFunctionName="VoltageSensor" simulationFunctionType="DEFAULT" style="VoltageSensor;rotation=0;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="VoltageSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="v"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="390.0" y="140.0"/></VoltageSensorBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="4c3b265:134192dde3e:-7dc1" ordering="1" parent="4c3b265:134192dde3e:-7dc2" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><Orientation as="orientation" value="SOUTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="4c3b265:134192dde3e:-7dc0" ordering="2" parent="4c3b265:134192dde3e:-7dc2" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="4c3b265:134192dde3e:-7dbf" ordering="1" parent="4c3b265:134192dde3e:-7dc2" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><VoltageSensorBlock dependsOnU="1" id="4c3b265:134192dde3e:-7dba" interfaceFunctionName="VoltageSensor" ordering="8" parent="4c3b265:134192dde3e:-7e2e" simulationFunctionName="VoltageSensor" simulationFunctionType="DEFAULT" style="VoltageSensor;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="VoltageSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="v"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="390.0" y="230.0"/></VoltageSensorBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="4c3b265:134192dde3e:-7db9" ordering="1" parent="4c3b265:134192dde3e:-7dba" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><Orientation as="orientation" value="SOUTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="4c3b265:134192dde3e:-7db8" ordering="2" parent="4c3b265:134192dde3e:-7dba" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="4c3b265:134192dde3e:-7db7" ordering="1" parent="4c3b265:134192dde3e:-7dba" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitLink id="4c3b265:134192dde3e:-7d98" parent="4c3b265:134192dde3e:-7e2e" source="4c3b265:134192dde3e:-7dea" target="4c3b265:134192dde3e:-7ddc"><mxGeometry as="geometry" x="-170.0" y="10.0"><mxPoint as="sourcePoint" x="190.0" y="186.0"/><mxPoint as="targetPoint" x="240.0" y="100.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="190.0" y="100.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="4c3b265:134192dde3e:-7d8d" ordering="9" parent="4c3b265:134192dde3e:-7e2e" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="247.0" y="307.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="4c3b265:134192dde3e:-7d8c" ordering="1" parent="4c3b265:134192dde3e:-7d8d" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="4c3b265:134192dde3e:-7d8b" ordering="1" parent="4c3b265:134192dde3e:-7d8d" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="4c3b265:134192dde3e:-7d8a" ordering="2" parent="4c3b265:134192dde3e:-7d8d" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitLink id="4c3b265:134192dde3e:-7d88" parent="4c3b265:134192dde3e:-7e2e" source="4c3b265:134192dde3e:-7de9" target="4c3b265:134192dde3e:-7d8b"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="190.0" y="310.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="4c3b265:134192dde3e:-7d8e" parent="4c3b265:134192dde3e:-7e2e" source="4c3b265:134192dde3e:-7d8a" target="4c3b265:134192dde3e:-7de5"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="250.0" y="336.0"/><mxPoint as="targetPoint" x="250.0" y="310.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="250.0" y="310.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="4c3b265:134192dde3e:-7d7b" ordering="10" parent="4c3b265:134192dde3e:-7e2e" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="317.0" y="217.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="4c3b265:134192dde3e:-7d7a" ordering="1" parent="4c3b265:134192dde3e:-7d7b" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="4c3b265:134192dde3e:-7d79" ordering="1" parent="4c3b265:134192dde3e:-7d7b" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="4c3b265:134192dde3e:-7d78" ordering="2" parent="4c3b265:134192dde3e:-7d7b" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitLink id="4c3b265:134192dde3e:-7d77" parent="4c3b265:134192dde3e:-7e2e" source="4c3b265:134192dde3e:-7e1c" target="4c3b265:134192dde3e:-7d7a"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="4c3b265:134192dde3e:-7d76" parent="4c3b265:134192dde3e:-7e2e" source="4c3b265:134192dde3e:-7d79" target="4c3b265:134192dde3e:-7e08"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><SplitBlock id="4c3b265:134192dde3e:-7d74" ordering="11" parent="4c3b265:134192dde3e:-7e2e" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="317.0" y="307.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="4c3b265:134192dde3e:-7d73" ordering="1" parent="4c3b265:134192dde3e:-7d74" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="4c3b265:134192dde3e:-7d72" ordering="1" parent="4c3b265:134192dde3e:-7d74" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="4c3b265:134192dde3e:-7d71" ordering="2" parent="4c3b265:134192dde3e:-7d74" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitLink id="4c3b265:134192dde3e:-7d70" parent="4c3b265:134192dde3e:-7e2e" source="4c3b265:134192dde3e:-7e07" target="4c3b265:134192dde3e:-7d73"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="4c3b265:134192dde3e:-7d6f" parent="4c3b265:134192dde3e:-7e2e" source="4c3b265:134192dde3e:-7d72" target="4c3b265:134192dde3e:-7d8c"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="4c3b265:134192dde3e:-7d75" parent="4c3b265:134192dde3e:-7e2e" source="4c3b265:134192dde3e:-7db9" target="4c3b265:134192dde3e:-7d71"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="410.0" y="274.0"/><mxPoint as="targetPoint" x="320.0" y="310.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="410.0" y="310.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="4c3b265:134192dde3e:-7d69" ordering="12" parent="4c3b265:134192dde3e:-7e2e" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="357.0" y="217.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="4c3b265:134192dde3e:-7d68" ordering="1" parent="4c3b265:134192dde3e:-7d69" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="4c3b265:134192dde3e:-7d67" ordering="1" parent="4c3b265:134192dde3e:-7d69" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="4c3b265:134192dde3e:-7d66" ordering="2" parent="4c3b265:134192dde3e:-7d69" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitLink id="4c3b265:134192dde3e:-7d65" parent="4c3b265:134192dde3e:-7e2e" source="4c3b265:134192dde3e:-7d78" target="4c3b265:134192dde3e:-7d68"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="4c3b265:134192dde3e:-7d64" parent="4c3b265:134192dde3e:-7e2e" source="4c3b265:134192dde3e:-7d67" target="4c3b265:134192dde3e:-7db7"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="360.0" y="250.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="4c3b265:134192dde3e:-7d6a" parent="4c3b265:134192dde3e:-7e2e" source="4c3b265:134192dde3e:-7dc1" target="4c3b265:134192dde3e:-7d66"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="410.0" y="184.0"/><mxPoint as="targetPoint" x="360.0" y="220.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="410.0" y="220.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="4c3b265:134192dde3e:-7d62" ordering="13" parent="4c3b265:134192dde3e:-7e2e" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="317.0" y="107.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="4c3b265:134192dde3e:-7d61" ordering="1" parent="4c3b265:134192dde3e:-7d62" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="4c3b265:134192dde3e:-7d60" ordering="1" parent="4c3b265:134192dde3e:-7d62" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="4c3b265:134192dde3e:-7d5f" ordering="2" parent="4c3b265:134192dde3e:-7d62" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitLink id="4c3b265:134192dde3e:-7d5e" parent="4c3b265:134192dde3e:-7e2e" source="4c3b265:134192dde3e:-7dda" target="4c3b265:134192dde3e:-7d61"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="4c3b265:134192dde3e:-7d5d" parent="4c3b265:134192dde3e:-7e2e" source="4c3b265:134192dde3e:-7d60" target="4c3b265:134192dde3e:-7e1d"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="4c3b265:134192dde3e:-7d63" parent="4c3b265:134192dde3e:-7e2e" source="4c3b265:134192dde3e:-7d5f" target="4c3b265:134192dde3e:-7dbf"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="386.0" y="160.0"/><mxPoint as="targetPoint" x="320.0" y="110.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="360.0" y="110.0"/><mxPoint x="360.0" y="160.0"/><mxPoint x="360.0" y="160.0"/></Array></mxGeometry></ImplicitLink><BasicBlock dependsOnU="1" id="4c3b265:134192dde3e:-7d53" interfaceFunctionName="CMSCOPE" ordering="14" parent="4c3b265:134192dde3e:-7e2e" simulationFunctionName="cmscope" simulationFunctionType="C_OR_FORTRAN" style="CMSCOPE;flip=false;mirror=false"><ScilabString as="exprs" height="11" width="1"><data column="0" line="0" value="1 1"/><data column="0" line="1" value="1 3 5 7 9 11 13 15"/><data column="0" line="2" value="-1"/><data column="0" line="3" value="[]"/><data column="0" line="4" value="[]"/><data column="0" line="5" value="0 -30"/><data column="0" line="6" value="100 0"/><data column="0" line="7" value="50 50"/><data column="0" line="8" value="20"/><data column="0" line="9" value="0"/><data column="0" line="10" value=""/></ScilabString><ScilabDouble as="realParameters" height="7" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="50.0"/><data column="0" line="2" realPart="50.0"/><data column="0" line="3" realPart="0.0"/><data column="0" line="4" realPart="100.0"/><data column="0" line="5" realPart="-30.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="12" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="2.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="-1.0"/><data column="0" line="4" realPart="-1.0"/><data column="0" line="5" realPart="-1.0"/><data column="0" line="6" realPart="-1.0"/><data column="0" line="7" realPart="1.0"/><data column="0" line="8" realPart="1.0"/><data column="0" line="9" realPart="1.0"/><data column="0" line="10" realPart="3.0"/><data column="0" line="11" realPart="0.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="530.0" y="160.0"/></BasicBlock><ControlPort dataType="UNKNOW_TYPE" id="4c3b265:134192dde3e:-7d30" ordering="1" parent="4c3b265:134192dde3e:-7d53" style="ControlPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="4c3b265:134192dde3e:-7d32" ordering="1" parent="4c3b265:134192dde3e:-7d53" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ExplicitInputPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="4c3b265:134192dde3e:-7d31" ordering="2" parent="4c3b265:134192dde3e:-7d53" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="26.0"/></ExplicitInputPort><ExplicitLink id="4c3b265:134192dde3e:-7d4f" parent="4c3b265:134192dde3e:-7e2e" source="4c3b265:134192dde3e:-7dc0" target="4c3b265:134192dde3e:-7d32"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="434.0" y="160.0"/><mxPoint as="targetPoint" x="520.0" y="170.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="480.0" y="160.0"/><mxPoint x="480.0" y="170.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="4c3b265:134192dde3e:-7d4e" parent="4c3b265:134192dde3e:-7e2e" source="4c3b265:134192dde3e:-7db8" target="4c3b265:134192dde3e:-7d31"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="434.0" y="250.0"/><mxPoint as="targetPoint" x="520.0" y="190.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="480.0" y="250.0"/><mxPoint x="480.0" y="190.0"/></Array></mxGeometry></ExplicitLink><BasicBlock blockType="h" id="4c3b265:134192dde3e:-7d43" interfaceFunctionName="CLOCK_c" ordering="15" parent="4c3b265:134192dde3e:-7e2e" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="99.0"/><data column="1" line="0" realPart="-160.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-1de3cc81:16a44b61d89:-7b5c"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-1de3cc81:16a44b61d89:-7b5c"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-70.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.005"/><data column="0" line="1" value="0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.005"/><data column="0" line="1" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-1de3cc81:16a44b61d89:-7b5a"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-1de3cc81:16a44b61d89:-7b5a"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="90.3773266666667"/><data column="1" line="0" realPart="-166.33333333333331"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="7.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="5.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-1de3cc81:16a44b61d89:-7b57"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-1de3cc81:16a44b61d89:-7b57"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="60.0"/><data column="0" line="2" realPart="97.54399333333338"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-74.0"/><data column="0" line="1" realPart="-170.0"/><data column="0" line="2" realPart="-155.33333333333331"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="97.48843777777782"/><data column="0" line="1" realPart="129.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-163.66666666666666"/><data column="0" line="1" realPart="-136.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="97.59954888888893"/><data column="0" line="1" realPart="100.70999999999998"/><data column="0" line="2" realPart="60.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-163.66666666666666"/><data column="0" line="1" realPart="-40.0"/><data column="0" line="2" realPart="-40.0"/><data column="0" line="3" realPart="-26.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="530.0" y="60.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="4c3b265:134192dde3e:-7d3f" ordering="1" parent="4c3b265:134192dde3e:-7d43" style="CommandPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><CommandControlLink id="4c3b265:134192dde3e:-7d41" parent="4c3b265:134192dde3e:-7e2e" source="4c3b265:134192dde3e:-7d3f" target="4c3b265:134192dde3e:-7d30"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="550.0" y="104.0"/><mxPoint as="targetPoint" x="550.0" y="150.0"/></mxGeometry></CommandControlLink><TextBlock id="4c3b265:134192dde3e:-7d2e" parent="4c3b265:134192dde3e:-7e2e" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="R = 1 M ohm"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="R = 1 M ohm"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="R = 1 M ohm"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="120.0" y="190.0"/></TextBlock><TextBlock id="4c3b265:134192dde3e:-7d2d" parent="4c3b265:134192dde3e:-7e2e" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="C1 = 5 micro F<br>initial voltage = 100V"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="C1 = 5 micro F<br>initial voltage = 100V"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="C1 = 5 micro F<br>initial voltage = 100V"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="230.0" y="150.0"/></TextBlock><TextBlock id="4c3b265:134192dde3e:-7d2b" parent="4c3b265:134192dde3e:-7e2e" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="C2 = 20 micro F"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="C2 = 20 micro F"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="C2 = 20 micro F"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="240.0" y="240.0"/></TextBlock><TextBlock id="4c3b265:134192dde3e:-7d28" parent="4c3b265:134192dde3e:-7e2e" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="From the two graphs we can see that at the steady state voltage across C1 <br> = 20V and voltage across C2 = -20V"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="From the two graphs we can see that at the steady state voltage across C1 <br> = 20V and voltage across C2 = -20V"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="From the two graphs we can see that at the steady state voltage across C1 <br> = 20V and voltage across C2 = -20V"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="260.0" y="390.0"/></TextBlock></root></mxGraphModel><mxCell as="defaultParent" id="4c3b265:134192dde3e:-7e2e" parent="4c3b265:134192dde3e:-7e2d"/></XcosDiagram>
\ No newline at end of file diff --git a/Working_Examples/293/CH5/EX5.5/eg5_5.pdf b/Working_Examples/293/CH5/EX5.5/eg5_5.pdf Binary files differnew file mode 100755 index 0000000..4bf23a5 --- /dev/null +++ b/Working_Examples/293/CH5/EX5.5/eg5_5.pdf diff --git a/Working_Examples/293/CH5/EX5.5/eg5_5.xcos b/Working_Examples/293/CH5/EX5.5/eg5_5.xcos new file mode 100755 index 0000000..4baaffa --- /dev/null +++ b/Working_Examples/293/CH5/EX5.5/eg5_5.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" finalIntegrationTime="0.5" title="eg5_5"><!--Xcos - 1.0 - scilab-5.5.2 - 20160406 2040--><mxGraphModel as="model"><root><mxCell id="4c3b265:134192dde3e:-7d25"/><mxCell id="4c3b265:134192dde3e:-7d26" parent="4c3b265:134192dde3e:-7d25"/><BasicBlock dependsOnU="1" id="4c3b265:134192dde3e:-7cff" interfaceFunctionName="Inductor" ordering="1" parent="4c3b265:134192dde3e:-7d26" simulationFunctionName="Inductor" simulationFunctionType="DEFAULT" style="Inductor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="0.2"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="0.2"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Inductor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="L"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.2"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="280.0" y="110.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="4c3b265:134192dde3e:-7ce5" ordering="1" parent="4c3b265:134192dde3e:-7cff" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="4c3b265:134192dde3e:-7ce6" ordering="1" parent="4c3b265:134192dde3e:-7cff" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="4c3b265:134192dde3e:-7cf5" interfaceFunctionName="Resistor" ordering="2" parent="4c3b265:134192dde3e:-7d26" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="40"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="40.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="40.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="200.0" y="110.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="4c3b265:134192dde3e:-7ce9" ordering="1" parent="4c3b265:134192dde3e:-7cf5" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="4c3b265:134192dde3e:-7cea" ordering="1" parent="4c3b265:134192dde3e:-7cf5" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitLink id="4c3b265:134192dde3e:-7cdf" parent="4c3b265:134192dde3e:-7d26" source="4c3b265:134192dde3e:-7ce9" target="4c3b265:134192dde3e:-7ce6"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="244.0" y="130.0"/><mxPoint as="targetPoint" x="270.0" y="130.0"/></mxGeometry></ImplicitLink><GroundBlock dependsOnU="1" id="4c3b265:134192dde3e:-7cc9" interfaceFunctionName="Ground" ordering="3" parent="4c3b265:134192dde3e:-7d26" simulationFunctionName="Ground" simulationFunctionType="DEFAULT" style="Ground;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Ground"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="230.0" y="280.0"/></GroundBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="4c3b265:134192dde3e:-7cc8" ordering="1" parent="4c3b265:134192dde3e:-7cc9" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><Orientation as="orientation" value="NORTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><SplitBlock id="4c3b265:134192dde3e:-7cb3" ordering="4" parent="4c3b265:134192dde3e:-7d26" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="247.0" y="247.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="4c3b265:134192dde3e:-7cb0" ordering="2" parent="4c3b265:134192dde3e:-7cb3" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="4c3b265:134192dde3e:-7cb2" ordering="1" parent="4c3b265:134192dde3e:-7cb3" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="4c3b265:134192dde3e:-7cb1" ordering="1" parent="4c3b265:134192dde3e:-7cb3" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="4c3b265:134192dde3e:-7caf" parent="4c3b265:134192dde3e:-7d26" source="4c3b265:134192dde3e:-7d15" target="4c3b265:134192dde3e:-7cb2"><mxGeometry as="geometry" x="-40.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="100.0" y="250.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="4c3b265:134192dde3e:-7cae" parent="4c3b265:134192dde3e:-7d26" source="4c3b265:134192dde3e:-7cb1" target="4c3b265:134192dde3e:-7cc8"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><VoltageSensorBlock dependsOnU="1" id="4c3b265:134192dde3e:-7ca4" interfaceFunctionName="VoltageSensor" ordering="5" parent="4c3b265:134192dde3e:-7d26" simulationFunctionName="VoltageSensor" simulationFunctionType="DEFAULT" style="VoltageSensor;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="VoltageSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="v"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="460.0" y="180.0"/></VoltageSensorBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="4c3b265:134192dde3e:-7ca1" ordering="1" parent="4c3b265:134192dde3e:-7ca4" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="4c3b265:134192dde3e:-7ca3" ordering="1" parent="4c3b265:134192dde3e:-7ca4" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><Orientation as="orientation" value="SOUTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="4c3b265:134192dde3e:-7ca2" ordering="2" parent="4c3b265:134192dde3e:-7ca4" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><BasicBlock dependsOnU="1" id="4c3b265:134192dde3e:-7c97" interfaceFunctionName="Switch" ordering="6" parent="4c3b265:134192dde3e:-7d26" simulationFunctionName="Switch" simulationFunctionType="DEFAULT" style="Switch;flip=false;mirror=false"><ScilabString as="exprs" height="2" width="1"><data column="0" line="0" value="0.01"/><data column="0" line="1" value="100000"/></ScilabString><ScilabDouble as="realParameters" height="2" width="1"><data column="0" line="0" realPart="0.01"/><data column="0" line="1" realPart="100000.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Switch"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="p"/><data column="0" line="1" value="inp"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="2" width="1"><data column="0" line="0" value="Ron"/><data column="0" line="1" value="Roff"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.01"/><data column="0" line="1" realPart="100000.0"/></ScilabDouble></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="120.0" y="110.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="4c3b265:134192dde3e:-7c94" ordering="2" parent="4c3b265:134192dde3e:-7c97" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="26.0"/></ExplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="4c3b265:134192dde3e:-7c96" ordering="1" parent="4c3b265:134192dde3e:-7c97" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="4c3b265:134192dde3e:-7c95" ordering="1" parent="4c3b265:134192dde3e:-7c97" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ImplicitInputPort><ImplicitLink id="4c3b265:134192dde3e:-7c93" parent="4c3b265:134192dde3e:-7d26" source="4c3b265:134192dde3e:-7c96" target="4c3b265:134192dde3e:-7cea"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="164.0" y="130.0"/><mxPoint as="targetPoint" x="190.0" y="130.0"/></mxGeometry></ImplicitLink><ImplicitLink id="4c3b265:134192dde3e:-7c92" parent="4c3b265:134192dde3e:-7d26" source="4c3b265:134192dde3e:-7c95" target="4c3b265:134192dde3e:-7d16"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="116.0" y="120.0"/><mxPoint as="targetPoint" x="100.0" y="180.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="100.0" y="120.0"/></Array></mxGeometry></ImplicitLink><BasicBlock blockType="h" id="4c3b265:134192dde3e:-7c8c" interfaceFunctionName="STEP_FUNCTION" ordering="7" parent="4c3b265:134192dde3e:-7d26" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="STEP_FUNCTION;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="STEP_FUNCTION"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-4"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="14.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=" "/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="3" width="1"><data column="0" line="0" value="0"/><data column="0" line="1" value="0"/><data column="0" line="2" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"STEP",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="STEP"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="step_func"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="1.0"/><data column="0" line="1" realPart="1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="true"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="5e46b397:13489a649a8:-7ea0"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="STEP"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="5e46b397:13489a649a8:-7ea0"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="88.57143300000001"/><data column="1" line="0" realPart="-50.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"OUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="OUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-2.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="5e46b397:13489a649a8:-7e9d"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="OUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="5e46b397:13489a649a8:-7e9d"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="6" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="92.00000299999999"/><data column="0" line="2" realPart="53.478395000000006"/><data column="0" line="3" realPart="53.478395000000006"/><data column="0" line="4" realPart="92.00000299999999"/><data column="0" line="5" realPart="60.0"/></ScilabDouble><ScilabDouble height="6" width="1"><data column="0" line="0" realPart="-44.0"/><data column="0" line="1" realPart="-158.39289999999994"/><data column="0" line="2" realPart="-158.39289999999994"/><data column="0" line="3" realPart="-68.69677999999999"/><data column="0" line="4" realPart="-68.69677999999999"/><data column="0" line="5" realPart="4.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="84.0"/><data column="0" line="1" realPart="104.57143300000001"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-20.0"/><data column="0" line="1" realPart="-40.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="20.0" y="120.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataType="REAL_MATRIX" id="4c3b265:134192dde3e:-7c88" ordering="1" parent="4c3b265:134192dde3e:-7c8c" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ExplicitLink id="4c3b265:134192dde3e:-7c8a" parent="4c3b265:134192dde3e:-7d26" source="4c3b265:134192dde3e:-7c88" target="4c3b265:134192dde3e:-7c94"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="64.0" y="140.0"/><mxPoint as="targetPoint" x="120.0" y="140.0"/></mxGeometry></ExplicitLink><SplitBlock id="4c3b265:134192dde3e:-7c85" ordering="8" parent="4c3b265:134192dde3e:-7d26" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="387.0" y="127.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="4c3b265:134192dde3e:-7c82" ordering="2" parent="4c3b265:134192dde3e:-7c85" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="4c3b265:134192dde3e:-7c84" ordering="1" parent="4c3b265:134192dde3e:-7c85" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="4c3b265:134192dde3e:-7c83" ordering="1" parent="4c3b265:134192dde3e:-7c85" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="4c3b265:134192dde3e:-7c81" parent="4c3b265:134192dde3e:-7d26" source="4c3b265:134192dde3e:-7ce5" target="4c3b265:134192dde3e:-7c84"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="4c3b265:134192dde3e:-7c80" parent="4c3b265:134192dde3e:-7d26" source="4c3b265:134192dde3e:-7c83" target="4c3b265:134192dde3e:-7ce2"><mxGeometry as="geometry" x="-40.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="4c3b265:134192dde3e:-7c86" parent="4c3b265:134192dde3e:-7d26" source="4c3b265:134192dde3e:-7c82" target="4c3b265:134192dde3e:-7ca1"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="456.0" y="200.0"/><mxPoint as="targetPoint" x="390.0" y="130.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="430.0" y="130.0"/><mxPoint x="430.0" y="130.0"/><mxPoint x="430.0" y="200.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="4c3b265:134192dde3e:-7c7e" ordering="9" parent="4c3b265:134192dde3e:-7d26" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="387.0" y="247.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="4c3b265:134192dde3e:-7c7b" ordering="2" parent="4c3b265:134192dde3e:-7c7e" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="4c3b265:134192dde3e:-7c7d" ordering="1" parent="4c3b265:134192dde3e:-7c7e" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="4c3b265:134192dde3e:-7c7c" ordering="1" parent="4c3b265:134192dde3e:-7c7e" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="4c3b265:134192dde3e:-7c7a" parent="4c3b265:134192dde3e:-7d26" source="4c3b265:134192dde3e:-7ce1" target="4c3b265:134192dde3e:-7c7d"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="4c3b265:134192dde3e:-7c79" parent="4c3b265:134192dde3e:-7d26" source="4c3b265:134192dde3e:-7cb0" target="4c3b265:134192dde3e:-7c7c"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="4c3b265:134192dde3e:-7c7f" parent="4c3b265:134192dde3e:-7d26" source="4c3b265:134192dde3e:-7ca3" target="4c3b265:134192dde3e:-7c7b"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="480.0" y="224.0"/><mxPoint as="targetPoint" x="390.0" y="250.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="480.0" y="250.0"/></Array></mxGeometry></ImplicitLink><BasicBlock blockType="h" id="4c3b265:134192dde3e:-7c2a" interfaceFunctionName="CLOCK_c" ordering="10" parent="4c3b265:134192dde3e:-7d26" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="99.0"/><data column="1" line="0" realPart="-144.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="5e46b397:13489a649a8:-7e95"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="5e46b397:13489a649a8:-7e95"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-54.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.0001"/><data column="0" line="1" value="0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="1.0E-4"/><data column="0" line="1" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="5e46b397:13489a649a8:-7e91"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="5e46b397:13489a649a8:-7e91"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="92.71066000000002"/><data column="1" line="0" realPart="-146.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="8.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="5.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="5e46b397:13489a649a8:-7e8c"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="5e46b397:13489a649a8:-7e8c"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="72.0"/><data column="0" line="2" realPart="104.71066000000002"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-58.0"/><data column="0" line="1" realPart="-186.0"/><data column="0" line="2" realPart="-134.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="103.37732666666669"/><data column="0" line="1" realPart="129.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-150.0"/><data column="0" line="1" realPart="-120.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="106.04399333333335"/><data column="0" line="1" realPart="122.70999999999998"/><data column="0" line="2" realPart="82.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-150.0"/><data column="0" line="1" realPart="-40.0"/><data column="0" line="2" realPart="-40.0"/><data column="0" line="3" realPart="-10.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="640.0" y="110.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="4c3b265:134192dde3e:-7c0a" ordering="1" parent="4c3b265:134192dde3e:-7c2a" style="CommandPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><TextBlock id="4c3b265:134192dde3e:-7c04" parent="4c3b265:134192dde3e:-7d26" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="E = 15V"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="E = 15V"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="E = 15V"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="30.0" y="180.0"/></TextBlock><TextBlock id="4c3b265:134192dde3e:-7c02" parent="4c3b265:134192dde3e:-7d26" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="R = 40 ohm"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="R = 40 ohm"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="R = 40 ohm"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="200.0" y="80.0"/></TextBlock><TextBlock id="4c3b265:134192dde3e:-7c01" parent="4c3b265:134192dde3e:-7d26" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="L = 0.2 H"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="L = 0.2 H"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="L = 0.2 H"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="280.0" y="80.0"/></TextBlock><TextBlock id="4c3b265:134192dde3e:-7c00" parent="4c3b265:134192dde3e:-7d26" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="40.0" width="40.0" x="340.0" y="40.0"/></TextBlock><TextBlock id="4c3b265:134192dde3e:-7bff" parent="4c3b265:134192dde3e:-7d26" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="C = 0.0001 F"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="C = 0.0001 F"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="C = 0.0001 F"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="310.0" y="180.0"/></TextBlock><BasicBlock angle="90" id="4c3b265:134192dde3e:-7d1d" interfaceFunctionName="ConstantVoltage" ordering="11" parent="4c3b265:134192dde3e:-7d26" simulationFunctionName="ConstantVoltage" simulationFunctionType="DEFAULT" style="ConstantVoltage;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="15"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="15.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ConstantVoltage"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="V"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="15.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="80.0" y="180.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="4c3b265:134192dde3e:-7d15" ordering="1" parent="4c3b265:134192dde3e:-7d1d" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="4c3b265:134192dde3e:-7d16" ordering="1" parent="4c3b265:134192dde3e:-7d1d" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><RoundBlock dependsOnU="1" id="562870ab:1347fe8d477:-7e5a" interfaceFunctionName="PROD_f" ordering="12" parent="4c3b265:134192dde3e:-7d26" simulationFunctionName="prod" simulationFunctionType="TYPE_2" style="PROD_f;flip=false;mirror=false" value="×"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="550.0" y="260.0"/></RoundBlock><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="562870ab:1347fe8d477:-7e58" ordering="1" parent="562870ab:1347fe8d477:-7e5a" style="ExplicitInputPort;align=center;verticalAlign=bottom;spacing=10;rotation=270;flip=false;mirror=false" value=""><Orientation as="orientation" value="SOUTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ExplicitInputPort><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="562870ab:1347fe8d477:-7e57" ordering="2" parent="562870ab:1347fe8d477:-7e5a" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitOutputPort dataColumns="1" dataType="REAL_MATRIX" id="562870ab:1347fe8d477:-7e59" ordering="1" parent="562870ab:1347fe8d477:-7e5a" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><BasicBlock blockType="d" id="562870ab:1347fe8d477:-7e51" interfaceFunctionName="CONST_m" ordering="13" parent="4c3b265:134192dde3e:-7d26" simulationFunctionName="cstblk4" simulationFunctionType="C_OR_FORTRAN" style="CONST_m;flip=false;mirror=false" value="0.0001"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="0.0001"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0E-4"/></ScilabDouble></Array><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="20.0" width="60.0" x="490.0" y="340.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5e46b397:13489a649a8:-7e86" ordering="1" parent="562870ab:1347fe8d477:-7e51" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="60.0" y="6.0"/></ExplicitOutputPort><BasicBlock dependsOnU="1" id="562870ab:1347fe8d477:-7e37" interfaceFunctionName="CMSCOPE" ordering="14" parent="4c3b265:134192dde3e:-7d26" simulationFunctionName="cmscope" simulationFunctionType="C_OR_FORTRAN" style="CMSCOPE;flip=false;mirror=false"><ScilabString as="exprs" height="11" width="1"><data column="0" line="0" value="1 1"/><data column="0" line="1" value="1 3 5 7 9 11 13 15"/><data column="0" line="2" value="-1"/><data column="0" line="3" value="[]"/><data column="0" line="4" value="[]"/><data column="0" line="5" value="0 0"/><data column="0" line="6" value=" 20 0.002"/><data column="0" line="7" value="0.5 0.5"/><data column="0" line="8" value="20"/><data column="0" line="9" value="0"/><data column="0" line="10" value=""/></ScilabString><ScilabDouble as="realParameters" height="7" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="0.5"/><data column="0" line="2" realPart="0.5"/><data column="0" line="3" realPart="0.0"/><data column="0" line="4" realPart="20.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.002"/></ScilabDouble><ScilabDouble as="integerParameters" height="12" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="2.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="-1.0"/><data column="0" line="4" realPart="-1.0"/><data column="0" line="5" realPart="-1.0"/><data column="0" line="6" realPart="-1.0"/><data column="0" line="7" realPart="1.0"/><data column="0" line="8" realPart="1.0"/><data column="0" line="9" realPart="1.0"/><data column="0" line="10" realPart="3.0"/><data column="0" line="11" realPart="0.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="640.0" y="190.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5e46b397:13489a649a8:-7e83" ordering="1" parent="562870ab:1347fe8d477:-7e37" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ExplicitInputPort><ControlPort dataType="UNKNOW_TYPE" id="5e46b397:13489a649a8:-7e81" ordering="1" parent="562870ab:1347fe8d477:-7e37" style="ControlPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5e46b397:13489a649a8:-7e82" ordering="2" parent="562870ab:1347fe8d477:-7e37" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="26.0"/></ExplicitInputPort><CommandControlLink id="562870ab:1347fe8d477:-7e17" parent="4c3b265:134192dde3e:-7d26" source="4c3b265:134192dde3e:-7c0a" target="5e46b397:13489a649a8:-7e81"><mxGeometry as="geometry" x="60.0" y="20.0"><mxPoint as="sourcePoint" x="660.0" y="154.0"/><mxPoint as="targetPoint" x="660.0" y="180.0"/></mxGeometry></CommandControlLink><ExplicitLink id="562870ab:1347fe8d477:-7e0d" parent="4c3b265:134192dde3e:-7d26" source="562870ab:1347fe8d477:-7e59" target="5e46b397:13489a649a8:-7e82"><mxGeometry as="geometry" x="30.0"><mxPoint as="sourcePoint" x="594.0" y="280.0"/><mxPoint as="targetPoint" x="640.0" y="220.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="620.0" y="280.0"/><mxPoint x="620.0" y="220.0"/></Array></mxGeometry></ExplicitLink><SplitBlock id="562870ab:1347fe8d477:-7e0b" ordering="15" parent="4c3b265:134192dde3e:-7d26" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="527.0" y="197.0"/></SplitBlock><ExplicitOutputPort dataType="UNKNOW_TYPE" id="562870ab:1347fe8d477:-7e09" ordering="1" parent="562870ab:1347fe8d477:-7e0b" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="562870ab:1347fe8d477:-7e08" ordering="2" parent="562870ab:1347fe8d477:-7e0b" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ExplicitOutputPort><ExplicitInputPort dataType="UNKNOW_TYPE" id="562870ab:1347fe8d477:-7e0a" ordering="1" parent="562870ab:1347fe8d477:-7e0b" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ExplicitInputPort><ExplicitLink id="562870ab:1347fe8d477:-7e07" parent="4c3b265:134192dde3e:-7d26" source="4c3b265:134192dde3e:-7ca2" target="562870ab:1347fe8d477:-7e0a"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ExplicitLink><ExplicitLink id="562870ab:1347fe8d477:-7e06" parent="4c3b265:134192dde3e:-7d26" source="562870ab:1347fe8d477:-7e09" target="5e46b397:13489a649a8:-7e83"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ExplicitLink><ExplicitLink id="562870ab:1347fe8d477:-7e0c" parent="4c3b265:134192dde3e:-7d26" source="562870ab:1347fe8d477:-7e08" target="562870ab:1347fe8d477:-7e57"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="546.0" y="280.0"/><mxPoint as="targetPoint" x="530.0" y="200.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="530.0" y="280.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="562870ab:1347fe8d477:-7e03" parent="4c3b265:134192dde3e:-7d26" source="5e46b397:13489a649a8:-7e86" target="562870ab:1347fe8d477:-7e58"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="554.0" y="350.0"/><mxPoint as="targetPoint" x="570.0" y="310.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="570.0" y="350.0"/></Array></mxGeometry></ExplicitLink><TextBlock id="562870ab:1347fe8d477:-7e02" parent="4c3b265:134192dde3e:-7d26" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="C"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="C"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="C"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="490.0" y="350.0"/></TextBlock><BasicBlock angle="90" dependsOnU="1" id="4c3b265:134192dde3e:-7d09" interfaceFunctionName="Capacitor" ordering="16" parent="4c3b265:134192dde3e:-7d26" simulationFunctionName="Capacitor" simulationFunctionType="DEFAULT" style="Capacitor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="2" width="1"><data column="0" line="0" value="0.0001"/><data column="0" line="1" value="0"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="1.0E-4"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Capacitor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="2"><data column="0" line="0" value="C"/><data column="1" line="0" value="v"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0E-4"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="370.0" y="180.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="4c3b265:134192dde3e:-7ce1" ordering="1" parent="4c3b265:134192dde3e:-7d09" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="4c3b265:134192dde3e:-7ce2" ordering="1" parent="4c3b265:134192dde3e:-7d09" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort></root></mxGraphModel><mxCell as="defaultParent" id="4c3b265:134192dde3e:-7d26" parent="4c3b265:134192dde3e:-7d25"/></XcosDiagram>
\ No newline at end of file diff --git a/Working_Examples/293/CH5/EX5.6/eg5_6.pdf b/Working_Examples/293/CH5/EX5.6/eg5_6.pdf Binary files differnew file mode 100755 index 0000000..44b5932 --- /dev/null +++ b/Working_Examples/293/CH5/EX5.6/eg5_6.pdf diff --git a/Working_Examples/293/CH5/EX5.6/eg5_6.xcos b/Working_Examples/293/CH5/EX5.6/eg5_6.xcos new file mode 100755 index 0000000..26522ce --- /dev/null +++ b/Working_Examples/293/CH5/EX5.6/eg5_6.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" finalIntegrationTime="5.0" title="eg5_6"><!--Xcos - 1.0 - scilab-5.5.2 - 20160406 2040--><mxGraphModel as="model"><root><mxCell id="4c3b265:134192dde3e:-7bc2"/><mxCell id="4c3b265:134192dde3e:-7bc3" parent="4c3b265:134192dde3e:-7bc2"/><BasicBlock angle="90" id="4c3b265:134192dde3e:-7bc1" interfaceFunctionName="ConstantVoltage" ordering="1" parent="4c3b265:134192dde3e:-7bc3" simulationFunctionName="ConstantVoltage" simulationFunctionType="DEFAULT" style="ConstantVoltage;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="15"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="15.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ConstantVoltage"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="V"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="15.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="90.0" y="190.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="4c3b265:134192dde3e:-7bc0" ordering="1" parent="4c3b265:134192dde3e:-7bc1" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="4c3b265:134192dde3e:-7bbf" ordering="1" parent="4c3b265:134192dde3e:-7bc1" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock angle="90" dependsOnU="1" id="4c3b265:134192dde3e:-7bbe" interfaceFunctionName="Capacitor" ordering="2" parent="4c3b265:134192dde3e:-7bc3" simulationFunctionName="Capacitor" simulationFunctionType="DEFAULT" style="Capacitor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="2" width="1"><data column="0" line="0" value="0.04"/><data column="0" line="1" value="0"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="0.04"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Capacitor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="2"><data column="0" line="0" value="C"/><data column="1" line="0" value="v"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.04"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="380.0" y="190.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="4c3b265:134192dde3e:-7b7c" ordering="1" parent="4c3b265:134192dde3e:-7bbe" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="4c3b265:134192dde3e:-7b7d" ordering="1" parent="4c3b265:134192dde3e:-7bbe" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="4c3b265:134192dde3e:-7bbb" interfaceFunctionName="Inductor" ordering="3" parent="4c3b265:134192dde3e:-7bc3" simulationFunctionName="Inductor" simulationFunctionType="DEFAULT" style="Inductor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Inductor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="L"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="290.0" y="120.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="4c3b265:134192dde3e:-7b80" ordering="1" parent="4c3b265:134192dde3e:-7bbb" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="4c3b265:134192dde3e:-7b81" ordering="1" parent="4c3b265:134192dde3e:-7bbb" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="4c3b265:134192dde3e:-7bb8" interfaceFunctionName="Resistor" ordering="4" parent="4c3b265:134192dde3e:-7bc3" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="4"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="210.0" y="120.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="4c3b265:134192dde3e:-7b84" ordering="1" parent="4c3b265:134192dde3e:-7bb8" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="4c3b265:134192dde3e:-7b85" ordering="1" parent="4c3b265:134192dde3e:-7bb8" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitLink id="4c3b265:134192dde3e:-7bb5" parent="4c3b265:134192dde3e:-7bc3" source="4c3b265:134192dde3e:-7b84" target="4c3b265:134192dde3e:-7b81"><mxGeometry as="geometry" x="10.0" y="10.0"><mxPoint as="sourcePoint" x="254.0" y="140.0"/><mxPoint as="targetPoint" x="280.0" y="140.0"/></mxGeometry></ImplicitLink><GroundBlock dependsOnU="1" id="4c3b265:134192dde3e:-7bb4" interfaceFunctionName="Ground" ordering="5" parent="4c3b265:134192dde3e:-7bc3" simulationFunctionName="Ground" simulationFunctionType="DEFAULT" style="Ground;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Ground"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="240.0" y="290.0"/></GroundBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="4c3b265:134192dde3e:-7bb3" ordering="1" parent="4c3b265:134192dde3e:-7bb4" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><Orientation as="orientation" value="NORTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><SplitBlock id="4c3b265:134192dde3e:-7bb2" ordering="6" parent="4c3b265:134192dde3e:-7bc3" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="257.0" y="257.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="4c3b265:134192dde3e:-7bb1" ordering="1" parent="4c3b265:134192dde3e:-7bb2" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="4c3b265:134192dde3e:-7bb0" ordering="1" parent="4c3b265:134192dde3e:-7bb2" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="4c3b265:134192dde3e:-7baf" ordering="2" parent="4c3b265:134192dde3e:-7bb2" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitLink id="4c3b265:134192dde3e:-7bae" parent="4c3b265:134192dde3e:-7bc3" source="4c3b265:134192dde3e:-7bc0" target="4c3b265:134192dde3e:-7bb1"><mxGeometry as="geometry" x="-30.0" y="10.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="110.0" y="260.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="4c3b265:134192dde3e:-7bad" parent="4c3b265:134192dde3e:-7bc3" source="4c3b265:134192dde3e:-7bb0" target="4c3b265:134192dde3e:-7bb3"><mxGeometry as="geometry" x="10.0" y="10.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><VoltageSensorBlock dependsOnU="1" id="4c3b265:134192dde3e:-7bac" interfaceFunctionName="VoltageSensor" ordering="7" parent="4c3b265:134192dde3e:-7bc3" simulationFunctionName="VoltageSensor" simulationFunctionType="DEFAULT" style="VoltageSensor;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="VoltageSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="v"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="470.0" y="190.0"/></VoltageSensorBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="4c3b265:134192dde3e:-7bab" ordering="1" parent="4c3b265:134192dde3e:-7bac" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><Orientation as="orientation" value="SOUTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="4c3b265:134192dde3e:-7baa" ordering="2" parent="4c3b265:134192dde3e:-7bac" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="4c3b265:134192dde3e:-7ba9" ordering="1" parent="4c3b265:134192dde3e:-7bac" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="4c3b265:134192dde3e:-7ba8" interfaceFunctionName="Switch" ordering="8" parent="4c3b265:134192dde3e:-7bc3" simulationFunctionName="Switch" simulationFunctionType="DEFAULT" style="Switch;flip=false;mirror=false"><ScilabString as="exprs" height="2" width="1"><data column="0" line="0" value="0.01"/><data column="0" line="1" value="100000"/></ScilabString><ScilabDouble as="realParameters" height="2" width="1"><data column="0" line="0" realPart="0.01"/><data column="0" line="1" realPart="100000.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Switch"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="p"/><data column="0" line="1" value="inp"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="2" width="1"><data column="0" line="0" value="Ron"/><data column="0" line="1" value="Roff"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.01"/><data column="0" line="1" realPart="100000.0"/></ScilabDouble></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="130.0" y="120.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="4c3b265:134192dde3e:-7ba7" ordering="1" parent="4c3b265:134192dde3e:-7ba8" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="4c3b265:134192dde3e:-7ba6" ordering="1" parent="4c3b265:134192dde3e:-7ba8" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ImplicitInputPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="4c3b265:134192dde3e:-7ba5" ordering="2" parent="4c3b265:134192dde3e:-7ba8" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="26.0"/></ExplicitInputPort><ImplicitLink id="4c3b265:134192dde3e:-7ba4" parent="4c3b265:134192dde3e:-7bc3" source="4c3b265:134192dde3e:-7ba7" target="4c3b265:134192dde3e:-7b85"><mxGeometry as="geometry" x="10.0" y="10.0"><mxPoint as="sourcePoint" x="174.0" y="140.0"/><mxPoint as="targetPoint" x="200.0" y="140.0"/></mxGeometry></ImplicitLink><ImplicitLink id="4c3b265:134192dde3e:-7ba3" parent="4c3b265:134192dde3e:-7bc3" source="4c3b265:134192dde3e:-7ba6" target="4c3b265:134192dde3e:-7bbf"><mxGeometry as="geometry" x="10.0" y="10.0"><mxPoint as="sourcePoint" x="126.0" y="130.0"/><mxPoint as="targetPoint" x="110.0" y="190.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="110.0" y="130.0"/></Array></mxGeometry></ImplicitLink><BasicBlock blockType="h" id="4c3b265:134192dde3e:-7ba2" interfaceFunctionName="STEP_FUNCTION" ordering="9" parent="4c3b265:134192dde3e:-7bc3" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="STEP_FUNCTION;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="STEP_FUNCTION"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-4"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="14.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=" "/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="18.521605"/><data column="1" line="0" realPart="-59.30322000000001"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="3" width="1"><data column="0" line="0" value="0"/><data column="0" line="1" value="0"/><data column="0" line="2" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"STEP",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="STEP"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="step_func"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="1.0"/><data column="0" line="1" realPart="1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="true"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-1de3cc81:16a44b61d89:-7a76"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="STEP"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-1de3cc81:16a44b61d89:-7a76"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="107.093038"/><data column="1" line="0" realPart="-69.30322000000001"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"OUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="OUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-2.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-1de3cc81:16a44b61d89:-7a72"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="OUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-1de3cc81:16a44b61d89:-7a72"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="6" width="1"><data column="0" line="0" realPart="78.521605"/><data column="0" line="1" realPart="78.52160799999999"/><data column="0" line="2" realPart="40.0"/><data column="0" line="3" realPart="40.0"/><data column="0" line="4" realPart="78.52160799999999"/><data column="0" line="5" realPart="78.521605"/></ScilabDouble><ScilabDouble height="6" width="1"><data column="0" line="0" realPart="-63.30322000000001"/><data column="0" line="1" realPart="-129.69611999999995"/><data column="0" line="2" realPart="-129.69611999999995"/><data column="0" line="3" realPart="-40.0"/><data column="0" line="4" realPart="-40.0"/><data column="0" line="5" realPart="-15.30322000000001"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="102.521605"/><data column="0" line="1" realPart="123.093038"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-39.30322000000001"/><data column="0" line="1" realPart="-59.30322000000001"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="30.0" y="130.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataType="REAL_MATRIX" id="4c3b265:134192dde3e:-7ba1" ordering="1" parent="4c3b265:134192dde3e:-7ba2" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ExplicitLink id="4c3b265:134192dde3e:-7ba0" parent="4c3b265:134192dde3e:-7bc3" source="4c3b265:134192dde3e:-7ba1" target="4c3b265:134192dde3e:-7ba5"><mxGeometry as="geometry" x="10.0" y="10.0"><mxPoint as="sourcePoint" x="74.0" y="150.0"/><mxPoint as="targetPoint" x="130.0" y="150.0"/></mxGeometry></ExplicitLink><SplitBlock id="4c3b265:134192dde3e:-7b9f" ordering="10" parent="4c3b265:134192dde3e:-7bc3" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="397.0" y="137.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="4c3b265:134192dde3e:-7b9e" ordering="1" parent="4c3b265:134192dde3e:-7b9f" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="4c3b265:134192dde3e:-7b9d" ordering="1" parent="4c3b265:134192dde3e:-7b9f" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="4c3b265:134192dde3e:-7b9c" ordering="2" parent="4c3b265:134192dde3e:-7b9f" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitLink id="4c3b265:134192dde3e:-7b9b" parent="4c3b265:134192dde3e:-7bc3" source="4c3b265:134192dde3e:-7b80" target="4c3b265:134192dde3e:-7b9e"><mxGeometry as="geometry" x="10.0" y="10.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="4c3b265:134192dde3e:-7b9a" parent="4c3b265:134192dde3e:-7bc3" source="4c3b265:134192dde3e:-7b9d" target="4c3b265:134192dde3e:-7b7d"><mxGeometry as="geometry" x="-30.0" y="10.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="4c3b265:134192dde3e:-7b99" parent="4c3b265:134192dde3e:-7bc3" source="4c3b265:134192dde3e:-7b9c" target="4c3b265:134192dde3e:-7ba9"><mxGeometry as="geometry" x="10.0" y="10.0"><mxPoint as="sourcePoint" x="466.0" y="210.0"/><mxPoint as="targetPoint" x="400.0" y="140.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="440.0" y="140.0"/><mxPoint x="440.0" y="140.0"/><mxPoint x="440.0" y="210.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="4c3b265:134192dde3e:-7b98" ordering="11" parent="4c3b265:134192dde3e:-7bc3" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="397.0" y="257.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="4c3b265:134192dde3e:-7b97" ordering="1" parent="4c3b265:134192dde3e:-7b98" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="4c3b265:134192dde3e:-7b96" ordering="1" parent="4c3b265:134192dde3e:-7b98" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="4c3b265:134192dde3e:-7b95" ordering="2" parent="4c3b265:134192dde3e:-7b98" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitLink id="4c3b265:134192dde3e:-7b94" parent="4c3b265:134192dde3e:-7bc3" source="4c3b265:134192dde3e:-7b7c" target="4c3b265:134192dde3e:-7b97"><mxGeometry as="geometry" x="10.0" y="10.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="4c3b265:134192dde3e:-7b93" parent="4c3b265:134192dde3e:-7bc3" source="4c3b265:134192dde3e:-7baf" target="4c3b265:134192dde3e:-7b96"><mxGeometry as="geometry" x="10.0" y="10.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="4c3b265:134192dde3e:-7b92" parent="4c3b265:134192dde3e:-7bc3" source="4c3b265:134192dde3e:-7bab" target="4c3b265:134192dde3e:-7b95"><mxGeometry as="geometry" x="10.0" y="10.0"><mxPoint as="sourcePoint" x="490.0" y="234.0"/><mxPoint as="targetPoint" x="400.0" y="260.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="490.0" y="260.0"/></Array></mxGeometry></ImplicitLink><BasicBlock dependsOnU="1" id="4c3b265:134192dde3e:-7b91" interfaceFunctionName="CSCOPE" ordering="12" parent="4c3b265:134192dde3e:-7bc3" simulationFunctionName="cscope" simulationFunctionType="C_OR_FORTRAN" style="CSCOPE;flip=false;mirror=false"><ScilabString as="exprs" height="10" width="1"><data column="0" line="0" value="1 3 5 7 9 11 13 15"/><data column="0" line="1" value="-1"/><data column="0" line="2" value="[]"/><data column="0" line="3" value="[600;400]"/><data column="0" line="4" value="0"/><data column="0" line="5" value="20"/><data column="0" line="6" value="5"/><data column="0" line="7" value="20"/><data column="0" line="8" value="0"/><data column="0" line="9" value=""/></ScilabString><ScilabDouble as="realParameters" height="4" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="0.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="5.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="15" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="1.0"/><data column="0" line="4" realPart="3.0"/><data column="0" line="5" realPart="5.0"/><data column="0" line="6" realPart="7.0"/><data column="0" line="7" realPart="9.0"/><data column="0" line="8" realPart="11.0"/><data column="0" line="9" realPart="13.0"/><data column="0" line="10" realPart="15.0"/><data column="0" line="11" realPart="-1.0"/><data column="0" line="12" realPart="-1.0"/><data column="0" line="13" realPart="600.0"/><data column="0" line="14" realPart="400.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="550.0" y="190.0"/></BasicBlock><ControlPort dataType="UNKNOW_TYPE" id="4c3b265:134192dde3e:-7b74" ordering="1" parent="4c3b265:134192dde3e:-7b91" style="ControlPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="4c3b265:134192dde3e:-7b75" ordering="1" parent="4c3b265:134192dde3e:-7b91" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><BasicBlock blockType="h" id="4c3b265:134192dde3e:-7b8e" interfaceFunctionName="CLOCK_c" ordering="13" parent="4c3b265:134192dde3e:-7bc3" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="99.0"/><data column="1" line="0" realPart="-160.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-1de3cc81:16a44b61d89:-7a6c"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-1de3cc81:16a44b61d89:-7a6c"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-70.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.001"/><data column="0" line="1" value="0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.001"/><data column="0" line="1" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-1de3cc81:16a44b61d89:-7a6a"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-1de3cc81:16a44b61d89:-7a6a"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="90.3773266666667"/><data column="1" line="0" realPart="-166.33333333333331"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="7.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="5.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-1de3cc81:16a44b61d89:-7a67"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-1de3cc81:16a44b61d89:-7a67"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="60.0"/><data column="0" line="2" realPart="97.54399333333338"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-74.0"/><data column="0" line="1" realPart="-170.0"/><data column="0" line="2" realPart="-155.33333333333331"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="97.48843777777782"/><data column="0" line="1" realPart="129.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-163.66666666666666"/><data column="0" line="1" realPart="-136.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="97.59954888888893"/><data column="0" line="1" realPart="100.70999999999998"/><data column="0" line="2" realPart="60.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-163.66666666666666"/><data column="0" line="1" realPart="-40.0"/><data column="0" line="2" realPart="-40.0"/><data column="0" line="3" realPart="-26.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="550.0" y="110.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="4c3b265:134192dde3e:-7b71" ordering="1" parent="4c3b265:134192dde3e:-7b8e" style="CommandPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><CommandControlLink id="4c3b265:134192dde3e:-7b8c" parent="4c3b265:134192dde3e:-7bc3" source="4c3b265:134192dde3e:-7b71" target="4c3b265:134192dde3e:-7b74"><mxGeometry as="geometry" x="-60.0" y="10.0"><mxPoint as="sourcePoint" x="570.0" y="154.0"/><mxPoint as="targetPoint" x="570.0" y="190.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="570.0" y="180.0"/></Array></mxGeometry></CommandControlLink><ExplicitLink id="4c3b265:134192dde3e:-7b8b" parent="4c3b265:134192dde3e:-7bc3" source="4c3b265:134192dde3e:-7baa" target="4c3b265:134192dde3e:-7b75"><mxGeometry as="geometry" x="10.0" y="10.0"><mxPoint as="sourcePoint" x="514.0" y="210.0"/><mxPoint as="targetPoint" x="540.0" y="210.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="540.0" y="210.0"/><mxPoint x="540.0" y="210.0"/></Array></mxGeometry></ExplicitLink><TextBlock id="4c3b265:134192dde3e:-7b8a" parent="4c3b265:134192dde3e:-7bc3" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="E = 15V"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="E = 15V"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="E = 15V"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="40.0" y="190.0"/></TextBlock><TextBlock id="4c3b265:134192dde3e:-7b89" parent="4c3b265:134192dde3e:-7bc3" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="R = 4 ohm"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="R = 4 ohm"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="R = 4 ohm"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="210.0" y="90.0"/></TextBlock><TextBlock id="4c3b265:134192dde3e:-7b88" parent="4c3b265:134192dde3e:-7bc3" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="L = 1 H"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="L = 1 H"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="L = 1 H"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="290.0" y="90.0"/></TextBlock><TextBlock id="4c3b265:134192dde3e:-7b87" parent="4c3b265:134192dde3e:-7bc3" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="C = 0.04 F"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="C = 0.04 F"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="C = 0.04 F"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="330.0" y="190.0"/></TextBlock><TextBlock id="4c3b265:134192dde3e:-7b6f" parent="4c3b265:134192dde3e:-7bc3" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="voltage across the capacitor for constant source voltage"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="voltage across the capacitor for constant source voltage"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="voltage across the capacitor for constant source voltage"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="230.0" y="360.0"/></TextBlock></root></mxGraphModel><mxCell as="defaultParent" id="4c3b265:134192dde3e:-7bc3" parent="4c3b265:134192dde3e:-7bc2"/></XcosDiagram>
\ No newline at end of file diff --git a/Working_Examples/293/CH5/EX5.7/eg5_7.pdf b/Working_Examples/293/CH5/EX5.7/eg5_7.pdf Binary files differnew file mode 100755 index 0000000..94caf7f --- /dev/null +++ b/Working_Examples/293/CH5/EX5.7/eg5_7.pdf diff --git a/Working_Examples/293/CH5/EX5.7/eg5_7.xcos b/Working_Examples/293/CH5/EX5.7/eg5_7.xcos new file mode 100755 index 0000000..3bfa49d --- /dev/null +++ b/Working_Examples/293/CH5/EX5.7/eg5_7.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" finalIntegrationTime="5.0" title="eg5_7"><!--Xcos - 1.0 - scilab-5.5.2 - 20160406 2040--><mxGraphModel as="model"><root><mxCell id="774ef901:13456c50b60:-7ee0"/><mxCell id="774ef901:13456c50b60:-7ee1" parent="774ef901:13456c50b60:-7ee0"/><BasicBlock angle="90" dependsOnU="1" id="774ef901:13456c50b60:-7edf" interfaceFunctionName="Capacitor" ordering="1" parent="774ef901:13456c50b60:-7ee1" simulationFunctionName="Capacitor" simulationFunctionType="DEFAULT" style="Capacitor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="2" width="1"><data column="0" line="0" value="0.04"/><data column="0" line="1" value="0"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="0.04"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Capacitor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="2"><data column="0" line="0" value="C"/><data column="1" line="0" value="v"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.04"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="390.0" y="200.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="774ef901:13456c50b60:-7ede" ordering="1" parent="774ef901:13456c50b60:-7edf" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="774ef901:13456c50b60:-7edd" ordering="1" parent="774ef901:13456c50b60:-7edf" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><BasicBlock dependsOnU="1" id="774ef901:13456c50b60:-7edc" interfaceFunctionName="Inductor" ordering="2" parent="774ef901:13456c50b60:-7ee1" simulationFunctionName="Inductor" simulationFunctionType="DEFAULT" style="Inductor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Inductor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="L"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="300.0" y="130.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="774ef901:13456c50b60:-7edb" ordering="1" parent="774ef901:13456c50b60:-7edc" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="774ef901:13456c50b60:-7eda" ordering="1" parent="774ef901:13456c50b60:-7edc" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><BasicBlock dependsOnU="1" id="774ef901:13456c50b60:-7ed9" interfaceFunctionName="Resistor" ordering="3" parent="774ef901:13456c50b60:-7ee1" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="10"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="10.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="10.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="220.0" y="130.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="774ef901:13456c50b60:-7ea2" ordering="1" parent="774ef901:13456c50b60:-7ed9" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="774ef901:13456c50b60:-7ea1" ordering="1" parent="774ef901:13456c50b60:-7ed9" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><ImplicitLink id="774ef901:13456c50b60:-7ed6" parent="774ef901:13456c50b60:-7ee1" source="774ef901:13456c50b60:-7ea1" target="774ef901:13456c50b60:-7edb"><mxGeometry as="geometry" x="20.0" y="20.0"><mxPoint as="sourcePoint" x="264.0" y="150.0"/><mxPoint as="targetPoint" x="290.0" y="150.0"/></mxGeometry></ImplicitLink><GroundBlock dependsOnU="1" id="774ef901:13456c50b60:-7ed5" interfaceFunctionName="Ground" ordering="4" parent="774ef901:13456c50b60:-7ee1" simulationFunctionName="Ground" simulationFunctionType="DEFAULT" style="Ground;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Ground"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="250.0" y="300.0"/></GroundBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="774ef901:13456c50b60:-7ed4" ordering="1" parent="774ef901:13456c50b60:-7ed5" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><Orientation as="orientation" value="NORTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><SplitBlock id="774ef901:13456c50b60:-7ed3" ordering="5" parent="774ef901:13456c50b60:-7ee1" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="267.0" y="267.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="774ef901:13456c50b60:-7ed2" ordering="1" parent="774ef901:13456c50b60:-7ed3" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="774ef901:13456c50b60:-7ed1" ordering="2" parent="774ef901:13456c50b60:-7ed3" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="774ef901:13456c50b60:-7ed0" ordering="1" parent="774ef901:13456c50b60:-7ed3" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="774ef901:13456c50b60:-7ecf" parent="774ef901:13456c50b60:-7ee1" source="774ef901:13456c50b60:-7ea4" target="774ef901:13456c50b60:-7ed0"><mxGeometry as="geometry" x="-20.0" y="20.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="120.0" y="270.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="774ef901:13456c50b60:-7ece" parent="774ef901:13456c50b60:-7ee1" source="774ef901:13456c50b60:-7ed2" target="774ef901:13456c50b60:-7ed4"><mxGeometry as="geometry" x="20.0" y="20.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><VoltageSensorBlock dependsOnU="1" id="774ef901:13456c50b60:-7ecd" interfaceFunctionName="VoltageSensor" ordering="6" parent="774ef901:13456c50b60:-7ee1" simulationFunctionName="VoltageSensor" simulationFunctionType="DEFAULT" style="VoltageSensor;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="VoltageSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="v"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="480.0" y="200.0"/></VoltageSensorBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="774ef901:13456c50b60:-7ecc" ordering="2" parent="774ef901:13456c50b60:-7ecd" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="774ef901:13456c50b60:-7ecb" ordering="1" parent="774ef901:13456c50b60:-7ecd" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="774ef901:13456c50b60:-7eca" ordering="1" parent="774ef901:13456c50b60:-7ecd" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><Orientation as="orientation" value="SOUTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><BasicBlock dependsOnU="1" id="774ef901:13456c50b60:-7ec9" interfaceFunctionName="Switch" ordering="7" parent="774ef901:13456c50b60:-7ee1" simulationFunctionName="Switch" simulationFunctionType="DEFAULT" style="Switch;flip=false;mirror=false"><ScilabString as="exprs" height="2" width="1"><data column="0" line="0" value="0.01"/><data column="0" line="1" value="100000"/></ScilabString><ScilabDouble as="realParameters" height="2" width="1"><data column="0" line="0" realPart="0.01"/><data column="0" line="1" realPart="100000.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Switch"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="p"/><data column="0" line="1" value="inp"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="2" width="1"><data column="0" line="0" value="Ron"/><data column="0" line="1" value="Roff"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.01"/><data column="0" line="1" realPart="100000.0"/></ScilabDouble></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="140.0" y="130.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="774ef901:13456c50b60:-7ec8" ordering="1" parent="774ef901:13456c50b60:-7ec9" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ImplicitInputPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="774ef901:13456c50b60:-7ec7" ordering="2" parent="774ef901:13456c50b60:-7ec9" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="26.0"/></ExplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="774ef901:13456c50b60:-7ec6" ordering="1" parent="774ef901:13456c50b60:-7ec9" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><ImplicitLink id="774ef901:13456c50b60:-7ec5" parent="774ef901:13456c50b60:-7ee1" source="774ef901:13456c50b60:-7ec6" target="774ef901:13456c50b60:-7ea2"><mxGeometry as="geometry" x="20.0" y="20.0"><mxPoint as="sourcePoint" x="184.0" y="150.0"/><mxPoint as="targetPoint" x="210.0" y="150.0"/></mxGeometry></ImplicitLink><ImplicitLink id="774ef901:13456c50b60:-7ec4" parent="774ef901:13456c50b60:-7ee1" source="774ef901:13456c50b60:-7ec8" target="774ef901:13456c50b60:-7ea5"><mxGeometry as="geometry" x="20.0" y="20.0"><mxPoint as="sourcePoint" x="136.0" y="140.0"/><mxPoint as="targetPoint" x="120.0" y="200.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="120.0" y="140.0"/></Array></mxGeometry></ImplicitLink><BasicBlock blockType="h" id="774ef901:13456c50b60:-7ec3" interfaceFunctionName="STEP_FUNCTION" ordering="8" parent="774ef901:13456c50b60:-7ee1" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="STEP_FUNCTION;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="STEP_FUNCTION"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-4"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="14.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=" "/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="2.521605000000008"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="3" width="1"><data column="0" line="0" value="0"/><data column="0" line="1" value="0"/><data column="0" line="2" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"STEP",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="STEP"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="step_func"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="1.0"/><data column="0" line="1" realPart="1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="true"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="774ef901:13456c50b60:-7f35"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="STEP"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="774ef901:13456c50b60:-7f35"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="91.093038"/><data column="1" line="0" realPart="-50.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"OUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="OUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-2.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="774ef901:13456c50b60:-7f32"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="OUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="774ef901:13456c50b60:-7f32"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="6" width="1"><data column="0" line="0" realPart="62.52160500000001"/><data column="0" line="1" realPart="78.52160799999999"/><data column="0" line="2" realPart="40.0"/><data column="0" line="3" realPart="40.0"/><data column="0" line="4" realPart="78.52160799999999"/><data column="0" line="5" realPart="62.52160500000001"/></ScilabDouble><ScilabDouble height="6" width="1"><data column="0" line="0" realPart="4.0"/><data column="0" line="1" realPart="-134.39289999999994"/><data column="0" line="2" realPart="-134.39289999999994"/><data column="0" line="3" realPart="-44.69677999999999"/><data column="0" line="4" realPart="-44.69677999999999"/><data column="0" line="5" realPart="-44.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="86.52160500000001"/><data column="0" line="1" realPart="107.093038"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-20.0"/><data column="0" line="1" realPart="-40.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="40.0" y="140.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataType="REAL_MATRIX" id="774ef901:13456c50b60:-7ec2" ordering="1" parent="774ef901:13456c50b60:-7ec3" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ExplicitLink id="774ef901:13456c50b60:-7ec1" parent="774ef901:13456c50b60:-7ee1" source="774ef901:13456c50b60:-7ec2" target="774ef901:13456c50b60:-7ec7"><mxGeometry as="geometry" x="20.0" y="20.0"><mxPoint as="sourcePoint" x="84.0" y="160.0"/><mxPoint as="targetPoint" x="140.0" y="160.0"/></mxGeometry></ExplicitLink><SplitBlock id="774ef901:13456c50b60:-7ec0" ordering="9" parent="774ef901:13456c50b60:-7ee1" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="407.0" y="147.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="774ef901:13456c50b60:-7ebf" ordering="1" parent="774ef901:13456c50b60:-7ec0" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="774ef901:13456c50b60:-7ebe" ordering="2" parent="774ef901:13456c50b60:-7ec0" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="774ef901:13456c50b60:-7ebd" ordering="1" parent="774ef901:13456c50b60:-7ec0" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="774ef901:13456c50b60:-7ebc" parent="774ef901:13456c50b60:-7ee1" source="774ef901:13456c50b60:-7eda" target="774ef901:13456c50b60:-7ebd"><mxGeometry as="geometry" x="20.0" y="20.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="774ef901:13456c50b60:-7ebb" parent="774ef901:13456c50b60:-7ee1" source="774ef901:13456c50b60:-7ebf" target="774ef901:13456c50b60:-7ede"><mxGeometry as="geometry" x="-20.0" y="20.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="774ef901:13456c50b60:-7eba" parent="774ef901:13456c50b60:-7ee1" source="774ef901:13456c50b60:-7ebe" target="774ef901:13456c50b60:-7ecb"><mxGeometry as="geometry" x="20.0" y="20.0"><mxPoint as="sourcePoint" x="476.0" y="220.0"/><mxPoint as="targetPoint" x="410.0" y="150.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="450.0" y="150.0"/><mxPoint x="450.0" y="150.0"/><mxPoint x="450.0" y="220.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="774ef901:13456c50b60:-7eb9" ordering="10" parent="774ef901:13456c50b60:-7ee1" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="407.0" y="267.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="774ef901:13456c50b60:-7eb8" ordering="1" parent="774ef901:13456c50b60:-7eb9" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="774ef901:13456c50b60:-7eb7" ordering="2" parent="774ef901:13456c50b60:-7eb9" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="774ef901:13456c50b60:-7eb6" ordering="1" parent="774ef901:13456c50b60:-7eb9" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="774ef901:13456c50b60:-7eb5" parent="774ef901:13456c50b60:-7ee1" source="774ef901:13456c50b60:-7edd" target="774ef901:13456c50b60:-7eb6"><mxGeometry as="geometry" x="20.0" y="20.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="774ef901:13456c50b60:-7eb4" parent="774ef901:13456c50b60:-7ee1" source="774ef901:13456c50b60:-7ed1" target="774ef901:13456c50b60:-7eb8"><mxGeometry as="geometry" x="20.0" y="20.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="774ef901:13456c50b60:-7eb3" parent="774ef901:13456c50b60:-7ee1" source="774ef901:13456c50b60:-7eca" target="774ef901:13456c50b60:-7eb7"><mxGeometry as="geometry" x="20.0" y="20.0"><mxPoint as="sourcePoint" x="500.0" y="244.0"/><mxPoint as="targetPoint" x="410.0" y="270.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="500.0" y="270.0"/></Array></mxGeometry></ImplicitLink><BasicBlock dependsOnU="1" id="774ef901:13456c50b60:-7eb2" interfaceFunctionName="CSCOPE" ordering="11" parent="774ef901:13456c50b60:-7ee1" simulationFunctionName="cscope" simulationFunctionType="C_OR_FORTRAN" style="CSCOPE;flip=false;mirror=false"><ScilabString as="exprs" height="10" width="1"><data column="0" line="0" value="1 3 5 7 9 11 13 15"/><data column="0" line="1" value="-1"/><data column="0" line="2" value="[]"/><data column="0" line="3" value="[600;400]"/><data column="0" line="4" value="0"/><data column="0" line="5" value="20"/><data column="0" line="6" value="5"/><data column="0" line="7" value="20"/><data column="0" line="8" value="0"/><data column="0" line="9" value=""/></ScilabString><ScilabDouble as="realParameters" height="4" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="0.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="5.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="15" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="1.0"/><data column="0" line="4" realPart="3.0"/><data column="0" line="5" realPart="5.0"/><data column="0" line="6" realPart="7.0"/><data column="0" line="7" realPart="9.0"/><data column="0" line="8" realPart="11.0"/><data column="0" line="9" realPart="13.0"/><data column="0" line="10" realPart="15.0"/><data column="0" line="11" realPart="-1.0"/><data column="0" line="12" realPart="-1.0"/><data column="0" line="13" realPart="600.0"/><data column="0" line="14" realPart="400.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="560.0" y="200.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="774ef901:13456c50b60:-7eb1" ordering="1" parent="774ef901:13456c50b60:-7eb2" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ControlPort dataType="UNKNOW_TYPE" id="774ef901:13456c50b60:-7eb0" ordering="1" parent="774ef901:13456c50b60:-7eb2" style="ControlPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><BasicBlock blockType="h" id="774ef901:13456c50b60:-7eaf" interfaceFunctionName="CLOCK_c" ordering="12" parent="774ef901:13456c50b60:-7ee1" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="99.0"/><data column="1" line="0" realPart="-152.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="774ef901:13456c50b60:-7f2a"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="774ef901:13456c50b60:-7f2a"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-62.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.001"/><data column="0" line="1" value="0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.001"/><data column="0" line="1" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="774ef901:13456c50b60:-7f26"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="774ef901:13456c50b60:-7f26"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="92.71066000000002"/><data column="1" line="0" realPart="-154.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="8.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="4.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="774ef901:13456c50b60:-7f21"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="774ef901:13456c50b60:-7f21"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="66.0"/><data column="0" line="2" realPart="103.37732666666669"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-18.0"/><data column="0" line="1" realPart="-186.0"/><data column="0" line="2" realPart="-158.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="104.71066000000002"/><data column="0" line="1" realPart="129.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-142.0"/><data column="0" line="1" realPart="-128.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="106.04399333333335"/><data column="0" line="1" realPart="111.70999999999998"/><data column="0" line="2" realPart="71.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-158.0"/><data column="0" line="1" realPart="-40.0"/><data column="0" line="2" realPart="-40.0"/><data column="0" line="3" realPart="-66.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="560.0" y="120.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="774ef901:13456c50b60:-7eae" ordering="1" parent="774ef901:13456c50b60:-7eaf" style="CommandPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><CommandControlLink id="774ef901:13456c50b60:-7ead" parent="774ef901:13456c50b60:-7ee1" source="774ef901:13456c50b60:-7eae" target="774ef901:13456c50b60:-7eb0"><mxGeometry as="geometry" x="-50.0" y="20.0"><mxPoint as="sourcePoint" x="580.0" y="164.0"/><mxPoint as="targetPoint" x="580.0" y="200.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="580.0" y="190.0"/></Array></mxGeometry></CommandControlLink><ExplicitLink id="774ef901:13456c50b60:-7eac" parent="774ef901:13456c50b60:-7ee1" source="774ef901:13456c50b60:-7ecc" target="774ef901:13456c50b60:-7eb1"><mxGeometry as="geometry" x="20.0" y="20.0"><mxPoint as="sourcePoint" x="524.0" y="220.0"/><mxPoint as="targetPoint" x="550.0" y="220.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="550.0" y="220.0"/><mxPoint x="550.0" y="220.0"/></Array></mxGeometry></ExplicitLink><TextBlock id="774ef901:13456c50b60:-7eab" parent="774ef901:13456c50b60:-7ee1" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="E = 15V"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="E = 15V"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="E = 15V"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="50.0" y="200.0"/></TextBlock><TextBlock id="774ef901:13456c50b60:-7eaa" parent="774ef901:13456c50b60:-7ee1" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="R = 10 ohm"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="R = 10 ohm"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="R = 10 ohm"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="220.0" y="100.0"/></TextBlock><TextBlock id="774ef901:13456c50b60:-7ea9" parent="774ef901:13456c50b60:-7ee1" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="L = 1 H"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="L = 1 H"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="L = 1 H"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="300.0" y="100.0"/></TextBlock><TextBlock id="774ef901:13456c50b60:-7ea8" parent="774ef901:13456c50b60:-7ee1" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="C = 0.04 F"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="C = 0.04 F"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="C = 0.04 F"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="340.0" y="200.0"/></TextBlock><TextBlock id="774ef901:13456c50b60:-7ea7" parent="774ef901:13456c50b60:-7ee1" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="voltage across the capacitor for constant source voltage"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="voltage across the capacitor for constant source voltage"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="voltage across the capacitor for constant source voltage"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="240.0" y="370.0"/></TextBlock><BasicBlock angle="90" id="774ef901:13456c50b60:-7ea6" interfaceFunctionName="ConstantVoltage" ordering="13" parent="774ef901:13456c50b60:-7ee1" simulationFunctionName="ConstantVoltage" simulationFunctionType="DEFAULT" style="ConstantVoltage;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="15"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="15.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ConstantVoltage"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="V"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="15.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="100.0" y="200.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="774ef901:13456c50b60:-7ea5" ordering="1" parent="774ef901:13456c50b60:-7ea6" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="774ef901:13456c50b60:-7ea4" ordering="1" parent="774ef901:13456c50b60:-7ea6" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort></root></mxGraphModel><mxCell as="defaultParent" id="774ef901:13456c50b60:-7ee1" parent="774ef901:13456c50b60:-7ee0"/></XcosDiagram>
\ No newline at end of file diff --git a/Working_Examples/293/CH5/EX5.8/eg5_8.pdf b/Working_Examples/293/CH5/EX5.8/eg5_8.pdf Binary files differnew file mode 100755 index 0000000..5c321c0 --- /dev/null +++ b/Working_Examples/293/CH5/EX5.8/eg5_8.pdf diff --git a/Working_Examples/293/CH5/EX5.8/eg5_8.xcos b/Working_Examples/293/CH5/EX5.8/eg5_8.xcos new file mode 100755 index 0000000..ee86958 --- /dev/null +++ b/Working_Examples/293/CH5/EX5.8/eg5_8.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" finalIntegrationTime="5.0" title="eg5_8"><!--Xcos - 1.0 - scilab-5.5.2 - 20160406 2040--><mxGraphModel as="model"><root><mxCell id="774ef901:13456c50b60:-7e9e"/><mxCell id="774ef901:13456c50b60:-7e9f" parent="774ef901:13456c50b60:-7e9e"/><BasicBlock angle="90" dependsOnU="1" id="774ef901:13456c50b60:-7e9d" interfaceFunctionName="Capacitor" ordering="1" parent="774ef901:13456c50b60:-7e9f" simulationFunctionName="Capacitor" simulationFunctionType="DEFAULT" style="Capacitor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="2" width="1"><data column="0" line="0" value="0.04"/><data column="0" line="1" value="0"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="0.04"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Capacitor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="2"><data column="0" line="0" value="C"/><data column="1" line="0" value="v"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.04"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="390.0" y="200.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="774ef901:13456c50b60:-7e9c" ordering="1" parent="774ef901:13456c50b60:-7e9d" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="774ef901:13456c50b60:-7e9b" ordering="1" parent="774ef901:13456c50b60:-7e9d" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><BasicBlock dependsOnU="1" id="774ef901:13456c50b60:-7e9a" interfaceFunctionName="Inductor" ordering="2" parent="774ef901:13456c50b60:-7e9f" simulationFunctionName="Inductor" simulationFunctionType="DEFAULT" style="Inductor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Inductor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="L"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="300.0" y="130.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="774ef901:13456c50b60:-7e99" ordering="1" parent="774ef901:13456c50b60:-7e9a" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="774ef901:13456c50b60:-7e98" ordering="1" parent="774ef901:13456c50b60:-7e9a" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><BasicBlock dependsOnU="1" id="774ef901:13456c50b60:-7e97" interfaceFunctionName="Resistor" ordering="3" parent="774ef901:13456c50b60:-7e9f" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="17.2"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="17.2"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="17.2"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="220.0" y="130.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="774ef901:13456c50b60:-7e60" ordering="1" parent="774ef901:13456c50b60:-7e97" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="774ef901:13456c50b60:-7e5f" ordering="1" parent="774ef901:13456c50b60:-7e97" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><ImplicitLink id="774ef901:13456c50b60:-7e94" parent="774ef901:13456c50b60:-7e9f" source="774ef901:13456c50b60:-7e5f" target="774ef901:13456c50b60:-7e99"><mxGeometry as="geometry" x="20.0" y="20.0"><mxPoint as="sourcePoint" x="264.0" y="150.0"/><mxPoint as="targetPoint" x="290.0" y="150.0"/></mxGeometry></ImplicitLink><GroundBlock dependsOnU="1" id="774ef901:13456c50b60:-7e93" interfaceFunctionName="Ground" ordering="4" parent="774ef901:13456c50b60:-7e9f" simulationFunctionName="Ground" simulationFunctionType="DEFAULT" style="Ground;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Ground"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="250.0" y="300.0"/></GroundBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="774ef901:13456c50b60:-7e92" ordering="1" parent="774ef901:13456c50b60:-7e93" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><Orientation as="orientation" value="NORTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><SplitBlock id="774ef901:13456c50b60:-7e91" ordering="5" parent="774ef901:13456c50b60:-7e9f" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="267.0" y="267.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="774ef901:13456c50b60:-7e90" ordering="1" parent="774ef901:13456c50b60:-7e91" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="774ef901:13456c50b60:-7e8f" ordering="2" parent="774ef901:13456c50b60:-7e91" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="774ef901:13456c50b60:-7e8e" ordering="1" parent="774ef901:13456c50b60:-7e91" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="774ef901:13456c50b60:-7e8d" parent="774ef901:13456c50b60:-7e9f" source="774ef901:13456c50b60:-7e5b" target="774ef901:13456c50b60:-7e8e"><mxGeometry as="geometry" x="-20.0" y="20.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="120.0" y="270.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="774ef901:13456c50b60:-7e8c" parent="774ef901:13456c50b60:-7e9f" source="774ef901:13456c50b60:-7e90" target="774ef901:13456c50b60:-7e92"><mxGeometry as="geometry" x="20.0" y="20.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><VoltageSensorBlock dependsOnU="1" id="774ef901:13456c50b60:-7e8b" interfaceFunctionName="VoltageSensor" ordering="6" parent="774ef901:13456c50b60:-7e9f" simulationFunctionName="VoltageSensor" simulationFunctionType="DEFAULT" style="VoltageSensor;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="VoltageSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="v"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="480.0" y="200.0"/></VoltageSensorBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="774ef901:13456c50b60:-7e8a" ordering="2" parent="774ef901:13456c50b60:-7e8b" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="774ef901:13456c50b60:-7e89" ordering="1" parent="774ef901:13456c50b60:-7e8b" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="774ef901:13456c50b60:-7e88" ordering="1" parent="774ef901:13456c50b60:-7e8b" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><Orientation as="orientation" value="SOUTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><BasicBlock dependsOnU="1" id="774ef901:13456c50b60:-7e87" interfaceFunctionName="Switch" ordering="7" parent="774ef901:13456c50b60:-7e9f" simulationFunctionName="Switch" simulationFunctionType="DEFAULT" style="Switch;flip=false;mirror=false"><ScilabString as="exprs" height="2" width="1"><data column="0" line="0" value="0.01"/><data column="0" line="1" value="100000"/></ScilabString><ScilabDouble as="realParameters" height="2" width="1"><data column="0" line="0" realPart="0.01"/><data column="0" line="1" realPart="100000.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Switch"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="p"/><data column="0" line="1" value="inp"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="2" width="1"><data column="0" line="0" value="Ron"/><data column="0" line="1" value="Roff"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.01"/><data column="0" line="1" realPart="100000.0"/></ScilabDouble></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="140.0" y="130.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="774ef901:13456c50b60:-7e86" ordering="1" parent="774ef901:13456c50b60:-7e87" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ImplicitInputPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="774ef901:13456c50b60:-7e85" ordering="2" parent="774ef901:13456c50b60:-7e87" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="26.0"/></ExplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="774ef901:13456c50b60:-7e84" ordering="1" parent="774ef901:13456c50b60:-7e87" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><ImplicitLink id="774ef901:13456c50b60:-7e83" parent="774ef901:13456c50b60:-7e9f" source="774ef901:13456c50b60:-7e84" target="774ef901:13456c50b60:-7e60"><mxGeometry as="geometry" x="20.0" y="20.0"><mxPoint as="sourcePoint" x="184.0" y="150.0"/><mxPoint as="targetPoint" x="210.0" y="150.0"/></mxGeometry></ImplicitLink><ImplicitLink id="774ef901:13456c50b60:-7e82" parent="774ef901:13456c50b60:-7e9f" source="774ef901:13456c50b60:-7e86" target="774ef901:13456c50b60:-7e5c"><mxGeometry as="geometry" x="20.0" y="20.0"><mxPoint as="sourcePoint" x="136.0" y="140.0"/><mxPoint as="targetPoint" x="120.0" y="200.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="120.0" y="140.0"/></Array></mxGeometry></ImplicitLink><BasicBlock blockType="h" id="774ef901:13456c50b60:-7e81" interfaceFunctionName="STEP_FUNCTION" ordering="8" parent="774ef901:13456c50b60:-7e9f" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="STEP_FUNCTION;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="STEP_FUNCTION"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-4"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="14.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=" "/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="2.521605000000008"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="3" width="1"><data column="0" line="0" value="0"/><data column="0" line="1" value="0"/><data column="0" line="2" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"STEP",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="STEP"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="step_func"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="1.0"/><data column="0" line="1" realPart="1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="true"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="774ef901:13456c50b60:-7f35"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="STEP"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="774ef901:13456c50b60:-7f35"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="91.093038"/><data column="1" line="0" realPart="-50.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"OUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="OUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-2.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="774ef901:13456c50b60:-7f32"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="OUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="774ef901:13456c50b60:-7f32"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="6" width="1"><data column="0" line="0" realPart="62.52160500000001"/><data column="0" line="1" realPart="78.52160799999999"/><data column="0" line="2" realPart="40.0"/><data column="0" line="3" realPart="40.0"/><data column="0" line="4" realPart="78.52160799999999"/><data column="0" line="5" realPart="62.52160500000001"/></ScilabDouble><ScilabDouble height="6" width="1"><data column="0" line="0" realPart="4.0"/><data column="0" line="1" realPart="-134.39289999999994"/><data column="0" line="2" realPart="-134.39289999999994"/><data column="0" line="3" realPart="-44.69677999999999"/><data column="0" line="4" realPart="-44.69677999999999"/><data column="0" line="5" realPart="-44.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="86.52160500000001"/><data column="0" line="1" realPart="107.093038"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-20.0"/><data column="0" line="1" realPart="-40.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="40.0" y="140.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataType="REAL_MATRIX" id="774ef901:13456c50b60:-7e80" ordering="1" parent="774ef901:13456c50b60:-7e81" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ExplicitLink id="774ef901:13456c50b60:-7e7f" parent="774ef901:13456c50b60:-7e9f" source="774ef901:13456c50b60:-7e80" target="774ef901:13456c50b60:-7e85"><mxGeometry as="geometry" x="20.0" y="20.0"><mxPoint as="sourcePoint" x="84.0" y="160.0"/><mxPoint as="targetPoint" x="140.0" y="160.0"/></mxGeometry></ExplicitLink><SplitBlock id="774ef901:13456c50b60:-7e7e" ordering="9" parent="774ef901:13456c50b60:-7e9f" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="407.0" y="147.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="774ef901:13456c50b60:-7e7d" ordering="1" parent="774ef901:13456c50b60:-7e7e" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="774ef901:13456c50b60:-7e7c" ordering="2" parent="774ef901:13456c50b60:-7e7e" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="774ef901:13456c50b60:-7e7b" ordering="1" parent="774ef901:13456c50b60:-7e7e" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="774ef901:13456c50b60:-7e7a" parent="774ef901:13456c50b60:-7e9f" source="774ef901:13456c50b60:-7e98" target="774ef901:13456c50b60:-7e7b"><mxGeometry as="geometry" x="20.0" y="20.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="774ef901:13456c50b60:-7e79" parent="774ef901:13456c50b60:-7e9f" source="774ef901:13456c50b60:-7e7d" target="774ef901:13456c50b60:-7e9c"><mxGeometry as="geometry" x="-20.0" y="20.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="774ef901:13456c50b60:-7e78" parent="774ef901:13456c50b60:-7e9f" source="774ef901:13456c50b60:-7e7c" target="774ef901:13456c50b60:-7e89"><mxGeometry as="geometry" x="20.0" y="20.0"><mxPoint as="sourcePoint" x="476.0" y="220.0"/><mxPoint as="targetPoint" x="410.0" y="150.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="450.0" y="150.0"/><mxPoint x="450.0" y="150.0"/><mxPoint x="450.0" y="220.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="774ef901:13456c50b60:-7e77" ordering="10" parent="774ef901:13456c50b60:-7e9f" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="407.0" y="267.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="774ef901:13456c50b60:-7e76" ordering="1" parent="774ef901:13456c50b60:-7e77" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="774ef901:13456c50b60:-7e75" ordering="2" parent="774ef901:13456c50b60:-7e77" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="774ef901:13456c50b60:-7e74" ordering="1" parent="774ef901:13456c50b60:-7e77" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="774ef901:13456c50b60:-7e73" parent="774ef901:13456c50b60:-7e9f" source="774ef901:13456c50b60:-7e9b" target="774ef901:13456c50b60:-7e74"><mxGeometry as="geometry" x="20.0" y="20.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="774ef901:13456c50b60:-7e72" parent="774ef901:13456c50b60:-7e9f" source="774ef901:13456c50b60:-7e8f" target="774ef901:13456c50b60:-7e76"><mxGeometry as="geometry" x="20.0" y="20.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="774ef901:13456c50b60:-7e71" parent="774ef901:13456c50b60:-7e9f" source="774ef901:13456c50b60:-7e88" target="774ef901:13456c50b60:-7e75"><mxGeometry as="geometry" x="20.0" y="20.0"><mxPoint as="sourcePoint" x="500.0" y="244.0"/><mxPoint as="targetPoint" x="410.0" y="270.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="500.0" y="270.0"/></Array></mxGeometry></ImplicitLink><BasicBlock dependsOnU="1" id="774ef901:13456c50b60:-7e70" interfaceFunctionName="CSCOPE" ordering="11" parent="774ef901:13456c50b60:-7e9f" simulationFunctionName="cscope" simulationFunctionType="C_OR_FORTRAN" style="CSCOPE;flip=false;mirror=false"><ScilabString as="exprs" height="10" width="1"><data column="0" line="0" value="1 3 5 7 9 11 13 15"/><data column="0" line="1" value="-1"/><data column="0" line="2" value="[]"/><data column="0" line="3" value="[600;400]"/><data column="0" line="4" value="0"/><data column="0" line="5" value="12.5"/><data column="0" line="6" value="5"/><data column="0" line="7" value="20"/><data column="0" line="8" value="0"/><data column="0" line="9" value=""/></ScilabString><ScilabDouble as="realParameters" height="4" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="0.0"/><data column="0" line="2" realPart="12.5"/><data column="0" line="3" realPart="5.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="15" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="1.0"/><data column="0" line="4" realPart="3.0"/><data column="0" line="5" realPart="5.0"/><data column="0" line="6" realPart="7.0"/><data column="0" line="7" realPart="9.0"/><data column="0" line="8" realPart="11.0"/><data column="0" line="9" realPart="13.0"/><data column="0" line="10" realPart="15.0"/><data column="0" line="11" realPart="-1.0"/><data column="0" line="12" realPart="-1.0"/><data column="0" line="13" realPart="600.0"/><data column="0" line="14" realPart="400.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="560.0" y="200.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="774ef901:13456c50b60:-7e54" ordering="1" parent="774ef901:13456c50b60:-7e70" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ControlPort dataType="UNKNOW_TYPE" id="774ef901:13456c50b60:-7e53" ordering="1" parent="774ef901:13456c50b60:-7e70" style="ControlPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><BasicBlock blockType="h" id="774ef901:13456c50b60:-7e6d" interfaceFunctionName="CLOCK_c" ordering="12" parent="774ef901:13456c50b60:-7e9f" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="99.0"/><data column="1" line="0" realPart="-152.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="774ef901:13456c50b60:-7f2a"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="774ef901:13456c50b60:-7f2a"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-62.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.001"/><data column="0" line="1" value="0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.001"/><data column="0" line="1" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="774ef901:13456c50b60:-7f26"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="774ef901:13456c50b60:-7f26"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="92.71066000000002"/><data column="1" line="0" realPart="-154.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="8.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="4.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="774ef901:13456c50b60:-7f21"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="774ef901:13456c50b60:-7f21"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="66.0"/><data column="0" line="2" realPart="103.37732666666669"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-18.0"/><data column="0" line="1" realPart="-186.0"/><data column="0" line="2" realPart="-158.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="104.71066000000002"/><data column="0" line="1" realPart="129.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-142.0"/><data column="0" line="1" realPart="-128.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="106.04399333333335"/><data column="0" line="1" realPart="111.70999999999998"/><data column="0" line="2" realPart="71.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-158.0"/><data column="0" line="1" realPart="-40.0"/><data column="0" line="2" realPart="-40.0"/><data column="0" line="3" realPart="-66.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="560.0" y="120.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="774ef901:13456c50b60:-7e6c" ordering="1" parent="774ef901:13456c50b60:-7e6d" style="CommandPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><CommandControlLink id="774ef901:13456c50b60:-7e6b" parent="774ef901:13456c50b60:-7e9f" source="774ef901:13456c50b60:-7e6c" target="774ef901:13456c50b60:-7e53"><mxGeometry as="geometry" x="-50.0" y="20.0"><mxPoint as="sourcePoint" x="580.0" y="164.0"/><mxPoint as="targetPoint" x="580.0" y="200.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="580.0" y="190.0"/></Array></mxGeometry></CommandControlLink><ExplicitLink id="774ef901:13456c50b60:-7e6a" parent="774ef901:13456c50b60:-7e9f" source="774ef901:13456c50b60:-7e8a" target="774ef901:13456c50b60:-7e54"><mxGeometry as="geometry" x="20.0" y="20.0"><mxPoint as="sourcePoint" x="524.0" y="220.0"/><mxPoint as="targetPoint" x="550.0" y="220.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="550.0" y="220.0"/><mxPoint x="550.0" y="220.0"/></Array></mxGeometry></ExplicitLink><TextBlock id="774ef901:13456c50b60:-7e69" parent="774ef901:13456c50b60:-7e9f" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="E = 12V"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="E = 12V"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="E = 12V"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="50.0" y="200.0"/></TextBlock><TextBlock id="774ef901:13456c50b60:-7e68" parent="774ef901:13456c50b60:-7e9f" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="R = 17.2 ohm"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="R = 17.2 ohm"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="R = 17.2 ohm"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="220.0" y="100.0"/></TextBlock><TextBlock id="774ef901:13456c50b60:-7e67" parent="774ef901:13456c50b60:-7e9f" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="L = 1 H"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="L = 1 H"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="L = 1 H"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="300.0" y="100.0"/></TextBlock><TextBlock id="774ef901:13456c50b60:-7e66" parent="774ef901:13456c50b60:-7e9f" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="C = 0.04 F"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="C = 0.04 F"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="C = 0.04 F"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="340.0" y="200.0"/></TextBlock><TextBlock id="774ef901:13456c50b60:-7e65" parent="774ef901:13456c50b60:-7e9f" simulationFunctionType="DEFAULT" style="TEXT_f;flip=false;mirror=false" value="voltage across the capacitor for constant source voltage"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="voltage across the capacitor for constant source voltage"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="voltage across the capacitor for constant source voltage"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="240.0" y="370.0"/></TextBlock><BasicBlock angle="90" id="774ef901:13456c50b60:-7e64" interfaceFunctionName="ConstantVoltage" ordering="13" parent="774ef901:13456c50b60:-7e9f" simulationFunctionName="ConstantVoltage" simulationFunctionType="DEFAULT" style="ConstantVoltage;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="12"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="12.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ConstantVoltage"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="V"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="12.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="100.0" y="200.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="774ef901:13456c50b60:-7e5c" ordering="1" parent="774ef901:13456c50b60:-7e64" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="774ef901:13456c50b60:-7e5b" ordering="1" parent="774ef901:13456c50b60:-7e64" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort></root></mxGraphModel><mxCell as="defaultParent" id="774ef901:13456c50b60:-7e9f" parent="774ef901:13456c50b60:-7e9e"/></XcosDiagram>
\ No newline at end of file diff --git a/Working_Examples/293/CH6/EX6.1/eg6_1.sce b/Working_Examples/293/CH6/EX6.1/eg6_1.sce new file mode 100755 index 0000000..193b6b7 --- /dev/null +++ b/Working_Examples/293/CH6/EX6.1/eg6_1.sce @@ -0,0 +1,6 @@ +function F = laplace(s, T1, T2)
+ //pulse:
+ // f = u(t - T1) - u(t - T2)
+ F = integrate('exp(-s*t)','t',T1,T2); //laplace transform of the pulse
+endfunction
+
diff --git a/Working_Examples/293/CH7/EX7.1/eg7_1.sce b/Working_Examples/293/CH7/EX7.1/eg7_1.sce new file mode 100755 index 0000000..2b6c2c8 --- /dev/null +++ b/Working_Examples/293/CH7/EX7.1/eg7_1.sce @@ -0,0 +1,6 @@ +Vm = 2; // assumption
+//average value of the function
+//v(t) = Vm*alpha/(%pi/3) for 0 <= alpha <= %pi/3
+// = Vm for %pi/3 <= alpha <= %pi/2
+Vav = (2/%pi)*integrate('Vm*alpha*(3/%pi)','alpha',0,%pi/3) + (2/%pi)*integrate('Vm*alpha/alpha','alpha',%pi/3,%pi/2);
+disp(Vav)
\ No newline at end of file diff --git a/Working_Examples/293/CH7/EX7.10/eg7_10.sce b/Working_Examples/293/CH7/EX7.10/eg7_10.sce new file mode 100755 index 0000000..8471961 --- /dev/null +++ b/Working_Examples/293/CH7/EX7.10/eg7_10.sce @@ -0,0 +1,14 @@ +V1 = complex(10);
+V2 = complex(10*cos(-%pi/3),10*sin(-%pi/3));
+Z1 = complex(1,1);
+Z2 = complex(1,-1);
+Z3 = complex(1,2);
+//By appling the nodal analysis we get the following equation:
+//Va((1/Z1)+(1/Z2)+(1/Z3)) = (V1/Z1) + (V2/Z2)
+
+Y = (1/Z1)+(1/Z2)+(1/Z3);
+Va = (1/Y)*((V1/Z1) + (V2/Z2)); //voltage of node a
+
+Ibr = Va/Z3; //current flowing through Z3
+
+disp(Ibr,"current flowing through Z3 = ")
\ No newline at end of file diff --git a/Working_Examples/293/CH7/EX7.11/eg7_11.sce b/Working_Examples/293/CH7/EX7.11/eg7_11.sce new file mode 100755 index 0000000..8a4f15a --- /dev/null +++ b/Working_Examples/293/CH7/EX7.11/eg7_11.sce @@ -0,0 +1,14 @@ +V1 = complex(10);
+V2 = complex(10*cos(-%pi/3),10*sin(-%pi/3));
+Z1 = complex(1,1);
+Z2 = complex(1,-1);
+Z3 = complex(1,2);
+
+Zth = Z3 + (Z1*Z2/(Z1+Z2)); // thevinin resistance
+
+I = (V1 - V2)/(Z1 + Z2); // current flowing through the circuit when R3 is not connected
+Vth = V1 - I*Z1; //thevinin voltage
+
+Ibr = Vth/Zth; //current flowing through Z3
+
+disp(Ibr,"current flowing through Z3 = ")
\ No newline at end of file diff --git a/Working_Examples/293/CH7/EX7.2/eg7_2.sce b/Working_Examples/293/CH7/EX7.2/eg7_2.sce new file mode 100755 index 0000000..96d6655 --- /dev/null +++ b/Working_Examples/293/CH7/EX7.2/eg7_2.sce @@ -0,0 +1,9 @@ +theta = %pi/6; //phase difference between current and voltage
+pf = cos(theta); //power factor
+disp(pf,"power factor = ")
+
+Vm = 170; //peak voltage
+Im = 14.14; //peak current
+
+Pav = Vm*Im*pf/2; //average power delivered to the circuit
+disp(Pav,"average power delivered to the circuit = ")
\ No newline at end of file diff --git a/Working_Examples/293/CH7/EX7.3/eg7_3.sce b/Working_Examples/293/CH7/EX7.3/eg7_3.sce new file mode 100755 index 0000000..7ef4543 --- /dev/null +++ b/Working_Examples/293/CH7/EX7.3/eg7_3.sce @@ -0,0 +1,10 @@ +// lets assume that i1 and i2 are stationary and the coordinate system is rotating with an angular frquency of w. And i1 lies on the x-axis (i.e. making an angle of 0 degree with the x-axis)
+theta = %pi/3; //phase difference between i1 and i2;
+I1 = 10*sqrt(2); // peak value of i1
+I2 = 20*sqrt(2); // peak value of i2
+I = sqrt(I1^2 + I2^2 + 2*I1*I2*cos(theta)); //peak value of the resultant current
+
+phi = atan(I2*sin(theta)/(I1 + I2*cos(theta)));// phase difference between the resultant and i1(in radians)
+disp(I,"peak value of the resultant current = ")
+disp(phi,"phase difference between the resultant and i1 = ")
+// result : i = I sin(wt + phi)
\ No newline at end of file diff --git a/Working_Examples/293/CH7/EX7.4/eg7_4.sce b/Working_Examples/293/CH7/EX7.4/eg7_4.sce new file mode 100755 index 0000000..408b4a1 --- /dev/null +++ b/Working_Examples/293/CH7/EX7.4/eg7_4.sce @@ -0,0 +1,14 @@ +I1 = 10; //peak value of i1
+I2 = 20; //peak value of i2
+theta = %pi/3; //phase difference between i1 and i2
+// complex representation of the two currents
+i1 = complex(10);
+i2 = complex(20*cos(%pi/3),20*sin(%pi/3));
+
+i = i1 + i2 ; //resultant current
+I = sqrt (real(i)^2 + imag(i)^2); //calculating the peak value of the resultant current by using its real and imaginary parts
+phi = atan(imag(i)/real(i)); //calculatig the phase of the resultant current by using its real and imaginary parts
+disp(i,"resultant current = ")
+disp(I,"peak value of the resultant current = ")
+disp(phi,"phase of the resultant current = ")
+//result : i = Isin(wt + phi)
diff --git a/Working_Examples/293/CH7/EX7.5/eg7_5.sce b/Working_Examples/293/CH7/EX7.5/eg7_5.sce new file mode 100755 index 0000000..8dc01c2 --- /dev/null +++ b/Working_Examples/293/CH7/EX7.5/eg7_5.sce @@ -0,0 +1,16 @@ +I1 = 3; //peak value of i1
+I2 = 5; //peak value of i2
+I3 = 6; //peak value of i3
+theta1 = %pi/6; //phase difference between i2 and i1
+theta2 = -2*%pi/3; //phase difference between i3 and i1
+// complex representation of the currents
+i1 = complex(3);
+i2 = complex(5*cos(%pi/6),5*sin(%pi/6));
+i3 = complex(6*cos(-2*%pi/3),6*sin(-2*%pi/3));
+
+i = i1 + i2 + i3; //resultant current
+I = sqrt (real(i)^2 + imag(i)^2); //calculating the peak value of the resultant current by using its real and imaginary parts
+phi = atan(imag(i)/real(i)); //calculatig the phase of the resultant current by using its real and imaginary parts
+disp(I,"peak value of the resultant current = ")
+disp(phi,"phase of the resultant current = ")
+//result : i = Isin(wt + phi)
\ No newline at end of file diff --git a/Working_Examples/293/CH7/EX7.6/eg7_6.sce b/Working_Examples/293/CH7/EX7.6/eg7_6.sce new file mode 100755 index 0000000..52b0b90 --- /dev/null +++ b/Working_Examples/293/CH7/EX7.6/eg7_6.sce @@ -0,0 +1,7 @@ +//find V*Z1/Z2
+V = complex(45*sqrt(3), -45);
+Z1 = complex(2.5*sqrt(2), 2.5*sqrt(2));
+Z2 = complex(7.5, 7.5*sqrt(3));
+// we have to find V*Z1/Z2
+Z = V*Z1/Z2;
+disp(Z,"V*Z1/Z2 = ")
\ No newline at end of file diff --git a/Working_Examples/293/CH7/EX7.7/eg7_7.sce b/Working_Examples/293/CH7/EX7.7/eg7_7.sce new file mode 100755 index 0000000..6e6dc46 --- /dev/null +++ b/Working_Examples/293/CH7/EX7.7/eg7_7.sce @@ -0,0 +1,41 @@ +//a
+f = 60; //frequency of the volatge source
+V = complex(141);//voltage supply V = 141sin(wt)
+R = 3; //resistance of the circuit
+L = 0.0106; // inductance of the circuit
+Z = complex(R,2*%pi*f*L);//impedance of the circuit = R + jwL
+i = V/Z; //current
+I = sqrt (real(i)^2 + imag(i)^2); //calculating the peak value of the current by using its real and imaginary parts
+phi = atan(imag(i)/real(i)); //calculatig the phase of the resultant current by using its real and imaginary parts
+disp("a")
+disp(I,"effective value of the steady state current = ")
+disp(phi,"relative phase angle = ")
+
+//b
+// expression for the instantaneous current can be written as
+//i = I sin(wt + phi)
+
+//c
+R = complex(3);
+ vr = V*R/Z; // voltage across the resistor
+Vr = sqrt (real(vr)^2 + imag(vr)^2); //peak value of the voltage across the resistor
+phi1 = atan(imag(vr)/real(vr)); //phase of the voltage across the resistor
+
+vl = V - vr; //voltage across the inductor
+Vl = sqrt (real(vl)^2 + imag(vl)^2); //peak value of the voltage across the inductor
+phi2 = atan(imag(vl)/real(vl)); //phase of the voltage across the inductor
+disp("c")
+disp(Vr,"effective value of the voltage drop across the resistor = ")
+disp(phi1,"phase of the voltage drop across the resistor = ")
+disp(Vl,"effective value of the voltage drop across the inductor = ")
+disp(phi2,"phase of the voltage drop across the inductor = ")
+
+//d
+Pav = V*I*cos(phi); //average power dissipated by the circuit
+disp("d")
+disp(Pav,"average power dissipated by the circuit = ")
+
+//e
+pf = cos(phi); //power factor
+disp("e")
+disp(pf,"power factor = ")
\ No newline at end of file diff --git a/Working_Examples/293/CH7/EX7.8/eg7_8.sce b/Working_Examples/293/CH7/EX7.8/eg7_8.sce new file mode 100755 index 0000000..e33b3cc --- /dev/null +++ b/Working_Examples/293/CH7/EX7.8/eg7_8.sce @@ -0,0 +1,12 @@ +//impedances in the circuit
+Z1 = complex(10,10);
+Z2 = complex(15,20);
+Z3 = complex(3,-4);
+Z4 = complex(8,6);
+
+Ybc = (1/Z2)+(1/Z3)+(1/Z4); //admittance of the parallel combination
+Zbc = (1/Ybc); //impedance of the parallel combination
+
+Z = Z1 + Zbc; // equivalent impedance of the circuit
+
+disp(Z,"equivalent impedance of the circuit = ")
\ No newline at end of file diff --git a/Working_Examples/293/CH7/EX7.9/eg7_9.sce b/Working_Examples/293/CH7/EX7.9/eg7_9.sce new file mode 100755 index 0000000..ff8d27d --- /dev/null +++ b/Working_Examples/293/CH7/EX7.9/eg7_9.sce @@ -0,0 +1,29 @@ +V1 = complex(10);
+V2 = complex(10*cos(-%pi/3),10*sin(-%pi/3));
+Z1 = complex(1,1);
+Z2 = complex(1,-1);
+Z3 = complex(1,2);
+
+//by mesh analysis we get the following equations:
+//I1*Z11 - I2*Z12 = V1
+//-I1*Z21 + I2*Z22 = -V2; where I1 and I2 are the currrents flowing in the first and second meshes respectively
+Z11 = Z1 + Z1;
+Z12 = Z1 + Z2;
+Z21 = Z12;
+Z22 = Z2 + Z2;
+
+// the mesh equations can be represented in the matrix form as I*Z = V
+Z = [Z11, -Z12; -Z21, Z22]; //impedance matrix
+V = [V1; -V2]; //voltage matrix
+I = inv(Z)*V; //current matrix = [I1;I2]
+
+I1 = I(1,:); // I1 = first row of I matrix
+I2 = I(2,:); // I1 = second row of I matrix
+
+Ibr = I1 - I2; //current flowing through Z3
+
+disp(Ibr,"current flowing through Z3 = ")
+
+
+
+
diff --git a/Working_Examples/293/CH9/EX9.2/eg9_2.sce b/Working_Examples/293/CH9/EX9.2/eg9_2.sce new file mode 100755 index 0000000..8a35341 --- /dev/null +++ b/Working_Examples/293/CH9/EX9.2/eg9_2.sce @@ -0,0 +1,12 @@ +// Quiescent point
+Idq = 0.0034; // drain current
+Vdq = 15; // drain voltage
+Vgq = 1; // gate voltage
+
+Vdd = 24; //drain supply voltage
+
+Rs = Vgq/Idq;
+disp(Rs,"The value of self bais source resistance is(in ohm): ")
+
+Rd = (Vdd - Vdq)/Idq ;
+disp(Rd,"The value of drain load resistance is(in ohm): ")
\ No newline at end of file diff --git a/Working_Examples/293/CH9/EX9.3/eg9_3.sce b/Working_Examples/293/CH9/EX9.3/eg9_3.sce new file mode 100755 index 0000000..edac541 --- /dev/null +++ b/Working_Examples/293/CH9/EX9.3/eg9_3.sce @@ -0,0 +1,38 @@ +//a
+//transistor parameters
+ R2 = 0.625;
+ hie = 1.67;
+ Rb = 4.16;
+ Rl = 2.4;
+ Roe = 150;
+
+ Cc = 25 * 10^-6;
+ rBB = 0.29;
+ rBE = 1.375;
+ Cd = 6900 * 10^-12;
+ Ct = 40 * 10^-12;
+ gm = 0.032;
+
+ Req = (Rl*Roe)/(Rl + Roe);
+ hfe = 44;
+ a = 1 + (R2/Req);
+ b = 1 + (hie/Rb);
+ Aim = -hfe/(a*b); // mid band frequency gain
+ disp("a")
+ disp(Aim,"The mid band frequency gain of the first stage of the circuit is: ")
+
+ //b
+ Tl = 2*%pi*(Req + R2)*Cc*(10^3);
+ Fl = 1/Tl;
+
+ Rp = (Req*R2)/(Req + R2);
+ C = Cd + Ct*(1 + gm*Rp*10^3);
+ d = Rb + hie ;
+ e = rBE * (Rb + rBB)* 10^3 * C ;
+ Fh = d/(2*%pi*e);
+
+ BW = Fh - Fl;
+ disp("b")
+ disp(BW, "The bandwidth of the first stage amplifier in Hz is :")
+
+
\ No newline at end of file diff --git a/Working_Examples/3432.zip b/Working_Examples/3432.zip Binary files differnew file mode 100644 index 0000000..383fff2 --- /dev/null +++ b/Working_Examples/3432.zip diff --git a/Working_Examples/3432/CH2/EX2.1.b/DEPENDENCIES/fig_settings.sci b/Working_Examples/3432/CH2/EX2.1.b/DEPENDENCIES/fig_settings.sci new file mode 100755 index 0000000..5d5e7d4 --- /dev/null +++ b/Working_Examples/3432/CH2/EX2.1.b/DEPENDENCIES/fig_settings.sci @@ -0,0 +1,9 @@ +//------------------------------------------------------------------
+//figure handel settings
+f=get("current_figure"); //Current figure handle
+f.background=8; //make the figure window background white
+l=f.children(1);
+l.background=8 ;//make the text background white
+id=color('grey');
+xgrid(id);
+//------------------------------------------------------------------
diff --git a/Working_Examples/3432/CH2/EX2.1.b/Ex2_1.sce b/Working_Examples/3432/CH2/EX2.1.b/Ex2_1.sce new file mode 100755 index 0000000..7889a68 --- /dev/null +++ b/Working_Examples/3432/CH2/EX2.1.b/Ex2_1.sce @@ -0,0 +1,30 @@ +//Example 2.1
+//(b) step response of Cruise control system
+
+xdel(winsid())//close all graphics Windows
+clear;
+clc;
+
+//------------------------------------------------------------------
+//Cruise control parameters
+m=1000;
+b=50;
+u=500;
+
+// Transfer function
+s=%s; // or
+s=poly(0,'s');
+sys=syslin('c',(1/m)/(s+b/m))
+
+//step response to u=500;
+t=0:0.5:100;
+v=csim('step',t,u*sys);
+plot2d(t,v,2)
+
+//Title, labels and grid to the figure
+exec .\fig_settings.sci; //custom script for setting figure properties
+title('Responses of car velocity to a step in u','fontsize',3)
+xlabel('Time t (sec.)','fontsize',2)
+ylabel('Amplitude','fontsize',2)
+
+//------------------------------------------------------------------
diff --git a/Working_Examples/3432/CH2/EX2.1.b/Ex2_1_f0.pdf b/Working_Examples/3432/CH2/EX2.1.b/Ex2_1_f0.pdf Binary files differnew file mode 100755 index 0000000..d687229 --- /dev/null +++ b/Working_Examples/3432/CH2/EX2.1.b/Ex2_1_f0.pdf diff --git a/Working_Examples/3432/CH2/EX2.5.b/DEPENDENCIES/fig_settings.sci b/Working_Examples/3432/CH2/EX2.5.b/DEPENDENCIES/fig_settings.sci new file mode 100755 index 0000000..5d5e7d4 --- /dev/null +++ b/Working_Examples/3432/CH2/EX2.5.b/DEPENDENCIES/fig_settings.sci @@ -0,0 +1,9 @@ +//------------------------------------------------------------------
+//figure handel settings
+f=get("current_figure"); //Current figure handle
+f.background=8; //make the figure window background white
+l=f.children(1);
+l.background=8 ;//make the text background white
+id=color('grey');
+xgrid(id);
+//------------------------------------------------------------------
diff --git a/Working_Examples/3432/CH2/EX2.5.b/Ex2_5.sce b/Working_Examples/3432/CH2/EX2.5.b/Ex2_5.sce new file mode 100755 index 0000000..b4b48e3 --- /dev/null +++ b/Working_Examples/3432/CH2/EX2.5.b/Ex2_5.sce @@ -0,0 +1,30 @@ +//Example 2.5
+//(b) step response of pendulum
+
+xdel(winsid())//close all graphics Windows
+clear;
+clc;
+
+//------------------------------------------------------------------
+//Pendulum parameters
+m=0.5;
+l=1;
+g=9.81;
+
+// Transfer function
+s=%s;
+sys=syslin('c',(1/(m*l^2))/(s^2+g/l));
+
+//step response to u=500;
+t=0:0.02:10;
+theta=csim('step',t,sys);
+plot(t,theta*57.3);
+
+//Title, labels and grid to the figure
+exec .\fig_settings.sci; // custom script to set figure properties
+title('Response of pendulum to a step input in the applied torque',...
+'fontsize',3);
+xlabel('Time t (sec.)','fontsize',2);
+ylabel('Pendulum angle (degree)','fontsize',2);
+
+//------------------------------------------------------------------
diff --git a/Working_Examples/3432/CH2/EX2.5.b/Ex2_5_f0.pdf b/Working_Examples/3432/CH2/EX2.5.b/Ex2_5_f0.pdf Binary files differnew file mode 100755 index 0000000..b396fb5 --- /dev/null +++ b/Working_Examples/3432/CH2/EX2.5.b/Ex2_5_f0.pdf diff --git a/Working_Examples/3432/CH3/EX3.10/Ex3_10.sce b/Working_Examples/3432/CH3/EX3.10/Ex3_10.sce new file mode 100755 index 0000000..e34f28a --- /dev/null +++ b/Working_Examples/3432/CH3/EX3.10/Ex3_10.sce @@ -0,0 +1,18 @@ +//Example 3.10
+
+//Computing final value for unstable system to show the incorrect
+// use of final value theorem.
+clear;
+clc;
+//------------------------------------------------------------------
+s=poly(0,'s');
+num=3;
+den=s*(s-2);
+Ys=syslin('c',num/den);
+
+//final value theorem, lim s-->0 in s*Y(s)
+Y_final=horner(s*Ys,0);
+disp(Y_final,"The final value of the output y is:");
+disp('The final value computed is incorrect as the system...
+ response is unbounded');
+//------------------------------------------------------------------
diff --git a/Working_Examples/3432/CH3/EX3.11/Ex3_11.sce b/Working_Examples/3432/CH3/EX3.11/Ex3_11.sce new file mode 100755 index 0000000..a033bf8 --- /dev/null +++ b/Working_Examples/3432/CH3/EX3.11/Ex3_11.sce @@ -0,0 +1,16 @@ +//Example 3.11
+//Computing DC gain of the system.
+
+clear;
+clc;
+//------------------------------------------------------------------
+//Transfer Function
+s=poly(0,'s');
+num=3*(s+2);
+den=(s^2+2*s+10);
+Ys=syslin('c',num/den);
+
+//The DC gain of the system Y(s) as s-->0 is
+DC_Gain=horner(Ys,0)
+disp(DC_Gain,"The DC gain of the system is:")
+//------------------------------------------------------------------
diff --git a/Working_Examples/3432/CH3/EX3.14/Ex3_14.sce b/Working_Examples/3432/CH3/EX3.14/Ex3_14.sce new file mode 100755 index 0000000..c1ab833 --- /dev/null +++ b/Working_Examples/3432/CH3/EX3.14/Ex3_14.sce @@ -0,0 +1,23 @@ +//Example 3.14
+//Partial fraction expansion for distinct real roots
+clear;
+clc;
+//------------------------------------------------------------------
+// Transfer function
+s=%s;
+num=2;
+p1=(s+1);
+p2=(s+2);
+p3=(s+4);
+sys=syslin('c',num/(p1*p2*p3))
+
+//Partial fraction expansion is: sys= r1/p1 + r2/p2 + r3/p3
+//residue calculation
+r1=residu(num,p1,(p2*p3))
+r2=residu(num,p2,(p1*p3))
+r3=residu(num,p3,(p1*p2))
+
+disp([r1 r2 r3]',"Residues of the poles p1, p2 and p3 are")
+disp([roots(p1), roots(p2), roots(p3)]',"Poles p1, p2 and p3 are at")
+disp('k=[]')
+//------------------------------------------------------------------
diff --git a/Working_Examples/3432/CH3/EX3.15/Ex3_15.sce b/Working_Examples/3432/CH3/EX3.15/Ex3_15.sce new file mode 100755 index 0000000..ad95139 --- /dev/null +++ b/Working_Examples/3432/CH3/EX3.15/Ex3_15.sce @@ -0,0 +1,23 @@ +//Example 3.15 Cruise Control Transfer Function.
+//Coefficients of numerator and denominator of the transfer function
+
+clear;
+clc;
+//------------------------------------------------------------------
+// Transfer function coefficients
+num=[0.001 0];
+den=[0 0.05 1];
+
+// Transfer function
+Ns=poly(num,'s','coeff');
+Ds=poly(den,'s','coeff');
+sys=syslin('c',Ns/Ds);
+
+//gain (K) pole (P) and zeros (Z) of the system
+temp=polfact(Ns);
+Z=roots(Ns); //locations of zeros
+P=roots(Ds); //locations of poles
+K=temp(1); //first entry is always gain
+disp( K,"Gain", P, "Poles",Z,"Zeros",)
+
+//------------------------------------------------------------------
diff --git a/Working_Examples/3432/CH3/EX3.16/DEPENDENCIES/fig_settings.sci b/Working_Examples/3432/CH3/EX3.16/DEPENDENCIES/fig_settings.sci new file mode 100755 index 0000000..5d5e7d4 --- /dev/null +++ b/Working_Examples/3432/CH3/EX3.16/DEPENDENCIES/fig_settings.sci @@ -0,0 +1,9 @@ +//------------------------------------------------------------------
+//figure handel settings
+f=get("current_figure"); //Current figure handle
+f.background=8; //make the figure window background white
+l=f.children(1);
+l.background=8 ;//make the text background white
+id=color('grey');
+xgrid(id);
+//------------------------------------------------------------------
diff --git a/Working_Examples/3432/CH3/EX3.16/Ex3_16.sce b/Working_Examples/3432/CH3/EX3.16/Ex3_16.sce new file mode 100755 index 0000000..84c0062 --- /dev/null +++ b/Working_Examples/3432/CH3/EX3.16/Ex3_16.sce @@ -0,0 +1,32 @@ +//Example 3.16 DC Motor Transfer Function.
+
+xdel(winsid())//close all graphics Windows
+clear;
+clc;
+//------------------------------------------------------------------
+//Coefficients of numerator and denominator of the transfer function
+numb=[100];
+denb=[0 101 10.1 1];
+
+// Transfer function
+Ns=poly(numb,'s','coeff');
+Ds=poly(denb,'s','coeff');
+sysb=syslin('c',Ns/Ds);
+
+//gain (K) pole (P) and zeros (Z) of the system
+temp=polfact(Ns);
+Z=roots(Ns); //locations of zeros
+P=roots(Ds); //locations of poles
+K=temp(1); //first entry is always gain
+disp( K,"Gain", P, "Poles",Z,"Zeros",)
+
+//Transient response of DC Motor (consider velocity as output)
+s=%s;
+t=linspace(0,5,501);
+y=csim('step',t,sysb*s)
+plot(t,y)
+exec .\fig_settings.sci; //custom script for setting figure properties
+title('Transient response of DC Motor','fontsize',3)
+xlabel('$Time\,\, t(sec.)$','fontsize',3)
+ylabel('$\omega\,\,(rad/sec)$','fontsize',3)
+//------------------------------------------------------------------
diff --git a/Working_Examples/3432/CH3/EX3.16/Ex3_16_f0.pdf b/Working_Examples/3432/CH3/EX3.16/Ex3_16_f0.pdf Binary files differnew file mode 100755 index 0000000..13ab471 --- /dev/null +++ b/Working_Examples/3432/CH3/EX3.16/Ex3_16_f0.pdf diff --git a/Working_Examples/3432/CH3/EX3.17/Ex3_17.sce b/Working_Examples/3432/CH3/EX3.17/Ex3_17.sce new file mode 100755 index 0000000..fe149dd --- /dev/null +++ b/Working_Examples/3432/CH3/EX3.17/Ex3_17.sce @@ -0,0 +1,21 @@ +//Example 3.17 Transformations
+
+clear;
+clc;
+//-------------------------------------------------------------------
+//Coefficients of numerator and denominator of the transfer function
+numG=[9 3];
+denG=[25 6 1];
+
+// Transfer function
+Ns=poly(numG,'s','coeff');
+Ds=poly(denG,'s','coeff');
+sysG=syslin('c',Ns/Ds);
+
+//gain (K) pole (P) and zeros (Z) of the system
+temp=polfact(Ns);
+Z=roots(Ns); //locations of zeros
+P=roots(Ds); //locations of poles
+K=temp(1); //first entry is always gain
+disp( K,"Gain", P, "Poles",Z,"Zeros",)
+//------------------------------------------------------------------
diff --git a/Working_Examples/3432/CH3/EX3.18/Ex3_18.sce b/Working_Examples/3432/CH3/EX3.18/Ex3_18.sce new file mode 100755 index 0000000..311eb6f --- /dev/null +++ b/Working_Examples/3432/CH3/EX3.18/Ex3_18.sce @@ -0,0 +1,71 @@ +//Example 3.18 Satellite Transfer Function
+
+xdel(winsid())//close all graphics Windows
+clear;
+clc;
+//------------------------------------------------------------------
+//(a)
+//Given
+d=1 //meters
+I=5000 //Kg-meter^2
+
+//Coefficients of numerator and denominator of the transfer function
+// of satellite
+numG=[d/I 0];
+denG=[0 0 1];
+
+// Transfer function
+Ns=poly(numG,'s','coeff');
+Ds=poly(denG,'s','coeff');
+sysG=syslin('c',Ns/Ds);
+t=0:0.01:10;
+[i j]=size(t);
+
+//------------------------------------------------------------------
+//(b)
+// Thrust input after 5 sec.
+u=zeros(1,j);
+w=find(t>=5 & t<=5+0.1);
+u(w)=25;
+plot(t,u);
+exec .\fig_settings.sci; //custom script for setting figure properties
+title("Transient response of the satellite...
+ (a) Thrust input",'fontsize',3);
+xlabel('Time t (sec.)','fontsize',2)
+ylabel('Fc','fontsize',2)
+
+//Transient response of the satellite to the thrust input as a pulse
+sysd=dscr(sysG,0.01); //sample data system model
+y=flts(u,sysd); //impulse response
+figure, plot(t,y*180/%pi);
+exec .\fig_settings.sci; //custom script for setting figure properties
+title("Transient response of the satellite(double-pulse)...
+ (b) satellite attitude",'fontsize',3);
+xlabel('Time t (sec.)','fontsize',2)
+ylabel('$\theta(deg)$','fontsize',2)
+//------------------------------------------------------------------
+// Thrust input double-pulse.
+u=zeros(1,j);
+w1=find(t>=5 & t<=5+0.1);
+u(w1)=25;
+w2=find(t>=6.1 & t<=6.1+0.1);
+u(w2)=-25;
+figure,
+plot(t,u);
+exec .\fig_settings.sci; //custom script for setting figure properties
+title("Transient response of the satellite (double-pulse)...
+ (a) Thrust input",'fontsize',3);
+xlabel('Time t (sec.)','fontsize',2)
+ylabel('Fc','fontsize',2)
+
+//Transient response of the satellite to the thrust input as a pulse
+sysd=dscr(sysG,0.01); //sample data system model
+y=flts(u,sysd); //impulse response
+figure, plot(t,y*180/%pi);
+exec .\fig_settings.sci; //custom script for setting figure properties
+title("Transient response of the satellite(double-pulse)...
+ (b) satellite attitude",'fontsize',3);
+xlabel('Time t (sec.)','fontsize',2)
+ylabel('$\theta(deg)$','fontsize',2)
+
+//------------------------------------------------------------------
diff --git a/Working_Examples/3432/CH3/EX3.18/Ex3_18_f1.pdf b/Working_Examples/3432/CH3/EX3.18/Ex3_18_f1.pdf Binary files differnew file mode 100755 index 0000000..b79b5d1 --- /dev/null +++ b/Working_Examples/3432/CH3/EX3.18/Ex3_18_f1.pdf diff --git a/Working_Examples/3432/CH3/EX3.18/Ex3_18_f3.pdf b/Working_Examples/3432/CH3/EX3.18/Ex3_18_f3.pdf Binary files differnew file mode 100755 index 0000000..ef8fa00 --- /dev/null +++ b/Working_Examples/3432/CH3/EX3.18/Ex3_18_f3.pdf diff --git a/Working_Examples/3432/CH3/EX3.21/Ex3_21.sce b/Working_Examples/3432/CH3/EX3.21/Ex3_21.sce new file mode 100755 index 0000000..57a2481 --- /dev/null +++ b/Working_Examples/3432/CH3/EX3.21/Ex3_21.sce @@ -0,0 +1,42 @@ +//Example 3.21
+//Series, Parallel and Feedback connections of TF blocks
+//to get effective TF.
+
+clear;
+clc;
+//------------------------------------------------------------------
+//Transfer function block G1
+num1=[2];
+den1=[1];
+Ns=poly(num1,'s','coeff');
+Ds=poly(den1,'s','coeff');
+sysG1=syslin('c',Ns/Ds);
+
+//Transfer function block G2
+num2=[4];
+den2=[0 1];
+Ns=poly(num2,'s','coeff');
+Ds=poly(den2,'s','coeff');
+sysG2=syslin('c',Ns/Ds);
+
+//Transfer function block G4
+num4=[1];
+den4=[0 1];
+Ns=poly(num4,'s','coeff');
+Ds=poly(den4,'s','coeff');
+sysG4=syslin('c',Ns/Ds);
+
+//Transfer function block G6
+num6=[1];
+den6=[1];
+Ns=poly(num6,'s','coeff');
+Ds=poly(den6,'s','coeff');
+sysG6=syslin('c',Ns/Ds);
+
+//Effective transfer function
+// (+) operator for paralle connection,
+// (*) operator for series connection
+// (/.)operator for feedback connection
+sysG=(sysG1 + sysG2) * sysG4 /. sysG6
+disp(sysG, "The effective transfer function is")
+//------------------------------------------------------------------
diff --git a/Working_Examples/3432/CH3/EX3.22/DEPENDENCIES/fig_settings.sci b/Working_Examples/3432/CH3/EX3.22/DEPENDENCIES/fig_settings.sci new file mode 100755 index 0000000..5d5e7d4 --- /dev/null +++ b/Working_Examples/3432/CH3/EX3.22/DEPENDENCIES/fig_settings.sci @@ -0,0 +1,9 @@ +//------------------------------------------------------------------
+//figure handel settings
+f=get("current_figure"); //Current figure handle
+f.background=8; //make the figure window background white
+l=f.children(1);
+l.background=8 ;//make the text background white
+id=color('grey');
+xgrid(id);
+//------------------------------------------------------------------
diff --git a/Working_Examples/3432/CH3/EX3.22/Ex3_22.sce b/Working_Examples/3432/CH3/EX3.22/Ex3_22.sce new file mode 100755 index 0000000..b49701f --- /dev/null +++ b/Working_Examples/3432/CH3/EX3.22/Ex3_22.sce @@ -0,0 +1,47 @@ +//Example 3.22 Response Versus Pole Locations, Real Roots
+
+xdel(winsid())//close all graphics Windows
+clear;
+clc;
+//------------------------------------------------------------------
+//Transfer function
+numH=[1 2];
+denH=[2 3 1];
+Ns=poly(numH,'s','coeff');
+Ds=poly(denH,'s','coeff');
+sysH=syslin('c',Ns/Ds);
+
+//Pole-zero locations
+//Partial fraction method to see the effect of sperated poles
+temp=polfact(Ds);
+p1s=temp(2);
+p2s=temp(3);
+
+//residues at poles
+r1=residu(Ns,p1s,p2s);
+r2=residu(Ns,p2s,p1s);
+
+//Note that - H1(s)+H2(s)=H(s)
+H1s=syslin('c',r1/p1s);
+H2s=syslin('c',r2/p2s);
+
+//impulse response of the H1(s), H2(s) and H(s)
+t=0:0.02:10;
+h1=csim('impuls',t,H1s);
+h2=csim('impuls',t,H2s);
+h=csim('impuls',t,sysH);
+figure,
+plot(t,h1,'r--',t,h2,'m-.', t, h, 'b')
+plot(t,h2,'m-.')
+plot(t,h)
+
+exec .\fig_settings.sci; //custom script for setting figure properties
+title(['impulse response of the system and subsystems with...
+ independent poles.';'(h1(t) is faster than h2(t))'],'fontsize',3)
+xlabel('Time t (sec.)','fontsize',2)
+ylabel('h(t), h1(t), h2(t)','fontsize',2)
+h=legend('h1(t) with pole at -2','h2(t) with pole at -1'...
+,'h(t)=h1(t)+h2(t)')
+h.legend_location = "in_upper_right"
+h.fill_mode='off'
+//------------------------------------------------------------------
diff --git a/Working_Examples/3432/CH3/EX3.22/Ex3_22_f0.pdf b/Working_Examples/3432/CH3/EX3.22/Ex3_22_f0.pdf Binary files differnew file mode 100755 index 0000000..52d43ff --- /dev/null +++ b/Working_Examples/3432/CH3/EX3.22/Ex3_22_f0.pdf diff --git a/Working_Examples/3432/CH3/EX3.23/DEPENDENCIES/fig_settings.sci b/Working_Examples/3432/CH3/EX3.23/DEPENDENCIES/fig_settings.sci new file mode 100755 index 0000000..5d5e7d4 --- /dev/null +++ b/Working_Examples/3432/CH3/EX3.23/DEPENDENCIES/fig_settings.sci @@ -0,0 +1,9 @@ +//------------------------------------------------------------------
+//figure handel settings
+f=get("current_figure"); //Current figure handle
+f.background=8; //make the figure window background white
+l=f.children(1);
+l.background=8 ;//make the text background white
+id=color('grey');
+xgrid(id);
+//------------------------------------------------------------------
diff --git a/Working_Examples/3432/CH3/EX3.23/Ex3_23.sce b/Working_Examples/3432/CH3/EX3.23/Ex3_23.sce new file mode 100755 index 0000000..613d47c --- /dev/null +++ b/Working_Examples/3432/CH3/EX3.23/Ex3_23.sce @@ -0,0 +1,49 @@ +//Example 3.23 Oscillatory Time Response
+
+xdel(winsid())//close all graphics Windows
+clear;
+clc;
+//------------------------------------------------------------------
+//Transfer function of second order underdamped system
+numH=[1 2];
+denH=[5 2 1];
+Ns=poly(numH,'s','coeff');
+Ds=poly(denH,'s','coeff');
+sysH=syslin('c',Ns/Ds);
+
+//damping factor (xi) and natural frequency (wn)
+[wn xi]=damp(sysH);
+wn=wn(1);
+xi=xi(1);
+sigma=xi*wn;
+wd=wn*sqrt(1-xi^2);
+
+//denominator in sigma-wn form H(s)=H1(s)+H2(s)
+s=%s;
+p=(s+sigma)^2+wd^2
+temp=polfact(Ns);
+k=temp(1),zr=temp(2);
+h1=(s+sigma)/p;
+h2=-((s+sigma)-temp(2))*wd/p;
+H1s=syslin('c',k*h1);
+H2s=syslin('c',k*h2/wd);
+
+// responses with exponential envelope
+Env=syslin('c',k/(s+sigma));
+t=0:0.02:10;
+//impulse response
+ht=csim('impuls',t,sysH);
+envt=csim('impuls',t,Env);
+envt_neg=csim('impuls',t,-Env);
+
+plot(t,ht)
+plot(t,envt,'r--')
+plot(t,envt_neg,'r--')
+exec .\fig_settings.sci; //custom script for setting figure properties
+title('Impulse response of the underdamped system','fontsize',3)
+xlabel('Time t (sec.)','fontsize',2)
+ylabel('h(t)','fontsize',2)
+xset("font",1,2)
+xstring(1,0.75,"$e^{-\sigma t}$",0,0)
+xstring(1,-0.85,"$-e^{-\sigma t}$",0,0)
+//------------------------------------------------------------------
diff --git a/Working_Examples/3432/CH3/EX3.23/Ex3_23_f0.pdf b/Working_Examples/3432/CH3/EX3.23/Ex3_23_f0.pdf Binary files differnew file mode 100755 index 0000000..a3886b8 --- /dev/null +++ b/Working_Examples/3432/CH3/EX3.23/Ex3_23_f0.pdf diff --git a/Working_Examples/3432/CH3/EX3.25/DEPENDENCIES/fig_settings.sci b/Working_Examples/3432/CH3/EX3.25/DEPENDENCIES/fig_settings.sci new file mode 100755 index 0000000..5d5e7d4 --- /dev/null +++ b/Working_Examples/3432/CH3/EX3.25/DEPENDENCIES/fig_settings.sci @@ -0,0 +1,9 @@ +//------------------------------------------------------------------
+//figure handel settings
+f=get("current_figure"); //Current figure handle
+f.background=8; //make the figure window background white
+l=f.children(1);
+l.background=8 ;//make the text background white
+id=color('grey');
+xgrid(id);
+//------------------------------------------------------------------
diff --git a/Working_Examples/3432/CH3/EX3.25/Ex3_25.sce b/Working_Examples/3432/CH3/EX3.25/Ex3_25.sce new file mode 100755 index 0000000..3377471 --- /dev/null +++ b/Working_Examples/3432/CH3/EX3.25/Ex3_25.sce @@ -0,0 +1,52 @@ +//Example 3.25 Aircraft Response
+xdel(winsid())//close all graphics Windows
+clear;
+clc;
+//------------------------------------------------------------------
+//(a)impulse response of aircraft
+
+//Transfer function of aircraft
+numG=[-6 1];
+denG=[0 13 4 1];
+Ns=30*poly(numG,'s','coeff');
+Ds=poly(denG,'s','coeff');
+u=-1 //impulsive elevator input of 1 degree
+sysG=syslin('c',u*Ns/Ds);
+
+//impulse response
+t=0:0.02:10;
+gt=csim('impuls',t,sysG);
+plot(t,gt)
+exec .\fig_settings.sci; //custom script for setting figure properties
+title('Response of an airplanes altitude to an impulsive elevator input','fontsize',3)
+xlabel('Time (sec.)','fontsize',2)
+ylabel('Altitude (ft)','fontsize',2)
+
+//final value theorem, lim s-->0 in s*G(s)
+s=%s;
+gt_final=horner(s*sysG,0)
+disp(gt_final,"The final value of the output altitude is:")
+//------------------------------------------------------------------
+//(b)response specifications
+
+//damping factor (xi) and natural frequency (wn)
+[wn xi]=damp(sysG);
+wn=wn(2);//natural frequency (wn)
+xi=xi(2);//damping factor
+disp(wn,xi,"Damping factor and natural frequency (rad)...
+ of the response are:")
+
+tr=1.8/wn; //rise time
+disp(tr,"Rise time (sec) of the response is:")
+
+sigma=xi*wn
+ts=4.6/sigma; //settling time
+disp(ts,"Settling time (sec) of the response is:")
+
+Mp=exp(-xi*%pi/sqrt(1-xi^2))
+wd=wn*sqrt(1-xi^2);
+tp=%pi/wd;
+disp(tp, Mp,"Overshoot and time of overshoot (sec)...
+ in the response are:")
+
+//------------------------------------------------------------------
diff --git a/Working_Examples/3432/CH3/EX3.25/Ex3_25_f0.pdf b/Working_Examples/3432/CH3/EX3.25/Ex3_25_f0.pdf Binary files differnew file mode 100755 index 0000000..0ea8ea8 --- /dev/null +++ b/Working_Examples/3432/CH3/EX3.25/Ex3_25_f0.pdf diff --git a/Working_Examples/3432/CH3/EX3.29/DEPENDENCIES/fig_settings.sci b/Working_Examples/3432/CH3/EX3.29/DEPENDENCIES/fig_settings.sci new file mode 100755 index 0000000..5d5e7d4 --- /dev/null +++ b/Working_Examples/3432/CH3/EX3.29/DEPENDENCIES/fig_settings.sci @@ -0,0 +1,9 @@ +//------------------------------------------------------------------
+//figure handel settings
+f=get("current_figure"); //Current figure handle
+f.background=8; //make the figure window background white
+l=f.children(1);
+l.background=8 ;//make the text background white
+id=color('grey');
+xgrid(id);
+//------------------------------------------------------------------
diff --git a/Working_Examples/3432/CH3/EX3.29/Ex3_29.sce b/Working_Examples/3432/CH3/EX3.29/Ex3_29.sce new file mode 100755 index 0000000..2f18710 --- /dev/null +++ b/Working_Examples/3432/CH3/EX3.29/Ex3_29.sce @@ -0,0 +1,40 @@ +//Example 3.29
+//Stability versus parameter range
+
+xdel(winsid())//close all graphics Windows
+clear;
+clc;
+//------------------------------------------------------------------
+//Stability versus parameter range
+
+numT=[-1];//zeros
+denT=[1 0 -6];//poles
+Ns=poly(numT,'s','roots');
+Ds=poly(denT,'s','roots');
+Gfs=syslin('c',Ns/Ds); //forward transfer function block
+
+num=[1];
+den=[1 0];
+Ns=poly(num,'s','coeff');
+Ds=poly(den,'s','coeff');
+Hs=syslin('c',Ns/Ds); //feedback transfer function block
+
+//check the step responses with the forward path gain K=7.5, 13, 25
+t=0:0.02:12;
+i=1;
+
+for K=[7.5, 13, 25]
+ sysT= (K * Gfs) /. Hs;
+ yt(i,:)=csim('step',t,sysT);
+ i=i+1;
+end
+//Step response
+plot(t',yt')
+exec .\fig_settings.sci; //custom script for setting figure properties
+title("Transient response for different values of K",'fontsize',3);
+xlabel('Time t (sec.)','fontsize',2)
+ylabel('y(t)','fontsize',2)
+h=legend('K=7.5','K=13', 'K=25')
+h.legend_location = "in_upper_right"
+h.fill_mode='off'
+//------------------------------------------------------------------
diff --git a/Working_Examples/3432/CH3/EX3.29/Ex3_29_f0.pdf b/Working_Examples/3432/CH3/EX3.29/Ex3_29_f0.pdf Binary files differnew file mode 100755 index 0000000..1dcf459 --- /dev/null +++ b/Working_Examples/3432/CH3/EX3.29/Ex3_29_f0.pdf diff --git a/Working_Examples/3432/CH3/EX3.30/DEPENDENCIES/fig_settings.sci b/Working_Examples/3432/CH3/EX3.30/DEPENDENCIES/fig_settings.sci new file mode 100755 index 0000000..5d5e7d4 --- /dev/null +++ b/Working_Examples/3432/CH3/EX3.30/DEPENDENCIES/fig_settings.sci @@ -0,0 +1,9 @@ +//------------------------------------------------------------------
+//figure handel settings
+f=get("current_figure"); //Current figure handle
+f.background=8; //make the figure window background white
+l=f.children(1);
+l.background=8 ;//make the text background white
+id=color('grey');
+xgrid(id);
+//------------------------------------------------------------------
diff --git a/Working_Examples/3432/CH3/EX3.30/Ex3_30.sce b/Working_Examples/3432/CH3/EX3.30/Ex3_30.sce new file mode 100755 index 0000000..5a06bc3 --- /dev/null +++ b/Working_Examples/3432/CH3/EX3.30/Ex3_30.sce @@ -0,0 +1,46 @@ +//Example 3.30
+//Stability versus two parameter ranges
+xdel(winsid())//close all graphics Windows
+clear;
+clc;
+//------------------------------------------------------------------
+//Stability versus parameter ranges
+
+num=[1 0];//zeros
+den=[-1 -2];//poles
+Ns=poly(num,'s','coeff');
+Ds=poly(den,'s','roots');
+Gfs=syslin('c',Ns/Ds); //forward transfer function block
+
+num=[1];
+den=[1 0];
+Ns=poly(num,'s','coeff');
+Ds=poly(den,'s','coeff');
+Hs=syslin('c',Ns/Ds); //feedback transfer function block
+
+//check the step responses with the forward, path gain K=7.5, 13, 25
+t=0:0.02:12;
+i=1;
+num=[5 10;1 1;0 1];
+
+for i=1:3
+ den=[0 1];
+ Ns=poly(num(i,:),'s','coeff');
+ Ds=poly(den,'s','coeff');
+ Gcs=syslin('c',Ns/Ds); //Controller transfer function block
+ sysT= Gcs * Gfs /. Hs;
+ yt(i,:)=csim('step',t,sysT);
+ i=i+1;
+end
+
+//Transient response for different values of K and Ki
+plot(t',yt')
+exec .\fig_settings.sci; //custom script for setting figure properties
+title("Transient response for the system",'fontsize',3);
+xlabel('Time t (sec.)','fontsize',2)
+ylabel('y(t)','fontsize',2)
+xset("font",1,1)
+xstring(1.4,1.05,'$K=10,K_I=5$');
+xstring(3.3,0.8,'$K=1,K_I=1$');
+xstring(5.5,0.35,'$K=1,K_I=0$')
+//------------------------------------------------------------------
diff --git a/Working_Examples/3432/CH3/EX3.30/Ex3_30_f0.pdf b/Working_Examples/3432/CH3/EX3.30/Ex3_30_f0.pdf Binary files differnew file mode 100755 index 0000000..f056d31 --- /dev/null +++ b/Working_Examples/3432/CH3/EX3.30/Ex3_30_f0.pdf diff --git a/Working_Examples/3432/CH3/EX3.4/DEPENDENCIES/fig_settings.sci b/Working_Examples/3432/CH3/EX3.4/DEPENDENCIES/fig_settings.sci new file mode 100755 index 0000000..5d5e7d4 --- /dev/null +++ b/Working_Examples/3432/CH3/EX3.4/DEPENDENCIES/fig_settings.sci @@ -0,0 +1,9 @@ +//------------------------------------------------------------------
+//figure handel settings
+f=get("current_figure"); //Current figure handle
+f.background=8; //make the figure window background white
+l=f.children(1);
+l.background=8 ;//make the text background white
+id=color('grey');
+xgrid(id);
+//------------------------------------------------------------------
diff --git a/Working_Examples/3432/CH3/EX3.4/Ex3_4.sce b/Working_Examples/3432/CH3/EX3.4/Ex3_4.sce new file mode 100755 index 0000000..dacf05a --- /dev/null +++ b/Working_Examples/3432/CH3/EX3.4/Ex3_4.sce @@ -0,0 +1,65 @@ +//Example 3.4
+//Frequency response
+
+xdel(winsid())//close all graphics Windows
+clear;
+clc;
+//------------------------------------------------------------------
+//(a) Frequency response of 1/(s+k)
+k=1;
+fmin=1e-2;
+fmax=1e2;
+// Transfer function
+s=poly(0,'s');
+sysH=syslin('c',1/(s+k))
+
+//Frequency response for k=1
+//Note that - magnitude plot semilog plot unlike log-log plot in the book.
+bode(sysH,fmin,fmax)
+title('Frequency response for k=1','fontsize',3)
+
+//------------------------------------------------------------------
+//(b) Response to u=sin(10*t);
+t=0:0.02:10;
+u=sin(10*t);
+y=csim(u,t,sysH);
+figure, plot(t,y)
+
+//Title, labels and grid to the figure
+exec .\fig_settings.sci; // custom script for setting figure properties
+title('Complete transient response','fontsize',3)
+xlabel('Time (sec.)','fontsize',2)
+ylabel('Output','fontsize',2)
+
+//phase lag
+figure, plot(t,y)
+plot(t,u,'r')
+zoom_rect([9 -1 10 1])
+exec .\fig_settings.sci; // custom script for setting figure properties
+title('Phase lag between output and input','fontsize',3)
+xlabel('Time (sec.)','fontsize',2)
+ylabel('Output, Input','fontsize',2)
+h=legend('y(t)','u(t)')
+h.legend_location = "in_upper_right"
+h.fill_mode='off'
+
+// time lag
+w=find(t>=9.4 & t<=10);
+T=t(w);
+Y=y(w);
+U=u(w);
+wu=find(U==max(U))
+wy=find(Y==max(Y))
+
+//Responses
+plot2d3(T(wy),Y(wy))
+plot2d3(T(wu),U(wu))
+delta_t=T(wu)-T(wy); //time lag sec.
+xstring(9.64,-0.1,"$\delta t$",0,0)
+xarrows([9.58;9.72], [0;0], 0.7, 1)
+xarrows([9.72;9.58], [0;0], 0.7, 1)
+t=get("hdl")
+disp(abs(delta_t), "Time lag of output in sec. is")
+disp(abs(delta_t)*10, "Phase lag of output in radians is")
+
+//------------------------------------------------------------------
diff --git a/Working_Examples/3432/CH3/EX3.4/Ex3_4_f0.pdf b/Working_Examples/3432/CH3/EX3.4/Ex3_4_f0.pdf Binary files differnew file mode 100755 index 0000000..8910b81 --- /dev/null +++ b/Working_Examples/3432/CH3/EX3.4/Ex3_4_f0.pdf diff --git a/Working_Examples/3432/CH3/EX3.4/Ex3_4_f1.pdf b/Working_Examples/3432/CH3/EX3.4/Ex3_4_f1.pdf Binary files differnew file mode 100755 index 0000000..1a5b20a --- /dev/null +++ b/Working_Examples/3432/CH3/EX3.4/Ex3_4_f1.pdf diff --git a/Working_Examples/3432/CH3/EX3.8/Ex3_8.sce b/Working_Examples/3432/CH3/EX3.8/Ex3_8.sce new file mode 100755 index 0000000..d0fe556 --- /dev/null +++ b/Working_Examples/3432/CH3/EX3.8/Ex3_8.sce @@ -0,0 +1,26 @@ +//Example 3.8
+//Partial fraction expansion for distinct real roots.
+
+clear;
+clc;
+//------------------------------------------------------------------
+//Partial fraction expansion for distinct real roots
+// Transfer function
+s=%s;
+num=(s+2)*(s+4)
+p1=s;
+p2=(s+1);
+p3=(s+3);
+sys=syslin('c',num/(p1*p2*p3))
+//------------------------------------------------------------------
+//Partial fraction expansion is: sys= r1/p1 + r2/p2 + r3/p3
+//residue calculation
+r1=residu(num,p1,(p2*p3))
+r2=residu(num,p2,(p1*p3))
+r3=residu(num,p3,(p1*p2))
+
+disp([r1 r2 r3]',"Residues of the poles p1, p2 and p3 are")
+disp([roots(p1), roots(p2), roots(p3)]',"Poles p1, p2 and p3 are at")
+disp('k=[]')
+
+//------------------------------------------------------------------
diff --git a/Working_Examples/3432/CH3/EX3.9/Ex3_9.sce b/Working_Examples/3432/CH3/EX3.9/Ex3_9.sce new file mode 100755 index 0000000..b061c05 --- /dev/null +++ b/Working_Examples/3432/CH3/EX3.9/Ex3_9.sce @@ -0,0 +1,22 @@ +//Example 3.9
+//Computing final value (use of final value theorem).
+
+clear;
+clc;
+
+//------------------------------------------------------------------
+
+//Computing final value (use of final value theorem)
+// Output of the system
+s=poly(0,'s');
+num=3*(s+2);
+den=s*(s^2+2*s+10);
+Ys=syslin('c',num/den);
+
+
+//final value theorem, lim s-->0 in s*Y(s)
+
+Y_final=horner(s*Ys,0)
+disp(Y_final,"The final value of the output y is:")
+
+//------------------------------------------------------------------
diff --git a/Working_Examples/3432/CH4/EX4.6/Ex4_6.sce b/Working_Examples/3432/CH4/EX4.6/Ex4_6.sce new file mode 100755 index 0000000..e621d8a --- /dev/null +++ b/Working_Examples/3432/CH4/EX4.6/Ex4_6.sce @@ -0,0 +1,97 @@ +//Example 4.6
+//PID Control of DC Motor Speed.
+
+//------------------------------------------------------------------
+//NOTE THAT--
+
+//The model as given in matlab program for this example in the book is
+
+//num=Ra*s + La*s^2 ;
+//den=Ke*ki + (Ra*Ke*Ke+Ke*kp)*s + (Ra*b+Ke*Ke+Ke*kd)*s^2 + Jm*La*s^3;
+
+//this does not match to the model of DC motor given on page 43.
+//Also, if we assume this model, disturbance response given
+//in figure 4.13 (a)
+//is different from expected.
+//For instance, with P control, output should asymptotically go to 0
+//for disturbance step input, because numerator is s(Ra + La*s)
+//and system is type 0 (no pole at origin).
+//i.e. y(inf)=lim s->0 s*Y(s)= s*[s(Ra + La*s)/den]*1/s=0;
+
+//In following code, we have considered correct model of DC motor as
+//given on page 43. Note that, this model must have been used
+//by authors of the book for
+//step reference tracking as it is correctly shown in figure 4.13 (b)
+
+//------------------------------------------------------------------
+xdel(winsid())//close all graphics Windows
+clear;
+clc;
+
+//------------------------------------------------------------------
+// System parameters
+Jm=0.0113; // N-m-s^2/rad
+b=0.028; // N-m-s/rad
+La=0.1; // henry
+Ra=0.45; // ohms
+Kt=0.067 // n-m/amp
+Ke=0.067; // V-sec/amp
+
+// Controller parameters
+kp=3;
+ki=15; // sec^-1
+kd=0.3; // sec
+
+// DC Motor Transfer function as given on page 43 of book (edition 5)
+//G=Kt/[Jm*La s^2 + (Jm*Ra + La*b)s +(Ra*b +Kt*Ke)]
+s=%s;
+num=[Kt];
+den=[(Ra*b +Kt*Ke) (Jm*Ra + La*b) Jm*La];
+Ns=poly(num,'s','coeff');
+Ds=poly(den,'s','coeff');
+G=syslin('c',Ns/Ds)
+
+//PID controller, Gc=(kd s^2 + kp s + ki)/s
+num=[ki kp kd;ki kp 0;0 kp 0]; //numerator parameters of controller)
+ //(row wise for PID, PI and P)
+den=[0 1]; //denominator parameters of controller
+Ds=poly(den,'s','coeff'); //denominator polynomial of controller
+t=0:0.005:10; // Simulation time
+//------------------------------------------------------------------
+//Step disturbance response with P, PI and PID controller.
+
+for i=1:3
+Ns=poly(num(i,:),'s','coeff');//numerator polynomial of controller
+sysG=syslin('c',Ns/Ds);
+sysD=G/. sysG;
+v(i,:)=csim('step',t,sysD);
+end
+plot(t',v');
+//Title, labels and grid to the figure
+exec .\fig_settings.sci; //custom script to set the figure properties
+title('Responses of P,PI and PID control to step disturbance...
+ input','fontsize',3)
+xlabel('Time t (sec.)','fontsize',2)
+ylabel('Amplitude','fontsize',2)
+hl=legend(['PID','PI','P']);
+
+//------------------------------------------------------------------
+//Reference step response
+
+figure
+for i=1:3
+Ns=poly(num(i,:),'s','coeff');
+Gc=syslin('c',Ns/Ds);
+// Step reference response with P, PI and PID controller.
+sysR=G*Gc/(1+G*Gc);
+v(i,:)=csim('step',t,sysR);
+end
+plot(t',v')
+//Title, labels and grid to the figure
+exec .\fig_settings.sci; //custom script to set the figure properties
+title('Responses of PID control to step reference input','fontsize',3)
+xlabel('Time t (sec.)','fontsize',2)
+ylabel('Amplitude','fontsize',2)
+hl=legend(['PID','PI','P']);
+
+//------------------------------------------------------------------
diff --git a/Working_Examples/3432/CH4/EX4.6/Ex4_6_f0.pdf b/Working_Examples/3432/CH4/EX4.6/Ex4_6_f0.pdf Binary files differnew file mode 100755 index 0000000..9a65a24 --- /dev/null +++ b/Working_Examples/3432/CH4/EX4.6/Ex4_6_f0.pdf diff --git a/Working_Examples/3432/CH4/EX4.6/Ex4_6_f1.pdf b/Working_Examples/3432/CH4/EX4.6/Ex4_6_f1.pdf Binary files differnew file mode 100755 index 0000000..4aff13b --- /dev/null +++ b/Working_Examples/3432/CH4/EX4.6/Ex4_6_f1.pdf diff --git a/Working_Examples/3432/CH4/EX4.7/DEPENDENCIES/fig_settings.sci b/Working_Examples/3432/CH4/EX4.7/DEPENDENCIES/fig_settings.sci new file mode 100755 index 0000000..5d5e7d4 --- /dev/null +++ b/Working_Examples/3432/CH4/EX4.7/DEPENDENCIES/fig_settings.sci @@ -0,0 +1,9 @@ +//------------------------------------------------------------------
+//figure handel settings
+f=get("current_figure"); //Current figure handle
+f.background=8; //make the figure window background white
+l=f.children(1);
+l.background=8 ;//make the text background white
+id=color('grey');
+xgrid(id);
+//------------------------------------------------------------------
diff --git a/Working_Examples/3432/CH4/EX4.7/Ex4_7.sce b/Working_Examples/3432/CH4/EX4.7/Ex4_7.sce new file mode 100755 index 0000000..923a951 --- /dev/null +++ b/Working_Examples/3432/CH4/EX4.7/Ex4_7.sce @@ -0,0 +1,26 @@ +//Example 4.7
+//Discrete Equivalent.
+//------------------------------------------------------------------
+xdel(winsid())//close all graphics Windows
+clear;
+clc;
+
+// Transfer function
+s=%s;
+num=[1 11];
+den=[1 3]
+Us=poly(num,'s','coeff');
+Es=poly(den,'s','coeff');
+Ds=syslin('c',Us/Es);
+sysc=tf2ss(Ds)
+
+//Discretize the system using sampling time Ts=1 and Bilinear Transform
+Ts=1;
+sysd=cls2dls(sysc,Ts);
+
+//Pulse transfer function
+Dd=ss2tf(sysd)
+disp(Dd,"Dd=")
+disp("Note that, multiply numerator and denomintor each by 7...
+ will give the result as in book.")
+//------------------------------------------------------------------
diff --git a/Working_Examples/3432/CH4/EX4.8/DEPENDENCIES/fig_settings.sci b/Working_Examples/3432/CH4/EX4.8/DEPENDENCIES/fig_settings.sci new file mode 100755 index 0000000..5d5e7d4 --- /dev/null +++ b/Working_Examples/3432/CH4/EX4.8/DEPENDENCIES/fig_settings.sci @@ -0,0 +1,9 @@ +//------------------------------------------------------------------
+//figure handel settings
+f=get("current_figure"); //Current figure handle
+f.background=8; //make the figure window background white
+l=f.children(1);
+l.background=8 ;//make the text background white
+id=color('grey');
+xgrid(id);
+//------------------------------------------------------------------
diff --git a/Working_Examples/3432/CH4/EX4.8/Ex4_8.sce b/Working_Examples/3432/CH4/EX4.8/Ex4_8.sce new file mode 100755 index 0000000..5f5e371 --- /dev/null +++ b/Working_Examples/3432/CH4/EX4.8/Ex4_8.sce @@ -0,0 +1,150 @@ +//Example 4.8 +//Equivalent discrete controller for DC motor speed control. +//------------------------------------------------------------------ +//NOTE THAT-- The system response (continuous) to sampled control +//input depends on +//the sampling time set for continuous signal in SIMULATION. +//In this example we consider sampling period of 0.009 sec +//to represent continuous time signal. +//------------------------------------------------------------------ + +xdel(winsid())//close all graphics Windows +clear; +clc; +//------------------------------------------------------------------ +// Continuous time system and controller +// System transfer function +s=%s; +num=[45 0]; +den=[45 14 1] +Nms=poly(num,'s','coeff'); +Dns=poly(den,'s','coeff'); +Gp=syslin('c',Nms/Dns); //system transfer function + +// Controller + +numDa=[6 1]; +denDa=[0 1] +Nms=poly(numDa,'s','coeff'); +Dns=poly(denDa,'s','coeff'); +sysD=syslin('c',1.4*Nms/Dns); //controller transfer function + +//Closed loop responses + +num=[1 0]; +den=[1 0]; +Nms=poly(num,'s','coeff'); +Dns=poly(den,'s','coeff'); +H=syslin('c',Nms/Dns) + +sysDa=Gp*sysD/.H; + +//step response and control input +t=0:0.009:5; +yt=csim('step',t,sysDa); //step response +figure(0) +plot2d(t,yt,1) +Gu=sysD/(1+Gp*sysD); +ut=csim('step',t,Gu); //control input +figure(1) +plot2d(t,ut,1) +//------------------------------------------------------------------ + +sys=tf2ss(Gp); //state space model of the system +con=tf2ss(sysD); //controller state space model + +// discrete-time time system and controller + +//Discretize the system and control with sampling time Ts=0.07 +// using Bilinear Transform +Ts=0.07; +sysDd=cls2dls(sys,Ts); // discrete-time system state space model +conDd=cls2dls(con,Ts); // discrete-time controller state space model + +//Pulse transfer function of system +Gpz=ss2tf(sysDd); +//Pulse transfer function of controller +Gcz=ss2tf(conDd); +//Closed loop response +Gz=Gpz*Gcz/(1+Gpz*Gcz) +//Control input pulse transfer function +Guz=Gcz/(1+Gpz*Gcz) +T=0:Ts:5; +r=ones(1,length(T)); +yd=flts(r,Gz);............//Discrete respnse to discrete input +ud=flts(r,Guz); //Discrete Control input +//continuous response for digital input +t=0:0.009:5; +k=0; + +for i=1:length(yd) + for j=1:8 + if (k+j)>length(t) then + break + else + YD(1,k+j)=yd(i); + end + end + k=k+j; +end + +yt=csim(1-YD,t,Gp*sysD); +scf(0) +plot2d(t,yt,5); +scf(1) +plot2d2(T,ud,5); +//------------------------------------------------------------------ +//Discretize the system and control with sampling time Ts=0.035 +// using Bilinear Transform +Ts=0.035; +sysDd=cls2dls(sys,Ts); // discrete-time system state space model +conDd=cls2dls(con,Ts); // discrete-time controller state space model + +Gpz=ss2tf(sysDd); //Pulse transfer function of system +Gcz=ss2tf(conDd); //Pulse transfer function of controller + +//Closed loop response +Gz=Gpz*Gcz/(1+Gpz*Gcz) +//Control input pulse transfer function +Guz=Gcz/(1+Gpz*Gcz) +T=0:Ts:5; +r=ones(1,length(T)); +yd=flts(r,Gz);............//Discrete respnse to discrete input +ud=flts(r,Guz); //Discrete Control input +t=0:0.009:5; +k=0; + +for i=1:length(yd) + for j=1:4 + if (k+j)>length(t) then + break + else + YD(1,k+j)=yd(i); + end + end + k=k+j; +end + +yt=csim(1-YD,t,Gp*sysD); +scf(0) +plot2d(t,yt,2); +scf(1) +plot2d2(T,ud,2); + +scf(0) +//Title, labels and grid to the figure +exec .\fig_settings.sci; //custom script to set the figure properties +title('Comparision plots of Speed-control system with continuous... + and discrete controllers','fontsize',3) +xlabel('Time t (sec.)','fontsize',2) +hl=legend(['Continuous time','Discrete-time, Ts=0.07 s'... +,'Discrete-time, Ts=0.035 s'],4); +scf(1) +//Title, labels and grid to the figure +exec .\fig_settings.sci; //custom script to set the figure properties +title('Comparision plots of Speed-control system with continuous... + and discrete controllers','fontsize',3) +xlabel('Time t (sec.)','fontsize',2) +hl=legend(['Continuous time','Discrete-time, Ts=0.07 s',... +'Discrete-time, Ts=0.035 s']); +//------------------------------------------------------------------ diff --git a/Working_Examples/3432/CH4/EX4.8/Ex4_8_f0.pdf b/Working_Examples/3432/CH4/EX4.8/Ex4_8_f0.pdf Binary files differnew file mode 100755 index 0000000..dbe4cf6 --- /dev/null +++ b/Working_Examples/3432/CH4/EX4.8/Ex4_8_f0.pdf diff --git a/Working_Examples/3432/CH4/EX4.8/Ex4_8_f1.pdf b/Working_Examples/3432/CH4/EX4.8/Ex4_8_f1.pdf Binary files differnew file mode 100755 index 0000000..63a7f87 --- /dev/null +++ b/Working_Examples/3432/CH4/EX4.8/Ex4_8_f1.pdf diff --git a/Working_Examples/3432/CH5/EX5.1/DEPENDENCIES/fig_settings.sci b/Working_Examples/3432/CH5/EX5.1/DEPENDENCIES/fig_settings.sci new file mode 100755 index 0000000..5d5e7d4 --- /dev/null +++ b/Working_Examples/3432/CH5/EX5.1/DEPENDENCIES/fig_settings.sci @@ -0,0 +1,9 @@ +//------------------------------------------------------------------
+//figure handel settings
+f=get("current_figure"); //Current figure handle
+f.background=8; //make the figure window background white
+l=f.children(1);
+l.background=8 ;//make the text background white
+id=color('grey');
+xgrid(id);
+//------------------------------------------------------------------
diff --git a/Working_Examples/3432/CH5/EX5.1/Ex5_1.sce b/Working_Examples/3432/CH5/EX5.1/Ex5_1.sce new file mode 100755 index 0000000..ae71ca2 --- /dev/null +++ b/Working_Examples/3432/CH5/EX5.1/Ex5_1.sce @@ -0,0 +1,26 @@ +//Example 5.1
+//Root locus of a Motor Position Control.
+
+xdel(winsid())//close all graphics Windows
+clear;
+clc;
+
+//------------------------------------------------------------------
+
+//System transfer function and its root locus
+
+s=poly(0,'s');
+Ls=1/(s*(s+1));
+
+//Title, labels and grid to the figure
+exec .\fig_settings.sci; //custom script for setting figure properties
+evans(Ls)
+title(['Root locus for', '$L(s)=1/[s(s+1)]$'],'fontsize',3)
+zoom_rect([-2 -1.5 2 1.5])
+sgrid([0.5],1,5)
+xset("font",1,1.5)
+xstring(-1.2,1.1,'$\theta=sin^{-1} \xi$",0,0)
+h=legend('');
+h.visible = "off"
+
+//------------------------------------------------------------------
diff --git a/Working_Examples/3432/CH5/EX5.1/Ex5_1_f0.pdf b/Working_Examples/3432/CH5/EX5.1/Ex5_1_f0.pdf Binary files differnew file mode 100755 index 0000000..0ff03c9 --- /dev/null +++ b/Working_Examples/3432/CH5/EX5.1/Ex5_1_f0.pdf diff --git a/Working_Examples/3432/CH5/EX5.10/DEPENDENCIES/fig_settings.sci b/Working_Examples/3432/CH5/EX5.10/DEPENDENCIES/fig_settings.sci new file mode 100755 index 0000000..5d5e7d4 --- /dev/null +++ b/Working_Examples/3432/CH5/EX5.10/DEPENDENCIES/fig_settings.sci @@ -0,0 +1,9 @@ +//------------------------------------------------------------------
+//figure handel settings
+f=get("current_figure"); //Current figure handle
+f.background=8; //make the figure window background white
+l=f.children(1);
+l.background=8 ;//make the text background white
+id=color('grey');
+xgrid(id);
+//------------------------------------------------------------------
diff --git a/Working_Examples/3432/CH5/EX5.10/Ex5_10.sce b/Working_Examples/3432/CH5/EX5.10/Ex5_10.sce new file mode 100755 index 0000000..ed860c1 --- /dev/null +++ b/Working_Examples/3432/CH5/EX5.10/Ex5_10.sce @@ -0,0 +1,56 @@ +//Example 5.10
+//Design using Lead compensator.
+
+xdel(winsid())//close all graphics Windows
+clear;
+clc;
+//------------------------------------------------------------------
+//System transfer function and its root locus
+
+s=poly(0,'s');
+
+NumG=1;
+DenG=s*(s+1);
+NumD=(s+2);
+DenD=(s+10);
+
+G=NumG/DenG;
+D=NumD/DenD;
+
+L=G*D; //open loop transfer function
+
+figure(0)
+evans(L)
+sgrid(0.5,7,6);
+
+xstring(-2,4,"Damping=0.5",0,0)
+xstring(-7,4,"w=7",0,0)
+//Title, labels and grid to the figure
+exec .\fig_settings.sci; // custom script for setting figure properties
+title('Root locus for lead design','fontsize',3)
+zoom_rect([-14 -8 4 8])
+h=legend('');
+h.visible = "off"
+//------------------------------------------------------------------
+// Unit step response
+//closed loop system
+K=70;
+sysc=K*L/(1+K*L);
+sysc=syslin('c',sysc);
+t=linspace(0,10,1000);
+y=csim('step',t,sysc);
+figure(1)
+plot(t,y);
+title('Step response for the system with lead compensator','fontsize',3)
+xlabel('Time (sec)','fontsize',2)
+ylabel('Amplitude','fontsize',2)
+set(gca(),"grid",[0.3 0.3])
+zoom_rect([0 0 1.8 1.4])
+exec .\fig_settings.sci;
+
+scf(0)
+pl=roots(DenG*DenD+K*NumG*NumD) //closed loop poles at K=70;
+plot(real(pl),imag(pl),'ro') //closed loop pole-locations at K=70;
+xstring(-5.8,6,"K=70",0,0)
+//------------------------------------------------------------------
+
diff --git a/Working_Examples/3432/CH5/EX5.10/Ex5_10_f0.pdf b/Working_Examples/3432/CH5/EX5.10/Ex5_10_f0.pdf Binary files differnew file mode 100755 index 0000000..35fbc64 --- /dev/null +++ b/Working_Examples/3432/CH5/EX5.10/Ex5_10_f0.pdf diff --git a/Working_Examples/3432/CH5/EX5.10/Ex5_10_f1.pdf b/Working_Examples/3432/CH5/EX5.10/Ex5_10_f1.pdf Binary files differnew file mode 100755 index 0000000..8ce5551 --- /dev/null +++ b/Working_Examples/3432/CH5/EX5.10/Ex5_10_f1.pdf diff --git a/Working_Examples/3432/CH5/EX5.11/DEPENDENCIES/fig_settings.sci b/Working_Examples/3432/CH5/EX5.11/DEPENDENCIES/fig_settings.sci new file mode 100755 index 0000000..5d5e7d4 --- /dev/null +++ b/Working_Examples/3432/CH5/EX5.11/DEPENDENCIES/fig_settings.sci @@ -0,0 +1,9 @@ +//------------------------------------------------------------------
+//figure handel settings
+f=get("current_figure"); //Current figure handle
+f.background=8; //make the figure window background white
+l=f.children(1);
+l.background=8 ;//make the text background white
+id=color('grey');
+xgrid(id);
+//------------------------------------------------------------------
diff --git a/Working_Examples/3432/CH5/EX5.11/Ex5_11.sce b/Working_Examples/3432/CH5/EX5.11/Ex5_11.sce new file mode 100755 index 0000000..ca9925b --- /dev/null +++ b/Working_Examples/3432/CH5/EX5.11/Ex5_11.sce @@ -0,0 +1,78 @@ +//Example 5.11
+//A second Lead compensation Design.
+
+xdel(winsid())//close all graphics Windows
+clear;
+clc;
+//------------------------------------------------------------------
+//System transfer function and its root locus
+
+s=poly(0,'s');
+
+NumG=1;
+DenG=s*(s+1);
+NumD=(s+5.4);
+DenD=(s+20);
+
+Gs=NumG/DenG;
+Ds=NumD/DenD;
+
+Ls=Gs*Ds; //open loop transfer function
+
+zr=roots(NumD*NumG); //open loop system zeros
+pl=roots(DenD*DenG); //open loop system poles
+pd=-3.5+3.5*sqrt(3)*%i; //desired pole
+
+//Construction for placing a specific point on the root locus.
+figure(0)
+plzr(Ls)
+plot(real(pd),imag(pd),'ro')
+xarrows([real(pl(1));real(pd)],[imag(pl(1));imag(pd)],0,2)
+xarrows([real(pl(2));real(pd)],[imag(pl(2));imag(pd)],0,2)
+xarrows([real(pl(3));real(pd)],[imag(pl(3));imag(pd)],0,2)
+xarrows([real(zr);real(pd)],[imag(zr);imag(pd)],0,6)
+xarrows([real(zr);-3],[0;0],0,6)
+xarc(-6.4,1,2,2,0,72.6*64)
+xset('font size',1.5);
+xstring(-4.7,0.5,"$\psi$")
+exec .\fig_settings.sci; //custom script for setting figure properties
+title('Construction for placing a specific point on the root locus',...
+'fontsize',3)
+h=legend('');
+h.visible = "off"
+//------------------------------------------------------------------
+//Root locus of system transfer function with controller
+figure(1)
+evans(Ls)
+sgrid(0.5,7,6)
+//Title, labels and grid to the figure
+exec .\fig_settings.sci; //custom script for setting figure properties
+title(['Root locus for','$ L(s)=\frac {s+5.4}{s(s+1)(s+20)}$'],...
+'fontsize',3)
+zoom_rect([-20 -8 5 8])
+h=legend('');
+h.visible = "off"
+//------------------------------------------------------------------
+// Unit step response
+//closed loop system
+
+K=127; // from root locus gain is computed
+sysc=K*Ls/(1+K*Ls)
+sysc=syslin('c',sysc);
+t=linspace(0,10,1000);
+y=csim('step',t,sysc);
+figure(2)
+plot(t,y);
+exec .\fig_settings.sci; //custom script for setting figure properties
+title(['Step response for K=127', 'and',...
+'$ L(s)=\frac {s+5.4}{s(s+1)(s+20)}$']...
+,'fontsize',3)
+xlabel('Time (sec)','fontsize',2)
+ylabel('Amplitude','fontsize',2)
+zoom_rect([0 0 1.8 1.4])
+
+pl=roots(DenG*DenD+K*NumG*NumD) //closed loop poles at K=127;
+scf(1)
+plot(real(pl),imag(pl),'ro') //closed loop pole-locations at K=127;
+//------------------------------------------------------------------
+
diff --git a/Working_Examples/3432/CH5/EX5.11/Ex5_11_f1.pdf b/Working_Examples/3432/CH5/EX5.11/Ex5_11_f1.pdf Binary files differnew file mode 100755 index 0000000..bc4787a --- /dev/null +++ b/Working_Examples/3432/CH5/EX5.11/Ex5_11_f1.pdf diff --git a/Working_Examples/3432/CH5/EX5.11/Ex5_11_f2.pdf b/Working_Examples/3432/CH5/EX5.11/Ex5_11_f2.pdf Binary files differnew file mode 100755 index 0000000..0c84944 --- /dev/null +++ b/Working_Examples/3432/CH5/EX5.11/Ex5_11_f2.pdf diff --git a/Working_Examples/3432/CH5/EX5.12/DEPENDENCIES/fig_settings.sci b/Working_Examples/3432/CH5/EX5.12/DEPENDENCIES/fig_settings.sci new file mode 100755 index 0000000..5d5e7d4 --- /dev/null +++ b/Working_Examples/3432/CH5/EX5.12/DEPENDENCIES/fig_settings.sci @@ -0,0 +1,9 @@ +//------------------------------------------------------------------
+//figure handel settings
+f=get("current_figure"); //Current figure handle
+f.background=8; //make the figure window background white
+l=f.children(1);
+l.background=8 ;//make the text background white
+id=color('grey');
+xgrid(id);
+//------------------------------------------------------------------
diff --git a/Working_Examples/3432/CH5/EX5.12/Ex5_12.sce b/Working_Examples/3432/CH5/EX5.12/Ex5_12.sce new file mode 100755 index 0000000..fdff148 --- /dev/null +++ b/Working_Examples/3432/CH5/EX5.12/Ex5_12.sce @@ -0,0 +1,24 @@ +//Example 5.12
+//Negative root Locus for an Airplane.
+
+xdel(winsid())//close all graphics Windows
+clear;
+clc;
+
+
+//------------------------------------------------------------------
+//System transfer function and its root locus
+
+s=poly(0,'s');
+Ls=-(s-6)/(s*(s^2+4*s+13));
+evans(Ls)
+
+//Title, labels and grid to the figure
+exec .\fig_settings.sci; //custom script for setting figure properties
+title(['Negative root locus for','$L(s)=\frac{s-6}{s(s^2+4s+13)}$'],...
+'fontsize',3)
+zoom_rect([-5 -6 10 6])
+h=legend('');
+h.visible = "off"
+
+//------------------------------------------------------------------
diff --git a/Working_Examples/3432/CH5/EX5.12/Ex5_12_f0.pdf b/Working_Examples/3432/CH5/EX5.12/Ex5_12_f0.pdf Binary files differnew file mode 100755 index 0000000..2dee947 --- /dev/null +++ b/Working_Examples/3432/CH5/EX5.12/Ex5_12_f0.pdf diff --git a/Working_Examples/3432/CH5/EX5.2/DEPENDENCIES/fig_settings.sci b/Working_Examples/3432/CH5/EX5.2/DEPENDENCIES/fig_settings.sci new file mode 100755 index 0000000..5d5e7d4 --- /dev/null +++ b/Working_Examples/3432/CH5/EX5.2/DEPENDENCIES/fig_settings.sci @@ -0,0 +1,9 @@ +//------------------------------------------------------------------
+//figure handel settings
+f=get("current_figure"); //Current figure handle
+f.background=8; //make the figure window background white
+l=f.children(1);
+l.background=8 ;//make the text background white
+id=color('grey');
+xgrid(id);
+//------------------------------------------------------------------
diff --git a/Working_Examples/3432/CH5/EX5.2/Ex5_2.sce b/Working_Examples/3432/CH5/EX5.2/Ex5_2.sce new file mode 100755 index 0000000..74f7304 --- /dev/null +++ b/Working_Examples/3432/CH5/EX5.2/Ex5_2.sce @@ -0,0 +1,22 @@ +//Example 5.2
+//Root locus with respect to a plant open loop pole.
+xdel(winsid())//close all graphics Windows
+clear;
+clc;
+
+//------------------------------------------------------------------
+//System transfer function and its root locus
+s=poly(0,'s');
+Gs=s/(s*s+1);
+
+//Title, labels and grid to the figure
+exec .\fig_settings.sci; //custom script for setting figure properties
+evans(Gs,100)
+title(['Root locus vs. damping factor','$c$',...
+'for','$1+G(s)=1+1/[s(s+c)]=0$'],'fontsize',3)
+zoom_rect([-2 -1.5 2 1.5])
+h=legend('');
+h.visible = "off"
+
+//------------------------------------------------------------------
+
diff --git a/Working_Examples/3432/CH5/EX5.2/Ex5_2_f0.pdf b/Working_Examples/3432/CH5/EX5.2/Ex5_2_f0.pdf Binary files differnew file mode 100755 index 0000000..e1e4da3 --- /dev/null +++ b/Working_Examples/3432/CH5/EX5.2/Ex5_2_f0.pdf diff --git a/Working_Examples/3432/CH5/EX5.3/DEPENDENCIES/fig_settings.sci b/Working_Examples/3432/CH5/EX5.3/DEPENDENCIES/fig_settings.sci new file mode 100755 index 0000000..5d5e7d4 --- /dev/null +++ b/Working_Examples/3432/CH5/EX5.3/DEPENDENCIES/fig_settings.sci @@ -0,0 +1,9 @@ +//------------------------------------------------------------------
+//figure handel settings
+f=get("current_figure"); //Current figure handle
+f.background=8; //make the figure window background white
+l=f.children(1);
+l.background=8 ;//make the text background white
+id=color('grey');
+xgrid(id);
+//------------------------------------------------------------------
diff --git a/Working_Examples/3432/CH5/EX5.3/Ex5_3.sce b/Working_Examples/3432/CH5/EX5.3/Ex5_3.sce new file mode 100755 index 0000000..95d400c --- /dev/null +++ b/Working_Examples/3432/CH5/EX5.3/Ex5_3.sce @@ -0,0 +1,22 @@ +//Example 5.3
+//Root locus for satellite attitude control with PD control.
+
+xdel(winsid())//close all graphics Windows
+clear;
+clc;
+
+//------------------------------------------------------------------
+//System transfer function and its root locus
+
+s=poly(0,'s');
+sysS=(s+1)/(s^2);
+evans(sysS,100)
+
+//Title, labels and grid to the figure
+exec .\fig_settings.sci; // custom script for setting figure properties
+title(['Root locus for','$L(s)=G(s)=(s+1)/s^2$'],'fontsize',3)
+zoom_rect([-6 -3 2 3])
+h=legend('');
+h.visible = "off"
+
+//------------------------------------------------------------------
diff --git a/Working_Examples/3432/CH5/EX5.3/Ex5_3_f0.pdf b/Working_Examples/3432/CH5/EX5.3/Ex5_3_f0.pdf Binary files differnew file mode 100755 index 0000000..3f4f9cd --- /dev/null +++ b/Working_Examples/3432/CH5/EX5.3/Ex5_3_f0.pdf diff --git a/Working_Examples/3432/CH5/EX5.4/DEPENDENCIES/fig_settings.sci b/Working_Examples/3432/CH5/EX5.4/DEPENDENCIES/fig_settings.sci new file mode 100755 index 0000000..5d5e7d4 --- /dev/null +++ b/Working_Examples/3432/CH5/EX5.4/DEPENDENCIES/fig_settings.sci @@ -0,0 +1,9 @@ +//------------------------------------------------------------------
+//figure handel settings
+f=get("current_figure"); //Current figure handle
+f.background=8; //make the figure window background white
+l=f.children(1);
+l.background=8 ;//make the text background white
+id=color('grey');
+xgrid(id);
+//------------------------------------------------------------------
diff --git a/Working_Examples/3432/CH5/EX5.4/Ex5_4.sce b/Working_Examples/3432/CH5/EX5.4/Ex5_4.sce new file mode 100755 index 0000000..2a17aed --- /dev/null +++ b/Working_Examples/3432/CH5/EX5.4/Ex5_4.sce @@ -0,0 +1,23 @@ +//Example 5.4
+//Root locus for satellite attitude control with modified
+//PD control or Lead compensator.
+
+xdel(winsid())//close all graphics Windows
+clear;
+clc;
+
+//------------------------------------------------------------------
+//System transfer function and its root locus
+
+s=poly(0,'s');
+sysL=(s+1)/(s^2*(s+12));
+evans(sysL,100)
+
+//Title, labels and grid to the figure
+exec .\fig_settings.sci; // custom script for setting figure properties
+title(['Root locus for', '$L(s)=(s+1)/s^2(s+12)$'],'fontsize',3)
+zoom_rect([-6 -3 2 3])
+h=legend('');
+h.visible = "off"
+
+//------------------------------------------------------------------
diff --git a/Working_Examples/3432/CH5/EX5.4/Ex5_4_f0.pdf b/Working_Examples/3432/CH5/EX5.4/Ex5_4_f0.pdf Binary files differnew file mode 100755 index 0000000..d81a20e --- /dev/null +++ b/Working_Examples/3432/CH5/EX5.4/Ex5_4_f0.pdf diff --git a/Working_Examples/3432/CH5/EX5.5/DEPENDENCIES/fig_settings.sci b/Working_Examples/3432/CH5/EX5.5/DEPENDENCIES/fig_settings.sci new file mode 100755 index 0000000..5d5e7d4 --- /dev/null +++ b/Working_Examples/3432/CH5/EX5.5/DEPENDENCIES/fig_settings.sci @@ -0,0 +1,9 @@ +//------------------------------------------------------------------
+//figure handel settings
+f=get("current_figure"); //Current figure handle
+f.background=8; //make the figure window background white
+l=f.children(1);
+l.background=8 ;//make the text background white
+id=color('grey');
+xgrid(id);
+//------------------------------------------------------------------
diff --git a/Working_Examples/3432/CH5/EX5.5/Ex5_5.sce b/Working_Examples/3432/CH5/EX5.5/Ex5_5.sce new file mode 100755 index 0000000..2773f40 --- /dev/null +++ b/Working_Examples/3432/CH5/EX5.5/Ex5_5.sce @@ -0,0 +1,22 @@ +//Example 5.5
+//Root locus for satellite control with Lead compensator.
+
+xdel(winsid())//close all graphics Windows
+clear;
+clc;
+
+//------------------------------------------------------------------
+//System transfer function and its root locus
+
+s=poly(0,'s');
+sysL=(s+1)/(s^2*(s+4));
+evans(sysL)
+
+//Title, labels and grid to the figure
+exec .\fig_settings.sci; // custom script for setting figure properties
+title(['Root locus for', '$L(s)=(s+1)/s^2(s+4)$'],'fontsize',3)
+zoom_rect([-6 -3 2 3])
+h=legend('');
+h.visible = "off"
+
+//------------------------------------------------------------------
diff --git a/Working_Examples/3432/CH5/EX5.5/Ex5_5_f0.pdf b/Working_Examples/3432/CH5/EX5.5/Ex5_5_f0.pdf Binary files differnew file mode 100755 index 0000000..abef9d5 --- /dev/null +++ b/Working_Examples/3432/CH5/EX5.5/Ex5_5_f0.pdf diff --git a/Working_Examples/3432/CH5/EX5.6/DEPENDENCIES/fig_settings.sci b/Working_Examples/3432/CH5/EX5.6/DEPENDENCIES/fig_settings.sci new file mode 100755 index 0000000..5d5e7d4 --- /dev/null +++ b/Working_Examples/3432/CH5/EX5.6/DEPENDENCIES/fig_settings.sci @@ -0,0 +1,9 @@ +//------------------------------------------------------------------
+//figure handel settings
+f=get("current_figure"); //Current figure handle
+f.background=8; //make the figure window background white
+l=f.children(1);
+l.background=8 ;//make the text background white
+id=color('grey');
+xgrid(id);
+//------------------------------------------------------------------
diff --git a/Working_Examples/3432/CH5/EX5.6/Ex5_6.sce b/Working_Examples/3432/CH5/EX5.6/Ex5_6.sce new file mode 100755 index 0000000..a2573d6 --- /dev/null +++ b/Working_Examples/3432/CH5/EX5.6/Ex5_6.sce @@ -0,0 +1,23 @@ +//Example 5.6
+//Root locus for satellite attitude control with a
+//Transition value for the pole.
+
+xdel(winsid())//close all graphics Windows
+clear;
+clc;
+
+//------------------------------------------------------------------
+//System transfer function and its root locus
+
+s=poly(0,'s');
+sysL=(s+1)/(s^2*(s+9));
+evans(sysL)
+
+//Title, labels and grid to the figure
+exec .\fig_settings.sci; // custom script for setting figure properties
+title(['Root locus for', '$L(s)=(s+1)/(s^2(s+9))$'],'fontsize',3)
+zoom_rect([-6 -3 2 3])
+h=legend('');
+h.visible = "off"
+
+//------------------------------------------------------------------
diff --git a/Working_Examples/3432/CH5/EX5.6/Ex5_6_f0.pdf b/Working_Examples/3432/CH5/EX5.6/Ex5_6_f0.pdf Binary files differnew file mode 100755 index 0000000..9fc7e64 --- /dev/null +++ b/Working_Examples/3432/CH5/EX5.6/Ex5_6_f0.pdf diff --git a/Working_Examples/3432/CH5/EX5.7/DEPENDENCIES/fig_settings.sci b/Working_Examples/3432/CH5/EX5.7/DEPENDENCIES/fig_settings.sci new file mode 100755 index 0000000..5d5e7d4 --- /dev/null +++ b/Working_Examples/3432/CH5/EX5.7/DEPENDENCIES/fig_settings.sci @@ -0,0 +1,9 @@ +//------------------------------------------------------------------
+//figure handel settings
+f=get("current_figure"); //Current figure handle
+f.background=8; //make the figure window background white
+l=f.children(1);
+l.background=8 ;//make the text background white
+id=color('grey');
+xgrid(id);
+//------------------------------------------------------------------
diff --git a/Working_Examples/3432/CH5/EX5.7/Ex5_7.sce b/Working_Examples/3432/CH5/EX5.7/Ex5_7.sce new file mode 100755 index 0000000..756952f --- /dev/null +++ b/Working_Examples/3432/CH5/EX5.7/Ex5_7.sce @@ -0,0 +1,116 @@ +//Example 5.7
+//Root locus for satellite control with a Collocated Flexibility.
+
+xdel(winsid())//close all graphics Windows
+clear;
+clc;
+
+//------------------------------------------------------------------
+//System transfer function with controller.
+
+s=poly(0,'s');
+NumD=(s+1);
+DenD=(s+12);
+D=NumD/DenD;
+
+NumG=(s+0.1)^2+36
+DenG=s^2*((s+0.1)^2+(6.6)^2)
+
+G=NumG/DenG;
+
+NumL=NumD*NumG;
+DenL=DenD*DenG;
+
+L=NumL/DenL;
+
+zr=roots(NumL);
+pl=roots(DenL);
+
+//------------------------------------------------------------------
+//Angle of departure.
+//Find angle of departure from pole at phi1= - 0.1 + 6.6i
+//(real poles don't have angle of departure,
+//they move along real axis only)
+//psi1=angle[(Departing pole)- (zero at - 0.1 + 6.6i)]
+[Mpsi1, psi1] = polar(pl(2)-zr(1))
+psi1=real(psi1)*180/%pi; //angle in degree
+
+//psi2=angle[(Departing pole)- (zero at - 0.1 - 6.6i)]
+[Mpsi2, psi2] = polar(pl(2)-zr(2))
+psi2=real(psi2)*180/%pi; //angle in degree
+
+//psi3=angle[(Departing pole)- (zero at - 1)]
+[Mpsi3, psi3] = polar(pl(2)-zr(3))
+psi3=real(psi3)*180/%pi; //angle in degree
+
+//phi2=angle[(Departing pole)- (pole at 0)]
+[Mphi2, phi2] = polar(pl(2)-pl(4))
+phi2=real(phi2)*180/%pi; //angle in degree
+
+//phi3 is same as phi2, as pole is repeated at 0.
+phi3=phi2;
+
+//phi4=angle[(Departing pole)-(pole at - 0.1 - 6.6i )]
+[Mphi4, phi4] = polar(pl(2)-pl(3))
+phi4=real(phi4)*180/%pi; //angle in degree
+
+//phi5=angle[(Departing pole)- (pole at - 12 )]
+[Mphi5, phi5] = polar(pl(2)-pl(1))
+phi5=real(phi5)*180/%pi; //angle in degree
+
+//Therefore angle of departure phi1 at - 0.1 + 6.6i is
+//phi1 = 180 + sum(angle to zeros) - sum(angle to poles)
+
+phi1 = 180 + sum(psi1+psi2+psi3) - sum(phi2+phi3+phi4+phi5)
+
+//angle contributions in figure
+figure(0)
+plzr(L)
+xset('font size',1.5)
+xarrows([real(pl(1));real(pl(2))],[imag(pl(1));imag(pl(2))],0,2)
+xarc(-13,1,2,2,0,phi5*64)
+xstring(-11,0.05,"$\phi_5$")
+
+
+xarrows([real(zr(3));real(pl(2))],[imag(zr(3));imag(pl(2))],0,4)
+xarc(-2,1,2,2,0,psi3*64)
+xstring(-0.7,1,"$\psi_3$")
+
+xarrows([real(pl(4));real(pl(2))],[imag(pl(4));imag(pl(2))],0,5)
+xarc(-1,1,2,2,0,phi2*64)
+xstring(0.8,0.5,"$\phi_2,\,\phi_3$")
+
+
+xarrows([real(pl(3));real(pl(2))],[imag(pl(3));imag(pl(2))],0,3)
+xarc(-1,-6.6,2,2,0,phi4*64)
+xstring(0.8,-7,"$\phi_4$")
+
+xarrows([real(zr(2));real(pl(2))],[imag(zr(2));imag(pl(2))],0,6)
+xarc(-1,-5,2,2,0,psi2*64)
+xstring(0.8,-5.5,"$\psi_2$")
+
+xarrows([real(zr(1));real(pl(2))],[imag(zr(1));imag(pl(2))],0,24)
+xstring(0.3,5.5,"$\psi_1$")
+xstring(0.3,6.5,"$\phi_1$")
+
+exec .\fig_settings.sci; //custom script for setting figure properties
+title(['Figure for computing a departure angle for',...
+'$L(s)=\frac{s+1}{s+12}\frac{(s+0.1)^2+6^2}{s^2[(s+0.1)^2+6.6^2]}$'],...
+'fontsize',3)
+zoom_rect([-15 -8 5 8])
+h=legend('');
+h.visible = "off"
+
+//------------------------------------------------------------------
+//Root locus system transfer function with controller.
+figure(1)
+evans(L)
+//Title, labels and grid to the figure
+exec .\fig_settings.sci; //custom script for setting figure properties
+title(['Root locus for','$L(s)=\frac{s+1}{s+12}\frac{(s+0.1)^2+6^2}...
+{s^2[(s+0.1)^2+6.6^2]}$'],'fontsize',3)
+zoom_rect([-15 -8 5 8])
+h=legend('');
+h.visible = "off"
+
+//------------------------------------------------------------------
diff --git a/Working_Examples/3432/CH5/EX5.7/Ex5_7_f0.pdf b/Working_Examples/3432/CH5/EX5.7/Ex5_7_f0.pdf Binary files differnew file mode 100755 index 0000000..a336a69 --- /dev/null +++ b/Working_Examples/3432/CH5/EX5.7/Ex5_7_f0.pdf diff --git a/Working_Examples/3432/CH5/EX5.7/Ex5_7_f1.pdf b/Working_Examples/3432/CH5/EX5.7/Ex5_7_f1.pdf Binary files differnew file mode 100755 index 0000000..9bbc5ea --- /dev/null +++ b/Working_Examples/3432/CH5/EX5.7/Ex5_7_f1.pdf diff --git a/Working_Examples/3432/CH5/EX5.8/DEPENDENCIES/fig_settings.sci b/Working_Examples/3432/CH5/EX5.8/DEPENDENCIES/fig_settings.sci new file mode 100755 index 0000000..5d5e7d4 --- /dev/null +++ b/Working_Examples/3432/CH5/EX5.8/DEPENDENCIES/fig_settings.sci @@ -0,0 +1,9 @@ +//------------------------------------------------------------------
+//figure handel settings
+f=get("current_figure"); //Current figure handle
+f.background=8; //make the figure window background white
+l=f.children(1);
+l.background=8 ;//make the text background white
+id=color('grey');
+xgrid(id);
+//------------------------------------------------------------------
diff --git a/Working_Examples/3432/CH5/EX5.8/Ex5_8.sce b/Working_Examples/3432/CH5/EX5.8/Ex5_8.sce new file mode 100755 index 0000000..9df35f1 --- /dev/null +++ b/Working_Examples/3432/CH5/EX5.8/Ex5_8.sce @@ -0,0 +1,105 @@ +//Example 5.8
+//Root locus for noncollocated case.
+
+xdel(winsid())//close all graphics Windows
+clear;
+clc;
+
+//------------------------------------------------------------------
+//System transfer function with controller
+
+s=poly(0,'s');
+NumD=(s+1);
+DenD=(s+12);
+sysD=NumD/DenD;
+
+NumG=1
+DenG=s^2*((s+0.1)^2+(6.6)^2)
+
+sysG=NumG/DenG;
+
+NumL=NumD*NumG;
+DenL=DenD*DenG;
+
+sysL=NumL/DenL;
+
+zr=roots(NumL);
+pl=roots(DenL);
+
+//------------------------------------------------------------------
+//Angle of departure.
+//Find angle of departure from pole at phi1= - 0.1 + 6.6i
+//(real poles don't have angle of departure,
+//they move along real axis only)
+
+//psi1=angle[(Departing pole)- (zero at - 1]
+[Mpsi1, psi1] = polar(pl(2)-zr(1))
+psi1=real(psi1)*180/%pi; //angle in degree
+
+//phi2=angle[(Departing pole)- (pole at 0)]
+[Mphi2, phi2] = polar(pl(2)-pl(4))
+phi2=real(phi2)*180/%pi; //angle in degree
+
+//phi3 is same as phi2, as pole is repeated at 0.
+phi3=phi2;
+
+//phi4=angle[(Departing pole)-(pole at - 0.1 - 6.6i )]
+[Mphi4, phi4] = polar(pl(2)-pl(3))
+phi4=real(phi4)*180/%pi; //angle in degree
+
+//phi5=angle[(Departing pole)- (pole at - 12 )]
+[Mphi5, phi5] = polar(pl(2)-pl(1))
+phi5=real(phi5)*180/%pi; //angle in degree
+
+//Therefore angle of departure phi1 at - 0.1 + 6.6i is
+//phi1 = 180 + sum(angle to zeros) - sum(angle to poles)
+
+phi1 = 180 + sum(psi1) - sum(phi2+phi3+phi4+phi5)
+
+//angle contributions in figure
+figure(0)
+plzr(sysL)
+xset('font size',1.5)
+xarrows([real(pl(1));real(pl(2))],[imag(pl(1));imag(pl(2))],0,2)
+xarrows([real(pl(1)); -10],[0;0],0,2)
+xarc(-13,1,2,2,0,phi5*64)
+xstring(-11,0.05,"$\phi_5$")
+
+xarrows([real(zr(1));real(pl(2))],[imag(zr(1));imag(pl(2))],0,6)
+xarrows([real(zr(1)); -0.3],[0;0],0,6)
+xarc(-2,1,2,2,0,psi1*64)
+xstring(-0.7,1,"$\psi_1$")
+
+xarrows([real(pl(4));real(pl(2))],[imag(pl(4));imag(pl(2))],0,5)
+xarrows([real(pl(4)); 1],[0;0],0,5)
+xarc(-1,1,2,2,0,phi2*64)
+xstring(0.8,0.5,"$\phi_2,\,\phi_3$")
+
+xarrows([real(pl(3));real(pl(2))],[imag(pl(3));imag(pl(2))],0,17)
+xarrows([real(pl(3)); 2],[imag(pl(3));imag(pl(3))],0,17)
+xarc(-1.1,-5.6,2,2,0,phi4*64)
+xstring(0.8,-5.5,"$\phi_4$")
+
+xstring(0.3,6.5,"$\phi_1$")
+
+exec .\fig_settings.sci; //custom script for setting figure properties
+title(['Figure to compute a departure angle for',...
+'$L(s)=\frac{s+1}{s+12}\frac{1}{s^2[(s+0.1)^2+6.6^2]}$'],...
+'fontsize',3)
+zoom_rect([-15 -8 5 8])
+h=legend('');
+h.visible = "off"
+
+//------------------------------------------------------------------
+//Root locus of system transfer function with controller
+figure(1)
+evans(sysL)
+//Title, labels and grid to the figure
+exec .\fig_settings.sci; //custom script for setting figure properties
+title(['Root locus for','$L(s)=\frac{s+1}{s+12}\frac{1}...
+{s^2[(s+0.1)^2+6.6^2]}$'],'fontsize',3)
+zoom_rect([-15 -8 5 8])
+h=legend('');
+h.visible = "off"
+
+//------------------------------------------------------------------
diff --git a/Working_Examples/3432/CH5/EX5.8/Ex5_8_f0.pdf b/Working_Examples/3432/CH5/EX5.8/Ex5_8_f0.pdf Binary files differnew file mode 100755 index 0000000..c6c9959 --- /dev/null +++ b/Working_Examples/3432/CH5/EX5.8/Ex5_8_f0.pdf diff --git a/Working_Examples/3432/CH5/EX5.8/Ex5_8_f1.pdf b/Working_Examples/3432/CH5/EX5.8/Ex5_8_f1.pdf Binary files differnew file mode 100755 index 0000000..c177764 --- /dev/null +++ b/Working_Examples/3432/CH5/EX5.8/Ex5_8_f1.pdf diff --git a/Working_Examples/3432/CH5/EX5.9/DEPENDENCIES/fig_settings.sci b/Working_Examples/3432/CH5/EX5.9/DEPENDENCIES/fig_settings.sci new file mode 100755 index 0000000..5d5e7d4 --- /dev/null +++ b/Working_Examples/3432/CH5/EX5.9/DEPENDENCIES/fig_settings.sci @@ -0,0 +1,9 @@ +//------------------------------------------------------------------
+//figure handel settings
+f=get("current_figure"); //Current figure handle
+f.background=8; //make the figure window background white
+l=f.children(1);
+l.background=8 ;//make the text background white
+id=color('grey');
+xgrid(id);
+//------------------------------------------------------------------
diff --git a/Working_Examples/3432/CH5/EX5.9/Ex5_9.sce b/Working_Examples/3432/CH5/EX5.9/Ex5_9.sce new file mode 100755 index 0000000..8b88c95 --- /dev/null +++ b/Working_Examples/3432/CH5/EX5.9/Ex5_9.sce @@ -0,0 +1,81 @@ +//Example 5.9
+//Root locus for the system having complex multiple roots.
+
+xdel(winsid())//close all graphics Windows
+clear;
+clc;
+//------------------------------------------------------------------
+//System transfer function
+
+s=poly(0,'s');
+
+NumL=1;
+DenL=s*(s+2)*[(s+1)^2+4];
+
+L=NumL/DenL;
+
+zr=roots(NumL);
+pl=roots(DenL);
+
+//------------------------------------------------------------------
+//Angle of departure.
+//Find angle of departure from pole at phi1= - 1 + 2i
+//(real poles don't have angle of departure,
+// they move along real axis only)
+
+//phi2=angle[(Departing pole)- (pole at 0)]
+[Mphi1, phi1] = polar(pl(1)-pl(4))
+phi1=real(phi1)*180/%pi; //angle in degree
+
+//phi2=angle[(Departing pole)- (pole at -2)]
+[Mphi2, phi2] = polar(pl(1)-pl(3))
+phi2=real(phi2)*180/%pi; //angle in degree
+
+//phi2=angle[(Departing pole)- (pole at - 1 - 2i)]
+[Mphi4, phi4] = polar(pl(1)-pl(2))
+phi4=real(phi4)*180/%pi; //angle in degree
+
+//Therefore angle of departure phi1 at - 1 + 2i is
+//phi3 = 180 + sum(angle to zeros) - sum(angle to poles)
+
+phi3 = 180 - sum(phi1+phi2+phi4)
+
+//angle contributions in figure
+figure(0)
+plzr(L)
+xset('font size',1.5)
+xarrows([real(pl(4));real(pl(1))],[imag(pl(4));imag(pl(1))],0,2)
+xarrows([real(pl(4)); 1],[0;0],0,2)
+xarc(-0.5,0.5,1,1,0,phi1*64)
+xstring(0.5,0.25,"$\phi_1$")
+
+xarrows([real(pl(3));real(pl(1))],[imag(pl(3));imag(pl(1))],0,5)
+xarrows([real(pl(3)); -1.3],[0;0],0,5)
+xarc(-2.5,0.5,1,1,0,phi2*64)
+xstring(-1.5,0.25,"$\phi_2$")
+
+xarrows([real(pl(2));real(pl(1))],[imag(pl(2));imag(pl(1))],0,17)
+xarrows([real(pl(2)); -0.3],[-2;-2],0,17)
+xarc(-1.5,-1.5,1,1,0,phi4*64)
+xstring(-0.5,-1.7,"$\phi_4$")
+
+xstring(-0.8,2,"$\phi_1$")
+
+exec .\fig_settings.sci; //custom script for setting figure properties
+title(['Figure to computing a departure angle for',...
+'$L(s)=\frac{1}{s(s+2)[(s+1)^2+4]}$'],'fontsize',3)
+zoom_rect([-4 -3 4 3])
+h=legend('');
+h.visible = "off"
+//------------------------------------------------------------------
+//Root locus of system transfer function with controller
+figure(1)
+evans(L)
+//Title, labels and grid to the figure
+exec .\fig_settings.sci; // custom script for setting figure properties
+title(['Root locus for','$L(s)=\frac{1}{s(s+2)[(s+1)^2+4]}$']...
+,'fontsize',3)
+zoom_rect([-4 -3 4 3])
+h=legend('');
+h.visible = "off"
+//------------------------------------------------------------------
diff --git a/Working_Examples/3432/CH5/EX5.9/Ex5_9_f0.pdf b/Working_Examples/3432/CH5/EX5.9/Ex5_9_f0.pdf Binary files differnew file mode 100755 index 0000000..32d94e9 --- /dev/null +++ b/Working_Examples/3432/CH5/EX5.9/Ex5_9_f0.pdf diff --git a/Working_Examples/3432/CH5/EX5.9/Ex5_9_f1.pdf b/Working_Examples/3432/CH5/EX5.9/Ex5_9_f1.pdf Binary files differnew file mode 100755 index 0000000..f2f030a --- /dev/null +++ b/Working_Examples/3432/CH5/EX5.9/Ex5_9_f1.pdf diff --git a/Working_Examples/3432/CH6/EX6.10/DEPENDENCIES/fig_settings.sci b/Working_Examples/3432/CH6/EX6.10/DEPENDENCIES/fig_settings.sci new file mode 100755 index 0000000..5d5e7d4 --- /dev/null +++ b/Working_Examples/3432/CH6/EX6.10/DEPENDENCIES/fig_settings.sci @@ -0,0 +1,9 @@ +//------------------------------------------------------------------
+//figure handel settings
+f=get("current_figure"); //Current figure handle
+f.background=8; //make the figure window background white
+l=f.children(1);
+l.background=8 ;//make the text background white
+id=color('grey');
+xgrid(id);
+//------------------------------------------------------------------
diff --git a/Working_Examples/3432/CH6/EX6.10/Ex6_10.sce b/Working_Examples/3432/CH6/EX6.10/Ex6_10.sce new file mode 100755 index 0000000..f1f5c20 --- /dev/null +++ b/Working_Examples/3432/CH6/EX6.10/Ex6_10.sce @@ -0,0 +1,46 @@ +//Example 6.10
+// Nyquist plot for an Open-loop unstable system.
+
+xdel(winsid())//close all graphics Windows
+clear;
+clc;
+//------------------------------------------------------------------
+//System transfer function
+s=poly(0,'s');
+sysG=(s+1)/(s*(s/10-1));
+evans(sysG,50)
+exec .\fig_settings.sci; //custom script for setting figure properties
+title(["Root Locus for","$G(s)=(s+1)/[s(s/10-1)]$"],'fontsize',3)
+zoom_rect([-5 -4 5 4])
+f=gca();
+f.x_location = "origin"
+f.y_location = "origin"
+h=legend('');
+h.visible = "off"
+
+g1=syslin('c',(s+1)/(s*(s/10-1)));
+//------------------------------------------------------------------
+//The bode plot of the system
+figure;
+bode(g1,0.1/2/%pi,100/2/%pi,"rad")
+exec .\fig_settings.sci; //custom script for setting figure properties
+title(["Bode plot for","$G(s)=(s+1)/[s(s/10-1)]$"],'fontsize',3)
+//bode(g,2*%pi*0.1,2*%pi*100)
+//------------------------------------------------------------------
+figure;
+//The nyquist plot of the system
+nyquist(g1,0.5/2/%pi,100/2/%pi,0.05)
+exec .\fig_settings.sci; //custom script for setting figure properties
+title(["Nyquist plot for","$G(s)=(s+1)/[s(s/10-1)]$"],'fontsize',3)
+f=gca();
+f.x_location = "origin";
+f.y_location = "origin";
+zoom_rect([-2 -2 1 2]);
+xset("color",2);
+xset("font size", 3);
+xstring(-1,1.5,"${\fgcolor{blue}{\omega>0}}$",0,0);
+xstring(-1,-1.5,"${\fgcolor{blue}{\omega<0}}$",0,0);
+xstring(-1.5,0,"${\fgcolor{blue}{\omega=\pm \sqrt{10}}}$",0,0);
+xstring(-0.5,0.1,"${\fgcolor{blue}{\omega=\infty}}$",0,0);
+xarrows([-0.2;0],[0.2;0],-1,2)
+//------------------------------------------------------------------
diff --git a/Working_Examples/3432/CH6/EX6.10/Ex6_10_f0.pdf b/Working_Examples/3432/CH6/EX6.10/Ex6_10_f0.pdf Binary files differnew file mode 100755 index 0000000..36c7a51 --- /dev/null +++ b/Working_Examples/3432/CH6/EX6.10/Ex6_10_f0.pdf diff --git a/Working_Examples/3432/CH6/EX6.10/Ex6_10_f1.pdf b/Working_Examples/3432/CH6/EX6.10/Ex6_10_f1.pdf Binary files differnew file mode 100755 index 0000000..b0d811d --- /dev/null +++ b/Working_Examples/3432/CH6/EX6.10/Ex6_10_f1.pdf diff --git a/Working_Examples/3432/CH6/EX6.11/DEPENDENCIES/fig_settings.sci b/Working_Examples/3432/CH6/EX6.11/DEPENDENCIES/fig_settings.sci new file mode 100755 index 0000000..5d5e7d4 --- /dev/null +++ b/Working_Examples/3432/CH6/EX6.11/DEPENDENCIES/fig_settings.sci @@ -0,0 +1,9 @@ +//------------------------------------------------------------------
+//figure handel settings
+f=get("current_figure"); //Current figure handle
+f.background=8; //make the figure window background white
+l=f.children(1);
+l.background=8 ;//make the text background white
+id=color('grey');
+xgrid(id);
+//------------------------------------------------------------------
diff --git a/Working_Examples/3432/CH6/EX6.11/Ex6_11.sce b/Working_Examples/3432/CH6/EX6.11/Ex6_11.sce new file mode 100755 index 0000000..4a78234 --- /dev/null +++ b/Working_Examples/3432/CH6/EX6.11/Ex6_11.sce @@ -0,0 +1,28 @@ +//Example 6.11
+// Stability properties for a conditionally stable system.
+
+xdel(winsid())//close all graphics Windows
+clear;
+clc;
+//------------------------------------------------------------------
+//System transfer function
+s=poly(0,'s');
+Gs=(s+10)^2/(s^3);
+evans(Gs,100)
+exec .\fig_settings.sci; //custom script for setting figure properties
+zoom_rect([-40 -20 5 20])
+title(["Root locus for","$G(s)=(s+10)^2/s^3$"],'fontsize',3)
+h=legend('');
+h.visible = "off"
+Gs1=syslin('c',(s+10)^2/(s^3));
+//------------------------------------------------------------------
+//The nyquist plot of the system
+figure;
+nyquist(7*Gs1,8/2/%pi,100/2/%pi,0.005)
+exec .\fig_settings.sci; //custom script for setting figure properties
+title(["Nyquist plot for","$G(s)=(s+10)^2/s^3$"],'fontsize',3)
+f=gca();
+f.x_location = "origin";
+f.y_location = "origin";
+xset("color",2);
+//------------------------------------------------------------------
diff --git a/Working_Examples/3432/CH6/EX6.11/Ex6_11_f0.pdf b/Working_Examples/3432/CH6/EX6.11/Ex6_11_f0.pdf Binary files differnew file mode 100755 index 0000000..68c5877 --- /dev/null +++ b/Working_Examples/3432/CH6/EX6.11/Ex6_11_f0.pdf diff --git a/Working_Examples/3432/CH6/EX6.11/Ex6_11_f1.pdf b/Working_Examples/3432/CH6/EX6.11/Ex6_11_f1.pdf Binary files differnew file mode 100755 index 0000000..3b27650 --- /dev/null +++ b/Working_Examples/3432/CH6/EX6.11/Ex6_11_f1.pdf diff --git a/Working_Examples/3432/CH6/EX6.12/DEPENDENCIES/fig_settings.sci b/Working_Examples/3432/CH6/EX6.12/DEPENDENCIES/fig_settings.sci new file mode 100755 index 0000000..5d5e7d4 --- /dev/null +++ b/Working_Examples/3432/CH6/EX6.12/DEPENDENCIES/fig_settings.sci @@ -0,0 +1,9 @@ +//------------------------------------------------------------------
+//figure handel settings
+f=get("current_figure"); //Current figure handle
+f.background=8; //make the figure window background white
+l=f.children(1);
+l.background=8 ;//make the text background white
+id=color('grey');
+xgrid(id);
+//------------------------------------------------------------------
diff --git a/Working_Examples/3432/CH6/EX6.12/Ex6_12.sce b/Working_Examples/3432/CH6/EX6.12/Ex6_12.sce new file mode 100755 index 0000000..ae6ce2f --- /dev/null +++ b/Working_Examples/3432/CH6/EX6.12/Ex6_12.sce @@ -0,0 +1,40 @@ +//Example 6.12
+// Nyquist plot for a system with Multiple Crossover frequencies
+
+xdel(winsid())//close all graphics Windows
+clear;
+clc;
+//------------------------------------------------------------------
+//System transfer function
+s=poly(0,'s');
+K=85;
+g1=K*(s+1)/(s^2*(s^2+2*s+82));
+g2=(s^2+2*s+43.25)/(s^2+2*s+101);
+
+Gs=syslin('c',g2*g1);
+//------------------------------------------------------------------
+figure;
+//The nyquist plot of the system
+nyquist(Gs,0.5/2/%pi,100/2/%pi,0.005)
+title(["Nyquist plot for the complex system";...
+"$G(s)=85(s+1)(s^2+2s+43.25)/[((s^2+2s+82)(s^2+2s+101)]$"],...
+'fontsize',3)
+exec .\fig_settings.sci; //custom script for setting figure properties
+zoom_rect([-2 -1 0.6 1])
+f=gca();
+f.x_location = "origin";
+f.y_location = "origin";
+xset("color",2);
+//------------------------------------------------------------------
+//The bode plot of the system
+gm=g_margin(Gs);
+pm=p_margin(Gs)
+disp(pm,"Phase margin",gm,"Gain margin")
+figure(1)
+bode(Gs,0.01/2/%pi,100/2/%pi,0.01)
+title(["Bode plot for";...
+"$G(s)=85(s+1)(s^2+2s+43.25)/[((s^2+2s+82)(s^2+2s+101)]$"],...
+'fontsize',3)
+exec .\fig_settings.sci; //custom script for setting figure properties
+//------------------------------------------------------------------
+
diff --git a/Working_Examples/3432/CH6/EX6.12/Ex6_12_f0.pdf b/Working_Examples/3432/CH6/EX6.12/Ex6_12_f0.pdf Binary files differnew file mode 100755 index 0000000..2c70787 --- /dev/null +++ b/Working_Examples/3432/CH6/EX6.12/Ex6_12_f0.pdf diff --git a/Working_Examples/3432/CH6/EX6.12/Ex6_12_f1.pdf b/Working_Examples/3432/CH6/EX6.12/Ex6_12_f1.pdf Binary files differnew file mode 100755 index 0000000..6a37281 --- /dev/null +++ b/Working_Examples/3432/CH6/EX6.12/Ex6_12_f1.pdf diff --git a/Working_Examples/3432/CH6/EX6.13/DEPENDENCIES/fig_settings.sci b/Working_Examples/3432/CH6/EX6.13/DEPENDENCIES/fig_settings.sci new file mode 100755 index 0000000..5d5e7d4 --- /dev/null +++ b/Working_Examples/3432/CH6/EX6.13/DEPENDENCIES/fig_settings.sci @@ -0,0 +1,9 @@ +//------------------------------------------------------------------
+//figure handel settings
+f=get("current_figure"); //Current figure handle
+f.background=8; //make the figure window background white
+l=f.children(1);
+l.background=8 ;//make the text background white
+id=color('grey');
+xgrid(id);
+//------------------------------------------------------------------
diff --git a/Working_Examples/3432/CH6/EX6.13/Ex6_13.sce b/Working_Examples/3432/CH6/EX6.13/Ex6_13.sce new file mode 100755 index 0000000..3d22214 --- /dev/null +++ b/Working_Examples/3432/CH6/EX6.13/Ex6_13.sce @@ -0,0 +1,77 @@ +//Example 6.13
+// Use of simple design criterion for spacecraft attitude control.
+
+xdel(winsid())//close all graphics Windows
+clear;
+clc;
+//------------------------------------------------------------------
+//System transfer function
+s=poly(0,'s');
+G=1/s^2;
+g1=syslin('c',G);
+
+//The bode plot of the system
+zoom_rect([0.01 -20 100 60])
+bode(g1,0.05/2/%pi,2/2/%pi,"rad")
+exec .\fig_settings.sci; //custom script for setting figure properties
+title('Magnitude of the spacecrafts frequency','fontsize',3)
+//------------------------------------------------------------------
+
+K=1;
+Td=20;
+Ds=(Td*s+1);
+gd1=syslin('c',K*Ds*G);
+
+////The bode plot of compnenstaed open loop system
+figure
+bode(gd1,0.01/2/%pi,1/2/%pi,"rad")
+exec .\fig_settings.sci; //custom script for setting figure properties
+title('Bode plot for compensated open-loop transfer function'...
+,'fontsize',3)
+xstring(0.02,70,"-40db/decade",0,0);
+xstring(0.2,40,"-20db/decade",0,0);
+
+//The bode plot of compnenstaed closed loop system
+K=0.01;
+gc1=K*gd1/(1+K*gd1);
+gcl1=syslin('c',gc1);
+figure
+bode(gcl1,0.01/2/%pi,10/2/%pi,"rad")
+title('Closesd loop frequency response','fontsize',3)
+exec .\fig_settings.sci; //custom script for setting figure properties
+
+//Bandwidth
+[frq, repf,splitf]=repfreq(gc1,[0.01/2/%pi:0.001:10/2/%pi]);
+[db, phi]=dbphi(repf);
+w=find(db<=db(1)-3);
+wc=w(1);
+frqc=frq(wc)*2*%pi;
+
+plot2d3(frqc,db(wc),5)
+
+[r c]=size(frq(1:w(1)));
+magn=db(wc)*ones(r,c)
+plot(frq(1:w(1))*2*%pi,magn,"b--")
+temp_db=db(w);
+[r c]=size(db(w));
+temp_w=frqc*ones(r,c);
+plot(temp_w,temp_db,"b--")
+xset("font size", 3);
+xstring(0.04,-16,"$\omega_{BW}$");
+xstring(frqc,-4,"-3db");
+xset("line style",4)
+xarrows([0.01;frqc],[-10;-10],-0.2,5)
+xarrows([frqc;0.01],[-10;-10],-0.2,5)
+//------------------------------------------------------------------
+//Step response of PD compnensation
+figure
+t=0:0.5:100;
+v=csim('step',t,gcl1);
+plot2d(t,v)
+
+//Title, labels and grid to the figure
+exec .\fig_settings.sci; //custom script for setting figure properties
+title('Step response for PD compensation','fontsize',3)
+xlabel('Time t (sec.)','fontsize',2)
+ylabel('$\theta$','fontsize',2)
+//-------------------------------------------------------------------
diff --git a/Working_Examples/3432/CH6/EX6.13/Ex6_13_f0.pdf b/Working_Examples/3432/CH6/EX6.13/Ex6_13_f0.pdf Binary files differnew file mode 100755 index 0000000..d57831e --- /dev/null +++ b/Working_Examples/3432/CH6/EX6.13/Ex6_13_f0.pdf diff --git a/Working_Examples/3432/CH6/EX6.13/Ex6_13_f3.pdf b/Working_Examples/3432/CH6/EX6.13/Ex6_13_f3.pdf Binary files differnew file mode 100755 index 0000000..42cd3fa --- /dev/null +++ b/Working_Examples/3432/CH6/EX6.13/Ex6_13_f3.pdf diff --git a/Working_Examples/3432/CH6/EX6.14/DEPENDENCIES/fig_settings.sci b/Working_Examples/3432/CH6/EX6.14/DEPENDENCIES/fig_settings.sci new file mode 100755 index 0000000..5d5e7d4 --- /dev/null +++ b/Working_Examples/3432/CH6/EX6.14/DEPENDENCIES/fig_settings.sci @@ -0,0 +1,9 @@ +//------------------------------------------------------------------
+//figure handel settings
+f=get("current_figure"); //Current figure handle
+f.background=8; //make the figure window background white
+l=f.children(1);
+l.background=8 ;//make the text background white
+id=color('grey');
+xgrid(id);
+//------------------------------------------------------------------
diff --git a/Working_Examples/3432/CH6/EX6.14/Ex6_14.sce b/Working_Examples/3432/CH6/EX6.14/Ex6_14.sce new file mode 100644 index 0000000..c3b2f0a --- /dev/null +++ b/Working_Examples/3432/CH6/EX6.14/Ex6_14.sce @@ -0,0 +1,8 @@ +//Example 6.14 +//Lead compensation for DC motor. + +// the required value +// for step response, set sw to 2 +// for ramp response, set sw to 0 + +sw = 2 diff --git a/Working_Examples/3432/CH6/EX6.14/Ex6_14_f1.pdf b/Working_Examples/3432/CH6/EX6.14/Ex6_14_f1.pdf Binary files differnew file mode 100755 index 0000000..107b25e --- /dev/null +++ b/Working_Examples/3432/CH6/EX6.14/Ex6_14_f1.pdf diff --git a/Working_Examples/3432/CH6/EX6.14/Ex6_14_f2.pdf b/Working_Examples/3432/CH6/EX6.14/Ex6_14_f2.pdf Binary files differnew file mode 100755 index 0000000..69288db --- /dev/null +++ b/Working_Examples/3432/CH6/EX6.14/Ex6_14_f2.pdf diff --git a/Working_Examples/3432/CH6/EX6.14/Ex6_14_model.xcos b/Working_Examples/3432/CH6/EX6.14/Ex6_14_model.xcos new file mode 100755 index 0000000..3e29294 --- /dev/null +++ b/Working_Examples/3432/CH6/EX6.14/Ex6_14_model.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" finalIntegrationTime="5.0" title="Ex6_14_model"><!--Xcos - 1.0 - scilab-5.5.2 - 20160406 2040--><mxGraphModel as="model"><root><mxCell id="-2dd55334:14dcbdd0183:-7fd2"/><mxCell id="-2dd55334:14dcbdd0183:-7fd3" parent="-2dd55334:14dcbdd0183:-7fd2"/><BasicBlock dependsOnT="1" id="-2dd55334:14dcbdd0183:-7fa4" interfaceFunctionName="CLR" ordering="1" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="csslti4" simulationFunctionType="C_OR_FORTRAN" style="CLR;flip=false;mirror=false"><ScilabString as="exprs" height="2" width="1"><data column="0" line="0" value="1"/><data column="0" line="1" value="s"/></ScilabString><ScilabDouble as="realParameters" height="4" width="1"><data column="0" line="0" realPart="-0.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="1.0"/><data column="0" line="3" realPart="0.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="state" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="60.0" x="580.0" y="110.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-2dd55334:14dcbdd0183:-7f91" ordering="1" parent="-2dd55334:14dcbdd0183:-7fa4" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-2dd55334:14dcbdd0183:-7f90" ordering="1" parent="-2dd55334:14dcbdd0183:-7fa4" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="60.0" y="16.0"/></ExplicitOutputPort><BasicBlock dependsOnT="1" id="-2dd55334:14dcbdd0183:-7f98" interfaceFunctionName="CLR" ordering="2" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="csslti4" simulationFunctionType="C_OR_FORTRAN" style="CLR;flip=false;mirror=false"><ScilabString as="exprs" height="2" width="1"><data column="0" line="0" value="1"/><data column="0" line="1" value="1+s"/></ScilabString><ScilabDouble as="realParameters" height="4" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="1.0"/><data column="0" line="3" realPart="0.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="state" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="60.0" x="680.0" y="110.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-2dd55334:14dcbdd0183:-7f97" ordering="1" parent="-2dd55334:14dcbdd0183:-7f98" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-2dd55334:14dcbdd0183:-7f96" ordering="1" parent="-2dd55334:14dcbdd0183:-7f98" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="60.0" y="16.0"/></ExplicitOutputPort><BasicBlock dependsOnU="1" id="-2dd55334:14dcbdd0183:-7f5c" interfaceFunctionName="GAINBLK" ordering="3" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="gainblk" simulationFunctionType="C_OR_FORTRAN" style="GAINBLK;flip=false;mirror=false"><ScilabString as="exprs" height="2" width="1"><data column="0" line="0" value="10"/><data column="0" line="1" value="0"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="10.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="500.0" y="110.0"/></BasicBlock><ExplicitInputPort dataType="REAL_MATRIX" id="-2dd55334:14dcbdd0183:-7e80" ordering="1" parent="-2dd55334:14dcbdd0183:-7f5c" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitOutputPort dataType="REAL_MATRIX" id="-2dd55334:14dcbdd0183:-7e7f" ordering="1" parent="-2dd55334:14dcbdd0183:-7f5c" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ExplicitLink id="-2dd55334:14dcbdd0183:-7f41" parent="-2dd55334:14dcbdd0183:-7fd3" source="-2dd55334:14dcbdd0183:-7f90" target="-2dd55334:14dcbdd0183:-7f97"><mxGeometry as="geometry" x="240.0" y="30.0"/></ExplicitLink><Summation dependsOnU="1" id="-2dd55334:14dcbdd0183:-7f23" interfaceFunctionName="SUMMATION" ordering="4" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="summation" simulationFunctionType="C_OR_FORTRAN" style="SUMMATION;flip=false;mirror=false" value="+"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="[1;-1]"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="2" width="1"><data column="0" line="0" realPart="1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="60.0" width="40.0" x="300.0" y="100.0"/></Summation><ExplicitInputPort dataType="REAL_MATRIX" id="-2dd55334:14dcbdd0183:-7f22" ordering="1" parent="-2dd55334:14dcbdd0183:-7f23" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value="+"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitInputPort dataType="REAL_MATRIX" id="-2dd55334:14dcbdd0183:-7f21" ordering="2" parent="-2dd55334:14dcbdd0183:-7f23" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value="-"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="36.0"/></ExplicitInputPort><ExplicitOutputPort dataType="REAL_MATRIX" id="-2dd55334:14dcbdd0183:-7f20" ordering="1" parent="-2dd55334:14dcbdd0183:-7f23" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="26.0"/></ExplicitOutputPort><ExplicitLink id="-2dd55334:14dcbdd0183:-7f1e" parent="-2dd55334:14dcbdd0183:-7fd3" source="-2dd55334:14dcbdd0183:-7f20" target="-2dd55334:14dcbdd0183:-7fa9"><mxGeometry as="geometry" x="170.0" y="40.0"/></ExplicitLink><BasicBlock id="-2dd55334:14dcbdd0183:-7eeb" interfaceFunctionName="STEP_FUNCTION" ordering="5" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="STEP_FUNCTION;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="1.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="3" width="1"><data column="0" line="0" value="0"/><data column="0" line="1" value="0"/><data column="0" line="2" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"STEP",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="STEP"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="step_func"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="1.0"/><data column="0" line="1" realPart="1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7ee6"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="STEP"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7ee6"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1440.0"/><data column="1" line="0" realPart="-1390.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"OUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="OUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-2.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7ee2"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="OUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7ee2"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="84.0"/><data column="0" line="1" realPart="1456.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-20.0"/><data column="0" line="1" realPart="-1380.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="6" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="2740.0"/><data column="0" line="2" realPart="2700.0"/><data column="0" line="3" realPart="2700.0"/><data column="0" line="4" realPart="2740.0"/><data column="0" line="5" realPart="60.0"/></ScilabDouble><ScilabDouble height="6" width="1"><data column="0" line="0" realPart="-44.0"/><data column="0" line="1" realPart="-2780.0"/><data column="0" line="2" realPart="-2780.0"/><data column="0" line="3" realPart="-2700.0"/><data column="0" line="4" realPart="-2700.0"/><data column="0" line="5" realPart="4.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="50.0" y="100.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-2dd55334:14dcbdd0183:-7ec7" ordering="1" parent="-2dd55334:14dcbdd0183:-7eeb" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><BasicBlock dependsOnT="1" dependsOnU="1" id="-2dd55334:14dcbdd0183:-7fb6" interfaceFunctionName="CLR" ordering="6" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="csslti4" simulationFunctionType="C_OR_FORTRAN" style="CLR;flip=false;mirror=false"><ScilabString as="exprs" height="2" width="1"><data column="0" line="0" value="1+0.5*s"/><data column="0" line="1" value="1+0.1*s"/></ScilabString><ScilabDouble as="realParameters" height="4" width="1"><data column="0" line="0" realPart="-10.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="-40.0"/><data column="0" line="3" realPart="5.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="state" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="60.0" width="90.0" x="370.0" y="100.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-2dd55334:14dcbdd0183:-7fa9" ordering="1" parent="-2dd55334:14dcbdd0183:-7fb6" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="26.0"/></ExplicitInputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-2dd55334:14dcbdd0183:-7fa8" ordering="1" parent="-2dd55334:14dcbdd0183:-7fb6" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="90.0" y="26.0"/></ExplicitOutputPort><ExplicitLink id="-2dd55334:14dcbdd0183:-7e87" parent="-2dd55334:14dcbdd0183:-7fd3" source="-2dd55334:14dcbdd0183:-7e7f" target="-2dd55334:14dcbdd0183:-7f91"><mxGeometry as="geometry" x="190.0" y="30.0"/></ExplicitLink><ExplicitLink id="-2dd55334:14dcbdd0183:-7e82" parent="-2dd55334:14dcbdd0183:-7fd3" source="-2dd55334:14dcbdd0183:-7fa8" target="-2dd55334:14dcbdd0183:-7e80"><mxGeometry as="geometry" x="190.0" y="30.0"/></ExplicitLink><BasicBlock angle="90" blockType="h" id="-2dd55334:14dcbdd0183:-7e6e" interfaceFunctionName="CLOCK_c" ordering="7" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=true;mirror=false;rotation=90"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="1.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1779.0"/><data column="1" line="0" realPart="-1810.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7e5e"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7e5e"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="Ts"/><data column="0" line="1" value="0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.005"/><data column="0" line="1" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7e5c"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7e5c"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="2862.3773266666667"/><data column="1" line="0" realPart="-2908.333333333333"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="7.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="5.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7e59"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7e59"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="3420.0"/><data column="0" line="2" realPart="2872.8773266666667"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-44.0"/><data column="0" line="1" realPart="-3500.0"/><data column="0" line="2" realPart="-2897.333333333333"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="2871.71066"/><data column="0" line="1" realPart="1809.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-2912.333333333333"/><data column="0" line="1" realPart="-1786.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="2874.043993333333"/><data column="0" line="1" realPart="3460.71"/><data column="0" line="2" realPart="3420.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-2912.333333333333"/><data column="0" line="1" realPart="-3370.0"/><data column="0" line="2" realPart="-3370.0"/><data column="0" line="3" realPart="4.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="980.0" y="100.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="-6c44cd7c:14e334d52c6:-6f59" ordering="1" parent="-2dd55334:14dcbdd0183:-7e6e" style="CommandPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></CommandPort><mxCell connectable="0" id="-2dd55334:14dcbdd0183:-7e6e#identifier" parent="-2dd55334:14dcbdd0183:-7e6e" style="noLabel=0;opacity=0" value=" Period=Ts" vertex="1"><mxGeometry as="geometry" relative="1" x="0.5" y="1.1"/></mxCell><BasicBlock dependsOnT="1" id="-2dd55334:14dcbdd0183:-7dcc" interfaceFunctionName="CLR" ordering="8" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="csslti4" simulationFunctionType="C_OR_FORTRAN" style="CLR;flip=false;mirror=false"><ScilabString as="exprs" height="2" width="1"><data column="0" line="0" value="1"/><data column="0" line="1" value="s"/></ScilabString><ScilabDouble as="realParameters" height="4" width="1"><data column="0" line="0" realPart="-0.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="1.0"/><data column="0" line="3" realPart="0.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="state" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="60.0" x="600.0" y="290.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-2dd55334:14dcbdd0183:-7dcb" ordering="1" parent="-2dd55334:14dcbdd0183:-7dcc" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-2dd55334:14dcbdd0183:-7dca" ordering="1" parent="-2dd55334:14dcbdd0183:-7dcc" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="60.0" y="16.0"/></ExplicitOutputPort><BasicBlock dependsOnT="1" id="-2dd55334:14dcbdd0183:-7dc9" interfaceFunctionName="CLR" ordering="9" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="csslti4" simulationFunctionType="C_OR_FORTRAN" style="CLR;flip=false;mirror=false"><ScilabString as="exprs" height="2" width="1"><data column="0" line="0" value="1"/><data column="0" line="1" value="1+s"/></ScilabString><ScilabDouble as="realParameters" height="4" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="1.0"/><data column="0" line="3" realPart="0.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="state" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="60.0" x="700.0" y="290.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-2dd55334:14dcbdd0183:-7dc8" ordering="1" parent="-2dd55334:14dcbdd0183:-7dc9" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-2dd55334:14dcbdd0183:-7dc7" ordering="1" parent="-2dd55334:14dcbdd0183:-7dc9" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="60.0" y="16.0"/></ExplicitOutputPort><BasicBlock dependsOnU="1" id="-2dd55334:14dcbdd0183:-7dc6" interfaceFunctionName="GAINBLK" ordering="10" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="gainblk" simulationFunctionType="C_OR_FORTRAN" style="GAINBLK;flip=false;mirror=false"><ScilabString as="exprs" height="2" width="1"><data column="0" line="0" value="10"/><data column="0" line="1" value="0"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="10.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="520.0" y="290.0"/></BasicBlock><ExplicitInputPort dataType="REAL_MATRIX" id="-6c44cd7c:14e334d52c6:-68d2" ordering="1" parent="-2dd55334:14dcbdd0183:-7dc6" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitOutputPort dataType="REAL_MATRIX" id="-6c44cd7c:14e334d52c6:-68d1" ordering="1" parent="-2dd55334:14dcbdd0183:-7dc6" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ExplicitLink id="-2dd55334:14dcbdd0183:-7dc3" parent="-2dd55334:14dcbdd0183:-7fd3" source="-2dd55334:14dcbdd0183:-7dca" target="-2dd55334:14dcbdd0183:-7dc8"><mxGeometry as="geometry" x="240.0" y="210.0"/></ExplicitLink><Summation dependsOnU="1" id="-2dd55334:14dcbdd0183:-7dc2" interfaceFunctionName="SUMMATION" ordering="11" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="summation" simulationFunctionType="C_OR_FORTRAN" style="SUMMATION;flip=false;mirror=false" value="+"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="[1;-1]"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="2" width="1"><data column="0" line="0" realPart="1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="60.0" width="40.0" x="300.0" y="280.0"/></Summation><ExplicitInputPort dataType="REAL_MATRIX" id="-2dd55334:14dcbdd0183:-7dc1" ordering="1" parent="-2dd55334:14dcbdd0183:-7dc2" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value="+"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitInputPort dataType="REAL_MATRIX" id="-2dd55334:14dcbdd0183:-7dc0" ordering="2" parent="-2dd55334:14dcbdd0183:-7dc2" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value="-"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="36.0"/></ExplicitInputPort><ExplicitOutputPort dataType="REAL_MATRIX" id="-2dd55334:14dcbdd0183:-7dbf" ordering="1" parent="-2dd55334:14dcbdd0183:-7dc2" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="26.0"/></ExplicitOutputPort><ExplicitLink id="-2dd55334:14dcbdd0183:-7db4" parent="-2dd55334:14dcbdd0183:-7fd3" source="-6c44cd7c:14e334d52c6:-68d1" target="-2dd55334:14dcbdd0183:-7dcb"><mxGeometry as="geometry" x="190.0" y="210.0"/></ExplicitLink><BasicBlock blockType="d" dependsOnU="1" id="-2dd55334:14dcbdd0183:-7d7c" interfaceFunctionName="DLR" ordering="12" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="dsslti4" simulationFunctionType="C_OR_FORTRAN" style="DLR;flip=false;mirror=false"><ScilabString as="exprs" height="2" width="1"><data column="0" line="0" value="-3.8+4.2*z"/><data column="0" line="1" value="-0.6+z"/></ScilabString><ScilabDouble as="realParameters" height="4" width="1"><data column="0" line="0" realPart="0.6"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="-1.2799999999999998"/><data column="0" line="3" realPart="4.2"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="dState" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="50.0" width="110.0" x="380.0" y="290.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="69478aa4:1665d477b3f:-72ec" ordering="1" parent="-2dd55334:14dcbdd0183:-7d7c" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="69478aa4:1665d477b3f:-72eb" ordering="1" parent="-2dd55334:14dcbdd0183:-7d7c" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="110.0" y="16.0"/></ExplicitOutputPort><ControlPort dataType="UNKNOW_TYPE" id="69478aa4:1665d477b3f:-72ea" ordering="1" parent="-2dd55334:14dcbdd0183:-7d7c" style="ControlPort;align=center;verticalAlign=top;spacing=10.0;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="56.0" y="-8.0"/></ControlPort><ExplicitLink id="-2dd55334:14dcbdd0183:-7d5c" parent="-2dd55334:14dcbdd0183:-7fd3" source="69478aa4:1665d477b3f:-72eb" target="-6c44cd7c:14e334d52c6:-68d2"><mxGeometry as="geometry" x="190.0" y="80.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="510.0" y="310.0"/></Array></mxGeometry></ExplicitLink><BasicBlock blockType="h" id="-2dd55334:14dcbdd0183:-7d59" interfaceFunctionName="CLOCK_c" ordering="13" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="1.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1499.0"/><data column="1" line="0" realPart="-1530.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7e5e"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7e5e"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="Ts"/><data column="0" line="1" value="0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.005"/><data column="0" line="1" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7e5c"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7e5c"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="2400.3773266666667"/><data column="1" line="0" realPart="-2446.333333333333"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="7.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="5.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7e59"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7e59"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="2860.0"/><data column="0" line="2" realPart="2410.8773266666667"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-44.0"/><data column="0" line="1" realPart="-2940.0"/><data column="0" line="2" realPart="-2435.333333333333"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="2409.71066"/><data column="0" line="1" realPart="1529.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-2450.333333333333"/><data column="0" line="1" realPart="-1506.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="2412.043993333333"/><data column="0" line="1" realPart="2900.71"/><data column="0" line="2" realPart="2860.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-2450.333333333333"/><data column="0" line="1" realPart="-2810.0"/><data column="0" line="2" realPart="-2810.0"/><data column="0" line="3" realPart="4.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="420.0" y="220.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="-2ed398c8:14e2e6007ad:-7214" ordering="1" parent="-2dd55334:14dcbdd0183:-7d59" style="CommandPort;align=center;verticalAlign=bottom;spacing=10.0;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><mxCell connectable="0" id="-2dd55334:14dcbdd0183:-7d59#identifier" parent="-2dd55334:14dcbdd0183:-7d59" style="noLabel=0;opacity=0" value=" Period=Ts" vertex="1"><mxGeometry as="geometry" relative="1" x="0.5" y="1.1"><mxPoint as="offset" x="51.0" y="-30.0"/></mxGeometry></mxCell><CommandControlLink id="-2dd55334:14dcbdd0183:-7d55" parent="-2dd55334:14dcbdd0183:-7fd3" source="-2ed398c8:14e2e6007ad:-7214" target="69478aa4:1665d477b3f:-72ea"><mxGeometry as="geometry" x="190.0" y="30.0"/></CommandControlLink><ExplicitLink id="-2dd55334:14dcbdd0183:-7cbb" parent="-2dd55334:14dcbdd0183:-7fd3" source="-2dd55334:14dcbdd0183:-7dbf" target="69478aa4:1665d477b3f:-72ec"><mxGeometry as="geometry" x="190.0" y="80.0"/></ExplicitLink><BasicBlock dependsOnU="1" id="-2dd55334:14dcbdd0183:-7c65" interfaceFunctionName="MUX_f" ordering="14" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="mux" simulationFunctionType="TYPE_1" style="MUX_f;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="2"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="10.0" x="860.0" y="180.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="-2dd55334:14dcbdd0183:-7c64" ordering="1" parent="-2dd55334:14dcbdd0183:-7c65" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ExplicitInputPort><ExplicitInputPort dataColumns="1" dataLines="-2" dataType="REAL_MATRIX" id="-2dd55334:14dcbdd0183:-7c63" ordering="2" parent="-2dd55334:14dcbdd0183:-7c65" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="26.0"/></ExplicitInputPort><ExplicitOutputPort dataColumns="1" dataLines="0" dataType="REAL_MATRIX" id="-2dd55334:14dcbdd0183:-7c62" ordering="1" parent="-2dd55334:14dcbdd0183:-7c65" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="10.0" y="16.0"/></ExplicitOutputPort><SplitBlock id="-2dd55334:14dcbdd0183:-7c3f" ordering="15" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="797.0" y="187.0"/></SplitBlock><ExplicitInputPort dataType="UNKNOW_TYPE" id="-2dd55334:14dcbdd0183:-7c3e" ordering="1" parent="-2dd55334:14dcbdd0183:-7c3f" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ExplicitInputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="-2dd55334:14dcbdd0183:-7c3d" ordering="1" parent="-2dd55334:14dcbdd0183:-7c3f" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="-2dd55334:14dcbdd0183:-7c3c" ordering="2" parent="-2dd55334:14dcbdd0183:-7c3f" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitLink id="-2dd55334:14dcbdd0183:-7c3b" parent="-2dd55334:14dcbdd0183:-7fd3" source="-2dd55334:14dcbdd0183:-7f96" target="-2dd55334:14dcbdd0183:-7c3e"><mxGeometry as="geometry" x="190.0" y="30.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="800.0" y="130.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="-2dd55334:14dcbdd0183:-7c3a" parent="-2dd55334:14dcbdd0183:-7fd3" source="-2dd55334:14dcbdd0183:-7c3d" target="-2dd55334:14dcbdd0183:-7f21"><mxGeometry as="geometry" x="190.0" y="30.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="270.0" y="190.0"/><mxPoint x="270.0" y="140.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="-2dd55334:14dcbdd0183:-7c40" parent="-2dd55334:14dcbdd0183:-7fd3" source="-2dd55334:14dcbdd0183:-7c3c" target="-2dd55334:14dcbdd0183:-7c64"><mxGeometry as="geometry" x="190.0" y="30.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="830.0" y="190.0"/></Array></mxGeometry></ExplicitLink><SplitBlock id="-2dd55334:14dcbdd0183:-7c38" ordering="16" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="797.0" y="307.0"/></SplitBlock><ExplicitInputPort dataType="UNKNOW_TYPE" id="-2dd55334:14dcbdd0183:-7c37" ordering="1" parent="-2dd55334:14dcbdd0183:-7c38" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ExplicitInputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="-2dd55334:14dcbdd0183:-7c36" ordering="1" parent="-2dd55334:14dcbdd0183:-7c38" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="-2dd55334:14dcbdd0183:-7c35" ordering="2" parent="-2dd55334:14dcbdd0183:-7c38" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitLink id="-2dd55334:14dcbdd0183:-7c34" parent="-2dd55334:14dcbdd0183:-7fd3" source="-2dd55334:14dcbdd0183:-7dc7" target="-2dd55334:14dcbdd0183:-7c37"><mxGeometry as="geometry" x="190.0" y="80.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ExplicitLink><ExplicitLink id="-2dd55334:14dcbdd0183:-7c33" parent="-2dd55334:14dcbdd0183:-7fd3" source="-2dd55334:14dcbdd0183:-7c36" target="-2dd55334:14dcbdd0183:-7dc0"><mxGeometry as="geometry" x="150.0" y="80.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="800.0" y="370.0"/><mxPoint x="270.0" y="370.0"/><mxPoint x="270.0" y="320.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="-2dd55334:14dcbdd0183:-7c39" parent="-2dd55334:14dcbdd0183:-7fd3" source="-2dd55334:14dcbdd0183:-7c35" target="-2dd55334:14dcbdd0183:-7c63"><mxGeometry as="geometry" x="190.0" y="30.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="800.0" y="260.0"/><mxPoint x="800.0" y="210.0"/></Array></mxGeometry></ExplicitLink><BasicBlock dependsOnU="1" id="-2dd55334:14dcbdd0183:-7b7d" interfaceFunctionName="SWITCH2_m" ordering="17" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="switch2_m" simulationFunctionType="C_OR_FORTRAN" style="SWITCH2_m;flip=false;mirror=false"><ScilabString as="exprs" height="4" width="1"><data column="0" line="0" value="1"/><data column="0" line="1" value="0"/><data column="0" line="2" value="1"/><data column="0" line="3" value="1"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="160.0" y="180.0"/></BasicBlock><ExplicitInputPort dataType="REAL_MATRIX" id="69478aa4:1665d477b3f:-72f1" ordering="1" parent="-2dd55334:14dcbdd0183:-7b7d" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ExplicitInputPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="69478aa4:1665d477b3f:-72f0" ordering="2" parent="-2dd55334:14dcbdd0183:-7b7d" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitInputPort dataType="REAL_MATRIX" id="69478aa4:1665d477b3f:-72ef" ordering="3" parent="-2dd55334:14dcbdd0183:-7b7d" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="26.0"/></ExplicitInputPort><ExplicitOutputPort dataType="REAL_MATRIX" id="69478aa4:1665d477b3f:-72ee" ordering="1" parent="-2dd55334:14dcbdd0183:-7b7d" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><BasicBlock dependsOnT="1" id="-2dd55334:14dcbdd0183:-7b67" interfaceFunctionName="RAMP" ordering="18" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="ramp" simulationFunctionType="C_OR_FORTRAN" style="RAMP;flip=false;mirror=false"><ScilabString as="exprs" height="3" width="1"><data column="0" line="0" value="1"/><data column="0" line="1" value="0"/><data column="0" line="2" value="0"/></ScilabString><ScilabDouble as="realParameters" height="3" width="1"><data column="0" line="0" realPart="1.0"/><data column="0" line="1" realPart="0.0"/><data column="0" line="2" realPart="0.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="50.0" y="260.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-54e7812b:14dcc58f4a2:-64d4" ordering="1" parent="-2dd55334:14dcbdd0183:-7b67" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ExplicitLink id="-2dd55334:14dcbdd0183:-7b62" parent="-2dd55334:14dcbdd0183:-7fd3" source="-54e7812b:14dcc58f4a2:-64d4" target="69478aa4:1665d477b3f:-72ef"><mxGeometry as="geometry" x="40.0" y="20.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="130.0" y="280.0"/><mxPoint x="130.0" y="210.0"/></Array></mxGeometry></ExplicitLink><BasicBlock blockType="d" id="-2dd55334:14dcbdd0183:-7b5d" interfaceFunctionName="CONST_f" ordering="19" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="cstblk" simulationFunctionType="TYPE_1" style="CONST_f;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="sw"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="50.0" y="180.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="69478aa4:1665d477b3f:-72fd" ordering="1" parent="-2dd55334:14dcbdd0183:-7b5d" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ExplicitLink id="-2dd55334:14dcbdd0183:-7b56" parent="-2dd55334:14dcbdd0183:-7fd3" source="69478aa4:1665d477b3f:-72fd" target="69478aa4:1665d477b3f:-72f0"><mxGeometry as="geometry" x="40.0" y="20.0"/></ExplicitLink><ExplicitLink id="-2dd55334:14dcbdd0183:-7809" parent="-2dd55334:14dcbdd0183:-7fd3" source="-2dd55334:14dcbdd0183:-7ec7" target="69478aa4:1665d477b3f:-72f1"><mxGeometry as="geometry" x="40.0" y="20.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="130.0" y="120.0"/><mxPoint x="130.0" y="190.0"/></Array></mxGeometry></ExplicitLink><SplitBlock id="-2dd55334:14dcbdd0183:-77fc" ordering="20" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="227.0" y="197.0"/></SplitBlock><ExplicitInputPort dataType="UNKNOW_TYPE" id="-2dd55334:14dcbdd0183:-77fb" ordering="1" parent="-2dd55334:14dcbdd0183:-77fc" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ExplicitInputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="-2dd55334:14dcbdd0183:-77fa" ordering="1" parent="-2dd55334:14dcbdd0183:-77fc" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="-2dd55334:14dcbdd0183:-77f9" ordering="2" parent="-2dd55334:14dcbdd0183:-77fc" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitLink id="-2dd55334:14dcbdd0183:-77f8" parent="-2dd55334:14dcbdd0183:-7fd3" source="69478aa4:1665d477b3f:-72ee" target="-2dd55334:14dcbdd0183:-77fb"><mxGeometry as="geometry" x="40.0" y="20.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ExplicitLink><ExplicitLink id="-2dd55334:14dcbdd0183:-77f7" parent="-2dd55334:14dcbdd0183:-7fd3" source="-2dd55334:14dcbdd0183:-77fa" target="-2dd55334:14dcbdd0183:-7f22"><mxGeometry as="geometry" x="40.0" y="20.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="230.0" y="120.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="-2dd55334:14dcbdd0183:-77fd" parent="-2dd55334:14dcbdd0183:-7fd3" source="-2dd55334:14dcbdd0183:-77f9" target="-2dd55334:14dcbdd0183:-7dc1"><mxGeometry as="geometry" x="40.0" y="20.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="230.0" y="300.0"/></Array></mxGeometry></ExplicitLink><TextBlock id="-6cad6c1c:14dd22d9551:-7f7a" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=18;flip=false;mirror=false" value="Model for Ex6_14"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="Model for Ex6_14"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="Model for Ex6_14"/></ScilabString><mxGeometry as="geometry" height="40.0" width="160.0" x="380.0" y="30.0"/></TextBlock><BasicBlock dependsOnU="1" id="-524d31fd:16685c96a44:-7f73" interfaceFunctionName="CSCOPE" ordering="21" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="cscope" simulationFunctionType="C_OR_FORTRAN" style="CSCOPE;flip=false;mirror=false"><ScilabString as="exprs" height="10" width="1"><data column="0" line="0" value="1 3 5 7 9 11 13 15"/><data column="0" line="1" value="-1"/><data column="0" line="2" value="[]"/><data column="0" line="3" value="[600;400]"/><data column="0" line="4" value="-2"/><data column="0" line="5" value="2"/><data column="0" line="6" value="5"/><data column="0" line="7" value="20"/><data column="0" line="8" value="0"/><data column="0" line="9" value=""/></ScilabString><ScilabDouble as="realParameters" height="4" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="-2.0"/><data column="0" line="2" realPart="2.0"/><data column="0" line="3" realPart="5.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="15" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="1.0"/><data column="0" line="4" realPart="3.0"/><data column="0" line="5" realPart="5.0"/><data column="0" line="6" realPart="7.0"/><data column="0" line="7" realPart="9.0"/><data column="0" line="8" realPart="11.0"/><data column="0" line="9" realPart="13.0"/><data column="0" line="10" realPart="15.0"/><data column="0" line="11" realPart="-1.0"/><data column="0" line="12" realPart="-1.0"/><data column="0" line="13" realPart="600.0"/><data column="0" line="14" realPart="400.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="1140.0" y="180.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="-524d31fd:16685c96a44:-7ec7" ordering="1" parent="-524d31fd:16685c96a44:-7f73" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ControlPort dataType="UNKNOW_TYPE" id="-524d31fd:16685c96a44:-7ec6" ordering="1" parent="-524d31fd:16685c96a44:-7f73" style="ControlPort;align=center;verticalAlign=top;spacing=10.0;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><BasicBlock blockType="d" id="40aa8508:1685b27ff7b:-7d91" interfaceFunctionName="TOWS_c" ordering="22" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="tows_c" simulationFunctionType="C_OR_FORTRAN" style="TOWS_c"><ScilabString as="exprs" height="3" width="1"><data column="0" line="0" value="128"/><data column="0" line="1" value="time_resp"/><data column="0" line="2" value="0"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="11" width="1"><data column="0" line="0" realPart="128.0"/><data column="0" line="1" realPart="9.0"/><data column="0" line="2" realPart="116.0"/><data column="0" line="3" realPart="105.0"/><data column="0" line="4" realPart="109.0"/><data column="0" line="5" realPart="101.0"/><data column="0" line="6" realPart="95.0"/><data column="0" line="7" realPart="114.0"/><data column="0" line="8" realPart="101.0"/><data column="0" line="9" realPart="115.0"/><data column="0" line="10" realPart="112.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="80.0" x="1020.0" y="240.0"/></BasicBlock><ExplicitInputPort dataType="UNKNOW_TYPE" id="40aa8508:1685b27ff7b:-7d6f" ordering="1" parent="40aa8508:1685b27ff7b:-7d91" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ControlPort dataType="UNKNOW_TYPE" id="40aa8508:1685b27ff7b:-7d6e" ordering="1" parent="40aa8508:1685b27ff7b:-7d91" style="ControlPort;align=center;verticalAlign=top;spacing=10.0;rotation=90"><mxGeometry as="geometry" height="8.0" width="8.0" x="36.0" y="-8.0"/></ControlPort><SplitBlock id="40aa8508:1685b27ff7b:-7d84" interfaceFunctionName="CLKSPLIT_f" ordering="23" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionType="DEFAULT" style="CLKSPLIT_f"><mxGeometry as="geometry" height="7.0" width="7.0" x="1057.0" y="117.0"/></SplitBlock><ControlPort dataType="UNKNOW_TYPE" id="40aa8508:1685b27ff7b:-7d83" ordering="1" parent="40aa8508:1685b27ff7b:-7d84" style="ControlPort;align=center;verticalAlign=top;spacing=10.0;rotation=90" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-4.0" y="-8.0"/></ControlPort><CommandPort dataType="UNKNOW_TYPE" id="40aa8508:1685b27ff7b:-7d82" ordering="1" parent="40aa8508:1685b27ff7b:-7d84" style="CommandPort;align=center;verticalAlign=bottom;spacing=10.0;rotation=90" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-4.0" y="7.0"/></CommandPort><CommandPort dataType="UNKNOW_TYPE" id="40aa8508:1685b27ff7b:-7d81" ordering="2" parent="40aa8508:1685b27ff7b:-7d84" style="CommandPort;align=center;verticalAlign=bottom;spacing=10.0;rotation=90" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-4.0" y="7.0"/></CommandPort><CommandControlLink id="40aa8508:1685b27ff7b:-7d80" parent="-2dd55334:14dcbdd0183:-7fd3" source="-6c44cd7c:14e334d52c6:-6f59" target="40aa8508:1685b27ff7b:-7d83"><mxGeometry as="geometry"><Array as="points" scilabClass=""/></mxGeometry></CommandControlLink><CommandControlLink id="40aa8508:1685b27ff7b:-7d7f" parent="-2dd55334:14dcbdd0183:-7fd3" source="40aa8508:1685b27ff7b:-7d82" target="-524d31fd:16685c96a44:-7ec6"><mxGeometry as="geometry"><Array as="points" scilabClass=""/></mxGeometry></CommandControlLink><CommandControlLink id="40aa8508:1685b27ff7b:-7d85" parent="-2dd55334:14dcbdd0183:-7fd3" source="40aa8508:1685b27ff7b:-7d81" target="40aa8508:1685b27ff7b:-7d6e"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="1070.0" y="240.0"/><mxPoint as="targetPoint" x="1060.0" y="120.0"/></mxGeometry></CommandControlLink><SplitBlock id="40aa8508:1685b27ff7b:-7d77" ordering="24" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionType="DEFAULT"><mxGeometry as="geometry" height="7.0" width="7.0" x="977.0" y="197.0"/></SplitBlock><ExplicitInputPort dataType="UNKNOW_TYPE" id="40aa8508:1685b27ff7b:-7d76" ordering="1" parent="40aa8508:1685b27ff7b:-7d77" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ExplicitInputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="40aa8508:1685b27ff7b:-7d75" ordering="1" parent="40aa8508:1685b27ff7b:-7d77" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="40aa8508:1685b27ff7b:-7d74" ordering="2" parent="40aa8508:1685b27ff7b:-7d77" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitLink id="40aa8508:1685b27ff7b:-7d73" parent="-2dd55334:14dcbdd0183:-7fd3" source="-2dd55334:14dcbdd0183:-7c62" target="40aa8508:1685b27ff7b:-7d76"><mxGeometry as="geometry"><Array as="points" scilabClass=""/></mxGeometry></ExplicitLink><ExplicitLink id="40aa8508:1685b27ff7b:-7d72" parent="-2dd55334:14dcbdd0183:-7fd3" source="40aa8508:1685b27ff7b:-7d75" target="-524d31fd:16685c96a44:-7ec7"><mxGeometry as="geometry"><Array as="points" scilabClass=""/></mxGeometry></ExplicitLink><ExplicitLink id="40aa8508:1685b27ff7b:-7d78" parent="-2dd55334:14dcbdd0183:-7fd3" source="40aa8508:1685b27ff7b:-7d74" target="40aa8508:1685b27ff7b:-7d6f"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="1020.0" y="260.0"/><mxPoint as="targetPoint" x="980.0" y="200.0"/><Array as="points" scilabClass=""><mxPoint x="980.0" y="260.0"/></Array></mxGeometry></ExplicitLink></root></mxGraphModel><mxCell as="defaultParent" id="-2dd55334:14dcbdd0183:-7fd3" parent="-2dd55334:14dcbdd0183:-7fd2"/></XcosDiagram>
\ No newline at end of file diff --git a/Working_Examples/3432/CH6/EX6.15/DEPENDENCIES/fig_settings.sci b/Working_Examples/3432/CH6/EX6.15/DEPENDENCIES/fig_settings.sci new file mode 100755 index 0000000..5d5e7d4 --- /dev/null +++ b/Working_Examples/3432/CH6/EX6.15/DEPENDENCIES/fig_settings.sci @@ -0,0 +1,9 @@ +//------------------------------------------------------------------
+//figure handel settings
+f=get("current_figure"); //Current figure handle
+f.background=8; //make the figure window background white
+l=f.children(1);
+l.background=8 ;//make the text background white
+id=color('grey');
+xgrid(id);
+//------------------------------------------------------------------
diff --git a/Working_Examples/3432/CH6/EX6.15/Ex6_15.sce b/Working_Examples/3432/CH6/EX6.15/Ex6_15.sce new file mode 100755 index 0000000..2a3b9a4 --- /dev/null +++ b/Working_Examples/3432/CH6/EX6.15/Ex6_15.sce @@ -0,0 +1,78 @@ +//Example 6.15 +//Lead compensation for Temperature Control System. + +xdel(winsid())//close all graphics Windows +clear; +clc; +//------------------------------------------------------------------ +//System transfer function +s=poly(0,'s'); +numG=1; +denG=(s/0.5+1)*(s+1)*(s/2+1); +sysG=numG/denG; +//Dc gain +K=9; + +KGs=syslin('c',K*sysG); + +//Lead compensator 1 +numD=s+1; +denD=s/3+1; +D1=numD/denD; +D1s=syslin('c',D1); + +KGD1s=D1s*KGs; //compensated system + +//Lead compensator 2 +numD=s/1.5+1; +denD=s/15+1; +D2=numD/denD; +D2s=syslin('c',D2); + +KGD2s=D2s*KGs; //compensated system + +//The bode plot of the system with K +bode([KGs;KGD1s;KGD2s],0.1/2/%pi,10/2/%pi,['KG';'KGD1';'KGD2'],"rad"); +exec .\fig_settings.sci; // custom script for setting figure properties +title('Bode plot for lead compensation design','fontsize',3) +//------------------------------------------------------------------ +//Margins of uncompensated and compensated systems +[gm1,wcg1]=g_margin(KGs); +[pm1,wcp1]=p_margin(KGs); +disp(wcp1*2*%pi,"Wcp",wcg1*2*%pi,"Wcg",pm1,... +"Phase margin",gm1,"Gain margin",... +"Uncompensated system :") + +[gm2,wcg2]=g_margin(KGD1s); +[pm2,wcp2]=p_margin(KGD1s); +disp(wcp2*2*%pi,"Wcp",wcg2*2*%pi,"Wcg",pm2,... +"Phase margin",gm2,"Gain margin",... +"System with D1 compensator :") + +[gm3,wcg3]=g_margin(KGD2s); +[pm3,wcp3]=p_margin(KGD2s); +disp(wcp3*2*%pi,"Wcp",wcg3*2*%pi,"Wcg",pm3,... +"Phase margin",gm3,"Gain margin",... +"System with D2 compensator :") +//------------------------------------------------------------------ +//step response comparison +//closed loop system +Gc1=KGD1s/(KGD1s+1); +Gc2=KGD2s/(KGD2s+1); +figure; +t=0:0.05:20; +v1=csim('step',t,Gc1); +v2=csim('step',t,Gc2); +plot2d([t',t'],[v1',v2']) + +//Title, labels and grid to the figure +exec .\fig_settings.sci; //custom script for setting figure properties +title('Step response for lead compensation design','fontsize',3) +xlabel('Time t (sec.)','fontsize',2) +ylabel('y','fontsize',2) + +xset("font size", 3); +xarrows([2.5;1.5],[1.3;1.2],-1,1) +xstring(2.5,1.3,"D2",0,0) +xstring(4,1.2,"D1",0,0) +//------------------------------------------------------------------ diff --git a/Working_Examples/3432/CH6/EX6.15/Ex6_15_f0.pdf b/Working_Examples/3432/CH6/EX6.15/Ex6_15_f0.pdf Binary files differnew file mode 100755 index 0000000..1e7a2c4 --- /dev/null +++ b/Working_Examples/3432/CH6/EX6.15/Ex6_15_f0.pdf diff --git a/Working_Examples/3432/CH6/EX6.15/Ex6_15_f1.pdf b/Working_Examples/3432/CH6/EX6.15/Ex6_15_f1.pdf Binary files differnew file mode 100755 index 0000000..7726e01 --- /dev/null +++ b/Working_Examples/3432/CH6/EX6.15/Ex6_15_f1.pdf diff --git a/Working_Examples/3432/CH6/EX6.16/DEPENDENCIES/fig_settings.sci b/Working_Examples/3432/CH6/EX6.16/DEPENDENCIES/fig_settings.sci new file mode 100755 index 0000000..5d5e7d4 --- /dev/null +++ b/Working_Examples/3432/CH6/EX6.16/DEPENDENCIES/fig_settings.sci @@ -0,0 +1,9 @@ +//------------------------------------------------------------------
+//figure handel settings
+f=get("current_figure"); //Current figure handle
+f.background=8; //make the figure window background white
+l=f.children(1);
+l.background=8 ;//make the text background white
+id=color('grey');
+xgrid(id);
+//------------------------------------------------------------------
diff --git a/Working_Examples/3432/CH6/EX6.16/Ex6_16.sce b/Working_Examples/3432/CH6/EX6.16/Ex6_16.sce new file mode 100755 index 0000000..a21196a --- /dev/null +++ b/Working_Examples/3432/CH6/EX6.16/Ex6_16.sce @@ -0,0 +1,55 @@ +//Example 6.16 +//Lead compensation for Servomechanism System. + +xdel(winsid())//close all graphics Windows +clear; +clc; +//------------------------------------------------------------------ +//System transfer function +s=poly(0,'s'); +numG=10; +denG=s*(s/2.5+1)*(s/6+1); +G=numG/denG; +//Dc gain +K=1; + +KGs=syslin('c',K*G); + +//Lead compensator 1 +numD=s/2+1; +denD=s/20+1; +D1=numD/denD; +D1s=syslin('c',D1); + +KGD1s=D1s*KGs; //compensated system + +//Lead compensator 2 +numD=s/4+1; +denD=s/40+1; +D2=D1*numD/denD; //double compensator +D2s=syslin('c',D2); + + +KGD2s=D2s*KGs; //compensated system + +//The bode plot of the system with K +bode([KGs;KGD1s;KGD2s],0.1/2/%pi,100/2/%pi,['KG';'KGD1';'KGD2'],"rad"); +exec .\fig_settings.sci; //custom script for setting figure properties +title('Bode plot for lead compensation design','fontsize',3) +//------------------------------------------------------------------ +//Margins of uncompensated and compensated systems +[gm1,wcg1]=g_margin(KGs); +[pm1,wcp1]=p_margin(KGs); +disp(wcp1*2*%pi,"Wcp",wcg1*2*%pi,"Wcg",pm1,... +"Phase margin",gm1,"Gain margin","Uncompensated system :") + +[gm2,wcg2]=g_margin(KGD1s); +[pm2,wcp2]=p_margin(KGD1s); +disp(wcp2*2*%pi,"Wcp",wcg2*2*%pi,"Wcg",pm2,... +"Phase margin",gm2,"Gain margin","System with D1 compensator :") + +[gm3,wcg3]=g_margin(KGD2s); +[pm3,wcp3]=p_margin(KGD2s); +disp(wcp3*2*%pi,"Wcp",wcg3*2*%pi,"Wcg",pm3,... +"Phase margin",gm3,"Gain margin","System with D2 compensator :") +//------------------------------------------------------------------ diff --git a/Working_Examples/3432/CH6/EX6.16/Ex6_16_f0.pdf b/Working_Examples/3432/CH6/EX6.16/Ex6_16_f0.pdf Binary files differnew file mode 100755 index 0000000..b236af6 --- /dev/null +++ b/Working_Examples/3432/CH6/EX6.16/Ex6_16_f0.pdf diff --git a/Working_Examples/3432/CH6/EX6.17/DEPENDENCIES/fig_settings.sci b/Working_Examples/3432/CH6/EX6.17/DEPENDENCIES/fig_settings.sci new file mode 100755 index 0000000..5d5e7d4 --- /dev/null +++ b/Working_Examples/3432/CH6/EX6.17/DEPENDENCIES/fig_settings.sci @@ -0,0 +1,9 @@ +//------------------------------------------------------------------
+//figure handel settings
+f=get("current_figure"); //Current figure handle
+f.background=8; //make the figure window background white
+l=f.children(1);
+l.background=8 ;//make the text background white
+id=color('grey');
+xgrid(id);
+//------------------------------------------------------------------
diff --git a/Working_Examples/3432/CH6/EX6.17/Ex6_17.sce b/Working_Examples/3432/CH6/EX6.17/Ex6_17.sce new file mode 100755 index 0000000..22af946 --- /dev/null +++ b/Working_Examples/3432/CH6/EX6.17/Ex6_17.sce @@ -0,0 +1,57 @@ +//Example 6.17 +//Lag compensation for Temperature Control System. + +xdel(winsid())//close all graphics Windows +clear; +clc; +//------------------------------------------------------------------ +//System transfer function +s=poly(0,'s'); +numG=1; +denG=(s/0.5+1)*(s+1)*(s/2+1); +G=numG/denG; +//Dc gain +K=3; //to set phase requirement + +KGs=syslin('c',K*G); + +//Lag compensator +numD=5*s+1; +denD=15*s+1; +D=3*numD/denD; +Ds=syslin('c',D); + +KGDs=Ds*KGs; //compensated system + +//The bode plot of the system with K +bode([KGs;KGDs],0.01/2/%pi,10/2/%pi,['KG';'KGD'],"rad"); +exec .\fig_settings.sci; //custom script for setting figure properties +title('Frequency response of lag-compensation design','fontsize',3) + +//------------------------------------------------------------------ +//Margins of uncompensated and compensated systems +[gm1,wcg1]=g_margin(KGs); +[pm1,wcp1]=p_margin(KGs); +disp(wcp1*2*%pi,"Wcp",wcg1*2*%pi,"Wcg",pm1,"Phase margin",... +gm1,"Gain margin","Uncompensated system :") + +[gm2,wcg2]=g_margin(KGDs); +[pm2,wcp2]=p_margin(KGDs); +disp(wcp2*2*%pi,"Wcp",wcg2*2*%pi,"Wcg",pm2,"Phase margin",... +gm2,"Gain margin","Compensated system :") + +//------------------------------------------------------------------ +//step response +//closed loop system +Gc=KGDs/(KGDs+1); +figure; +t=0:0.05:20; +v=csim('step',t,Gc); +plot2d(t,v) + +//Title, labels and grid to the figure +exec .\fig_settings.sci; //custom script for setting figure properties +title('Step response for lag compensation design','fontsize',3) +xlabel('Time t (sec.)','fontsize',2) +ylabel('y','fontsize',2) +//------------------------------------------------------------------ diff --git a/Working_Examples/3432/CH6/EX6.17/Ex6_17_f0.pdf b/Working_Examples/3432/CH6/EX6.17/Ex6_17_f0.pdf Binary files differnew file mode 100755 index 0000000..441cf5b --- /dev/null +++ b/Working_Examples/3432/CH6/EX6.17/Ex6_17_f0.pdf diff --git a/Working_Examples/3432/CH6/EX6.17/Ex6_17_f1.pdf b/Working_Examples/3432/CH6/EX6.17/Ex6_17_f1.pdf Binary files differnew file mode 100755 index 0000000..607607c --- /dev/null +++ b/Working_Examples/3432/CH6/EX6.17/Ex6_17_f1.pdf diff --git a/Working_Examples/3432/CH6/EX6.18/DEPENDENCIES/fig_settings.sci b/Working_Examples/3432/CH6/EX6.18/DEPENDENCIES/fig_settings.sci new file mode 100755 index 0000000..5d5e7d4 --- /dev/null +++ b/Working_Examples/3432/CH6/EX6.18/DEPENDENCIES/fig_settings.sci @@ -0,0 +1,9 @@ +//------------------------------------------------------------------
+//figure handel settings
+f=get("current_figure"); //Current figure handle
+f.background=8; //make the figure window background white
+l=f.children(1);
+l.background=8 ;//make the text background white
+id=color('grey');
+xgrid(id);
+//------------------------------------------------------------------
diff --git a/Working_Examples/3432/CH6/EX6.18/Ex6_18.sce b/Working_Examples/3432/CH6/EX6.18/Ex6_18.sce new file mode 100755 index 0000000..0ec43ba --- /dev/null +++ b/Working_Examples/3432/CH6/EX6.18/Ex6_18.sce @@ -0,0 +1,42 @@ +//Example 6.18 +//Lag compensation for DC motor. + +xdel(winsid())//close all graphics Windows +clear; +clc; +//------------------------------------------------------------------ +//System transfer function +s=poly(0,'s'); +g=1/s/(s+1); +K=10; //DC gain +KGs=syslin('c',K*g); + +//Lag compensator +numD=10*s+1; //0.1 +denD=100*s+1; //0.01 +D=numD/denD; +Ds=syslin('c',D); + +KGDs=Ds*KGs; //compensated system + +//The bode plot of the system +bode([KGs;KGDs],0.001/2/%pi,10/2/%pi,['KG(s)';'D(s)G(s)'],"rad"); +exec .\fig_settings.sci; // custom script for setting figure properties +title('Frequency response of lag-compensation design... + of DC motor','fontsize',3) +//------------------------------------------------------------------ +//step response +//closed loop system +Gc=KGDs/(KGDs+1); +figure; +t=0:0.05:50; +v=csim('step',t,Gc); +plot(t,v,2) + +//Title, labels and grid to the figure +exec .\fig_settings.sci; // custom script for setting figure properties +title('Step response for Lag-compensation design... + of DC motor','fontsize',3) +xlabel('Time t (sec.)','fontsize',2) +ylabel('y','fontsize',2) +//------------------------------------------------------------------ diff --git a/Working_Examples/3432/CH6/EX6.18/Ex6_18_f0.pdf b/Working_Examples/3432/CH6/EX6.18/Ex6_18_f0.pdf Binary files differnew file mode 100755 index 0000000..5f85523 --- /dev/null +++ b/Working_Examples/3432/CH6/EX6.18/Ex6_18_f0.pdf diff --git a/Working_Examples/3432/CH6/EX6.18/Ex6_18_f1.pdf b/Working_Examples/3432/CH6/EX6.18/Ex6_18_f1.pdf Binary files differnew file mode 100755 index 0000000..e43c621 --- /dev/null +++ b/Working_Examples/3432/CH6/EX6.18/Ex6_18_f1.pdf diff --git a/Working_Examples/3432/CH6/EX6.19/DEPENDENCIES/fig_settings.sci b/Working_Examples/3432/CH6/EX6.19/DEPENDENCIES/fig_settings.sci new file mode 100755 index 0000000..5d5e7d4 --- /dev/null +++ b/Working_Examples/3432/CH6/EX6.19/DEPENDENCIES/fig_settings.sci @@ -0,0 +1,9 @@ +//------------------------------------------------------------------
+//figure handel settings
+f=get("current_figure"); //Current figure handle
+f.background=8; //make the figure window background white
+l=f.children(1);
+l.background=8 ;//make the text background white
+id=color('grey');
+xgrid(id);
+//------------------------------------------------------------------
diff --git a/Working_Examples/3432/CH6/EX6.19/Ex6_19.sce b/Working_Examples/3432/CH6/EX6.19/Ex6_19.sce new file mode 100755 index 0000000..126f637 --- /dev/null +++ b/Working_Examples/3432/CH6/EX6.19/Ex6_19.sce @@ -0,0 +1,74 @@ +//Example 6.19 +//PID compensation design for spacecraft attitude control. + +xdel(winsid())//close all graphics Windows +clear; +clc; +//------------------------------------------------------------------ +//System transfer function +s=poly(0,'s'); +G1=(0.9/s^2); +G2=(2/(s+2)); +G=G1*G2; +Gs=syslin('c',G); + +// PID controller parameters +Td_inv=0.1; // Td_inv=1/Td=0.1 +Kd=1/Td_inv; //Kd=Td=Td_inv (derivative gain) + +Ti_inv=0.005; // Ti_inv=1/Ti=0.005 +Ki=Ti_inv; //Ki=Ti_inv (integral gain) + +Kp=0.05 //Kp (Proportional gain) + +D=Kp*(Kd*s+1)*(Ki/s+1); //PID Compensator + +Dsc=syslin('c',D); + +Ds=syslin('c',D/Kp); //PID Compensator with Kp=1 +// Compensated system with Kp=1 +GDs=Gs*Ds; +//PID compensated system Kp=0.05; +GDsc=Gs*Dsc; +//------------------------------------------------------------------ +//The bode plots +bode([Gs;GDs;GDsc],0.01/2/%pi,100/2/%pi,... +['G(s)';'D(s)G(s) with (Kp=1)';'D(s)G(s) with (Kp=0.05)'],"rad"); +exec .\fig_settings.sci; //custom script for setting figure properties +title('Compensation for PID design','fontsize',3) + +//Phase margin of pid compensated system with Kp=0.05; +[pm wcp]=p_margin(GDsc); + +//------------------------------------------------------------------ +//closed loop system +//step response +Gc=GDsc/(GDsc+1); +figure; +t=0:0.05:40; +y=csim('step',t,Gc); +plot(t,y,2) + +//Title, labels and grid to the figure +exec .\fig_settings.sci; //custom script for setting figure properties +title('Step response for PID compensation of spacecraft'... +,'fontsize',3) +xlabel('Time t (sec.)','fontsize',2) +ylabel('$theta$','fontsize',2) +//------------------------------------------------------------------ +//step disturbance response +Gc=G1/((G1*G2*D)+1); +Gcs=syslin('c',Gc); +figure; +t=0:0.5:1000; +u=0.1*ones(1,length(t)); +y=csim(u,t,Gcs) +plot(t,y,2) + +//Title, labels and grid to the figure +exec .\fig_settings.sci; // custom script for setting figure properties +title('Step disturbance response for PID compensation... + of spacecraft','fontsize',3) +xlabel('Time t (sec.)','fontsize',2) +ylabel('$theta$','fontsize',2) +//------------------------------------------------------------------ diff --git a/Working_Examples/3432/CH6/EX6.19/Ex6_19_f0.pdf b/Working_Examples/3432/CH6/EX6.19/Ex6_19_f0.pdf Binary files differnew file mode 100755 index 0000000..f2687e0 --- /dev/null +++ b/Working_Examples/3432/CH6/EX6.19/Ex6_19_f0.pdf diff --git a/Working_Examples/3432/CH6/EX6.19/Ex6_19_f1.pdf b/Working_Examples/3432/CH6/EX6.19/Ex6_19_f1.pdf Binary files differnew file mode 100755 index 0000000..c4b8b97 --- /dev/null +++ b/Working_Examples/3432/CH6/EX6.19/Ex6_19_f1.pdf diff --git a/Working_Examples/3432/CH6/EX6.2.b/DEPENDENCIES/fig_settings.sci b/Working_Examples/3432/CH6/EX6.2.b/DEPENDENCIES/fig_settings.sci new file mode 100755 index 0000000..5d5e7d4 --- /dev/null +++ b/Working_Examples/3432/CH6/EX6.2.b/DEPENDENCIES/fig_settings.sci @@ -0,0 +1,9 @@ +//------------------------------------------------------------------
+//figure handel settings
+f=get("current_figure"); //Current figure handle
+f.background=8; //make the figure window background white
+l=f.children(1);
+l.background=8 ;//make the text background white
+id=color('grey');
+xgrid(id);
+//------------------------------------------------------------------
diff --git a/Working_Examples/3432/CH6/EX6.2.b/Ex6_2.sce b/Working_Examples/3432/CH6/EX6.2.b/Ex6_2.sce new file mode 100755 index 0000000..03eae0b --- /dev/null +++ b/Working_Examples/3432/CH6/EX6.2.b/Ex6_2.sce @@ -0,0 +1,28 @@ +//Example 6.2
+//Frequency response characteristics of Lead compensator.
+
+xdel(winsid())//close all graphics Windows
+clear;
+clc;
+//------------------------------------------------------------------
+//System transfer function and its bode plot
+K=1, T=1, alpha=0.1
+s=poly(0,'s');
+sysD=syslin('c',K*(T*s+1)/(alpha*T*s+1));
+
+//The bode plot of the system
+
+fmin=0.1/2/%pi; //mininmum frq. in Hz for response (0.1 rad/sec)
+fmax=100/2/%pi; //maximum frq. in Hz for response (100 read/sec)
+//------------------------------------------------------------------
+//Bode plot for frequency in Hz (scilab ver. 5.4.1)
+//bode(g,fmin,fmax);
+//OR
+//Bode plot for frequency in rad/sec (scilab ver. 5.5.1)
+bode(sysD,fmin,fmax,"rad")
+
+//------------------------------------------------------------------
+title('(a) Magnitude and (b) phase for the lead compensator',...
+'fontsize',3)
+exec .\fig_settings.sci; //custom script for setting figure properties
+//------------------------------------------------------------------
diff --git a/Working_Examples/3432/CH6/EX6.2.b/Ex6_2_f0.pdf b/Working_Examples/3432/CH6/EX6.2.b/Ex6_2_f0.pdf Binary files differnew file mode 100755 index 0000000..827a43a --- /dev/null +++ b/Working_Examples/3432/CH6/EX6.2.b/Ex6_2_f0.pdf diff --git a/Working_Examples/3432/CH6/EX6.3/DEPENDENCIES/fig_settings.sci b/Working_Examples/3432/CH6/EX6.3/DEPENDENCIES/fig_settings.sci new file mode 100755 index 0000000..5d5e7d4 --- /dev/null +++ b/Working_Examples/3432/CH6/EX6.3/DEPENDENCIES/fig_settings.sci @@ -0,0 +1,9 @@ +//------------------------------------------------------------------
+//figure handel settings
+f=get("current_figure"); //Current figure handle
+f.background=8; //make the figure window background white
+l=f.children(1);
+l.background=8 ;//make the text background white
+id=color('grey');
+xgrid(id);
+//------------------------------------------------------------------
diff --git a/Working_Examples/3432/CH6/EX6.3/Ex6_3.sce b/Working_Examples/3432/CH6/EX6.3/Ex6_3.sce new file mode 100755 index 0000000..bb49eb0 --- /dev/null +++ b/Working_Examples/3432/CH6/EX6.3/Ex6_3.sce @@ -0,0 +1,65 @@ +//Example 6.3
+//Bode Plot for Real Poles and Zeros.
+
+xdel(winsid())//close all graphics Windows
+clear;
+clc;
+//------------------------------------------------------------------
+//System transfer function and its bode plot
+K=2000;
+s=poly(0,'s');
+Gs=syslin('c',(K*(s+0.5))/(s*(s+10)*(s+50)));
+
+//The bode plot of the system
+wmin=0.1; // mininmum frq. in rad/sec for response
+wmax=100; // maximum frq. in red/sec for response
+fmin=wmin/2/%pi // mininmum frq. in Hz for response
+fmax=wmax/2/%pi // maximum frq. in Hz for response
+//------------------------------------------------------------------
+//Bode plot for frequency in Hz (scilab ver. 5.4.1)
+//bode(g,fmin,fmax)
+//OR
+//(Only for scilab ver. 5.5.1)
+//Bode (frequency scale in rad/sec)
+// or gainplot or phaseplot plot with asymptotes
+figure(0)
+gainplot(Gs,fmin,fmax);
+bode_asymp(Gs,wmin,wmax);
+xstring(0.03,22,"slope=-1(-20db/dec)",0,0);
+xstring(0.2,9,"slope=0",0,0);
+xstring(3,7,"slope=-1(-20db/dec)",0,0)
+xstring(0.9,-8,"slope=-2(-40db/dec)",0,0)
+title('Composit plots (a) magnitude plot','fontsize',3);
+h=legend('');
+exec .\fig_settings.sci; //custom script for setting figure properties
+h.visible = "off"
+//------------------------------------------------------------------
+
+//phase plot for poles and zeros
+zr=((s/0.5)+1)/s //infact this is zero and pole at origin.
+zr=syslin('c', zr);
+pl1=1/((s/10)+1)
+pl1=syslin('c', pl1);
+pl2=1/((s/50)+1)
+pl2=syslin('c', pl2);
+figure(1)
+phaseplot([Gs;zr;pl1;pl2],fmin,fmax);
+xstring(5.5,-14,"$\frac {1}{s/0.5+1}$",0,0);
+xstring(2.8,-22,"$\frac{1}{s/50+1}$",0,0);
+xstring(2.5,-60,"$\frac{1}{s/10+1}$",0,0);
+xstring(1.2,-100,["Composite";"(Actual)"],0,0);
+title('Composit plots (b) Phase','fontsize',3);
+exec .\fig_settings.sci; //custom script for setting figure properties
+
+//------------------------------------------------------------------
+figure(2)
+bode(Gs,fmin,fmax,"rad"); //frequency scale n radians
+bode_asymp(Gs,wmin,wmax);
+exec .\fig_settings.sci; //custom script for setting figure properties
+title('(c) magnitude plot and phase plot approximate and actual...
+','fontsize',3)
+xstring(2.8,-22,"$\frac{1}{s/50+1}$",0,0);
+h=legend('');
+h.visible = "off"
+
+//------------------------------------------------------------------
diff --git a/Working_Examples/3432/CH6/EX6.3/Ex6_3_f0.pdf b/Working_Examples/3432/CH6/EX6.3/Ex6_3_f0.pdf Binary files differnew file mode 100755 index 0000000..f344048 --- /dev/null +++ b/Working_Examples/3432/CH6/EX6.3/Ex6_3_f0.pdf diff --git a/Working_Examples/3432/CH6/EX6.3/Ex6_3_f1.pdf b/Working_Examples/3432/CH6/EX6.3/Ex6_3_f1.pdf Binary files differnew file mode 100755 index 0000000..fa0837d --- /dev/null +++ b/Working_Examples/3432/CH6/EX6.3/Ex6_3_f1.pdf diff --git a/Working_Examples/3432/CH6/EX6.4/DEPENDENCIES/fig_settings.sci b/Working_Examples/3432/CH6/EX6.4/DEPENDENCIES/fig_settings.sci new file mode 100755 index 0000000..5d5e7d4 --- /dev/null +++ b/Working_Examples/3432/CH6/EX6.4/DEPENDENCIES/fig_settings.sci @@ -0,0 +1,9 @@ +//------------------------------------------------------------------
+//figure handel settings
+f=get("current_figure"); //Current figure handle
+f.background=8; //make the figure window background white
+l=f.children(1);
+l.background=8 ;//make the text background white
+id=color('grey');
+xgrid(id);
+//------------------------------------------------------------------
diff --git a/Working_Examples/3432/CH6/EX6.4/Ex6_4.sce b/Working_Examples/3432/CH6/EX6.4/Ex6_4.sce new file mode 100755 index 0000000..6e1124a --- /dev/null +++ b/Working_Examples/3432/CH6/EX6.4/Ex6_4.sce @@ -0,0 +1,28 @@ +//Example 6.4
+//Bode Plot with Complex Poles.
+
+xdel(winsid())//close all graphics Windows
+clear;
+clc;
+//------------------------------------------------------------------
+//System transfer function and its bode plot
+K=10;
+s=poly(0,'s');
+Gs=syslin('c',(K)/(s*(s^2+0.4*s+4)));
+//The bode plot of the system
+
+fmin=0.1/2/%pi; //mininmum frq. in Hz for response (0.1 rad/sec)
+fmax=10/2/%pi; //maximum frq. in Hz for response (100 read/sec)
+//------------------------------------------------------------------
+//Bode plot for frequency in Hz (scilab ver. 5.4.1)
+//bode(g,fmin,fmax);
+//OR
+//Bode plot for frequency in rad/sec (scilab ver. 5.5.1)
+bode(Gs,fmin,fmax,0.01,"rad")
+
+//------------------------------------------------------------------
+title(['Bode plot for a transfer function with complex poles';...
+ '(a) magnitude...
+ (b) phase'],'fontsize',3)
+
+//------------------------------------------------------------------
diff --git a/Working_Examples/3432/CH6/EX6.4/Ex6_4_f0.pdf b/Working_Examples/3432/CH6/EX6.4/Ex6_4_f0.pdf Binary files differnew file mode 100755 index 0000000..58d9414 --- /dev/null +++ b/Working_Examples/3432/CH6/EX6.4/Ex6_4_f0.pdf diff --git a/Working_Examples/3432/CH6/EX6.6/DEPENDENCIES/fig_settings.sci b/Working_Examples/3432/CH6/EX6.6/DEPENDENCIES/fig_settings.sci new file mode 100755 index 0000000..5d5e7d4 --- /dev/null +++ b/Working_Examples/3432/CH6/EX6.6/DEPENDENCIES/fig_settings.sci @@ -0,0 +1,9 @@ +//------------------------------------------------------------------
+//figure handel settings
+f=get("current_figure"); //Current figure handle
+f.background=8; //make the figure window background white
+l=f.children(1);
+l.background=8 ;//make the text background white
+id=color('grey');
+xgrid(id);
+//------------------------------------------------------------------
diff --git a/Working_Examples/3432/CH6/EX6.6/Ex6_6.sce b/Working_Examples/3432/CH6/EX6.6/Ex6_6.sce new file mode 100755 index 0000000..a70ab9c --- /dev/null +++ b/Working_Examples/3432/CH6/EX6.6/Ex6_6.sce @@ -0,0 +1,30 @@ +//Example 6.6
+//Bode Plot for Complex Poles and Zeros:
+//Satellite with Flexible appendages.
+
+xdel(winsid())//close all graphics Windows
+clear;
+clc;
+//------------------------------------------------------------------
+//System transfer function and its bode plot
+K=0.01;
+s=poly(0,'s');
+NumG=K*(s^2+0.01*s+1);
+DenG=s^2*((s^2/4)+0.02*(s/2)+1)
+sysG=syslin('c',NumG/DenG);
+
+fmin=0.09/2/%pi; //mininmum frq. in Hz for response (0.1 rad/sec)
+fmax=11/2/%pi; //maximum frq. in Hz for response (100 read/sec)
+//------------------------------------------------------------------
+//Bode plot for frequency in Hz (scilab ver. 5.4.1)
+//bode(g,fmin,fmax);
+//OR
+//Bode plot for frequency in rad/sec (scilab ver. 5.5.1)
+bode(sysG,fmin,fmax,0.01,"rad")
+
+//------------------------------------------------------------------
+title(["Bode plot for a transfer function with complex...
+poles and zeros"; "(a) magnitude (b) phase"],'fontsize',3)
+//------------------------------------------------------------------
+
+disp('NOTE : Result of the above example can be verified by checking the figures shown in example 6.5')
diff --git a/Working_Examples/3432/CH6/EX6.6/Ex6_6_f0.pdf b/Working_Examples/3432/CH6/EX6.6/Ex6_6_f0.pdf Binary files differnew file mode 100755 index 0000000..9e2dc15 --- /dev/null +++ b/Working_Examples/3432/CH6/EX6.6/Ex6_6_f0.pdf diff --git a/Working_Examples/3432/CH6/EX6.7/EX6_7_f0.pdf b/Working_Examples/3432/CH6/EX6.7/EX6_7_f0.pdf Binary files differnew file mode 100755 index 0000000..9e46a12 --- /dev/null +++ b/Working_Examples/3432/CH6/EX6.7/EX6_7_f0.pdf diff --git a/Working_Examples/3432/CH6/EX6.7/Ex6_7.sce b/Working_Examples/3432/CH6/EX6.7/Ex6_7.sce new file mode 100755 index 0000000..0ea6d5b --- /dev/null +++ b/Working_Examples/3432/CH6/EX6.7/Ex6_7.sce @@ -0,0 +1,44 @@ +//Example 6.7
+//Computation of velocity error constant Kv from Bode plot
+
+xdel(winsid())//close all graphics Windows
+clear;
+clc;
+//------------------------------------------------------------------
+//System transfer function and its bode plot
+K=10;
+s=poly(0,'s');
+Gs=syslin('c',(K)/(s*(s+1)));
+//The bode plot of the system
+
+fmin=0.01/2/%pi; //mininmum frq. in Hz for response (0.1 rad/sec)
+fmax=10/2/%pi; //maximum frq. in Hz for response (100 read/sec)
+//------------------------------------------------------------------
+//Bode plot for frequency in Hz (scilab ver. 5.4.1)
+//bode(g,fmin,fmax);
+//OR
+//Bode plot for frequency in rad/sec (scilab ver. 5.5.1)
+bode(Gs,fmin,fmax,0.01,"rad")
+title(['Determination of Kv from the Bode plot for the system',...
+'$10/[s(s+1)]$'],'fontsize',3)
+//choose frequency (rad) and magnitude from bode plot and calculate Kv
+//Here at w=0.01, magngitude in db is M=60
+//i.e actual magnitude of the reponse is |A|=10^(M/20)
+w=0.01; // in rad
+M=60 // in db
+A=10^(M/20) //actual gain
+
+//Velocity error constant Kv=w*|A(w)|
+Kv=w*A;
+disp(Kv,"The Velocity error Constant from bode plot is: ")
+//------------------------------------------------------------------
+// Computation of the Kv
+[frq repf]=repfreq(Gs,fmin,fmax);
+//frq in Hz, repf is freq. response in rectangular form.
+//From bode plot, Kv=w*|A(w)|
+//i.e Kv=2*pi*f*|A(2*pi*f)|
+
+idx=1;//selecting the frequency and response at that frequency from arrays
+Kv=2*%pi*frq(idx)*abs(repf(idx))
+disp(Kv,"The Velocity error Constant is computed at 0.0015915 Hz (0.01 rad/sec) : ")
+//------------------------------------------------------------------
diff --git a/Working_Examples/3432/CH6/EX6.8/DEPENDENCIES/fig_settings.sci b/Working_Examples/3432/CH6/EX6.8/DEPENDENCIES/fig_settings.sci new file mode 100755 index 0000000..5d5e7d4 --- /dev/null +++ b/Working_Examples/3432/CH6/EX6.8/DEPENDENCIES/fig_settings.sci @@ -0,0 +1,9 @@ +//------------------------------------------------------------------
+//figure handel settings
+f=get("current_figure"); //Current figure handle
+f.background=8; //make the figure window background white
+l=f.children(1);
+l.background=8 ;//make the text background white
+id=color('grey');
+xgrid(id);
+//------------------------------------------------------------------
diff --git a/Working_Examples/3432/CH6/EX6.8/Ex6_8.sce b/Working_Examples/3432/CH6/EX6.8/Ex6_8.sce new file mode 100755 index 0000000..6625052 --- /dev/null +++ b/Working_Examples/3432/CH6/EX6.8/Ex6_8.sce @@ -0,0 +1,48 @@ +//Example 6.8
+// Nyquist plot for a second order system.
+
+xdel(winsid())//close all graphics Windows
+clear;
+clc;
+//------------------------------------------------------------------
+//System transfer function and its root locus
+s=poly(0,'s');
+g=1/(s+1)^2;
+sysG=syslin('c',g);
+
+evans(sysG);
+exec .\fig_settings.sci; //custom script for setting figure properties
+f=gca();
+f.x_location = "origin"
+f.y_location = "origin"
+title(['Root locus of','$G(s)=1/(s+1)^2$','with respect to K'],...
+'fontsize',3)
+zoom_rect([-3,-2,2,3])
+h=legend('');
+h.visible = "off"
+//------------------------------------------------------------------
+figure(1)
+//The bode plot of the system
+fmin=0.01/2/%pi; //mininmum frq. in Hz for response (0.1 rad/sec)
+fmax=100/2/%pi; //maximum frq. in Hz for response (100 read/sec)
+
+//Bode plot for frequency in Hz (scilab ver. 5.4.1)
+//bode(g,fmin,fmax);
+//OR
+//Bode plot for frequency in rad/sec (scilab ver. 5.5.1)
+bode(sysG,fmin,fmax,0.01,"rad")
+title(['Open loop bode plot for', '$G(s)=1/(s+1)^2$'],'fontsize',3);
+exec .\fig_settings.sci; //custom script for setting figure properties
+//------------------------------------------------------------------
+
+figure(2)
+//The nyquist plot of the system
+nyquist(sysG);
+title('Nyquist plot of the evaluation of K G(s) for s=C1 and K=1'...
+,'fontsize',3);
+exec .\fig_settings.sci; //custom script for setting figure properties
+f=gca();
+f.x_location = "origin"
+f.y_location = "origin"
+xset('color',2)
+//------------------------------------------------------------------
diff --git a/Working_Examples/3432/CH6/EX6.8/Ex6_8_f0.pdf b/Working_Examples/3432/CH6/EX6.8/Ex6_8_f0.pdf Binary files differnew file mode 100755 index 0000000..2bb5cdb --- /dev/null +++ b/Working_Examples/3432/CH6/EX6.8/Ex6_8_f0.pdf diff --git a/Working_Examples/3432/CH6/EX6.8/Ex6_8_f1.pdf b/Working_Examples/3432/CH6/EX6.8/Ex6_8_f1.pdf Binary files differnew file mode 100755 index 0000000..690c6b5 --- /dev/null +++ b/Working_Examples/3432/CH6/EX6.8/Ex6_8_f1.pdf diff --git a/Working_Examples/3432/CH6/EX6.9/DEPENDENCIES/fig_settings.sci b/Working_Examples/3432/CH6/EX6.9/DEPENDENCIES/fig_settings.sci new file mode 100755 index 0000000..5d5e7d4 --- /dev/null +++ b/Working_Examples/3432/CH6/EX6.9/DEPENDENCIES/fig_settings.sci @@ -0,0 +1,9 @@ +//------------------------------------------------------------------
+//figure handel settings
+f=get("current_figure"); //Current figure handle
+f.background=8; //make the figure window background white
+l=f.children(1);
+l.background=8 ;//make the text background white
+id=color('grey');
+xgrid(id);
+//------------------------------------------------------------------
diff --git a/Working_Examples/3432/CH6/EX6.9/Ex6_9.sce b/Working_Examples/3432/CH6/EX6.9/Ex6_9.sce new file mode 100755 index 0000000..a66b127 --- /dev/null +++ b/Working_Examples/3432/CH6/EX6.9/Ex6_9.sce @@ -0,0 +1,53 @@ +//Example 6.9
+// Nyquist plot for a third order system.
+
+xdel(winsid())//close all graphics Windows
+clear;
+clc;
+//------------------------------------------------------------------
+//System transfer function
+s=poly(0,'s');
+g=syslin('c',1/(s*(s+1)^2));
+
+//The bode plot of the system
+fmin=0.01/2/%pi;
+fmax=100/2/%pi;
+//[frq,repf]=repfreq(g1,fmin,fmax,0.01);
+bode(g,fmin,fmax,"rad");
+frq=[1,10]/2/%pi;
+[frq, repf]=repfreq(g,frq);
+[db, phi]=dbphi(repf);
+plot(frq*2*%pi,db,'ro');
+exec .\fig_settings.sci; //custom script for setting figure properties
+title(["Bode plot for","$G(s)=1/[s(s+1)^2]$"],'fontsize',3)
+//zoom_rect([[0.1 0] -70 [12 -180] 20])
+xset("font size", 3);
+
+xstring(1,0,"$C\,\, (\omega=1)$",0,0);
+xstring(2,-75,"$E\,\, (\omega=10)$",0,0);
+f=gca();
+
+//------------------------------------------------------------------
+//The nyquist plot of the system
+figure;
+nyquist(g,0.8/2/%pi,10/2/%pi,0.02)
+
+exec .\fig_settings.sci; //custom script for setting figure properties
+title(["Nyquist plot for","$G(s)=1/[s(s+1)]^2$"],'fontsize',3)
+f=gca();
+f.x_location = "origin";
+f.y_location = "origin";
+zoom_rect([-1 -0.2 0.5 0.2]);
+xset("clipping", -1.2, 0.2, 1.4,0.4);
+xset("font size", 3);
+xset("color",2);
+xstring(-0.6,0.1,"${\fgcolor{blue}{\omega<0}}$",0,0);
+xstring(-0.6,-0.1,"${\fgcolor{blue}{\omega>0}}$",0,0);
+xstring(-0.7,0.005,"${\fgcolor{blue}{\omega=\pm 1}}$",0,0);
+xstring(-1,-0.2,...
+"${\fgcolor{blue}{\text{From \infty at \omega=0^+}}$",0,0);
+ xstring(-0.7,0.15,"${\fgcolor{blue}...
+ {\text{Towards \infty at \omega=0^-}}$",0,0);
+xstring(-0.525,-0.04,"C",0,0);
+xstring(-0.075,0,"E",0,0);
+//------------------------------------------------------------------
diff --git a/Working_Examples/3432/CH6/EX6.9/Ex6_9_f0.pdf b/Working_Examples/3432/CH6/EX6.9/Ex6_9_f0.pdf Binary files differnew file mode 100755 index 0000000..0717e6c --- /dev/null +++ b/Working_Examples/3432/CH6/EX6.9/Ex6_9_f0.pdf diff --git a/Working_Examples/3432/CH6/EX6.9/Ex6_9_f1.pdf b/Working_Examples/3432/CH6/EX6.9/Ex6_9_f1.pdf Binary files differnew file mode 100755 index 0000000..482ef93 --- /dev/null +++ b/Working_Examples/3432/CH6/EX6.9/Ex6_9_f1.pdf diff --git a/Working_Examples/3432/CH7/EX7.10/Ex7_10.sce b/Working_Examples/3432/CH7/EX7.10/Ex7_10.sce new file mode 100755 index 0000000..e4accd1 --- /dev/null +++ b/Working_Examples/3432/CH7/EX7.10/Ex7_10.sce @@ -0,0 +1,21 @@ +//Example 7.10
+//Transformation of Thermal System from Control to Modal Form
+
+xdel(winsid())//close all graphics Windows
+clear;
+clc;
+//------------------------------------------------------------------
+// State space matrices of the given system
+Ac=[-7 1; -12 0];
+Bc=[1;2];
+Cc=[1 0];
+Dc=0;
+//------------------------------------------------------------------
+// State space representation in modal canonical form
+T=[4 -3;-1 1]
+Am=T\Ac*T;
+Bm=T\Bc;
+Cm=Cc*T;
+Dm=Dc;
+disp(Dm,"Dm",Cm,"Cm", Bm,"Bm",Am,"Am","Thermal System in modal canonical form")
+//------------------------------------------------------------------
diff --git a/Working_Examples/3432/CH7/EX7.11/Ex7_11.sce b/Working_Examples/3432/CH7/EX7.11/Ex7_11.sce new file mode 100755 index 0000000..e1ad0bc --- /dev/null +++ b/Working_Examples/3432/CH7/EX7.11/Ex7_11.sce @@ -0,0 +1,48 @@ +//Example 7.11 +//Poles and Zeros of Tape Drive System. +//Also, Transform the system into modal form + +xdel(winsid())//close all graphics Windows +clear; +clc; +//------------------------------------------------------------------ +// State space matrices of Tape Drive System + +F=[0 2 0 0 0; +-0.1 -0.35 0.1 0.1 0.75; +0 0 0 2 0; +0.4 0.4 -0.4 -1.4 0; +0 -0.03 0 0 -1]; +G=[0 0 0 0 1]'; +H2=[0 0 1 0 0]; +H3=[0.5 0 0.5 0 0]; +Ht=[-0.2 -0.2 0.2 0.2 0]; +//------------------------------------------------------------------ +// Poles (eigen values) of the system +p=clean(spec(F)); +disp(p,"Poles of Tape Drive System are") + +//It requires complete state-space model. +sys=syslin('c',F,G,[Ht;H2;H3],[0;0;0]) + +// zeros of the system +[tr]=trzeros(sys) +disp(tr,"Transmission zeros of Tape Drive System are") +//------------------------------------------------------------------ +// State space representation in modal canonical form with H3 output only. + +[m Am1]=spec(F) +T1=[1/2 -%i/2;1/2 %i/2]; +//transformation for a complex pair of eigen values. +temp=eye(5,5); +T=[T1 zeros(2,3);zeros(3,2) eye(3,3)]; +temp(1,1)=-1; temp(2,2)=-1; //for change in input output signs as desired +M=m*T*temp //real Modal transformation + +Am=clean(M\F*M); +Bm=clean(M\G); +Cm=clean(H3*M); +Dm=0; + +disp(Dm,"Dm",Cm,"Cm", Bm,"Bm",Am,"Am","Tape Drive System in modal canonical form") +//------------------------------------------------------------------------------ diff --git a/Working_Examples/3432/CH7/EX7.12/Ex7_12.sce b/Working_Examples/3432/CH7/EX7.12/Ex7_12.sce new file mode 100755 index 0000000..2eaead7 --- /dev/null +++ b/Working_Examples/3432/CH7/EX7.12/Ex7_12.sce @@ -0,0 +1,23 @@ +//Example 7.12
+//Transformation of Thermal System from state description
+
+xdel(winsid())//close all graphics Windows
+clear;
+clc;
+//------------------------------------------------------------------
+// State space model of Thermal System
+s=%s;
+F=[-7 -12; 1 0];
+G=[1;0];
+H=[1 2];
+J=0;
+sys=syslin('c',F,G,H,J)
+//------------------------------------------------------------------
+//Transfer function model of Thermal System
+[ch num den]=ss2tf(sys);
+disp(num/den, "G=","Transfer function model of Thermal System")
+//------------------------------------------------------------------
+
+
+
+
diff --git a/Working_Examples/3432/CH7/EX7.13/Ex7_13.sce b/Working_Examples/3432/CH7/EX7.13/Ex7_13.sce new file mode 100755 index 0000000..82c5e3b --- /dev/null +++ b/Working_Examples/3432/CH7/EX7.13/Ex7_13.sce @@ -0,0 +1,24 @@ +//Example 7.13
+//Zeros for the Thermal System from a State Description
+
+xdel(winsid())//close all graphics Windows
+clear;
+clc;
+//------------------------------------------------------------------
+// State space model of the given system
+F=[-7 -12; 1 0];
+G=[1;0];
+H=[1 2];
+J=0;
+sysG=syslin('c',F,G,H,J)
+//------------------------------------------------------------------
+//Transfer function model
+[d num den]=ss2tf(sysG);
+zr=roots(num);
+disp(zr,'zr=');
+//Alternately, it can be obtained as
+zr=trzeros(sysG);
+disp(zr,'zr=');
+//------------------------------------------------------------------
+
+
diff --git a/Working_Examples/3432/CH7/EX7.14/Ex7_14.sce b/Working_Examples/3432/CH7/EX7.14/Ex7_14.sce new file mode 100755 index 0000000..1812532 --- /dev/null +++ b/Working_Examples/3432/CH7/EX7.14/Ex7_14.sce @@ -0,0 +1,74 @@ +//Example 7.14 +//Analysis of state equations of Tape Drive. +//compute the poles, zeros and transfer function of Tape Drive System. + +xdel(winsid())//close all graphics Windows +clear; +clc; +//------------------------------------------------------------------ +// State space matrices of Tape Drive System + +F=[0 2 0 0 0; +-0.1 -0.35 0.1 0.1 0.75; +0 0 0 2 0; +0.4 0.4 -0.4 -1.4 0; +0 -0.03 0 0 -1]; +G=[0 0 0 0 1]'; +H2=[0 0 1 0 0]; +H3=[0.5 0 0.5 0 0]; +Ht=[-0.2 -0.2 0.2 0.2 0]; +//------------------------------------------------------------------ +//Poles (eigen values) of the system +p=clean(spec(F)); + +disp(p,"P","Poles of Tape Drive System are (for any output)") +disp("************************************************************") + + +disp("pole and zero polynomials and transfer function... + for a system with output H2") +sys2=syslin('c',F,G,H2,0); +[d2 num2 den2]=ss2tf(sys2); +N2=coeff(num2); +D2=coeff(den2); +disp(D2,"D2",N2,"N2") +// zeros of the system with output H2 +[zer2]=trzeros(sys2) +disp(zer2,"ZER2","zeros are") +// transfer function of the system with output H2 +G2=clean(num2/den2); +disp(G2,"G2(s)=N2(s)/D2(s)=") +disp("************************************************************") + +disp("pole and zero polynomials and transfer function for a... + system with output H3") +sys3=syslin('c',F,G,H3,0); +[d3 num3 den3]=ss2tf(sys3); +N3=coeff(num3); +D3=coeff(den3); +disp(D3,"D3",N3,"N3") +// zeros of the system with output H3 +[zer3]=trzeros(sys3) +disp(zer3,"ZER3","zeros are") +// transfer function of the system with output H3 +G3=clean(num2/den2); +disp(G3,"G3(s)=N3(s)/D3(s)=") +disp("************************************************************") + + +disp("pole and zero polynomials and transfer function for a... + system with output Ht") +syst=syslin('c',F,G,Ht,0); +[dt numt dent]=ss2tf(syst); +Nt=coeff(numt); +Dt=coeff(dent); +disp(Dt,"Dt",Nt,"Nt","zeros are") +// zeros of the system with output Ht +[zert]=trzeros(syst) +disp(zert,"ZERT") +// transfer function of the system with output Ht +Gt=clean(numt/dent); +disp(Gt,"G(s)=Nt(s)/Dt(s)=") +disp("************************************************************") +//------------------------------------------------------------------ + diff --git a/Working_Examples/3432/CH7/EX7.15/DEPENDENCIES/fig_settings.sci b/Working_Examples/3432/CH7/EX7.15/DEPENDENCIES/fig_settings.sci new file mode 100755 index 0000000..5d5e7d4 --- /dev/null +++ b/Working_Examples/3432/CH7/EX7.15/DEPENDENCIES/fig_settings.sci @@ -0,0 +1,9 @@ +//------------------------------------------------------------------
+//figure handel settings
+f=get("current_figure"); //Current figure handle
+f.background=8; //make the figure window background white
+l=f.children(1);
+l.background=8 ;//make the text background white
+id=color('grey');
+xgrid(id);
+//------------------------------------------------------------------
diff --git a/Working_Examples/3432/CH7/EX7.15/Ex7_15.sce b/Working_Examples/3432/CH7/EX7.15/Ex7_15.sce new file mode 100755 index 0000000..b0b2aa5 --- /dev/null +++ b/Working_Examples/3432/CH7/EX7.15/Ex7_15.sce @@ -0,0 +1,46 @@ +//Example 7.15 +//Control law for a pendulum. + +xdel(winsid())//close all graphics Windows +clear; +clc; +//------------------------------------------------------------------ +//Pendulum state model; +w0=1; + +F=[0 1;-w0^2 0]; +G=[0 1]'; +H=eye(2,2); //representing x1 and x2 states as outputs +J=[0 0]'; + +sys=syslin('c',F,G,H,J); //open loop system + +x0=[1 0]' //initial condition +t=0:0.2:7; +y=csim('impulse',t,sys); //open loop response +//------------------------------------------------------------------ + +//simulation for closed loop system +x0=[1 0]' //initial condition + +//control law u=-Kx; +K=[3*w0^2 4*w0]; +syscl=syslin('c',(F-G*K),G,H,J); //closed loop system + + +t=0:0.1:7; +u=zeros(1,length(t)); +[x z]=csim(u,t,syscl,x0); //closed loop response +plot(t',x'); + +u=-K*x; +plot(t',u'/4,'r--'); //control law u plot (scaled to 1/4 in figure); +legend("x1","x2","u/4") + +//Title, labels and grid to the figure +exec .\fig_settings.sci; //custom script for setting figure properties +title('Impulse response of undamped oscillator with full-state... + feedback(w0=1)','fontsize',3) +xlabel('Time t (sec.)','fontsize',2) +ylabel('Amplitude','fontsize',2) +//------------------------------------------------------------------ diff --git a/Working_Examples/3432/CH7/EX7.15/Ex7_15_f0.pdf b/Working_Examples/3432/CH7/EX7.15/Ex7_15_f0.pdf Binary files differnew file mode 100755 index 0000000..fda837d --- /dev/null +++ b/Working_Examples/3432/CH7/EX7.15/Ex7_15_f0.pdf diff --git a/Working_Examples/3432/CH7/EX7.16/DEPENDENCIES/acker_dk.sci b/Working_Examples/3432/CH7/EX7.16/DEPENDENCIES/acker_dk.sci new file mode 100755 index 0000000..3391d24 --- /dev/null +++ b/Working_Examples/3432/CH7/EX7.16/DEPENDENCIES/acker_dk.sci @@ -0,0 +1,73 @@ +//------------------------------------------------------------------ +//------------------------------------------------------------------ +//A function written by Deepti Khimani. +//Usage:- +//[K, lambda]=acker_dk(a, b, pl) +//K=acker_dk(a, b, pl) +//a:- System matrix. +//b:- input matrix. +//p:- Desired poles. +//K:-State feedback gain for the control law u=-Kx. +//lambda:- Eigen values of (a-b*k) +//------------------------------------------------------------------ +//------------------------------------------------------------------ + +function [K, lambda]=acker_dk(a, b, pl) + [lhs,rhs]=argn(0) + + if rhs == 0 then + disp(["K=acker_dk(a, b, pl)";"[K, lambda]=acker_dk(a, b, pl)"]); + disp(["a:- System matrix";"b:- input matrix";"p:- Desired poles"]); + disp(["K:-State feedback gain for the control law u=-Kx";... + "lambda:- Eigen values of (a-b*k)"]); + return; + end +[ra ca]=size(a); +[rb cb]=size(b); +l=length(pl); + +CO=cont_mat(a,b); + +if ra~=l then + error(["Dimension error:";"number of desired poles must equal... + to order of the system"]); +elseif ra~=ca then + error(["Dimension error:";"system matrix should be... + a sqaure matrix"]); +elseif rb~=ra then + error (["Dimension error:","Input matrix should have... + as many rows as a system matrix."]); +elseif rank(CO)<ra then + error("system is not controllable"); +end +//------------------------------------------------------------------ +//controllable canonical form +[Ac,Bc,T,ind]=canon(a,b); + +//CO=zeros(ra,cb); +for i=1:ra + CO(:,ra+1-i)=Ac^(i-1)*Bc; +end +//------------------------------------------------------------------ +chr_eq=poly(pl,'s'); +des_chr_coeff=coeff(chr_eq); + +des_chr_coeff=des_chr_coeff(1:ra); +alpha_c=Ac^ra; + +for k=1:ra + alpha_c=alpha_c + des_chr_coeff(k)*Ac^(k-1) +end +//------------------------------------------------------------------ +//State feedback gain +temp=zeros(1,ra); +temp(1)=1; +K=temp*inv(CO)*alpha_c; +K=K/T; +lambda=spec(a-b*K); +endfunction +//------------------------------------------------------------------ + + + + diff --git a/Working_Examples/3432/CH7/EX7.16/Ex7_16.sce b/Working_Examples/3432/CH7/EX7.16/Ex7_16.sce new file mode 100755 index 0000000..36e32f8 --- /dev/null +++ b/Working_Examples/3432/CH7/EX7.16/Ex7_16.sce @@ -0,0 +1,25 @@ +//Example 7.16 +//Ackermann's formula for undamped oscillator. + +xdel(winsid())//close all graphics Windows +clear; +clc; +//------------------------------------------------------------------ +//undamped oscillator (Pendulum) state model; +w0=1; + +F=[0 1;-w0^2 0]; +G=[0 1]'; +H=eye(2,2); //representing x1 and x2 states as outputs +J=[0 0]'; +//------------------------------------------------------------------ +//Ackermann's formula for feedback gain computation + +pc=[-2 -2]; //desired poles +exec('./acker_dk.sci', -1); +[K,eig]=acker_dk(F,G,pc) +disp(K,"Feedback gain K=") +disp(eig,"Closed loop eigen values are ") +//------------------------------------------------------------------ + + diff --git a/Working_Examples/3432/CH7/EX7.17/DEPENDENCIES/acker_dk.sci b/Working_Examples/3432/CH7/EX7.17/DEPENDENCIES/acker_dk.sci new file mode 100755 index 0000000..3391d24 --- /dev/null +++ b/Working_Examples/3432/CH7/EX7.17/DEPENDENCIES/acker_dk.sci @@ -0,0 +1,73 @@ +//------------------------------------------------------------------ +//------------------------------------------------------------------ +//A function written by Deepti Khimani. +//Usage:- +//[K, lambda]=acker_dk(a, b, pl) +//K=acker_dk(a, b, pl) +//a:- System matrix. +//b:- input matrix. +//p:- Desired poles. +//K:-State feedback gain for the control law u=-Kx. +//lambda:- Eigen values of (a-b*k) +//------------------------------------------------------------------ +//------------------------------------------------------------------ + +function [K, lambda]=acker_dk(a, b, pl) + [lhs,rhs]=argn(0) + + if rhs == 0 then + disp(["K=acker_dk(a, b, pl)";"[K, lambda]=acker_dk(a, b, pl)"]); + disp(["a:- System matrix";"b:- input matrix";"p:- Desired poles"]); + disp(["K:-State feedback gain for the control law u=-Kx";... + "lambda:- Eigen values of (a-b*k)"]); + return; + end +[ra ca]=size(a); +[rb cb]=size(b); +l=length(pl); + +CO=cont_mat(a,b); + +if ra~=l then + error(["Dimension error:";"number of desired poles must equal... + to order of the system"]); +elseif ra~=ca then + error(["Dimension error:";"system matrix should be... + a sqaure matrix"]); +elseif rb~=ra then + error (["Dimension error:","Input matrix should have... + as many rows as a system matrix."]); +elseif rank(CO)<ra then + error("system is not controllable"); +end +//------------------------------------------------------------------ +//controllable canonical form +[Ac,Bc,T,ind]=canon(a,b); + +//CO=zeros(ra,cb); +for i=1:ra + CO(:,ra+1-i)=Ac^(i-1)*Bc; +end +//------------------------------------------------------------------ +chr_eq=poly(pl,'s'); +des_chr_coeff=coeff(chr_eq); + +des_chr_coeff=des_chr_coeff(1:ra); +alpha_c=Ac^ra; + +for k=1:ra + alpha_c=alpha_c + des_chr_coeff(k)*Ac^(k-1) +end +//------------------------------------------------------------------ +//State feedback gain +temp=zeros(1,ra); +temp(1)=1; +K=temp*inv(CO)*alpha_c; +K=K/T; +lambda=spec(a-b*K); +endfunction +//------------------------------------------------------------------ + + + + diff --git a/Working_Examples/3432/CH7/EX7.17/Ex7_17.sce b/Working_Examples/3432/CH7/EX7.17/Ex7_17.sce new file mode 100755 index 0000000..3d564e3 --- /dev/null +++ b/Working_Examples/3432/CH7/EX7.17/Ex7_17.sce @@ -0,0 +1,35 @@ +//Example 7.17 How zero location affect control law
+// Obtain state feedback gain matrix for the given system
+
+xdel(winsid())//close all graphics Windows
+clear;
+clc;
+//------------------------------------------------------------------
+//(a) state feedback gain matrix for zero at 2.
+//Location of system Zero
+z0=2;
+
+// State space representation
+Ao=[-7 1;-12 0];
+Bo=[1 -z0]';
+Co=[1 0];
+Do=0;
+
+// Desired poles
+Pd=[1 2 4];
+Pc=roots(Pd);
+
+
+// State feedback gain matrix for system zero at -2.0
+K=ppol(Ao,Bo,Pc)
+disp(K,"K=","State feeback gain for a system with zero at 2" )
+//------------------------------------------------------------------
+//Location of system Zero
+z0=-2.99
+B=[1 -z0]';
+// State feedback gain matrix for system zero...
+// at -2.99 (by ackermann's formula)
+exec('./acker_dk.sci', -1);
+K1=acker_dk(Ao,B,Pc)
+disp(K1,"K1","State feeback gain for a system with zero at -2.99")
+//------------------------------------------------------------------
diff --git a/Working_Examples/3432/CH7/EX7.18/DEPENDENCIES/acker_dk.sci b/Working_Examples/3432/CH7/EX7.18/DEPENDENCIES/acker_dk.sci new file mode 100755 index 0000000..3391d24 --- /dev/null +++ b/Working_Examples/3432/CH7/EX7.18/DEPENDENCIES/acker_dk.sci @@ -0,0 +1,73 @@ +//------------------------------------------------------------------ +//------------------------------------------------------------------ +//A function written by Deepti Khimani. +//Usage:- +//[K, lambda]=acker_dk(a, b, pl) +//K=acker_dk(a, b, pl) +//a:- System matrix. +//b:- input matrix. +//p:- Desired poles. +//K:-State feedback gain for the control law u=-Kx. +//lambda:- Eigen values of (a-b*k) +//------------------------------------------------------------------ +//------------------------------------------------------------------ + +function [K, lambda]=acker_dk(a, b, pl) + [lhs,rhs]=argn(0) + + if rhs == 0 then + disp(["K=acker_dk(a, b, pl)";"[K, lambda]=acker_dk(a, b, pl)"]); + disp(["a:- System matrix";"b:- input matrix";"p:- Desired poles"]); + disp(["K:-State feedback gain for the control law u=-Kx";... + "lambda:- Eigen values of (a-b*k)"]); + return; + end +[ra ca]=size(a); +[rb cb]=size(b); +l=length(pl); + +CO=cont_mat(a,b); + +if ra~=l then + error(["Dimension error:";"number of desired poles must equal... + to order of the system"]); +elseif ra~=ca then + error(["Dimension error:";"system matrix should be... + a sqaure matrix"]); +elseif rb~=ra then + error (["Dimension error:","Input matrix should have... + as many rows as a system matrix."]); +elseif rank(CO)<ra then + error("system is not controllable"); +end +//------------------------------------------------------------------ +//controllable canonical form +[Ac,Bc,T,ind]=canon(a,b); + +//CO=zeros(ra,cb); +for i=1:ra + CO(:,ra+1-i)=Ac^(i-1)*Bc; +end +//------------------------------------------------------------------ +chr_eq=poly(pl,'s'); +des_chr_coeff=coeff(chr_eq); + +des_chr_coeff=des_chr_coeff(1:ra); +alpha_c=Ac^ra; + +for k=1:ra + alpha_c=alpha_c + des_chr_coeff(k)*Ac^(k-1) +end +//------------------------------------------------------------------ +//State feedback gain +temp=zeros(1,ra); +temp(1)=1; +K=temp*inv(CO)*alpha_c; +K=K/T; +lambda=spec(a-b*K); +endfunction +//------------------------------------------------------------------ + + + + diff --git a/Working_Examples/3432/CH7/EX7.18/DEPENDENCIES/fig_settings.sci b/Working_Examples/3432/CH7/EX7.18/DEPENDENCIES/fig_settings.sci new file mode 100755 index 0000000..5d5e7d4 --- /dev/null +++ b/Working_Examples/3432/CH7/EX7.18/DEPENDENCIES/fig_settings.sci @@ -0,0 +1,9 @@ +//------------------------------------------------------------------
+//figure handel settings
+f=get("current_figure"); //Current figure handle
+f.background=8; //make the figure window background white
+l=f.children(1);
+l.background=8 ;//make the text background white
+id=color('grey');
+xgrid(id);
+//------------------------------------------------------------------
diff --git a/Working_Examples/3432/CH7/EX7.18/Ex7_18.sce b/Working_Examples/3432/CH7/EX7.18/Ex7_18.sce new file mode 100755 index 0000000..5be65a2 --- /dev/null +++ b/Working_Examples/3432/CH7/EX7.18/Ex7_18.sce @@ -0,0 +1,56 @@ +//Example 7.18 +//Introducing the reference input. + +xdel(winsid())//close all graphics Windows +clear; +clc; +//------------------------------------------------------------------ +//Pendulum state model; +w0=1; + +F=[0 1;-w0^2 0]; +G=[0 1]'; +H=[1 0]; //representing x1 and x2 states as outputs +J=0; +n=sqrt(length(F)); + +//computing state feedback matrix to place poles at [-2 -2] +exec('./acker_dk.sci', -1); +K=acker_dk(F,G,[-2, -2]); +//------------------------------------------------------------------ +//augmented matrix for tracking the reference +A=[F G;H J]; +N=A\[zeros(1,n) 1]'; +Nx=N(1:n); +Nu=N(n+1); + +//feedforward gain (input weight) +Ntilde=Nu+K*Nx; + +//------------------------------------ +//Alternately, it can be computed as / +Ntilde1=-inv(H*inv(F-G*K)*G); // / +//------------------------------------ + +//Closed loop system and step response +syscl=syslin('c',(F-G*K),G*Ntilde,H,J); //closed loop system + +t=0:0.1:7; +[y x]=csim('step',t,syscl); //closed loop response +plot(t',x'); + +u=-K*x+Ntilde; +plot(t',u'/4,'r--'); //control law u plot (scaled to 1/4 in figure); +legend("x1","x2","u/4"); +xset('font size',3); +xstring(5,0.93,"$x_{ss}$") +xstring(5,0.25,"$u_{ss}$") + +//Title, labels and grid to the figure +exec .\fig_settings.sci; //custom script for setting figure properties +title('Step response of undamped oscillator to reference input',... +'fontsize',3); +xlabel('Time t (sec.)','fontsize',2); +ylabel('Amplitude','fontsize',2); + +//------------------------------------------------------------------ diff --git a/Working_Examples/3432/CH7/EX7.18/Ex7_18_f0.pdf b/Working_Examples/3432/CH7/EX7.18/Ex7_18_f0.pdf Binary files differnew file mode 100755 index 0000000..18e8af6 --- /dev/null +++ b/Working_Examples/3432/CH7/EX7.18/Ex7_18_f0.pdf diff --git a/Working_Examples/3432/CH7/EX7.19/DEPENDENCIES/acker_dk.sci b/Working_Examples/3432/CH7/EX7.19/DEPENDENCIES/acker_dk.sci new file mode 100755 index 0000000..3391d24 --- /dev/null +++ b/Working_Examples/3432/CH7/EX7.19/DEPENDENCIES/acker_dk.sci @@ -0,0 +1,73 @@ +//------------------------------------------------------------------ +//------------------------------------------------------------------ +//A function written by Deepti Khimani. +//Usage:- +//[K, lambda]=acker_dk(a, b, pl) +//K=acker_dk(a, b, pl) +//a:- System matrix. +//b:- input matrix. +//p:- Desired poles. +//K:-State feedback gain for the control law u=-Kx. +//lambda:- Eigen values of (a-b*k) +//------------------------------------------------------------------ +//------------------------------------------------------------------ + +function [K, lambda]=acker_dk(a, b, pl) + [lhs,rhs]=argn(0) + + if rhs == 0 then + disp(["K=acker_dk(a, b, pl)";"[K, lambda]=acker_dk(a, b, pl)"]); + disp(["a:- System matrix";"b:- input matrix";"p:- Desired poles"]); + disp(["K:-State feedback gain for the control law u=-Kx";... + "lambda:- Eigen values of (a-b*k)"]); + return; + end +[ra ca]=size(a); +[rb cb]=size(b); +l=length(pl); + +CO=cont_mat(a,b); + +if ra~=l then + error(["Dimension error:";"number of desired poles must equal... + to order of the system"]); +elseif ra~=ca then + error(["Dimension error:";"system matrix should be... + a sqaure matrix"]); +elseif rb~=ra then + error (["Dimension error:","Input matrix should have... + as many rows as a system matrix."]); +elseif rank(CO)<ra then + error("system is not controllable"); +end +//------------------------------------------------------------------ +//controllable canonical form +[Ac,Bc,T,ind]=canon(a,b); + +//CO=zeros(ra,cb); +for i=1:ra + CO(:,ra+1-i)=Ac^(i-1)*Bc; +end +//------------------------------------------------------------------ +chr_eq=poly(pl,'s'); +des_chr_coeff=coeff(chr_eq); + +des_chr_coeff=des_chr_coeff(1:ra); +alpha_c=Ac^ra; + +for k=1:ra + alpha_c=alpha_c + des_chr_coeff(k)*Ac^(k-1) +end +//------------------------------------------------------------------ +//State feedback gain +temp=zeros(1,ra); +temp(1)=1; +K=temp*inv(CO)*alpha_c; +K=K/T; +lambda=spec(a-b*K); +endfunction +//------------------------------------------------------------------ + + + + diff --git a/Working_Examples/3432/CH7/EX7.19/DEPENDENCIES/fig_settings.sci b/Working_Examples/3432/CH7/EX7.19/DEPENDENCIES/fig_settings.sci new file mode 100755 index 0000000..5d5e7d4 --- /dev/null +++ b/Working_Examples/3432/CH7/EX7.19/DEPENDENCIES/fig_settings.sci @@ -0,0 +1,9 @@ +//------------------------------------------------------------------
+//figure handel settings
+f=get("current_figure"); //Current figure handle
+f.background=8; //make the figure window background white
+l=f.children(1);
+l.background=8 ;//make the text background white
+id=color('grey');
+xgrid(id);
+//------------------------------------------------------------------
diff --git a/Working_Examples/3432/CH7/EX7.19/Ex7_19.sce b/Working_Examples/3432/CH7/EX7.19/Ex7_19.sce new file mode 100755 index 0000000..013575d --- /dev/null +++ b/Working_Examples/3432/CH7/EX7.19/Ex7_19.sce @@ -0,0 +1,56 @@ +//Example 7.19
+//Reference input to Type-1 control system: DC Motor
+
+xdel(winsid())//close all graphics Windows
+clear;
+clc;
+//------------------------------------------------------------------
+
+//Location of system Zero
+z0=2;
+
+// State space representation
+F=[0 1;0 -1];
+G=[0 1]';
+H=[1 0];
+J=0;
+n=sqrt(length(F)); //order of the system
+
+//computing state feedback matrix to place poles at assumed location [-1 -2]
+exec('./acker_dk.sci', -1);
+K=acker_dk(F,G,[-1, -2]); //assume pd=[-1 -2]
+//------------------------------------------------------------------
+//augmented matrix for tracking the reference
+A=[F G;H J];
+N=A\[zeros(1,n) 1]';
+Nx=N(1:n);
+Nu=N(n+1);
+disp(Nx,"Nx",Nu,"Nu")
+
+//feedforward gain (input weight)
+Ntilde=Nu+K*Nx;
+disp(Ntilde,"N_tilde","Input gain: N_tilde =Nu+K Nx")
+//------------------------------------------------------------------
+// Verify if ||y-r|| -> 0;
+
+syscl=syslin('c',(F-G*K),G*Ntilde,H,J); //closed loop system
+
+t=0:0.1:10;
+r=ones(1,length(t));//reference input
+[y x]=csim('step',t,syscl); //closed loop response
+
+e=sqrt((r-y).^2) //norm of error
+plot(t,y);
+plot(t,r,'m:'); //reference input
+plot(t,e,'r-.'); //norm of error
+xset('font size',3);
+xstring(3,0.83,"y")
+xstring(2,1,"r")
+xstring(3,0.1,"$\|e\|$")
+//Title, labels and grid to the figure
+exec .\fig_settings.sci; // custom script for setting figure properties
+title('Step response of undamped oscillator to reference input','fontsize',3);
+xlabel('Time t (sec.)','fontsize',2);
+ylabel('Amplitude','fontsize',2);
+zoom_rect([0 -0.1 10 1.1])
+//------------------------------------------------------------------
diff --git a/Working_Examples/3432/CH7/EX7.19/Ex7_19_f0.pdf b/Working_Examples/3432/CH7/EX7.19/Ex7_19_f0.pdf Binary files differnew file mode 100755 index 0000000..67707bc --- /dev/null +++ b/Working_Examples/3432/CH7/EX7.19/Ex7_19_f0.pdf diff --git a/Working_Examples/3432/CH7/EX7.2.b/DEPENDENCIES/fig_settings.sci b/Working_Examples/3432/CH7/EX7.2.b/DEPENDENCIES/fig_settings.sci new file mode 100755 index 0000000..5d5e7d4 --- /dev/null +++ b/Working_Examples/3432/CH7/EX7.2.b/DEPENDENCIES/fig_settings.sci @@ -0,0 +1,9 @@ +//------------------------------------------------------------------
+//figure handel settings
+f=get("current_figure"); //Current figure handle
+f.background=8; //make the figure window background white
+l=f.children(1);
+l.background=8 ;//make the text background white
+id=color('grey');
+xgrid(id);
+//------------------------------------------------------------------
diff --git a/Working_Examples/3432/CH7/EX7.2.b/Ex7_2.sce b/Working_Examples/3432/CH7/EX7.2.b/Ex7_2.sce new file mode 100755 index 0000000..3cffa9b --- /dev/null +++ b/Working_Examples/3432/CH7/EX7.2.b/Ex7_2.sce @@ -0,0 +1,36 @@ +//Example 7.2
+//Cruise control system step response.
+
+xdel(winsid())//close all graphics Windows
+clear;
+clc;
+clc;
+//------------------------------------------------------------------
+//Cruise control system parameters
+m=1000;
+b=50;
+u=500;
+
+// Transfer function
+s=%s; // or
+s=poly(0,'s');
+sys1=syslin('c',(1/m)/(s+b/m));
+disp(sys1)
+//------------------------------------------------------------------
+F=[0 1; 0 -b/m];
+G=[0;1/m];
+H=[0 1];
+J=0;
+sys=syslin('c',F,G,H,J);
+//------------------------------------------------------------------
+//step response to u=500;
+t=0:0.5:100;
+v=csim('step',t,u*sys);
+plot(t,v,2)
+
+//Title, labels and grid to the figure
+exec .\fig_settings.sci; // custom script for setting figure properties
+title('Responses of car velocity to a step in u','fontsize',3)
+xlabel('Time t (sec.)','fontsize',2)
+ylabel('Amplitude','fontsize',2)
+//------------------------------------------------------------------
diff --git a/Working_Examples/3432/CH7/EX7.2.b/Ex7_2_f0.pdf b/Working_Examples/3432/CH7/EX7.2.b/Ex7_2_f0.pdf Binary files differnew file mode 100755 index 0000000..4b40aab --- /dev/null +++ b/Working_Examples/3432/CH7/EX7.2.b/Ex7_2_f0.pdf diff --git a/Working_Examples/3432/CH7/EX7.20/DEPENDENCIES/acker_dk.sci b/Working_Examples/3432/CH7/EX7.20/DEPENDENCIES/acker_dk.sci new file mode 100755 index 0000000..3391d24 --- /dev/null +++ b/Working_Examples/3432/CH7/EX7.20/DEPENDENCIES/acker_dk.sci @@ -0,0 +1,73 @@ +//------------------------------------------------------------------ +//------------------------------------------------------------------ +//A function written by Deepti Khimani. +//Usage:- +//[K, lambda]=acker_dk(a, b, pl) +//K=acker_dk(a, b, pl) +//a:- System matrix. +//b:- input matrix. +//p:- Desired poles. +//K:-State feedback gain for the control law u=-Kx. +//lambda:- Eigen values of (a-b*k) +//------------------------------------------------------------------ +//------------------------------------------------------------------ + +function [K, lambda]=acker_dk(a, b, pl) + [lhs,rhs]=argn(0) + + if rhs == 0 then + disp(["K=acker_dk(a, b, pl)";"[K, lambda]=acker_dk(a, b, pl)"]); + disp(["a:- System matrix";"b:- input matrix";"p:- Desired poles"]); + disp(["K:-State feedback gain for the control law u=-Kx";... + "lambda:- Eigen values of (a-b*k)"]); + return; + end +[ra ca]=size(a); +[rb cb]=size(b); +l=length(pl); + +CO=cont_mat(a,b); + +if ra~=l then + error(["Dimension error:";"number of desired poles must equal... + to order of the system"]); +elseif ra~=ca then + error(["Dimension error:";"system matrix should be... + a sqaure matrix"]); +elseif rb~=ra then + error (["Dimension error:","Input matrix should have... + as many rows as a system matrix."]); +elseif rank(CO)<ra then + error("system is not controllable"); +end +//------------------------------------------------------------------ +//controllable canonical form +[Ac,Bc,T,ind]=canon(a,b); + +//CO=zeros(ra,cb); +for i=1:ra + CO(:,ra+1-i)=Ac^(i-1)*Bc; +end +//------------------------------------------------------------------ +chr_eq=poly(pl,'s'); +des_chr_coeff=coeff(chr_eq); + +des_chr_coeff=des_chr_coeff(1:ra); +alpha_c=Ac^ra; + +for k=1:ra + alpha_c=alpha_c + des_chr_coeff(k)*Ac^(k-1) +end +//------------------------------------------------------------------ +//State feedback gain +temp=zeros(1,ra); +temp(1)=1; +K=temp*inv(CO)*alpha_c; +K=K/T; +lambda=spec(a-b*K); +endfunction +//------------------------------------------------------------------ + + + + diff --git a/Working_Examples/3432/CH7/EX7.20/DEPENDENCIES/fig_settings.sci b/Working_Examples/3432/CH7/EX7.20/DEPENDENCIES/fig_settings.sci new file mode 100755 index 0000000..5d5e7d4 --- /dev/null +++ b/Working_Examples/3432/CH7/EX7.20/DEPENDENCIES/fig_settings.sci @@ -0,0 +1,9 @@ +//------------------------------------------------------------------
+//figure handel settings
+f=get("current_figure"); //Current figure handle
+f.background=8; //make the figure window background white
+l=f.children(1);
+l.background=8 ;//make the text background white
+id=color('grey');
+xgrid(id);
+//------------------------------------------------------------------
diff --git a/Working_Examples/3432/CH7/EX7.20/Ex7_20.sce b/Working_Examples/3432/CH7/EX7.20/Ex7_20.sce new file mode 100755 index 0000000..14140dd --- /dev/null +++ b/Working_Examples/3432/CH7/EX7.20/Ex7_20.sce @@ -0,0 +1,79 @@ +//Example 7.20
+// Pole Placement as a Dominant Second-Order System
+
+xdel(winsid())//close all graphics Windows
+clear;
+clc;
+//------------------------------------------------------------------
+
+clc;
+clear all;
+
+// State space representation
+F=[0 2 0 0 0;-0.10 -0.35 0.1 0.1 0.75; 0 0 0 2 0;...
+ 0.4 0.4 -0.4 -1.4 0; 0 -0.03 0 0 -1];
+G=[0 0 0 0 1]';
+H=[0.5 0 0.5 0 0]; //Tape position at the head
+Ht=[-0.2 -0.2 0.2 0.2 0]; //Tension output
+J=0;
+n=sqrt(length(F))
+// Desired poles
+Pc=[-0.707+0.707*%i -0.707-0.707*%i -4 -4 -4]/1.5;
+//------------------------------------------------------------------
+// State feedback gain matrix via LQR (riccati equation)
+Q = eye(5,5);
+R =1
+// Riccati equation
+P=riccati(F, G*inv(R)*G', Q, 'c')
+K1=inv(R)*G'*P
+//------------------------------------------------------------------
+// State feedback gain matrix via pole-placement
+exec('./acker_dk.sci', -1);
+K2=acker_dk(F,G,Pc);
+disp(K2,'K2=',"Gain by ackermans formula" );
+//------------------------------------------------------------------
+Ntilde1=-inv(H*inv(F-G*K1)*G); //input gain for LQR feedback gain.
+Ntilde2=-inv(H*inv(F-G*K2)*G); //input gain for Ackerman's feedback gain.
+
+syscl1=syslin('c',(F-G*K1),G*Ntilde1,H,J); //closed loop system with K1
+syscl2=syslin('c',(F-G*K2),G*Ntilde2,H,J); //closed loop system with K2
+
+t=0:0.1:12;
+[y1 x1]=csim('step',t,syscl1); //response of position head with K1
+[y2 x2]=csim('step',t,syscl2); //response of position head with K2
+
+//plot of a position of read write head
+plot(t,y1,"m-."); //Design via LQR
+plot(t,y2,2); //Design via Ackerman's Formula
+
+//Title, labels and grid to the figure
+exec .\fig_settings.sci; // custom script for setting figure properties
+title('Step response of tape servomotor designs','fontsize',3);
+xlabel('Time t (sec.)','fontsize',2);
+ylabel('Tape Posotion','fontsize',2);
+
+xstring(2.5,1.1,"LQR")
+xarrows([3;4],[1.1;0.95],-1,1)
+xstring(5,0.7,["Dominant";"second order"])
+xarrows([5;4.2],[0.8;0.9],-1.5,1)
+//------------------------------------------------------------------
+
+//response as a tape tension
+yt1=Ht*x1;
+yt2=Ht*x2;
+
+figure(1)
+plot(t,yt1,"m-."); //Design via LQR
+plot(t,yt2,2); //Design via Ackerman's Formula
+
+//Title, labels and grid to the figure
+exec .\fig_settings.sci; // custom script for setting figure properties
+title('Tension plots for tape servomotor step responses','fontsize',3);
+xlabel('Time t (sec.)','fontsize',2);
+ylabel('Tape Tension','fontsize',2);
+
+xstring(3.5,0,"LQR")
+xarrows([3.7;4.7],[0;0],-1)
+xstring(6.1,-0.015,["Dominant";"second order"])
+xarrows([6;6],[-0.013;-0.002],-1)
+//------------------------------------------------------------------
diff --git a/Working_Examples/3432/CH7/EX7.20/Ex7_20_f0.pdf b/Working_Examples/3432/CH7/EX7.20/Ex7_20_f0.pdf Binary files differnew file mode 100755 index 0000000..3fe7ab6 --- /dev/null +++ b/Working_Examples/3432/CH7/EX7.20/Ex7_20_f0.pdf diff --git a/Working_Examples/3432/CH7/EX7.20/Ex7_20_f1.pdf b/Working_Examples/3432/CH7/EX7.20/Ex7_20_f1.pdf Binary files differnew file mode 100755 index 0000000..2569de4 --- /dev/null +++ b/Working_Examples/3432/CH7/EX7.20/Ex7_20_f1.pdf diff --git a/Working_Examples/3432/CH7/EX7.21/DEPENDENCIES/fig_settings.sci b/Working_Examples/3432/CH7/EX7.21/DEPENDENCIES/fig_settings.sci new file mode 100755 index 0000000..5d5e7d4 --- /dev/null +++ b/Working_Examples/3432/CH7/EX7.21/DEPENDENCIES/fig_settings.sci @@ -0,0 +1,9 @@ +//------------------------------------------------------------------
+//figure handel settings
+f=get("current_figure"); //Current figure handle
+f.background=8; //make the figure window background white
+l=f.children(1);
+l.background=8 ;//make the text background white
+id=color('grey');
+xgrid(id);
+//------------------------------------------------------------------
diff --git a/Working_Examples/3432/CH7/EX7.21/Ex7_21.sce b/Working_Examples/3432/CH7/EX7.21/Ex7_21.sce new file mode 100755 index 0000000..59ceda7 --- /dev/null +++ b/Working_Examples/3432/CH7/EX7.21/Ex7_21.sce @@ -0,0 +1,42 @@ +//Example 7.21
+// Symmetric root locus (SRL) for servo speed control
+
+xdel(winsid())//close all graphics Windows
+clear;
+clc;
+//------------------------------------------------------------------
+//Transfer function model of the given system
+a=1.5;//assume
+s=poly(0,'s');
+nums=1;
+dens=s+a;
+num_s=1;
+den_s=-s+a;
+G0s=syslin('c',nums/dens); //G0(s)
+G0_s=syslin('c',num_s/den_s); //G0(-s)
+
+evans(G0s)
+evans(G0_s)
+zoom_rect([-3 -0.1 3 0.1])
+f=gca();
+f.x_location = "origin"
+f.y_location = "origin"
+xset("color",2);
+h=legend('');
+h.visible = "off"
+
+//Title, labels and grid to the figure
+exec .\fig_settings.sci; // custom script for setting figure properties
+title('Symmetric root locus for a first order system','fontsize',3);
+//------------------------------------------------------------------
+//Root locus design
+//rho>0; choose rho=2
+rho=2;
+//optimal pole p=-sqrt(a^2+rho)
+p=-sqrt(a^2+rho)
+sig=real(p);
+omega=imag(p);
+plot(sig,omega,'ro')
+xstring(-2.5,0.02,["pole location at";"$\rho=2$"])
+xarrows([-2.2;-2.07],[0.02;0.002],-1.5,1)
+//------------------------------------------------------------------
diff --git a/Working_Examples/3432/CH7/EX7.21/Ex7_21_f0.pdf b/Working_Examples/3432/CH7/EX7.21/Ex7_21_f0.pdf Binary files differnew file mode 100755 index 0000000..7ae1c59 --- /dev/null +++ b/Working_Examples/3432/CH7/EX7.21/Ex7_21_f0.pdf diff --git a/Working_Examples/3432/CH7/EX7.22/DEPENDENCIES/acker_dk.sci b/Working_Examples/3432/CH7/EX7.22/DEPENDENCIES/acker_dk.sci new file mode 100755 index 0000000..3391d24 --- /dev/null +++ b/Working_Examples/3432/CH7/EX7.22/DEPENDENCIES/acker_dk.sci @@ -0,0 +1,73 @@ +//------------------------------------------------------------------ +//------------------------------------------------------------------ +//A function written by Deepti Khimani. +//Usage:- +//[K, lambda]=acker_dk(a, b, pl) +//K=acker_dk(a, b, pl) +//a:- System matrix. +//b:- input matrix. +//p:- Desired poles. +//K:-State feedback gain for the control law u=-Kx. +//lambda:- Eigen values of (a-b*k) +//------------------------------------------------------------------ +//------------------------------------------------------------------ + +function [K, lambda]=acker_dk(a, b, pl) + [lhs,rhs]=argn(0) + + if rhs == 0 then + disp(["K=acker_dk(a, b, pl)";"[K, lambda]=acker_dk(a, b, pl)"]); + disp(["a:- System matrix";"b:- input matrix";"p:- Desired poles"]); + disp(["K:-State feedback gain for the control law u=-Kx";... + "lambda:- Eigen values of (a-b*k)"]); + return; + end +[ra ca]=size(a); +[rb cb]=size(b); +l=length(pl); + +CO=cont_mat(a,b); + +if ra~=l then + error(["Dimension error:";"number of desired poles must equal... + to order of the system"]); +elseif ra~=ca then + error(["Dimension error:";"system matrix should be... + a sqaure matrix"]); +elseif rb~=ra then + error (["Dimension error:","Input matrix should have... + as many rows as a system matrix."]); +elseif rank(CO)<ra then + error("system is not controllable"); +end +//------------------------------------------------------------------ +//controllable canonical form +[Ac,Bc,T,ind]=canon(a,b); + +//CO=zeros(ra,cb); +for i=1:ra + CO(:,ra+1-i)=Ac^(i-1)*Bc; +end +//------------------------------------------------------------------ +chr_eq=poly(pl,'s'); +des_chr_coeff=coeff(chr_eq); + +des_chr_coeff=des_chr_coeff(1:ra); +alpha_c=Ac^ra; + +for k=1:ra + alpha_c=alpha_c + des_chr_coeff(k)*Ac^(k-1) +end +//------------------------------------------------------------------ +//State feedback gain +temp=zeros(1,ra); +temp(1)=1; +K=temp*inv(CO)*alpha_c; +K=K/T; +lambda=spec(a-b*K); +endfunction +//------------------------------------------------------------------ + + + + diff --git a/Working_Examples/3432/CH7/EX7.22/DEPENDENCIES/fig_settings.sci b/Working_Examples/3432/CH7/EX7.22/DEPENDENCIES/fig_settings.sci new file mode 100755 index 0000000..5d5e7d4 --- /dev/null +++ b/Working_Examples/3432/CH7/EX7.22/DEPENDENCIES/fig_settings.sci @@ -0,0 +1,9 @@ +//------------------------------------------------------------------
+//figure handel settings
+f=get("current_figure"); //Current figure handle
+f.background=8; //make the figure window background white
+l=f.children(1);
+l.background=8 ;//make the text background white
+id=color('grey');
+xgrid(id);
+//------------------------------------------------------------------
diff --git a/Working_Examples/3432/CH7/EX7.22/Ex7_22.sce b/Working_Examples/3432/CH7/EX7.22/Ex7_22.sce new file mode 100755 index 0000000..4e277f6 --- /dev/null +++ b/Working_Examples/3432/CH7/EX7.22/Ex7_22.sce @@ -0,0 +1,46 @@ +//Example 7.22
+// SRL design for satellite attitude control
+
+xdel(winsid())//close all graphics Windows
+clear;
+clc;
+//------------------------------------------------------------------
+//Transfer function for satellite attitude control system
+s=poly(0,'s');
+nums=1;
+dens=s^2;
+num_s=1;
+den_s=(-s)^2;
+G0s=syslin('c',nums/dens); //G0(s)
+G0_s=syslin('c',num_s/den_s); //G0(-s)
+//evans(G0s*G0_s)
+evans(1/s^4)
+zoom_rect([-3 -3 3 3])
+f=gca();
+f.x_location = "origin"
+f.y_location = "origin"
+xset("color",2);
+h=legend('');
+h.visible = "off"
+
+//Title, labels and grid to the figure
+exec .\fig_settings.sci; //custom script for setting figure properties
+title('Symmetric root locus for the satellite','fontsize',3);
+//------------------------------------------------------------------
+//Root locus design
+//choose rho=4.07 that places pole at -1+-j
+rho=4.07;
+chr_eqn=(1+rho*G0s*G0_s)
+p=[-1+%i, -1-%i];
+sig=real(p);
+omega=imag(p);
+plot(sig,omega,'ro')
+xstring(-2.2,0.5,["pole locations at";"$\rho=4.07$"])
+//------------------------------------------------------------------
+//pole-placement design;
+sys=tf2ss(G0s);
+exec('./acker_dk.sci', -1);
+K=acker_dk(sys.A,sys.B,p);
+syscl=syslin('c',(sys.A-sys.B*K),sys.B, sys.C, sys.D)
+disp(spec(syscl.A),"Closed loop eigen values");
+//------------------------------------------------------------------
diff --git a/Working_Examples/3432/CH7/EX7.22/Ex7_22_f0.pdf b/Working_Examples/3432/CH7/EX7.22/Ex7_22_f0.pdf Binary files differnew file mode 100755 index 0000000..ebc7654 --- /dev/null +++ b/Working_Examples/3432/CH7/EX7.22/Ex7_22_f0.pdf diff --git a/Working_Examples/3432/CH7/EX7.23/DEPENDENCIES/acker_dk.sci b/Working_Examples/3432/CH7/EX7.23/DEPENDENCIES/acker_dk.sci new file mode 100755 index 0000000..3391d24 --- /dev/null +++ b/Working_Examples/3432/CH7/EX7.23/DEPENDENCIES/acker_dk.sci @@ -0,0 +1,73 @@ +//------------------------------------------------------------------ +//------------------------------------------------------------------ +//A function written by Deepti Khimani. +//Usage:- +//[K, lambda]=acker_dk(a, b, pl) +//K=acker_dk(a, b, pl) +//a:- System matrix. +//b:- input matrix. +//p:- Desired poles. +//K:-State feedback gain for the control law u=-Kx. +//lambda:- Eigen values of (a-b*k) +//------------------------------------------------------------------ +//------------------------------------------------------------------ + +function [K, lambda]=acker_dk(a, b, pl) + [lhs,rhs]=argn(0) + + if rhs == 0 then + disp(["K=acker_dk(a, b, pl)";"[K, lambda]=acker_dk(a, b, pl)"]); + disp(["a:- System matrix";"b:- input matrix";"p:- Desired poles"]); + disp(["K:-State feedback gain for the control law u=-Kx";... + "lambda:- Eigen values of (a-b*k)"]); + return; + end +[ra ca]=size(a); +[rb cb]=size(b); +l=length(pl); + +CO=cont_mat(a,b); + +if ra~=l then + error(["Dimension error:";"number of desired poles must equal... + to order of the system"]); +elseif ra~=ca then + error(["Dimension error:";"system matrix should be... + a sqaure matrix"]); +elseif rb~=ra then + error (["Dimension error:","Input matrix should have... + as many rows as a system matrix."]); +elseif rank(CO)<ra then + error("system is not controllable"); +end +//------------------------------------------------------------------ +//controllable canonical form +[Ac,Bc,T,ind]=canon(a,b); + +//CO=zeros(ra,cb); +for i=1:ra + CO(:,ra+1-i)=Ac^(i-1)*Bc; +end +//------------------------------------------------------------------ +chr_eq=poly(pl,'s'); +des_chr_coeff=coeff(chr_eq); + +des_chr_coeff=des_chr_coeff(1:ra); +alpha_c=Ac^ra; + +for k=1:ra + alpha_c=alpha_c + des_chr_coeff(k)*Ac^(k-1) +end +//------------------------------------------------------------------ +//State feedback gain +temp=zeros(1,ra); +temp(1)=1; +K=temp*inv(CO)*alpha_c; +K=K/T; +lambda=spec(a-b*K); +endfunction +//------------------------------------------------------------------ + + + + diff --git a/Working_Examples/3432/CH7/EX7.23/DEPENDENCIES/fig_settings.sci b/Working_Examples/3432/CH7/EX7.23/DEPENDENCIES/fig_settings.sci new file mode 100755 index 0000000..5d5e7d4 --- /dev/null +++ b/Working_Examples/3432/CH7/EX7.23/DEPENDENCIES/fig_settings.sci @@ -0,0 +1,9 @@ +//------------------------------------------------------------------
+//figure handel settings
+f=get("current_figure"); //Current figure handle
+f.background=8; //make the figure window background white
+l=f.children(1);
+l.background=8 ;//make the text background white
+id=color('grey');
+xgrid(id);
+//------------------------------------------------------------------
diff --git a/Working_Examples/3432/CH7/EX7.23/Ex7_23.sce b/Working_Examples/3432/CH7/EX7.23/Ex7_23.sce new file mode 100755 index 0000000..c2e1d2e --- /dev/null +++ b/Working_Examples/3432/CH7/EX7.23/Ex7_23.sce @@ -0,0 +1,70 @@ +//Example 7.23
+// SRL Design for an Inverted Pendulum
+
+xdel(winsid())//close all graphics Windows
+clear;
+clc;
+//------------------------------------------------------------------
+
+//Transfer function model of Inverted Pendulum.
+s=poly(0,'s');
+
+nums=-(s+2);
+dens=(s^2-1)
+num_s=-(-s+2);
+den_s=((-s)^2-1)
+G0s=syslin('c',nums/dens); //G0(s)
+G0_s=syslin('c',num_s/den_s); //G0(-s)
+sysGG=G0s*G0_s;
+evans(sysGG)
+title('Symmetric root locus for Inverted Pendulum')
+zoom_rect([-3 -2 3 2])
+f=gca();
+f.x_location = "origin"
+f.y_location = "origin"
+xset("color",2);
+h=legend('');
+h.visible = "off"
+
+//Title, labels and grid to the figure
+exec .\fig_settings.sci; // custom script for setting figure properties
+title('Symmetric root locus for the inverted pendulum','fontsize',3);
+//------------------------------------------------------------------
+//Root locus design
+//choose rho=1 that places pole at -1.36+-j0.606
+rho=1;
+p=[-1.36+0.606*%i, -1.36-0.606*%i];
+sig=real(p);
+omega=imag(p);
+plot(sig,omega,'ro')
+xstring(-1.25,0.5,["pole locations at";"$\rho=1$"])
+//------------------------------------------------------------------
+//pole-placement design;
+Ac=[0 1;1 0];Bc=[0 -1]'; Cc=[2 1];Dc=0;
+exec('./acker_dk.sci', -1);
+K=acker_dk(Ac,Bc,p);
+disp(K,"K=",spec(Ac-Bc*K),"Closed loop eigen values");
+
+//input gain calculation
+n=sqrt(length(Ac));
+A=[Ac Bc;Cc Dc];
+N=A\[zeros(1,n) 1]';
+Nx=N(1:n);
+Nu=N(n+1);
+
+//feedforward gain (input gain)
+Ntilde=Nu+K*Nx;
+
+//Step respose
+t=0:0.1:4.5;
+syscl=syslin('c',(Ac-Bc*K),Bc*Ntilde, Cc, Dc)
+[y x]=csim('step',t,syscl); //closed loop response
+figure,
+plot(t,y);
+
+//Title, labels and grid to the figure
+exec .\fig_settings.sci; // custom script for setting figure properties
+title('Step response for inverted pendulum','fontsize',3);
+xlabel('Time t (sec.)','fontsize',2);
+ylabel(["Position","$x_1$"],'fontsize',2);
+//------------------------------------------------------------------
diff --git a/Working_Examples/3432/CH7/EX7.23/Ex7_23_f0.pdf b/Working_Examples/3432/CH7/EX7.23/Ex7_23_f0.pdf Binary files differnew file mode 100755 index 0000000..ec5d199 --- /dev/null +++ b/Working_Examples/3432/CH7/EX7.23/Ex7_23_f0.pdf diff --git a/Working_Examples/3432/CH7/EX7.23/Ex7_23_f1.pdf b/Working_Examples/3432/CH7/EX7.23/Ex7_23_f1.pdf Binary files differnew file mode 100755 index 0000000..0caae04 --- /dev/null +++ b/Working_Examples/3432/CH7/EX7.23/Ex7_23_f1.pdf diff --git a/Working_Examples/3432/CH7/EX7.24/DEPENDENCIES/fig_settings.sci b/Working_Examples/3432/CH7/EX7.24/DEPENDENCIES/fig_settings.sci new file mode 100755 index 0000000..5d5e7d4 --- /dev/null +++ b/Working_Examples/3432/CH7/EX7.24/DEPENDENCIES/fig_settings.sci @@ -0,0 +1,9 @@ +//------------------------------------------------------------------
+//figure handel settings
+f=get("current_figure"); //Current figure handle
+f.background=8; //make the figure window background white
+l=f.children(1);
+l.background=8 ;//make the text background white
+id=color('grey');
+xgrid(id);
+//------------------------------------------------------------------
diff --git a/Working_Examples/3432/CH7/EX7.24/Ex7_24.sce b/Working_Examples/3432/CH7/EX7.24/Ex7_24.sce new file mode 100755 index 0000000..a816cd7 --- /dev/null +++ b/Working_Examples/3432/CH7/EX7.24/Ex7_24.sce @@ -0,0 +1,108 @@ +//Example 7.24
+// LQR Design for a Tape Drive
+
+xdel(winsid())//close all graphics Windows
+clear;
+clc;
+//------------------------------------------------------------------
+// State space model for a Tape Drive
+F=[0 2 0 0 0;-0.10 -0.35 0.1 0.1 0.75; 0 0 0 2 0; 0.4 0.4 -0.4 -1.4 0; 0 -0.03 0 0 -1];
+G=[0 0 0 0 1]';
+H3=[0.5 0 0.5 0 0];
+//------------------------------------------------------------------
+// State feedback gain matrix via LQR (riccati equation)
+// (a) Continuous LQR for rho=1
+rho=1;
+R1=1;
+Q1=rho*H3'*H3;
+// Riccati equation
+P1=riccati(F, G*inv(R1)*G', Q1, 'c')
+K1=inv(R1)*G'*P1
+disp(K1,'K1')
+//------------------------------------------------------------------
+// State feedback gain matrix via LQR (riccati equation)
+// (a) Comparision in step response with rho=0.1,1,10.
+rho=0.1;
+R2=1;
+Q2=rho*H3'*H3;
+// Riccati equation
+P2=riccati(F, G*inv(R2)*G', Q2, 'c')
+K2=inv(R2)*G'*P2
+
+rho=10;
+R3=1;
+Q3=rho*H3'*H3;
+// Riccati equation
+P3=riccati(F, G*inv(R3)*G', Q3, 'c')
+K3=inv(R3)*G'*P3
+//------------------------------------------------------------------
+//input gains for step reference with rho=0.1,1,10.
+Ntilde1=-inv(H3*inv(F-G*K1)*G);
+Ntilde2=-inv(H3*inv(F-G*K2)*G);
+Ntilde3=-inv(H3*inv(F-G*K3)*G);
+
+//Closed loop system with rho=0.1,1,10.
+syscl1=syslin('c',(F-G*K1),G*Ntilde1,H3,0);
+syscl2=syslin('c',(F-G*K2),G*Ntilde2,H3,0);
+syscl3=syslin('c',(F-G*K3),G*Ntilde3,H3,0);
+
+//step response with rho=0.1,1,10.
+t=0:0.1:12;
+[y1 x1]=csim('step',t,syscl1); //closed loop response
+[y2 x2]=csim('step',t,syscl2); //closed loop response
+[y3 x3]=csim('step',t,syscl3); //closed loop response
+
+figure,
+a1=newaxes();
+a1.axes_bounds=[0,0,1.0,0.5];
+plot(t,y1);
+plot(t,y2,'r-.');
+plot(t,y3,'m:');
+
+//Title, labels and grid to the figure
+exec .\fig_settings.sci; // custom script for setting figure properties
+title('(a)Step response of step servo motor for LQR Design','fontsize',3);
+xlabel('Time t (sec.)','fontsize',2);
+ylabel(["Tape Position","$x_3$"],'fontsize',2);
+
+xstring(4.1,0.85,"$\rho=1$")
+xstring(5.5,0.75,"$\rho=0.1$")
+xstring(2.1,1.05,"$\rho=10$")
+//------------------------------------------------------------------
+//Tensions for the Tape
+//For tape output is Ht=[-0.2 -0.2 0.2 0.2 0];
+Ht=[-0.2 -0.2 0.2 0.2 0];
+H3=Ht;
+//input gains can not be computed because of singularity. so set it 1;
+Ntilde1=1;
+Ntilde2=1;
+Ntilde3=1;
+
+//Closed loop system with rho=0.1,1,10.
+syscl1=syslin('c',(F-G*K1),G*Ntilde1,H3,0);
+syscl2=syslin('c',(F-G*K2),G*Ntilde2,H3,0);
+syscl3=syslin('c',(F-G*K3),G*Ntilde3,H3,0);
+
+//step response with rho=0.1,1,10.
+t=0:0.1:12;
+[y1 x1]=csim('step',t,syscl1); //closed loop response
+[y2 x2]=csim('step',t,syscl2); //closed loop response
+[y3 x3]=csim('step',t,syscl3); //closed loop response
+
+a2=newaxes();
+a2.axes_bounds=[0,0.5,1.0,0.5];
+plot(t,y1);
+plot(t,y2,'r-.');
+plot(t,y3,'m:');
+
+//Title, labels and grid to the figure
+exec .\fig_settings.sci; // custom script for setting figure properties
+title('(b)Corresponding tension for Tape servomotor step response','fontsize',3);
+xlabel('Time t (sec.)','fontsize',2);
+ylabel(["Tape Tension","T"],'fontsize',2);
+
+
+xstring(4.3,-0.05,"$\rho=1$")
+xstring(6,-0.1,"$\rho=0.1$")
+xstring(1.5,-0.03,"$\rho=10$")
+//------------------------------------------------------------------
diff --git a/Working_Examples/3432/CH7/EX7.24/Ex7_24_f0.pdf b/Working_Examples/3432/CH7/EX7.24/Ex7_24_f0.pdf Binary files differnew file mode 100755 index 0000000..b91050f --- /dev/null +++ b/Working_Examples/3432/CH7/EX7.24/Ex7_24_f0.pdf diff --git a/Working_Examples/3432/CH7/EX7.25/DEPENDENCIES/fig_settings.sci b/Working_Examples/3432/CH7/EX7.25/DEPENDENCIES/fig_settings.sci new file mode 100755 index 0000000..5d5e7d4 --- /dev/null +++ b/Working_Examples/3432/CH7/EX7.25/DEPENDENCIES/fig_settings.sci @@ -0,0 +1,9 @@ +//------------------------------------------------------------------
+//figure handel settings
+f=get("current_figure"); //Current figure handle
+f.background=8; //make the figure window background white
+l=f.children(1);
+l.background=8 ;//make the text background white
+id=color('grey');
+xgrid(id);
+//------------------------------------------------------------------
diff --git a/Working_Examples/3432/CH7/EX7.25/Ex7_25.sce b/Working_Examples/3432/CH7/EX7.25/Ex7_25.sce new file mode 100755 index 0000000..0128a2f --- /dev/null +++ b/Working_Examples/3432/CH7/EX7.25/Ex7_25.sce @@ -0,0 +1,52 @@ +//Example 7.25
+// An estimator design for a simple pendulum
+
+xdel(winsid())//close all graphics Windows
+clear;
+clc;
+//------------------------------------------------------------------
+// State space representation
+w0=1;
+F=[0 1; -w0^2 0];
+G=[0 1]';
+H=[1 0];
+J=0;
+n=sqrt(length(F));//order of the system
+// Desired estimator poles
+Pe=[-10*w0 -10*w0];
+// Observer gain matrix for system
+Lt=ppol(F',H',Pe);
+L=Lt';
+disp(L,"L=" );
+//------------------------------------------------------------------
+//simulation for closed loop system
+x0=[1 0]' //initial condition
+
+//State feedback control law u=-Kx; (from Ex7_15)
+K=[3*w0^2 4*w0];
+//------------------------------------------------------------------
+//Augmented plant and observer
+Faug=[F-G*K, zeros(n,n); L*H, F-L*H];
+Gaug=[0 0 0 0]';
+Haug=[H -H];
+Jaug=0;
+
+sys_aug=syslin('c',Faug,Gaug,Haug,Jaug);
+t=0:0.1:4;
+u=zeros(1,length(t));
+x0=[1 0 0 0]';
+[x z]=csim(u,t,sys_aug,x0); //closed loop response
+plot(t,z(1,:));
+plot(t,z(2,:),'m');
+plot(t,z(3,:),'b:');
+plot(t,z(4,:),'m:');
+
+//Title, labels and grid to the figure
+exec .\fig_settings.sci; // custom script for setting figure properties
+title(['Initial condition response of oscillator showing',...
+'$\mathbf{x}$','and','$\hat{\mathbf{x}}$'],'fontsize',3)
+xlabel('Time t (sec.)','fontsize',2)
+ylabel('Amplitude','fontsize',2)
+legend('$x_1$','$x_2$','$\hat{x}_1$','$\hat{x}_2$')
+xset('font size',2)
+//------------------------------------------------------------------
diff --git a/Working_Examples/3432/CH7/EX7.25/Ex7_25_f0.pdf b/Working_Examples/3432/CH7/EX7.25/Ex7_25_f0.pdf Binary files differnew file mode 100755 index 0000000..e24633f --- /dev/null +++ b/Working_Examples/3432/CH7/EX7.25/Ex7_25_f0.pdf diff --git a/Working_Examples/3432/CH7/EX7.26/DEPENDENCIES/fig_settings.sci b/Working_Examples/3432/CH7/EX7.26/DEPENDENCIES/fig_settings.sci new file mode 100755 index 0000000..5d5e7d4 --- /dev/null +++ b/Working_Examples/3432/CH7/EX7.26/DEPENDENCIES/fig_settings.sci @@ -0,0 +1,9 @@ +//------------------------------------------------------------------
+//figure handel settings
+f=get("current_figure"); //Current figure handle
+f.background=8; //make the figure window background white
+l=f.children(1);
+l.background=8 ;//make the text background white
+id=color('grey');
+xgrid(id);
+//------------------------------------------------------------------
diff --git a/Working_Examples/3432/CH7/EX7.26/Ex7_26.sce b/Working_Examples/3432/CH7/EX7.26/Ex7_26.sce new file mode 100755 index 0000000..7485ee2 --- /dev/null +++ b/Working_Examples/3432/CH7/EX7.26/Ex7_26.sce @@ -0,0 +1,55 @@ +//Example 7.26
+// A reduced order estimator design for pendulum
+
+xdel(winsid())//close all graphics Windows
+clear;
+clc;
+//------------------------------------------------------------------
+// State space representation
+w0=1;
+F=[0 1; -w0^2 0];
+G=[0 1]';
+H=[1 0];
+J=0;
+n=sqrt(length(F));//order of the system
+
+//partioned system
+Faa=F(1,1); Fab=F(1,2);
+Fba=F(2,1); Fbb=F(2,2);
+
+// Desired estimator poles
+Pe=[-10];
+// Observer gain matrix for system
+L=ppol(Fbb',Fab',Pe);
+L=L';
+disp(L,"L=" );
+//------------------------------------------------------------------
+//simulation for closed loop system
+x0=[1 0 10]' //initial condition
+
+//State feedback control law u=-Kx; (from Ex7_15)
+K=[3*w0^2 4*w0];
+//------------------------------------------------------------------
+//Augmented plant and observer
+Faug=[F-G*K, zeros(n,1); Fab, L*Fab, Fbb-L*Fab];
+Gaug=[0 0 0]';
+Haug=[H 0];
+J=0;
+
+sys_aug=syslin('c',Faug,Gaug,Haug,J);
+t=0:0.1:4;
+u=zeros(1,length(t));
+[x z]=csim(u,t,sys_aug,x0); //closed loop response
+plot(t,z(1,:),'b');
+plot(t,z(2,:),'r');
+plot(t,z(3,:),'r--');
+
+
+//Title, labels and grid to the figure
+exec .\fig_settings.sci; // custom script for setting figure properties
+title('Initial condition response of the reduced order estimator','fontsize',3)
+xlabel('Time t (sec.)','fontsize',2)
+ylabel('Amplitude','fontsize',2)
+legend('$x_1$','$x_2$','$\hat{x}_2$')
+xset('font size',2)
+//------------------------------------------------------------------
diff --git a/Working_Examples/3432/CH7/EX7.26/Ex7_26_f0.pdf b/Working_Examples/3432/CH7/EX7.26/Ex7_26_f0.pdf Binary files differnew file mode 100755 index 0000000..96d9f50 --- /dev/null +++ b/Working_Examples/3432/CH7/EX7.26/Ex7_26_f0.pdf diff --git a/Working_Examples/3432/CH7/EX7.27/DEPENDENCIES/fig_settings.sci b/Working_Examples/3432/CH7/EX7.27/DEPENDENCIES/fig_settings.sci new file mode 100755 index 0000000..5d5e7d4 --- /dev/null +++ b/Working_Examples/3432/CH7/EX7.27/DEPENDENCIES/fig_settings.sci @@ -0,0 +1,9 @@ +//------------------------------------------------------------------
+//figure handel settings
+f=get("current_figure"); //Current figure handle
+f.background=8; //make the figure window background white
+l=f.children(1);
+l.background=8 ;//make the text background white
+id=color('grey');
+xgrid(id);
+//------------------------------------------------------------------
diff --git a/Working_Examples/3432/CH7/EX7.27/Ex7_27.sce b/Working_Examples/3432/CH7/EX7.27/Ex7_27.sce new file mode 100755 index 0000000..8c3c51a --- /dev/null +++ b/Working_Examples/3432/CH7/EX7.27/Ex7_27.sce @@ -0,0 +1,41 @@ +//Example 7.27
+// SRL estimator design for a simple pendulum
+
+xdel(winsid())//close all graphics Windows
+clear;
+clc;
+//------------------------------------------------------------------
+// State space representation
+F=[0 1; -1 0];
+G=[0 1]';
+H=[1 0];
+J=0;
+
+//Transfer function
+sys=syslin('c',F,G,H,J)
+sysGG=ss2tf(sys)
+
+//Symmetric root locus for the inverted pendulum estimator design
+//------------------------------------------------------------------
+//Root locus design
+evans(sysGG*sysGG)
+zoom_rect([-5 -5 5 5])
+f=gca();
+f.x_location = "origin"
+f.y_location = "origin"
+xset("color",2);
+h=legend('');
+h.visible = "off"
+//Title, labels and grid to the figure
+exec .\fig_settings.sci; // custom script for setting figure properties
+title('Symmetric root locus for inverted the pendulum estimator design',...
+'fontsize',3);
+//------------------------------------------------------------------
+//pole locations for q=365; p=-3+-j3.18
+p=[-3+3.18*%i -3-3.18*%i]
+sig=real(p);
+omega=imag(p);
+plot(sig,omega,'ro')
+xstring(-4,1,["pole location at";"q=365"])
+xarrows([-3.5;-3.05],[2;3.1],-1.5,1)
+//------------------------------------------------------------------
diff --git a/Working_Examples/3432/CH7/EX7.27/Ex7_27_f0.pdf b/Working_Examples/3432/CH7/EX7.27/Ex7_27_f0.pdf Binary files differnew file mode 100755 index 0000000..ad30cd9 --- /dev/null +++ b/Working_Examples/3432/CH7/EX7.27/Ex7_27_f0.pdf diff --git a/Working_Examples/3432/CH7/EX7.28/DEPENDENCIES/fig_settings.sci b/Working_Examples/3432/CH7/EX7.28/DEPENDENCIES/fig_settings.sci new file mode 100755 index 0000000..5d5e7d4 --- /dev/null +++ b/Working_Examples/3432/CH7/EX7.28/DEPENDENCIES/fig_settings.sci @@ -0,0 +1,9 @@ +//------------------------------------------------------------------
+//figure handel settings
+f=get("current_figure"); //Current figure handle
+f.background=8; //make the figure window background white
+l=f.children(1);
+l.background=8 ;//make the text background white
+id=color('grey');
+xgrid(id);
+//------------------------------------------------------------------
diff --git a/Working_Examples/3432/CH7/EX7.28/DEPENDENCIES/zpk_dk.sci b/Working_Examples/3432/CH7/EX7.28/DEPENDENCIES/zpk_dk.sci new file mode 100755 index 0000000..95b4e6c --- /dev/null +++ b/Working_Examples/3432/CH7/EX7.28/DEPENDENCIES/zpk_dk.sci @@ -0,0 +1,43 @@ +//------------------------------------------------------------------ +//------------------------------------------------------------------ +//A function written by Deepti Khimani. +//Usage:- +//p=zpk_dk(sl) +//[p, z]=zpk_dk(sl) +//[p, z, k]=zpk_dk(sl) +//p:- Poles of the system +//z:- zeros of the system +//k:- DC gain of the system +//------------------------------------------------------------------ +//------------------------------------------------------------------ + +function[pl,zr,k]=zpk_dk(sysmodel) + [lhs,rhs]=argn(0) + + if rhs == 0 then + disp(["p=zpk_dk(sl)";"[p, z]=zpk_dk(sl)";"[p, z, k]=zpk_dk(sl)"]); + disp(["p:- Poles of the system";"z:- zeros of the system"]); + disp("k:- DC gain of the system"); + return; + end + + if typeof(sysmodel)=="rational" then + sys=tf2ss(sysmodel); + pl=spec(sys.A); + zr=trzeros(sys); + temp1=poly(zr,'s','roots')/poly(pl,'s','roots'); + temp2=sysmodel/temp1; + temp3=tf2ss(temp2); + k=temp3.D; + elseif typeof(sysmodel)=="state-space" then + pl=spec(sysmodel.A); + zr=trzeros(sysmodel); + g=ss2tf(sysmodel); + temp1=poly(zr,'s','roots')/poly(pl,'s','roots'); + temp2=g/temp1; + temp3=tf2ss(temp2); + k=temp3.D + else + error("Wrong type of input argument.") + end +endfunction diff --git a/Working_Examples/3432/CH7/EX7.28/Ex7_28.sce b/Working_Examples/3432/CH7/EX7.28/Ex7_28.sce new file mode 100755 index 0000000..18d705b --- /dev/null +++ b/Working_Examples/3432/CH7/EX7.28/Ex7_28.sce @@ -0,0 +1,61 @@ +//Example 7.28
+// Full order compensator design for satellite attitude control.
+
+xdel(winsid())//close all graphics Windows
+clear;
+clc;
+//------------------------------------------------------------------
+
+// State space representation
+A=[0 1; 0 0];
+B=[0 1]';
+C=[1 0];
+D=0;
+n=sqrt(length(A));
+//Desired poles for the satellite attitude control system.
+Pc=[-0.707+0.707*%i -0.707-0.707*%i ]
+
+// State feedback gain
+K=ppol(A,B,Pc)
+disp(K,'K=',"State feedback gain")
+
+//Estimator - error roots are at
+Pe=[-2.5+4.3*%i -2.5-4.3*%i]
+L=ppol(A',C',Pe);
+L=L';
+disp(L,'L=',"Observer gain")
+//------------------------------------------------------------------
+//Compensator Design
+sys1=syslin('c',A,B,C,D);
+G=ss2tf(sys1);
+s=poly(0,'s');
+
+Ds=-K*inv(s*eye(n,n)-A+B*K+L*C)*L;
+
+exec('./zpk_dk.sci', -1);
+[pl,zr Kp]=zpk_dk(Ds);
+D=poly(zr,'s','roots')/poly(pl,'s','roots')
+
+evans(G*D)
+zoom_rect([-8 -6 8 6])
+
+f=gca();
+f.x_location = "origin"
+f.y_location = "origin"
+xset("color",2);
+h=legend('');
+h.visible = "off"
+
+//Title, labels and grid to the figure
+exec .\fig_settings.sci; //custom script for setting figure properties
+title('Root locus for combined control and estimator,...
+ with process gain as the parameter','fontsize',3);
+//------------------------------------------------------------------
+//Frequnecy response for 1/s^2 and compensated
+
+figure,
+bode([-Ds*G;G],0.01/2/%pi,100/2/%pi,"rad");
+title(["Frequency response for","$G(s)=1/s^2$"],'fontsize',3)
+legend('Compensated','Uncompensated')
+exec .\fig_settings.sci; //custom script for setting figure properties
+//------------------------------------------------------------------
diff --git a/Working_Examples/3432/CH7/EX7.28/Ex7_28_f0.pdf b/Working_Examples/3432/CH7/EX7.28/Ex7_28_f0.pdf Binary files differnew file mode 100755 index 0000000..2f2a244 --- /dev/null +++ b/Working_Examples/3432/CH7/EX7.28/Ex7_28_f0.pdf diff --git a/Working_Examples/3432/CH7/EX7.28/Ex7_28_f1.pdf b/Working_Examples/3432/CH7/EX7.28/Ex7_28_f1.pdf Binary files differnew file mode 100755 index 0000000..8d63110 --- /dev/null +++ b/Working_Examples/3432/CH7/EX7.28/Ex7_28_f1.pdf diff --git a/Working_Examples/3432/CH7/EX7.29/DEPENDENCIES/fig_settings.sci b/Working_Examples/3432/CH7/EX7.29/DEPENDENCIES/fig_settings.sci new file mode 100755 index 0000000..5d5e7d4 --- /dev/null +++ b/Working_Examples/3432/CH7/EX7.29/DEPENDENCIES/fig_settings.sci @@ -0,0 +1,9 @@ +//------------------------------------------------------------------
+//figure handel settings
+f=get("current_figure"); //Current figure handle
+f.background=8; //make the figure window background white
+l=f.children(1);
+l.background=8 ;//make the text background white
+id=color('grey');
+xgrid(id);
+//------------------------------------------------------------------
diff --git a/Working_Examples/3432/CH7/EX7.29/DEPENDENCIES/zpk_dk.sci b/Working_Examples/3432/CH7/EX7.29/DEPENDENCIES/zpk_dk.sci new file mode 100755 index 0000000..95b4e6c --- /dev/null +++ b/Working_Examples/3432/CH7/EX7.29/DEPENDENCIES/zpk_dk.sci @@ -0,0 +1,43 @@ +//------------------------------------------------------------------ +//------------------------------------------------------------------ +//A function written by Deepti Khimani. +//Usage:- +//p=zpk_dk(sl) +//[p, z]=zpk_dk(sl) +//[p, z, k]=zpk_dk(sl) +//p:- Poles of the system +//z:- zeros of the system +//k:- DC gain of the system +//------------------------------------------------------------------ +//------------------------------------------------------------------ + +function[pl,zr,k]=zpk_dk(sysmodel) + [lhs,rhs]=argn(0) + + if rhs == 0 then + disp(["p=zpk_dk(sl)";"[p, z]=zpk_dk(sl)";"[p, z, k]=zpk_dk(sl)"]); + disp(["p:- Poles of the system";"z:- zeros of the system"]); + disp("k:- DC gain of the system"); + return; + end + + if typeof(sysmodel)=="rational" then + sys=tf2ss(sysmodel); + pl=spec(sys.A); + zr=trzeros(sys); + temp1=poly(zr,'s','roots')/poly(pl,'s','roots'); + temp2=sysmodel/temp1; + temp3=tf2ss(temp2); + k=temp3.D; + elseif typeof(sysmodel)=="state-space" then + pl=spec(sysmodel.A); + zr=trzeros(sysmodel); + g=ss2tf(sysmodel); + temp1=poly(zr,'s','roots')/poly(pl,'s','roots'); + temp2=g/temp1; + temp3=tf2ss(temp2); + k=temp3.D + else + error("Wrong type of input argument.") + end +endfunction diff --git a/Working_Examples/3432/CH7/EX7.29/Ex7_29.sce b/Working_Examples/3432/CH7/EX7.29/Ex7_29.sce new file mode 100755 index 0000000..a0c4794 --- /dev/null +++ b/Working_Examples/3432/CH7/EX7.29/Ex7_29.sce @@ -0,0 +1,74 @@ +//Example 7.29
+// A reduced order compensator design for a satellite attitude control
+
+xdel(winsid())//close all graphics Windows
+clear;
+clc;
+//------------------------------------------------------------------
+// State space representation
+F=[0 1;0 0];
+G=[0 1]';
+H=[1 0];
+J=0;
+n=sqrt(length(F));//order of the system
+
+//partioned system
+Faa=F(1,1); Fab=F(1,2);
+Fba=F(2,1); Fbb=F(2,2);
+Ga=G(1);Gb=G(2);
+
+// Desired estimator poles
+Pe=[-5];
+// Observer gain matrix for system
+L=ppol(Fbb',Fab',Pe);
+L=L';
+disp(L,"L=" );
+//------------------------------------------------------------------
+//State feedback control law u=-Kx=-(K+[L*k2 0])[y xc]';
+k1=1; k2=sqrt(2);
+K=[k1 k2];
+Kc=K+[L*k2 0];
+//------------------------------------------------------------------
+//compensator differential equation
+//xc_dot=(Fbb-L*Fab)*xb_hat + (Fba - L*Faa)*y + (Gb - L*Ga)*u
+//xc_dot=((Fbb-L*Fab)-k2)*xc + [(Fba - L*Faa)-(Gb - L*Ga)*(k1+L*k2)+L*(Fbb-L*Fab)]*y
+Fc=(Fbb-L*Fab)-Gb*k2
+Fy=(Fba - L*Faa)-(Gb - L*Ga)*(k1+k2*L)+(Fbb-L*Fab)*L
+//compensator transfer function
+s=poly(0,'s');
+Gest=syslin('c',Fy/(s-Fc))//estimator transfer function
+Dcr=-[k1+L*k2+k2*Gest]
+disp(Dcr,'Dcr','compensator transfer function')
+//------------------------------------------------------------------
+//Root locus with reduced order compensator
+G=1/s^2;
+G=syslin('c',G);
+exec('./zpk_dk.sci', -1);
+[pl,zr Kp]=zpk_dk(Dcr);
+
+Dcr=poly(zr,'s','roots')/poly(pl,'s','roots')
+Dcr=syslin('c',Dcr);
+evans(G*Dcr)
+zoom_rect([-8 -4 2 4])
+
+f=gca();
+f.x_location = "origin"
+f.y_location = "origin"
+xset("color",2);
+h=legend('');
+h.visible = "off"
+
+//Title, labels and grid to the figure
+exec .\fig_settings.sci; //custom script for setting figure properties
+title(['Root locus of a reduced order controller and',"$1/s^2$",...
+ "process"],'fontsize',3);
+//------------------------------------------------------------------
+//Frequnecy response for 1/s^2 and compensated
+
+figure,
+bode([-Kp*G*Dcr;G],0.01/2/%pi,100/2/%pi,"rad");
+title(["Frequency response","$G(s)=1/s^2$", "with a reduced...
+ order estimator"],'fontsize',3)
+exec .\fig_settings.sci; //custom script for setting figure properties
+legend('Compensated','Uncompensated')
+//------------------------------------------------------------------
diff --git a/Working_Examples/3432/CH7/EX7.29/Ex7_29_f0.pdf b/Working_Examples/3432/CH7/EX7.29/Ex7_29_f0.pdf Binary files differnew file mode 100755 index 0000000..c2a23bb --- /dev/null +++ b/Working_Examples/3432/CH7/EX7.29/Ex7_29_f0.pdf diff --git a/Working_Examples/3432/CH7/EX7.29/Ex7_29_f1.pdf b/Working_Examples/3432/CH7/EX7.29/Ex7_29_f1.pdf Binary files differnew file mode 100755 index 0000000..5b330b9 --- /dev/null +++ b/Working_Examples/3432/CH7/EX7.29/Ex7_29_f1.pdf diff --git a/Working_Examples/3432/CH7/EX7.30/DEPENDENCIES/fig_settings.sci b/Working_Examples/3432/CH7/EX7.30/DEPENDENCIES/fig_settings.sci new file mode 100755 index 0000000..5d5e7d4 --- /dev/null +++ b/Working_Examples/3432/CH7/EX7.30/DEPENDENCIES/fig_settings.sci @@ -0,0 +1,9 @@ +//------------------------------------------------------------------
+//figure handel settings
+f=get("current_figure"); //Current figure handle
+f.background=8; //make the figure window background white
+l=f.children(1);
+l.background=8 ;//make the text background white
+id=color('grey');
+xgrid(id);
+//------------------------------------------------------------------
diff --git a/Working_Examples/3432/CH7/EX7.30/DEPENDENCIES/zpk_dk.sci b/Working_Examples/3432/CH7/EX7.30/DEPENDENCIES/zpk_dk.sci new file mode 100755 index 0000000..95b4e6c --- /dev/null +++ b/Working_Examples/3432/CH7/EX7.30/DEPENDENCIES/zpk_dk.sci @@ -0,0 +1,43 @@ +//------------------------------------------------------------------ +//------------------------------------------------------------------ +//A function written by Deepti Khimani. +//Usage:- +//p=zpk_dk(sl) +//[p, z]=zpk_dk(sl) +//[p, z, k]=zpk_dk(sl) +//p:- Poles of the system +//z:- zeros of the system +//k:- DC gain of the system +//------------------------------------------------------------------ +//------------------------------------------------------------------ + +function[pl,zr,k]=zpk_dk(sysmodel) + [lhs,rhs]=argn(0) + + if rhs == 0 then + disp(["p=zpk_dk(sl)";"[p, z]=zpk_dk(sl)";"[p, z, k]=zpk_dk(sl)"]); + disp(["p:- Poles of the system";"z:- zeros of the system"]); + disp("k:- DC gain of the system"); + return; + end + + if typeof(sysmodel)=="rational" then + sys=tf2ss(sysmodel); + pl=spec(sys.A); + zr=trzeros(sys); + temp1=poly(zr,'s','roots')/poly(pl,'s','roots'); + temp2=sysmodel/temp1; + temp3=tf2ss(temp2); + k=temp3.D; + elseif typeof(sysmodel)=="state-space" then + pl=spec(sysmodel.A); + zr=trzeros(sysmodel); + g=ss2tf(sysmodel); + temp1=poly(zr,'s','roots')/poly(pl,'s','roots'); + temp2=g/temp1; + temp3=tf2ss(temp2); + k=temp3.D + else + error("Wrong type of input argument.") + end +endfunction diff --git a/Working_Examples/3432/CH7/EX7.30/Ex7_30.sce b/Working_Examples/3432/CH7/EX7.30/Ex7_30.sce new file mode 100755 index 0000000..99e6aae --- /dev/null +++ b/Working_Examples/3432/CH7/EX7.30/Ex7_30.sce @@ -0,0 +1,73 @@ +//Example 7.30
+// Full-Order Compensator Design for DC Servo.
+
+xdel(winsid())//close all graphics Windows
+clear;
+clc;
+//------------------------------------------------------------------
+
+// State space representation
+//Transfer function model for DC Servo
+s=poly(0,'s');
+num=10;
+den=s*(s+2)*(s+8);
+Gs=syslin('c',num/den);
+
+// State space representation
+F=[-10 1 0;-16 0 1;0 0 0];
+G=[0 0 10]';
+H=[1 0 0];
+J=0;
+n=sqrt(length(F));
+//Desired poles for the DC Servo system.
+Pc=[-1.42 -1.04+2.14*%i -1.04-2.14*%i ]
+
+
+// State feedback gain
+K=ppol(F,G,Pc)
+disp(K,'K=',"State feedback gain")
+
+//Estimator - error roots are at
+Pe=[-4.25 -3.13+6.41*%i -3.13-6.41*%i]
+L=ppol(F',H',Pe);
+L=L';
+disp(L,'L=',"Observer gain")
+//------------------------------------------------------------------
+//Compensator Design
+DK=-K*inv(s*eye(n,n)-F+G*K+L*H)*L;
+
+exec('./zpk_dk.sci', -1);
+[p,z]=zpk_dk(DK);
+D=poly(z,'s','roots')/poly(p,'s','roots')
+
+evans(Gs*D)
+zoom_rect([-8 -9 3 9])
+
+f=gca();
+f.x_location = "origin"
+f.y_location = "origin"
+xset("color",2);
+h=legend('');
+h.visible = "off"
+
+//Title, labels and grid to the figure
+exec .\fig_settings.sci; // custom script for setting figure properties
+title('Root locus for DC servo pole assignment','fontsize',3);
+//------------------------------------------------------------------
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
diff --git a/Working_Examples/3432/CH7/EX7.30/Ex7_30_f0.pdf b/Working_Examples/3432/CH7/EX7.30/Ex7_30_f0.pdf Binary files differnew file mode 100755 index 0000000..65b7d85 --- /dev/null +++ b/Working_Examples/3432/CH7/EX7.30/Ex7_30_f0.pdf diff --git a/Working_Examples/3432/CH7/EX7.31/DEPENDENCIES/fig_settings.sci b/Working_Examples/3432/CH7/EX7.31/DEPENDENCIES/fig_settings.sci new file mode 100755 index 0000000..5d5e7d4 --- /dev/null +++ b/Working_Examples/3432/CH7/EX7.31/DEPENDENCIES/fig_settings.sci @@ -0,0 +1,9 @@ +//------------------------------------------------------------------
+//figure handel settings
+f=get("current_figure"); //Current figure handle
+f.background=8; //make the figure window background white
+l=f.children(1);
+l.background=8 ;//make the text background white
+id=color('grey');
+xgrid(id);
+//------------------------------------------------------------------
diff --git a/Working_Examples/3432/CH7/EX7.31/Ex7_31.sce b/Working_Examples/3432/CH7/EX7.31/Ex7_31.sce new file mode 100755 index 0000000..7e59556 --- /dev/null +++ b/Working_Examples/3432/CH7/EX7.31/Ex7_31.sce @@ -0,0 +1,83 @@ +//Example 7.31
+// Reduced-Order Estimator Design for DC Servo.
+
+xdel(winsid())//close all graphics Windows
+clear;
+clc;
+//------------------------------------------------------------------
+
+// State space representation
+//Transfer function model for DC Servo
+s=poly(0,'s');
+num=10;
+den=s*(s+2)*(s+8);
+Gs=syslin('c',num/den);
+// State space representation
+F=[-10 1 0;-16 0 1;0 0 0]
+G=[0 0 10]';
+H=[1 0 0];
+J=0;
+n=sqrt(length(F));
+//Desired poles for the DC Servo system.
+Pc=[-1.42 -1.04+2.14*%i -1.04-2.14*%i ]
+// State feedback gain
+K=ppol(F,G,Pc)
+disp(K,'K=',"State feedback gain")
+
+//------------------------------------------------------------------
+//Estimator - error roots are at
+//partioned system
+Faa=F(1,1); Fab=F(1,2:3);
+Fba=F(3,1); Fbb=F(2:3,2:3);
+Ga=G(1);Gb=G(2:3);
+
+Pe=[-4.24+4.24*%i, -4.24-4.24*%i]
+// Observer gain matrix for system
+L=ppol(Fbb',Fab',Pe);
+L=L';
+disp(L,"L=" );
+//------------------------------------------------------------------
+
+//State feedback control law u=-Kx=-(K+[L*k2 0])[y xc]';
+k1=K(1); k2=K(2:3);
+
+//------------------------------------------------------------------
+//compensator transfer function
+s=poly(0,'s');
+num=(-0.735+s)*(1.871+s);
+den=poly([-0.990 + 6.12* %i, -0.990 - 6.12* %i] ,'s','roots')
+Dcr=syslin('c',num/den);
+disp(Dcr,'Dcr','compensator transfer function')
+//------------------------------------------------------------------
+//Root locus with reduced order compensator
+evans(-Dcr*Gs)
+zoom_rect([-8 -9 3 9])
+
+f=gca();
+f.x_location = "origin"
+f.y_location = "origin"
+xset("color",2);
+h=legend('');
+h.visible = "off"
+
+//Title, labels and grid to the figure
+exec .\fig_settings.sci; // custom script for setting figure properties
+title('Root locus for DC servo reduced order controller','fontsize',3);
+//------------------------------------------------------------------
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
diff --git a/Working_Examples/3432/CH7/EX7.31/Ex7_31_f0.pdf b/Working_Examples/3432/CH7/EX7.31/Ex7_31_f0.pdf Binary files differnew file mode 100755 index 0000000..98c3a42 --- /dev/null +++ b/Working_Examples/3432/CH7/EX7.31/Ex7_31_f0.pdf diff --git a/Working_Examples/3432/CH7/EX7.32/DEPENDENCIES/acker_dk.sci b/Working_Examples/3432/CH7/EX7.32/DEPENDENCIES/acker_dk.sci new file mode 100755 index 0000000..3391d24 --- /dev/null +++ b/Working_Examples/3432/CH7/EX7.32/DEPENDENCIES/acker_dk.sci @@ -0,0 +1,73 @@ +//------------------------------------------------------------------ +//------------------------------------------------------------------ +//A function written by Deepti Khimani. +//Usage:- +//[K, lambda]=acker_dk(a, b, pl) +//K=acker_dk(a, b, pl) +//a:- System matrix. +//b:- input matrix. +//p:- Desired poles. +//K:-State feedback gain for the control law u=-Kx. +//lambda:- Eigen values of (a-b*k) +//------------------------------------------------------------------ +//------------------------------------------------------------------ + +function [K, lambda]=acker_dk(a, b, pl) + [lhs,rhs]=argn(0) + + if rhs == 0 then + disp(["K=acker_dk(a, b, pl)";"[K, lambda]=acker_dk(a, b, pl)"]); + disp(["a:- System matrix";"b:- input matrix";"p:- Desired poles"]); + disp(["K:-State feedback gain for the control law u=-Kx";... + "lambda:- Eigen values of (a-b*k)"]); + return; + end +[ra ca]=size(a); +[rb cb]=size(b); +l=length(pl); + +CO=cont_mat(a,b); + +if ra~=l then + error(["Dimension error:";"number of desired poles must equal... + to order of the system"]); +elseif ra~=ca then + error(["Dimension error:";"system matrix should be... + a sqaure matrix"]); +elseif rb~=ra then + error (["Dimension error:","Input matrix should have... + as many rows as a system matrix."]); +elseif rank(CO)<ra then + error("system is not controllable"); +end +//------------------------------------------------------------------ +//controllable canonical form +[Ac,Bc,T,ind]=canon(a,b); + +//CO=zeros(ra,cb); +for i=1:ra + CO(:,ra+1-i)=Ac^(i-1)*Bc; +end +//------------------------------------------------------------------ +chr_eq=poly(pl,'s'); +des_chr_coeff=coeff(chr_eq); + +des_chr_coeff=des_chr_coeff(1:ra); +alpha_c=Ac^ra; + +for k=1:ra + alpha_c=alpha_c + des_chr_coeff(k)*Ac^(k-1) +end +//------------------------------------------------------------------ +//State feedback gain +temp=zeros(1,ra); +temp(1)=1; +K=temp*inv(CO)*alpha_c; +K=K/T; +lambda=spec(a-b*K); +endfunction +//------------------------------------------------------------------ + + + + diff --git a/Working_Examples/3432/CH7/EX7.32/DEPENDENCIES/fig_settings.sci b/Working_Examples/3432/CH7/EX7.32/DEPENDENCIES/fig_settings.sci new file mode 100755 index 0000000..5d5e7d4 --- /dev/null +++ b/Working_Examples/3432/CH7/EX7.32/DEPENDENCIES/fig_settings.sci @@ -0,0 +1,9 @@ +//------------------------------------------------------------------
+//figure handel settings
+f=get("current_figure"); //Current figure handle
+f.background=8; //make the figure window background white
+l=f.children(1);
+l.background=8 ;//make the text background white
+id=color('grey');
+xgrid(id);
+//------------------------------------------------------------------
diff --git a/Working_Examples/3432/CH7/EX7.32/DEPENDENCIES/zpk_dk.sci b/Working_Examples/3432/CH7/EX7.32/DEPENDENCIES/zpk_dk.sci new file mode 100755 index 0000000..95b4e6c --- /dev/null +++ b/Working_Examples/3432/CH7/EX7.32/DEPENDENCIES/zpk_dk.sci @@ -0,0 +1,43 @@ +//------------------------------------------------------------------ +//------------------------------------------------------------------ +//A function written by Deepti Khimani. +//Usage:- +//p=zpk_dk(sl) +//[p, z]=zpk_dk(sl) +//[p, z, k]=zpk_dk(sl) +//p:- Poles of the system +//z:- zeros of the system +//k:- DC gain of the system +//------------------------------------------------------------------ +//------------------------------------------------------------------ + +function[pl,zr,k]=zpk_dk(sysmodel) + [lhs,rhs]=argn(0) + + if rhs == 0 then + disp(["p=zpk_dk(sl)";"[p, z]=zpk_dk(sl)";"[p, z, k]=zpk_dk(sl)"]); + disp(["p:- Poles of the system";"z:- zeros of the system"]); + disp("k:- DC gain of the system"); + return; + end + + if typeof(sysmodel)=="rational" then + sys=tf2ss(sysmodel); + pl=spec(sys.A); + zr=trzeros(sys); + temp1=poly(zr,'s','roots')/poly(pl,'s','roots'); + temp2=sysmodel/temp1; + temp3=tf2ss(temp2); + k=temp3.D; + elseif typeof(sysmodel)=="state-space" then + pl=spec(sysmodel.A); + zr=trzeros(sysmodel); + g=ss2tf(sysmodel); + temp1=poly(zr,'s','roots')/poly(pl,'s','roots'); + temp2=g/temp1; + temp3=tf2ss(temp2); + k=temp3.D + else + error("Wrong type of input argument.") + end +endfunction diff --git a/Working_Examples/3432/CH7/EX7.32/Ex7_32.sce b/Working_Examples/3432/CH7/EX7.32/Ex7_32.sce new file mode 100755 index 0000000..ca11844 --- /dev/null +++ b/Working_Examples/3432/CH7/EX7.32/Ex7_32.sce @@ -0,0 +1,122 @@ +//Example 7.32
+// Redesign of the Dc servo compensator using SRL
+
+xdel(winsid())//close all graphics Windows
+clear;
+clc;
+//------------------------------------------------------------------
+
+// State space representation
+//Transfer function model for DC Servo
+s=poly(0,'s');
+num=10;
+den=s*(s+2)*(s+8);
+Gs=syslin('c',num/den);
+
+// State space representation
+F=[-10 1 0;-16 0 1;0 0 0]
+G=[0 0 10]';
+H=[1 0 0];
+J=0;
+n=sqrt(length(F));
+//Desired poles for the DC Servo system.
+Pc=[-2+1.56*%i -2-1.56*%i -8.04]
+
+
+// State feedback gain
+K=ppol(F,G,Pc)
+disp(K,'K=',"State feedback gain")
+
+//Estimator - error roots are at
+Pe=[-4+4.49*%i -4-4.49*%i -9.169]
+exec .\acker_dk.sci;
+Lt=ppol(F',H',Pe);
+L=clean(Lt');
+disp(L,'L=',"Observer gain")
+//Error in book, Gain values are different in book.
+//------------------------------------------------------------------
+//Compensator Design
+DK=-K*inv(s*eye(n,n)-F+G*K+L*H)*L;
+DK=syslin('c',DK)
+exec('./zpk_dk.sci', -1);
+[pl,zr,Kp]=zpk_dk(DK);
+Dc=poly(zr,'s','roots')/poly(pl,'s','roots')
+//------------------------------------------------------------------
+//symmetric root locus
+G_s=horner(Gs,-s);
+evans(Gs*G_s)
+zoom_rect([-10 -5 10 5])
+f=gca();
+f.x_location = "origin"
+f.y_location = "origin"
+xset("color",2);
+h=legend('');
+h.visible = "off"
+//Title, labels and grid to the figure
+exec .\fig_settings.sci; //custom script for setting figure properties
+title('Symmetric root locus','fontsize',3);
+//------------------------------------------------------------------
+//root locus
+figure,
+evans(Gs*Dc) //Correct root locus
+zoom_rect([-11 -6 1 6])
+f=gca();
+f.x_location = "origin"
+f.y_location = "origin"
+xset("color",2);
+h=legend('');
+h.visible = "off"
+//Title, labels and grid to the figure
+exec .\fig_settings.sci; // custom script for setting figure properties
+title('Root locus for pole assignment from the SRL','fontsize',3);
+//------------------------------------------------------------------
+//Discrete-time controller
+nc=94.5*conv([7.98 1],[2.52 1])
+dc=conv([59.5348 8.56 1],[10.6 1])
+sysDc=poly(nc,'s','coeff')/poly(dc,'s','coeff');
+sysDc_ss=syslin('c',tf2ss(sysDc));
+ts=0.1;
+sysDd=dscr(sysDc_ss,ts)
+Gdz=ss2tf(sysDd);
+
+disp(sysDc,"Continuous-time compensator")
+disp(Gdz,"Discrete-time compensator")
+//------------------------------------------------------------------
+//step responses
+importXcosDiagram(".\Ex7_32_model.xcos")
+
+xcos_simulate(scs_m,4);
+scs_m.props.context
+figure,
+plot(yt.time,yt.values(:,1),2)
+plot(yt.time,yt.values(:,2),'r--')
+xlabel('Time (sec)');
+ylabel('y');
+title("Comaprison of step responses for continuous and discrete...
+ controllers",'fontsize',3)
+exec .\fig_settings.sci; //custom script for setting figure properties
+legend("continuous controller","digital controller",4)
+
+//Control inputs
+figure,
+plot(ut.time,ut.values(:,1),2)
+plot(ut.time,ut.values(:,2),'r--')
+xlabel('Time (sec)');
+ylabel('u');
+title("Comaprison of control signals for continuous and discrete...
+ controllers",'fontsize',3)
+exec .\fig_settings.sci; //custom script for setting figure properties
+legend("continuous controller","digital controller")
+//------------------------------------------------------------------
+
+
+
+
+
+
+
+
+
+
+
+
diff --git a/Working_Examples/3432/CH7/EX7.32/Ex7_32_f0.pdf b/Working_Examples/3432/CH7/EX7.32/Ex7_32_f0.pdf Binary files differnew file mode 100755 index 0000000..10af892 --- /dev/null +++ b/Working_Examples/3432/CH7/EX7.32/Ex7_32_f0.pdf diff --git a/Working_Examples/3432/CH7/EX7.32/Ex7_32_f2.pdf b/Working_Examples/3432/CH7/EX7.32/Ex7_32_f2.pdf Binary files differnew file mode 100755 index 0000000..0c39c39 --- /dev/null +++ b/Working_Examples/3432/CH7/EX7.32/Ex7_32_f2.pdf diff --git a/Working_Examples/3432/CH7/EX7.32/Ex7_32_model.xcos b/Working_Examples/3432/CH7/EX7.32/Ex7_32_model.xcos new file mode 100755 index 0000000..7f778e4 --- /dev/null +++ b/Working_Examples/3432/CH7/EX7.32/Ex7_32_model.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" finalIntegrationTime="5.0" title="Ex7_32_model"><!--Xcos - 1.0 - scilab-5.5.2 - 20160406 2040--><mxGraphModel as="model"><root><mxCell id="-2dd55334:14dcbdd0183:-7fd2"/><mxCell id="-2dd55334:14dcbdd0183:-7fd3" parent="-2dd55334:14dcbdd0183:-7fd2"/><BasicBlock dependsOnT="1" id="-2dd55334:14dcbdd0183:-7f98" interfaceFunctionName="CLR" ordering="1" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="csslti4" simulationFunctionType="C_OR_FORTRAN" style="CLR;flip=false;mirror=false"><ScilabString as="exprs" height="2" width="1"><data column="0" line="0" value="10"/><data column="0" line="1" value="16*s + 10*s^2 + s^3 "/></ScilabString><ScilabDouble as="realParameters" height="16" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="0.0"/><data column="0" line="2" realPart="-0.0"/><data column="0" line="3" realPart="1.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="-16.0"/><data column="0" line="6" realPart="0.0"/><data column="0" line="7" realPart="1.0"/><data column="0" line="8" realPart="-10.0"/><data column="0" line="9" realPart="0.0"/><data column="0" line="10" realPart="0.0"/><data column="0" line="11" realPart="1.0"/><data column="0" line="12" realPart="10.0"/><data column="0" line="13" realPart="0.0"/><data column="0" line="14" realPart="0.0"/><data column="0" line="15" realPart="0.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="state" height="3" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="0.0"/><data column="0" line="2" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="160.0" x="640.0" y="100.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5c6e81bd:14e42b54a0f:-7d5a" ordering="1" parent="-2dd55334:14dcbdd0183:-7f98" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5c6e81bd:14e42b54a0f:-7d59" ordering="1" parent="-2dd55334:14dcbdd0183:-7f98" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="160.0" y="16.0"/></ExplicitOutputPort><Summation dependsOnU="1" id="-2dd55334:14dcbdd0183:-7f23" interfaceFunctionName="SUMMATION" ordering="2" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="summation" simulationFunctionType="C_OR_FORTRAN" style="SUMMATION;flip=false;mirror=false" value="+"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="[1;-1]"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="2" width="1"><data column="0" line="0" realPart="1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="60.0" width="40.0" x="250.0" y="90.0"/></Summation><ExplicitInputPort dataType="REAL_MATRIX" id="-2dd55334:14dcbdd0183:-7f22" ordering="1" parent="-2dd55334:14dcbdd0183:-7f23" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value="+"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitInputPort dataType="REAL_MATRIX" id="-2dd55334:14dcbdd0183:-7f21" ordering="2" parent="-2dd55334:14dcbdd0183:-7f23" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value="-"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="36.0"/></ExplicitInputPort><ExplicitOutputPort dataType="REAL_MATRIX" id="-2dd55334:14dcbdd0183:-7f20" ordering="1" parent="-2dd55334:14dcbdd0183:-7f23" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="26.0"/></ExplicitOutputPort><ExplicitLink id="-2dd55334:14dcbdd0183:-7f1e" parent="-2dd55334:14dcbdd0183:-7fd3" source="-2dd55334:14dcbdd0183:-7f20" target="-5c6e81bd:14e42b54a0f:-7c3e"><mxGeometry as="geometry" x="180.0" y="30.0"/></ExplicitLink><BasicBlock id="-2dd55334:14dcbdd0183:-7eeb" interfaceFunctionName="STEP_FUNCTION" ordering="3" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="STEP_FUNCTION;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList" varName=""><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="1.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="3" width="1"><data column="0" line="0" value="0"/><data column="0" line="1" value="0"/><data column="0" line="2" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"STEP",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="STEP"/></ScilabString></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="step_func"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="1.0"/><data column="0" line="1" realPart="1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7ee6"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="STEP"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7ee6"/></ScilabString></Array></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="2920.0"/><data column="1" line="0" realPart="-2870.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"OUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="OUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-2.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7ee2"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="OUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7ee2"/></ScilabString></Array></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="84.0"/><data column="0" line="1" realPart="2936.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-20.0"/><data column="0" line="1" realPart="-2860.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="6" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="5700.0"/><data column="0" line="2" realPart="5660.0"/><data column="0" line="3" realPart="5660.0"/><data column="0" line="4" realPart="5700.0"/><data column="0" line="5" realPart="60.0"/></ScilabDouble><ScilabDouble height="6" width="1"><data column="0" line="0" realPart="-44.0"/><data column="0" line="1" realPart="-5740.0"/><data column="0" line="2" realPart="-5740.0"/><data column="0" line="3" realPart="-5660.0"/><data column="0" line="4" realPart="-5660.0"/><data column="0" line="5" realPart="4.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="70.0" y="90.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-2dd55334:14dcbdd0183:-7ec7" ordering="1" parent="-2dd55334:14dcbdd0183:-7eeb" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><BasicBlock dependsOnT="1" id="-2dd55334:14dcbdd0183:-7fb6" interfaceFunctionName="CLR" ordering="4" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="csslti4" simulationFunctionType="C_OR_FORTRAN" style="CLR;flip=false;mirror=false"><ScilabString as="exprs" height="2" width="1"><data column="0" line="0" value="poly(nc, 's', 'coeff')"/><data column="0" line="1" value="poly(dc, 's', 'coeff')"/></ScilabString><ScilabDouble as="realParameters" height="16" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="0.0"/><data column="0" line="2" realPart="-631.0688799999999"/><data column="0" line="3" realPart="1.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="-150.2708"/><data column="0" line="6" realPart="0.0"/><data column="0" line="7" realPart="1.0"/><data column="0" line="8" realPart="-19.16"/><data column="0" line="9" realPart="0.0"/><data column="0" line="10" realPart="0.0"/><data column="0" line="11" realPart="1.0"/><data column="0" line="12" realPart="1900.3572"/><data column="0" line="13" realPart="992.25"/><data column="0" line="14" realPart="94.5"/><data column="0" line="15" realPart="0.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="state" height="3" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="0.0"/><data column="0" line="2" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="60.0" width="190.0" x="350.0" y="90.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5c6e81bd:14e42b54a0f:-7c3e" ordering="1" parent="-2dd55334:14dcbdd0183:-7fb6" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="26.0"/></ExplicitInputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5c6e81bd:14e42b54a0f:-7c3d" ordering="1" parent="-2dd55334:14dcbdd0183:-7fb6" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="190.0" y="26.0"/></ExplicitOutputPort><BasicBlock blockType="h" id="-2dd55334:14dcbdd0183:-7e6e" interfaceFunctionName="CLOCK_c" ordering="5" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList" varName=""><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="1.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="2999.0"/><data column="1" line="0" realPart="-3030.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7e5e"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7e5e"/></ScilabString></Array></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="ts"/><data column="0" line="1" value="0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.1"/><data column="0" line="1" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7e5c"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7e5c"/></ScilabString></Array></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4875.377326666667"/><data column="1" line="0" realPart="-4921.333333333333"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="7.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="5.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7e59"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7e59"/></ScilabString></Array></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="5860.0"/><data column="0" line="2" realPart="4885.877326666667"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-44.0"/><data column="0" line="1" realPart="-5940.0"/><data column="0" line="2" realPart="-4910.333333333333"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="4884.71066"/><data column="0" line="1" realPart="3029.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-4925.333333333333"/><data column="0" line="1" realPart="-3006.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="4887.043993333334"/><data column="0" line="1" realPart="5900.71"/><data column="0" line="2" realPart="5860.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-4925.333333333333"/><data column="0" line="1" realPart="-5810.0"/><data column="0" line="2" realPart="-5810.0"/><data column="0" line="3" realPart="4.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="1020.0" y="30.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="-5c6e81bd:14e42b54a0f:-7d01" ordering="1" parent="-2dd55334:14dcbdd0183:-7e6e" style="CommandPort;align=center;verticalAlign=bottom;spacing=10.0;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><mxCell connectable="0" id="-2dd55334:14dcbdd0183:-7e6e#identifier" parent="-2dd55334:14dcbdd0183:-7e6e" style="noLabel=0;opacity=0" value=" Period=ts" vertex="1"><mxGeometry as="geometry" relative="1" x="0.5" y="1.1"><mxPoint as="offset" x="1.0" y="-60.0"/></mxGeometry></mxCell><Summation dependsOnU="1" id="-2dd55334:14dcbdd0183:-7dc2" interfaceFunctionName="SUMMATION" ordering="6" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="summation" simulationFunctionType="C_OR_FORTRAN" style="SUMMATION;flip=false;mirror=false" value="+"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="[1;-1]"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="2" width="1"><data column="0" line="0" realPart="1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="60.0" width="40.0" x="230.0" y="270.0"/></Summation><ExplicitInputPort dataType="REAL_MATRIX" id="-2dd55334:14dcbdd0183:-7dc1" ordering="1" parent="-2dd55334:14dcbdd0183:-7dc2" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value="+"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitInputPort dataType="REAL_MATRIX" id="-2dd55334:14dcbdd0183:-7dc0" ordering="2" parent="-2dd55334:14dcbdd0183:-7dc2" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value="-"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="36.0"/></ExplicitInputPort><ExplicitOutputPort dataType="REAL_MATRIX" id="-2dd55334:14dcbdd0183:-7dbf" ordering="1" parent="-2dd55334:14dcbdd0183:-7dc2" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="26.0"/></ExplicitOutputPort><BasicBlock blockType="d" id="-2dd55334:14dcbdd0183:-7d7c" interfaceFunctionName="DLR" ordering="7" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="dsslti4" simulationFunctionType="C_OR_FORTRAN" style="DLR;flip=false;mirror=false"><ScilabString as="exprs" height="2" width="1"><data column="0" line="0" value="2.0781903 - 7.244477*z + 5.9156897*z^2 "/><data column="0" line="1" value="-0.1471946 + 0.7865827*z - 1.390527*z^2 + z^3 "/></ScilabString><ScilabDouble as="realParameters" height="16" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="0.0"/><data column="0" line="2" realPart="0.1471946"/><data column="0" line="3" realPart="1.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="-0.7865827"/><data column="0" line="6" realPart="0.0"/><data column="0" line="7" realPart="1.0"/><data column="0" line="8" realPart="1.390527"/><data column="0" line="9" realPart="0.0"/><data column="0" line="10" realPart="0.0"/><data column="0" line="11" realPart="1.0"/><data column="0" line="12" realPart="2.0781903"/><data column="0" line="13" realPart="-7.244477"/><data column="0" line="14" realPart="5.9156897"/><data column="0" line="15" realPart="0.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="dState" height="3" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="0.0"/><data column="0" line="2" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="50.0" width="380.0" x="300.0" y="280.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5c6e81bd:14e42b54a0f:-7ab8" ordering="1" parent="-2dd55334:14dcbdd0183:-7d7c" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5c6e81bd:14e42b54a0f:-7ab7" ordering="1" parent="-2dd55334:14dcbdd0183:-7d7c" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="380.0" y="16.0"/></ExplicitOutputPort><ControlPort dataType="UNKNOW_TYPE" id="-5c6e81bd:14e42b54a0f:-7ab6" ordering="1" parent="-2dd55334:14dcbdd0183:-7d7c" style="ControlPort;align=center;verticalAlign=top;spacing=10.0;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="186.0" y="-8.0"/></ControlPort><BasicBlock blockType="h" id="-2dd55334:14dcbdd0183:-7d59" interfaceFunctionName="CLOCK_c" ordering="8" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList" varName=""><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="1.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="3319.0"/><data column="1" line="0" realPart="-3350.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7e5e"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7e5e"/></ScilabString></Array></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="ts"/><data column="0" line="1" value="0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.1"/><data column="0" line="1" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7e5c"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7e5c"/></ScilabString></Array></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5403.377326666667"/><data column="1" line="0" realPart="-5449.333333333333"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="7.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="5.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7e59"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7e59"/></ScilabString></Array></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="6500.0"/><data column="0" line="2" realPart="5413.877326666667"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-44.0"/><data column="0" line="1" realPart="-6580.0"/><data column="0" line="2" realPart="-5438.333333333333"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="5412.71066"/><data column="0" line="1" realPart="3349.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-5453.333333333333"/><data column="0" line="1" realPart="-3326.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="5415.043993333334"/><data column="0" line="1" realPart="6540.71"/><data column="0" line="2" realPart="6500.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-5453.333333333333"/><data column="0" line="1" realPart="-6450.0"/><data column="0" line="2" realPart="-6450.0"/><data column="0" line="3" realPart="4.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="470.0" y="210.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="-5c6e81bd:14e42b54a0f:-7d1f" ordering="1" parent="-2dd55334:14dcbdd0183:-7d59" style="CommandPort;align=center;verticalAlign=bottom;spacing=10.0;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><mxCell connectable="0" id="-2dd55334:14dcbdd0183:-7d59#identifier" parent="-2dd55334:14dcbdd0183:-7d59" style="noLabel=0;opacity=0" value=" Period=ts" vertex="1"><mxGeometry as="geometry" relative="1" x="0.5" y="1.1"><mxPoint as="offset" x="50.0" y="-32.0"/></mxGeometry></mxCell><CommandControlLink id="-2dd55334:14dcbdd0183:-7d55" parent="-2dd55334:14dcbdd0183:-7fd3" source="-5c6e81bd:14e42b54a0f:-7d1f" target="-5c6e81bd:14e42b54a0f:-7ab6"><mxGeometry as="geometry" x="200.0" y="20.0"/></CommandControlLink><ExplicitLink id="-2dd55334:14dcbdd0183:-7cbb" parent="-2dd55334:14dcbdd0183:-7fd3" source="-2dd55334:14dcbdd0183:-7dbf" target="-5c6e81bd:14e42b54a0f:-7ab8"><mxGeometry as="geometry" x="200.0" y="70.0"/></ExplicitLink><BasicBlock dependsOnU="1" id="-2dd55334:14dcbdd0183:-7c65" interfaceFunctionName="MUX_f" ordering="9" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="mux" simulationFunctionType="TYPE_1" style="MUX_f;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="2"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="10.0" x="950.0" y="180.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="-2dd55334:14dcbdd0183:-7c64" ordering="1" parent="-2dd55334:14dcbdd0183:-7c65" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ExplicitInputPort><ExplicitInputPort dataColumns="1" dataLines="-2" dataType="REAL_MATRIX" id="-2dd55334:14dcbdd0183:-7c63" ordering="2" parent="-2dd55334:14dcbdd0183:-7c65" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="26.0"/></ExplicitInputPort><ExplicitOutputPort dataColumns="1" dataLines="0" dataType="REAL_MATRIX" id="-2dd55334:14dcbdd0183:-7c62" ordering="1" parent="-2dd55334:14dcbdd0183:-7c65" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="10.0" y="16.0"/></ExplicitOutputPort><TextBlock id="-6cad6c1c:14dd22d9551:-7f7a" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=18;flip=false;mirror=false" value="Model for Ex7_32"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="Model for Ex7_32"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="Model for Ex7_32"/></ScilabString><mxGeometry as="geometry" height="40.0" width="160.0" x="390.0" y="20.0"/></TextBlock><SplitBlock id="-7d9f02e3:14e259a89bd:-7f43" ordering="10" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="187.0" y="107.0"/></SplitBlock><ExplicitInputPort dataType="UNKNOW_TYPE" id="-7d9f02e3:14e259a89bd:-7f42" ordering="1" parent="-7d9f02e3:14e259a89bd:-7f43" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ExplicitInputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="-7d9f02e3:14e259a89bd:-7f41" ordering="1" parent="-7d9f02e3:14e259a89bd:-7f43" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="-7d9f02e3:14e259a89bd:-7f40" ordering="2" parent="-7d9f02e3:14e259a89bd:-7f43" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitLink id="-7d9f02e3:14e259a89bd:-7f3f" parent="-2dd55334:14dcbdd0183:-7fd3" source="-2dd55334:14dcbdd0183:-7ec7" target="-7d9f02e3:14e259a89bd:-7f42"><mxGeometry as="geometry" x="50.0" y="10.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ExplicitLink><ExplicitLink id="-7d9f02e3:14e259a89bd:-7f3e" parent="-2dd55334:14dcbdd0183:-7fd3" source="-7d9f02e3:14e259a89bd:-7f41" target="-2dd55334:14dcbdd0183:-7f22"><mxGeometry as="geometry" x="50.0" y="10.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ExplicitLink><ExplicitLink id="-7d9f02e3:14e259a89bd:-7f44" parent="-2dd55334:14dcbdd0183:-7fd3" source="-7d9f02e3:14e259a89bd:-7f40" target="-2dd55334:14dcbdd0183:-7dc1"><mxGeometry as="geometry" x="50.0" y="10.0"><mxPoint as="sourcePoint" x="310.0" y="290.0"/><mxPoint as="targetPoint" x="190.0" y="110.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="190.0" y="290.0"/></Array></mxGeometry></ExplicitLink><BasicBlock dependsOnU="1" id="-7d9f02e3:14e259a89bd:-7831" interfaceFunctionName="MUX_f" ordering="11" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="mux" simulationFunctionType="TYPE_1" style="MUX_f;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="2"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="10.0" x="750.0" y="210.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="-7d9f02e3:14e259a89bd:-7830" ordering="1" parent="-7d9f02e3:14e259a89bd:-7831" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ExplicitInputPort><ExplicitInputPort dataColumns="1" dataLines="-2" dataType="REAL_MATRIX" id="-7d9f02e3:14e259a89bd:-782f" ordering="2" parent="-7d9f02e3:14e259a89bd:-7831" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="26.0"/></ExplicitInputPort><ExplicitOutputPort dataColumns="1" dataLines="0" dataType="REAL_MATRIX" id="-7d9f02e3:14e259a89bd:-782e" ordering="1" parent="-7d9f02e3:14e259a89bd:-7831" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="10.0" y="16.0"/></ExplicitOutputPort><SplitBlock id="-5c6e81bd:14e42b54a0f:-7bcc" ordering="12" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="867.0" y="187.0"/></SplitBlock><ExplicitInputPort dataType="UNKNOW_TYPE" id="-5c6e81bd:14e42b54a0f:-7bcb" ordering="1" parent="-5c6e81bd:14e42b54a0f:-7bcc" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ExplicitInputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="-5c6e81bd:14e42b54a0f:-7bca" ordering="1" parent="-5c6e81bd:14e42b54a0f:-7bcc" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="-5c6e81bd:14e42b54a0f:-7bc9" ordering="2" parent="-5c6e81bd:14e42b54a0f:-7bcc" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitLink id="-5c6e81bd:14e42b54a0f:-7bc8" parent="-2dd55334:14dcbdd0183:-7fd3" source="-5c6e81bd:14e42b54a0f:-7d59" target="-5c6e81bd:14e42b54a0f:-7bcb"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="870.0" y="120.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="-5c6e81bd:14e42b54a0f:-7bc7" parent="-2dd55334:14dcbdd0183:-7fd3" source="-5c6e81bd:14e42b54a0f:-7bca" target="-2dd55334:14dcbdd0183:-7f21"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="220.0" y="190.0"/><mxPoint x="220.0" y="130.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="-5c6e81bd:14e42b54a0f:-7bcd" parent="-2dd55334:14dcbdd0183:-7fd3" source="-5c6e81bd:14e42b54a0f:-7bc9" target="-2dd55334:14dcbdd0183:-7c64"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="910.0" y="190.0"/><mxPoint as="targetPoint" x="850.0" y="190.0"/></mxGeometry></ExplicitLink><BasicBlock dependsOnT="1" id="-5c6e81bd:14e42b54a0f:-7b65" interfaceFunctionName="CLR" ordering="13" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="csslti4" simulationFunctionType="C_OR_FORTRAN" style="CLR;flip=false;mirror=false"><ScilabString as="exprs" height="2" width="1"><data column="0" line="0" value="10"/><data column="0" line="1" value="16*s + 10*s^2 + s^3 "/></ScilabString><ScilabDouble as="realParameters" height="16" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="0.0"/><data column="0" line="2" realPart="-0.0"/><data column="0" line="3" realPart="1.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="-16.0"/><data column="0" line="6" realPart="0.0"/><data column="0" line="7" realPart="1.0"/><data column="0" line="8" realPart="-10.0"/><data column="0" line="9" realPart="0.0"/><data column="0" line="10" realPart="0.0"/><data column="0" line="11" realPart="1.0"/><data column="0" line="12" realPart="10.0"/><data column="0" line="13" realPart="0.0"/><data column="0" line="14" realPart="0.0"/><data column="0" line="15" realPart="0.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="state" height="3" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="0.0"/><data column="0" line="2" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="160.0" x="720.0" y="280.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5c6e81bd:14e42b54a0f:-7b64" ordering="1" parent="-5c6e81bd:14e42b54a0f:-7b65" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5c6e81bd:14e42b54a0f:-7b63" ordering="1" parent="-5c6e81bd:14e42b54a0f:-7b65" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="160.0" y="16.0"/></ExplicitOutputPort><SplitBlock id="-5c6e81bd:14e42b54a0f:-7b55" ordering="14" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="927.0" y="297.0"/></SplitBlock><ExplicitInputPort dataType="UNKNOW_TYPE" id="-5c6e81bd:14e42b54a0f:-7b54" ordering="1" parent="-5c6e81bd:14e42b54a0f:-7b55" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ExplicitInputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="-5c6e81bd:14e42b54a0f:-7b53" ordering="1" parent="-5c6e81bd:14e42b54a0f:-7b55" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="-5c6e81bd:14e42b54a0f:-7b52" ordering="2" parent="-5c6e81bd:14e42b54a0f:-7b55" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitLink id="-5c6e81bd:14e42b54a0f:-7b51" parent="-2dd55334:14dcbdd0183:-7fd3" source="-5c6e81bd:14e42b54a0f:-7b63" target="-5c6e81bd:14e42b54a0f:-7b54"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="900.0" y="300.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="-5c6e81bd:14e42b54a0f:-7b50" parent="-2dd55334:14dcbdd0183:-7fd3" source="-5c6e81bd:14e42b54a0f:-7b53" target="-2dd55334:14dcbdd0183:-7c63"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="930.0" y="210.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="-5c6e81bd:14e42b54a0f:-7b56" parent="-2dd55334:14dcbdd0183:-7fd3" source="-5c6e81bd:14e42b54a0f:-7b52" target="-2dd55334:14dcbdd0183:-7dc0"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="230.0" y="310.0"/><mxPoint as="targetPoint" x="930.0" y="300.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="930.0" y="360.0"/><mxPoint x="190.0" y="360.0"/><mxPoint x="190.0" y="310.0"/></Array></mxGeometry></ExplicitLink><SplitBlock id="-5c6e81bd:14e42b54a0f:-7b44" ordering="15" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="597.0" y="117.0"/></SplitBlock><ExplicitInputPort dataType="UNKNOW_TYPE" id="-5c6e81bd:14e42b54a0f:-7b43" ordering="1" parent="-5c6e81bd:14e42b54a0f:-7b44" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ExplicitInputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="-5c6e81bd:14e42b54a0f:-7b42" ordering="1" parent="-5c6e81bd:14e42b54a0f:-7b44" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="-5c6e81bd:14e42b54a0f:-7b41" ordering="2" parent="-5c6e81bd:14e42b54a0f:-7b44" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitLink id="-5c6e81bd:14e42b54a0f:-7b40" parent="-2dd55334:14dcbdd0183:-7fd3" source="-5c6e81bd:14e42b54a0f:-7c3d" target="-5c6e81bd:14e42b54a0f:-7b43"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ExplicitLink><ExplicitLink id="-5c6e81bd:14e42b54a0f:-7b3f" parent="-2dd55334:14dcbdd0183:-7fd3" source="-5c6e81bd:14e42b54a0f:-7b42" target="-5c6e81bd:14e42b54a0f:-7d5a"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ExplicitLink><ExplicitLink id="-5c6e81bd:14e42b54a0f:-7b45" parent="-2dd55334:14dcbdd0183:-7fd3" source="-5c6e81bd:14e42b54a0f:-7b41" target="-7d9f02e3:14e259a89bd:-7830"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="750.0" y="220.0"/><mxPoint as="targetPoint" x="600.0" y="120.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="600.0" y="220.0"/></Array></mxGeometry></ExplicitLink><SplitBlock id="-5c6e81bd:14e42b54a0f:-7b3d" ordering="16" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="697.0" y="297.0"/></SplitBlock><ExplicitInputPort dataType="UNKNOW_TYPE" id="-5c6e81bd:14e42b54a0f:-7b3c" ordering="1" parent="-5c6e81bd:14e42b54a0f:-7b3d" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ExplicitInputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="-5c6e81bd:14e42b54a0f:-7b3b" ordering="1" parent="-5c6e81bd:14e42b54a0f:-7b3d" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="-5c6e81bd:14e42b54a0f:-7b3a" ordering="2" parent="-5c6e81bd:14e42b54a0f:-7b3d" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitLink id="-5c6e81bd:14e42b54a0f:-7b39" parent="-2dd55334:14dcbdd0183:-7fd3" source="-5c6e81bd:14e42b54a0f:-7ab7" target="-5c6e81bd:14e42b54a0f:-7b3c"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ExplicitLink><ExplicitLink id="-5c6e81bd:14e42b54a0f:-7b38" parent="-2dd55334:14dcbdd0183:-7fd3" source="-5c6e81bd:14e42b54a0f:-7b3b" target="-5c6e81bd:14e42b54a0f:-7b64"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ExplicitLink><ExplicitLink id="-5c6e81bd:14e42b54a0f:-7b3e" parent="-2dd55334:14dcbdd0183:-7fd3" source="-5c6e81bd:14e42b54a0f:-7b3a" target="-7d9f02e3:14e259a89bd:-782f"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="750.0" y="240.0"/><mxPoint as="targetPoint" x="700.0" y="300.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="700.0" y="240.0"/></Array></mxGeometry></ExplicitLink><BasicBlock dependsOnU="1" id="-7f3f8309:16686c89bf7:-7ed5" interfaceFunctionName="CSCOPE" ordering="17" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="cscope" simulationFunctionType="C_OR_FORTRAN" style="CSCOPE;mirror=true"><ScilabString as="exprs" height="10" width="1"><data column="0" line="0" value="1 3 5 7 9 11 13 15"/><data column="0" line="1" value="-1"/><data column="0" line="2" value="[]"/><data column="0" line="3" value="[600;400]"/><data column="0" line="4" value="-2"/><data column="0" line="5" value="2"/><data column="0" line="6" value="5"/><data column="0" line="7" value="20"/><data column="0" line="8" value="0"/><data column="0" line="9" value=""/></ScilabString><ScilabDouble as="realParameters" height="4" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="-2.0"/><data column="0" line="2" realPart="2.0"/><data column="0" line="3" realPart="5.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="15" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="1.0"/><data column="0" line="4" realPart="3.0"/><data column="0" line="5" realPart="5.0"/><data column="0" line="6" realPart="7.0"/><data column="0" line="7" realPart="9.0"/><data column="0" line="8" realPart="11.0"/><data column="0" line="9" realPart="13.0"/><data column="0" line="10" realPart="15.0"/><data column="0" line="11" realPart="-1.0"/><data column="0" line="12" realPart="-1.0"/><data column="0" line="13" realPart="600.0"/><data column="0" line="14" realPart="400.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="810.0" y="30.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="-7f3f8309:16686c89bf7:-7de0" ordering="1" parent="-7f3f8309:16686c89bf7:-7ed5" style="ExplicitInputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=180" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitInputPort><ControlPort dataType="UNKNOW_TYPE" id="-7f3f8309:16686c89bf7:-7ddf" ordering="1" parent="-7f3f8309:16686c89bf7:-7ed5" style="ControlPort;align=center;verticalAlign=top;spacing=10.0;rotation=90"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><ExplicitLink id="-7f3f8309:16686c89bf7:-7ed2" parent="-2dd55334:14dcbdd0183:-7fd3" source="-2dd55334:14dcbdd0183:-7c62" target="-7f3f8309:16686c89bf7:-7de0"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="850.0" y="50.0"/><mxPoint as="targetPoint" x="970.0" y="200.0"/><Array as="points" scilabClass=""><mxPoint x="980.0" y="210.0"/><mxPoint x="980.0" y="50.0"/></Array></mxGeometry></ExplicitLink><BasicBlock dependsOnU="1" id="-7f3f8309:16686c89bf7:-7ec1" interfaceFunctionName="CSCOPE" ordering="18" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="cscope" simulationFunctionType="C_OR_FORTRAN" style="CSCOPE;mirror=false"><ScilabString as="exprs" height="10" width="1"><data column="0" line="0" value="1 3 5 7 9 11 13 15"/><data column="0" line="1" value="-1"/><data column="0" line="2" value="[]"/><data column="0" line="3" value="[600;400]"/><data column="0" line="4" value="-2"/><data column="0" line="5" value="7"/><data column="0" line="6" value="5"/><data column="0" line="7" value="20"/><data column="0" line="8" value="0"/><data column="0" line="9" value=""/></ScilabString><ScilabDouble as="realParameters" height="4" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="-2.0"/><data column="0" line="2" realPart="7.0"/><data column="0" line="3" realPart="5.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="15" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="1.0"/><data column="0" line="4" realPart="3.0"/><data column="0" line="5" realPart="5.0"/><data column="0" line="6" realPart="7.0"/><data column="0" line="7" realPart="9.0"/><data column="0" line="8" realPart="11.0"/><data column="0" line="9" realPart="13.0"/><data column="0" line="10" realPart="15.0"/><data column="0" line="11" realPart="-1.0"/><data column="0" line="12" realPart="-1.0"/><data column="0" line="13" realPart="600.0"/><data column="0" line="14" realPart="400.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="800.0" y="210.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="-7f3f8309:16686c89bf7:-7d8c" ordering="1" parent="-7f3f8309:16686c89bf7:-7ec1" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ControlPort dataType="UNKNOW_TYPE" id="-7f3f8309:16686c89bf7:-7d8b" ordering="1" parent="-7f3f8309:16686c89bf7:-7ec1" style="ControlPort;align=center;verticalAlign=top;spacing=10.0;rotation=90"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><ExplicitLink id="-7f3f8309:16686c89bf7:-7ebb" parent="-2dd55334:14dcbdd0183:-7fd3" source="-7d9f02e3:14e259a89bd:-782e" target="-7f3f8309:16686c89bf7:-7d8c"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="760.0" y="230.0"/><mxPoint as="targetPoint" x="800.0" y="230.0"/></mxGeometry></ExplicitLink><SplitBlock id="-7f3f8309:16686c89bf7:-7eb9" interfaceFunctionName="CLKSPLIT_f" ordering="19" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionType="DEFAULT" style="CLKSPLIT_f"><mxGeometry as="geometry" height="7.0" width="7.0" x="987.0" y="137.0"/></SplitBlock><ControlPort dataType="UNKNOW_TYPE" id="-7f3f8309:16686c89bf7:-7eb8" ordering="1" parent="-7f3f8309:16686c89bf7:-7eb9" style="ControlPort;align=center;verticalAlign=top;spacing=10.0;rotation=90" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-4.0" y="-8.0"/></ControlPort><CommandPort dataType="UNKNOW_TYPE" id="-7f3f8309:16686c89bf7:-7eb7" ordering="1" parent="-7f3f8309:16686c89bf7:-7eb9" style="CommandPort;align=center;verticalAlign=bottom;spacing=10.0;rotation=90" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-4.0" y="7.0"/></CommandPort><CommandPort dataType="UNKNOW_TYPE" id="-7f3f8309:16686c89bf7:-7eb6" ordering="2" parent="-7f3f8309:16686c89bf7:-7eb9" style="CommandPort;align=center;verticalAlign=bottom;spacing=10.0;rotation=90" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-4.0" y="7.0"/></CommandPort><CommandControlLink id="-7f3f8309:16686c89bf7:-7eb5" parent="-2dd55334:14dcbdd0183:-7fd3" source="-5c6e81bd:14e42b54a0f:-7d01" target="-7f3f8309:16686c89bf7:-7eb8"><mxGeometry as="geometry"><Array as="points" scilabClass=""><mxPoint x="1040.0" y="100.0"/><mxPoint x="1040.0" y="100.0"/><mxPoint x="1040.0" y="150.0"/><mxPoint x="990.0" y="150.0"/></Array></mxGeometry></CommandControlLink><CommandControlLink id="-7f3f8309:16686c89bf7:-7eb4" parent="-2dd55334:14dcbdd0183:-7fd3" source="-7f3f8309:16686c89bf7:-7eb7" target="-7f3f8309:16686c89bf7:-7ddf"><mxGeometry as="geometry"><Array as="points" scilabClass=""><mxPoint x="990.0" y="70.0"/><mxPoint x="990.0" y="20.0"/><mxPoint x="830.0" y="20.0"/></Array></mxGeometry></CommandControlLink><CommandControlLink id="-7f3f8309:16686c89bf7:-7eba" parent="-2dd55334:14dcbdd0183:-7fd3" source="-7f3f8309:16686c89bf7:-7eb6" target="-7f3f8309:16686c89bf7:-7d8b"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="820.0" y="210.0"/><mxPoint as="targetPoint" x="990.0" y="140.0"/><Array as="points" scilabClass=""><mxPoint x="990.0" y="170.0"/><mxPoint x="820.0" y="170.0"/></Array></mxGeometry></CommandControlLink></root></mxGraphModel><mxCell as="defaultParent" id="-2dd55334:14dcbdd0183:-7fd3" parent="-2dd55334:14dcbdd0183:-7fd2"/><mxPoint as="origin" y="-2.0"/></XcosDiagram>
\ No newline at end of file diff --git a/Working_Examples/3432/CH7/EX7.33/DEPENDENCIES/acker_dk.sci b/Working_Examples/3432/CH7/EX7.33/DEPENDENCIES/acker_dk.sci new file mode 100755 index 0000000..3391d24 --- /dev/null +++ b/Working_Examples/3432/CH7/EX7.33/DEPENDENCIES/acker_dk.sci @@ -0,0 +1,73 @@ +//------------------------------------------------------------------ +//------------------------------------------------------------------ +//A function written by Deepti Khimani. +//Usage:- +//[K, lambda]=acker_dk(a, b, pl) +//K=acker_dk(a, b, pl) +//a:- System matrix. +//b:- input matrix. +//p:- Desired poles. +//K:-State feedback gain for the control law u=-Kx. +//lambda:- Eigen values of (a-b*k) +//------------------------------------------------------------------ +//------------------------------------------------------------------ + +function [K, lambda]=acker_dk(a, b, pl) + [lhs,rhs]=argn(0) + + if rhs == 0 then + disp(["K=acker_dk(a, b, pl)";"[K, lambda]=acker_dk(a, b, pl)"]); + disp(["a:- System matrix";"b:- input matrix";"p:- Desired poles"]); + disp(["K:-State feedback gain for the control law u=-Kx";... + "lambda:- Eigen values of (a-b*k)"]); + return; + end +[ra ca]=size(a); +[rb cb]=size(b); +l=length(pl); + +CO=cont_mat(a,b); + +if ra~=l then + error(["Dimension error:";"number of desired poles must equal... + to order of the system"]); +elseif ra~=ca then + error(["Dimension error:";"system matrix should be... + a sqaure matrix"]); +elseif rb~=ra then + error (["Dimension error:","Input matrix should have... + as many rows as a system matrix."]); +elseif rank(CO)<ra then + error("system is not controllable"); +end +//------------------------------------------------------------------ +//controllable canonical form +[Ac,Bc,T,ind]=canon(a,b); + +//CO=zeros(ra,cb); +for i=1:ra + CO(:,ra+1-i)=Ac^(i-1)*Bc; +end +//------------------------------------------------------------------ +chr_eq=poly(pl,'s'); +des_chr_coeff=coeff(chr_eq); + +des_chr_coeff=des_chr_coeff(1:ra); +alpha_c=Ac^ra; + +for k=1:ra + alpha_c=alpha_c + des_chr_coeff(k)*Ac^(k-1) +end +//------------------------------------------------------------------ +//State feedback gain +temp=zeros(1,ra); +temp(1)=1; +K=temp*inv(CO)*alpha_c; +K=K/T; +lambda=spec(a-b*K); +endfunction +//------------------------------------------------------------------ + + + + diff --git a/Working_Examples/3432/CH7/EX7.33/DEPENDENCIES/zpk_dk.sci b/Working_Examples/3432/CH7/EX7.33/DEPENDENCIES/zpk_dk.sci new file mode 100755 index 0000000..95b4e6c --- /dev/null +++ b/Working_Examples/3432/CH7/EX7.33/DEPENDENCIES/zpk_dk.sci @@ -0,0 +1,43 @@ +//------------------------------------------------------------------ +//------------------------------------------------------------------ +//A function written by Deepti Khimani. +//Usage:- +//p=zpk_dk(sl) +//[p, z]=zpk_dk(sl) +//[p, z, k]=zpk_dk(sl) +//p:- Poles of the system +//z:- zeros of the system +//k:- DC gain of the system +//------------------------------------------------------------------ +//------------------------------------------------------------------ + +function[pl,zr,k]=zpk_dk(sysmodel) + [lhs,rhs]=argn(0) + + if rhs == 0 then + disp(["p=zpk_dk(sl)";"[p, z]=zpk_dk(sl)";"[p, z, k]=zpk_dk(sl)"]); + disp(["p:- Poles of the system";"z:- zeros of the system"]); + disp("k:- DC gain of the system"); + return; + end + + if typeof(sysmodel)=="rational" then + sys=tf2ss(sysmodel); + pl=spec(sys.A); + zr=trzeros(sys); + temp1=poly(zr,'s','roots')/poly(pl,'s','roots'); + temp2=sysmodel/temp1; + temp3=tf2ss(temp2); + k=temp3.D; + elseif typeof(sysmodel)=="state-space" then + pl=spec(sysmodel.A); + zr=trzeros(sysmodel); + g=ss2tf(sysmodel); + temp1=poly(zr,'s','roots')/poly(pl,'s','roots'); + temp2=g/temp1; + temp3=tf2ss(temp2); + k=temp3.D + else + error("Wrong type of input argument.") + end +endfunction diff --git a/Working_Examples/3432/CH7/EX7.33/Ex7_33.sce b/Working_Examples/3432/CH7/EX7.33/Ex7_33.sce new file mode 100755 index 0000000..46c2f6a --- /dev/null +++ b/Working_Examples/3432/CH7/EX7.33/Ex7_33.sce @@ -0,0 +1,47 @@ +//Example 7.33
+// DC servo system redesign with modified with dominant second
+// order pole locations.
+
+xdel(winsid())//close all graphics Windows
+clear;
+clc;
+//------------------------------------------------------------------
+
+// State space representation
+//Transfer function model for DC Servo
+s=poly(0,'s');
+num=10;
+den=s*(s+2)*(s+8);
+Gs=syslin('c',num/den);
+
+// State space representation
+F=[-10 1 0;-16 0 1;0 0 0]
+G=[0 0 10]';
+H=[1 0 0];
+J=0;
+n=sqrt(length(F));
+//Desired poles for the DC Servo system.
+Pc=[-1.41+1.41*%i -1.41-1.41*%i -8]
+
+
+// State feedback gain
+K=ppol(F,G,Pc)
+disp(K,'K=',"State feedback gain")
+
+//Estimator - error roots are at
+Pe=[-4.24+4.24*%i -4.24-4.24*%i -8]
+exec .\acker_dk.sci;
+Lt=ppol(F',H',Pe);
+L=clean(Lt');
+disp(L,'L=',"Observer gain")
+//Error in book, Gain values are different in book.
+//------------------------------------------------------------------
+//Compensator Design
+DK=-K*inv(s*eye(n,n)-F+G*K+L*H)*L;
+DK=syslin('c',DK)
+exec('./zpk_dk.sci', -1);
+[pl,zr,Kp]=zpk_dk(DK*10);
+disp(zr,"zeros",pl,"Poles",Kp*10,"Gain(includung system gain)")
+Dcs=poly(zr,'s','roots')/poly(pl,'s','roots')
+disp(Dcs,'Dcs=',"Compensator transfer function")
+//------------------------------------------------------------------
diff --git a/Working_Examples/3432/CH7/EX7.34/DEPENDENCIES/acker_dk.sci b/Working_Examples/3432/CH7/EX7.34/DEPENDENCIES/acker_dk.sci new file mode 100755 index 0000000..3391d24 --- /dev/null +++ b/Working_Examples/3432/CH7/EX7.34/DEPENDENCIES/acker_dk.sci @@ -0,0 +1,73 @@ +//------------------------------------------------------------------ +//------------------------------------------------------------------ +//A function written by Deepti Khimani. +//Usage:- +//[K, lambda]=acker_dk(a, b, pl) +//K=acker_dk(a, b, pl) +//a:- System matrix. +//b:- input matrix. +//p:- Desired poles. +//K:-State feedback gain for the control law u=-Kx. +//lambda:- Eigen values of (a-b*k) +//------------------------------------------------------------------ +//------------------------------------------------------------------ + +function [K, lambda]=acker_dk(a, b, pl) + [lhs,rhs]=argn(0) + + if rhs == 0 then + disp(["K=acker_dk(a, b, pl)";"[K, lambda]=acker_dk(a, b, pl)"]); + disp(["a:- System matrix";"b:- input matrix";"p:- Desired poles"]); + disp(["K:-State feedback gain for the control law u=-Kx";... + "lambda:- Eigen values of (a-b*k)"]); + return; + end +[ra ca]=size(a); +[rb cb]=size(b); +l=length(pl); + +CO=cont_mat(a,b); + +if ra~=l then + error(["Dimension error:";"number of desired poles must equal... + to order of the system"]); +elseif ra~=ca then + error(["Dimension error:";"system matrix should be... + a sqaure matrix"]); +elseif rb~=ra then + error (["Dimension error:","Input matrix should have... + as many rows as a system matrix."]); +elseif rank(CO)<ra then + error("system is not controllable"); +end +//------------------------------------------------------------------ +//controllable canonical form +[Ac,Bc,T,ind]=canon(a,b); + +//CO=zeros(ra,cb); +for i=1:ra + CO(:,ra+1-i)=Ac^(i-1)*Bc; +end +//------------------------------------------------------------------ +chr_eq=poly(pl,'s'); +des_chr_coeff=coeff(chr_eq); + +des_chr_coeff=des_chr_coeff(1:ra); +alpha_c=Ac^ra; + +for k=1:ra + alpha_c=alpha_c + des_chr_coeff(k)*Ac^(k-1) +end +//------------------------------------------------------------------ +//State feedback gain +temp=zeros(1,ra); +temp(1)=1; +K=temp*inv(CO)*alpha_c; +K=K/T; +lambda=spec(a-b*K); +endfunction +//------------------------------------------------------------------ + + + + diff --git a/Working_Examples/3432/CH7/EX7.34/DEPENDENCIES/fig_settings.sci b/Working_Examples/3432/CH7/EX7.34/DEPENDENCIES/fig_settings.sci new file mode 100755 index 0000000..5d5e7d4 --- /dev/null +++ b/Working_Examples/3432/CH7/EX7.34/DEPENDENCIES/fig_settings.sci @@ -0,0 +1,9 @@ +//------------------------------------------------------------------
+//figure handel settings
+f=get("current_figure"); //Current figure handle
+f.background=8; //make the figure window background white
+l=f.children(1);
+l.background=8 ;//make the text background white
+id=color('grey');
+xgrid(id);
+//------------------------------------------------------------------
diff --git a/Working_Examples/3432/CH7/EX7.34/Ex7_34.sce b/Working_Examples/3432/CH7/EX7.34/Ex7_34.sce new file mode 100755 index 0000000..2e77ebe --- /dev/null +++ b/Working_Examples/3432/CH7/EX7.34/Ex7_34.sce @@ -0,0 +1,110 @@ +//Example 7.34
+// Servomechanism, increasing the velocity constant through
+// zero assignment.
+
+xdel(winsid())//close all graphics Windows
+clear;
+clc;
+//------------------------------------------------------------------
+
+// State space representation
+//Transfer function model for DC Servo
+s=poly(0,'s');
+num=1;
+den=s*(s+1);
+Gs=syslin('c',num/den);
+
+// State space representation
+F=[0 1;0 -1]
+G=[0 1]';
+H=[1 0];
+J=0;
+n=sqrt(length(F));
+//Desired poles for the DC Servo system.
+Pc=[-2 -2]
+
+// State feedback gain
+exec .\acker_dk.sci;
+K=acker_dk(F,G,Pc)//Gain computed in book is incorrect.
+disp(K,'K=',"State feedback gain")
+//------------------------------------------------------------------
+//Overall transfer function with reduced order estimator.
+Gred=8.32*(0.096+s)/(0.1 +s)/(8 + 4*s+s^2)
+Gred=syslin('c',Gred)
+disp(Gred,'Ys/Rs',"Overall transfer function with reduced...
+ order estimator")
+
+//Compensator
+D=(0.096+s)*(s+1)/(4.08 +s)/(0.0196+s)
+Ds=syslin('c',D*8.32)
+disp(Ds,'Ds=',"Compensator transfer function")
+//------------------------------------------------------------------
+//root locus
+figure(0)
+evans(D*Gs,100) //Correct root locus
+zoom_rect([-0.2 -0.1 0.1 0.1])
+f=gca();
+f.x_location = "origin"
+f.y_location = "origin"
+xset("color",2);
+h=legend('');
+h.visible = "off"
+//Title, labels and grid to the figure
+exec .\fig_settings.sci; // custom script for setting figure properties
+title('Root locus of lag-lead compensation','fontsize',3);
+//------------------------------------------------------------------
+//Bode plot
+figure(1)
+bode(Ds*Gs,0.01/2/%pi,100/2/%pi,"rad") //Correct root locus
+
+f=gca();
+h=legend('');
+h.visible = "off"
+//Title, labels and grid to the figure
+exec .\fig_settings.sci; //custom script for setting figure properties
+title('Frequency response of lag-lead compensation','fontsize',3);
+//------------------------------------------------------------------
+//step response of the system with lag compensation
+t=0:0.1:5;
+ylag=csim('step',t,8.32*Gs*D/(1+8.32*Gs*D));
+figure
+plot(t,ylag,2);
+xlabel('Time (sec)');
+ylabel('y');
+title("Step response of the system with lag compensation",'fontsize',3)
+exec .\fig_settings.sci; //custom script for setting figure properties
+//------------------------------------------------------------------
+//Discrete-time controller
+sysDc_ss=syslin('c',tf2ss(Ds));
+ts=0.1;
+sysDd=dscr(sysDc_ss,ts)
+Gdz=ss2tf(sysDd)
+
+disp(Gdz,"Discrete-time compensator")
+//------------------------------------------------------------------
+//step responses comparision
+importXcosDiagram(".\Ex7_34_model.xcos")
+
+xcos_simulate(scs_m,4);
+scs_m.props.context
+figure,
+plot(yt.time,yt.values(:,1),2)
+plot(yt.time,yt.values(:,2),'r--')
+xlabel('Time (sec)');
+ylabel('y');
+title("Comaprison of step responses for continuous and discrete...
+ controllers",'fontsize',3)
+exec .\fig_settings.sci; //custom script for setting figure properties
+legend("continuous controller","digital controller",4)
+
+//Control inputs
+figure,
+plot(ut.time,ut.values(:,1),2)
+plot(ut.time,ut.values(:,2),'r--')
+xlabel('Time (sec)');
+ylabel('u');
+title("Comaprison of control signals for continuous and discrete...
+ controllers",'fontsize',3)
+exec .\fig_settings.sci; //custom script for setting figure properties
+legend("continuous controller","digital controller")
+//------------------------------------------------------------------
diff --git a/Working_Examples/3432/CH7/EX7.34/Ex7_34_f0.pdf b/Working_Examples/3432/CH7/EX7.34/Ex7_34_f0.pdf Binary files differnew file mode 100755 index 0000000..d7b791b --- /dev/null +++ b/Working_Examples/3432/CH7/EX7.34/Ex7_34_f0.pdf diff --git a/Working_Examples/3432/CH7/EX7.34/Ex7_34_f4.pdf b/Working_Examples/3432/CH7/EX7.34/Ex7_34_f4.pdf Binary files differnew file mode 100755 index 0000000..c76fc78 --- /dev/null +++ b/Working_Examples/3432/CH7/EX7.34/Ex7_34_f4.pdf diff --git a/Working_Examples/3432/CH7/EX7.34/Ex7_34_model.xcos b/Working_Examples/3432/CH7/EX7.34/Ex7_34_model.xcos new file mode 100755 index 0000000..0f9e52f --- /dev/null +++ b/Working_Examples/3432/CH7/EX7.34/Ex7_34_model.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" finalIntegrationTime="5.0" title="Ex7_34_model"><!--Xcos - 1.0 - scilab-5.5.2 - 20160406 2040--><mxGraphModel as="model"><root><mxCell id="-2dd55334:14dcbdd0183:-7fd2"/><mxCell id="-2dd55334:14dcbdd0183:-7fd3" parent="-2dd55334:14dcbdd0183:-7fd2"/><BasicBlock dependsOnT="1" id="-2dd55334:14dcbdd0183:-7f98" interfaceFunctionName="CLR" ordering="1" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="csslti4" simulationFunctionType="C_OR_FORTRAN" style="CLR;flip=false;mirror=false"><ScilabString as="exprs" height="2" width="1"><data column="0" line="0" value="1"/><data column="0" line="1" value="s+s^2"/></ScilabString><ScilabDouble as="realParameters" height="9" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="-0.0"/><data column="0" line="2" realPart="1.0"/><data column="0" line="3" realPart="-1.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="1.0"/><data column="0" line="6" realPart="1.0"/><data column="0" line="7" realPart="0.0"/><data column="0" line="8" realPart="0.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="state" height="2" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="90.0" x="640.0" y="100.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5c6e81bd:14e42b54a0f:-74d4" ordering="1" parent="-2dd55334:14dcbdd0183:-7f98" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5c6e81bd:14e42b54a0f:-74d3" ordering="1" parent="-2dd55334:14dcbdd0183:-7f98" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="90.0" y="16.0"/></ExplicitOutputPort><Summation dependsOnU="1" id="-2dd55334:14dcbdd0183:-7f23" interfaceFunctionName="SUMMATION" ordering="2" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="summation" simulationFunctionType="C_OR_FORTRAN" style="SUMMATION;flip=false;mirror=false" value="+"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="[1;-1]"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="2" width="1"><data column="0" line="0" realPart="1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="60.0" width="40.0" x="250.0" y="90.0"/></Summation><ExplicitInputPort dataType="REAL_MATRIX" id="-2dd55334:14dcbdd0183:-7f22" ordering="1" parent="-2dd55334:14dcbdd0183:-7f23" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value="+"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitInputPort dataType="REAL_MATRIX" id="-2dd55334:14dcbdd0183:-7f21" ordering="2" parent="-2dd55334:14dcbdd0183:-7f23" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value="-"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="36.0"/></ExplicitInputPort><ExplicitOutputPort dataType="REAL_MATRIX" id="-2dd55334:14dcbdd0183:-7f20" ordering="1" parent="-2dd55334:14dcbdd0183:-7f23" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="26.0"/></ExplicitOutputPort><ExplicitLink id="-2dd55334:14dcbdd0183:-7f1e" parent="-2dd55334:14dcbdd0183:-7fd3" source="-2dd55334:14dcbdd0183:-7f20" target="-5c6e81bd:14e42b54a0f:-7437"><mxGeometry as="geometry" x="180.0" y="30.0"/></ExplicitLink><BasicBlock id="-2dd55334:14dcbdd0183:-7eeb" interfaceFunctionName="STEP_FUNCTION" ordering="3" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="STEP_FUNCTION;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList" varName=""><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="1.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="3" width="1"><data column="0" line="0" value="0"/><data column="0" line="1" value="0"/><data column="0" line="2" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"STEP",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="STEP"/></ScilabString></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="step_func"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="1.0"/><data column="0" line="1" realPart="1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7ee6"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="STEP"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7ee6"/></ScilabString></Array></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="3080.0"/><data column="1" line="0" realPart="-3030.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"OUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="OUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-2.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7ee2"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="OUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7ee2"/></ScilabString></Array></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="84.0"/><data column="0" line="1" realPart="3096.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-20.0"/><data column="0" line="1" realPart="-3020.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="6" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="6020.0"/><data column="0" line="2" realPart="5980.0"/><data column="0" line="3" realPart="5980.0"/><data column="0" line="4" realPart="6020.0"/><data column="0" line="5" realPart="60.0"/></ScilabDouble><ScilabDouble height="6" width="1"><data column="0" line="0" realPart="-44.0"/><data column="0" line="1" realPart="-6060.0"/><data column="0" line="2" realPart="-6060.0"/><data column="0" line="3" realPart="-5980.0"/><data column="0" line="4" realPart="-5980.0"/><data column="0" line="5" realPart="4.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="70.0" y="90.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-2dd55334:14dcbdd0183:-7ec7" ordering="1" parent="-2dd55334:14dcbdd0183:-7eeb" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><BasicBlock dependsOnT="1" dependsOnU="1" id="-2dd55334:14dcbdd0183:-7fb6" interfaceFunctionName="CLR" ordering="4" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="csslti4" simulationFunctionType="C_OR_FORTRAN" style="CLR;flip=false;mirror=false"><ScilabString as="exprs" height="2" width="1"><data column="0" line="0" value="0.79872 + 9.11872*s + 8.32*s^2"/><data column="0" line="1" value="0.079968 + 4.0996*s + s^2"/></ScilabString><ScilabDouble as="realParameters" height="9" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="-0.079968"/><data column="0" line="2" realPart="1.0"/><data column="0" line="3" realPart="-4.0996"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="1.0"/><data column="0" line="6" realPart="0.13338624"/><data column="0" line="7" realPart="-24.989952"/><data column="0" line="8" realPart="8.32"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="state" height="2" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="60.0" width="250.0" x="320.0" y="90.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5c6e81bd:14e42b54a0f:-7437" ordering="1" parent="-2dd55334:14dcbdd0183:-7fb6" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="26.0"/></ExplicitInputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5c6e81bd:14e42b54a0f:-7436" ordering="1" parent="-2dd55334:14dcbdd0183:-7fb6" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="250.0" y="26.0"/></ExplicitOutputPort><BasicBlock blockType="h" id="-2dd55334:14dcbdd0183:-7e6e" interfaceFunctionName="CLOCK_c" ordering="5" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList" varName=""><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="1.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="3159.0"/><data column="1" line="0" realPart="-3190.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7e5e"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7e5e"/></ScilabString></Array></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="ts"/><data column="0" line="1" value="0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.1"/><data column="0" line="1" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7e5c"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7e5c"/></ScilabString></Array></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5139.377326666667"/><data column="1" line="0" realPart="-5185.333333333333"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="7.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="5.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7e59"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7e59"/></ScilabString></Array></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="6180.0"/><data column="0" line="2" realPart="5149.877326666667"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-44.0"/><data column="0" line="1" realPart="-6260.0"/><data column="0" line="2" realPart="-5174.333333333333"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="5148.71066"/><data column="0" line="1" realPart="3189.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-5189.333333333333"/><data column="0" line="1" realPart="-3166.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="5151.043993333334"/><data column="0" line="1" realPart="6220.71"/><data column="0" line="2" realPart="6180.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-5189.333333333333"/><data column="0" line="1" realPart="-6130.0"/><data column="0" line="2" realPart="-6130.0"/><data column="0" line="3" realPart="4.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="1010.0" y="30.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="-5c6e81bd:14e42b54a0f:-7d01" ordering="1" parent="-2dd55334:14dcbdd0183:-7e6e" style="CommandPort;align=center;verticalAlign=bottom;spacing=10.0;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><mxCell connectable="0" id="-2dd55334:14dcbdd0183:-7e6e#identifier" parent="-2dd55334:14dcbdd0183:-7e6e" style="noLabel=0;opacity=0" value=" Period=ts" vertex="1"><mxGeometry as="geometry" relative="1" x="0.5" y="1.1"><mxPoint as="offset" x="1.0" y="-60.0"/></mxGeometry></mxCell><Summation dependsOnU="1" id="-2dd55334:14dcbdd0183:-7dc2" interfaceFunctionName="SUMMATION" ordering="6" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="summation" simulationFunctionType="C_OR_FORTRAN" style="SUMMATION;flip=false;mirror=false" value="+"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="[1;-1]"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="2" width="1"><data column="0" line="0" realPart="1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="60.0" width="40.0" x="230.0" y="270.0"/></Summation><ExplicitInputPort dataType="REAL_MATRIX" id="-2dd55334:14dcbdd0183:-7dc1" ordering="1" parent="-2dd55334:14dcbdd0183:-7dc2" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value="+"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitInputPort dataType="REAL_MATRIX" id="-2dd55334:14dcbdd0183:-7dc0" ordering="2" parent="-2dd55334:14dcbdd0183:-7dc2" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value="-"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="36.0"/></ExplicitInputPort><ExplicitOutputPort dataType="REAL_MATRIX" id="-2dd55334:14dcbdd0183:-7dbf" ordering="1" parent="-2dd55334:14dcbdd0183:-7dc2" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="26.0"/></ExplicitOutputPort><BasicBlock blockType="d" dependsOnU="1" id="-2dd55334:14dcbdd0183:-7d7c" interfaceFunctionName="DLR" ordering="7" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="dsslti4" simulationFunctionType="C_OR_FORTRAN" style="DLR;flip=false;mirror=false"><ScilabString as="exprs" height="2" width="1"><data column="0" line="0" value="7.5721553 - 15.885603*z + 8.32*z^2"/><data column="0" line="1" value="0.6636768 - 1.6630208*z + z^2"/></ScilabString><ScilabDouble as="realParameters" height="9" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="-0.6636768"/><data column="0" line="2" realPart="1.0"/><data column="0" line="3" realPart="1.6630208"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="1.0"/><data column="0" line="6" realPart="2.0503643240000002"/><data column="0" line="7" realPart="-2.049269943999999"/><data column="0" line="8" realPart="8.32"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="dState" height="2" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="50.0" width="380.0" x="300.0" y="280.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5c6e81bd:14e42b54a0f:-7430" ordering="1" parent="-2dd55334:14dcbdd0183:-7d7c" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5c6e81bd:14e42b54a0f:-742f" ordering="1" parent="-2dd55334:14dcbdd0183:-7d7c" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="380.0" y="16.0"/></ExplicitOutputPort><ControlPort dataType="UNKNOW_TYPE" id="-5c6e81bd:14e42b54a0f:-742e" ordering="1" parent="-2dd55334:14dcbdd0183:-7d7c" style="ControlPort;align=center;verticalAlign=top;spacing=10.0;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="186.0" y="-8.0"/></ControlPort><BasicBlock blockType="h" id="-2dd55334:14dcbdd0183:-7d59" interfaceFunctionName="CLOCK_c" ordering="8" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList" varName=""><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="1.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="3479.0"/><data column="1" line="0" realPart="-3510.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7e5e"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7e5e"/></ScilabString></Array></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="ts"/><data column="0" line="1" value="0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.1"/><data column="0" line="1" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7e5c"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7e5c"/></ScilabString></Array></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5667.377326666667"/><data column="1" line="0" realPart="-5713.333333333333"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="7.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="5.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7e59"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7e59"/></ScilabString></Array></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="6820.0"/><data column="0" line="2" realPart="5677.877326666667"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-44.0"/><data column="0" line="1" realPart="-6900.0"/><data column="0" line="2" realPart="-5702.333333333333"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="5676.71066"/><data column="0" line="1" realPart="3509.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-5717.333333333333"/><data column="0" line="1" realPart="-3486.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="5679.043993333334"/><data column="0" line="1" realPart="6860.71"/><data column="0" line="2" realPart="6820.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-5717.333333333333"/><data column="0" line="1" realPart="-6770.0"/><data column="0" line="2" realPart="-6770.0"/><data column="0" line="3" realPart="4.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="470.0" y="210.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="-5c6e81bd:14e42b54a0f:-7d1f" ordering="1" parent="-2dd55334:14dcbdd0183:-7d59" style="CommandPort;align=center;verticalAlign=bottom;spacing=10.0;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><mxCell connectable="0" id="-2dd55334:14dcbdd0183:-7d59#identifier" parent="-2dd55334:14dcbdd0183:-7d59" style="noLabel=0;opacity=0" value=" Period=ts" vertex="1"><mxGeometry as="geometry" relative="1" x="0.5" y="1.1"><mxPoint as="offset" x="50.0" y="-32.0"/></mxGeometry></mxCell><CommandControlLink id="-2dd55334:14dcbdd0183:-7d55" parent="-2dd55334:14dcbdd0183:-7fd3" source="-5c6e81bd:14e42b54a0f:-7d1f" target="-5c6e81bd:14e42b54a0f:-742e"><mxGeometry as="geometry" x="200.0" y="20.0"/></CommandControlLink><ExplicitLink id="-2dd55334:14dcbdd0183:-7cbb" parent="-2dd55334:14dcbdd0183:-7fd3" source="-2dd55334:14dcbdd0183:-7dbf" target="-5c6e81bd:14e42b54a0f:-7430"><mxGeometry as="geometry" x="200.0" y="70.0"/></ExplicitLink><BasicBlock dependsOnU="1" id="-2dd55334:14dcbdd0183:-7c65" interfaceFunctionName="MUX_f" ordering="9" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="mux" simulationFunctionType="TYPE_1" style="MUX_f;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="2"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="10.0" x="950.0" y="180.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="-2dd55334:14dcbdd0183:-7c64" ordering="1" parent="-2dd55334:14dcbdd0183:-7c65" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ExplicitInputPort><ExplicitInputPort dataColumns="1" dataLines="-2" dataType="REAL_MATRIX" id="-2dd55334:14dcbdd0183:-7c63" ordering="2" parent="-2dd55334:14dcbdd0183:-7c65" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="26.0"/></ExplicitInputPort><ExplicitOutputPort dataColumns="1" dataLines="0" dataType="REAL_MATRIX" id="-2dd55334:14dcbdd0183:-7c62" ordering="1" parent="-2dd55334:14dcbdd0183:-7c65" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="10.0" y="16.0"/></ExplicitOutputPort><TextBlock id="-6cad6c1c:14dd22d9551:-7f7a" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=18;flip=false;mirror=false" value="Model for Ex7_34"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="Model for Ex7_34"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="Model for Ex7_34"/></ScilabString><mxGeometry as="geometry" height="40.0" width="160.0" x="390.0" y="20.0"/></TextBlock><SplitBlock id="-7d9f02e3:14e259a89bd:-7f43" ordering="10" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="187.0" y="107.0"/></SplitBlock><ExplicitInputPort dataType="UNKNOW_TYPE" id="-7d9f02e3:14e259a89bd:-7f42" ordering="1" parent="-7d9f02e3:14e259a89bd:-7f43" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ExplicitInputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="-7d9f02e3:14e259a89bd:-7f41" ordering="1" parent="-7d9f02e3:14e259a89bd:-7f43" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="-7d9f02e3:14e259a89bd:-7f40" ordering="2" parent="-7d9f02e3:14e259a89bd:-7f43" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitLink id="-7d9f02e3:14e259a89bd:-7f3f" parent="-2dd55334:14dcbdd0183:-7fd3" source="-2dd55334:14dcbdd0183:-7ec7" target="-7d9f02e3:14e259a89bd:-7f42"><mxGeometry as="geometry" x="50.0" y="10.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ExplicitLink><ExplicitLink id="-7d9f02e3:14e259a89bd:-7f3e" parent="-2dd55334:14dcbdd0183:-7fd3" source="-7d9f02e3:14e259a89bd:-7f41" target="-2dd55334:14dcbdd0183:-7f22"><mxGeometry as="geometry" x="50.0" y="10.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ExplicitLink><ExplicitLink id="-7d9f02e3:14e259a89bd:-7f44" parent="-2dd55334:14dcbdd0183:-7fd3" source="-7d9f02e3:14e259a89bd:-7f40" target="-2dd55334:14dcbdd0183:-7dc1"><mxGeometry as="geometry" x="50.0" y="10.0"><mxPoint as="sourcePoint" x="310.0" y="290.0"/><mxPoint as="targetPoint" x="190.0" y="110.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="190.0" y="290.0"/></Array></mxGeometry></ExplicitLink><BasicBlock dependsOnU="1" id="-7d9f02e3:14e259a89bd:-7831" interfaceFunctionName="MUX_f" ordering="11" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="mux" simulationFunctionType="TYPE_1" style="MUX_f;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="2"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="10.0" x="750.0" y="210.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="-7d9f02e3:14e259a89bd:-7830" ordering="1" parent="-7d9f02e3:14e259a89bd:-7831" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ExplicitInputPort><ExplicitInputPort dataColumns="1" dataLines="-2" dataType="REAL_MATRIX" id="-7d9f02e3:14e259a89bd:-782f" ordering="2" parent="-7d9f02e3:14e259a89bd:-7831" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="26.0"/></ExplicitInputPort><ExplicitOutputPort dataColumns="1" dataLines="0" dataType="REAL_MATRIX" id="-7d9f02e3:14e259a89bd:-782e" ordering="1" parent="-7d9f02e3:14e259a89bd:-7831" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="10.0" y="16.0"/></ExplicitOutputPort><SplitBlock id="-5c6e81bd:14e42b54a0f:-7bcc" ordering="12" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="867.0" y="187.0"/></SplitBlock><ExplicitInputPort dataType="UNKNOW_TYPE" id="-5c6e81bd:14e42b54a0f:-7bcb" ordering="1" parent="-5c6e81bd:14e42b54a0f:-7bcc" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ExplicitInputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="-5c6e81bd:14e42b54a0f:-7bca" ordering="1" parent="-5c6e81bd:14e42b54a0f:-7bcc" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="-5c6e81bd:14e42b54a0f:-7bc9" ordering="2" parent="-5c6e81bd:14e42b54a0f:-7bcc" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitLink id="-5c6e81bd:14e42b54a0f:-7bc8" parent="-2dd55334:14dcbdd0183:-7fd3" source="-5c6e81bd:14e42b54a0f:-74d3" target="-5c6e81bd:14e42b54a0f:-7bcb"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="870.0" y="120.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="-5c6e81bd:14e42b54a0f:-7bc7" parent="-2dd55334:14dcbdd0183:-7fd3" source="-5c6e81bd:14e42b54a0f:-7bca" target="-2dd55334:14dcbdd0183:-7f21"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="220.0" y="190.0"/><mxPoint x="220.0" y="130.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="-5c6e81bd:14e42b54a0f:-7bcd" parent="-2dd55334:14dcbdd0183:-7fd3" source="-5c6e81bd:14e42b54a0f:-7bc9" target="-2dd55334:14dcbdd0183:-7c64"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="910.0" y="190.0"/><mxPoint as="targetPoint" x="850.0" y="190.0"/></mxGeometry></ExplicitLink><BasicBlock dependsOnT="1" id="-5c6e81bd:14e42b54a0f:-7b65" interfaceFunctionName="CLR" ordering="13" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="csslti4" simulationFunctionType="C_OR_FORTRAN" style="CLR;flip=false;mirror=false"><ScilabString as="exprs" height="2" width="1"><data column="0" line="0" value="1"/><data column="0" line="1" value="s+s^2"/></ScilabString><ScilabDouble as="realParameters" height="9" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="-0.0"/><data column="0" line="2" realPart="1.0"/><data column="0" line="3" realPart="-1.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="1.0"/><data column="0" line="6" realPart="1.0"/><data column="0" line="7" realPart="0.0"/><data column="0" line="8" realPart="0.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="state" height="2" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="90.0" x="750.0" y="280.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5c6e81bd:14e42b54a0f:-74d1" ordering="1" parent="-5c6e81bd:14e42b54a0f:-7b65" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-5c6e81bd:14e42b54a0f:-74d0" ordering="1" parent="-5c6e81bd:14e42b54a0f:-7b65" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="90.0" y="16.0"/></ExplicitOutputPort><SplitBlock id="-5c6e81bd:14e42b54a0f:-7b55" ordering="14" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="927.0" y="297.0"/></SplitBlock><ExplicitInputPort dataType="UNKNOW_TYPE" id="-5c6e81bd:14e42b54a0f:-7b54" ordering="1" parent="-5c6e81bd:14e42b54a0f:-7b55" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ExplicitInputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="-5c6e81bd:14e42b54a0f:-7b53" ordering="1" parent="-5c6e81bd:14e42b54a0f:-7b55" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="-5c6e81bd:14e42b54a0f:-7b52" ordering="2" parent="-5c6e81bd:14e42b54a0f:-7b55" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitLink id="-5c6e81bd:14e42b54a0f:-7b51" parent="-2dd55334:14dcbdd0183:-7fd3" source="-5c6e81bd:14e42b54a0f:-74d0" target="-5c6e81bd:14e42b54a0f:-7b54"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="900.0" y="300.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="-5c6e81bd:14e42b54a0f:-7b50" parent="-2dd55334:14dcbdd0183:-7fd3" source="-5c6e81bd:14e42b54a0f:-7b53" target="-2dd55334:14dcbdd0183:-7c63"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="930.0" y="210.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="-5c6e81bd:14e42b54a0f:-7b56" parent="-2dd55334:14dcbdd0183:-7fd3" source="-5c6e81bd:14e42b54a0f:-7b52" target="-2dd55334:14dcbdd0183:-7dc0"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="230.0" y="310.0"/><mxPoint as="targetPoint" x="930.0" y="300.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="930.0" y="360.0"/><mxPoint x="190.0" y="360.0"/><mxPoint x="190.0" y="310.0"/></Array></mxGeometry></ExplicitLink><SplitBlock id="-5c6e81bd:14e42b54a0f:-7b44" ordering="15" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="597.0" y="117.0"/></SplitBlock><ExplicitInputPort dataType="UNKNOW_TYPE" id="-5c6e81bd:14e42b54a0f:-7b43" ordering="1" parent="-5c6e81bd:14e42b54a0f:-7b44" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ExplicitInputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="-5c6e81bd:14e42b54a0f:-7b42" ordering="1" parent="-5c6e81bd:14e42b54a0f:-7b44" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="-5c6e81bd:14e42b54a0f:-7b41" ordering="2" parent="-5c6e81bd:14e42b54a0f:-7b44" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitLink id="-5c6e81bd:14e42b54a0f:-7b40" parent="-2dd55334:14dcbdd0183:-7fd3" source="-5c6e81bd:14e42b54a0f:-7436" target="-5c6e81bd:14e42b54a0f:-7b43"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ExplicitLink><ExplicitLink id="-5c6e81bd:14e42b54a0f:-7b3f" parent="-2dd55334:14dcbdd0183:-7fd3" source="-5c6e81bd:14e42b54a0f:-7b42" target="-5c6e81bd:14e42b54a0f:-74d4"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ExplicitLink><ExplicitLink id="-5c6e81bd:14e42b54a0f:-7b45" parent="-2dd55334:14dcbdd0183:-7fd3" source="-5c6e81bd:14e42b54a0f:-7b41" target="-7d9f02e3:14e259a89bd:-7830"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="750.0" y="220.0"/><mxPoint as="targetPoint" x="600.0" y="120.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="600.0" y="220.0"/></Array></mxGeometry></ExplicitLink><SplitBlock id="-5c6e81bd:14e42b54a0f:-7b3d" ordering="16" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="697.0" y="297.0"/></SplitBlock><ExplicitInputPort dataType="UNKNOW_TYPE" id="-5c6e81bd:14e42b54a0f:-7b3c" ordering="1" parent="-5c6e81bd:14e42b54a0f:-7b3d" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ExplicitInputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="-5c6e81bd:14e42b54a0f:-7b3b" ordering="1" parent="-5c6e81bd:14e42b54a0f:-7b3d" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="-5c6e81bd:14e42b54a0f:-7b3a" ordering="2" parent="-5c6e81bd:14e42b54a0f:-7b3d" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitLink id="-5c6e81bd:14e42b54a0f:-7b39" parent="-2dd55334:14dcbdd0183:-7fd3" source="-5c6e81bd:14e42b54a0f:-742f" target="-5c6e81bd:14e42b54a0f:-7b3c"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ExplicitLink><ExplicitLink id="-5c6e81bd:14e42b54a0f:-7b38" parent="-2dd55334:14dcbdd0183:-7fd3" source="-5c6e81bd:14e42b54a0f:-7b3b" target="-5c6e81bd:14e42b54a0f:-74d1"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ExplicitLink><ExplicitLink id="-5c6e81bd:14e42b54a0f:-7b3e" parent="-2dd55334:14dcbdd0183:-7fd3" source="-5c6e81bd:14e42b54a0f:-7b3a" target="-7d9f02e3:14e259a89bd:-782f"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="750.0" y="240.0"/><mxPoint as="targetPoint" x="700.0" y="300.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="700.0" y="240.0"/></Array></mxGeometry></ExplicitLink><BasicBlock dependsOnU="1" id="-7f3f8309:16686c89bf7:-7c6d" interfaceFunctionName="CSCOPE" ordering="17" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="cscope" simulationFunctionType="C_OR_FORTRAN" style="CSCOPE"><ScilabString as="exprs" height="10" width="1"><data column="0" line="0" value="1 3 5 7 9 11 13 15"/><data column="0" line="1" value="-1"/><data column="0" line="2" value="[]"/><data column="0" line="3" value="[600;400]"/><data column="0" line="4" value="-2"/><data column="0" line="5" value="2"/><data column="0" line="6" value="5"/><data column="0" line="7" value="20"/><data column="0" line="8" value="0"/><data column="0" line="9" value=""/></ScilabString><ScilabDouble as="realParameters" height="4" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="-2.0"/><data column="0" line="2" realPart="2.0"/><data column="0" line="3" realPart="5.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="15" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="1.0"/><data column="0" line="4" realPart="3.0"/><data column="0" line="5" realPart="5.0"/><data column="0" line="6" realPart="7.0"/><data column="0" line="7" realPart="9.0"/><data column="0" line="8" realPart="11.0"/><data column="0" line="9" realPart="13.0"/><data column="0" line="10" realPart="15.0"/><data column="0" line="11" realPart="-1.0"/><data column="0" line="12" realPart="-1.0"/><data column="0" line="13" realPart="600.0"/><data column="0" line="14" realPart="400.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="1010.0" y="180.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="-7f3f8309:16686c89bf7:-7ad0" ordering="1" parent="-7f3f8309:16686c89bf7:-7c6d" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ControlPort dataType="UNKNOW_TYPE" id="-7f3f8309:16686c89bf7:-7acf" ordering="1" parent="-7f3f8309:16686c89bf7:-7c6d" style="ControlPort;align=center;verticalAlign=top;spacing=10.0;rotation=90"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><BasicBlock dependsOnU="1" id="-7f3f8309:16686c89bf7:-7c67" interfaceFunctionName="CSCOPE" ordering="18" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="cscope" simulationFunctionType="C_OR_FORTRAN" style="CSCOPE"><ScilabString as="exprs" height="10" width="1"><data column="0" line="0" value="1 3 5 7 9 11 13 15"/><data column="0" line="1" value="-1"/><data column="0" line="2" value="[]"/><data column="0" line="3" value="[600;400]"/><data column="0" line="4" value="-10"/><data column="0" line="5" value="10"/><data column="0" line="6" value="5"/><data column="0" line="7" value="20"/><data column="0" line="8" value="0"/><data column="0" line="9" value=""/></ScilabString><ScilabDouble as="realParameters" height="4" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="-10.0"/><data column="0" line="2" realPart="10.0"/><data column="0" line="3" realPart="5.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="15" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="1.0"/><data column="0" line="4" realPart="3.0"/><data column="0" line="5" realPart="5.0"/><data column="0" line="6" realPart="7.0"/><data column="0" line="7" realPart="9.0"/><data column="0" line="8" realPart="11.0"/><data column="0" line="9" realPart="13.0"/><data column="0" line="10" realPart="15.0"/><data column="0" line="11" realPart="-1.0"/><data column="0" line="12" realPart="-1.0"/><data column="0" line="13" realPart="600.0"/><data column="0" line="14" realPart="400.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="810.0" y="210.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="-7f3f8309:16686c89bf7:-7acd" ordering="1" parent="-7f3f8309:16686c89bf7:-7c67" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ControlPort dataType="UNKNOW_TYPE" id="-7f3f8309:16686c89bf7:-7acc" ordering="1" parent="-7f3f8309:16686c89bf7:-7c67" style="ControlPort;align=center;verticalAlign=top;spacing=10.0;rotation=90"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><ExplicitLink id="-7f3f8309:16686c89bf7:-7c5e" parent="-2dd55334:14dcbdd0183:-7fd3" source="-7d9f02e3:14e259a89bd:-782e" target="-7f3f8309:16686c89bf7:-7acd"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="760.0" y="230.0"/><mxPoint as="targetPoint" x="810.0" y="230.0"/></mxGeometry></ExplicitLink><CommandControlLink id="-7f3f8309:16686c89bf7:-7bb1" parent="-2dd55334:14dcbdd0183:-7fd3" source="-5c6e81bd:14e42b54a0f:-7d01" target="-7f3f8309:16686c89bf7:-7acf"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="1030.0" y="70.0"/><mxPoint as="targetPoint" x="1030.0" y="170.0"/></mxGeometry></CommandControlLink><BasicBlock blockType="h" id="-7f3f8309:16686c89bf7:-7bae" interfaceFunctionName="CLOCK_c" ordering="19" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList" varName=""><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="1.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="3159.0"/><data column="1" line="0" realPart="-3190.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7e5e"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7e5e"/></ScilabString></Array></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="ts"/><data column="0" line="1" value="0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.1"/><data column="0" line="1" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7e5c"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7e5c"/></ScilabString></Array></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5139.377326666667"/><data column="1" line="0" realPart="-5185.333333333333"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="7.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="5.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7e59"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7e59"/></ScilabString></Array></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="6180.0"/><data column="0" line="2" realPart="5149.877326666667"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-44.0"/><data column="0" line="1" realPart="-6260.0"/><data column="0" line="2" realPart="-5174.333333333333"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="5148.71066"/><data column="0" line="1" realPart="3189.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-5189.333333333333"/><data column="0" line="1" realPart="-3166.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="5151.043993333334"/><data column="0" line="1" realPart="6220.71"/><data column="0" line="2" realPart="6180.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-5189.333333333333"/><data column="0" line="1" realPart="-6130.0"/><data column="0" line="2" realPart="-6130.0"/><data column="0" line="3" realPart="4.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="810.0" y="20.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="-7f3f8309:16686c89bf7:-7bad" ordering="1" parent="-7f3f8309:16686c89bf7:-7bae" style="CommandPort;align=center;verticalAlign=bottom;spacing=10.0;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><mxCell connectable="0" id="-7f3f8309:16686c89bf7:-7bae#identifier" parent="-7f3f8309:16686c89bf7:-7bae" style="noLabel=0;opacity=0" value=" Period=ts" vertex="1"><mxGeometry as="geometry" relative="1" x="0.5" y="1.1"><mxPoint as="offset" x="1.0" y="-60.0"/></mxGeometry></mxCell><CommandControlLink id="-7f3f8309:16686c89bf7:-7baa" parent="-2dd55334:14dcbdd0183:-7fd3" source="-7f3f8309:16686c89bf7:-7bad" target="-7f3f8309:16686c89bf7:-7acc"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="830.0" y="60.0"/><mxPoint as="targetPoint" x="830.0" y="210.0"/></mxGeometry></CommandControlLink><ExplicitLink id="-7f3f8309:16686c89bf7:-7b41" parent="-2dd55334:14dcbdd0183:-7fd3" source="-2dd55334:14dcbdd0183:-7c62" target="-7f3f8309:16686c89bf7:-7ad0"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="960.0" y="200.0"/><mxPoint as="targetPoint" x="1000.0" y="200.0"/></mxGeometry></ExplicitLink></root></mxGraphModel><mxCell as="defaultParent" id="-2dd55334:14dcbdd0183:-7fd3" parent="-2dd55334:14dcbdd0183:-7fd2"/><mxPoint as="origin" y="-12.0"/></XcosDiagram>
\ No newline at end of file diff --git a/Working_Examples/3432/CH7/EX7.35/DEPENDENCIES/fig_settings.sci b/Working_Examples/3432/CH7/EX7.35/DEPENDENCIES/fig_settings.sci new file mode 100755 index 0000000..5d5e7d4 --- /dev/null +++ b/Working_Examples/3432/CH7/EX7.35/DEPENDENCIES/fig_settings.sci @@ -0,0 +1,9 @@ +//------------------------------------------------------------------
+//figure handel settings
+f=get("current_figure"); //Current figure handle
+f.background=8; //make the figure window background white
+l=f.children(1);
+l.background=8 ;//make the text background white
+id=color('grey');
+xgrid(id);
+//------------------------------------------------------------------
diff --git a/Working_Examples/3432/CH7/EX7.35/Ex7_35.sce b/Working_Examples/3432/CH7/EX7.35/Ex7_35.sce new file mode 100755 index 0000000..8bf6544 --- /dev/null +++ b/Working_Examples/3432/CH7/EX7.35/Ex7_35.sce @@ -0,0 +1,82 @@ +//Example 7.35
+// Integral Control of a Motor Speed System
+
+xdel(winsid())//close all graphics Windows
+clear;
+clc;
+//------------------------------------------------------------------
+
+//Transfer function model
+num=1;
+s=poly(0,'s');
+den=(s+3);
+G=syslin('c',num/den);
+sys=tf2ss(G)
+
+// State space representation of augmented system
+F=[0 1; 0 -3];
+G=[0 1]'
+H=[1 0];
+J=0;
+
+//Desired poles for augmented system
+Pc=[-5 -5]
+
+// State feedback gain is
+K=ppol(F,G,Pc)
+disp(K,'K=')
+
+//Estimator
+Pe=[-10]
+L=ppol(sys.A',sys.C',Pe)
+disp(L','L=')
+
+//------------------------------------------------------------------
+//(c) Compare step reference and disturbance response.
+//step reference response switch r=1 and w=0;
+r=1;w=0;
+importXcosDiagram(".\Ex7_35_model.xcos")
+ //The diagram data structure
+xcos_simulate(scs_m,4);
+scs_m.props.context
+figure(0)
+plot(yt.time,yt.values)
+xlabel('time');
+ylabel('y');
+
+figure(1)
+plot(ut.time,ut.values)
+xlabel('time');
+ylabel('y');
+//------------------------------------------------------------------
+// Step disturbance response switch r=0 and w=1;
+w=1;r=0;
+importXcosDiagram(".\Ex7_35_model.xcos")
+ //The diagram data structure
+xcos_simulate(scs_m,4);
+scs_m.props.context
+
+scf(0)
+plot(yt.time,yt.values,'r--')
+xlabel('time');
+ylabel('y');
+title("step Response",'fontsize',3)
+exec .\fig_settings.sci; // custom script for setting figure properties
+legend("y1","y2")
+xset('font size',3);
+xstring(0.9,0.9,"$y_1$");
+xstring(0.25,0.12,"$y_2$");
+
+
+scf(1)
+plot(ut.time,ut.values,'r--')
+xlabel('time');
+ylabel('y');
+title("Control efforts",'fontsize',3)
+exec .\fig_settings.sci; // custom script for setting figure properties
+legend("u1","u2")
+xset('font size',3);
+xstring(0.25,2.5,"$u_1$");
+xstring(1,-1,"$u_2$");
+//------------------------------------------------------------------
+
diff --git a/Working_Examples/3432/CH7/EX7.35/Ex7_35_f0.pdf b/Working_Examples/3432/CH7/EX7.35/Ex7_35_f0.pdf Binary files differnew file mode 100755 index 0000000..5bdf202 --- /dev/null +++ b/Working_Examples/3432/CH7/EX7.35/Ex7_35_f0.pdf diff --git a/Working_Examples/3432/CH7/EX7.35/Ex7_35_f1.pdf b/Working_Examples/3432/CH7/EX7.35/Ex7_35_f1.pdf Binary files differnew file mode 100755 index 0000000..ef112fd --- /dev/null +++ b/Working_Examples/3432/CH7/EX7.35/Ex7_35_f1.pdf diff --git a/Working_Examples/3432/CH7/EX7.35/Ex7_35_model.xcos b/Working_Examples/3432/CH7/EX7.35/Ex7_35_model.xcos new file mode 100755 index 0000000..aec407c --- /dev/null +++ b/Working_Examples/3432/CH7/EX7.35/Ex7_35_model.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" finalIntegrationTime="5.0" title="Ex7_35_model"><!--Xcos - 1.0 - scilab-5.5.2 - 20160406 2040--><mxGraphModel as="model"><root><mxCell id="-2dd55334:14dcbdd0183:-7fd2"/><mxCell id="-2dd55334:14dcbdd0183:-7fd3" parent="-2dd55334:14dcbdd0183:-7fd2"/><BasicBlock dependsOnT="1" id="-2dd55334:14dcbdd0183:-7f98" interfaceFunctionName="CLR" ordering="1" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="csslti4" simulationFunctionType="C_OR_FORTRAN" style="CLR;flip=false;mirror=false"><ScilabString as="exprs" height="2" width="1"><data column="0" line="0" value="1"/><data column="0" line="1" value="3+s"/></ScilabString><ScilabDouble as="realParameters" height="4" width="1"><data column="0" line="0" realPart="-3.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="1.0"/><data column="0" line="3" realPart="0.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="state" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="60.0" x="640.0" y="170.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="45c1b0d9:14ddc6fc2af:-7f24" ordering="1" parent="-2dd55334:14dcbdd0183:-7f98" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="45c1b0d9:14ddc6fc2af:-7f23" ordering="1" parent="-2dd55334:14dcbdd0183:-7f98" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="60.0" y="16.0"/></ExplicitOutputPort><BasicBlock dependsOnU="1" id="-2dd55334:14dcbdd0183:-7f5c" interfaceFunctionName="GAINBLK" ordering="2" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="gainblk" simulationFunctionType="C_OR_FORTRAN" style="GAINBLK;flip=false;mirror=false"><ScilabString as="exprs" height="2" width="1"><data column="0" line="0" value="-25"/><data column="0" line="1" value="0"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="-25.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="340.0" y="170.0"/></BasicBlock><ExplicitInputPort dataType="REAL_MATRIX" id="45c1b0d9:14ddc6fc2af:-7f27" ordering="1" parent="-2dd55334:14dcbdd0183:-7f5c" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitOutputPort dataType="REAL_MATRIX" id="45c1b0d9:14ddc6fc2af:-7f26" ordering="1" parent="-2dd55334:14dcbdd0183:-7f5c" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><BasicBlock blockType="h" id="-2dd55334:14dcbdd0183:-7e6e" interfaceFunctionName="CLOCK_c" ordering="3" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList" varName=""><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="1.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1699.0"/><data column="1" line="0" realPart="-1730.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7e5e"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7e5e"/></ScilabString></Array></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.1"/><data column="0" line="1" value="0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.1"/><data column="0" line="1" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7e5c"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7e5c"/></ScilabString></Array></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="2730.3773266666667"/><data column="1" line="0" realPart="-2776.333333333333"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="7.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="5.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7e59"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7e59"/></ScilabString></Array></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="3260.0"/><data column="0" line="2" realPart="2740.8773266666667"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-44.0"/><data column="0" line="1" realPart="-3340.0"/><data column="0" line="2" realPart="-2765.333333333333"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="2739.71066"/><data column="0" line="1" realPart="1729.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-2780.333333333333"/><data column="0" line="1" realPart="-1706.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="2742.043993333333"/><data column="0" line="1" realPart="3300.71"/><data column="0" line="2" realPart="3260.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-2780.333333333333"/><data column="0" line="1" realPart="-3210.0"/><data column="0" line="2" realPart="-3210.0"/><data column="0" line="3" realPart="4.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="830.0" y="40.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="-2dd55334:14dcbdd0183:-7d27" ordering="1" parent="-2dd55334:14dcbdd0183:-7e6e" style="CommandPort;align=center;verticalAlign=bottom;spacing=10.0;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><TextBlock id="-6cad6c1c:14dd22d9551:-7f7a" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=18;flip=false;mirror=false" value="Model for Ex7_35"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="Model for Ex7_35"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="Model for Ex7_35"/></ScilabString><mxGeometry as="geometry" height="40.0" width="160.0" x="400.0" y="10.0"/></TextBlock><BasicBlock dependsOnT="1" id="45c1b0d9:14ddc6fc2af:-7f35" interfaceFunctionName="CLR" ordering="4" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="csslti4" simulationFunctionType="C_OR_FORTRAN" style="CLR;flip=false;mirror=false"><ScilabString as="exprs" height="2" width="1"><data column="0" line="0" value="1"/><data column="0" line="1" value="s"/></ScilabString><ScilabDouble as="realParameters" height="4" width="1"><data column="0" line="0" realPart="-0.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="1.0"/><data column="0" line="3" realPart="0.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="state" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="60.0" x="240.0" y="170.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="45c1b0d9:14ddc6fc2af:-7f34" ordering="1" parent="45c1b0d9:14ddc6fc2af:-7f35" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="45c1b0d9:14ddc6fc2af:-7f33" ordering="1" parent="45c1b0d9:14ddc6fc2af:-7f35" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="60.0" y="16.0"/></ExplicitOutputPort><ExplicitLink id="45c1b0d9:14ddc6fc2af:-7f29" parent="-2dd55334:14dcbdd0183:-7fd3" source="45c1b0d9:14ddc6fc2af:-7f33" target="45c1b0d9:14ddc6fc2af:-7f27"><mxGeometry as="geometry" y="60.0"><mxPoint as="sourcePoint" x="350.0" y="190.0"/><mxPoint as="targetPoint" x="420.0" y="190.0"/></mxGeometry></ExplicitLink><Summation dependsOnU="1" id="45c1b0d9:14ddc6fc2af:-7f12" interfaceFunctionName="SUMMATION" ordering="5" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="summation" simulationFunctionType="C_OR_FORTRAN" style="SUMMATION;flip=false;mirror=false" value="+"><ScilabString as="exprs" height="3" width="1"><data column="0" line="0" value="1"/><data column="0" line="1" value="[-1;1]"/><data column="0" line="2" value="0"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="1.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="60.0" width="40.0" x="160.0" y="160.0"/></Summation><ExplicitInputPort dataType="REAL_MATRIX" id="45c1b0d9:14ddc6fc2af:-7ef0" ordering="1" parent="45c1b0d9:14ddc6fc2af:-7f12" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value="-"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitInputPort dataType="REAL_MATRIX" id="45c1b0d9:14ddc6fc2af:-7eef" ordering="2" parent="45c1b0d9:14ddc6fc2af:-7f12" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value="+"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="36.0"/></ExplicitInputPort><ExplicitOutputPort dataType="REAL_MATRIX" id="45c1b0d9:14ddc6fc2af:-7eee" ordering="1" parent="45c1b0d9:14ddc6fc2af:-7f12" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="26.0"/></ExplicitOutputPort><ExplicitLink id="45c1b0d9:14ddc6fc2af:-7f0a" parent="-2dd55334:14dcbdd0183:-7fd3" source="45c1b0d9:14ddc6fc2af:-7eee" target="45c1b0d9:14ddc6fc2af:-7f34"><mxGeometry as="geometry" y="60.0"><mxPoint as="sourcePoint" x="200.0" y="190.0"/><mxPoint as="targetPoint" x="290.0" y="190.0"/></mxGeometry></ExplicitLink><Summation dependsOnU="1" id="45c1b0d9:14ddc6fc2af:-7ed1" interfaceFunctionName="SUMMATION" ordering="6" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="summation" simulationFunctionType="C_OR_FORTRAN" style="SUMMATION;flip=false;mirror=false" value="+"><ScilabString as="exprs" height="3" width="1"><data column="0" line="0" value="1"/><data column="0" line="1" value="[1;1]"/><data column="0" line="2" value="0"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="2" width="1"><data column="0" line="0" realPart="1.0"/><data column="0" line="1" realPart="1.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="60.0" width="40.0" x="550.0" y="160.0"/></Summation><ExplicitInputPort dataType="REAL_MATRIX" id="45c1b0d9:14ddc6fc2af:-7d4b" ordering="1" parent="45c1b0d9:14ddc6fc2af:-7ed1" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitInputPort dataType="REAL_MATRIX" id="45c1b0d9:14ddc6fc2af:-7d4a" ordering="2" parent="45c1b0d9:14ddc6fc2af:-7ed1" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="36.0"/></ExplicitInputPort><ExplicitOutputPort dataType="REAL_MATRIX" id="45c1b0d9:14ddc6fc2af:-7d49" ordering="1" parent="45c1b0d9:14ddc6fc2af:-7ed1" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="26.0"/></ExplicitOutputPort><mxCell connectable="0" id="45c1b0d9:14ddc6fc2af:-7ed1#identifier" parent="45c1b0d9:14ddc6fc2af:-7ed1" style="noLabel=0;opacity=0" value=" SUM" vertex="1"><mxGeometry as="geometry" relative="1" x="0.5" y="1.1"/></mxCell><ExplicitLink id="45c1b0d9:14ddc6fc2af:-7ec9" parent="-2dd55334:14dcbdd0183:-7fd3" source="45c1b0d9:14ddc6fc2af:-7d49" target="45c1b0d9:14ddc6fc2af:-7f24"><mxGeometry as="geometry" y="50.0"><mxPoint as="sourcePoint" x="590.0" y="190.0"/><mxPoint as="targetPoint" x="630.0" y="190.0"/></mxGeometry></ExplicitLink><SuperBlock id="45c1b0d9:14ddc6fc2af:-7e95" ordering="7" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionType="DEFAULT" style="SUPER_f;flip=false;mirror=true" value="Estimator"><SuperBlockDiagram as="child" background="-1" title="Estimator"><!--Xcos - 1.0 - scilab-5.5.2 - 20160406 2040--><Array as="context" scilabClass="String[]"><add value=""/></Array><mxGraphModel as="model"><root><mxCell id="45c1b0d9:14ddc6fc2af:-7e88"/><mxCell id="45c1b0d9:14ddc6fc2af:-7e89" parent="45c1b0d9:14ddc6fc2af:-7e88"/><ExplicitInBlock id="45c1b0d9:14ddc6fc2af:-7e8d" ordering="1" parent="45c1b0d9:14ddc6fc2af:-7e89" simulationFunctionType="DEFAULT" style="IN_f;flip=false;mirror=false"><ScilabString as="exprs" height="3" width="1"><data column="0" line="0" value="1"/><data column="0" line="1" value="[-1 -2]"/><data column="0" line="2" value="-1"/></ScilabString><ScilabDouble as="integerParameters" height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="20.0" width="20.0" x="20.0" y="20.0"/></ExplicitInBlock><ExplicitOutputPort dataType="UNKNOW_TYPE" id="45c1b0d9:14ddc6fc2af:-7e5d" ordering="1" parent="45c1b0d9:14ddc6fc2af:-7e8d" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="20.0" y="6.0"/></ExplicitOutputPort><mxCell connectable="0" id="45c1b0d9:14ddc6fc2af:-7e8d#identifier" parent="45c1b0d9:14ddc6fc2af:-7e8d" style="noLabel=0;opacity=0;fontSize=12" value=" u" vertex="1"><mxGeometry as="geometry" relative="1" x="0.5" y="1.1"/></mxCell><ExplicitOutBlock id="45c1b0d9:14ddc6fc2af:-7e8b" ordering="2" parent="45c1b0d9:14ddc6fc2af:-7e89" simulationFunctionType="DEFAULT" style="OUT_f;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble as="integerParameters" height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="20.0" width="20.0" x="410.0" y="80.0"/></ExplicitOutBlock><ExplicitInputPort dataType="UNKNOW_TYPE" id="45c1b0d9:14ddc6fc2af:-7e84" ordering="1" parent="45c1b0d9:14ddc6fc2af:-7e8b" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ExplicitInputPort><mxCell connectable="0" id="45c1b0d9:14ddc6fc2af:-7e8b#identifier" parent="45c1b0d9:14ddc6fc2af:-7e8b" style="noLabel=0;opacity=0;fontSize=12" value=" xhat" vertex="1"><mxGeometry as="geometry" relative="1" x="0.5" y="1.1"/></mxCell><ExplicitInBlock id="45c1b0d9:14ddc6fc2af:-7e63" ordering="3" parent="45c1b0d9:14ddc6fc2af:-7e89" simulationFunctionType="DEFAULT" style="IN_f;flip=false;mirror=false" value="2"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="2"/></ScilabString><ScilabDouble as="integerParameters" height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="20.0" width="20.0" x="20.0" y="80.0"/></ExplicitInBlock><ExplicitOutputPort dataType="UNKNOW_TYPE" id="45c1b0d9:14ddc6fc2af:-7e62" ordering="1" parent="45c1b0d9:14ddc6fc2af:-7e63" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="20.0" y="6.0"/></ExplicitOutputPort><mxCell connectable="0" id="45c1b0d9:14ddc6fc2af:-7e63#identifier" parent="45c1b0d9:14ddc6fc2af:-7e63" style="noLabel=0;opacity=0;fontSize=12" value=" y" vertex="1"><mxGeometry as="geometry" relative="1" x="0.5" y="1.1"/></mxCell><BasicBlock dependsOnT="1" id="45c1b0d9:14ddc6fc2af:-7e52" interfaceFunctionName="INTEGRAL_f" ordering="4" parent="45c1b0d9:14ddc6fc2af:-7e89" simulationFunctionName="integr" simulationFunctionType="DEFAULT" style="INTEGRAL_f;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="0"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="state" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="300.0" y="70.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="45c1b0d9:14ddc6fc2af:-7e51" ordering="1" parent="45c1b0d9:14ddc6fc2af:-7e52" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="45c1b0d9:14ddc6fc2af:-7e50" ordering="1" parent="45c1b0d9:14ddc6fc2af:-7e52" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><Summation dependsOnU="1" id="45c1b0d9:14ddc6fc2af:-7e3e" interfaceFunctionName="SUMMATION" ordering="5" parent="45c1b0d9:14ddc6fc2af:-7e89" simulationFunctionName="summation" simulationFunctionType="C_OR_FORTRAN" style="SUMMATION;flip=false;mirror=false" value="+"><ScilabString as="exprs" height="3" width="1"><data column="0" line="0" value="1"/><data column="0" line="1" value="[1;1;-1]"/><data column="0" line="2" value="0"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="3" width="1"><data column="0" line="0" realPart="1.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="-1.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="60.0" width="40.0" x="180.0" y="60.0"/></Summation><ExplicitInputPort dataType="REAL_MATRIX" id="45c1b0d9:14ddc6fc2af:-7e11" ordering="1" parent="45c1b0d9:14ddc6fc2af:-7e3e" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value="+"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitInputPort dataType="REAL_MATRIX" id="45c1b0d9:14ddc6fc2af:-7e10" ordering="2" parent="45c1b0d9:14ddc6fc2af:-7e3e" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value="+"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="26.0"/></ExplicitInputPort><ExplicitInputPort dataType="REAL_MATRIX" id="45c1b0d9:14ddc6fc2af:-7e0f" ordering="3" parent="45c1b0d9:14ddc6fc2af:-7e3e" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value="-"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="36.0"/></ExplicitInputPort><ExplicitOutputPort dataType="REAL_MATRIX" id="45c1b0d9:14ddc6fc2af:-7e0e" ordering="1" parent="45c1b0d9:14ddc6fc2af:-7e3e" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="26.0"/></ExplicitOutputPort><ExplicitLink id="45c1b0d9:14ddc6fc2af:-7e36" parent="45c1b0d9:14ddc6fc2af:-7e89" source="45c1b0d9:14ddc6fc2af:-7e0e" target="45c1b0d9:14ddc6fc2af:-7e51"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="220.0" y="90.0"/><mxPoint as="targetPoint" x="300.0" y="90.0"/></mxGeometry></ExplicitLink><BasicBlock dependsOnU="1" id="45c1b0d9:14ddc6fc2af:-7e2e" interfaceFunctionName="GAINBLK_f" ordering="6" parent="45c1b0d9:14ddc6fc2af:-7e89" simulationFunctionName="gain" simulationFunctionType="DEFAULT" style="GAINBLK_f;mirror=true;flip=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="10"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="10.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="200.0" y="150.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="45c1b0d9:14ddc6fc2af:-7e27" ordering="1" parent="45c1b0d9:14ddc6fc2af:-7e2e" style="ExplicitInputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=180;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitInputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="45c1b0d9:14ddc6fc2af:-7e26" ordering="1" parent="45c1b0d9:14ddc6fc2af:-7e2e" style="ExplicitOutputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=180;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitOutputPort><SplitBlock id="45c1b0d9:14ddc6fc2af:-7e21" ordering="7" parent="45c1b0d9:14ddc6fc2af:-7e89" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="367.0" y="87.0"/></SplitBlock><ExplicitInputPort dataType="UNKNOW_TYPE" id="45c1b0d9:14ddc6fc2af:-7e20" ordering="1" parent="45c1b0d9:14ddc6fc2af:-7e21" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ExplicitInputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="45c1b0d9:14ddc6fc2af:-7e1f" ordering="1" parent="45c1b0d9:14ddc6fc2af:-7e21" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="45c1b0d9:14ddc6fc2af:-7e1e" ordering="2" parent="45c1b0d9:14ddc6fc2af:-7e21" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitLink id="45c1b0d9:14ddc6fc2af:-7e1d" parent="45c1b0d9:14ddc6fc2af:-7e89" source="45c1b0d9:14ddc6fc2af:-7e50" target="45c1b0d9:14ddc6fc2af:-7e20"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ExplicitLink><ExplicitLink id="45c1b0d9:14ddc6fc2af:-7e1c" parent="45c1b0d9:14ddc6fc2af:-7e89" source="45c1b0d9:14ddc6fc2af:-7e1f" target="45c1b0d9:14ddc6fc2af:-7e84"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ExplicitLink><ExplicitLink id="45c1b0d9:14ddc6fc2af:-7e22" parent="45c1b0d9:14ddc6fc2af:-7e89" source="45c1b0d9:14ddc6fc2af:-7e1e" target="45c1b0d9:14ddc6fc2af:-7e27"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="240.0" y="170.0"/><mxPoint as="targetPoint" x="370.0" y="90.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="370.0" y="170.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="45c1b0d9:14ddc6fc2af:-7e0c" parent="45c1b0d9:14ddc6fc2af:-7e89" source="45c1b0d9:14ddc6fc2af:-7e26" target="45c1b0d9:14ddc6fc2af:-7e0f"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="200.0" y="170.0"/><mxPoint as="targetPoint" x="180.0" y="100.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="150.0" y="170.0"/><mxPoint x="150.0" y="100.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="45c1b0d9:14ddc6fc2af:-7e05" parent="45c1b0d9:14ddc6fc2af:-7e89" source="45c1b0d9:14ddc6fc2af:-7e5d" target="45c1b0d9:14ddc6fc2af:-7e11"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="50.0" y="30.0"/><mxPoint as="targetPoint" x="180.0" y="80.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="150.0" y="30.0"/><mxPoint x="150.0" y="80.0"/></Array></mxGeometry></ExplicitLink><BasicBlock dependsOnU="1" id="45c1b0d9:14ddc6fc2af:-7e00" interfaceFunctionName="GAINBLK_f" ordering="8" parent="45c1b0d9:14ddc6fc2af:-7e89" simulationFunctionName="gain" simulationFunctionType="DEFAULT" style="GAINBLK_f;mirror=false;flip=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="7"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="7.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="80.0" y="70.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="45c1b0d9:14ddc6fc2af:-7df2" ordering="1" parent="45c1b0d9:14ddc6fc2af:-7e00" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="45c1b0d9:14ddc6fc2af:-7df1" ordering="1" parent="45c1b0d9:14ddc6fc2af:-7e00" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ExplicitLink id="45c1b0d9:14ddc6fc2af:-7df7" parent="45c1b0d9:14ddc6fc2af:-7e89" source="45c1b0d9:14ddc6fc2af:-7df1" target="45c1b0d9:14ddc6fc2af:-7e10"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="120.0" y="90.0"/><mxPoint as="targetPoint" x="180.0" y="90.0"/></mxGeometry></ExplicitLink><ExplicitLink id="45c1b0d9:14ddc6fc2af:-7df4" parent="45c1b0d9:14ddc6fc2af:-7e89" source="45c1b0d9:14ddc6fc2af:-7e62" target="45c1b0d9:14ddc6fc2af:-7df2"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="40.0" y="90.0"/><mxPoint as="targetPoint" x="80.0" y="90.0"/></mxGeometry></ExplicitLink></root></mxGraphModel><mxCell as="defaultParent" id="45c1b0d9:14ddc6fc2af:-7e89" parent="45c1b0d9:14ddc6fc2af:-7e88"/></SuperBlockDiagram><Array as="realParameters" scilabClass="ScilabMList" varName=""><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Estimator"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="1.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-20.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="3" width="1"><data column="0" line="0" value="1"/><data column="0" line="1" value="[-1 -2]"/><data column="0" line="2" value="-1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="14.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"IN_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=" u"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="IN_f;flip=false;mirror=false"/></ScilabString></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="input"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-2.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=" u"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="45c1b0d9:14ddc6fc2af:-7e8d"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="IN_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="45c1b0d9:14ddc6fc2af:-7e8d"/></ScilabString></Array></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="390.0"/><data column="1" line="0" realPart="-80.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="11.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"OUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=" xhat"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="OUT_f;flip=false;mirror=false"/></ScilabString></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-2.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=" xhat"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="45c1b0d9:14ddc6fc2af:-7e8b"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="OUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="45c1b0d9:14ddc6fc2af:-7e8b"/></ScilabString></Array></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-80.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="2"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="16.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"IN_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=" y"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="IN_f;flip=false;mirror=false"/></ScilabString></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="input"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-2.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=" y"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="45c1b0d9:14ddc6fc2af:-7e63"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="IN_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="45c1b0d9:14ddc6fc2af:-7e63"/></ScilabString></Array></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="260.0"/><data column="1" line="0" realPart="-70.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="0"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="9.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="10.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"INTEGRAL_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="INTEGRAL_f;flip=false;mirror=false"/></ScilabString></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="integr"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="true"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="45c1b0d9:14ddc6fc2af:-7e52"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="INTEGRAL_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="45c1b0d9:14ddc6fc2af:-7e52"/></ScilabString></Array></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="140.0"/><data column="1" line="0" realPart="-60.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="60.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="3" width="1"><data column="0" line="0" value="1"/><data column="0" line="1" value="[1;1;-1]"/><data column="0" line="2" value="0"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="14.0"/><data column="0" line="1" realPart="15.0"/><data column="0" line="2" realPart="13.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="9.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"SUMMATION",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="3" width="1"><data column="0" line="0" value="E"/><data column="0" line="1" value="E"/><data column="0" line="2" value="E"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabString height="3" width="1"><data column="0" line="0" value="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false"/><data column="0" line="1" value="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false"/><data column="0" line="2" value="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false"/></ScilabString><ScilabString height="3" width="1"><data column="0" line="0" value="+"/><data column="0" line="1" value="+"/><data column="0" line="2" value="-"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="SUMMATION;flip=false;mirror=false"/></ScilabString></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="summation"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/><data column="0" line="2" realPart="-1.0"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-2.0"/><data column="0" line="1" realPart="-2.0"/><data column="0" line="2" realPart="-2.0"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="1.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-2.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="1.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="-1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="true"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="45c1b0d9:14ddc6fc2af:-7e3e"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="SUMMATION"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="45c1b0d9:14ddc6fc2af:-7e3e"/></ScilabString></Array></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="160.0"/><data column="1" line="0" realPart="-150.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="10"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="12.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="13.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"GAINBLK_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitInputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=180;flip=false;mirror=false"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitOutputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=180;flip=false;mirror=false"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="GAINBLK_f;mirror=true;flip=false"/></ScilabString></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="gain"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="10.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="true"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="45c1b0d9:14ddc6fc2af:-7e2e"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="GAINBLK_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="45c1b0d9:14ddc6fc2af:-7e2e"/></ScilabString></Array></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="360.0"/><data column="1" line="0" realPart="-87.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="7.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="10.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="11.0"/><data column="0" line="1" realPart="12.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"SPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="E"/><data column="0" line="1" value="E"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false"/><data column="0" line="1" value="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value=""/><data column="0" line="1" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="SPLIT_f;flip=false;mirror=false"/></ScilabString></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="lsplit"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-2.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-2.0"/><data column="0" line="1" realPart="-2.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="45c1b0d9:14ddc6fc2af:-7e21"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="SPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="45c1b0d9:14ddc6fc2af:-7e21"/></ScilabString></Array></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="-70.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="7"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="16.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="15.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"GAINBLK_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="GAINBLK_f;mirror=false;flip=false"/></ScilabString></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="gain"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="7.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="true"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="45c1b0d9:14ddc6fc2af:-7e00"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="GAINBLK_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="45c1b0d9:14ddc6fc2af:-7e00"/></ScilabString></Array></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="224.0"/><data column="0" line="1" realPart="296.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-30.0"/><data column="0" line="1" realPart="-50.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="344.0"/><data column="0" line="1" realPart="363.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-50.0"/><data column="0" line="1" realPart="-80.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="378.0"/><data column="0" line="1" realPart="406.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-80.0"/><data column="0" line="1" realPart="-70.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="378.0"/><data column="0" line="1" realPart="370.0"/><data column="0" line="2" realPart="244.0"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-80.0"/><data column="0" line="1" realPart="-170.0"/><data column="0" line="2" realPart="-130.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="6.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="196.0"/><data column="0" line="1" realPart="150.0"/><data column="0" line="2" realPart="150.0"/><data column="0" line="3" realPart="176.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-130.0"/><data column="0" line="1" realPart="-170.0"/><data column="0" line="2" realPart="-100.0"/><data column="0" line="3" realPart="-40.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="6.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="3.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="44.0"/><data column="0" line="1" realPart="150.0"/><data column="0" line="2" realPart="150.0"/><data column="0" line="3" realPart="176.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-10.0"/><data column="0" line="1" realPart="-30.0"/><data column="0" line="2" realPart="-80.0"/><data column="0" line="3" realPart="-20.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="124.0"/><data column="0" line="1" realPart="176.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-50.0"/><data column="0" line="1" realPart="-30.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="44.0"/><data column="0" line="1" realPart="76.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-70.0"/><data column="0" line="1" realPart="-50.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="70.0" width="110.0" x="470.0" y="310.0"/></SuperBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="45c1b0d9:14ddc6fc2af:-7e94" ordering="1" parent="45c1b0d9:14ddc6fc2af:-7e95" style="ExplicitInputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=180;flip=false;mirror=false" value=" u"><mxGeometry as="geometry" height="8.0" width="8.0" x="110.0" y="16.0"/></ExplicitInputPort><ExplicitInputPort dataType="UNKNOW_TYPE" id="45c1b0d9:14ddc6fc2af:-7e61" ordering="2" parent="45c1b0d9:14ddc6fc2af:-7e95" style="ExplicitInputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=180;flip=false;mirror=false" value=" y"><mxGeometry as="geometry" height="8.0" width="8.0" x="110.0" y="46.0"/></ExplicitInputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="45c1b0d9:14ddc6fc2af:-7e93" ordering="1" parent="45c1b0d9:14ddc6fc2af:-7e95" style="ExplicitOutputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=180;flip=false;mirror=false" value=" xhat"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="36.0"/></ExplicitOutputPort><mxCell connectable="0" id="45c1b0d9:14ddc6fc2af:-7e95#identifier" parent="45c1b0d9:14ddc6fc2af:-7e95" style="noLabel=0;opacity=0;fontStyle=1;fontSize=14" value="Estimator" vertex="1"><mxGeometry as="geometry" relative="1" x="0.5" y="1.1"/></mxCell><BasicBlock blockType="d" id="45c1b0d9:14ddc6fc2af:-7d42" interfaceFunctionName="CONST" ordering="8" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="cstblk4" simulationFunctionType="C_OR_FORTRAN" style="CONST;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="w"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="450.0" y="110.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="3b275bb5:14ddca84679:-7d9e" ordering="1" parent="45c1b0d9:14ddc6fc2af:-7d42" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ExplicitLink id="45c1b0d9:14ddc6fc2af:-7d3e" parent="-2dd55334:14dcbdd0183:-7fd3" source="3b275bb5:14ddca84679:-7d9e" target="45c1b0d9:14ddc6fc2af:-7d4b"><mxGeometry as="geometry" x="120.0" y="60.0"><mxPoint as="sourcePoint" x="490.0" y="130.0"/><mxPoint as="targetPoint" x="550.0" y="180.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="520.0" y="130.0"/><mxPoint x="520.0" y="180.0"/></Array></mxGeometry></ExplicitLink><BasicBlock dependsOnU="1" id="45c1b0d9:14ddc6fc2af:-7c92" interfaceFunctionName="GAINBLK" ordering="9" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="gainblk" simulationFunctionType="C_OR_FORTRAN" style="GAINBLK;flip=false;mirror=true"><ScilabString as="exprs" height="2" width="1"><data column="0" line="0" value="-7"/><data column="0" line="1" value="0"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="-7.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="380.0" y="330.0"/></BasicBlock><ExplicitInputPort dataType="REAL_MATRIX" id="45c1b0d9:14ddc6fc2af:-7c8b" ordering="1" parent="45c1b0d9:14ddc6fc2af:-7c92" style="ExplicitInputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=180;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitInputPort><ExplicitOutputPort dataType="REAL_MATRIX" id="45c1b0d9:14ddc6fc2af:-7c8a" ordering="1" parent="45c1b0d9:14ddc6fc2af:-7c92" style="ExplicitOutputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=180;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitOutputPort><Summation dependsOnU="1" id="45c1b0d9:14ddc6fc2af:-7c84" interfaceFunctionName="SUMMATION" ordering="10" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="summation" simulationFunctionType="C_OR_FORTRAN" style="SUMMATION;flip=false;mirror=false" value="+"><ScilabString as="exprs" height="3" width="1"><data column="0" line="0" value="1"/><data column="0" line="1" value="[1;1]"/><data column="0" line="2" value="0"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="2" width="1"><data column="0" line="0" realPart="1.0"/><data column="0" line="1" realPart="1.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="60.0" width="40.0" x="440.0" y="170.0"/></Summation><ExplicitInputPort dataType="REAL_MATRIX" id="45c1b0d9:14ddc6fc2af:-7c83" ordering="1" parent="45c1b0d9:14ddc6fc2af:-7c84" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitInputPort dataType="REAL_MATRIX" id="45c1b0d9:14ddc6fc2af:-7c82" ordering="2" parent="45c1b0d9:14ddc6fc2af:-7c84" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="36.0"/></ExplicitInputPort><ExplicitOutputPort dataType="REAL_MATRIX" id="45c1b0d9:14ddc6fc2af:-7c81" ordering="1" parent="45c1b0d9:14ddc6fc2af:-7c84" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="26.0"/></ExplicitOutputPort><mxCell connectable="0" id="45c1b0d9:14ddc6fc2af:-7c84#identifier" parent="45c1b0d9:14ddc6fc2af:-7c84" style="noLabel=0;opacity=0" value=" SUM" vertex="1"><mxGeometry as="geometry" relative="1" x="0.5" y="1.1"/></mxCell><ExplicitLink id="45c1b0d9:14ddc6fc2af:-7c7b" parent="-2dd55334:14dcbdd0183:-7fd3" source="45c1b0d9:14ddc6fc2af:-7f26" target="45c1b0d9:14ddc6fc2af:-7c83"><mxGeometry as="geometry" x="70.0" y="60.0"><mxPoint as="sourcePoint" x="380.0" y="190.0"/><mxPoint as="targetPoint" x="430.0" y="190.0"/></mxGeometry></ExplicitLink><ExplicitLink id="45c1b0d9:14ddc6fc2af:-7c79" parent="-2dd55334:14dcbdd0183:-7fd3" source="45c1b0d9:14ddc6fc2af:-7c8a" target="45c1b0d9:14ddc6fc2af:-7c82"><mxGeometry as="geometry" x="70.0" y="60.0"><mxPoint as="sourcePoint" x="440.0" y="210.0"/><mxPoint as="targetPoint" x="350.0" y="300.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="310.0" y="350.0"/><mxPoint x="310.0" y="240.0"/><mxPoint x="380.0" y="240.0"/><mxPoint x="380.0" y="210.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="45c1b0d9:14ddc6fc2af:-7b7b" parent="-2dd55334:14dcbdd0183:-7fd3" source="45c1b0d9:14ddc6fc2af:-7e93" target="45c1b0d9:14ddc6fc2af:-7c8b"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="420.0" y="350.0"/><mxPoint as="targetPoint" x="470.0" y="350.0"/></mxGeometry></ExplicitLink><SplitBlock id="45c1b0d9:14ddc6fc2af:-7b78" ordering="11" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="517.0" y="197.0"/></SplitBlock><ExplicitInputPort dataType="UNKNOW_TYPE" id="45c1b0d9:14ddc6fc2af:-7b77" ordering="1" parent="45c1b0d9:14ddc6fc2af:-7b78" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ExplicitInputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="45c1b0d9:14ddc6fc2af:-7b76" ordering="1" parent="45c1b0d9:14ddc6fc2af:-7b78" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="45c1b0d9:14ddc6fc2af:-7b75" ordering="2" parent="45c1b0d9:14ddc6fc2af:-7b78" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitLink id="45c1b0d9:14ddc6fc2af:-7b73" parent="-2dd55334:14dcbdd0183:-7fd3" source="45c1b0d9:14ddc6fc2af:-7b76" target="45c1b0d9:14ddc6fc2af:-7d4a"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ExplicitLink><SplitBlock id="45c1b0d9:14ddc6fc2af:-7b70" ordering="12" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="767.0" y="357.0"/></SplitBlock><ExplicitInputPort dataType="UNKNOW_TYPE" id="45c1b0d9:14ddc6fc2af:-7b6f" ordering="1" parent="45c1b0d9:14ddc6fc2af:-7b70" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ExplicitInputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="45c1b0d9:14ddc6fc2af:-7b6e" ordering="1" parent="45c1b0d9:14ddc6fc2af:-7b70" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="45c1b0d9:14ddc6fc2af:-7b6d" ordering="2" parent="45c1b0d9:14ddc6fc2af:-7b70" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitLink id="45c1b0d9:14ddc6fc2af:-7b6b" parent="-2dd55334:14dcbdd0183:-7fd3" source="45c1b0d9:14ddc6fc2af:-7b6e" target="45c1b0d9:14ddc6fc2af:-7eef"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="770.0" y="400.0"/><mxPoint x="130.0" y="400.0"/><mxPoint x="130.0" y="200.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="45c1b0d9:14ddc6fc2af:-7b71" parent="-2dd55334:14dcbdd0183:-7fd3" source="45c1b0d9:14ddc6fc2af:-7b6d" target="45c1b0d9:14ddc6fc2af:-7e61"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="580.0" y="360.0"/><mxPoint as="targetPoint" x="770.0" y="360.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="770.0" y="360.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="3b275bb5:14ddca84679:-7ec6" parent="-2dd55334:14dcbdd0183:-7fd3" source="45c1b0d9:14ddc6fc2af:-7c81" target="45c1b0d9:14ddc6fc2af:-7b77"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="500.0" y="200.0"/></Array></mxGeometry></ExplicitLink><BasicBlock blockType="d" id="3b275bb5:14ddca84679:-75a6" interfaceFunctionName="CONST" ordering="13" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="cstblk4" simulationFunctionType="C_OR_FORTRAN" style="CONST;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="r"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="50.0" y="140.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="3b275bb5:14ddca84679:-75a0" ordering="1" parent="3b275bb5:14ddca84679:-75a6" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ExplicitLink id="3b275bb5:14ddca84679:-75a2" parent="-2dd55334:14dcbdd0183:-7fd3" source="3b275bb5:14ddca84679:-75a0" target="45c1b0d9:14ddc6fc2af:-7ef0"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="90.0" y="160.0"/><mxPoint as="targetPoint" x="160.0" y="180.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="130.0" y="160.0"/><mxPoint x="130.0" y="180.0"/><mxPoint x="150.0" y="180.0"/></Array></mxGeometry></ExplicitLink><BasicBlock dependsOnU="1" id="-7f3f8309:16686c89bf7:-7959" interfaceFunctionName="CSCOPE" ordering="14" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="cscope" simulationFunctionType="C_OR_FORTRAN" style="CSCOPE"><ScilabString as="exprs" height="10" width="1"><data column="0" line="0" value="1 3 5 7 9 11 13 15"/><data column="0" line="1" value="-1"/><data column="0" line="2" value="[]"/><data column="0" line="3" value="[600;400]"/><data column="0" line="4" value="-3"/><data column="0" line="5" value="5"/><data column="0" line="6" value="5"/><data column="0" line="7" value="20"/><data column="0" line="8" value="0"/><data column="0" line="9" value=""/></ScilabString><ScilabDouble as="realParameters" height="4" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="-3.0"/><data column="0" line="2" realPart="5.0"/><data column="0" line="3" realPart="5.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="15" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="1.0"/><data column="0" line="4" realPart="3.0"/><data column="0" line="5" realPart="5.0"/><data column="0" line="6" realPart="7.0"/><data column="0" line="7" realPart="9.0"/><data column="0" line="8" realPart="11.0"/><data column="0" line="9" realPart="13.0"/><data column="0" line="10" realPart="15.0"/><data column="0" line="11" realPart="-1.0"/><data column="0" line="12" realPart="-1.0"/><data column="0" line="13" realPart="600.0"/><data column="0" line="14" realPart="400.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="920.0" y="250.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="-7f3f8309:16686c89bf7:-789d" ordering="1" parent="-7f3f8309:16686c89bf7:-7959" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ControlPort dataType="UNKNOW_TYPE" id="-7f3f8309:16686c89bf7:-789c" ordering="1" parent="-7f3f8309:16686c89bf7:-7959" style="ControlPort;align=center;verticalAlign=top;spacing=10.0;rotation=90"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><BasicBlock dependsOnU="1" id="-7f3f8309:16686c89bf7:-7953" interfaceFunctionName="CSCOPE" ordering="15" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="cscope" simulationFunctionType="C_OR_FORTRAN" style="CSCOPE"><ScilabString as="exprs" height="10" width="1"><data column="0" line="0" value="1 3 5 7 9 11 13 15"/><data column="0" line="1" value="-1"/><data column="0" line="2" value="[]"/><data column="0" line="3" value="[600;400]"/><data column="0" line="4" value="-1"/><data column="0" line="5" value="1"/><data column="0" line="6" value="5"/><data column="0" line="7" value="20"/><data column="0" line="8" value="0"/><data column="0" line="9" value=""/></ScilabString><ScilabDouble as="realParameters" height="4" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="-1.0"/><data column="0" line="2" realPart="1.0"/><data column="0" line="3" realPart="5.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="15" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="1.0"/><data column="0" line="4" realPart="3.0"/><data column="0" line="5" realPart="5.0"/><data column="0" line="6" realPart="7.0"/><data column="0" line="7" realPart="9.0"/><data column="0" line="8" realPart="11.0"/><data column="0" line="9" realPart="13.0"/><data column="0" line="10" realPart="15.0"/><data column="0" line="11" realPart="-1.0"/><data column="0" line="12" realPart="-1.0"/><data column="0" line="13" realPart="600.0"/><data column="0" line="14" realPart="400.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="830.0" y="170.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="-7f3f8309:16686c89bf7:-785e" ordering="1" parent="-7f3f8309:16686c89bf7:-7953" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ControlPort dataType="UNKNOW_TYPE" id="-7f3f8309:16686c89bf7:-785d" ordering="1" parent="-7f3f8309:16686c89bf7:-7953" style="ControlPort;align=center;verticalAlign=top;spacing=10.0;rotation=90"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><SplitBlock id="-7f3f8309:16686c89bf7:-7949" ordering="16" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionType="DEFAULT"><mxGeometry as="geometry" height="7.0" width="7.0" x="607.0" y="267.0"/></SplitBlock><ExplicitInputPort dataType="UNKNOW_TYPE" id="-7f3f8309:16686c89bf7:-7948" ordering="1" parent="-7f3f8309:16686c89bf7:-7949" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ExplicitInputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="-7f3f8309:16686c89bf7:-7947" ordering="1" parent="-7f3f8309:16686c89bf7:-7949" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="-7f3f8309:16686c89bf7:-7946" ordering="2" parent="-7f3f8309:16686c89bf7:-7949" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitLink id="-7f3f8309:16686c89bf7:-7945" parent="-2dd55334:14dcbdd0183:-7fd3" source="45c1b0d9:14ddc6fc2af:-7b75" target="-7f3f8309:16686c89bf7:-7948"><mxGeometry as="geometry"><Array as="points" scilabClass=""><mxPoint x="520.0" y="270.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="-7f3f8309:16686c89bf7:-794a" parent="-2dd55334:14dcbdd0183:-7fd3" source="-7f3f8309:16686c89bf7:-7946" target="-7f3f8309:16686c89bf7:-789d"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="560.0" y="240.0"/><mxPoint as="targetPoint" x="930.0" y="270.0"/></mxGeometry></ExplicitLink><ExplicitLink id="-7f3f8309:16686c89bf7:-793f" parent="-2dd55334:14dcbdd0183:-7fd3" source="-7f3f8309:16686c89bf7:-7947" target="45c1b0d9:14ddc6fc2af:-7e94"><mxGeometry as="geometry"><Array as="points" scilabClass=""><mxPoint x="610.0" y="270.0"/><mxPoint x="610.0" y="330.0"/></Array></mxGeometry></ExplicitLink><SplitBlock id="-7f3f8309:16686c89bf7:-7936" ordering="17" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionType="DEFAULT"><mxGeometry as="geometry" height="7.0" width="7.0" x="757.0" y="187.0"/></SplitBlock><ExplicitInputPort dataType="UNKNOW_TYPE" id="-7f3f8309:16686c89bf7:-7935" ordering="1" parent="-7f3f8309:16686c89bf7:-7936" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ExplicitInputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="-7f3f8309:16686c89bf7:-7934" ordering="1" parent="-7f3f8309:16686c89bf7:-7936" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="-7f3f8309:16686c89bf7:-7933" ordering="2" parent="-7f3f8309:16686c89bf7:-7936" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitLink id="-7f3f8309:16686c89bf7:-7932" parent="-2dd55334:14dcbdd0183:-7fd3" source="45c1b0d9:14ddc6fc2af:-7f23" target="-7f3f8309:16686c89bf7:-7935"><mxGeometry as="geometry"><Array as="points" scilabClass=""><mxPoint x="710.0" y="190.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="-7f3f8309:16686c89bf7:-7931" parent="-2dd55334:14dcbdd0183:-7fd3" source="-7f3f8309:16686c89bf7:-7934" target="45c1b0d9:14ddc6fc2af:-7b6f"><mxGeometry as="geometry"><Array as="points" scilabClass=""><mxPoint x="770.0" y="190.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="-7f3f8309:16686c89bf7:-7937" parent="-2dd55334:14dcbdd0183:-7fd3" source="-7f3f8309:16686c89bf7:-7933" target="-7f3f8309:16686c89bf7:-785e"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="830.0" y="190.0"/><mxPoint as="targetPoint" x="760.0" y="190.0"/></mxGeometry></ExplicitLink><CommandControlLink id="-7f3f8309:16686c89bf7:-792e" parent="-2dd55334:14dcbdd0183:-7fd3" source="-2dd55334:14dcbdd0183:-7d27" target="-7f3f8309:16686c89bf7:-785d"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="850.0" y="80.0"/><mxPoint as="targetPoint" x="850.0" y="170.0"/></mxGeometry></CommandControlLink><BasicBlock blockType="h" id="-7f3f8309:16686c89bf7:-792b" interfaceFunctionName="CLOCK_c" ordering="18" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList" varName=""><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="1.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1699.0"/><data column="1" line="0" realPart="-1730.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7e5e"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7e5e"/></ScilabString></Array></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.1"/><data column="0" line="1" value="0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.1"/><data column="0" line="1" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7e5c"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7e5c"/></ScilabString></Array></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="2730.3773266666667"/><data column="1" line="0" realPart="-2776.333333333333"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="7.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="5.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7e59"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7e59"/></ScilabString></Array></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="3260.0"/><data column="0" line="2" realPart="2740.8773266666667"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-44.0"/><data column="0" line="1" realPart="-3340.0"/><data column="0" line="2" realPart="-2765.333333333333"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="2739.71066"/><data column="0" line="1" realPart="1729.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-2780.333333333333"/><data column="0" line="1" realPart="-1706.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="2742.043993333333"/><data column="0" line="1" realPart="3300.71"/><data column="0" line="2" realPart="3260.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-2780.333333333333"/><data column="0" line="1" realPart="-3210.0"/><data column="0" line="2" realPart="-3210.0"/><data column="0" line="3" realPart="4.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="920.0" y="150.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="-7f3f8309:16686c89bf7:-792a" ordering="1" parent="-7f3f8309:16686c89bf7:-792b" style="CommandPort;align=center;verticalAlign=bottom;spacing=10.0;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><CommandControlLink id="-7f3f8309:16686c89bf7:-7927" parent="-2dd55334:14dcbdd0183:-7fd3" source="-7f3f8309:16686c89bf7:-792a" target="-7f3f8309:16686c89bf7:-789c"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="940.0" y="190.0"/><mxPoint as="targetPoint" x="940.0" y="260.0"/></mxGeometry></CommandControlLink></root></mxGraphModel><mxCell as="defaultParent" id="-2dd55334:14dcbdd0183:-7fd3" parent="-2dd55334:14dcbdd0183:-7fd2"/></XcosDiagram>
\ No newline at end of file diff --git a/Working_Examples/3432/CH7/EX7.7/Ex7_7.sce b/Working_Examples/3432/CH7/EX7.7/Ex7_7.sce new file mode 100755 index 0000000..71aeae4 --- /dev/null +++ b/Working_Examples/3432/CH7/EX7.7/Ex7_7.sce @@ -0,0 +1,29 @@ +//Example 7.7
+//Analog computer Implementation.
+
+xdel(winsid())//close all graphics Windows
+clear;
+clc;
+//------------------------------------------------------------------
+// State space model of the given system
+F=[-6 -11 -6; 1 0 0; 0 1 0];
+G=[6; 0; 0];
+H=[0 0 1];
+J=0;
+sys_ss=syslin('c',F,G,H,J)
+disp(sys_ss)
+//------------------------------------------------------------------
+//Transfer function form
+[d,Ns,Ds]=ss2tf(sys_ss)
+Ns=clean(Ns);
+G=syslin('c',Ns/Ds);
+disp(G)
+//------------------------------------------------------------------
+// convert numerator - denominator to pole - zero form
+//gain (K) pole (P) and zeros (Z) of the system
+temp=polfact(Ns);
+Z=roots(Ns); //locations of zeros
+P=roots(Ds); //locations of poles
+K=temp(1); //first entry is always gain
+disp( K,"Gain", P, "Poles",Z,"Zeros",)
+//------------------------------------------------------------------
diff --git a/Working_Examples/3432/CH7/EX7.8/Ex7_8.sce b/Working_Examples/3432/CH7/EX7.8/Ex7_8.sce new file mode 100755 index 0000000..32d3835 --- /dev/null +++ b/Working_Examples/3432/CH7/EX7.8/Ex7_8.sce @@ -0,0 +1,21 @@ +//Example 7.8 +//Time scaling an oscillator. + +xdel(winsid())//close all graphics Windows +clear; +clc; +//------------------------------------------------------------------ +// State space model of an oscillator +wn=15000 // rad/sec +F=[0 1;wn^2 0]; +G=[0;10^6]; +disp(G,"G",F,"F","Given system"); + +//------------------------------------------------------------------ +// State space model of the time-scaled system for +// a millisecond scale w0=1e3; +w0=1e3; //rad/sec +F1=F/w0; +G1=G/w0; +disp(G1,"G1",F1,"F1","Time scaled system in mm"); +//------------------------------------------------------------------ diff --git a/Working_Examples/3432/CH7/EX7.9/Ex7_9.sce b/Working_Examples/3432/CH7/EX7.9/Ex7_9.sce new file mode 100755 index 0000000..28a0488 --- /dev/null +++ b/Working_Examples/3432/CH7/EX7.9/Ex7_9.sce @@ -0,0 +1,40 @@ +//Example 7.9
+//State Equations in Modal Canonical Form.
+
+xdel(winsid())//close all graphics Windows
+clear;
+clc;
+//------------------------------------------------------------------
+//System transfer function
+s=poly(0,'s');
+g1=1/s^2;
+g2=-1/(s^2+2*s+4);
+Gs=g1+g2;
+//------------------------------------------------------------------
+// State space representation in modal canonical form
+sys1=tf2ss(g1);
+sys2=tf2ss(g2);
+[F1,G1,T1]=canon(sys1.A, sys1.B)
+H1=sys1.C*T1;
+
+[F2,G2,T2]=canon(sys2.A, sys2.B)
+H2=sys2.C*T2;
+
+F=[F1 zeros(2,2);zeros(2,2) F2];
+G=[G1;G2];
+H=[H1,H2];
+J=0;
+disp(J,"J",H,"H",G,"G",F,"F","System in modal canonical form")
+//------------------------------------------------------------------
+ //As Y=G*U; consatnts k1 and k2 are taken out from G1 and G2 will be
+ //multiplied to H1 and H2
+
+// So alternately, it can be reprsented as
+k1=-1;k2=-2;
+F=[F1 zeros(2,2);zeros(2,2) F2];
+G=[G1/k1;G2/k2];
+H=[H1*k1,H2*k2];
+J=0;
+disp(J,"J",H,"H",G,"G",F,"F","System in modal canonical form")
+//------------------------------------------------------------------
+
diff --git a/Working_Examples/3432/CH8/EX8.1/DEPENDENCIES/fig_settings.sci b/Working_Examples/3432/CH8/EX8.1/DEPENDENCIES/fig_settings.sci new file mode 100755 index 0000000..5d5e7d4 --- /dev/null +++ b/Working_Examples/3432/CH8/EX8.1/DEPENDENCIES/fig_settings.sci @@ -0,0 +1,9 @@ +//------------------------------------------------------------------
+//figure handel settings
+f=get("current_figure"); //Current figure handle
+f.background=8; //make the figure window background white
+l=f.children(1);
+l.background=8 ;//make the text background white
+id=color('grey');
+xgrid(id);
+//------------------------------------------------------------------
diff --git a/Working_Examples/3432/CH8/EX8.1/Ex8_1.sce b/Working_Examples/3432/CH8/EX8.1/Ex8_1.sce new file mode 100755 index 0000000..015f648 --- /dev/null +++ b/Working_Examples/3432/CH8/EX8.1/Ex8_1.sce @@ -0,0 +1,56 @@ +///Example 8.1 +// Digital Controller using tustin approximation. + +xdel(winsid())//close all graphics Windows +clear; +clc; +//------------------------------------------------------------------ +//Cntroller +s=poly(0,'s'); +numD=s/2+1; +denD=s/10+1; +D=10*numD/denD; +Ds=syslin('c',D); +//sampling freq. = 25 times bandwidth +Wbw=10; +Ws=25*Wbw; +fs=Ws/2/%pi; +T=1/fs; //sampling time +a=1;b=-1; +c=1;d=1; +//Digital controller +z=poly(0,'z'); +Dz=horner(Ds,2/T*(a*z+b)/(c*z+d)); +disp(Dz,'Digital Controller : ') + +//------------------------------------------------------------------ +//step response and control efforts. +figure(0); +importXcosDiagram(".\Ex8_1_model.xcos") + //The diagram data structure +xcos_simulate(scs_m,4); +scs_m.props.context +plot(yt.time,yt.values(:,1),'r--') +plot(yt.time,yt.values(:,2),2) + +xlabel('Time (sec.)'); +ylabel('Position, y'); +title(["Comparison between digital and continuous controller step... + response";"with a sample rate 25 times bandwidth";"(a) Position "],... + 'fontsize',3); +exec .\fig_settings.sci; // custom script for setting figure properties + +//control effort + +figure(1); +plot(ut.time,ut.values(:,1),'r--') +plot2d2(ut.time,ut.values(:,2),2) + +xlabel('Time (sec.)'); +ylabel('Control, u'); +title(["Comparison between digital and continuous controller step... + response";"with a sample rate 25 times bandwidth";"(b) Control "],... + 'fontsize',3); +exec .\fig_settings.sci; // custom script for setting figure properties +//------------------------------------------------------------------ + diff --git a/Working_Examples/3432/CH8/EX8.1/Ex8_1_f0.pdf b/Working_Examples/3432/CH8/EX8.1/Ex8_1_f0.pdf Binary files differnew file mode 100755 index 0000000..18b8139 --- /dev/null +++ b/Working_Examples/3432/CH8/EX8.1/Ex8_1_f0.pdf diff --git a/Working_Examples/3432/CH8/EX8.1/Ex8_1_f1.pdf b/Working_Examples/3432/CH8/EX8.1/Ex8_1_f1.pdf Binary files differnew file mode 100755 index 0000000..ab9cb8c --- /dev/null +++ b/Working_Examples/3432/CH8/EX8.1/Ex8_1_f1.pdf diff --git a/Working_Examples/3432/CH8/EX8.1/Ex8_1_model.xcos b/Working_Examples/3432/CH8/EX8.1/Ex8_1_model.xcos new file mode 100755 index 0000000..ece7753 --- /dev/null +++ b/Working_Examples/3432/CH8/EX8.1/Ex8_1_model.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" finalIntegrationTime="2.0" title="Ex8_1_model"><!--Xcos - 1.0 - scilab-5.5.2 - 20160406 2040--><mxGraphModel as="model"><root><mxCell id="-2dd55334:14dcbdd0183:-7fd2"/><mxCell id="-2dd55334:14dcbdd0183:-7fd3" parent="-2dd55334:14dcbdd0183:-7fd2"/><BasicBlock dependsOnT="1" id="-2dd55334:14dcbdd0183:-7f98" interfaceFunctionName="CLR" ordering="1" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="csslti4" simulationFunctionType="C_OR_FORTRAN" style="CLR;flip=false;mirror=false"><ScilabString as="exprs" height="2" width="1"><data column="0" line="0" value="1"/><data column="0" line="1" value="s*(1+s)"/></ScilabString><ScilabDouble as="realParameters" height="9" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="-0.0"/><data column="0" line="2" realPart="1.0"/><data column="0" line="3" realPart="-1.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="1.0"/><data column="0" line="6" realPart="1.0"/><data column="0" line="7" realPart="0.0"/><data column="0" line="8" realPart="0.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="state" height="2" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="100.0" x="580.0" y="90.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-7d9f02e3:14e259a89bd:-7e30" ordering="1" parent="-2dd55334:14dcbdd0183:-7f98" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-7d9f02e3:14e259a89bd:-7e2f" ordering="1" parent="-2dd55334:14dcbdd0183:-7f98" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="100.0" y="16.0"/></ExplicitOutputPort><BasicBlock dependsOnU="1" id="-2dd55334:14dcbdd0183:-7f5c" interfaceFunctionName="GAINBLK" ordering="2" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="gainblk" simulationFunctionType="C_OR_FORTRAN" style="GAINBLK;flip=false;mirror=false"><ScilabString as="exprs" height="2" width="1"><data column="0" line="0" value="10"/><data column="0" line="1" value="0"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="10.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="460.0" y="90.0"/></BasicBlock><ExplicitInputPort dataType="REAL_MATRIX" id="-7d9f02e3:14e259a89bd:-7987" ordering="1" parent="-2dd55334:14dcbdd0183:-7f5c" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitOutputPort dataType="REAL_MATRIX" id="-7d9f02e3:14e259a89bd:-7986" ordering="1" parent="-2dd55334:14dcbdd0183:-7f5c" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><Summation dependsOnU="1" id="-2dd55334:14dcbdd0183:-7f23" interfaceFunctionName="SUMMATION" ordering="3" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="summation" simulationFunctionType="C_OR_FORTRAN" style="SUMMATION;flip=false;mirror=false" value="+"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="[1;-1]"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="2" width="1"><data column="0" line="0" realPart="1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="60.0" width="40.0" x="260.0" y="80.0"/></Summation><ExplicitInputPort dataType="REAL_MATRIX" id="-2dd55334:14dcbdd0183:-7f22" ordering="1" parent="-2dd55334:14dcbdd0183:-7f23" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value="+"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitInputPort dataType="REAL_MATRIX" id="-2dd55334:14dcbdd0183:-7f21" ordering="2" parent="-2dd55334:14dcbdd0183:-7f23" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value="-"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="36.0"/></ExplicitInputPort><ExplicitOutputPort dataType="REAL_MATRIX" id="-2dd55334:14dcbdd0183:-7f20" ordering="1" parent="-2dd55334:14dcbdd0183:-7f23" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="26.0"/></ExplicitOutputPort><ExplicitLink id="-2dd55334:14dcbdd0183:-7f1e" parent="-2dd55334:14dcbdd0183:-7fd3" source="-2dd55334:14dcbdd0183:-7f20" target="-7d9f02e3:14e259a89bd:-7ece"><mxGeometry as="geometry" x="130.0" y="20.0"/></ExplicitLink><BasicBlock id="-2dd55334:14dcbdd0183:-7eeb" interfaceFunctionName="STEP_FUNCTION" ordering="4" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="STEP_FUNCTION;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList" varName=""><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="1.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="3" width="1"><data column="0" line="0" value="0"/><data column="0" line="1" value="0"/><data column="0" line="2" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"STEP",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="STEP"/></ScilabString></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="step_func"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="1.0"/><data column="0" line="1" realPart="1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7ee6"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="STEP"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7ee6"/></ScilabString></Array></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="2600.0"/><data column="1" line="0" realPart="-2550.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"OUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="OUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-2.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7ee2"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="OUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7ee2"/></ScilabString></Array></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="84.0"/><data column="0" line="1" realPart="2616.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-20.0"/><data column="0" line="1" realPart="-2540.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="6" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="5060.0"/><data column="0" line="2" realPart="5020.0"/><data column="0" line="3" realPart="5020.0"/><data column="0" line="4" realPart="5060.0"/><data column="0" line="5" realPart="60.0"/></ScilabDouble><ScilabDouble height="6" width="1"><data column="0" line="0" realPart="-44.0"/><data column="0" line="1" realPart="-5100.0"/><data column="0" line="2" realPart="-5100.0"/><data column="0" line="3" realPart="-5020.0"/><data column="0" line="4" realPart="-5020.0"/><data column="0" line="5" realPart="4.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="20.0" y="80.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-2dd55334:14dcbdd0183:-7ec7" ordering="1" parent="-2dd55334:14dcbdd0183:-7eeb" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><BasicBlock dependsOnT="1" dependsOnU="1" id="-2dd55334:14dcbdd0183:-7fb6" interfaceFunctionName="CLR" ordering="5" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="csslti4" simulationFunctionType="C_OR_FORTRAN" style="CLR;flip=false;mirror=false"><ScilabString as="exprs" height="2" width="1"><data column="0" line="0" value="s/2+1"/><data column="0" line="1" value="s/10+1"/></ScilabString><ScilabDouble as="realParameters" height="4" width="1"><data column="0" line="0" realPart="-10.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="-40.0"/><data column="0" line="3" realPart="5.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="state" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="60.0" width="90.0" x="330.0" y="80.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-7d9f02e3:14e259a89bd:-7ece" ordering="1" parent="-2dd55334:14dcbdd0183:-7fb6" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="26.0"/></ExplicitInputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-7d9f02e3:14e259a89bd:-7ecd" ordering="1" parent="-2dd55334:14dcbdd0183:-7fb6" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="90.0" y="26.0"/></ExplicitOutputPort><ExplicitLink id="-2dd55334:14dcbdd0183:-7e82" parent="-2dd55334:14dcbdd0183:-7fd3" source="-7d9f02e3:14e259a89bd:-7ecd" target="-7d9f02e3:14e259a89bd:-7987"><mxGeometry as="geometry" x="150.0" y="10.0"/></ExplicitLink><BasicBlock blockType="h" id="-2dd55334:14dcbdd0183:-7e6e" interfaceFunctionName="CLOCK_c" ordering="6" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList" varName=""><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="1.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="2639.0"/><data column="1" line="0" realPart="-2670.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7e5e"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7e5e"/></ScilabString></Array></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="T"/><data column="0" line="1" value="0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.025132741228718343"/><data column="0" line="1" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7e5c"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7e5c"/></ScilabString></Array></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4281.377326666667"/><data column="1" line="0" realPart="-4327.333333333333"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="7.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="5.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7e59"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7e59"/></ScilabString></Array></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="5140.0"/><data column="0" line="2" realPart="4291.877326666667"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-44.0"/><data column="0" line="1" realPart="-5220.0"/><data column="0" line="2" realPart="-4316.333333333333"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="4290.71066"/><data column="0" line="1" realPart="2669.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-4331.333333333333"/><data column="0" line="1" realPart="-2646.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="4293.043993333334"/><data column="0" line="1" realPart="5180.71"/><data column="0" line="2" realPart="5140.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-4331.333333333333"/><data column="0" line="1" realPart="-5090.0"/><data column="0" line="2" realPart="-5090.0"/><data column="0" line="3" realPart="4.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="870.0" y="30.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="-7d9f02e3:14e259a89bd:-5eef" ordering="1" parent="-2dd55334:14dcbdd0183:-7e6e" style="CommandPort;align=center;verticalAlign=bottom;spacing=10.0;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><mxCell connectable="0" id="-2dd55334:14dcbdd0183:-7e6e#identifier" parent="-2dd55334:14dcbdd0183:-7e6e" style="noLabel=0;opacity=0" value=" Period=T" vertex="1"><mxGeometry as="geometry" relative="1" x="0.5" y="1.1"><mxPoint as="offset" x="1.0" y="-60.0"/></mxGeometry></mxCell><BasicBlock dependsOnT="1" id="-2dd55334:14dcbdd0183:-7dc9" interfaceFunctionName="CLR" ordering="7" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="csslti4" simulationFunctionType="C_OR_FORTRAN" style="CLR;flip=false;mirror=false"><ScilabString as="exprs" height="2" width="1"><data column="0" line="0" value="1"/><data column="0" line="1" value="s*(1+s)"/></ScilabString><ScilabDouble as="realParameters" height="9" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="-0.0"/><data column="0" line="2" realPart="1.0"/><data column="0" line="3" realPart="-1.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="1.0"/><data column="0" line="6" realPart="1.0"/><data column="0" line="7" realPart="0.0"/><data column="0" line="8" realPart="0.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="state" height="2" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="100.0" x="600.0" y="270.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-7d9f02e3:14e259a89bd:-7e3d" ordering="1" parent="-2dd55334:14dcbdd0183:-7dc9" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-7d9f02e3:14e259a89bd:-7e3c" ordering="1" parent="-2dd55334:14dcbdd0183:-7dc9" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="100.0" y="16.0"/></ExplicitOutputPort><Summation dependsOnU="1" id="-2dd55334:14dcbdd0183:-7dc2" interfaceFunctionName="SUMMATION" ordering="8" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="summation" simulationFunctionType="C_OR_FORTRAN" style="SUMMATION;flip=false;mirror=false" value="+"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="[1;-1]"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="2" width="1"><data column="0" line="0" realPart="1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="60.0" width="40.0" x="180.0" y="260.0"/></Summation><ExplicitInputPort dataType="REAL_MATRIX" id="-2dd55334:14dcbdd0183:-7dc1" ordering="1" parent="-2dd55334:14dcbdd0183:-7dc2" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value="+"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitInputPort dataType="REAL_MATRIX" id="-2dd55334:14dcbdd0183:-7dc0" ordering="2" parent="-2dd55334:14dcbdd0183:-7dc2" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value="-"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="36.0"/></ExplicitInputPort><ExplicitOutputPort dataType="REAL_MATRIX" id="-2dd55334:14dcbdd0183:-7dbf" ordering="1" parent="-2dd55334:14dcbdd0183:-7dc2" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="26.0"/></ExplicitOutputPort><BasicBlock blockType="d" dependsOnU="1" id="-2dd55334:14dcbdd0183:-7d7c" interfaceFunctionName="DLR" ordering="9" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="dsslti4" simulationFunctionType="C_OR_FORTRAN" style="DLR;flip=false;mirror=false"><ScilabString as="exprs" height="2" width="1"><data column="0" line="0" value="- 43.301887+ 45.534592*z"/><data column="0" line="1" value="- 0.7767296 + z"/></ScilabString><ScilabDouble as="realParameters" height="4" width="1"><data column="0" line="0" realPart="0.7767296"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="-7.933821569676795"/><data column="0" line="3" realPart="45.534592"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="dState" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="50.0" width="210.0" x="250.0" y="270.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-7d9f02e3:14e259a89bd:-633b" ordering="1" parent="-2dd55334:14dcbdd0183:-7d7c" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-7d9f02e3:14e259a89bd:-633a" ordering="1" parent="-2dd55334:14dcbdd0183:-7d7c" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="210.0" y="16.0"/></ExplicitOutputPort><ControlPort dataType="UNKNOW_TYPE" id="-7d9f02e3:14e259a89bd:-6339" ordering="1" parent="-2dd55334:14dcbdd0183:-7d7c" style="ControlPort;align=center;verticalAlign=top;spacing=10.0;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="96.0" y="-8.0"/></ControlPort><BasicBlock blockType="h" id="-2dd55334:14dcbdd0183:-7d59" interfaceFunctionName="CLOCK_c" ordering="10" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList" varName=""><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="1.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="2959.0"/><data column="1" line="0" realPart="-2990.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7e5e"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7e5e"/></ScilabString></Array></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="T"/><data column="0" line="1" value="0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.025132741228718343"/><data column="0" line="1" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7e5c"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7e5c"/></ScilabString></Array></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4809.377326666667"/><data column="1" line="0" realPart="-4855.333333333333"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="7.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="5.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7e59"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7e59"/></ScilabString></Array></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="5780.0"/><data column="0" line="2" realPart="4819.877326666667"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-44.0"/><data column="0" line="1" realPart="-5860.0"/><data column="0" line="2" realPart="-4844.333333333333"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="4818.71066"/><data column="0" line="1" realPart="2989.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-4859.333333333333"/><data column="0" line="1" realPart="-2966.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="4821.043993333334"/><data column="0" line="1" realPart="5820.71"/><data column="0" line="2" realPart="5780.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-4859.333333333333"/><data column="0" line="1" realPart="-5730.0"/><data column="0" line="2" realPart="-5730.0"/><data column="0" line="3" realPart="4.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="330.0" y="180.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="-7d9f02e3:14e259a89bd:-699f" ordering="1" parent="-2dd55334:14dcbdd0183:-7d59" style="CommandPort;align=center;verticalAlign=bottom;spacing=10.0;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><mxCell connectable="0" id="-2dd55334:14dcbdd0183:-7d59#identifier" parent="-2dd55334:14dcbdd0183:-7d59" style="noLabel=0;opacity=0" value=" Period=T" vertex="1"><mxGeometry as="geometry" relative="1" x="0.5" y="1.1"><mxPoint as="offset" x="50.0" y="-32.0"/></mxGeometry></mxCell><CommandControlLink id="-2dd55334:14dcbdd0183:-7d55" parent="-2dd55334:14dcbdd0183:-7fd3" source="-7d9f02e3:14e259a89bd:-699f" target="-7d9f02e3:14e259a89bd:-6339"><mxGeometry as="geometry" x="150.0" y="10.0"/></CommandControlLink><ExplicitLink id="-2dd55334:14dcbdd0183:-7cbb" parent="-2dd55334:14dcbdd0183:-7fd3" source="-2dd55334:14dcbdd0183:-7dbf" target="-7d9f02e3:14e259a89bd:-633b"><mxGeometry as="geometry" x="150.0" y="60.0"/></ExplicitLink><BasicBlock dependsOnU="1" id="-2dd55334:14dcbdd0183:-7c65" interfaceFunctionName="MUX_f" ordering="11" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="mux" simulationFunctionType="TYPE_1" style="MUX_f;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="2"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="10.0" x="820.0" y="160.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="-2dd55334:14dcbdd0183:-7c64" ordering="1" parent="-2dd55334:14dcbdd0183:-7c65" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ExplicitInputPort><ExplicitInputPort dataColumns="1" dataLines="-2" dataType="REAL_MATRIX" id="-2dd55334:14dcbdd0183:-7c63" ordering="2" parent="-2dd55334:14dcbdd0183:-7c65" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="26.0"/></ExplicitInputPort><ExplicitOutputPort dataColumns="1" dataLines="0" dataType="REAL_MATRIX" id="-2dd55334:14dcbdd0183:-7c62" ordering="1" parent="-2dd55334:14dcbdd0183:-7c65" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="10.0" y="16.0"/></ExplicitOutputPort><SplitBlock id="-2dd55334:14dcbdd0183:-7c3f" ordering="12" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="757.0" y="167.0"/></SplitBlock><ExplicitInputPort dataType="UNKNOW_TYPE" id="-2dd55334:14dcbdd0183:-7c3e" ordering="1" parent="-2dd55334:14dcbdd0183:-7c3f" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ExplicitInputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="-2dd55334:14dcbdd0183:-7c3d" ordering="1" parent="-2dd55334:14dcbdd0183:-7c3f" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="-2dd55334:14dcbdd0183:-7c3c" ordering="2" parent="-2dd55334:14dcbdd0183:-7c3f" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitLink id="-2dd55334:14dcbdd0183:-7c3b" parent="-2dd55334:14dcbdd0183:-7fd3" source="-7d9f02e3:14e259a89bd:-7e2f" target="-2dd55334:14dcbdd0183:-7c3e"><mxGeometry as="geometry" x="150.0" y="10.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="760.0" y="110.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="-2dd55334:14dcbdd0183:-7c3a" parent="-2dd55334:14dcbdd0183:-7fd3" source="-2dd55334:14dcbdd0183:-7c3d" target="-2dd55334:14dcbdd0183:-7f21"><mxGeometry as="geometry" x="150.0" y="10.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="230.0" y="170.0"/><mxPoint x="230.0" y="120.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="-2dd55334:14dcbdd0183:-7c40" parent="-2dd55334:14dcbdd0183:-7fd3" source="-2dd55334:14dcbdd0183:-7c3c" target="-2dd55334:14dcbdd0183:-7c64"><mxGeometry as="geometry" x="150.0" y="10.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="790.0" y="170.0"/></Array></mxGeometry></ExplicitLink><TextBlock id="-6cad6c1c:14dd22d9551:-7f7a" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=18;flip=false;mirror=false" value="Model for Ex8_1"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="Model for Ex8_1"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="Model for Ex8_1"/></ScilabString><mxGeometry as="geometry" height="40.0" width="160.0" x="340.0" y="10.0"/></TextBlock><SplitBlock id="-7d9f02e3:14e259a89bd:-7f43" ordering="13" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="137.0" y="97.0"/></SplitBlock><ExplicitInputPort dataType="UNKNOW_TYPE" id="-7d9f02e3:14e259a89bd:-7f42" ordering="1" parent="-7d9f02e3:14e259a89bd:-7f43" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ExplicitInputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="-7d9f02e3:14e259a89bd:-7f41" ordering="1" parent="-7d9f02e3:14e259a89bd:-7f43" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="-7d9f02e3:14e259a89bd:-7f40" ordering="2" parent="-7d9f02e3:14e259a89bd:-7f43" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitLink id="-7d9f02e3:14e259a89bd:-7f3f" parent="-2dd55334:14dcbdd0183:-7fd3" source="-2dd55334:14dcbdd0183:-7ec7" target="-7d9f02e3:14e259a89bd:-7f42"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ExplicitLink><ExplicitLink id="-7d9f02e3:14e259a89bd:-7f3e" parent="-2dd55334:14dcbdd0183:-7fd3" source="-7d9f02e3:14e259a89bd:-7f41" target="-2dd55334:14dcbdd0183:-7f22"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ExplicitLink><ExplicitLink id="-7d9f02e3:14e259a89bd:-7f44" parent="-2dd55334:14dcbdd0183:-7fd3" source="-7d9f02e3:14e259a89bd:-7f40" target="-2dd55334:14dcbdd0183:-7dc1"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="260.0" y="280.0"/><mxPoint as="targetPoint" x="140.0" y="100.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="140.0" y="280.0"/></Array></mxGeometry></ExplicitLink><BasicBlock dependsOnU="1" id="-7d9f02e3:14e259a89bd:-7831" interfaceFunctionName="MUX_f" ordering="14" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="mux" simulationFunctionType="TYPE_1" style="MUX_f;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="2"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="10.0" x="790.0" y="370.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="-7d9f02e3:14e259a89bd:-7830" ordering="1" parent="-7d9f02e3:14e259a89bd:-7831" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ExplicitInputPort><ExplicitInputPort dataColumns="1" dataLines="-2" dataType="REAL_MATRIX" id="-7d9f02e3:14e259a89bd:-782f" ordering="2" parent="-7d9f02e3:14e259a89bd:-7831" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="26.0"/></ExplicitInputPort><ExplicitOutputPort dataColumns="1" dataLines="0" dataType="REAL_MATRIX" id="-7d9f02e3:14e259a89bd:-782e" ordering="1" parent="-7d9f02e3:14e259a89bd:-7831" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="10.0" y="16.0"/></ExplicitOutputPort><SplitBlock id="-7d9f02e3:14e259a89bd:-7827" ordering="15" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="547.0" y="107.0"/></SplitBlock><ExplicitInputPort dataType="UNKNOW_TYPE" id="-7d9f02e3:14e259a89bd:-7826" ordering="1" parent="-7d9f02e3:14e259a89bd:-7827" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ExplicitInputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="-7d9f02e3:14e259a89bd:-7825" ordering="1" parent="-7d9f02e3:14e259a89bd:-7827" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="-7d9f02e3:14e259a89bd:-7824" ordering="2" parent="-7d9f02e3:14e259a89bd:-7827" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitLink id="-7d9f02e3:14e259a89bd:-7823" parent="-2dd55334:14dcbdd0183:-7fd3" source="-7d9f02e3:14e259a89bd:-7986" target="-7d9f02e3:14e259a89bd:-7826"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ExplicitLink><ExplicitLink id="-7d9f02e3:14e259a89bd:-7822" parent="-2dd55334:14dcbdd0183:-7fd3" source="-7d9f02e3:14e259a89bd:-7825" target="-7d9f02e3:14e259a89bd:-7e30"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ExplicitLink><ExplicitLink id="-7d9f02e3:14e259a89bd:-7828" parent="-2dd55334:14dcbdd0183:-7fd3" source="-7d9f02e3:14e259a89bd:-7824" target="-7d9f02e3:14e259a89bd:-7830"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="790.0" y="380.0"/><mxPoint as="targetPoint" x="560.0" y="110.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="550.0" y="380.0"/></Array></mxGeometry></ExplicitLink><SplitBlock id="-7d9f02e3:14e259a89bd:-781f" ordering="16" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="517.0" y="287.0"/></SplitBlock><ExplicitInputPort dataType="UNKNOW_TYPE" id="-7d9f02e3:14e259a89bd:-781e" ordering="1" parent="-7d9f02e3:14e259a89bd:-781f" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ExplicitInputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="-7d9f02e3:14e259a89bd:-781d" ordering="1" parent="-7d9f02e3:14e259a89bd:-781f" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="-7d9f02e3:14e259a89bd:-781c" ordering="2" parent="-7d9f02e3:14e259a89bd:-781f" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitLink id="-7d9f02e3:14e259a89bd:-781b" parent="-2dd55334:14dcbdd0183:-7fd3" source="-7d9f02e3:14e259a89bd:-633a" target="-7d9f02e3:14e259a89bd:-781e"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ExplicitLink><ExplicitLink id="-7d9f02e3:14e259a89bd:-781a" parent="-2dd55334:14dcbdd0183:-7fd3" source="-7d9f02e3:14e259a89bd:-781d" target="-7d9f02e3:14e259a89bd:-7e3d"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ExplicitLink><ExplicitLink id="-7d9f02e3:14e259a89bd:-7820" parent="-2dd55334:14dcbdd0183:-7fd3" source="-7d9f02e3:14e259a89bd:-781c" target="-7d9f02e3:14e259a89bd:-782f"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="790.0" y="400.0"/><mxPoint as="targetPoint" x="520.0" y="290.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="520.0" y="400.0"/></Array></mxGeometry></ExplicitLink><SplitBlock id="-7d9f02e3:14e259a89bd:-6201" ordering="17" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="757.0" y="287.0"/></SplitBlock><ExplicitInputPort dataType="UNKNOW_TYPE" id="-7d9f02e3:14e259a89bd:-6200" ordering="1" parent="-7d9f02e3:14e259a89bd:-6201" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ExplicitInputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="-7d9f02e3:14e259a89bd:-61ff" ordering="1" parent="-7d9f02e3:14e259a89bd:-6201" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="-7d9f02e3:14e259a89bd:-61fe" ordering="2" parent="-7d9f02e3:14e259a89bd:-6201" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitLink id="-7d9f02e3:14e259a89bd:-61fd" parent="-2dd55334:14dcbdd0183:-7fd3" source="-7d9f02e3:14e259a89bd:-7e3c" target="-7d9f02e3:14e259a89bd:-6200"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ExplicitLink><ExplicitLink id="-7d9f02e3:14e259a89bd:-61fc" parent="-2dd55334:14dcbdd0183:-7fd3" source="-7d9f02e3:14e259a89bd:-61ff" target="-2dd55334:14dcbdd0183:-7c63"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="760.0" y="240.0"/><mxPoint x="760.0" y="190.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="-7d9f02e3:14e259a89bd:-6202" parent="-2dd55334:14dcbdd0183:-7fd3" source="-7d9f02e3:14e259a89bd:-61fe" target="-2dd55334:14dcbdd0183:-7dc0"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="180.0" y="300.0"/><mxPoint as="targetPoint" x="760.0" y="290.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="760.0" y="340.0"/><mxPoint x="140.0" y="340.0"/><mxPoint x="140.0" y="300.0"/></Array></mxGeometry></ExplicitLink><BasicBlock dependsOnU="1" id="-7f3f8309:16686c89bf7:-77c0" interfaceFunctionName="CSCOPE" ordering="18" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="cscope" simulationFunctionType="C_OR_FORTRAN" style="CSCOPE"><ScilabString as="exprs" height="10" width="1"><data column="0" line="0" value="1 3 5 7 9 11 13 15"/><data column="0" line="1" value="-1"/><data column="0" line="2" value="[]"/><data column="0" line="3" value="[600;400]"/><data column="0" line="4" value="-10"/><data column="0" line="5" value="50"/><data column="0" line="6" value="2"/><data column="0" line="7" value="20"/><data column="0" line="8" value="0"/><data column="0" line="9" value=""/></ScilabString><ScilabDouble as="realParameters" height="4" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="-10.0"/><data column="0" line="2" realPart="50.0"/><data column="0" line="3" realPart="2.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="15" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="1.0"/><data column="0" line="4" realPart="3.0"/><data column="0" line="5" realPart="5.0"/><data column="0" line="6" realPart="7.0"/><data column="0" line="7" realPart="9.0"/><data column="0" line="8" realPart="11.0"/><data column="0" line="9" realPart="13.0"/><data column="0" line="10" realPart="15.0"/><data column="0" line="11" realPart="-1.0"/><data column="0" line="12" realPart="-1.0"/><data column="0" line="13" realPart="600.0"/><data column="0" line="14" realPart="400.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="870.0" y="370.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="-7f3f8309:16686c89bf7:-7611" ordering="1" parent="-7f3f8309:16686c89bf7:-77c0" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ControlPort dataType="UNKNOW_TYPE" id="-7f3f8309:16686c89bf7:-7610" ordering="1" parent="-7f3f8309:16686c89bf7:-77c0" style="ControlPort;align=center;verticalAlign=top;spacing=10.0;rotation=90"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><BasicBlock dependsOnU="1" id="-7f3f8309:16686c89bf7:-77ba" interfaceFunctionName="CSCOPE" ordering="19" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="cscope" simulationFunctionType="C_OR_FORTRAN" style="CSCOPE;mirror=true"><ScilabString as="exprs" height="10" width="1"><data column="0" line="0" value="1 3 5 7 9 11 13 15"/><data column="0" line="1" value="-1"/><data column="0" line="2" value="[]"/><data column="0" line="3" value="[600;400]"/><data column="0" line="4" value="-1"/><data column="0" line="5" value="2"/><data column="0" line="6" value="2"/><data column="0" line="7" value="20"/><data column="0" line="8" value="0"/><data column="0" line="9" value=""/></ScilabString><ScilabDouble as="realParameters" height="4" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="-1.0"/><data column="0" line="2" realPart="2.0"/><data column="0" line="3" realPart="2.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="15" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="1.0"/><data column="0" line="4" realPart="3.0"/><data column="0" line="5" realPart="5.0"/><data column="0" line="6" realPart="7.0"/><data column="0" line="7" realPart="9.0"/><data column="0" line="8" realPart="11.0"/><data column="0" line="9" realPart="13.0"/><data column="0" line="10" realPart="15.0"/><data column="0" line="11" realPart="-1.0"/><data column="0" line="12" realPart="-1.0"/><data column="0" line="13" realPart="600.0"/><data column="0" line="14" realPart="400.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="790.0" y="110.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="-7f3f8309:16686c89bf7:-75c0" ordering="1" parent="-7f3f8309:16686c89bf7:-77ba" style="ExplicitInputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=180" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitInputPort><ControlPort dataType="UNKNOW_TYPE" id="-7f3f8309:16686c89bf7:-75bf" ordering="1" parent="-7f3f8309:16686c89bf7:-77ba" style="ControlPort;align=center;verticalAlign=top;spacing=10.0;rotation=90"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><ExplicitLink id="-7f3f8309:16686c89bf7:-77a1" parent="-2dd55334:14dcbdd0183:-7fd3" source="-2dd55334:14dcbdd0183:-7c62" target="-7f3f8309:16686c89bf7:-75c0"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="830.0" y="120.0"/><mxPoint as="targetPoint" x="840.0" y="180.0"/><Array as="points" scilabClass=""><mxPoint x="850.0" y="180.0"/><mxPoint x="850.0" y="160.0"/><mxPoint x="850.0" y="130.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="-7f3f8309:16686c89bf7:-779c" parent="-2dd55334:14dcbdd0183:-7fd3" source="-7d9f02e3:14e259a89bd:-782e" target="-7f3f8309:16686c89bf7:-7611"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="800.0" y="390.0"/><mxPoint as="targetPoint" x="880.0" y="380.0"/></mxGeometry></ExplicitLink><SplitBlock id="-7f3f8309:16686c89bf7:-7797" interfaceFunctionName="CLKSPLIT_f" ordering="20" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionType="DEFAULT" style="CLKSPLIT_f"><mxGeometry as="geometry" height="7.0" width="7.0" x="887.0" y="97.0"/></SplitBlock><ControlPort dataType="UNKNOW_TYPE" id="-7f3f8309:16686c89bf7:-7796" ordering="1" parent="-7f3f8309:16686c89bf7:-7797" style="ControlPort;align=center;verticalAlign=top;spacing=10.0;rotation=90" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-4.0" y="-8.0"/></ControlPort><CommandPort dataType="UNKNOW_TYPE" id="-7f3f8309:16686c89bf7:-7795" ordering="1" parent="-7f3f8309:16686c89bf7:-7797" style="CommandPort;align=center;verticalAlign=bottom;spacing=10.0;rotation=90" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-4.0" y="7.0"/></CommandPort><CommandPort dataType="UNKNOW_TYPE" id="-7f3f8309:16686c89bf7:-7794" ordering="2" parent="-7f3f8309:16686c89bf7:-7797" style="CommandPort;align=center;verticalAlign=bottom;spacing=10.0;rotation=90" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-4.0" y="7.0"/></CommandPort><CommandControlLink id="-7f3f8309:16686c89bf7:-7793" parent="-2dd55334:14dcbdd0183:-7fd3" source="-7d9f02e3:14e259a89bd:-5eef" target="-7f3f8309:16686c89bf7:-7796"><mxGeometry as="geometry"><Array as="points" scilabClass=""><mxPoint x="890.0" y="90.0"/><mxPoint x="890.0" y="100.0"/></Array></mxGeometry></CommandControlLink><CommandControlLink id="-7f3f8309:16686c89bf7:-7792" parent="-2dd55334:14dcbdd0183:-7fd3" source="-7f3f8309:16686c89bf7:-7795" target="-7f3f8309:16686c89bf7:-75bf"><mxGeometry as="geometry"><Array as="points" scilabClass=""><mxPoint x="810.0" y="100.0"/></Array></mxGeometry></CommandControlLink><CommandControlLink id="-7f3f8309:16686c89bf7:-7798" parent="-2dd55334:14dcbdd0183:-7fd3" source="-7f3f8309:16686c89bf7:-7794" target="-7f3f8309:16686c89bf7:-7610"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="850.0" y="90.0"/><mxPoint as="targetPoint" x="890.0" y="370.0"/><Array as="points" scilabClass=""><mxPoint x="890.0" y="350.0"/></Array></mxGeometry></CommandControlLink></root></mxGraphModel><mxCell as="defaultParent" id="-2dd55334:14dcbdd0183:-7fd3" parent="-2dd55334:14dcbdd0183:-7fd2"/><mxPoint as="origin" y="-3.0"/></XcosDiagram>
\ No newline at end of file diff --git a/Working_Examples/3432/CH8/EX8.2/DEPENDENCIES/fig_settings.sci b/Working_Examples/3432/CH8/EX8.2/DEPENDENCIES/fig_settings.sci new file mode 100755 index 0000000..5d5e7d4 --- /dev/null +++ b/Working_Examples/3432/CH8/EX8.2/DEPENDENCIES/fig_settings.sci @@ -0,0 +1,9 @@ +//------------------------------------------------------------------
+//figure handel settings
+f=get("current_figure"); //Current figure handle
+f.background=8; //make the figure window background white
+l=f.children(1);
+l.background=8 ;//make the text background white
+id=color('grey');
+xgrid(id);
+//------------------------------------------------------------------
diff --git a/Working_Examples/3432/CH8/EX8.2/Ex8_2.sce b/Working_Examples/3432/CH8/EX8.2/Ex8_2.sce new file mode 100755 index 0000000..d5b2152 --- /dev/null +++ b/Working_Examples/3432/CH8/EX8.2/Ex8_2.sce @@ -0,0 +1,65 @@ +//Example 8.2 +// Design of a Space Station Attitude Digital Controller using +// Discrete Equivalents + +xdel(winsid())//close all graphics Windows +clear; +clc; +//------------------------------------------------------------------ +// State space representation of continuous time system +s=poly(0,'s'); +num=1; +den=(s^2); +Gs=syslin('c',num/den); +Ds=0.81*(s+0.2)/(s+2); +Ds=syslin('c',Ds); +sysc=Gs*Ds; + +//Root locus +evans(sysc) +zoom_rect([-2 -0.4 0.5 0.4]) +f=gca(); +f.x_location = "origin" +f.y_location = "origin" +h=legend(''); +h.visible = "off" +exec .\fig_settings.sci; //custom script for setting figure properties +title('s-plane locus with respect to K','fontsize',3) +//------------------------------------------------------------------ +//Contonuous time response of the system +figure, +tc=0:0.1:30; +syscl=sysc/(1+sysc) +yc=csim("step",tc,syscl); +plot(tc,yc,'b') +//------------------------------------------------------------------ +// Discretization of the system at +z=poly(0,'z') +// sampling time Ts=1 sec +Ts=1; +Dz1=horner(Ds,2/Ts*(z-1)/(z+1)) +disp(Dz1,"Dz1=","Discrete-time controller with Ts=1 sec.") + +// sampling time Ts=0.5 sec +Ts2=0.5; +Dz2=horner(Ds,2/Ts2*(z-1)/(z+1)) +disp(Dz2,"Dz2=","Discrete-time controller with Ts=0.5 sec.") + +//discrete-time response of the system. + +importXcosDiagram(".\Ex8_2_model.xcos") + //The diagram data structure +xcos_simulate(scs_m,4); +//scs_m.props.context +plot(yt1.time,yt1.values,'m-.') //with Ts=1sec. +plot(yt2.time,yt2.values,'r--') //with Ts=0.5 sec. +//------------------------------------------------------------------------------ + +title('step responses of continous and digital implementations','fontsize',3) + +exec .\fig_settings.sci; // custom script for setting figure properties +xlabel('Time (sec)','fontsize',2) +ylabel('Plant output','fontsize',2) +legend("Continuous design","Discrete equivalent design, T=1 sec."... +,"Discrete equivalent design, T=0.5 sec.",4) +//------------------------------------------------------------------------------ diff --git a/Working_Examples/3432/CH8/EX8.2/Ex8_2_f0.pdf b/Working_Examples/3432/CH8/EX8.2/Ex8_2_f0.pdf Binary files differnew file mode 100755 index 0000000..58a1e2d --- /dev/null +++ b/Working_Examples/3432/CH8/EX8.2/Ex8_2_f0.pdf diff --git a/Working_Examples/3432/CH8/EX8.2/Ex8_2_f1.pdf b/Working_Examples/3432/CH8/EX8.2/Ex8_2_f1.pdf Binary files differnew file mode 100755 index 0000000..614471a --- /dev/null +++ b/Working_Examples/3432/CH8/EX8.2/Ex8_2_f1.pdf diff --git a/Working_Examples/3432/CH8/EX8.2/Ex8_2_model.xcos b/Working_Examples/3432/CH8/EX8.2/Ex8_2_model.xcos new file mode 100755 index 0000000..b97f107 --- /dev/null +++ b/Working_Examples/3432/CH8/EX8.2/Ex8_2_model.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" finalIntegrationTime="30.0" title="Ex8_2_model"><!--Xcos - 1.0 - scilab-5.5.2 - 20160406 2040--><mxGraphModel as="model"><root><mxCell id="-2dd55334:14dcbdd0183:-7fd2"/><mxCell id="-2dd55334:14dcbdd0183:-7fd3" parent="-2dd55334:14dcbdd0183:-7fd2"/><BasicBlock id="-2dd55334:14dcbdd0183:-7eeb" interfaceFunctionName="STEP_FUNCTION" ordering="1" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="STEP_FUNCTION;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList" varName=""><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="1.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="3" width="1"><data column="0" line="0" value="0"/><data column="0" line="1" value="0"/><data column="0" line="2" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"STEP",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="STEP"/></ScilabString></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="step_func"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="1.0"/><data column="0" line="1" realPart="1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7ee6"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="STEP"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7ee6"/></ScilabString></Array></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4160.0"/><data column="1" line="0" realPart="-4110.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"OUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="OUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-2.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7ee2"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="OUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7ee2"/></ScilabString></Array></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="84.0"/><data column="0" line="1" realPart="4176.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-20.0"/><data column="0" line="1" realPart="-4100.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="6" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="8180.0"/><data column="0" line="2" realPart="8140.0"/><data column="0" line="3" realPart="8140.0"/><data column="0" line="4" realPart="8180.0"/><data column="0" line="5" realPart="60.0"/></ScilabDouble><ScilabDouble height="6" width="1"><data column="0" line="0" realPart="-44.0"/><data column="0" line="1" realPart="-8220.0"/><data column="0" line="2" realPart="-8220.0"/><data column="0" line="3" realPart="-8140.0"/><data column="0" line="4" realPart="-8140.0"/><data column="0" line="5" realPart="4.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="160.0" y="130.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-2dd55334:14dcbdd0183:-7ec7" ordering="1" parent="-2dd55334:14dcbdd0183:-7eeb" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><TextBlock id="-6cad6c1c:14dd22d9551:-7f7a" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=18;flip=false;mirror=false" value="Model for Ex8_2"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="Model for Ex8_2"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="Model for Ex8_2"/></ScilabString><mxGeometry as="geometry" height="40.0" width="160.0" x="250.0" y="20.0"/></TextBlock><BasicBlock blockType="d" dependsOnU="1" id="5b2d8361:14e3b7ccef7:-7af2" interfaceFunctionName="DLR" ordering="2" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="dsslti4" simulationFunctionType="C_OR_FORTRAN" style="DLR;flip=false;mirror=false"><ScilabString as="exprs" height="2" width="1"><data column="0" line="0" value="- 0.513 + 0.567*z"/><data column="0" line="1" value="- 0.3333333 + z"/></ScilabString><ScilabDouble as="realParameters" height="4" width="1"><data column="0" line="0" realPart="0.3333333"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="-0.3240000189"/><data column="0" line="3" realPart="0.567"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="dState" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="200.0" x="370.0" y="390.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="6b0a3509:14e3d9586f3:-7ec8" ordering="1" parent="5b2d8361:14e3b7ccef7:-7af2" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="6b0a3509:14e3d9586f3:-7ec7" ordering="1" parent="5b2d8361:14e3b7ccef7:-7af2" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="200.0" y="16.0"/></ExplicitOutputPort><ControlPort dataType="UNKNOW_TYPE" id="6b0a3509:14e3d9586f3:-7ec6" ordering="1" parent="5b2d8361:14e3b7ccef7:-7af2" style="ControlPort;align=center;verticalAlign=top;spacing=10.0;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="96.0" y="-8.0"/></ControlPort><BasicBlock dependsOnT="1" id="5b2d8361:14e3b7ccef7:-7aab" interfaceFunctionName="CLR" ordering="3" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="csslti4" simulationFunctionType="C_OR_FORTRAN" style="CLR;flip=false;mirror=false"><ScilabString as="exprs" height="2" width="1"><data column="0" line="0" value="1"/><data column="0" line="1" value="s^2"/></ScilabString><ScilabDouble as="realParameters" height="9" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="-0.0"/><data column="0" line="2" realPart="1.0"/><data column="0" line="3" realPart="-0.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="1.0"/><data column="0" line="6" realPart="1.0"/><data column="0" line="7" realPart="0.0"/><data column="0" line="8" realPart="0.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="state" height="2" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="100.0" x="620.0" y="390.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5b2d8361:14e3b7ccef7:-7aaa" ordering="1" parent="5b2d8361:14e3b7ccef7:-7aab" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="5b2d8361:14e3b7ccef7:-7aa9" ordering="1" parent="5b2d8361:14e3b7ccef7:-7aab" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="100.0" y="16.0"/></ExplicitOutputPort><Summation dependsOnU="1" id="5b2d8361:14e3b7ccef7:-7aa8" interfaceFunctionName="SUMMATION" ordering="4" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="summation" simulationFunctionType="C_OR_FORTRAN" style="SUMMATION;flip=false;mirror=false" value="+"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="[1;-1]"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="2" width="1"><data column="0" line="0" realPart="1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="60.0" width="40.0" x="280.0" y="380.0"/></Summation><ExplicitInputPort dataType="REAL_MATRIX" id="5b2d8361:14e3b7ccef7:-7aa7" ordering="1" parent="5b2d8361:14e3b7ccef7:-7aa8" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value="+"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitInputPort dataType="REAL_MATRIX" id="5b2d8361:14e3b7ccef7:-7aa6" ordering="2" parent="5b2d8361:14e3b7ccef7:-7aa8" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value="-"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="36.0"/></ExplicitInputPort><ExplicitOutputPort dataType="REAL_MATRIX" id="5b2d8361:14e3b7ccef7:-7aa5" ordering="1" parent="5b2d8361:14e3b7ccef7:-7aa8" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="26.0"/></ExplicitOutputPort><BasicBlock blockType="h" id="5b2d8361:14e3b7ccef7:-7aa2" interfaceFunctionName="CLOCK_c" ordering="5" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList" varName=""><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="1.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4679.0"/><data column="1" line="0" realPart="-4710.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7e5e"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7e5e"/></ScilabString></Array></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="Ts2"/><data column="0" line="1" value="0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.5"/><data column="0" line="1" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7e5c"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7e5c"/></ScilabString></Array></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7647.377326666667"/><data column="1" line="0" realPart="-7693.333333333333"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="7.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="5.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7e59"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7e59"/></ScilabString></Array></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="9220.0"/><data column="0" line="2" realPart="7657.877326666667"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-44.0"/><data column="0" line="1" realPart="-9300.0"/><data column="0" line="2" realPart="-7682.333333333333"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="7656.71066"/><data column="0" line="1" realPart="4709.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-7697.333333333333"/><data column="0" line="1" realPart="-4686.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="7659.043993333334"/><data column="0" line="1" realPart="9260.71"/><data column="0" line="2" realPart="9220.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-7697.333333333333"/><data column="0" line="1" realPart="-9170.0"/><data column="0" line="2" realPart="-9170.0"/><data column="0" line="3" realPart="4.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="450.0" y="300.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="2a1dd706:14e3b967dca:-7600" ordering="1" parent="5b2d8361:14e3b7ccef7:-7aa2" style="CommandPort;align=center;verticalAlign=bottom;spacing=10.0;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><mxCell connectable="0" id="5b2d8361:14e3b7ccef7:-7aa2#identifier" parent="5b2d8361:14e3b7ccef7:-7aa2" style="noLabel=0;opacity=0" value=" Period, Ts=0.5sec" vertex="1"><mxGeometry as="geometry" relative="1" x="0.5" y="1.1"><mxPoint as="offset" x="68.0" y="-32.0"/></mxGeometry></mxCell><ExplicitLink id="5b2d8361:14e3b7ccef7:-7a5d" parent="-2dd55334:14dcbdd0183:-7fd3" source="6b0a3509:14e3d9586f3:-7ec7" target="5b2d8361:14e3b7ccef7:-7aaa"><mxGeometry as="geometry" x="20.0"/></ExplicitLink><ExplicitLink id="5b2d8361:14e3b7ccef7:-7a5c" parent="-2dd55334:14dcbdd0183:-7fd3" source="5b2d8361:14e3b7ccef7:-7aa5" target="6b0a3509:14e3d9586f3:-7ec8"><mxGeometry as="geometry" x="20.0"/></ExplicitLink><CommandControlLink id="2a1dd706:14e3b967dca:-7a6e" parent="-2dd55334:14dcbdd0183:-7fd3" source="2a1dd706:14e3b967dca:-7600" target="6b0a3509:14e3d9586f3:-7ec6"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="470.0" y="360.0"/></Array></mxGeometry></CommandControlLink><BasicBlock blockType="h" id="2a1dd706:14e3b967dca:-7a6a" interfaceFunctionName="CLOCK_c" ordering="6" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList" varName=""><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="1.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4719.0"/><data column="1" line="0" realPart="-4750.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7e5e"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7e5e"/></ScilabString></Array></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="Ts2"/><data column="0" line="1" value="0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.5"/><data column="0" line="1" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7e5c"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7e5c"/></ScilabString></Array></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7713.377326666667"/><data column="1" line="0" realPart="-7759.333333333333"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="7.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="5.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7e59"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7e59"/></ScilabString></Array></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="9300.0"/><data column="0" line="2" realPart="7723.877326666667"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-44.0"/><data column="0" line="1" realPart="-9380.0"/><data column="0" line="2" realPart="-7748.333333333333"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="7722.71066"/><data column="0" line="1" realPart="4749.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-7763.333333333333"/><data column="0" line="1" realPart="-4726.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="7725.043993333334"/><data column="0" line="1" realPart="9340.71"/><data column="0" line="2" realPart="9300.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-7763.333333333333"/><data column="0" line="1" realPart="-9250.0"/><data column="0" line="2" realPart="-9250.0"/><data column="0" line="3" realPart="4.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="730.0" y="250.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="2a1dd706:14e3b967dca:-74b6" ordering="1" parent="2a1dd706:14e3b967dca:-7a6a" style="CommandPort;align=center;verticalAlign=bottom;spacing=10.0;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><BasicBlock dependsOnT="1" id="-24cb8801:14e3bac19be:-6fc6" interfaceFunctionName="CLR" ordering="7" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="csslti4" simulationFunctionType="C_OR_FORTRAN" style="CLR;flip=false;mirror=false"><ScilabString as="exprs" height="2" width="1"><data column="0" line="0" value="1"/><data column="0" line="1" value="s^2"/></ScilabString><ScilabDouble as="realParameters" height="9" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="-0.0"/><data column="0" line="2" realPart="1.0"/><data column="0" line="3" realPart="-0.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="1.0"/><data column="0" line="6" realPart="1.0"/><data column="0" line="7" realPart="0.0"/><data column="0" line="8" realPart="0.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="state" height="2" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="100.0" x="620.0" y="140.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-24cb8801:14e3bac19be:-6fc5" ordering="1" parent="-24cb8801:14e3bac19be:-6fc6" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-24cb8801:14e3bac19be:-6fc4" ordering="1" parent="-24cb8801:14e3bac19be:-6fc6" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="100.0" y="16.0"/></ExplicitOutputPort><Summation dependsOnU="1" id="-24cb8801:14e3bac19be:-6fc3" interfaceFunctionName="SUMMATION" ordering="8" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="summation" simulationFunctionType="C_OR_FORTRAN" style="SUMMATION;flip=false;mirror=false" value="+"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="[1;-1]"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="2" width="1"><data column="0" line="0" realPart="1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="60.0" width="40.0" x="280.0" y="130.0"/></Summation><ExplicitInputPort dataType="REAL_MATRIX" id="-24cb8801:14e3bac19be:-6fc2" ordering="1" parent="-24cb8801:14e3bac19be:-6fc3" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value="+"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitInputPort dataType="REAL_MATRIX" id="-24cb8801:14e3bac19be:-6fc1" ordering="2" parent="-24cb8801:14e3bac19be:-6fc3" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value="-"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="36.0"/></ExplicitInputPort><ExplicitOutputPort dataType="REAL_MATRIX" id="-24cb8801:14e3bac19be:-6fc0" ordering="1" parent="-24cb8801:14e3bac19be:-6fc3" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="26.0"/></ExplicitOutputPort><BasicBlock blockType="h" id="-24cb8801:14e3bac19be:-6fbf" interfaceFunctionName="CLOCK_c" ordering="9" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList" varName=""><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="1.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4899.0"/><data column="1" line="0" realPart="-4930.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7e5e"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7e5e"/></ScilabString></Array></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="Ts"/><data column="0" line="1" value="0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.1"/><data column="0" line="1" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7e5c"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7e5c"/></ScilabString></Array></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8010.377326666667"/><data column="1" line="0" realPart="-8056.333333333333"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="7.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="5.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7e59"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7e59"/></ScilabString></Array></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="9660.0"/><data column="0" line="2" realPart="8020.877326666667"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-44.0"/><data column="0" line="1" realPart="-9740.0"/><data column="0" line="2" realPart="-8045.333333333333"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="8019.71066"/><data column="0" line="1" realPart="4929.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-8060.333333333333"/><data column="0" line="1" realPart="-4906.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="8022.043993333334"/><data column="0" line="1" realPart="9700.71"/><data column="0" line="2" realPart="9660.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-8060.333333333333"/><data column="0" line="1" realPart="-9610.0"/><data column="0" line="2" realPart="-9610.0"/><data column="0" line="3" realPart="4.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="440.0" y="50.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="-62dd8c9:14e3d8db3dd:-7e0f" ordering="1" parent="-24cb8801:14e3bac19be:-6fbf" style="CommandPort;align=center;verticalAlign=bottom;spacing=10.0;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><mxCell connectable="0" id="-24cb8801:14e3bac19be:-6fbf#identifier" parent="-24cb8801:14e3bac19be:-6fbf" style="noLabel=0;opacity=0" value=" Period, Ts=0.5sec" vertex="1"><mxGeometry as="geometry" relative="1" x="0.5" y="1.1"><mxPoint as="offset" x="68.0" y="-32.0"/></mxGeometry></mxCell><BasicBlock blockType="h" id="-24cb8801:14e3bac19be:-6fb0" interfaceFunctionName="CLOCK_c" ordering="10" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList" varName=""><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="1.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4959.0"/><data column="1" line="0" realPart="-4990.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7e5e"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7e5e"/></ScilabString></Array></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="Ts"/><data column="0" line="1" value="0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.1"/><data column="0" line="1" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7e5c"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7e5c"/></ScilabString></Array></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8109.377326666667"/><data column="1" line="0" realPart="-8155.333333333333"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="7.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="5.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7e59"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7e59"/></ScilabString></Array></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="9780.0"/><data column="0" line="2" realPart="8119.877326666667"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-44.0"/><data column="0" line="1" realPart="-9860.0"/><data column="0" line="2" realPart="-8144.333333333333"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="8118.71066"/><data column="0" line="1" realPart="4989.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-8159.333333333333"/><data column="0" line="1" realPart="-4966.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="8121.043993333334"/><data column="0" line="1" realPart="9820.71"/><data column="0" line="2" realPart="9780.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-8159.333333333333"/><data column="0" line="1" realPart="-9730.0"/><data column="0" line="2" realPart="-9730.0"/><data column="0" line="3" realPart="4.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="730.0" y="10.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="6b0a3509:14e3d9586f3:-7eea" ordering="1" parent="-24cb8801:14e3bac19be:-6fb0" style="CommandPort;align=center;verticalAlign=bottom;spacing=10.0;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><SplitBlock id="-24cb8801:14e3bac19be:-6f72" ordering="11" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="227.0" y="147.0"/></SplitBlock><ExplicitInputPort dataType="UNKNOW_TYPE" id="-24cb8801:14e3bac19be:-6f71" ordering="1" parent="-24cb8801:14e3bac19be:-6f72" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ExplicitInputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="-24cb8801:14e3bac19be:-6f70" ordering="1" parent="-24cb8801:14e3bac19be:-6f72" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="-24cb8801:14e3bac19be:-6f6f" ordering="2" parent="-24cb8801:14e3bac19be:-6f72" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitLink id="-24cb8801:14e3bac19be:-6f6e" parent="-2dd55334:14dcbdd0183:-7fd3" source="-2dd55334:14dcbdd0183:-7ec7" target="-24cb8801:14e3bac19be:-6f71"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="220.0" y="150.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="-24cb8801:14e3bac19be:-6f6d" parent="-2dd55334:14dcbdd0183:-7fd3" source="-24cb8801:14e3bac19be:-6f70" target="5b2d8361:14e3b7ccef7:-7aa7"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="230.0" y="400.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="-24cb8801:14e3bac19be:-6f73" parent="-2dd55334:14dcbdd0183:-7fd3" source="-24cb8801:14e3bac19be:-6f6f" target="-24cb8801:14e3bac19be:-6fc2"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="280.0" y="150.0"/><mxPoint as="targetPoint" x="230.0" y="150.0"/></mxGeometry></ExplicitLink><BasicBlock blockType="d" dependsOnU="1" id="-24cb8801:14e3bac19be:-6372" interfaceFunctionName="DLR" ordering="12" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="dsslti4" simulationFunctionType="C_OR_FORTRAN" style="DLR;flip=false;mirror=false"><ScilabString as="exprs" height="2" width="1"><data column="0" line="0" value="- 0.3645 + 0.4455*z"/><data column="0" line="1" value="z"/></ScilabString><ScilabDouble as="realParameters" height="4" width="1"><data column="0" line="0" realPart="-0.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="-0.3645"/><data column="0" line="3" realPart="0.4455"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="dState" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="190.0" x="360.0" y="140.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="6b0a3509:14e3d9586f3:-7f0a" ordering="1" parent="-24cb8801:14e3bac19be:-6372" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="6b0a3509:14e3d9586f3:-7f09" ordering="1" parent="-24cb8801:14e3bac19be:-6372" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="190.0" y="16.0"/></ExplicitOutputPort><ControlPort dataType="UNKNOW_TYPE" id="6b0a3509:14e3d9586f3:-7f08" ordering="1" parent="-24cb8801:14e3bac19be:-6372" style="ControlPort;align=center;verticalAlign=top;spacing=10.0;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="96.0" y="-8.0"/></ControlPort><ExplicitLink id="-24cb8801:14e3bac19be:-636a" parent="-2dd55334:14dcbdd0183:-7fd3" source="6b0a3509:14e3d9586f3:-7f09" target="-24cb8801:14e3bac19be:-6fc5"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="550.0" y="150.0"/><mxPoint as="targetPoint" x="620.0" y="160.0"/></mxGeometry></ExplicitLink><ExplicitLink id="-24cb8801:14e3bac19be:-6369" parent="-2dd55334:14dcbdd0183:-7fd3" source="-24cb8801:14e3bac19be:-6fc0" target="6b0a3509:14e3d9586f3:-7f0a"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="360.0" y="150.0"/><mxPoint as="targetPoint" x="330.0" y="160.0"/></mxGeometry></ExplicitLink><CommandControlLink id="-24cb8801:14e3bac19be:-6366" parent="-2dd55334:14dcbdd0183:-7fd3" source="-62dd8c9:14e3d8db3dd:-7e0f" target="6b0a3509:14e3d9586f3:-7f08"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="460.0" y="90.0"/><mxPoint as="targetPoint" x="460.0" y="120.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="460.0" y="120.0"/></Array></mxGeometry></CommandControlLink><BasicBlock dependsOnU="1" id="-7f3f8309:16686c89bf7:-74fd" interfaceFunctionName="CSCOPE" ordering="13" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="cscope" simulationFunctionType="C_OR_FORTRAN" style="CSCOPE;mirror=true"><ScilabString as="exprs" height="10" width="1"><data column="0" line="0" value="1 3 5 7 9 11 13 15"/><data column="0" line="1" value="-1"/><data column="0" line="2" value="[]"/><data column="0" line="3" value="[600;400]"/><data column="0" line="4" value="-2"/><data column="0" line="5" value="2"/><data column="0" line="6" value="30"/><data column="0" line="7" value="20"/><data column="0" line="8" value="0"/><data column="0" line="9" value=""/></ScilabString><ScilabDouble as="realParameters" height="4" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="-2.0"/><data column="0" line="2" realPart="2.0"/><data column="0" line="3" realPart="30.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="15" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="1.0"/><data column="0" line="4" realPart="3.0"/><data column="0" line="5" realPart="5.0"/><data column="0" line="6" realPart="7.0"/><data column="0" line="7" realPart="9.0"/><data column="0" line="8" realPart="11.0"/><data column="0" line="9" realPart="13.0"/><data column="0" line="10" realPart="15.0"/><data column="0" line="11" realPart="-1.0"/><data column="0" line="12" realPart="-1.0"/><data column="0" line="13" realPart="600.0"/><data column="0" line="14" realPart="400.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="730.0" y="330.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="-7f3f8309:16686c89bf7:-7336" ordering="1" parent="-7f3f8309:16686c89bf7:-74fd" style="ExplicitInputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=180" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitInputPort><ControlPort dataType="UNKNOW_TYPE" id="-7f3f8309:16686c89bf7:-7335" ordering="1" parent="-7f3f8309:16686c89bf7:-74fd" style="ControlPort;align=center;verticalAlign=top;spacing=10.0;rotation=90"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><BasicBlock dependsOnU="1" id="-7f3f8309:16686c89bf7:-74f7" interfaceFunctionName="CSCOPE" ordering="14" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="cscope" simulationFunctionType="C_OR_FORTRAN" style="CSCOPE;mirror=true"><ScilabString as="exprs" height="10" width="1"><data column="0" line="0" value="1 3 5 7 9 11 13 15"/><data column="0" line="1" value="-1"/><data column="0" line="2" value="[]"/><data column="0" line="3" value="[600;400]"/><data column="0" line="4" value="-2"/><data column="0" line="5" value="2"/><data column="0" line="6" value="30"/><data column="0" line="7" value="20"/><data column="0" line="8" value="0"/><data column="0" line="9" value=""/></ScilabString><ScilabDouble as="realParameters" height="4" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="-2.0"/><data column="0" line="2" realPart="2.0"/><data column="0" line="3" realPart="30.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="15" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="1.0"/><data column="0" line="4" realPart="3.0"/><data column="0" line="5" realPart="5.0"/><data column="0" line="6" realPart="7.0"/><data column="0" line="7" realPart="9.0"/><data column="0" line="8" realPart="11.0"/><data column="0" line="9" realPart="13.0"/><data column="0" line="10" realPart="15.0"/><data column="0" line="11" realPart="-1.0"/><data column="0" line="12" realPart="-1.0"/><data column="0" line="13" realPart="600.0"/><data column="0" line="14" realPart="400.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="730.0" y="90.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="-7f3f8309:16686c89bf7:-7339" ordering="1" parent="-7f3f8309:16686c89bf7:-74f7" style="ExplicitInputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=180" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitInputPort><ControlPort dataType="UNKNOW_TYPE" id="-7f3f8309:16686c89bf7:-7338" ordering="1" parent="-7f3f8309:16686c89bf7:-74f7" style="ControlPort;align=center;verticalAlign=top;spacing=10.0;rotation=90"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><CommandControlLink id="-7f3f8309:16686c89bf7:-74ec" parent="-2dd55334:14dcbdd0183:-7fd3" source="2a1dd706:14e3b967dca:-74b6" target="-7f3f8309:16686c89bf7:-7335"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="750.0" y="290.0"/><mxPoint as="targetPoint" x="750.0" y="320.0"/></mxGeometry></CommandControlLink><SplitBlock id="-7f3f8309:16686c89bf7:-74ea" ordering="15" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionType="DEFAULT"><mxGeometry as="geometry" height="7.0" width="7.0" x="777.0" y="407.0"/></SplitBlock><ExplicitInputPort dataType="UNKNOW_TYPE" id="-7f3f8309:16686c89bf7:-74e9" ordering="1" parent="-7f3f8309:16686c89bf7:-74ea" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ExplicitInputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="-7f3f8309:16686c89bf7:-74e8" ordering="1" parent="-7f3f8309:16686c89bf7:-74ea" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="-7f3f8309:16686c89bf7:-74e7" ordering="2" parent="-7f3f8309:16686c89bf7:-74ea" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitLink id="-7f3f8309:16686c89bf7:-74e6" parent="-2dd55334:14dcbdd0183:-7fd3" source="5b2d8361:14e3b7ccef7:-7aa9" target="-7f3f8309:16686c89bf7:-74e9"><mxGeometry as="geometry"><Array as="points" scilabClass=""/></mxGeometry></ExplicitLink><ExplicitLink id="-7f3f8309:16686c89bf7:-74e5" parent="-2dd55334:14dcbdd0183:-7fd3" source="-7f3f8309:16686c89bf7:-74e8" target="5b2d8361:14e3b7ccef7:-7aa6"><mxGeometry as="geometry"><Array as="points" scilabClass=""><mxPoint x="780.0" y="450.0"/><mxPoint x="780.0" y="470.0"/><mxPoint x="250.0" y="470.0"/><mxPoint x="250.0" y="420.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="-7f3f8309:16686c89bf7:-74eb" parent="-2dd55334:14dcbdd0183:-7fd3" source="-7f3f8309:16686c89bf7:-74e7" target="-7f3f8309:16686c89bf7:-7336"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="770.0" y="350.0"/><mxPoint as="targetPoint" x="780.0" y="410.0"/><Array as="points" scilabClass=""><mxPoint x="870.0" y="410.0"/><mxPoint x="870.0" y="350.0"/></Array></mxGeometry></ExplicitLink><CommandControlLink id="-7f3f8309:16686c89bf7:-74e0" parent="-2dd55334:14dcbdd0183:-7fd3" source="6b0a3509:14e3d9586f3:-7eea" target="-7f3f8309:16686c89bf7:-7338"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="750.0" y="50.0"/><mxPoint as="targetPoint" x="750.0" y="80.0"/></mxGeometry></CommandControlLink><SplitBlock id="-7f3f8309:16686c89bf7:-74de" ordering="16" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionType="DEFAULT"><mxGeometry as="geometry" height="7.0" width="7.0" x="777.0" y="157.0"/></SplitBlock><ExplicitInputPort dataType="UNKNOW_TYPE" id="-7f3f8309:16686c89bf7:-74dd" ordering="1" parent="-7f3f8309:16686c89bf7:-74de" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ExplicitInputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="-7f3f8309:16686c89bf7:-74dc" ordering="1" parent="-7f3f8309:16686c89bf7:-74de" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="-7f3f8309:16686c89bf7:-74db" ordering="2" parent="-7f3f8309:16686c89bf7:-74de" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitLink id="-7f3f8309:16686c89bf7:-74da" parent="-2dd55334:14dcbdd0183:-7fd3" source="-24cb8801:14e3bac19be:-6fc4" target="-7f3f8309:16686c89bf7:-74dd"><mxGeometry as="geometry"><Array as="points" scilabClass=""/></mxGeometry></ExplicitLink><ExplicitLink id="-7f3f8309:16686c89bf7:-74d9" parent="-2dd55334:14dcbdd0183:-7fd3" source="-7f3f8309:16686c89bf7:-74dc" target="-24cb8801:14e3bac19be:-6fc1"><mxGeometry as="geometry"><Array as="points" scilabClass=""><mxPoint x="780.0" y="200.0"/><mxPoint x="780.0" y="220.0"/><mxPoint x="250.0" y="220.0"/><mxPoint x="250.0" y="170.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="-7f3f8309:16686c89bf7:-74df" parent="-2dd55334:14dcbdd0183:-7fd3" source="-7f3f8309:16686c89bf7:-74db" target="-7f3f8309:16686c89bf7:-7339"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="770.0" y="110.0"/><mxPoint as="targetPoint" x="780.0" y="160.0"/><Array as="points" scilabClass=""><mxPoint x="810.0" y="160.0"/><mxPoint x="810.0" y="110.0"/></Array></mxGeometry></ExplicitLink></root></mxGraphModel><mxCell as="defaultParent" id="-2dd55334:14dcbdd0183:-7fd3" parent="-2dd55334:14dcbdd0183:-7fd2"/></XcosDiagram>
\ No newline at end of file diff --git a/Working_Examples/3432/CH9/EX9.11/DEPENDENCIES/fig_settings.sci b/Working_Examples/3432/CH9/EX9.11/DEPENDENCIES/fig_settings.sci new file mode 100755 index 0000000..5d5e7d4 --- /dev/null +++ b/Working_Examples/3432/CH9/EX9.11/DEPENDENCIES/fig_settings.sci @@ -0,0 +1,9 @@ +//------------------------------------------------------------------
+//figure handel settings
+f=get("current_figure"); //Current figure handle
+f.background=8; //make the figure window background white
+l=f.children(1);
+l.background=8 ;//make the text background white
+id=color('grey');
+xgrid(id);
+//------------------------------------------------------------------
diff --git a/Working_Examples/3432/CH9/EX9.11/Ex9_11.sce b/Working_Examples/3432/CH9/EX9.11/Ex9_11.sce new file mode 100755 index 0000000..cbb8975 --- /dev/null +++ b/Working_Examples/3432/CH9/EX9.11/Ex9_11.sce @@ -0,0 +1,60 @@ +//Example 9.11
+//Describing Function for a relay with hysteresis nonlinearity.
+
+xdel(winsid())//close all graphics Windows
+clear;
+clc;
+//------------------------------------------------------------------
+//Response of the saturation noninearity to sinusoidal input
+figure;
+importXcosDiagram(".\Ex9_11_model.xcos")
+xcos_simulate(scs_m,4);
+scs_m.props.context
+plot(yt.time,yt.values(:,1),'r--')
+plot(yt.time,yt.values(:,2),'b')
+
+xlabel('Time (sec.)');
+ylabel('Amplitude');
+title("Relay with hysteresis nonlinearity output to sinusoidal...
+ input",'fontsize',3);
+exec .\fig_settings.sci; //custom script for setting figure properties
+zoom_rect([0 -1.2 5 1.2])
+//------------------------------------------------------------------
+////Describing Functin for relay with hysteresis nonlinearity.
+h=0.1;
+N=1;
+i=1;
+
+for a=0.1:0.025:1
+ if a<h then
+ Keq(i,1)=0;
+ ro(i,1)=0;
+ theta(i,1)=0
+ else
+ Keq(i,1)=4*N/(%pi*a)*(sqrt(1-(h/a)^2)-%i*h/a)
+ [r th]=polar(Keq(i,1));
+ ro(i,1)=r; //magnitude
+ theta(i,1)=clean(th); //angle in radians
+ end
+ i=i+1;
+end
+
+a=0.1:0.025:1
+a=a';
+figure,
+
+subplot(2,1,1), plot(a,ro)
+xlabel('$a$');
+ylabel(['Magnitude', '$|K_{eq}|$']);
+
+xset('font size',3);
+exec .\fig_settings.sci; //custom script for setting figure properties
+title("Describing Functin for relay with hysteresis nonlinearity...
+ with h=0.1 and N=1",'fontsize',3);
+
+subplot(2,1,2), plot(a,theta*180/%pi)
+xlabel('$a$');
+ylabel(['Phase', '$ \angle K_{eq}$','deg.']);
+xset('font size',3);
+exec .\fig_settings.sci; //custom script for setting figure properties
+//------------------------------------------------------------------
diff --git a/Working_Examples/3432/CH9/EX9.11/Ex9_11_f0.pdf b/Working_Examples/3432/CH9/EX9.11/Ex9_11_f0.pdf Binary files differnew file mode 100755 index 0000000..e1df85c --- /dev/null +++ b/Working_Examples/3432/CH9/EX9.11/Ex9_11_f0.pdf diff --git a/Working_Examples/3432/CH9/EX9.11/Ex9_11_f1.pdf b/Working_Examples/3432/CH9/EX9.11/Ex9_11_f1.pdf Binary files differnew file mode 100755 index 0000000..ab8ab58 --- /dev/null +++ b/Working_Examples/3432/CH9/EX9.11/Ex9_11_f1.pdf diff --git a/Working_Examples/3432/CH9/EX9.11/Ex9_11_model.xcos b/Working_Examples/3432/CH9/EX9.11/Ex9_11_model.xcos new file mode 100755 index 0000000..efe6493 --- /dev/null +++ b/Working_Examples/3432/CH9/EX9.11/Ex9_11_model.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" finalIntegrationTime="5.0" title="Ex9_11_model"><!--Xcos - 1.0 - scilab-5.5.2 - 20160406 2040--><mxGraphModel as="model"><root><mxCell id="-2dd55334:14dcbdd0183:-7fd2"/><mxCell id="-2dd55334:14dcbdd0183:-7fd3" parent="-2dd55334:14dcbdd0183:-7fd2"/><BasicBlock blockType="h" id="-2dd55334:14dcbdd0183:-7e6e" interfaceFunctionName="CLOCK_c" ordering="1" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="1.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4439.0"/><data column="1" line="0" realPart="-4470.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7e5e"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7e5e"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.1"/><data column="0" line="1" value="0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.1"/><data column="0" line="1" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7e5c"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7e5c"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7251.377326666667"/><data column="1" line="0" realPart="-7297.333333333333"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="7.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="5.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7e59"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7e59"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="8740.0"/><data column="0" line="2" realPart="7261.877326666667"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-44.0"/><data column="0" line="1" realPart="-8820.0"/><data column="0" line="2" realPart="-7286.333333333333"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="7260.71066"/><data column="0" line="1" realPart="4469.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-7301.333333333333"/><data column="0" line="1" realPart="-4446.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="7263.043993333334"/><data column="0" line="1" realPart="8780.71"/><data column="0" line="2" realPart="8740.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-7301.333333333333"/><data column="0" line="1" realPart="-8690.0"/><data column="0" line="2" realPart="-8690.0"/><data column="0" line="3" realPart="4.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="350.0" y="80.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="-2dd55334:14dcbdd0183:-7d27" ordering="1" parent="-2dd55334:14dcbdd0183:-7e6e" style="CommandPort;align=center;verticalAlign=bottom;spacing=10.0;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><TextBlock id="-6cad6c1c:14dd22d9551:-7f7a" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=18;flip=false;mirror=false" value="Model for Ex9_11"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="Model for Ex9_11"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="Model for Ex9_11"/></ScilabString><mxGeometry as="geometry" height="40.0" width="160.0" x="90.0" y="20.0"/></TextBlock><BasicBlock blockType="h" id="-76454188:14e1ef4db88:-7d58" interfaceFunctionName="ENDBLK" ordering="2" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="ENDBLK;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="ENDBLK"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-4"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=" "/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="5"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"END_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="END_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="scicosexit"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-76454188:14e1ef4db88:-7d55"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="END_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-76454188:14e1ef4db88:-7d55"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="6" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="4660.0"/><data column="0" line="2" realPart="4629.73333"/><data column="0" line="3" realPart="4629.73333"/><data column="0" line="4" realPart="4660.0"/><data column="0" line="5" realPart="60.0"/></ScilabDouble><ScilabDouble height="6" width="1"><data column="0" line="0" realPart="-44.0"/><data column="0" line="1" realPart="-4694.66666"/><data column="0" line="2" realPart="-4694.66666"/><data column="0" line="3" realPart="-4623.53333"/><data column="0" line="4" realPart="-4623.53333"/><data column="0" line="5" realPart="4.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="290.0" y="80.0"/></BasicBlock><BasicBlock dependsOnU="1" id="11757ea3:14e1f326925:-693d" interfaceFunctionName="MUX_f" ordering="3" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="mux" simulationFunctionType="TYPE_1" style="MUX_f;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="2"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="10.0" x="260.0" y="170.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="11757ea3:14e1f326925:-693c" ordering="1" parent="11757ea3:14e1f326925:-693d" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ExplicitInputPort><ExplicitInputPort dataColumns="1" dataLines="-2" dataType="REAL_MATRIX" id="11757ea3:14e1f326925:-693b" ordering="2" parent="11757ea3:14e1f326925:-693d" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="26.0"/></ExplicitInputPort><ExplicitOutputPort dataColumns="1" dataLines="0" dataType="REAL_MATRIX" id="11757ea3:14e1f326925:-693a" ordering="1" parent="11757ea3:14e1f326925:-693d" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="10.0" y="16.0"/></ExplicitOutputPort><BasicBlock dependsOnT="1" id="11757ea3:14e1f326925:-692b" interfaceFunctionName="GENSIN_f" ordering="4" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="gensin" simulationFunctionType="DEFAULT" style="GENSIN_f;flip=false;mirror=false"><ScilabString as="exprs" height="3" width="1"><data column="0" line="0" value="1"/><data column="0" line="1" value="2"/><data column="0" line="2" value="0"/></ScilabString><ScilabDouble as="realParameters" height="3" width="1"><data column="0" line="0" realPart="1.0"/><data column="0" line="1" realPart="2.0"/><data column="0" line="2" realPart="0.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="60.0" x="30.0" y="180.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="2b826298:14e1fda5c1e:-7f82" ordering="1" parent="11757ea3:14e1f326925:-692b" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="60.0" y="16.0"/></ExplicitOutputPort><TextBlock id="11757ea3:14e1f326925:-689c" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=18;flip=false;mirror=false" value="Relay with Hysteresis Nonlinearity"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="Relay with Hysteresis Nonlinearity"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="Relay with Hysteresis Nonlinearity"/></ScilabString><mxGeometry as="geometry" height="40.0" width="290.0" x="110.0" y="270.0"/></TextBlock><BasicBlock dependsOnU="1" id="-1d25cb3b:14e1fbac8b8:-7e9f" interfaceFunctionName="HYSTHERESIS" ordering="5" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="hystheresis" simulationFunctionType="C_OR_FORTRAN" style="HYSTHERESIS;flip=false;mirror=false"><ScilabString as="exprs" height="5" width="1"><data column="0" line="0" value="0.1"/><data column="0" line="1" value="-0.1"/><data column="0" line="2" value="1"/><data column="0" line="3" value="-1"/><data column="0" line="4" value="0"/></ScilabString><ScilabDouble as="realParameters" height="4" width="1"><data column="0" line="0" realPart="0.1"/><data column="0" line="1" realPart="-0.1"/><data column="0" line="2" realPart="1.0"/><data column="0" line="3" realPart="-1.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="170.0" y="180.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-4393351c:14e1fd22f52:-7e8b" ordering="1" parent="-1d25cb3b:14e1fbac8b8:-7e9f" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-4393351c:14e1fd22f52:-7e8a" ordering="1" parent="-1d25cb3b:14e1fbac8b8:-7e9f" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ExplicitLink id="-1d25cb3b:14e1fbac8b8:-7e98" parent="-2dd55334:14dcbdd0183:-7fd3" source="-4393351c:14e1fd22f52:-7e8a" target="11757ea3:14e1f326925:-693b"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="200.0" y="200.0"/><mxPoint as="targetPoint" x="260.0" y="200.0"/></mxGeometry></ExplicitLink><SplitBlock id="-1d25cb3b:14e1fbac8b8:-7e96" ordering="6" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="117.0" y="197.0"/></SplitBlock><ExplicitInputPort dataType="UNKNOW_TYPE" id="-1d25cb3b:14e1fbac8b8:-7e95" ordering="1" parent="-1d25cb3b:14e1fbac8b8:-7e96" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ExplicitInputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="-1d25cb3b:14e1fbac8b8:-7e94" ordering="1" parent="-1d25cb3b:14e1fbac8b8:-7e96" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="-1d25cb3b:14e1fbac8b8:-7e93" ordering="2" parent="-1d25cb3b:14e1fbac8b8:-7e96" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitLink id="-1d25cb3b:14e1fbac8b8:-7e92" parent="-2dd55334:14dcbdd0183:-7fd3" source="2b826298:14e1fda5c1e:-7f82" target="-1d25cb3b:14e1fbac8b8:-7e95"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ExplicitLink><ExplicitLink id="-1d25cb3b:14e1fbac8b8:-7e91" parent="-2dd55334:14dcbdd0183:-7fd3" source="-1d25cb3b:14e1fbac8b8:-7e94" target="11757ea3:14e1f326925:-693c"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="120.0" y="150.0"/><mxPoint x="220.0" y="150.0"/><mxPoint x="220.0" y="180.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="-1d25cb3b:14e1fbac8b8:-7e97" parent="-2dd55334:14dcbdd0183:-7fd3" source="-1d25cb3b:14e1fbac8b8:-7e93" target="-4393351c:14e1fd22f52:-7e8b"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="160.0" y="200.0"/><mxPoint as="targetPoint" x="120.0" y="200.0"/></mxGeometry></ExplicitLink><BasicBlock dependsOnU="1" id="10b0d773:1669a47c43a:-7a4a" interfaceFunctionName="CSCOPE" ordering="7" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="cscope" simulationFunctionType="C_OR_FORTRAN" style="CSCOPE"><ScilabString as="exprs" height="10" width="1"><data column="0" line="0" value="1 3 5 7 9 11 13 15"/><data column="0" line="1" value="-1"/><data column="0" line="2" value="[]"/><data column="0" line="3" value="[600;400]"/><data column="0" line="4" value="-2"/><data column="0" line="5" value="2"/><data column="0" line="6" value="5"/><data column="0" line="7" value="20"/><data column="0" line="8" value="0"/><data column="0" line="9" value=""/></ScilabString><ScilabDouble as="realParameters" height="4" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="-2.0"/><data column="0" line="2" realPart="2.0"/><data column="0" line="3" realPart="5.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="15" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="1.0"/><data column="0" line="4" realPart="3.0"/><data column="0" line="5" realPart="5.0"/><data column="0" line="6" realPart="7.0"/><data column="0" line="7" realPart="9.0"/><data column="0" line="8" realPart="11.0"/><data column="0" line="9" realPart="13.0"/><data column="0" line="10" realPart="15.0"/><data column="0" line="11" realPart="-1.0"/><data column="0" line="12" realPart="-1.0"/><data column="0" line="13" realPart="600.0"/><data column="0" line="14" realPart="400.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="350.0" y="170.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="10b0d773:1669a47c43a:-7a18" ordering="1" parent="10b0d773:1669a47c43a:-7a4a" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ControlPort dataType="UNKNOW_TYPE" id="10b0d773:1669a47c43a:-7a17" ordering="1" parent="10b0d773:1669a47c43a:-7a4a" style="ControlPort;align=center;verticalAlign=top;spacing=10.0;rotation=90"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><ExplicitLink id="10b0d773:1669a47c43a:-7a47" parent="-2dd55334:14dcbdd0183:-7fd3" source="11757ea3:14e1f326925:-693a" target="10b0d773:1669a47c43a:-7a18"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="270.0" y="190.0"/><mxPoint as="targetPoint" x="340.0" y="190.0"/><Array as="points" scilabClass=""><mxPoint x="350.0" y="190.0"/></Array></mxGeometry></ExplicitLink><CommandControlLink id="10b0d773:1669a47c43a:-7a46" parent="-2dd55334:14dcbdd0183:-7fd3" source="-2dd55334:14dcbdd0183:-7d27" target="10b0d773:1669a47c43a:-7a17"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="370.0" y="120.0"/><mxPoint as="targetPoint" x="370.0" y="170.0"/></mxGeometry></CommandControlLink></root></mxGraphModel><mxCell as="defaultParent" id="-2dd55334:14dcbdd0183:-7fd3" parent="-2dd55334:14dcbdd0183:-7fd2"/></XcosDiagram>
\ No newline at end of file diff --git a/Working_Examples/3432/CH9/EX9.12/DEPENDENCIES/fig_settings.sci b/Working_Examples/3432/CH9/EX9.12/DEPENDENCIES/fig_settings.sci new file mode 100755 index 0000000..5d5e7d4 --- /dev/null +++ b/Working_Examples/3432/CH9/EX9.12/DEPENDENCIES/fig_settings.sci @@ -0,0 +1,9 @@ +//------------------------------------------------------------------
+//figure handel settings
+f=get("current_figure"); //Current figure handle
+f.background=8; //make the figure window background white
+l=f.children(1);
+l.background=8 ;//make the text background white
+id=color('grey');
+xgrid(id);
+//------------------------------------------------------------------
diff --git a/Working_Examples/3432/CH9/EX9.12/Ex9_12.sce b/Working_Examples/3432/CH9/EX9.12/Ex9_12.sce new file mode 100755 index 0000000..2457c73 --- /dev/null +++ b/Working_Examples/3432/CH9/EX9.12/Ex9_12.sce @@ -0,0 +1,75 @@ +//Example 9.12
+//Conditionally stable system.
+xdel(winsid())//close all graphics Windows
+clear;
+clc;
+//------------------------------------------------------------------
+//System transfer function and its root locus
+
+s=poly(0,'s');
+num=0.1;
+den=(s^2+0.2*s+1)*(s);
+Gs=syslin('c',num/den)
+
+//Nyquist plot of the system
+nyquist(Gs,0.035,10)
+title("Nyquist plot and describing function to determine limit...
+ cycle",'fontsize',3);
+
+f=gca();
+f.x_location = "origin"
+f.y_location = "origin"
+h=legend('');
+h.visible = "off"
+xset("color",2);
+
+// Nyquist Plot of Describing Function for saturation nonlinearity.
+omegat=0.05:0.05:%pi;
+a=sin(omegat);
+N=0.1;
+k=1;
+
+Keq=2/%pi*(k*asin(N ./a /k)+N ./a .* sqrt(1-(N/k ./a) .^2));
+DF_nyq=-1 ./Keq;
+
+plot(DF_nyq,zeros(1,length(DF_nyq)),'m-.')
+exec .\fig_settings.sci; //custom script for setting figure properties
+zoom_rect([-0.8 -0.5 0.2 0.5])
+
+//limit cycle points
+plot(-0.5,0,'bo');
+
+xset('font size',3)
+xstring(-0.78,0.08,"limit cycle point");
+xarrows([-0.6;-0.52],[0.1;0.02],-1)
+xstring(-0.62,-0.22,"$-\frac{1}{K_{eq}$");
+xarrows([-0.55;-0.55],[-0.1;0],-1)
+//------------------------------------------------------------------
+//Describing Functin for saturation nonlinearity.
+Keq=[]
+i=1;
+
+for a=0:0.2:10
+ if k*a/N > 1 then
+ Keq(i,1)=2/%pi*(k*asin(N/a/k)+N/a*sqrt(1-(N/k/a)^2))
+ else
+ Keq(i,1)=k
+ end
+ i=i+1;
+end
+
+a=0:0.2:10;
+a=a';
+
+figure,
+plot(a,Keq)
+xlabel('$a$');
+ylabel('$K_{eq}$');
+
+xset('font size',3);
+title("Describing Function for a saturation nonlinearity...
+ with N=0.1 and k=1",'fontsize',3);
+exec .\fig_settings.sci; //custom script for setting figure properties
+zoom_rect([0 0 10 1.1])
+//------------------------------------------------------------------
+
diff --git a/Working_Examples/3432/CH9/EX9.12/Ex9_12_f0.pdf b/Working_Examples/3432/CH9/EX9.12/Ex9_12_f0.pdf Binary files differnew file mode 100755 index 0000000..dfc320e --- /dev/null +++ b/Working_Examples/3432/CH9/EX9.12/Ex9_12_f0.pdf diff --git a/Working_Examples/3432/CH9/EX9.12/Ex9_12_f1.pdf b/Working_Examples/3432/CH9/EX9.12/Ex9_12_f1.pdf Binary files differnew file mode 100755 index 0000000..465e693 --- /dev/null +++ b/Working_Examples/3432/CH9/EX9.12/Ex9_12_f1.pdf diff --git a/Working_Examples/3432/CH9/EX9.13/DEPENDENCIES/fig_settings.sci b/Working_Examples/3432/CH9/EX9.13/DEPENDENCIES/fig_settings.sci new file mode 100755 index 0000000..5d5e7d4 --- /dev/null +++ b/Working_Examples/3432/CH9/EX9.13/DEPENDENCIES/fig_settings.sci @@ -0,0 +1,9 @@ +//------------------------------------------------------------------
+//figure handel settings
+f=get("current_figure"); //Current figure handle
+f.background=8; //make the figure window background white
+l=f.children(1);
+l.background=8 ;//make the text background white
+id=color('grey');
+xgrid(id);
+//------------------------------------------------------------------
diff --git a/Working_Examples/3432/CH9/EX9.13/Ex9_13.sce b/Working_Examples/3432/CH9/EX9.13/Ex9_13.sce new file mode 100755 index 0000000..8857fc7 --- /dev/null +++ b/Working_Examples/3432/CH9/EX9.13/Ex9_13.sce @@ -0,0 +1,54 @@ +//Example 9.13
+//Determination of stability with a hysteresis nonlinearity.
+
+xdel(winsid())//close all graphics Windows
+clear;
+clc;
+//------------------------------------------------------------------
+//System Model
+s=poly(0,'s');
+num=1;
+den=(s^2+s);
+Gs=syslin('c',num/den);
+//------------------------------------------------------------------
+//Nyquist Plot of the system
+nyquist(Gs,0.25,3)
+
+// Nyquist Plot of Describing Function for hysteresis nonlinearity
+N=1;
+h=0.1;
+i=1;
+
+for omegat=0:0.05:%pi-0.1;
+ a=sin(omegat);
+ DF_nyq(i,1)=-%pi/4/N*(sqrt(a^2-h^2) + h * %i)
+ i=i+1;
+end
+
+plot(real(DF_nyq),imag(DF_nyq),'m-.')
+exec .\fig_settings.sci; // custom script for setting figure properties
+zoom_rect([-0.3 -0.3 0 0.3])
+title('Nyquist plot of system and describing function to...
+ determine limit cycle','fontsize',3)
+
+//limit cycle points
+plot(-0.1714,-0.0785,'ro');
+xstring(-0.25,0,"limit cycle point");
+xarrows([-0.2;-0.172],[0;-0.077],-1);
+
+//------------------------------------------------------------------
+//Response of the system
+K=2;
+r=1
+figure(1);
+importXcosDiagram(".\Ex9_13_model.xcos")
+xcos_simulate(scs_m,4);
+scs_m.props.context
+plot(yt.time,yt.values)
+
+xlabel('Time (sec.)');
+ylabel('Output, y');
+title("Step response displaying limit cycle oscillations",'fontsize',3);
+exec .\fig_settings.sci; //custom script for setting figure properties
+//------------------------------------------------------------------
+
diff --git a/Working_Examples/3432/CH9/EX9.13/Ex9_13_f0.pdf b/Working_Examples/3432/CH9/EX9.13/Ex9_13_f0.pdf Binary files differnew file mode 100755 index 0000000..ee72b27 --- /dev/null +++ b/Working_Examples/3432/CH9/EX9.13/Ex9_13_f0.pdf diff --git a/Working_Examples/3432/CH9/EX9.13/Ex9_13_f1.pdf b/Working_Examples/3432/CH9/EX9.13/Ex9_13_f1.pdf Binary files differnew file mode 100755 index 0000000..8fe9814 --- /dev/null +++ b/Working_Examples/3432/CH9/EX9.13/Ex9_13_f1.pdf diff --git a/Working_Examples/3432/CH9/EX9.13/Ex9_13_model.xcos b/Working_Examples/3432/CH9/EX9.13/Ex9_13_model.xcos new file mode 100755 index 0000000..725ce8d --- /dev/null +++ b/Working_Examples/3432/CH9/EX9.13/Ex9_13_model.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" finalIntegrationTime="50.0" title="Ex9_13_model"><!--Xcos - 1.0 - scilab-5.5.2 - 20160406 2040--><mxGraphModel as="model"><root><mxCell id="-2dd55334:14dcbdd0183:-7fd2"/><mxCell id="-2dd55334:14dcbdd0183:-7fd3" parent="-2dd55334:14dcbdd0183:-7fd2"/><BasicBlock dependsOnT="1" id="-2dd55334:14dcbdd0183:-7f98" interfaceFunctionName="CLR" ordering="1" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="csslti4" simulationFunctionType="C_OR_FORTRAN" style="CLR;flip=false;mirror=false"><ScilabString as="exprs" height="2" width="1"><data column="0" line="0" value="1"/><data column="0" line="1" value="s^2+s"/></ScilabString><ScilabDouble as="realParameters" height="9" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="-0.0"/><data column="0" line="2" realPart="1.0"/><data column="0" line="3" realPart="-1.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="1.0"/><data column="0" line="6" realPart="1.0"/><data column="0" line="7" realPart="0.0"/><data column="0" line="8" realPart="0.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="state" height="2" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="90.0" x="390.0" y="170.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-4982527b:14e23f46651:-7d81" ordering="1" parent="-2dd55334:14dcbdd0183:-7f98" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-4982527b:14e23f46651:-7d80" ordering="1" parent="-2dd55334:14dcbdd0183:-7f98" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="90.0" y="16.0"/></ExplicitOutputPort><BasicBlock blockType="h" id="-2dd55334:14dcbdd0183:-7e6e" interfaceFunctionName="CLOCK_c" ordering="2" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="1.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="3939.0"/><data column="1" line="0" realPart="-3970.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7e5e"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7e5e"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.1"/><data column="0" line="1" value="0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.1"/><data column="0" line="1" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7e5c"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7e5c"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="6426.377326666667"/><data column="1" line="0" realPart="-6472.333333333333"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="7.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="5.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7e59"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7e59"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="7740.0"/><data column="0" line="2" realPart="6436.877326666667"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-44.0"/><data column="0" line="1" realPart="-7820.0"/><data column="0" line="2" realPart="-6461.333333333333"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="6435.71066"/><data column="0" line="1" realPart="3969.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-6476.333333333333"/><data column="0" line="1" realPart="-3946.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="6438.043993333334"/><data column="0" line="1" realPart="7780.71"/><data column="0" line="2" realPart="7740.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-6476.333333333333"/><data column="0" line="1" realPart="-7690.0"/><data column="0" line="2" realPart="-7690.0"/><data column="0" line="3" realPart="4.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="570.0" y="20.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="-2dd55334:14dcbdd0183:-7d27" ordering="1" parent="-2dd55334:14dcbdd0183:-7e6e" style="CommandPort;align=center;verticalAlign=bottom;spacing=10.0;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><TextBlock id="-6cad6c1c:14dd22d9551:-7f7a" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=18;flip=false;mirror=false" value="Model for Ex9_13"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="Model for Ex9_13"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="Model for Ex9_13"/></ScilabString><mxGeometry as="geometry" height="40.0" width="160.0" x="170.0" y="20.0"/></TextBlock><Summation dependsOnU="1" id="45c1b0d9:14ddc6fc2af:-7f12" interfaceFunctionName="SUMMATION" ordering="3" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="summation" simulationFunctionType="C_OR_FORTRAN" style="SUMMATION;flip=false;mirror=false" value="+"><ScilabString as="exprs" height="3" width="1"><data column="0" line="0" value="1"/><data column="0" line="1" value="[1;-1]"/><data column="0" line="2" value="0"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="2" width="1"><data column="0" line="0" realPart="1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="60.0" width="40.0" x="180.0" y="160.0"/></Summation><ExplicitInputPort dataType="REAL_MATRIX" id="4a338342:14e1ed0625e:-7aa6" ordering="1" parent="45c1b0d9:14ddc6fc2af:-7f12" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value="+"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitInputPort dataType="REAL_MATRIX" id="4a338342:14e1ed0625e:-7aa5" ordering="2" parent="45c1b0d9:14ddc6fc2af:-7f12" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value="-"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="36.0"/></ExplicitInputPort><ExplicitOutputPort dataType="REAL_MATRIX" id="4a338342:14e1ed0625e:-7aa4" ordering="1" parent="45c1b0d9:14ddc6fc2af:-7f12" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="26.0"/></ExplicitOutputPort><BasicBlock blockType="d" id="3b275bb5:14ddca84679:-75a6" interfaceFunctionName="CONST" ordering="4" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="cstblk4" simulationFunctionType="C_OR_FORTRAN" style="CONST;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="r"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="80.0" y="160.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-76454188:14e1ef4db88:-7e35" ordering="1" parent="3b275bb5:14ddca84679:-75a6" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ExplicitLink id="4a338342:14e1ed0625e:-7a49" parent="-2dd55334:14dcbdd0183:-7fd3" source="-76454188:14e1ef4db88:-7e35" target="4a338342:14e1ed0625e:-7aa6"><mxGeometry as="geometry" x="-40.0"><mxPoint as="sourcePoint" x="50.0" y="180.0"/><mxPoint as="targetPoint" x="120.0" y="180.0"/></mxGeometry></ExplicitLink><BasicBlock blockType="h" id="-76454188:14e1ef4db88:-7d58" interfaceFunctionName="ENDBLK" ordering="5" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="ENDBLK;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="ENDBLK"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-4"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=" "/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="50"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"END_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="END_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="scicosexit"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="50.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-76454188:14e1ef4db88:-7d55"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="END_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-76454188:14e1ef4db88:-7d55"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="6" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="3660.0"/><data column="0" line="2" realPart="3629.73333"/><data column="0" line="3" realPart="3629.73333"/><data column="0" line="4" realPart="3660.0"/><data column="0" line="5" realPart="60.0"/></ScilabDouble><ScilabDouble height="6" width="1"><data column="0" line="0" realPart="-44.0"/><data column="0" line="1" realPart="-3694.66666"/><data column="0" line="2" realPart="-3694.66666"/><data column="0" line="3" realPart="-3623.53333"/><data column="0" line="4" realPart="-3623.53333"/><data column="0" line="5" realPart="4.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="510.0" y="20.0"/></BasicBlock><BasicBlock dependsOnU="1" id="-4982527b:14e23f46651:-7d8a" interfaceFunctionName="HYSTHERESIS" ordering="6" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="hystheresis" simulationFunctionType="C_OR_FORTRAN" style="HYSTHERESIS;flip=false;mirror=false"><ScilabString as="exprs" height="5" width="1"><data column="0" line="0" value="0.1"/><data column="0" line="1" value="-0.1"/><data column="0" line="2" value="1"/><data column="0" line="3" value="-1"/><data column="0" line="4" value="0"/></ScilabString><ScilabDouble as="realParameters" height="4" width="1"><data column="0" line="0" realPart="0.1"/><data column="0" line="1" realPart="-0.1"/><data column="0" line="2" realPart="1.0"/><data column="0" line="3" realPart="-1.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="300.0" y="170.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-4982527b:14e23f46651:-7d89" ordering="1" parent="-4982527b:14e23f46651:-7d8a" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-4982527b:14e23f46651:-7d88" ordering="1" parent="-4982527b:14e23f46651:-7d8a" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ExplicitLink id="-4982527b:14e23f46651:-7d83" parent="-2dd55334:14dcbdd0183:-7fd3" source="-4982527b:14e23f46651:-7d88" target="-4982527b:14e23f46651:-7d81"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="340.0" y="190.0"/><mxPoint as="targetPoint" x="400.0" y="190.0"/></mxGeometry></ExplicitLink><ExplicitLink id="-4982527b:14e23f46651:-7d73" parent="-2dd55334:14dcbdd0183:-7fd3" source="4a338342:14e1ed0625e:-7aa4" target="-4982527b:14e23f46651:-7d89"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="160.0" y="190.0"/><mxPoint as="targetPoint" x="300.0" y="190.0"/></mxGeometry></ExplicitLink><BasicBlock dependsOnU="1" id="10b0d773:1669a47c43a:-7f4a" interfaceFunctionName="CSCOPE" ordering="7" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="cscope" simulationFunctionType="C_OR_FORTRAN" style="CSCOPE"><ScilabString as="exprs" height="10" width="1"><data column="0" line="0" value="1 3 5 7 9 11 13 15"/><data column="0" line="1" value="-1"/><data column="0" line="2" value="[]"/><data column="0" line="3" value="[600;400]"/><data column="0" line="4" value="-2"/><data column="0" line="5" value="5"/><data column="0" line="6" value="50"/><data column="0" line="7" value="20"/><data column="0" line="8" value="0"/><data column="0" line="9" value=""/></ScilabString><ScilabDouble as="realParameters" height="4" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="-2.0"/><data column="0" line="2" realPart="5.0"/><data column="0" line="3" realPart="50.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="15" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="1.0"/><data column="0" line="4" realPart="3.0"/><data column="0" line="5" realPart="5.0"/><data column="0" line="6" realPart="7.0"/><data column="0" line="7" realPart="9.0"/><data column="0" line="8" realPart="11.0"/><data column="0" line="9" realPart="13.0"/><data column="0" line="10" realPart="15.0"/><data column="0" line="11" realPart="-1.0"/><data column="0" line="12" realPart="-1.0"/><data column="0" line="13" realPart="600.0"/><data column="0" line="14" realPart="400.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="570.0" y="170.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="10b0d773:1669a47c43a:-7efa" ordering="1" parent="10b0d773:1669a47c43a:-7f4a" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ControlPort dataType="UNKNOW_TYPE" id="10b0d773:1669a47c43a:-7ef9" ordering="1" parent="10b0d773:1669a47c43a:-7f4a" style="ControlPort;align=center;verticalAlign=top;spacing=10.0;rotation=90"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><SplitBlock id="10b0d773:1669a47c43a:-7f43" ordering="8" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionType="DEFAULT"><mxGeometry as="geometry" height="7.0" width="7.0" x="517.0" y="187.0"/></SplitBlock><ExplicitInputPort dataType="UNKNOW_TYPE" id="10b0d773:1669a47c43a:-7f42" ordering="1" parent="10b0d773:1669a47c43a:-7f43" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ExplicitInputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="10b0d773:1669a47c43a:-7f41" ordering="1" parent="10b0d773:1669a47c43a:-7f43" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="10b0d773:1669a47c43a:-7f40" ordering="2" parent="10b0d773:1669a47c43a:-7f43" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitLink id="10b0d773:1669a47c43a:-7f3f" parent="-2dd55334:14dcbdd0183:-7fd3" source="-4982527b:14e23f46651:-7d80" target="10b0d773:1669a47c43a:-7f42"><mxGeometry as="geometry"><Array as="points" scilabClass=""><mxPoint x="500.0" y="190.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="10b0d773:1669a47c43a:-7f3e" parent="-2dd55334:14dcbdd0183:-7fd3" source="10b0d773:1669a47c43a:-7f41" target="4a338342:14e1ed0625e:-7aa5"><mxGeometry as="geometry"><Array as="points" scilabClass=""><mxPoint x="520.0" y="250.0"/><mxPoint x="150.0" y="250.0"/><mxPoint x="150.0" y="200.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="10b0d773:1669a47c43a:-7f44" parent="-2dd55334:14dcbdd0183:-7fd3" source="10b0d773:1669a47c43a:-7f40" target="10b0d773:1669a47c43a:-7efa"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="570.0" y="190.0"/><mxPoint as="targetPoint" x="520.0" y="190.0"/></mxGeometry></ExplicitLink><CommandControlLink id="10b0d773:1669a47c43a:-7f3d" parent="-2dd55334:14dcbdd0183:-7fd3" source="-2dd55334:14dcbdd0183:-7d27" target="10b0d773:1669a47c43a:-7ef9"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="590.0" y="60.0"/><mxPoint as="targetPoint" x="590.0" y="170.0"/></mxGeometry></CommandControlLink></root></mxGraphModel><mxCell as="defaultParent" id="-2dd55334:14dcbdd0183:-7fd3" parent="-2dd55334:14dcbdd0183:-7fd2"/></XcosDiagram>
\ No newline at end of file diff --git a/Working_Examples/3432/CH9/EX9.5/DEPENDENCIES/fig_settings.sci b/Working_Examples/3432/CH9/EX9.5/DEPENDENCIES/fig_settings.sci new file mode 100755 index 0000000..5d5e7d4 --- /dev/null +++ b/Working_Examples/3432/CH9/EX9.5/DEPENDENCIES/fig_settings.sci @@ -0,0 +1,9 @@ +//------------------------------------------------------------------
+//figure handel settings
+f=get("current_figure"); //Current figure handle
+f.background=8; //make the figure window background white
+l=f.children(1);
+l.background=8 ;//make the text background white
+id=color('grey');
+xgrid(id);
+//------------------------------------------------------------------
diff --git a/Working_Examples/3432/CH9/EX9.5/Ex9_5.sce b/Working_Examples/3432/CH9/EX9.5/Ex9_5.sce new file mode 100755 index 0000000..327b8ce --- /dev/null +++ b/Working_Examples/3432/CH9/EX9.5/Ex9_5.sce @@ -0,0 +1,50 @@ +//Example 9.5
+//Changing Overshoot and Saturation nonlinearity.
+
+xdel(winsid())//close all graphics Windows
+clear;
+clc;
+//------------------------------------------------------------------
+//System transfer function and its root locus
+
+s=poly(0,'s');
+num=(s+1)
+den=(s^2);
+Gs=syslin('c',num/den)
+
+//Root locus
+evans(Gs,5)
+title(["Root locus of", "$(s+1)/(s^2)$","with saturation removed"],...
+'fontsize',3);
+f=gca();
+f.x_location = "origin"
+f.y_location = "origin"
+h=legend('');
+h.visible = "off"
+exec .\fig_settings.sci; //custom script for setting figure properties
+//------------------------------------------------------------------
+// Step response
+K=1;
+i=[2 4 6 8 10 12];
+figure(1);
+importXcosDiagram(".\Ex9_5_model.xcos")
+
+for r=i
+xcos_simulate(scs_m,4);
+scs_m.props.context
+plot(yt.time,yt.values)
+end
+
+xlabel('time');
+ylabel('y');
+title("Step response of the system for various input sizes",'fontsize',3);
+exec .\fig_settings.sci; //custom script for setting figure properties
+
+xset('font size',3);
+xstring(4,2.5,"$r=2$");
+xstring(6,5.5,"$4$");
+xstring(8,8.7,"$6$");
+xstring(10,12.2,"$8$");
+xstring(12,15.4,"$10$");
+xstring(14,18.4,"$12$");
+//------------------------------------------------------------------
diff --git a/Working_Examples/3432/CH9/EX9.5/Ex9_5_f0.pdf b/Working_Examples/3432/CH9/EX9.5/Ex9_5_f0.pdf Binary files differnew file mode 100755 index 0000000..c385950 --- /dev/null +++ b/Working_Examples/3432/CH9/EX9.5/Ex9_5_f0.pdf diff --git a/Working_Examples/3432/CH9/EX9.5/Ex9_5_f1.pdf b/Working_Examples/3432/CH9/EX9.5/Ex9_5_f1.pdf Binary files differnew file mode 100755 index 0000000..4bf4aea --- /dev/null +++ b/Working_Examples/3432/CH9/EX9.5/Ex9_5_f1.pdf diff --git a/Working_Examples/3432/CH9/EX9.5/Ex9_5_model.xcos b/Working_Examples/3432/CH9/EX9.5/Ex9_5_model.xcos new file mode 100755 index 0000000..3306e45 --- /dev/null +++ b/Working_Examples/3432/CH9/EX9.5/Ex9_5_model.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" finalIntegrationTime="30.0" title="Ex9_5_model"><!--Xcos - 1.0 - scilab-5.5.2 - 20160406 2040--><mxGraphModel as="model"><root><mxCell id="-2dd55334:14dcbdd0183:-7fd2"/><mxCell id="-2dd55334:14dcbdd0183:-7fd3" parent="-2dd55334:14dcbdd0183:-7fd2"/><BasicBlock dependsOnT="1" id="-2dd55334:14dcbdd0183:-7f98" interfaceFunctionName="CLR" ordering="1" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="csslti4" simulationFunctionType="C_OR_FORTRAN" style="CLR;flip=false;mirror=false"><ScilabString as="exprs" height="2" width="1"><data column="0" line="0" value="s+1"/><data column="0" line="1" value="s^2"/></ScilabString><ScilabDouble as="realParameters" height="9" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="-0.0"/><data column="0" line="2" realPart="1.0"/><data column="0" line="3" realPart="-0.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="1.0"/><data column="0" line="6" realPart="1.0"/><data column="0" line="7" realPart="1.0"/><data column="0" line="8" realPart="0.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="state" height="2" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="60.0" x="370.0" y="170.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="4a338342:14e1ed0625e:-7bd9" ordering="1" parent="-2dd55334:14dcbdd0183:-7f98" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="4a338342:14e1ed0625e:-7bd8" ordering="1" parent="-2dd55334:14dcbdd0183:-7f98" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="60.0" y="16.0"/></ExplicitOutputPort><BasicBlock blockType="h" id="-2dd55334:14dcbdd0183:-7e6e" interfaceFunctionName="CLOCK_c" ordering="2" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList" varName=""><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="1.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="3159.0"/><data column="1" line="0" realPart="-3190.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7e5e"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7e5e"/></ScilabString></Array></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.1"/><data column="0" line="1" value="0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.1"/><data column="0" line="1" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7e5c"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7e5c"/></ScilabString></Array></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5139.377326666667"/><data column="1" line="0" realPart="-5185.333333333333"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="7.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="5.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7e59"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7e59"/></ScilabString></Array></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="6180.0"/><data column="0" line="2" realPart="5149.877326666667"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-44.0"/><data column="0" line="1" realPart="-6260.0"/><data column="0" line="2" realPart="-5174.333333333333"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="5148.71066"/><data column="0" line="1" realPart="3189.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-5189.333333333333"/><data column="0" line="1" realPart="-3166.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="5151.043993333334"/><data column="0" line="1" realPart="6220.71"/><data column="0" line="2" realPart="6180.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-5189.333333333333"/><data column="0" line="1" realPart="-6130.0"/><data column="0" line="2" realPart="-6130.0"/><data column="0" line="3" realPart="4.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="520.0" y="10.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="-2dd55334:14dcbdd0183:-7d27" ordering="1" parent="-2dd55334:14dcbdd0183:-7e6e" style="CommandPort;align=center;verticalAlign=bottom;spacing=10.0;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><TextBlock id="-6cad6c1c:14dd22d9551:-7f7a" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=18;flip=false;mirror=false" value="Model for Ex9_5"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="Model for Ex9_5"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="Model for Ex9_5"/></ScilabString><mxGeometry as="geometry" height="40.0" width="160.0" x="170.0" y="20.0"/></TextBlock><Summation dependsOnU="1" id="45c1b0d9:14ddc6fc2af:-7f12" interfaceFunctionName="SUMMATION" ordering="3" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="summation" simulationFunctionType="C_OR_FORTRAN" style="SUMMATION;flip=false;mirror=false" value="+"><ScilabString as="exprs" height="3" width="1"><data column="0" line="0" value="1"/><data column="0" line="1" value="[1;-1]"/><data column="0" line="2" value="0"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="2" width="1"><data column="0" line="0" realPart="1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="60.0" width="40.0" x="120.0" y="160.0"/></Summation><ExplicitInputPort dataType="REAL_MATRIX" id="4a338342:14e1ed0625e:-7aa6" ordering="1" parent="45c1b0d9:14ddc6fc2af:-7f12" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value="+"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitInputPort dataType="REAL_MATRIX" id="4a338342:14e1ed0625e:-7aa5" ordering="2" parent="45c1b0d9:14ddc6fc2af:-7f12" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value="-"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="36.0"/></ExplicitInputPort><ExplicitOutputPort dataType="REAL_MATRIX" id="4a338342:14e1ed0625e:-7aa4" ordering="1" parent="45c1b0d9:14ddc6fc2af:-7f12" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="26.0"/></ExplicitOutputPort><BasicBlock blockType="d" id="3b275bb5:14ddca84679:-75a6" interfaceFunctionName="CONST" ordering="4" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="cstblk4" simulationFunctionType="C_OR_FORTRAN" style="CONST;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="r"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="10.0" y="160.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-76454188:14e1ef4db88:-7e35" ordering="1" parent="3b275bb5:14ddca84679:-75a6" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><BasicBlock dependsOnU="1" id="4a338342:14e1ed0625e:-7f33" interfaceFunctionName="GAINBLK" ordering="5" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="gainblk" simulationFunctionType="C_OR_FORTRAN" style="GAINBLK;flip=false;mirror=false"><ScilabString as="exprs" height="2" width="1"><data column="0" line="0" value="K"/><data column="0" line="1" value="0"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="210.0" y="170.0"/></BasicBlock><ExplicitInputPort dataType="REAL_MATRIX" id="4a338342:14e1ed0625e:-7f2b" ordering="1" parent="4a338342:14e1ed0625e:-7f33" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitOutputPort dataType="REAL_MATRIX" id="4a338342:14e1ed0625e:-7f2a" ordering="1" parent="4a338342:14e1ed0625e:-7f33" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ExplicitLink id="4a338342:14e1ed0625e:-7f2d" parent="-2dd55334:14dcbdd0183:-7fd3" source="4a338342:14e1ed0625e:-7aa4" target="4a338342:14e1ed0625e:-7f2b"><mxGeometry as="geometry" x="-40.0"><mxPoint as="sourcePoint" x="160.0" y="190.0"/><mxPoint as="targetPoint" x="210.0" y="190.0"/></mxGeometry></ExplicitLink><BasicBlock dependsOnU="1" id="4a338342:14e1ed0625e:-7c24" interfaceFunctionName="SATURATION" ordering="6" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="satur" simulationFunctionType="C_OR_FORTRAN" style="SATURATION;flip=false;mirror=false"><ScilabString as="exprs" height="3" width="1"><data column="0" line="0" value="0.4"/><data column="0" line="1" value="-0.4"/><data column="0" line="2" value="0"/></ScilabString><ScilabDouble as="realParameters" height="2" width="1"><data column="0" line="0" realPart="0.4"/><data column="0" line="1" realPart="-0.4"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="290.0" y="170.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="4a338342:14e1ed0625e:-7b00" ordering="1" parent="4a338342:14e1ed0625e:-7c24" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="4a338342:14e1ed0625e:-7aff" ordering="1" parent="4a338342:14e1ed0625e:-7c24" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><mxCell connectable="0" id="4a338342:14e1ed0625e:-7c24#identifier" parent="4a338342:14e1ed0625e:-7c24" style="noLabel=0;opacity=0;fontSize=14" value=" SaturationLimits: -0.4 & 0.4" vertex="1"><mxGeometry as="geometry" relative="1" x="0.5" y="1.1"><mxPoint as="offset" x="2.0" y="8.0"/></mxGeometry></mxCell><ExplicitLink id="4a338342:14e1ed0625e:-7a49" parent="-2dd55334:14dcbdd0183:-7fd3" source="-76454188:14e1ef4db88:-7e35" target="4a338342:14e1ed0625e:-7aa6"><mxGeometry as="geometry" x="-40.0"><mxPoint as="sourcePoint" x="50.0" y="180.0"/><mxPoint as="targetPoint" x="120.0" y="180.0"/></mxGeometry></ExplicitLink><BasicBlock blockType="h" id="-76454188:14e1ef4db88:-7d58" interfaceFunctionName="ENDBLK" ordering="7" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="ENDBLK;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList" varName=""><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="ENDBLK"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-4"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=" "/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="30"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"END_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="END_c"/></ScilabString></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="scicosexit"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="30.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-76454188:14e1ef4db88:-7d55"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="END_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-76454188:14e1ef4db88:-7d55"/></ScilabString></Array></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="6" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="1900.0"/><data column="0" line="2" realPart="1869.73333"/><data column="0" line="3" realPart="1869.73333"/><data column="0" line="4" realPart="1900.0"/><data column="0" line="5" realPart="60.0"/></ScilabDouble><ScilabDouble height="6" width="1"><data column="0" line="0" realPart="-44.0"/><data column="0" line="1" realPart="-1934.66666"/><data column="0" line="2" realPart="-1934.66666"/><data column="0" line="3" realPart="-1863.53333"/><data column="0" line="4" realPart="-1863.53333"/><data column="0" line="5" realPart="4.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="520.0" y="240.0"/></BasicBlock><SplitBlock id="-76454188:14e1ef4db88:-7513" interfaceFunctionName="CLKSPLIT_f" ordering="8" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionType="DEFAULT" style="CLKSPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="537.0" y="77.0"/></SplitBlock><ControlPort dataType="UNKNOW_TYPE" id="-76454188:14e1ef4db88:-7512" ordering="1" parent="-76454188:14e1ef4db88:-7513" style="ControlPort;align=center;verticalAlign=top;spacing=10.0;rotation=90;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-4.0" y="-8.0"/></ControlPort><CommandPort dataType="UNKNOW_TYPE" id="-76454188:14e1ef4db88:-7511" ordering="1" parent="-76454188:14e1ef4db88:-7513" style="CommandPort;align=center;verticalAlign=bottom;spacing=10.0;rotation=90;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-4.0" y="7.0"/></CommandPort><CommandPort dataType="UNKNOW_TYPE" id="-76454188:14e1ef4db88:-7510" ordering="2" parent="-76454188:14e1ef4db88:-7513" style="CommandPort;align=center;verticalAlign=bottom;spacing=10.0;rotation=90;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-4.0" y="7.0"/></CommandPort><CommandControlLink id="-76454188:14e1ef4db88:-750f" parent="-2dd55334:14dcbdd0183:-7fd3" source="-2dd55334:14dcbdd0183:-7d27" target="-76454188:14e1ef4db88:-7512"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></CommandControlLink><ExplicitLink id="-76454188:14e1ef4db88:-70b7" parent="-2dd55334:14dcbdd0183:-7fd3" source="4a338342:14e1ed0625e:-7f2a" target="4a338342:14e1ed0625e:-7b00"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="270.0" y="190.0"/></Array></mxGeometry></ExplicitLink><BasicBlock dependsOnU="1" id="-7f3f8309:16686c89bf7:-71da" interfaceFunctionName="CSCOPE" ordering="9" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="cscope" simulationFunctionType="C_OR_FORTRAN" style="CSCOPE"><ScilabString as="exprs" height="10" width="1"><data column="0" line="0" value="1 3 5 7 9 11 13 15"/><data column="0" line="1" value="-1"/><data column="0" line="2" value="[]"/><data column="0" line="3" value="[600;400]"/><data column="0" line="4" value="-1"/><data column="0" line="5" value="1"/><data column="0" line="6" value="30"/><data column="0" line="7" value="20"/><data column="0" line="8" value="0"/><data column="0" line="9" value=""/></ScilabString><ScilabDouble as="realParameters" height="4" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="-1.0"/><data column="0" line="2" realPart="1.0"/><data column="0" line="3" realPart="30.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="15" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="1.0"/><data column="0" line="4" realPart="3.0"/><data column="0" line="5" realPart="5.0"/><data column="0" line="6" realPart="7.0"/><data column="0" line="7" realPart="9.0"/><data column="0" line="8" realPart="11.0"/><data column="0" line="9" realPart="13.0"/><data column="0" line="10" realPart="15.0"/><data column="0" line="11" realPart="-1.0"/><data column="0" line="12" realPart="-1.0"/><data column="0" line="13" realPart="600.0"/><data column="0" line="14" realPart="400.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="390.0" y="110.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="-7f3f8309:16686c89bf7:-7116" ordering="1" parent="-7f3f8309:16686c89bf7:-71da" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ControlPort dataType="UNKNOW_TYPE" id="-7f3f8309:16686c89bf7:-7115" ordering="1" parent="-7f3f8309:16686c89bf7:-71da" style="ControlPort;align=center;verticalAlign=top;spacing=10.0;rotation=90"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><BasicBlock dependsOnU="1" id="-7f3f8309:16686c89bf7:-71d4" interfaceFunctionName="CSCOPE" ordering="10" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="cscope" simulationFunctionType="C_OR_FORTRAN" style="CSCOPE"><ScilabString as="exprs" height="10" width="1"><data column="0" line="0" value="1 3 5 7 9 11 13 15"/><data column="0" line="1" value="-1"/><data column="0" line="2" value="[]"/><data column="0" line="3" value="[600;400]"/><data column="0" line="4" value="-2"/><data column="0" line="5" value="3"/><data column="0" line="6" value="30"/><data column="0" line="7" value="20"/><data column="0" line="8" value="0"/><data column="0" line="9" value=""/></ScilabString><ScilabDouble as="realParameters" height="4" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="-2.0"/><data column="0" line="2" realPart="3.0"/><data column="0" line="3" realPart="30.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="15" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="1.0"/><data column="0" line="4" realPart="3.0"/><data column="0" line="5" realPart="5.0"/><data column="0" line="6" realPart="7.0"/><data column="0" line="7" realPart="9.0"/><data column="0" line="8" realPart="11.0"/><data column="0" line="9" realPart="13.0"/><data column="0" line="10" realPart="15.0"/><data column="0" line="11" realPart="-1.0"/><data column="0" line="12" realPart="-1.0"/><data column="0" line="13" realPart="600.0"/><data column="0" line="14" realPart="400.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="520.0" y="170.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="-7f3f8309:16686c89bf7:-7143" ordering="1" parent="-7f3f8309:16686c89bf7:-71d4" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ControlPort dataType="UNKNOW_TYPE" id="-7f3f8309:16686c89bf7:-7142" ordering="1" parent="-7f3f8309:16686c89bf7:-71d4" style="ControlPort;align=center;verticalAlign=top;spacing=10.0;rotation=90"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><CommandControlLink id="-7f3f8309:16686c89bf7:-71c0" parent="-2dd55334:14dcbdd0183:-7fd3" source="-76454188:14e1ef4db88:-7510" target="-7f3f8309:16686c89bf7:-7115"><mxGeometry as="geometry"><Array as="points" scilabClass=""><mxPoint x="410.0" y="80.0"/></Array></mxGeometry></CommandControlLink><SplitBlock id="-7f3f8309:16686c89bf7:-71bd" ordering="11" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionType="DEFAULT"><mxGeometry as="geometry" height="7.0" width="7.0" x="347.0" y="187.0"/></SplitBlock><ExplicitInputPort dataType="UNKNOW_TYPE" id="-7f3f8309:16686c89bf7:-71bc" ordering="1" parent="-7f3f8309:16686c89bf7:-71bd" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ExplicitInputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="-7f3f8309:16686c89bf7:-71bb" ordering="1" parent="-7f3f8309:16686c89bf7:-71bd" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="-7f3f8309:16686c89bf7:-71ba" ordering="2" parent="-7f3f8309:16686c89bf7:-71bd" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitLink id="-7f3f8309:16686c89bf7:-71b9" parent="-2dd55334:14dcbdd0183:-7fd3" source="4a338342:14e1ed0625e:-7aff" target="-7f3f8309:16686c89bf7:-71bc"><mxGeometry as="geometry"><Array as="points" scilabClass=""><mxPoint x="350.0" y="190.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="-7f3f8309:16686c89bf7:-71b8" parent="-2dd55334:14dcbdd0183:-7fd3" source="-7f3f8309:16686c89bf7:-71bb" target="4a338342:14e1ed0625e:-7bd9"><mxGeometry as="geometry"><Array as="points" scilabClass=""/></mxGeometry></ExplicitLink><ExplicitLink id="-7f3f8309:16686c89bf7:-71be" parent="-2dd55334:14dcbdd0183:-7fd3" source="-7f3f8309:16686c89bf7:-71ba" target="-7f3f8309:16686c89bf7:-7116"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="390.0" y="130.0"/><mxPoint as="targetPoint" x="360.0" y="190.0"/><Array as="points" scilabClass=""><mxPoint x="350.0" y="130.0"/></Array></mxGeometry></ExplicitLink><CommandControlLink id="-7f3f8309:16686c89bf7:-71a7" parent="-2dd55334:14dcbdd0183:-7fd3" source="-76454188:14e1ef4db88:-7511" target="-7f3f8309:16686c89bf7:-7142"><mxGeometry as="geometry"><Array as="points" scilabClass=""><mxPoint x="540.0" y="90.0"/></Array></mxGeometry></CommandControlLink><SplitBlock id="-7f3f8309:16686c89bf7:-71a5" ordering="12" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionType="DEFAULT"><mxGeometry as="geometry" height="7.0" width="7.0" x="457.0" y="187.0"/></SplitBlock><ExplicitInputPort dataType="UNKNOW_TYPE" id="-7f3f8309:16686c89bf7:-71a4" ordering="1" parent="-7f3f8309:16686c89bf7:-71a5" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ExplicitInputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="-7f3f8309:16686c89bf7:-71a3" ordering="1" parent="-7f3f8309:16686c89bf7:-71a5" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="-7f3f8309:16686c89bf7:-71a2" ordering="2" parent="-7f3f8309:16686c89bf7:-71a5" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitLink id="-7f3f8309:16686c89bf7:-71a1" parent="-2dd55334:14dcbdd0183:-7fd3" source="4a338342:14e1ed0625e:-7bd8" target="-7f3f8309:16686c89bf7:-71a4"><mxGeometry as="geometry"><Array as="points" scilabClass=""/></mxGeometry></ExplicitLink><ExplicitLink id="-7f3f8309:16686c89bf7:-71a0" parent="-2dd55334:14dcbdd0183:-7fd3" source="-7f3f8309:16686c89bf7:-71a3" target="4a338342:14e1ed0625e:-7aa5"><mxGeometry as="geometry"><Array as="points" scilabClass=""><mxPoint x="460.0" y="270.0"/><mxPoint x="90.0" y="270.0"/><mxPoint x="90.0" y="200.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="-7f3f8309:16686c89bf7:-71a6" parent="-2dd55334:14dcbdd0183:-7fd3" source="-7f3f8309:16686c89bf7:-71a2" target="-7f3f8309:16686c89bf7:-7143"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="520.0" y="190.0"/><mxPoint as="targetPoint" x="460.0" y="190.0"/></mxGeometry></ExplicitLink><TextBlock id="-7f3f8309:16686c89bf7:-7145" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionType="DEFAULT"><mxGeometry as="geometry" height="40.0" width="40.0" x="510.0" y="140.0"/></TextBlock></root></mxGraphModel><mxCell as="defaultParent" id="-2dd55334:14dcbdd0183:-7fd3" parent="-2dd55334:14dcbdd0183:-7fd2"/></XcosDiagram>
\ No newline at end of file diff --git a/Working_Examples/3432/CH9/EX9.6/DEPENDENCIES/fig_settings.sci b/Working_Examples/3432/CH9/EX9.6/DEPENDENCIES/fig_settings.sci new file mode 100755 index 0000000..5d5e7d4 --- /dev/null +++ b/Working_Examples/3432/CH9/EX9.6/DEPENDENCIES/fig_settings.sci @@ -0,0 +1,9 @@ +//------------------------------------------------------------------
+//figure handel settings
+f=get("current_figure"); //Current figure handle
+f.background=8; //make the figure window background white
+l=f.children(1);
+l.background=8 ;//make the text background white
+id=color('grey');
+xgrid(id);
+//------------------------------------------------------------------
diff --git a/Working_Examples/3432/CH9/EX9.6/Ex9_6.sce b/Working_Examples/3432/CH9/EX9.6/Ex9_6.sce new file mode 100755 index 0000000..4e30f74 --- /dev/null +++ b/Working_Examples/3432/CH9/EX9.6/Ex9_6.sce @@ -0,0 +1,47 @@ +//Example 9.6
+//Stability of conditionally stable system using root locus.
+xdel(winsid())//close all graphics Windows
+clear;
+clc;
+//------------------------------------------------------------------
+//System transfer function and its root locus
+
+s=poly(0,'s');
+num=(s+1)^2
+den=(s^3);
+Gs=syslin('c',num/den)
+//Root locus
+evans(Gs,7)
+title(["Root locus for", "$(s+1)^2/(s^3)$","for system"],...
+'fontsize',3);
+f=gca();
+f.x_location = "origin"
+f.y_location = "origin"
+h=legend('');
+h.visible = "off"
+exec .\fig_settings.sci; //custom script for setting figure properties
+//------------------------------------------------------------------
+//Response of the system
+K=2;
+i=[1 2 3 3.475];
+figure(1);
+
+importXcosDiagram(".\Ex9_6_model.xcos")
+
+for r=i
+xcos_simulate(scs_m,4);
+scs_m.props.context
+plot(yt.time,yt.values)
+end
+
+xlabel('Time (sec.)');
+ylabel('Amplitude');
+title("Step response of the system",'fontsize',3);
+
+exec .\fig_settings.sci; //custom script for setting figure properties
+xset('font size',3);
+xstring(3,6.5,"$r=3.475$");
+xstring(2.5,5.2,"$3$");
+xstring(2,3,"$2$");
+xstring(1,1.4,"$1$");
+//------------------------------------------------------------------
diff --git a/Working_Examples/3432/CH9/EX9.6/Ex9_6_f0.pdf b/Working_Examples/3432/CH9/EX9.6/Ex9_6_f0.pdf Binary files differnew file mode 100755 index 0000000..3e16ef4 --- /dev/null +++ b/Working_Examples/3432/CH9/EX9.6/Ex9_6_f0.pdf diff --git a/Working_Examples/3432/CH9/EX9.6/Ex9_6_f1.pdf b/Working_Examples/3432/CH9/EX9.6/Ex9_6_f1.pdf Binary files differnew file mode 100755 index 0000000..b2bd90d --- /dev/null +++ b/Working_Examples/3432/CH9/EX9.6/Ex9_6_f1.pdf diff --git a/Working_Examples/3432/CH9/EX9.6/Ex9_6_model.xcos b/Working_Examples/3432/CH9/EX9.6/Ex9_6_model.xcos new file mode 100755 index 0000000..53a815f --- /dev/null +++ b/Working_Examples/3432/CH9/EX9.6/Ex9_6_model.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" finalIntegrationTime="20.0" title="Ex9_6_model"><!--Xcos - 1.0 - scilab-5.5.2 - 20160406 2040--><mxGraphModel as="model"><root><mxCell id="-2dd55334:14dcbdd0183:-7fd2"/><mxCell id="-2dd55334:14dcbdd0183:-7fd3" parent="-2dd55334:14dcbdd0183:-7fd2"/><BasicBlock dependsOnT="1" id="-2dd55334:14dcbdd0183:-7f98" interfaceFunctionName="CLR" ordering="1" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="csslti4" simulationFunctionType="C_OR_FORTRAN" style="CLR;flip=false;mirror=false"><ScilabString as="exprs" height="2" width="1"><data column="0" line="0" value="(s+1)^2"/><data column="0" line="1" value="s^3"/></ScilabString><ScilabDouble as="realParameters" height="16" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="0.0"/><data column="0" line="2" realPart="-0.0"/><data column="0" line="3" realPart="1.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="-0.0"/><data column="0" line="6" realPart="0.0"/><data column="0" line="7" realPart="1.0"/><data column="0" line="8" realPart="-0.0"/><data column="0" line="9" realPart="0.0"/><data column="0" line="10" realPart="0.0"/><data column="0" line="11" realPart="1.0"/><data column="0" line="12" realPart="1.0"/><data column="0" line="13" realPart="2.0"/><data column="0" line="14" realPart="1.0"/><data column="0" line="15" realPart="0.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="state" height="3" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="0.0"/><data column="0" line="2" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="60.0" x="370.0" y="170.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="11757ea3:14e1f326925:-7f47" ordering="1" parent="-2dd55334:14dcbdd0183:-7f98" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="11757ea3:14e1f326925:-7f46" ordering="1" parent="-2dd55334:14dcbdd0183:-7f98" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="60.0" y="16.0"/></ExplicitOutputPort><BasicBlock blockType="h" id="-2dd55334:14dcbdd0183:-7e6e" interfaceFunctionName="CLOCK_c" ordering="2" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="1.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="3179.0"/><data column="1" line="0" realPart="-3210.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7e5e"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7e5e"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.1"/><data column="0" line="1" value="0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.1"/><data column="0" line="1" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7e5c"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7e5c"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5172.377326666667"/><data column="1" line="0" realPart="-5218.333333333333"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="7.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="5.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7e59"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7e59"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="6220.0"/><data column="0" line="2" realPart="5182.877326666667"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-44.0"/><data column="0" line="1" realPart="-6300.0"/><data column="0" line="2" realPart="-5207.333333333333"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="5181.71066"/><data column="0" line="1" realPart="3209.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-5222.333333333333"/><data column="0" line="1" realPart="-3186.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="5184.043993333334"/><data column="0" line="1" realPart="6260.71"/><data column="0" line="2" realPart="6220.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-5222.333333333333"/><data column="0" line="1" realPart="-6170.0"/><data column="0" line="2" realPart="-6170.0"/><data column="0" line="3" realPart="4.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="510.0" y="30.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="-2dd55334:14dcbdd0183:-7d27" ordering="1" parent="-2dd55334:14dcbdd0183:-7e6e" style="CommandPort;align=center;verticalAlign=bottom;spacing=10.0;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><TextBlock id="-6cad6c1c:14dd22d9551:-7f7a" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=18;flip=false;mirror=false" value="Model for Ex9_6"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="Model for Ex9_6"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="Model for Ex9_6"/></ScilabString><mxGeometry as="geometry" height="40.0" width="160.0" x="170.0" y="20.0"/></TextBlock><Summation dependsOnU="1" id="45c1b0d9:14ddc6fc2af:-7f12" interfaceFunctionName="SUMMATION" ordering="3" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="summation" simulationFunctionType="C_OR_FORTRAN" style="SUMMATION;flip=false;mirror=false" value="+"><ScilabString as="exprs" height="3" width="1"><data column="0" line="0" value="1"/><data column="0" line="1" value="[1;-1]"/><data column="0" line="2" value="0"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="2" width="1"><data column="0" line="0" realPart="1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="60.0" width="40.0" x="120.0" y="160.0"/></Summation><ExplicitInputPort dataType="REAL_MATRIX" id="4a338342:14e1ed0625e:-7aa6" ordering="1" parent="45c1b0d9:14ddc6fc2af:-7f12" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value="+"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitInputPort dataType="REAL_MATRIX" id="4a338342:14e1ed0625e:-7aa5" ordering="2" parent="45c1b0d9:14ddc6fc2af:-7f12" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value="-"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="36.0"/></ExplicitInputPort><ExplicitOutputPort dataType="REAL_MATRIX" id="4a338342:14e1ed0625e:-7aa4" ordering="1" parent="45c1b0d9:14ddc6fc2af:-7f12" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="26.0"/></ExplicitOutputPort><BasicBlock blockType="d" id="3b275bb5:14ddca84679:-75a6" interfaceFunctionName="CONST" ordering="4" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="cstblk4" simulationFunctionType="C_OR_FORTRAN" style="CONST;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="r"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="10.0" y="160.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-76454188:14e1ef4db88:-7e35" ordering="1" parent="3b275bb5:14ddca84679:-75a6" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><BasicBlock dependsOnU="1" id="4a338342:14e1ed0625e:-7f33" interfaceFunctionName="GAINBLK" ordering="5" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="gainblk" simulationFunctionType="C_OR_FORTRAN" style="GAINBLK;flip=false;mirror=false"><ScilabString as="exprs" height="2" width="1"><data column="0" line="0" value="K"/><data column="0" line="1" value="0"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="210.0" y="170.0"/></BasicBlock><ExplicitInputPort dataType="REAL_MATRIX" id="4a338342:14e1ed0625e:-7f2b" ordering="1" parent="4a338342:14e1ed0625e:-7f33" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitOutputPort dataType="REAL_MATRIX" id="4a338342:14e1ed0625e:-7f2a" ordering="1" parent="4a338342:14e1ed0625e:-7f33" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ExplicitLink id="4a338342:14e1ed0625e:-7f2d" parent="-2dd55334:14dcbdd0183:-7fd3" source="4a338342:14e1ed0625e:-7aa4" target="4a338342:14e1ed0625e:-7f2b"><mxGeometry as="geometry" x="-40.0"><mxPoint as="sourcePoint" x="160.0" y="190.0"/><mxPoint as="targetPoint" x="210.0" y="190.0"/></mxGeometry></ExplicitLink><BasicBlock dependsOnU="1" id="4a338342:14e1ed0625e:-7c24" interfaceFunctionName="SATURATION" ordering="6" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="satur" simulationFunctionType="C_OR_FORTRAN" style="SATURATION;flip=false;mirror=false"><ScilabString as="exprs" height="3" width="1"><data column="0" line="0" value="1"/><data column="0" line="1" value="-1"/><data column="0" line="2" value="0"/></ScilabString><ScilabDouble as="realParameters" height="2" width="1"><data column="0" line="0" realPart="1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="290.0" y="170.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="11757ea3:14e1f326925:-7f44" ordering="1" parent="4a338342:14e1ed0625e:-7c24" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="11757ea3:14e1f326925:-7f43" ordering="1" parent="4a338342:14e1ed0625e:-7c24" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><mxCell connectable="0" id="4a338342:14e1ed0625e:-7c24#identifier" parent="4a338342:14e1ed0625e:-7c24" style="noLabel=0;opacity=0;fontSize=14" value=" Saturation limits: -1 & 1" vertex="1"><mxGeometry as="geometry" relative="1" x="0.5" y="1.1"><mxPoint as="offset" x="3.0" y="9.0"/></mxGeometry></mxCell><ExplicitLink id="4a338342:14e1ed0625e:-7a49" parent="-2dd55334:14dcbdd0183:-7fd3" source="-76454188:14e1ef4db88:-7e35" target="4a338342:14e1ed0625e:-7aa6"><mxGeometry as="geometry" x="-40.0"><mxPoint as="sourcePoint" x="50.0" y="180.0"/><mxPoint as="targetPoint" x="120.0" y="180.0"/></mxGeometry></ExplicitLink><BasicBlock blockType="h" id="-76454188:14e1ef4db88:-7d58" interfaceFunctionName="ENDBLK" ordering="7" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="ENDBLK;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="ENDBLK"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-4"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=" "/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="20"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"END_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="END_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="scicosexit"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-76454188:14e1ef4db88:-7d55"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="END_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-76454188:14e1ef4db88:-7d55"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="6" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="2020.0"/><data column="0" line="2" realPart="1989.73333"/><data column="0" line="3" realPart="1989.73333"/><data column="0" line="4" realPart="2020.0"/><data column="0" line="5" realPart="60.0"/></ScilabDouble><ScilabDouble height="6" width="1"><data column="0" line="0" realPart="-44.0"/><data column="0" line="1" realPart="-2054.66666"/><data column="0" line="2" realPart="-2054.66666"/><data column="0" line="3" realPart="-1983.53333"/><data column="0" line="4" realPart="-1983.53333"/><data column="0" line="5" realPart="4.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="520.0" y="240.0"/></BasicBlock><ExplicitLink id="-76454188:14e1ef4db88:-70b7" parent="-2dd55334:14dcbdd0183:-7fd3" source="4a338342:14e1ed0625e:-7f2a" target="11757ea3:14e1f326925:-7f44"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="270.0" y="190.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="11757ea3:14e1f326925:-758b" parent="-2dd55334:14dcbdd0183:-7fd3" source="11757ea3:14e1f326925:-7f43" target="11757ea3:14e1f326925:-7f47"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="350.0" y="190.0"/></Array></mxGeometry></ExplicitLink><BasicBlock dependsOnU="1" id="10b0d773:1669a47c43a:-779c" interfaceFunctionName="CSCOPE" ordering="8" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="cscope" simulationFunctionType="C_OR_FORTRAN" style="CSCOPE"><ScilabString as="exprs" height="10" width="1"><data column="0" line="0" value="1 3 5 7 9 11 13 15"/><data column="0" line="1" value="-1"/><data column="0" line="2" value="[]"/><data column="0" line="3" value="[600;400]"/><data column="0" line="4" value="0"/><data column="0" line="5" value="5"/><data column="0" line="6" value="20"/><data column="0" line="7" value="20"/><data column="0" line="8" value="0"/><data column="0" line="9" value=""/></ScilabString><ScilabDouble as="realParameters" height="4" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="0.0"/><data column="0" line="2" realPart="5.0"/><data column="0" line="3" realPart="20.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="15" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="1.0"/><data column="0" line="4" realPart="3.0"/><data column="0" line="5" realPart="5.0"/><data column="0" line="6" realPart="7.0"/><data column="0" line="7" realPart="9.0"/><data column="0" line="8" realPart="11.0"/><data column="0" line="9" realPart="13.0"/><data column="0" line="10" realPart="15.0"/><data column="0" line="11" realPart="-1.0"/><data column="0" line="12" realPart="-1.0"/><data column="0" line="13" realPart="600.0"/><data column="0" line="14" realPart="400.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="510.0" y="170.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="10b0d773:1669a47c43a:-7774" ordering="1" parent="10b0d773:1669a47c43a:-779c" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ControlPort dataType="UNKNOW_TYPE" id="10b0d773:1669a47c43a:-7773" ordering="1" parent="10b0d773:1669a47c43a:-779c" style="ControlPort;align=center;verticalAlign=top;spacing=10.0;rotation=90"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><SplitBlock id="10b0d773:1669a47c43a:-7795" ordering="9" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionType="DEFAULT"><mxGeometry as="geometry" height="7.0" width="7.0" x="457.0" y="187.0"/></SplitBlock><ExplicitInputPort dataType="UNKNOW_TYPE" id="10b0d773:1669a47c43a:-7794" ordering="1" parent="10b0d773:1669a47c43a:-7795" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ExplicitInputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="10b0d773:1669a47c43a:-7793" ordering="1" parent="10b0d773:1669a47c43a:-7795" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="10b0d773:1669a47c43a:-7792" ordering="2" parent="10b0d773:1669a47c43a:-7795" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitLink id="10b0d773:1669a47c43a:-7791" parent="-2dd55334:14dcbdd0183:-7fd3" source="11757ea3:14e1f326925:-7f46" target="10b0d773:1669a47c43a:-7794"><mxGeometry as="geometry"><Array as="points" scilabClass=""/></mxGeometry></ExplicitLink><ExplicitLink id="10b0d773:1669a47c43a:-7790" parent="-2dd55334:14dcbdd0183:-7fd3" source="10b0d773:1669a47c43a:-7793" target="4a338342:14e1ed0625e:-7aa5"><mxGeometry as="geometry"><Array as="points" scilabClass=""><mxPoint x="460.0" y="270.0"/><mxPoint x="90.0" y="270.0"/><mxPoint x="90.0" y="200.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="10b0d773:1669a47c43a:-7796" parent="-2dd55334:14dcbdd0183:-7fd3" source="10b0d773:1669a47c43a:-7792" target="10b0d773:1669a47c43a:-7774"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="510.0" y="190.0"/><mxPoint as="targetPoint" x="460.0" y="190.0"/></mxGeometry></ExplicitLink><CommandControlLink id="10b0d773:1669a47c43a:-778b" parent="-2dd55334:14dcbdd0183:-7fd3" source="-2dd55334:14dcbdd0183:-7d27" target="10b0d773:1669a47c43a:-7773"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="530.0" y="70.0"/><mxPoint as="targetPoint" x="530.0" y="180.0"/></mxGeometry></CommandControlLink></root></mxGraphModel><mxCell as="defaultParent" id="-2dd55334:14dcbdd0183:-7fd3" parent="-2dd55334:14dcbdd0183:-7fd2"/></XcosDiagram>
\ No newline at end of file diff --git a/Working_Examples/3432/CH9/EX9.7/DEPENDENCIES/fig_settings.sci b/Working_Examples/3432/CH9/EX9.7/DEPENDENCIES/fig_settings.sci new file mode 100755 index 0000000..5d5e7d4 --- /dev/null +++ b/Working_Examples/3432/CH9/EX9.7/DEPENDENCIES/fig_settings.sci @@ -0,0 +1,9 @@ +//------------------------------------------------------------------
+//figure handel settings
+f=get("current_figure"); //Current figure handle
+f.background=8; //make the figure window background white
+l=f.children(1);
+l.background=8 ;//make the text background white
+id=color('grey');
+xgrid(id);
+//------------------------------------------------------------------
diff --git a/Working_Examples/3432/CH9/EX9.7/Ex9_7.sce b/Working_Examples/3432/CH9/EX9.7/Ex9_7.sce new file mode 100755 index 0000000..cfe5028 --- /dev/null +++ b/Working_Examples/3432/CH9/EX9.7/Ex9_7.sce @@ -0,0 +1,84 @@ +//Example 9.7
+//Analysis and design of the system with limit cycle using the root locus.
+xdel(winsid())//close all graphics Windows
+clear;
+clc;
+//------------------------------------------------------------------
+//System transfer function and its root locus
+
+s=poly(0,'s');
+num=0.1;
+den=(s^2+0.2*s+1)*(s);
+Gs=syslin('c',num/den);
+
+//Root locus
+evans(Gs,40)
+title(["Root locus of", "$(0.1/s(s^2+0.2*s+1)$"],'fontsize',3);
+f=gca();
+f.x_location = "origin"
+f.y_location = "origin"
+h=legend('');
+h.visible = "off"
+exec .\fig_settings.sci; // custom script for setting figure properties
+//------------------------------------------------------------------
+//Response of the system
+figure;
+//Response of the system
+K=0.5;
+i=[1 4 8];
+importXcosDiagram(".\Ex9_7_model.xcos")
+
+for r=i
+xcos_simulate(scs_m,4);
+scs_m.props.context
+plot(yt.time,yt.values)
+end
+
+xlabel('Time (sec.)');
+ylabel('Amplitude');
+title("Step response of the system",'fontsize',3);
+exec .\fig_settings.sci; // custom script for setting figure properties
+zoom_rect([0 0 150 9])
+
+xset('font size',3);
+xstring(80,1.6,"$r=1$");
+xstring(80,4.6,"$r=4$");
+xstring(80,8.2,"$r=8$");
+//------------------------------------------------------------------
+//System with notch compensation
+D=123*(s^2+0.18*s+0.81)/(s+10)^2;
+
+//Root locus
+figure,
+evans(Gs*D,40)
+title(["Root locus including notch compensation"],'fontsize',3);
+f=gca();
+f.x_location = "origin"
+f.y_location = "origin"
+h=legend('');
+h.visible = "off"
+exec .\fig_settings.sci; //custom script for setting figure properties
+zoom_rect([-14 -2 2 2])
+//------------------------------------------------------------------
+//Response of the system witth notch filter
+figure;
+K=0.5;
+i=[2 4];
+importXcosDiagram(".\Ex9_7_model_notch.xcos")
+
+for r=i
+xcos_simulate(scs_m,4);
+scs_m.props.context
+plot(yt.time,yt.values)
+end
+
+xlabel('Time (sec.)');
+ylabel('Amplitude');
+title("Step response of the system with notch filter",'fontsize',3);
+exec .\fig_settings.sci; //custom script for setting figure properties
+xset('font size',3);
+xstring(30,2.2,"$r=2$");
+xstring(34,3.75,"$r=4$");
+//------------------------------------------------------------------
+
+
diff --git a/Working_Examples/3432/CH9/EX9.7/Ex9_7_f1.pdf b/Working_Examples/3432/CH9/EX9.7/Ex9_7_f1.pdf Binary files differnew file mode 100755 index 0000000..c797e32 --- /dev/null +++ b/Working_Examples/3432/CH9/EX9.7/Ex9_7_f1.pdf diff --git a/Working_Examples/3432/CH9/EX9.7/Ex9_7_f3.pdf b/Working_Examples/3432/CH9/EX9.7/Ex9_7_f3.pdf Binary files differnew file mode 100755 index 0000000..28b108e --- /dev/null +++ b/Working_Examples/3432/CH9/EX9.7/Ex9_7_f3.pdf diff --git a/Working_Examples/3432/CH9/EX9.7/Ex9_7_model.xcos b/Working_Examples/3432/CH9/EX9.7/Ex9_7_model.xcos new file mode 100755 index 0000000..48f60de --- /dev/null +++ b/Working_Examples/3432/CH9/EX9.7/Ex9_7_model.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" finalIntegrationTime="150.0" title="Ex9_7_model"><!--Xcos - 1.0 - scilab-5.5.2 - 20160406 2040--><mxGraphModel as="model"><root><mxCell id="-2dd55334:14dcbdd0183:-7fd2"/><mxCell id="-2dd55334:14dcbdd0183:-7fd3" parent="-2dd55334:14dcbdd0183:-7fd2"/><BasicBlock dependsOnT="1" id="-2dd55334:14dcbdd0183:-7f98" interfaceFunctionName="CLR" ordering="1" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="csslti4" simulationFunctionType="C_OR_FORTRAN" style="CLR;flip=false;mirror=false"><ScilabString as="exprs" height="2" width="1"><data column="0" line="0" value="1"/><data column="0" line="1" value="s^2+0.2*s+1"/></ScilabString><ScilabDouble as="realParameters" height="9" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="-1.0"/><data column="0" line="2" realPart="1.0"/><data column="0" line="3" realPart="-0.2"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="1.0"/><data column="0" line="6" realPart="1.0"/><data column="0" line="7" realPart="0.0"/><data column="0" line="8" realPart="0.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="state" height="2" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="120.0" x="400.0" y="170.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="11757ea3:14e1f326925:-7894" ordering="1" parent="-2dd55334:14dcbdd0183:-7f98" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="11757ea3:14e1f326925:-7893" ordering="1" parent="-2dd55334:14dcbdd0183:-7f98" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="120.0" y="16.0"/></ExplicitOutputPort><BasicBlock blockType="h" id="-2dd55334:14dcbdd0183:-7e6e" interfaceFunctionName="CLOCK_c" ordering="2" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="1.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="3699.0"/><data column="1" line="0" realPart="-3730.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7e5e"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7e5e"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.1"/><data column="0" line="1" value="0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.1"/><data column="0" line="1" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7e5c"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7e5c"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="6030.377326666667"/><data column="1" line="0" realPart="-6076.333333333333"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="7.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="5.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7e59"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7e59"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="7260.0"/><data column="0" line="2" realPart="6040.877326666667"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-44.0"/><data column="0" line="1" realPart="-7340.0"/><data column="0" line="2" realPart="-6065.333333333333"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="6039.71066"/><data column="0" line="1" realPart="3729.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-6080.333333333333"/><data column="0" line="1" realPart="-3706.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="6042.043993333334"/><data column="0" line="1" realPart="7300.71"/><data column="0" line="2" realPart="7260.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-6080.333333333333"/><data column="0" line="1" realPart="-7210.0"/><data column="0" line="2" realPart="-7210.0"/><data column="0" line="3" realPart="4.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="730.0" y="10.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="-2dd55334:14dcbdd0183:-7d27" ordering="1" parent="-2dd55334:14dcbdd0183:-7e6e" style="CommandPort;align=center;verticalAlign=bottom;spacing=10.0;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><TextBlock id="-6cad6c1c:14dd22d9551:-7f7a" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=18;flip=false;mirror=false" value="Model for Ex9_7"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="Model for Ex9_7"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="Model for Ex9_7"/></ScilabString><mxGeometry as="geometry" height="40.0" width="160.0" x="170.0" y="20.0"/></TextBlock><Summation dependsOnU="1" id="45c1b0d9:14ddc6fc2af:-7f12" interfaceFunctionName="SUMMATION" ordering="3" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="summation" simulationFunctionType="C_OR_FORTRAN" style="SUMMATION;flip=false;mirror=false" value="+"><ScilabString as="exprs" height="3" width="1"><data column="0" line="0" value="1"/><data column="0" line="1" value="[1;-1]"/><data column="0" line="2" value="0"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="2" width="1"><data column="0" line="0" realPart="1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="60.0" width="40.0" x="120.0" y="160.0"/></Summation><ExplicitInputPort dataType="REAL_MATRIX" id="4a338342:14e1ed0625e:-7aa6" ordering="1" parent="45c1b0d9:14ddc6fc2af:-7f12" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value="+"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitInputPort dataType="REAL_MATRIX" id="4a338342:14e1ed0625e:-7aa5" ordering="2" parent="45c1b0d9:14ddc6fc2af:-7f12" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value="-"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="36.0"/></ExplicitInputPort><ExplicitOutputPort dataType="REAL_MATRIX" id="4a338342:14e1ed0625e:-7aa4" ordering="1" parent="45c1b0d9:14ddc6fc2af:-7f12" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="26.0"/></ExplicitOutputPort><BasicBlock blockType="d" id="3b275bb5:14ddca84679:-75a6" interfaceFunctionName="CONST" ordering="4" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="cstblk4" simulationFunctionType="C_OR_FORTRAN" style="CONST;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="r"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="10.0" y="160.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-76454188:14e1ef4db88:-7e35" ordering="1" parent="3b275bb5:14ddca84679:-75a6" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><BasicBlock dependsOnU="1" id="4a338342:14e1ed0625e:-7f33" interfaceFunctionName="GAINBLK" ordering="5" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="gainblk" simulationFunctionType="C_OR_FORTRAN" style="GAINBLK;flip=false;mirror=false"><ScilabString as="exprs" height="2" width="1"><data column="0" line="0" value="K"/><data column="0" line="1" value="0"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="210.0" y="170.0"/></BasicBlock><ExplicitInputPort dataType="REAL_MATRIX" id="11757ea3:14e1f326925:-769e" ordering="1" parent="4a338342:14e1ed0625e:-7f33" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitOutputPort dataType="REAL_MATRIX" id="11757ea3:14e1f326925:-769d" ordering="1" parent="4a338342:14e1ed0625e:-7f33" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ExplicitLink id="4a338342:14e1ed0625e:-7f2d" parent="-2dd55334:14dcbdd0183:-7fd3" source="4a338342:14e1ed0625e:-7aa4" target="11757ea3:14e1f326925:-769e"><mxGeometry as="geometry" x="-40.0"><mxPoint as="sourcePoint" x="160.0" y="190.0"/><mxPoint as="targetPoint" x="210.0" y="190.0"/></mxGeometry></ExplicitLink><BasicBlock dependsOnU="1" id="4a338342:14e1ed0625e:-7c24" interfaceFunctionName="SATURATION" ordering="6" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="satur" simulationFunctionType="C_OR_FORTRAN" style="SATURATION;flip=false;mirror=false"><ScilabString as="exprs" height="3" width="1"><data column="0" line="0" value="0.1"/><data column="0" line="1" value="-0.1"/><data column="0" line="2" value="1"/></ScilabString><ScilabDouble as="realParameters" height="2" width="1"><data column="0" line="0" realPart="0.1"/><data column="0" line="1" realPart="-0.1"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="300.0" y="170.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="11757ea3:14e1f326925:-751f" ordering="1" parent="4a338342:14e1ed0625e:-7c24" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="11757ea3:14e1f326925:-751e" ordering="1" parent="4a338342:14e1ed0625e:-7c24" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><mxCell connectable="0" id="4a338342:14e1ed0625e:-7c24#identifier" parent="4a338342:14e1ed0625e:-7c24" style="noLabel=0;opacity=0;fontSize=14" value=" saturation limits: -0.1 & 0.1" vertex="1"><mxGeometry as="geometry" relative="1" x="0.5" y="1.1"><mxPoint as="offset" x="-1.0" y="5.0"/></mxGeometry></mxCell><ExplicitLink id="4a338342:14e1ed0625e:-7a49" parent="-2dd55334:14dcbdd0183:-7fd3" source="-76454188:14e1ef4db88:-7e35" target="4a338342:14e1ed0625e:-7aa6"><mxGeometry as="geometry" x="-40.0"><mxPoint as="sourcePoint" x="50.0" y="180.0"/><mxPoint as="targetPoint" x="120.0" y="180.0"/></mxGeometry></ExplicitLink><BasicBlock blockType="h" id="-76454188:14e1ef4db88:-7d58" interfaceFunctionName="ENDBLK" ordering="7" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="ENDBLK;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="ENDBLK"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-4"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=" "/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="150"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"END_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="END_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="scicosexit"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="150.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-76454188:14e1ef4db88:-7d55"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="END_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-76454188:14e1ef4db88:-7d55"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="6" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="3140.0"/><data column="0" line="2" realPart="3109.73333"/><data column="0" line="3" realPart="3109.73333"/><data column="0" line="4" realPart="3140.0"/><data column="0" line="5" realPart="60.0"/></ScilabDouble><ScilabDouble height="6" width="1"><data column="0" line="0" realPart="-44.0"/><data column="0" line="1" realPart="-3174.66666"/><data column="0" line="2" realPart="-3174.66666"/><data column="0" line="3" realPart="-3103.53333"/><data column="0" line="4" realPart="-3103.53333"/><data column="0" line="5" realPart="4.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="730.0" y="240.0"/></BasicBlock><ExplicitLink id="-76454188:14e1ef4db88:-70b7" parent="-2dd55334:14dcbdd0183:-7fd3" source="11757ea3:14e1f326925:-769d" target="11757ea3:14e1f326925:-751f"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="270.0" y="190.0"/></Array></mxGeometry></ExplicitLink><BasicBlock dependsOnT="1" id="11757ea3:14e1f326925:-788f" interfaceFunctionName="CLR" ordering="8" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="csslti4" simulationFunctionType="C_OR_FORTRAN" style="CLR;flip=false;mirror=false"><ScilabString as="exprs" height="2" width="1"><data column="0" line="0" value="1"/><data column="0" line="1" value="s"/></ScilabString><ScilabDouble as="realParameters" height="4" width="1"><data column="0" line="0" realPart="-0.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="1.0"/><data column="0" line="3" realPart="0.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="state" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="50.0" x="580.0" y="170.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="11757ea3:14e1f326925:-7888" ordering="1" parent="11757ea3:14e1f326925:-788f" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="11757ea3:14e1f326925:-7887" ordering="1" parent="11757ea3:14e1f326925:-788f" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="50.0" y="16.0"/></ExplicitOutputPort><ExplicitLink id="11757ea3:14e1f326925:-787d" parent="-2dd55334:14dcbdd0183:-7fd3" source="11757ea3:14e1f326925:-7893" target="11757ea3:14e1f326925:-7888"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="590.0" y="190.0"/><mxPoint as="targetPoint" x="630.0" y="190.0"/></mxGeometry></ExplicitLink><ExplicitLink id="11757ea3:14e1f326925:-74db" parent="-2dd55334:14dcbdd0183:-7fd3" source="11757ea3:14e1f326925:-751e" target="11757ea3:14e1f326925:-7894"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="330.0" y="190.0"/><mxPoint as="targetPoint" x="460.0" y="190.0"/></mxGeometry></ExplicitLink><BasicBlock dependsOnU="1" id="10b0d773:1669a47c43a:-7e12" interfaceFunctionName="CSCOPE" ordering="9" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="cscope" simulationFunctionType="C_OR_FORTRAN" style="CSCOPE"><ScilabString as="exprs" height="10" width="1"><data column="0" line="0" value="1 3 5 7 9 11 13 15"/><data column="0" line="1" value="-1"/><data column="0" line="2" value="[]"/><data column="0" line="3" value="[600;400]"/><data column="0" line="4" value="-2"/><data column="0" line="5" value="3"/><data column="0" line="6" value="150"/><data column="0" line="7" value="20"/><data column="0" line="8" value="0"/><data column="0" line="9" value=""/></ScilabString><ScilabDouble as="realParameters" height="4" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="-2.0"/><data column="0" line="2" realPart="3.0"/><data column="0" line="3" realPart="150.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="15" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="1.0"/><data column="0" line="4" realPart="3.0"/><data column="0" line="5" realPart="5.0"/><data column="0" line="6" realPart="7.0"/><data column="0" line="7" realPart="9.0"/><data column="0" line="8" realPart="11.0"/><data column="0" line="9" realPart="13.0"/><data column="0" line="10" realPart="15.0"/><data column="0" line="11" realPart="-1.0"/><data column="0" line="12" realPart="-1.0"/><data column="0" line="13" realPart="600.0"/><data column="0" line="14" realPart="400.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="730.0" y="170.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="10b0d773:1669a47c43a:-7dd1" ordering="1" parent="10b0d773:1669a47c43a:-7e12" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ControlPort dataType="UNKNOW_TYPE" id="10b0d773:1669a47c43a:-7dd0" ordering="1" parent="10b0d773:1669a47c43a:-7e12" style="ControlPort;align=center;verticalAlign=top;spacing=10.0;rotation=90"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><SplitBlock id="10b0d773:1669a47c43a:-7e08" ordering="10" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionType="DEFAULT"><mxGeometry as="geometry" height="7.0" width="7.0" x="667.0" y="187.0"/></SplitBlock><ExplicitInputPort dataType="UNKNOW_TYPE" id="10b0d773:1669a47c43a:-7e07" ordering="1" parent="10b0d773:1669a47c43a:-7e08" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ExplicitInputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="10b0d773:1669a47c43a:-7e06" ordering="1" parent="10b0d773:1669a47c43a:-7e08" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="10b0d773:1669a47c43a:-7e05" ordering="2" parent="10b0d773:1669a47c43a:-7e08" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitLink id="10b0d773:1669a47c43a:-7e04" parent="-2dd55334:14dcbdd0183:-7fd3" source="11757ea3:14e1f326925:-7887" target="10b0d773:1669a47c43a:-7e07"><mxGeometry as="geometry"><Array as="points" scilabClass=""/></mxGeometry></ExplicitLink><ExplicitLink id="10b0d773:1669a47c43a:-7e03" parent="-2dd55334:14dcbdd0183:-7fd3" source="10b0d773:1669a47c43a:-7e06" target="4a338342:14e1ed0625e:-7aa5"><mxGeometry as="geometry"><Array as="points" scilabClass=""><mxPoint x="670.0" y="280.0"/><mxPoint x="90.0" y="280.0"/><mxPoint x="90.0" y="200.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="10b0d773:1669a47c43a:-7e09" parent="-2dd55334:14dcbdd0183:-7fd3" source="10b0d773:1669a47c43a:-7e05" target="10b0d773:1669a47c43a:-7dd1"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="730.0" y="190.0"/><mxPoint as="targetPoint" x="670.0" y="190.0"/></mxGeometry></ExplicitLink><CommandControlLink id="10b0d773:1669a47c43a:-7e02" parent="-2dd55334:14dcbdd0183:-7fd3" source="-2dd55334:14dcbdd0183:-7d27" target="10b0d773:1669a47c43a:-7dd0"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="750.0" y="50.0"/><mxPoint as="targetPoint" x="750.0" y="170.0"/></mxGeometry></CommandControlLink></root></mxGraphModel><mxCell as="defaultParent" id="-2dd55334:14dcbdd0183:-7fd3" parent="-2dd55334:14dcbdd0183:-7fd2"/></XcosDiagram>
\ No newline at end of file diff --git a/Working_Examples/3432/CH9/EX9.7/Ex9_7_model_notch.xcos b/Working_Examples/3432/CH9/EX9.7/Ex9_7_model_notch.xcos new file mode 100755 index 0000000..1180505 --- /dev/null +++ b/Working_Examples/3432/CH9/EX9.7/Ex9_7_model_notch.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" finalIntegrationTime="50.0" title="Ex9_7_model_notch"><!--Xcos - 1.0 - scilab-5.5.2 - 20160406 2040--><mxGraphModel as="model"><root><mxCell id="-2dd55334:14dcbdd0183:-7fd2"/><mxCell id="-2dd55334:14dcbdd0183:-7fd3" parent="-2dd55334:14dcbdd0183:-7fd2"/><BasicBlock dependsOnT="1" id="-2dd55334:14dcbdd0183:-7f98" interfaceFunctionName="CLR" ordering="1" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="csslti4" simulationFunctionType="C_OR_FORTRAN" style="CLR;flip=false;mirror=false"><ScilabString as="exprs" height="2" width="1"><data column="0" line="0" value="1"/><data column="0" line="1" value="s^2+0.2*s+1"/></ScilabString><ScilabDouble as="realParameters" height="9" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="-1.0"/><data column="0" line="2" realPart="1.0"/><data column="0" line="3" realPart="-0.2"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="1.0"/><data column="0" line="6" realPart="1.0"/><data column="0" line="7" realPart="0.0"/><data column="0" line="8" realPart="0.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="state" height="2" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="120.0" x="400.0" y="170.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="11757ea3:14e1f326925:-7894" ordering="1" parent="-2dd55334:14dcbdd0183:-7f98" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="11757ea3:14e1f326925:-7893" ordering="1" parent="-2dd55334:14dcbdd0183:-7f98" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="120.0" y="16.0"/></ExplicitOutputPort><TextBlock id="-6cad6c1c:14dd22d9551:-7f7a" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=18;flip=false;mirror=false" value="Model for Ex9_7 system with notch filter"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="Model for Ex9_7 system with notch filter"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="Model for Ex9_7 system with notch filter"/></ScilabString><mxGeometry as="geometry" height="40.0" width="350.0" x="100.0" y="20.0"/></TextBlock><Summation dependsOnU="1" id="45c1b0d9:14ddc6fc2af:-7f12" interfaceFunctionName="SUMMATION" ordering="2" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="summation" simulationFunctionType="C_OR_FORTRAN" style="SUMMATION;flip=false;mirror=false" value="+"><ScilabString as="exprs" height="3" width="1"><data column="0" line="0" value="1"/><data column="0" line="1" value="[1;-1]"/><data column="0" line="2" value="0"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="2" width="1"><data column="0" line="0" realPart="1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="60.0" width="40.0" x="120.0" y="160.0"/></Summation><ExplicitInputPort dataType="REAL_MATRIX" id="4a338342:14e1ed0625e:-7aa6" ordering="1" parent="45c1b0d9:14ddc6fc2af:-7f12" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value="+"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitInputPort dataType="REAL_MATRIX" id="4a338342:14e1ed0625e:-7aa5" ordering="2" parent="45c1b0d9:14ddc6fc2af:-7f12" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value="-"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="36.0"/></ExplicitInputPort><ExplicitOutputPort dataType="REAL_MATRIX" id="4a338342:14e1ed0625e:-7aa4" ordering="1" parent="45c1b0d9:14ddc6fc2af:-7f12" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="26.0"/></ExplicitOutputPort><BasicBlock blockType="d" id="3b275bb5:14ddca84679:-75a6" interfaceFunctionName="CONST" ordering="3" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="cstblk4" simulationFunctionType="C_OR_FORTRAN" style="CONST;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="r"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="10.0" y="160.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-76454188:14e1ef4db88:-7e35" ordering="1" parent="3b275bb5:14ddca84679:-75a6" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><BasicBlock dependsOnU="1" id="4a338342:14e1ed0625e:-7f33" interfaceFunctionName="GAINBLK" ordering="4" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="gainblk" simulationFunctionType="C_OR_FORTRAN" style="GAINBLK;flip=false;mirror=false"><ScilabString as="exprs" height="2" width="1"><data column="0" line="0" value="K"/><data column="0" line="1" value="0"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="210.0" y="170.0"/></BasicBlock><ExplicitInputPort dataType="REAL_MATRIX" id="11757ea3:14e1f326925:-769e" ordering="1" parent="4a338342:14e1ed0625e:-7f33" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitOutputPort dataType="REAL_MATRIX" id="11757ea3:14e1f326925:-769d" ordering="1" parent="4a338342:14e1ed0625e:-7f33" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ExplicitLink id="4a338342:14e1ed0625e:-7f2d" parent="-2dd55334:14dcbdd0183:-7fd3" source="4a338342:14e1ed0625e:-7aa4" target="11757ea3:14e1f326925:-769e"><mxGeometry as="geometry" x="-40.0"><mxPoint as="sourcePoint" x="160.0" y="190.0"/><mxPoint as="targetPoint" x="210.0" y="190.0"/></mxGeometry></ExplicitLink><BasicBlock dependsOnU="1" id="4a338342:14e1ed0625e:-7c24" interfaceFunctionName="SATURATION" ordering="5" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="satur" simulationFunctionType="C_OR_FORTRAN" style="SATURATION;flip=false;mirror=false"><ScilabString as="exprs" height="3" width="1"><data column="0" line="0" value="0.1"/><data column="0" line="1" value="-0.1"/><data column="0" line="2" value="1"/></ScilabString><ScilabDouble as="realParameters" height="2" width="1"><data column="0" line="0" realPart="0.1"/><data column="0" line="1" realPart="-0.1"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="300.0" y="170.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="11757ea3:14e1f326925:-751f" ordering="1" parent="4a338342:14e1ed0625e:-7c24" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="11757ea3:14e1f326925:-751e" ordering="1" parent="4a338342:14e1ed0625e:-7c24" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><mxCell connectable="0" id="4a338342:14e1ed0625e:-7c24#identifier" parent="4a338342:14e1ed0625e:-7c24" style="noLabel=0;opacity=0;fontSize=14" value=" saturation limits: -0.1 & 0.1" vertex="1"><mxGeometry as="geometry" relative="1" x="0.5" y="1.1"><mxPoint as="offset" x="-1.0" y="5.0"/></mxGeometry></mxCell><ExplicitLink id="4a338342:14e1ed0625e:-7a49" parent="-2dd55334:14dcbdd0183:-7fd3" source="-76454188:14e1ef4db88:-7e35" target="4a338342:14e1ed0625e:-7aa6"><mxGeometry as="geometry" x="-40.0"><mxPoint as="sourcePoint" x="50.0" y="180.0"/><mxPoint as="targetPoint" x="120.0" y="180.0"/></mxGeometry></ExplicitLink><BasicBlock blockType="h" id="-76454188:14e1ef4db88:-7d58" interfaceFunctionName="ENDBLK" ordering="6" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="ENDBLK;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="ENDBLK"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-4"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=" "/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="50"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"END_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="END_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="scicosexit"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="50.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-76454188:14e1ef4db88:-7d55"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="END_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-76454188:14e1ef4db88:-7d55"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="6" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="3700.0"/><data column="0" line="2" realPart="3669.73333"/><data column="0" line="3" realPart="3669.73333"/><data column="0" line="4" realPart="3700.0"/><data column="0" line="5" realPart="60.0"/></ScilabDouble><ScilabDouble height="6" width="1"><data column="0" line="0" realPart="-44.0"/><data column="0" line="1" realPart="-3734.66666"/><data column="0" line="2" realPart="-3734.66666"/><data column="0" line="3" realPart="-3663.53333"/><data column="0" line="4" realPart="-3663.53333"/><data column="0" line="5" realPart="4.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="720.0" y="240.0"/></BasicBlock><ExplicitLink id="-76454188:14e1ef4db88:-70b7" parent="-2dd55334:14dcbdd0183:-7fd3" source="11757ea3:14e1f326925:-769d" target="11757ea3:14e1f326925:-751f"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="270.0" y="190.0"/></Array></mxGeometry></ExplicitLink><BasicBlock dependsOnT="1" id="11757ea3:14e1f326925:-788f" interfaceFunctionName="CLR" ordering="7" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="csslti4" simulationFunctionType="C_OR_FORTRAN" style="CLR;flip=false;mirror=false"><ScilabString as="exprs" height="2" width="1"><data column="0" line="0" value="1"/><data column="0" line="1" value="s"/></ScilabString><ScilabDouble as="realParameters" height="4" width="1"><data column="0" line="0" realPart="-0.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="1.0"/><data column="0" line="3" realPart="0.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="state" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="50.0" x="580.0" y="170.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="11757ea3:14e1f326925:-7888" ordering="1" parent="11757ea3:14e1f326925:-788f" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="11757ea3:14e1f326925:-7887" ordering="1" parent="11757ea3:14e1f326925:-788f" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="50.0" y="16.0"/></ExplicitOutputPort><ExplicitLink id="11757ea3:14e1f326925:-787d" parent="-2dd55334:14dcbdd0183:-7fd3" source="11757ea3:14e1f326925:-7893" target="11757ea3:14e1f326925:-7888"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="590.0" y="190.0"/><mxPoint as="targetPoint" x="630.0" y="190.0"/></mxGeometry></ExplicitLink><ExplicitLink id="11757ea3:14e1f326925:-74db" parent="-2dd55334:14dcbdd0183:-7fd3" source="11757ea3:14e1f326925:-751e" target="11757ea3:14e1f326925:-7894"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="330.0" y="190.0"/><mxPoint as="targetPoint" x="460.0" y="190.0"/></mxGeometry></ExplicitLink><BasicBlock dependsOnT="1" dependsOnU="1" id="11757ea3:14e1f326925:-7262" interfaceFunctionName="CLR" ordering="8" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="csslti4" simulationFunctionType="C_OR_FORTRAN" style="CLR;flip=false;mirror=true"><ScilabString as="exprs" height="2" width="1"><data column="0" line="0" value="s^2+0.18*s+0.81"/><data column="0" line="1" value="(s+10)^2"/></ScilabString><ScilabDouble as="realParameters" height="9" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="-100.0"/><data column="0" line="2" realPart="1.0"/><data column="0" line="3" realPart="-20.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="1.0"/><data column="0" line="6" realPart="-99.19"/><data column="0" line="7" realPart="-19.82"/><data column="0" line="8" realPart="1.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="state" height="2" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="140.0" x="380.0" y="290.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="11757ea3:14e1f326925:-7215" ordering="1" parent="11757ea3:14e1f326925:-7262" style="ExplicitInputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=180;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="140.0" y="16.0"/></ExplicitInputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="11757ea3:14e1f326925:-7214" ordering="1" parent="11757ea3:14e1f326925:-7262" style="ExplicitOutputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=180;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitOutputPort><BasicBlock dependsOnU="1" id="11757ea3:14e1f326925:-722c" interfaceFunctionName="GAINBLK" ordering="9" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="gainblk" simulationFunctionType="C_OR_FORTRAN" style="GAINBLK;flip=false;mirror=true"><ScilabString as="exprs" height="2" width="1"><data column="0" line="0" value="100/0.84"/><data column="0" line="1" value="0"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="119.04761904761905"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="60.0" width="60.0" x="250.0" y="280.0"/></BasicBlock><ExplicitInputPort dataType="REAL_MATRIX" id="11757ea3:14e1f326925:-7225" ordering="1" parent="11757ea3:14e1f326925:-722c" style="ExplicitInputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=180;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="60.0" y="26.0"/></ExplicitInputPort><ExplicitOutputPort dataType="REAL_MATRIX" id="11757ea3:14e1f326925:-7224" ordering="1" parent="11757ea3:14e1f326925:-722c" style="ExplicitOutputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=180;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="26.0"/></ExplicitOutputPort><ExplicitLink id="11757ea3:14e1f326925:-7220" parent="-2dd55334:14dcbdd0183:-7fd3" source="11757ea3:14e1f326925:-7214" target="11757ea3:14e1f326925:-7225"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="440.0" y="310.0"/><mxPoint as="targetPoint" x="390.0" y="310.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="380.0" y="310.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="11757ea3:14e1f326925:-721f" parent="-2dd55334:14dcbdd0183:-7fd3" source="11757ea3:14e1f326925:-7224" target="4a338342:14e1ed0625e:-7aa5"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="320.0" y="310.0"/><mxPoint as="targetPoint" x="120.0" y="200.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="80.0" y="310.0"/><mxPoint x="80.0" y="200.0"/></Array></mxGeometry></ExplicitLink><BasicBlock dependsOnU="1" id="10b0d773:1669a47c43a:-7e97" interfaceFunctionName="CSCOPE" ordering="10" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="cscope" simulationFunctionType="C_OR_FORTRAN" style="CSCOPE"><ScilabString as="exprs" height="10" width="1"><data column="0" line="0" value="1 3 5 7 9 11 13 15"/><data column="0" line="1" value="-1"/><data column="0" line="2" value="[]"/><data column="0" line="3" value="[600;400]"/><data column="0" line="4" value="-2"/><data column="0" line="5" value="5"/><data column="0" line="6" value="50"/><data column="0" line="7" value="20"/><data column="0" line="8" value="0"/><data column="0" line="9" value=""/></ScilabString><ScilabDouble as="realParameters" height="4" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="-2.0"/><data column="0" line="2" realPart="5.0"/><data column="0" line="3" realPart="50.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="15" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="1.0"/><data column="0" line="4" realPart="3.0"/><data column="0" line="5" realPart="5.0"/><data column="0" line="6" realPart="7.0"/><data column="0" line="7" realPart="9.0"/><data column="0" line="8" realPart="11.0"/><data column="0" line="9" realPart="13.0"/><data column="0" line="10" realPart="15.0"/><data column="0" line="11" realPart="-1.0"/><data column="0" line="12" realPart="-1.0"/><data column="0" line="13" realPart="600.0"/><data column="0" line="14" realPart="400.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="720.0" y="170.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="10b0d773:1669a47c43a:-7e6d" ordering="1" parent="10b0d773:1669a47c43a:-7e97" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ControlPort dataType="UNKNOW_TYPE" id="10b0d773:1669a47c43a:-7e6c" ordering="1" parent="10b0d773:1669a47c43a:-7e97" style="ControlPort;align=center;verticalAlign=top;spacing=10.0;rotation=90"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><SplitBlock id="10b0d773:1669a47c43a:-7e90" ordering="11" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionType="DEFAULT"><mxGeometry as="geometry" height="7.0" width="7.0" x="667.0" y="187.0"/></SplitBlock><ExplicitInputPort dataType="UNKNOW_TYPE" id="10b0d773:1669a47c43a:-7e8f" ordering="1" parent="10b0d773:1669a47c43a:-7e90" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ExplicitInputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="10b0d773:1669a47c43a:-7e8e" ordering="1" parent="10b0d773:1669a47c43a:-7e90" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="10b0d773:1669a47c43a:-7e8d" ordering="2" parent="10b0d773:1669a47c43a:-7e90" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitLink id="10b0d773:1669a47c43a:-7e8c" parent="-2dd55334:14dcbdd0183:-7fd3" source="11757ea3:14e1f326925:-7887" target="10b0d773:1669a47c43a:-7e8f"><mxGeometry as="geometry"><Array as="points" scilabClass=""/></mxGeometry></ExplicitLink><ExplicitLink id="10b0d773:1669a47c43a:-7e8b" parent="-2dd55334:14dcbdd0183:-7fd3" source="10b0d773:1669a47c43a:-7e8e" target="11757ea3:14e1f326925:-7215"><mxGeometry as="geometry"><Array as="points" scilabClass=""><mxPoint x="670.0" y="310.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="10b0d773:1669a47c43a:-7e91" parent="-2dd55334:14dcbdd0183:-7fd3" source="10b0d773:1669a47c43a:-7e8d" target="10b0d773:1669a47c43a:-7e6d"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="720.0" y="190.0"/><mxPoint as="targetPoint" x="670.0" y="190.0"/></mxGeometry></ExplicitLink><BasicBlock blockType="h" id="-2dd55334:14dcbdd0183:-7e6e" interfaceFunctionName="CLOCK_c" ordering="12" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="1.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="3939.0"/><data column="1" line="0" realPart="-3970.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7e5e"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7e5e"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.1"/><data column="0" line="1" value="0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.1"/><data column="0" line="1" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7e5c"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7e5c"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="6426.377326666667"/><data column="1" line="0" realPart="-6472.333333333333"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="7.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="5.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7e59"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7e59"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="7740.0"/><data column="0" line="2" realPart="6436.877326666667"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-44.0"/><data column="0" line="1" realPart="-7820.0"/><data column="0" line="2" realPart="-6461.333333333333"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="6435.71066"/><data column="0" line="1" realPart="3969.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-6476.333333333333"/><data column="0" line="1" realPart="-3946.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="6438.043993333334"/><data column="0" line="1" realPart="7780.71"/><data column="0" line="2" realPart="7740.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-6476.333333333333"/><data column="0" line="1" realPart="-7690.0"/><data column="0" line="2" realPart="-7690.0"/><data column="0" line="3" realPart="4.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="30.0" width="40.0" x="720.0" y="30.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="-2dd55334:14dcbdd0183:-7d27" ordering="1" parent="-2dd55334:14dcbdd0183:-7e6e" style="CommandPort;align=center;verticalAlign=bottom;spacing=10.0;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="30.0"/></CommandPort><CommandControlLink id="10b0d773:1669a47c43a:-7e87" parent="-2dd55334:14dcbdd0183:-7fd3" source="-2dd55334:14dcbdd0183:-7d27" target="10b0d773:1669a47c43a:-7e6c"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="740.0" y="60.0"/><mxPoint as="targetPoint" x="740.0" y="170.0"/></mxGeometry></CommandControlLink></root></mxGraphModel><mxCell as="defaultParent" id="-2dd55334:14dcbdd0183:-7fd3" parent="-2dd55334:14dcbdd0183:-7fd2"/></XcosDiagram>
\ No newline at end of file diff --git a/Working_Examples/3432/CH9/EX9.8/DEPENDENCIES/fig_settings.sci b/Working_Examples/3432/CH9/EX9.8/DEPENDENCIES/fig_settings.sci new file mode 100755 index 0000000..5d5e7d4 --- /dev/null +++ b/Working_Examples/3432/CH9/EX9.8/DEPENDENCIES/fig_settings.sci @@ -0,0 +1,9 @@ +//------------------------------------------------------------------
+//figure handel settings
+f=get("current_figure"); //Current figure handle
+f.background=8; //make the figure window background white
+l=f.children(1);
+l.background=8 ;//make the text background white
+id=color('grey');
+xgrid(id);
+//------------------------------------------------------------------
diff --git a/Working_Examples/3432/CH9/EX9.8/Ex9_8.sce b/Working_Examples/3432/CH9/EX9.8/Ex9_8.sce new file mode 100755 index 0000000..159d2c4 --- /dev/null +++ b/Working_Examples/3432/CH9/EX9.8/Ex9_8.sce @@ -0,0 +1,44 @@ +//Example 9.8
+//Antiwindup compensation for a PI controller.
+
+xdel(winsid())//close all graphics Windows
+clear;
+clc;
+//------------------------------------------------------------------
+//System Model
+
+//Response of the system
+kp=2;
+ki=4;
+
+//Without antiwindup
+ka=0;
+importXcosDiagram(".\Ex9_8_model.xcos")
+xcos_simulate(scs_m,4);
+scs_m.props.context
+figure(0)
+plot(yt.time,yt.values,'m-.')
+figure(1)
+plot(ut.time,ut.values,'m-.')
+
+//With antiwindup
+ka=10;
+xcos_simulate(scs_m,4);
+scf(0)
+plot(yt.time,yt.values)
+exec .\fig_settings.sci; // custom script for setting figure properties
+xlabel('Time (sec.)');
+ylabel('Output');
+title("Integrator antiwindup (a) step response.",'fontsize',3);
+
+
+scf(1)
+plot(ut.time,ut.values);
+exec .\fig_settings.sci; // custom script for setting figure properties
+xlabel('Time (sec.)');
+ylabel('Control');
+title("Integrator antiwindup (b) Control effort.",'fontsize',3);
+zoom_rect([0 -1.2 10 1.2])
+
+//------------------------------------------------------------------
+
diff --git a/Working_Examples/3432/CH9/EX9.8/Ex9_8_f0.pdf b/Working_Examples/3432/CH9/EX9.8/Ex9_8_f0.pdf Binary files differnew file mode 100755 index 0000000..d60a27a --- /dev/null +++ b/Working_Examples/3432/CH9/EX9.8/Ex9_8_f0.pdf diff --git a/Working_Examples/3432/CH9/EX9.8/Ex9_8_f1.pdf b/Working_Examples/3432/CH9/EX9.8/Ex9_8_f1.pdf Binary files differnew file mode 100755 index 0000000..0b10f88 --- /dev/null +++ b/Working_Examples/3432/CH9/EX9.8/Ex9_8_f1.pdf diff --git a/Working_Examples/3432/CH9/EX9.8/Ex9_8_model.xcos b/Working_Examples/3432/CH9/EX9.8/Ex9_8_model.xcos new file mode 100755 index 0000000..2731b71 --- /dev/null +++ b/Working_Examples/3432/CH9/EX9.8/Ex9_8_model.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" finalIntegrationTime="10.0" title="Ex9_8_model"><!--Xcos - 1.0 - scilab-5.5.2 - 20160406 2040--><mxGraphModel as="model"><root><mxCell id="-2dd55334:14dcbdd0183:-7fd2"/><mxCell id="-2dd55334:14dcbdd0183:-7fd3" parent="-2dd55334:14dcbdd0183:-7fd2"/><BasicBlock dependsOnT="1" id="-2dd55334:14dcbdd0183:-7f98" interfaceFunctionName="CLR" ordering="1" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="csslti4" simulationFunctionType="C_OR_FORTRAN" style="CLR;flip=false;mirror=false"><ScilabString as="exprs" height="2" width="1"><data column="0" line="0" value="1"/><data column="0" line="1" value="s"/></ScilabString><ScilabDouble as="realParameters" height="4" width="1"><data column="0" line="0" realPart="-0.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="1.0"/><data column="0" line="3" realPart="0.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="state" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="50.0" x="750.0" y="190.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-4982527b:14e23f46651:-7ae0" ordering="1" parent="-2dd55334:14dcbdd0183:-7f98" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-4982527b:14e23f46651:-7adf" ordering="1" parent="-2dd55334:14dcbdd0183:-7f98" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="50.0" y="16.0"/></ExplicitOutputPort><BasicBlock blockType="h" id="-2dd55334:14dcbdd0183:-7e6e" interfaceFunctionName="CLOCK_c" ordering="2" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="1.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4419.0"/><data column="1" line="0" realPart="-4450.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7e5e"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7e5e"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.1"/><data column="0" line="1" value="0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.1"/><data column="0" line="1" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7e5c"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7e5c"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7218.377326666667"/><data column="1" line="0" realPart="-7264.333333333333"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="7.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="5.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7e59"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7e59"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="8700.0"/><data column="0" line="2" realPart="7228.877326666667"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-44.0"/><data column="0" line="1" realPart="-8780.0"/><data column="0" line="2" realPart="-7253.333333333333"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="7227.71066"/><data column="0" line="1" realPart="4449.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-7268.333333333333"/><data column="0" line="1" realPart="-4426.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="7230.043993333334"/><data column="0" line="1" realPart="8740.71"/><data column="0" line="2" realPart="8700.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-7268.333333333333"/><data column="0" line="1" realPart="-8650.0"/><data column="0" line="2" realPart="-8650.0"/><data column="0" line="3" realPart="4.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="870.0" y="40.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="-2dd55334:14dcbdd0183:-7d27" ordering="1" parent="-2dd55334:14dcbdd0183:-7e6e" style="CommandPort;align=center;verticalAlign=bottom;spacing=10.0;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><TextBlock id="-6cad6c1c:14dd22d9551:-7f7a" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=18;flip=false;mirror=false" value="Model for Ex9_8"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="Model for Ex9_8"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="Model for Ex9_8"/></ScilabString><mxGeometry as="geometry" height="40.0" width="160.0" x="330.0" y="40.0"/></TextBlock><Summation dependsOnU="1" id="45c1b0d9:14ddc6fc2af:-7f12" interfaceFunctionName="SUMMATION" ordering="3" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="summation" simulationFunctionType="C_OR_FORTRAN" style="SUMMATION;flip=false;mirror=false" value="+"><ScilabString as="exprs" height="3" width="1"><data column="0" line="0" value="1"/><data column="0" line="1" value="[1;-1]"/><data column="0" line="2" value="0"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="2" width="1"><data column="0" line="0" realPart="1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="60.0" width="40.0" x="130.0" y="180.0"/></Summation><ExplicitInputPort dataType="REAL_MATRIX" id="4a338342:14e1ed0625e:-7aa6" ordering="1" parent="45c1b0d9:14ddc6fc2af:-7f12" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value="+"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitInputPort dataType="REAL_MATRIX" id="4a338342:14e1ed0625e:-7aa5" ordering="2" parent="45c1b0d9:14ddc6fc2af:-7f12" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value="-"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="36.0"/></ExplicitInputPort><ExplicitOutputPort dataType="REAL_MATRIX" id="4a338342:14e1ed0625e:-7aa4" ordering="1" parent="45c1b0d9:14ddc6fc2af:-7f12" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="26.0"/></ExplicitOutputPort><BasicBlock blockType="h" id="-76454188:14e1ef4db88:-7d58" interfaceFunctionName="ENDBLK" ordering="4" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="ENDBLK;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="ENDBLK"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-4"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=" "/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="10"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"END_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="END_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="scicosexit"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="10.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-76454188:14e1ef4db88:-7d55"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="END_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-76454188:14e1ef4db88:-7d55"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="6" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="4700.0"/><data column="0" line="2" realPart="4669.73333"/><data column="0" line="3" realPart="4669.73333"/><data column="0" line="4" realPart="4700.0"/><data column="0" line="5" realPart="60.0"/></ScilabDouble><ScilabDouble height="6" width="1"><data column="0" line="0" realPart="-44.0"/><data column="0" line="1" realPart="-4734.66666"/><data column="0" line="2" realPart="-4734.66666"/><data column="0" line="3" realPart="-4663.53333"/><data column="0" line="4" realPart="-4663.53333"/><data column="0" line="5" realPart="4.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="810.0" y="40.0"/></BasicBlock><BasicBlock dependsOnU="1" id="-4982527b:14e23f46651:-7b03" interfaceFunctionName="SATURATION" ordering="5" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="satur" simulationFunctionType="C_OR_FORTRAN" style="SATURATION;flip=false;mirror=false"><ScilabString as="exprs" height="3" width="1"><data column="0" line="0" value="1"/><data column="0" line="1" value="-1"/><data column="0" line="2" value="0"/></ScilabString><ScilabDouble as="realParameters" height="2" width="1"><data column="0" line="0" realPart="1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="650.0" y="190.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-4982527b:14e23f46651:-7b02" ordering="1" parent="-4982527b:14e23f46651:-7b03" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-4982527b:14e23f46651:-7b01" ordering="1" parent="-4982527b:14e23f46651:-7b03" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><mxCell connectable="0" id="-4982527b:14e23f46651:-7b03#identifier" parent="-4982527b:14e23f46651:-7b03" style="noLabel=0;opacity=0;fontSize=14" value=" Saturation limits: -1 & 1" vertex="1"><mxGeometry as="geometry" relative="1" x="0.5" y="1.1"><mxPoint as="offset" x="3.0" y="9.0"/></mxGeometry></mxCell><Summation dependsOnU="1" id="-4982527b:14e23f46651:-7ad1" interfaceFunctionName="SUMMATION" ordering="6" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="summation" simulationFunctionType="C_OR_FORTRAN" style="SUMMATION;flip=false;mirror=false" value="+"><ScilabString as="exprs" height="3" width="1"><data column="0" line="0" value="1"/><data column="0" line="1" value="[1;1]"/><data column="0" line="2" value="0"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="2" width="1"><data column="0" line="0" realPart="1.0"/><data column="0" line="1" realPart="1.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="60.0" width="40.0" x="510.0" y="180.0"/></Summation><ExplicitInputPort dataType="REAL_MATRIX" id="-4982527b:14e23f46651:-7ac8" ordering="1" parent="-4982527b:14e23f46651:-7ad1" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitInputPort dataType="REAL_MATRIX" id="-4982527b:14e23f46651:-7ac7" ordering="2" parent="-4982527b:14e23f46651:-7ad1" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="36.0"/></ExplicitInputPort><ExplicitOutputPort dataType="REAL_MATRIX" id="-4982527b:14e23f46651:-7ac6" ordering="1" parent="-4982527b:14e23f46651:-7ad1" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="26.0"/></ExplicitOutputPort><mxCell connectable="0" id="-4982527b:14e23f46651:-7ad1#identifier" parent="-4982527b:14e23f46651:-7ad1" style="noLabel=0;opacity=0" value=" SUM" vertex="1"><mxGeometry as="geometry" relative="1" x="0.5" y="1.1"/></mxCell><BasicBlock dependsOnT="1" id="-4982527b:14e23f46651:-7ac2" interfaceFunctionName="CLR" ordering="7" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="csslti4" simulationFunctionType="C_OR_FORTRAN" style="CLR;flip=false;mirror=false"><ScilabString as="exprs" height="2" width="1"><data column="0" line="0" value="1"/><data column="0" line="1" value="s"/></ScilabString><ScilabDouble as="realParameters" height="4" width="1"><data column="0" line="0" realPart="-0.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="1.0"/><data column="0" line="3" realPart="0.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="state" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="50.0" x="400.0" y="200.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-4982527b:14e23f46651:-7ac1" ordering="1" parent="-4982527b:14e23f46651:-7ac2" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-4982527b:14e23f46651:-7ac0" ordering="1" parent="-4982527b:14e23f46651:-7ac2" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="50.0" y="16.0"/></ExplicitOutputPort><Summation dependsOnU="1" id="-4982527b:14e23f46651:-7ab0" interfaceFunctionName="SUMMATION" ordering="8" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="summation" simulationFunctionType="C_OR_FORTRAN" style="SUMMATION;flip=true;mirror=true" value="+"><ScilabString as="exprs" height="3" width="1"><data column="0" line="0" value="1"/><data column="0" line="1" value="[1;-1]"/><data column="0" line="2" value="0"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="2" width="1"><data column="0" line="0" realPart="1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="60.0" width="40.0" x="510.0" y="290.0"/></Summation><ExplicitInputPort dataType="REAL_MATRIX" id="-4982527b:14e23f46651:-7aaf" ordering="1" parent="-4982527b:14e23f46651:-7ab0" style="ExplicitInputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=180;flip=false;mirror=false" value="+"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitInputPort><ExplicitInputPort dataType="REAL_MATRIX" id="-4982527b:14e23f46651:-7aae" ordering="2" parent="-4982527b:14e23f46651:-7ab0" style="ExplicitInputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=180;flip=false;mirror=false" value="-"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="36.0"/></ExplicitInputPort><ExplicitOutputPort dataType="REAL_MATRIX" id="-4982527b:14e23f46651:-7aad" ordering="1" parent="-4982527b:14e23f46651:-7ab0" style="ExplicitOutputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=180;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="26.0"/></ExplicitOutputPort><SplitBlock id="-4982527b:14e23f46651:-7aa7" ordering="9" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="727.0" y="207.0"/></SplitBlock><ExplicitInputPort dataType="UNKNOW_TYPE" id="-4982527b:14e23f46651:-7aa6" ordering="1" parent="-4982527b:14e23f46651:-7aa7" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ExplicitInputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="-4982527b:14e23f46651:-7aa5" ordering="1" parent="-4982527b:14e23f46651:-7aa7" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="-4982527b:14e23f46651:-7aa4" ordering="2" parent="-4982527b:14e23f46651:-7aa7" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitLink id="-4982527b:14e23f46651:-7aa3" parent="-2dd55334:14dcbdd0183:-7fd3" source="-4982527b:14e23f46651:-7b01" target="-4982527b:14e23f46651:-7aa6"><mxGeometry as="geometry" x="160.0" y="20.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ExplicitLink><ExplicitLink id="-4982527b:14e23f46651:-7aa2" parent="-2dd55334:14dcbdd0183:-7fd3" source="-4982527b:14e23f46651:-7aa5" target="-4982527b:14e23f46651:-7ae0"><mxGeometry as="geometry" x="160.0" y="20.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ExplicitLink><SplitBlock id="-4982527b:14e23f46651:-7a91" ordering="10" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="587.0" y="207.0"/></SplitBlock><ExplicitInputPort dataType="UNKNOW_TYPE" id="-4982527b:14e23f46651:-7a90" ordering="1" parent="-4982527b:14e23f46651:-7a91" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ExplicitInputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="-4982527b:14e23f46651:-7a8f" ordering="1" parent="-4982527b:14e23f46651:-7a91" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="-4982527b:14e23f46651:-7a8e" ordering="2" parent="-4982527b:14e23f46651:-7a91" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitLink id="-4982527b:14e23f46651:-7a8d" parent="-2dd55334:14dcbdd0183:-7fd3" source="-4982527b:14e23f46651:-7ac6" target="-4982527b:14e23f46651:-7a90"><mxGeometry as="geometry" x="160.0" y="20.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ExplicitLink><ExplicitLink id="-4982527b:14e23f46651:-7a8c" parent="-2dd55334:14dcbdd0183:-7fd3" source="-4982527b:14e23f46651:-7a8f" target="-4982527b:14e23f46651:-7b02"><mxGeometry as="geometry" x="160.0" y="20.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="600.0" y="210.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="-4982527b:14e23f46651:-7a92" parent="-2dd55334:14dcbdd0183:-7fd3" source="-4982527b:14e23f46651:-7a8e" target="-4982527b:14e23f46651:-7aaf"><mxGeometry as="geometry" x="160.0" y="20.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="590.0" y="310.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="-4982527b:14e23f46651:-7a7d" parent="-2dd55334:14dcbdd0183:-7fd3" source="-4982527b:14e23f46651:-7ac0" target="-4982527b:14e23f46651:-7ac7"><mxGeometry as="geometry" x="160.0" y="20.0"/></ExplicitLink><Summation dependsOnU="1" id="-4982527b:14e23f46651:-7a78" interfaceFunctionName="SUMMATION" ordering="11" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="summation" simulationFunctionType="C_OR_FORTRAN" style="SUMMATION;flip=false;mirror=false" value="+"><ScilabString as="exprs" height="3" width="1"><data column="0" line="0" value="1"/><data column="0" line="1" value="[1;-1]"/><data column="0" line="2" value="0"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="2" width="1"><data column="0" line="0" realPart="1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="60.0" width="40.0" x="220.0" y="190.0"/></Summation><ExplicitInputPort dataType="REAL_MATRIX" id="-4982527b:14e23f46651:-7a77" ordering="1" parent="-4982527b:14e23f46651:-7a78" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value="+"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitInputPort dataType="REAL_MATRIX" id="-4982527b:14e23f46651:-7a76" ordering="2" parent="-4982527b:14e23f46651:-7a78" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value="-"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="36.0"/></ExplicitInputPort><ExplicitOutputPort dataType="REAL_MATRIX" id="-4982527b:14e23f46651:-7a75" ordering="1" parent="-4982527b:14e23f46651:-7a78" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="26.0"/></ExplicitOutputPort><BasicBlock dependsOnU="1" id="-4982527b:14e23f46651:-7a62" interfaceFunctionName="GAINBLK" ordering="12" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="gainblk" simulationFunctionType="C_OR_FORTRAN" style="GAINBLK;mirror=true;flip=false"><ScilabString as="exprs" height="2" width="1"><data column="0" line="0" value="ka"/><data column="0" line="1" value="0"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="10.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="340.0" y="300.0"/></BasicBlock><ExplicitInputPort dataType="REAL_MATRIX" id="-432f6151:14e24bf6f54:-7d54" ordering="1" parent="-4982527b:14e23f46651:-7a62" style="ExplicitInputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=180;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitInputPort><ExplicitOutputPort dataType="REAL_MATRIX" id="-432f6151:14e24bf6f54:-7d53" ordering="1" parent="-4982527b:14e23f46651:-7a62" style="ExplicitOutputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=180;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitOutputPort><ExplicitLink id="-4982527b:14e23f46651:-7a59" parent="-2dd55334:14dcbdd0183:-7fd3" source="-4982527b:14e23f46651:-7aad" target="-432f6151:14e24bf6f54:-7d54"><mxGeometry as="geometry" x="160.0" y="20.0"/></ExplicitLink><BasicBlock dependsOnU="1" id="-4982527b:14e23f46651:-7a4b" interfaceFunctionName="GAINBLK" ordering="13" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="gainblk" simulationFunctionType="C_OR_FORTRAN" style="GAINBLK;flip=false;mirror=false"><ScilabString as="exprs" height="2" width="1"><data column="0" line="0" value="ki"/><data column="0" line="1" value="0"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="310.0" y="200.0"/></BasicBlock><ExplicitInputPort dataType="REAL_MATRIX" id="-4982527b:14e23f46651:-7a3c" ordering="1" parent="-4982527b:14e23f46651:-7a4b" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitOutputPort dataType="REAL_MATRIX" id="-4982527b:14e23f46651:-7a3b" ordering="1" parent="-4982527b:14e23f46651:-7a4b" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ExplicitLink id="-4982527b:14e23f46651:-7a3f" parent="-2dd55334:14dcbdd0183:-7fd3" source="-4982527b:14e23f46651:-7a3b" target="-4982527b:14e23f46651:-7ac1"><mxGeometry as="geometry" x="160.0" y="20.0"/></ExplicitLink><ExplicitLink id="-4982527b:14e23f46651:-7a36" parent="-2dd55334:14dcbdd0183:-7fd3" source="-4982527b:14e23f46651:-7a75" target="-4982527b:14e23f46651:-7a3c"><mxGeometry as="geometry" x="160.0" y="20.0"/></ExplicitLink><ExplicitLink id="-4982527b:14e23f46651:-7a35" parent="-2dd55334:14dcbdd0183:-7fd3" source="-432f6151:14e24bf6f54:-7d53" target="-4982527b:14e23f46651:-7a76"><mxGeometry as="geometry" x="160.0" y="20.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="190.0" y="320.0"/><mxPoint x="190.0" y="230.0"/></Array></mxGeometry></ExplicitLink><BasicBlock dependsOnU="1" id="-4982527b:14e23f46651:-7a08" interfaceFunctionName="GAINBLK" ordering="14" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="gainblk" simulationFunctionType="C_OR_FORTRAN" style="GAINBLK;flip=false;mirror=false"><ScilabString as="exprs" height="2" width="1"><data column="0" line="0" value="kp"/><data column="0" line="1" value="0"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="310.0" y="110.0"/></BasicBlock><ExplicitInputPort dataType="REAL_MATRIX" id="-4982527b:14e23f46651:-79fa" ordering="1" parent="-4982527b:14e23f46651:-7a08" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitOutputPort dataType="REAL_MATRIX" id="-4982527b:14e23f46651:-79f9" ordering="1" parent="-4982527b:14e23f46651:-7a08" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><SplitBlock id="-4982527b:14e23f46651:-7a01" ordering="15" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="187.0" y="207.0"/></SplitBlock><ExplicitInputPort dataType="UNKNOW_TYPE" id="-4982527b:14e23f46651:-7a00" ordering="1" parent="-4982527b:14e23f46651:-7a01" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ExplicitInputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="-4982527b:14e23f46651:-79ff" ordering="1" parent="-4982527b:14e23f46651:-7a01" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="-4982527b:14e23f46651:-79fe" ordering="2" parent="-4982527b:14e23f46651:-7a01" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitLink id="-4982527b:14e23f46651:-79fd" parent="-2dd55334:14dcbdd0183:-7fd3" source="4a338342:14e1ed0625e:-7aa4" target="-4982527b:14e23f46651:-7a00"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ExplicitLink><ExplicitLink id="-4982527b:14e23f46651:-79fc" parent="-2dd55334:14dcbdd0183:-7fd3" source="-4982527b:14e23f46651:-79ff" target="-4982527b:14e23f46651:-7a77"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ExplicitLink><ExplicitLink id="-4982527b:14e23f46651:-7a02" parent="-2dd55334:14dcbdd0183:-7fd3" source="-4982527b:14e23f46651:-79fe" target="-4982527b:14e23f46651:-79fa"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="310.0" y="130.0"/><mxPoint as="targetPoint" x="190.0" y="210.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="190.0" y="210.0"/><mxPoint x="190.0" y="130.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="-4982527b:14e23f46651:-79f8" parent="-2dd55334:14dcbdd0183:-7fd3" source="-4982527b:14e23f46651:-79f9" target="-4982527b:14e23f46651:-7ac8"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="350.0" y="130.0"/><mxPoint as="targetPoint" x="500.0" y="200.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="470.0" y="130.0"/><mxPoint x="470.0" y="200.0"/></Array></mxGeometry></ExplicitLink><BasicBlock id="-4982527b:14e23f46651:-79af" interfaceFunctionName="STEP_FUNCTION" ordering="16" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="STEP_FUNCTION;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="1.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="3" width="1"><data column="0" line="0" value="1"/><data column="0" line="1" value="0"/><data column="0" line="2" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"STEP",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="STEP"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="step_func"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-4982527b:14e23f46651:-7994"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="STEP"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-4982527b:14e23f46651:-7994"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="620.0"/><data column="1" line="0" realPart="-570.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"OUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="OUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-2.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-4982527b:14e23f46651:-7990"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="OUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-4982527b:14e23f46651:-7990"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="84.0"/><data column="0" line="1" realPart="636.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-20.0"/><data column="0" line="1" realPart="-560.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="6" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="1100.0"/><data column="0" line="2" realPart="1060.0"/><data column="0" line="3" realPart="1060.0"/><data column="0" line="4" realPart="1100.0"/><data column="0" line="5" realPart="60.0"/></ScilabDouble><ScilabDouble height="6" width="1"><data column="0" line="0" realPart="-44.0"/><data column="0" line="1" realPart="-1140.0"/><data column="0" line="2" realPart="-1140.0"/><data column="0" line="3" realPart="-1060.0"/><data column="0" line="4" realPart="-1060.0"/><data column="0" line="5" realPart="4.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="30.0" y="180.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-4982527b:14e23f46651:-78fa" ordering="1" parent="-4982527b:14e23f46651:-79af" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ExplicitLink id="-4982527b:14e23f46651:-79ab" parent="-2dd55334:14dcbdd0183:-7fd3" source="-4982527b:14e23f46651:-78fa" target="4a338342:14e1ed0625e:-7aa6"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="70.0" y="200.0"/><mxPoint as="targetPoint" x="130.0" y="200.0"/></mxGeometry></ExplicitLink><BasicBlock dependsOnU="1" id="10b0d773:1669a47c43a:-78c9" interfaceFunctionName="CSCOPE" ordering="17" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="cscope" simulationFunctionType="C_OR_FORTRAN" style="CSCOPE"><ScilabString as="exprs" height="10" width="1"><data column="0" line="0" value="1 3 5 7 9 11 13 15"/><data column="0" line="1" value="-1"/><data column="0" line="2" value="[]"/><data column="0" line="3" value="[600;400]"/><data column="0" line="4" value="-2"/><data column="0" line="5" value="2"/><data column="0" line="6" value="5"/><data column="0" line="7" value="20"/><data column="0" line="8" value="0"/><data column="0" line="9" value=""/></ScilabString><ScilabDouble as="realParameters" height="4" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="-2.0"/><data column="0" line="2" realPart="2.0"/><data column="0" line="3" realPart="5.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="15" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="1.0"/><data column="0" line="4" realPart="3.0"/><data column="0" line="5" realPart="5.0"/><data column="0" line="6" realPart="7.0"/><data column="0" line="7" realPart="9.0"/><data column="0" line="8" realPart="11.0"/><data column="0" line="9" realPart="13.0"/><data column="0" line="10" realPart="15.0"/><data column="0" line="11" realPart="-1.0"/><data column="0" line="12" realPart="-1.0"/><data column="0" line="13" realPart="600.0"/><data column="0" line="14" realPart="400.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="790.0" y="120.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="10b0d773:1669a47c43a:-7849" ordering="1" parent="10b0d773:1669a47c43a:-78c9" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ControlPort dataType="UNKNOW_TYPE" id="10b0d773:1669a47c43a:-7848" ordering="1" parent="10b0d773:1669a47c43a:-78c9" style="ControlPort;align=center;verticalAlign=top;spacing=10.0;rotation=90"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><BasicBlock dependsOnU="1" id="10b0d773:1669a47c43a:-78c1" interfaceFunctionName="CSCOPE" ordering="18" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="cscope" simulationFunctionType="C_OR_FORTRAN" style="CSCOPE"><ScilabString as="exprs" height="10" width="1"><data column="0" line="0" value="1 3 5 7 9 11 13 15"/><data column="0" line="1" value="-1"/><data column="0" line="2" value="[]"/><data column="0" line="3" value="[600;400]"/><data column="0" line="4" value="-2"/><data column="0" line="5" value="2"/><data column="0" line="6" value="5"/><data column="0" line="7" value="20"/><data column="0" line="8" value="0"/><data column="0" line="9" value=""/></ScilabString><ScilabDouble as="realParameters" height="4" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="-2.0"/><data column="0" line="2" realPart="2.0"/><data column="0" line="3" realPart="5.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="15" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="1.0"/><data column="0" line="4" realPart="3.0"/><data column="0" line="5" realPart="5.0"/><data column="0" line="6" realPart="7.0"/><data column="0" line="7" realPart="9.0"/><data column="0" line="8" realPart="11.0"/><data column="0" line="9" realPart="13.0"/><data column="0" line="10" realPart="15.0"/><data column="0" line="11" realPart="-1.0"/><data column="0" line="12" realPart="-1.0"/><data column="0" line="13" realPart="600.0"/><data column="0" line="14" realPart="400.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="870.0" y="190.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="10b0d773:1669a47c43a:-7846" ordering="1" parent="10b0d773:1669a47c43a:-78c1" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ControlPort dataType="UNKNOW_TYPE" id="10b0d773:1669a47c43a:-7845" ordering="1" parent="10b0d773:1669a47c43a:-78c1" style="ControlPort;align=center;verticalAlign=top;spacing=10.0;rotation=90"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><SplitBlock id="10b0d773:1669a47c43a:-78af" ordering="19" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionType="DEFAULT"><mxGeometry as="geometry" height="7.0" width="7.0" x="817.0" y="207.0"/></SplitBlock><ExplicitInputPort dataType="UNKNOW_TYPE" id="10b0d773:1669a47c43a:-78ae" ordering="1" parent="10b0d773:1669a47c43a:-78af" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ExplicitInputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="10b0d773:1669a47c43a:-78ad" ordering="1" parent="10b0d773:1669a47c43a:-78af" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="10b0d773:1669a47c43a:-78ac" ordering="2" parent="10b0d773:1669a47c43a:-78af" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitLink id="10b0d773:1669a47c43a:-78ab" parent="-2dd55334:14dcbdd0183:-7fd3" source="-4982527b:14e23f46651:-7adf" target="10b0d773:1669a47c43a:-78ae"><mxGeometry as="geometry"><Array as="points" scilabClass=""><mxPoint x="800.0" y="210.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="10b0d773:1669a47c43a:-78aa" parent="-2dd55334:14dcbdd0183:-7fd3" source="10b0d773:1669a47c43a:-78ad" target="4a338342:14e1ed0625e:-7aa5"><mxGeometry as="geometry"><Array as="points" scilabClass=""><mxPoint x="820.0" y="210.0"/><mxPoint x="820.0" y="390.0"/><mxPoint x="100.0" y="380.0"/><mxPoint x="100.0" y="220.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="10b0d773:1669a47c43a:-78b0" parent="-2dd55334:14dcbdd0183:-7fd3" source="10b0d773:1669a47c43a:-78ac" target="10b0d773:1669a47c43a:-7846"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="870.0" y="210.0"/><mxPoint as="targetPoint" x="820.0" y="210.0"/></mxGeometry></ExplicitLink><SplitBlock id="10b0d773:1669a47c43a:-7899" ordering="20" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionType="DEFAULT"><mxGeometry as="geometry" height="7.0" width="7.0" x="727.0" y="207.0"/></SplitBlock><ExplicitInputPort dataType="UNKNOW_TYPE" id="10b0d773:1669a47c43a:-7898" ordering="1" parent="10b0d773:1669a47c43a:-7899" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ExplicitInputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="10b0d773:1669a47c43a:-7897" ordering="1" parent="10b0d773:1669a47c43a:-7899" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="10b0d773:1669a47c43a:-7896" ordering="2" parent="10b0d773:1669a47c43a:-7899" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitLink id="10b0d773:1669a47c43a:-7895" parent="-2dd55334:14dcbdd0183:-7fd3" source="-4982527b:14e23f46651:-7aa4" target="10b0d773:1669a47c43a:-7898"><mxGeometry as="geometry"><Array as="points" scilabClass=""/></mxGeometry></ExplicitLink><ExplicitLink id="10b0d773:1669a47c43a:-7894" parent="-2dd55334:14dcbdd0183:-7fd3" source="10b0d773:1669a47c43a:-7897" target="-4982527b:14e23f46651:-7aae"><mxGeometry as="geometry"><Array as="points" scilabClass=""><mxPoint x="730.0" y="330.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="10b0d773:1669a47c43a:-789a" parent="-2dd55334:14dcbdd0183:-7fd3" source="10b0d773:1669a47c43a:-7896" target="10b0d773:1669a47c43a:-7849"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="790.0" y="140.0"/><mxPoint as="targetPoint" x="730.0" y="220.0"/><Array as="points" scilabClass=""><mxPoint x="730.0" y="140.0"/></Array></mxGeometry></ExplicitLink><SplitBlock id="10b0d773:1669a47c43a:-788e" interfaceFunctionName="CLKSPLIT_f" ordering="21" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionType="DEFAULT" style="CLKSPLIT_f"><mxGeometry as="geometry" height="7.0" width="7.0" x="887.0" y="97.0"/></SplitBlock><ControlPort dataType="UNKNOW_TYPE" id="10b0d773:1669a47c43a:-788d" ordering="1" parent="10b0d773:1669a47c43a:-788e" style="ControlPort;align=center;verticalAlign=top;spacing=10.0;rotation=90" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-4.0" y="-8.0"/></ControlPort><CommandPort dataType="UNKNOW_TYPE" id="10b0d773:1669a47c43a:-788c" ordering="1" parent="10b0d773:1669a47c43a:-788e" style="CommandPort;align=center;verticalAlign=bottom;spacing=10.0;rotation=90" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-4.0" y="7.0"/></CommandPort><CommandPort dataType="UNKNOW_TYPE" id="10b0d773:1669a47c43a:-788b" ordering="2" parent="10b0d773:1669a47c43a:-788e" style="CommandPort;align=center;verticalAlign=bottom;spacing=10.0;rotation=90" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-4.0" y="7.0"/></CommandPort><CommandControlLink id="10b0d773:1669a47c43a:-788a" parent="-2dd55334:14dcbdd0183:-7fd3" source="-2dd55334:14dcbdd0183:-7d27" target="10b0d773:1669a47c43a:-788d"><mxGeometry as="geometry"><Array as="points" scilabClass=""/></mxGeometry></CommandControlLink><CommandControlLink id="10b0d773:1669a47c43a:-7889" parent="-2dd55334:14dcbdd0183:-7fd3" source="10b0d773:1669a47c43a:-788c" target="10b0d773:1669a47c43a:-7845"><mxGeometry as="geometry"><Array as="points" scilabClass=""/></mxGeometry></CommandControlLink><CommandControlLink id="10b0d773:1669a47c43a:-788f" parent="-2dd55334:14dcbdd0183:-7fd3" source="10b0d773:1669a47c43a:-788b" target="10b0d773:1669a47c43a:-7848"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="810.0" y="120.0"/><mxPoint as="targetPoint" x="890.0" y="100.0"/><Array as="points" scilabClass=""><mxPoint x="810.0" y="100.0"/></Array></mxGeometry></CommandControlLink></root></mxGraphModel><mxCell as="defaultParent" id="-2dd55334:14dcbdd0183:-7fd3" parent="-2dd55334:14dcbdd0183:-7fd2"/></XcosDiagram>
\ No newline at end of file diff --git a/Working_Examples/3432/CH9/EX9.9/DEPENDENCIES/fig_settings.sci b/Working_Examples/3432/CH9/EX9.9/DEPENDENCIES/fig_settings.sci new file mode 100755 index 0000000..5d5e7d4 --- /dev/null +++ b/Working_Examples/3432/CH9/EX9.9/DEPENDENCIES/fig_settings.sci @@ -0,0 +1,9 @@ +//------------------------------------------------------------------
+//figure handel settings
+f=get("current_figure"); //Current figure handle
+f.background=8; //make the figure window background white
+l=f.children(1);
+l.background=8 ;//make the text background white
+id=color('grey');
+xgrid(id);
+//------------------------------------------------------------------
diff --git a/Working_Examples/3432/CH9/EX9.9/Ex9_9.sce b/Working_Examples/3432/CH9/EX9.9/Ex9_9.sce new file mode 100755 index 0000000..977c213 --- /dev/null +++ b/Working_Examples/3432/CH9/EX9.9/Ex9_9.sce @@ -0,0 +1,49 @@ +//Example 9.9
+//Describing Function for a saturation nonlinearity.
+
+xdel(winsid())//close all graphics Windows
+clear;
+clc;
+//------------------------------------------------------------------
+//Response of the saturation nonlinearity to sinusoidal input
+figure;
+importXcosDiagram(".\Ex9_9_model.xcos")
+xcos_simulate(scs_m,4);
+scs_m.props.context
+plot(yt.time,yt.values(:,1),'r--')
+plot(yt.time,yt.values(:,2),'b')
+
+xlabel('Time (sec.)');
+ylabel('Amplitude');
+title("Saturation nonlinearity output to sinusoidal input",...
+'fontsize',3);
+exec .\fig_settings.sci; //custom script for setting figure properties
+//------------------------------------------------------------------
+//Describing Functin for saturation nonlinearity.
+k=1;
+N=1;
+i=1;
+Keq=[];
+
+for a=0:0.2:10
+ if k*a/N > 1 then
+ Keq(i,1)=2/%pi*(k*asin(N/a/k)+N/a*sqrt(1-(N/k/a)^2))
+ else
+ Keq(i,1)=k
+ end
+ i=i+1;
+end
+
+a=0:0.2:10;
+a=a';
+figure,
+plot(a,Keq)
+xlabel('$a$');
+ylabel('$K_{eq}}$');
+
+xset('font size',3);
+title("Describing Function for a saturation nonlinearity...
+ with k=N=1",'fontsize',3);
+exec .\fig_settings.sci; //custom script for setting figure properties
+zoom_rect([0 0 10 1.1])
+//------------------------------------------------------------------
diff --git a/Working_Examples/3432/CH9/EX9.9/Ex9_9_f0.pdf b/Working_Examples/3432/CH9/EX9.9/Ex9_9_f0.pdf Binary files differnew file mode 100755 index 0000000..1e81c3f --- /dev/null +++ b/Working_Examples/3432/CH9/EX9.9/Ex9_9_f0.pdf diff --git a/Working_Examples/3432/CH9/EX9.9/Ex9_9_f1.pdf b/Working_Examples/3432/CH9/EX9.9/Ex9_9_f1.pdf Binary files differnew file mode 100755 index 0000000..2b7500d --- /dev/null +++ b/Working_Examples/3432/CH9/EX9.9/Ex9_9_f1.pdf diff --git a/Working_Examples/3432/CH9/EX9.9/Ex9_9_model.xcos b/Working_Examples/3432/CH9/EX9.9/Ex9_9_model.xcos new file mode 100755 index 0000000..5cfa7ee --- /dev/null +++ b/Working_Examples/3432/CH9/EX9.9/Ex9_9_model.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" finalIntegrationTime="5.0" title="Ex9_9_model"><!--Xcos - 1.0 - scilab-5.5.2 - 20160406 2040--><mxGraphModel as="model"><root><mxCell id="-2dd55334:14dcbdd0183:-7fd2"/><mxCell id="-2dd55334:14dcbdd0183:-7fd3" parent="-2dd55334:14dcbdd0183:-7fd2"/><BasicBlock blockType="h" id="-2dd55334:14dcbdd0183:-7e6e" interfaceFunctionName="CLOCK_c" ordering="1" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList" varName=""><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="1.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="3659.0"/><data column="1" line="0" realPart="-3690.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7e5e"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7e5e"/></ScilabString></Array></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.1"/><data column="0" line="1" value="0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.1"/><data column="0" line="1" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7e5c"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7e5c"/></ScilabString></Array></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5964.377326666667"/><data column="1" line="0" realPart="-6010.333333333333"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="7.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="5.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7e59"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-2dd55334:14dcbdd0183:-7e59"/></ScilabString></Array></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="7180.0"/><data column="0" line="2" realPart="5974.877326666667"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-44.0"/><data column="0" line="1" realPart="-7260.0"/><data column="0" line="2" realPart="-5999.333333333333"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="5973.71066"/><data column="0" line="1" realPart="3689.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-6014.333333333333"/><data column="0" line="1" realPart="-3666.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="5976.043993333334"/><data column="0" line="1" realPart="7220.71"/><data column="0" line="2" realPart="7180.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-6014.333333333333"/><data column="0" line="1" realPart="-7130.0"/><data column="0" line="2" realPart="-7130.0"/><data column="0" line="3" realPart="4.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="350.0" y="80.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="-2dd55334:14dcbdd0183:-7d27" ordering="1" parent="-2dd55334:14dcbdd0183:-7e6e" style="CommandPort;align=center;verticalAlign=bottom;spacing=10.0;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><TextBlock id="-6cad6c1c:14dd22d9551:-7f7a" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=18;flip=false;mirror=false" value="Model for Ex9_9"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="Model for Ex9_9"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="Model for Ex9_9"/></ScilabString><mxGeometry as="geometry" height="40.0" width="160.0" x="90.0" y="20.0"/></TextBlock><BasicBlock dependsOnU="1" id="4a338342:14e1ed0625e:-7c24" interfaceFunctionName="SATURATION" ordering="2" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="satur" simulationFunctionType="C_OR_FORTRAN" style="SATURATION;flip=false;mirror=false"><ScilabString as="exprs" height="3" width="1"><data column="0" line="0" value="1"/><data column="0" line="1" value="-1"/><data column="0" line="2" value="0"/></ScilabString><ScilabDouble as="realParameters" height="2" width="1"><data column="0" line="0" realPart="1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="150.0" y="180.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="2b826298:14e1fda5c1e:-7cca" ordering="1" parent="4a338342:14e1ed0625e:-7c24" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="2b826298:14e1fda5c1e:-7cc9" ordering="1" parent="4a338342:14e1ed0625e:-7c24" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><mxCell connectable="0" id="4a338342:14e1ed0625e:-7c24#identifier" parent="4a338342:14e1ed0625e:-7c24" style="noLabel=0;opacity=0;fontSize=14" value=" Saturation limits: -1 & 1" vertex="1"><mxGeometry as="geometry" relative="1" x="0.5" y="1.1"><mxPoint as="offset" x="3.0" y="9.0"/></mxGeometry></mxCell><BasicBlock blockType="h" id="-76454188:14e1ef4db88:-7d58" interfaceFunctionName="ENDBLK" ordering="3" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="ENDBLK;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList" varName=""><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="ENDBLK"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-4"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=" "/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="5"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"END_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="END_c"/></ScilabString></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="scicosexit"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-76454188:14e1ef4db88:-7d55"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="END_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-76454188:14e1ef4db88:-7d55"/></ScilabString></Array></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="6" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="3100.0"/><data column="0" line="2" realPart="3069.73333"/><data column="0" line="3" realPart="3069.73333"/><data column="0" line="4" realPart="3100.0"/><data column="0" line="5" realPart="60.0"/></ScilabDouble><ScilabDouble height="6" width="1"><data column="0" line="0" realPart="-44.0"/><data column="0" line="1" realPart="-3134.66666"/><data column="0" line="2" realPart="-3134.66666"/><data column="0" line="3" realPart="-3063.53333"/><data column="0" line="4" realPart="-3063.53333"/><data column="0" line="5" realPart="4.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="300.0" y="80.0"/></BasicBlock><BasicBlock dependsOnU="1" id="11757ea3:14e1f326925:-693d" interfaceFunctionName="MUX_f" ordering="4" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="mux" simulationFunctionType="TYPE_1" style="MUX_f;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="2"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="10.0" x="260.0" y="170.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="11757ea3:14e1f326925:-693c" ordering="1" parent="11757ea3:14e1f326925:-693d" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ExplicitInputPort><ExplicitInputPort dataColumns="1" dataLines="-2" dataType="REAL_MATRIX" id="11757ea3:14e1f326925:-693b" ordering="2" parent="11757ea3:14e1f326925:-693d" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="26.0"/></ExplicitInputPort><ExplicitOutputPort dataColumns="1" dataLines="0" dataType="REAL_MATRIX" id="11757ea3:14e1f326925:-693a" ordering="1" parent="11757ea3:14e1f326925:-693d" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="10.0" y="16.0"/></ExplicitOutputPort><ExplicitLink id="11757ea3:14e1f326925:-6930" parent="-2dd55334:14dcbdd0183:-7fd3" source="2b826298:14e1fda5c1e:-7cc9" target="11757ea3:14e1f326925:-693b"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="190.0" y="200.0"/><mxPoint as="targetPoint" x="260.0" y="200.0"/></mxGeometry></ExplicitLink><BasicBlock dependsOnT="1" id="11757ea3:14e1f326925:-692b" interfaceFunctionName="GENSIN_f" ordering="5" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="gensin" simulationFunctionType="DEFAULT" style="GENSIN_f;flip=false;mirror=false"><ScilabString as="exprs" height="3" width="1"><data column="0" line="0" value="2"/><data column="0" line="1" value="2"/><data column="0" line="2" value="0"/></ScilabString><ScilabDouble as="realParameters" height="3" width="1"><data column="0" line="0" realPart="2.0"/><data column="0" line="1" realPart="2.0"/><data column="0" line="2" realPart="0.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="60.0" x="30.0" y="180.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="11757ea3:14e1f326925:-6927" ordering="1" parent="11757ea3:14e1f326925:-692b" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="60.0" y="16.0"/></ExplicitOutputPort><SplitBlock id="11757ea3:14e1f326925:-6925" ordering="6" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="117.0" y="197.0"/></SplitBlock><ExplicitInputPort dataType="UNKNOW_TYPE" id="11757ea3:14e1f326925:-6924" ordering="1" parent="11757ea3:14e1f326925:-6925" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ExplicitInputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="11757ea3:14e1f326925:-6923" ordering="1" parent="11757ea3:14e1f326925:-6925" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="11757ea3:14e1f326925:-6922" ordering="2" parent="11757ea3:14e1f326925:-6925" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitLink id="11757ea3:14e1f326925:-6921" parent="-2dd55334:14dcbdd0183:-7fd3" source="11757ea3:14e1f326925:-6927" target="11757ea3:14e1f326925:-6924"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ExplicitLink><ExplicitLink id="11757ea3:14e1f326925:-6920" parent="-2dd55334:14dcbdd0183:-7fd3" source="11757ea3:14e1f326925:-6923" target="2b826298:14e1fda5c1e:-7cca"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ExplicitLink><ExplicitLink id="11757ea3:14e1f326925:-6926" parent="-2dd55334:14dcbdd0183:-7fd3" source="11757ea3:14e1f326925:-6922" target="11757ea3:14e1f326925:-693c"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="260.0" y="180.0"/><mxPoint as="targetPoint" x="120.0" y="200.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="120.0" y="150.0"/><mxPoint x="220.0" y="150.0"/><mxPoint x="220.0" y="180.0"/></Array></mxGeometry></ExplicitLink><TextBlock id="11757ea3:14e1f326925:-689c" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=18;flip=false;mirror=false" value="Saturation Nonlinearity"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="Saturation Nonlinearity"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="Saturation Nonlinearity"/></ScilabString><mxGeometry as="geometry" height="40.0" width="220.0" x="150.0" y="260.0"/></TextBlock><BasicBlock dependsOnU="1" id="-7f3f8309:16686c89bf7:-7fb3" interfaceFunctionName="CSCOPE" ordering="7" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionName="cscope" simulationFunctionType="C_OR_FORTRAN" style="CSCOPE"><ScilabString as="exprs" height="10" width="1"><data column="0" line="0" value="1 3 5 7 9 11 13 15"/><data column="0" line="1" value="-1"/><data column="0" line="2" value="[]"/><data column="0" line="3" value="[600;400]"/><data column="0" line="4" value="-2"/><data column="0" line="5" value="2"/><data column="0" line="6" value="5"/><data column="0" line="7" value="20"/><data column="0" line="8" value="0"/><data column="0" line="9" value=""/></ScilabString><ScilabDouble as="realParameters" height="4" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="-2.0"/><data column="0" line="2" realPart="2.0"/><data column="0" line="3" realPart="5.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="15" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="1.0"/><data column="0" line="4" realPart="3.0"/><data column="0" line="5" realPart="5.0"/><data column="0" line="6" realPart="7.0"/><data column="0" line="7" realPart="9.0"/><data column="0" line="8" realPart="11.0"/><data column="0" line="9" realPart="13.0"/><data column="0" line="10" realPart="15.0"/><data column="0" line="11" realPart="-1.0"/><data column="0" line="12" realPart="-1.0"/><data column="0" line="13" realPart="600.0"/><data column="0" line="14" realPart="400.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="350.0" y="170.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="-7f3f8309:16686c89bf7:-7f83" ordering="1" parent="-7f3f8309:16686c89bf7:-7fb3" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ControlPort dataType="UNKNOW_TYPE" id="-7f3f8309:16686c89bf7:-7f82" ordering="1" parent="-7f3f8309:16686c89bf7:-7fb3" style="ControlPort;align=center;verticalAlign=top;spacing=10.0;rotation=90"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><ExplicitLink id="-7f3f8309:16686c89bf7:-7fb0" parent="-2dd55334:14dcbdd0183:-7fd3" source="11757ea3:14e1f326925:-693a" target="-7f3f8309:16686c89bf7:-7f83"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="270.0" y="190.0"/><mxPoint as="targetPoint" x="340.0" y="190.0"/></mxGeometry></ExplicitLink><CommandControlLink id="-7f3f8309:16686c89bf7:-7faf" parent="-2dd55334:14dcbdd0183:-7fd3" source="-2dd55334:14dcbdd0183:-7d27" target="-7f3f8309:16686c89bf7:-7f82"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="370.0" y="120.0"/><mxPoint as="targetPoint" x="370.0" y="160.0"/></mxGeometry></CommandControlLink><TextBlock id="-7f3f8309:16686c89bf7:-7f85" parent="-2dd55334:14dcbdd0183:-7fd3" simulationFunctionType="DEFAULT"><mxGeometry as="geometry" height="40.0" width="40.0" x="360.0" y="140.0"/></TextBlock></root></mxGraphModel><mxCell as="defaultParent" id="-2dd55334:14dcbdd0183:-7fd3" parent="-2dd55334:14dcbdd0183:-7fd2"/></XcosDiagram>
\ No newline at end of file diff --git a/Working_Examples/3432/DEPENDENCIES/acker_dk.sci b/Working_Examples/3432/DEPENDENCIES/acker_dk.sci new file mode 100755 index 0000000..3391d24 --- /dev/null +++ b/Working_Examples/3432/DEPENDENCIES/acker_dk.sci @@ -0,0 +1,73 @@ +//------------------------------------------------------------------ +//------------------------------------------------------------------ +//A function written by Deepti Khimani. +//Usage:- +//[K, lambda]=acker_dk(a, b, pl) +//K=acker_dk(a, b, pl) +//a:- System matrix. +//b:- input matrix. +//p:- Desired poles. +//K:-State feedback gain for the control law u=-Kx. +//lambda:- Eigen values of (a-b*k) +//------------------------------------------------------------------ +//------------------------------------------------------------------ + +function [K, lambda]=acker_dk(a, b, pl) + [lhs,rhs]=argn(0) + + if rhs == 0 then + disp(["K=acker_dk(a, b, pl)";"[K, lambda]=acker_dk(a, b, pl)"]); + disp(["a:- System matrix";"b:- input matrix";"p:- Desired poles"]); + disp(["K:-State feedback gain for the control law u=-Kx";... + "lambda:- Eigen values of (a-b*k)"]); + return; + end +[ra ca]=size(a); +[rb cb]=size(b); +l=length(pl); + +CO=cont_mat(a,b); + +if ra~=l then + error(["Dimension error:";"number of desired poles must equal... + to order of the system"]); +elseif ra~=ca then + error(["Dimension error:";"system matrix should be... + a sqaure matrix"]); +elseif rb~=ra then + error (["Dimension error:","Input matrix should have... + as many rows as a system matrix."]); +elseif rank(CO)<ra then + error("system is not controllable"); +end +//------------------------------------------------------------------ +//controllable canonical form +[Ac,Bc,T,ind]=canon(a,b); + +//CO=zeros(ra,cb); +for i=1:ra + CO(:,ra+1-i)=Ac^(i-1)*Bc; +end +//------------------------------------------------------------------ +chr_eq=poly(pl,'s'); +des_chr_coeff=coeff(chr_eq); + +des_chr_coeff=des_chr_coeff(1:ra); +alpha_c=Ac^ra; + +for k=1:ra + alpha_c=alpha_c + des_chr_coeff(k)*Ac^(k-1) +end +//------------------------------------------------------------------ +//State feedback gain +temp=zeros(1,ra); +temp(1)=1; +K=temp*inv(CO)*alpha_c; +K=K/T; +lambda=spec(a-b*K); +endfunction +//------------------------------------------------------------------ + + + + diff --git a/Working_Examples/3432/DEPENDENCIES/fig_settings.sci b/Working_Examples/3432/DEPENDENCIES/fig_settings.sci new file mode 100755 index 0000000..5d5e7d4 --- /dev/null +++ b/Working_Examples/3432/DEPENDENCIES/fig_settings.sci @@ -0,0 +1,9 @@ +//------------------------------------------------------------------
+//figure handel settings
+f=get("current_figure"); //Current figure handle
+f.background=8; //make the figure window background white
+l=f.children(1);
+l.background=8 ;//make the text background white
+id=color('grey');
+xgrid(id);
+//------------------------------------------------------------------
diff --git a/Working_Examples/3432/DEPENDENCIES/zpk_dk.sci b/Working_Examples/3432/DEPENDENCIES/zpk_dk.sci new file mode 100755 index 0000000..95b4e6c --- /dev/null +++ b/Working_Examples/3432/DEPENDENCIES/zpk_dk.sci @@ -0,0 +1,43 @@ +//------------------------------------------------------------------ +//------------------------------------------------------------------ +//A function written by Deepti Khimani. +//Usage:- +//p=zpk_dk(sl) +//[p, z]=zpk_dk(sl) +//[p, z, k]=zpk_dk(sl) +//p:- Poles of the system +//z:- zeros of the system +//k:- DC gain of the system +//------------------------------------------------------------------ +//------------------------------------------------------------------ + +function[pl,zr,k]=zpk_dk(sysmodel) + [lhs,rhs]=argn(0) + + if rhs == 0 then + disp(["p=zpk_dk(sl)";"[p, z]=zpk_dk(sl)";"[p, z, k]=zpk_dk(sl)"]); + disp(["p:- Poles of the system";"z:- zeros of the system"]); + disp("k:- DC gain of the system"); + return; + end + + if typeof(sysmodel)=="rational" then + sys=tf2ss(sysmodel); + pl=spec(sys.A); + zr=trzeros(sys); + temp1=poly(zr,'s','roots')/poly(pl,'s','roots'); + temp2=sysmodel/temp1; + temp3=tf2ss(temp2); + k=temp3.D; + elseif typeof(sysmodel)=="state-space" then + pl=spec(sysmodel.A); + zr=trzeros(sysmodel); + g=ss2tf(sysmodel); + temp1=poly(zr,'s','roots')/poly(pl,'s','roots'); + temp2=g/temp1; + temp3=tf2ss(temp2); + k=temp3.D + else + error("Wrong type of input argument.") + end +endfunction diff --git a/Working_Examples/3885.zip b/Working_Examples/3885.zip Binary files differnew file mode 100644 index 0000000..51aff84 --- /dev/null +++ b/Working_Examples/3885.zip diff --git a/Working_Examples/3885/CH2/EX2.1/Ex2_1.sci b/Working_Examples/3885/CH2/EX2.1/Ex2_1.sci new file mode 100755 index 0000000..2488eeb --- /dev/null +++ b/Working_Examples/3885/CH2/EX2.1/Ex2_1.sci @@ -0,0 +1,23 @@ +//control systems by Nagoor Kani A
+//Edition 3
+//Year of publication 2015
+//Scilab version 6.0.0
+//operating systems windows 10
+// Example 2.1
+clc;
+clear;
+n=300;// number of turns
+li=0.01//linearity =1%
+v=30//voltage=30V
+kp=v/n
+disp(kp,'Potentiometer constant in (volts/turn)')
+nmid=n/2
+vmid=kp*nmid
+disp(vmid,'Voltage at mid point is;')
+disp('Range of voltage at mid point with 1% linearity is 14.7volts to 15.3 volts')//vmid(+-)0.3
+//assuming potentiometer is perfectly linear so the resistance at midpoint setting from reference is 50kiloohm
+//load resistance of 500Kiloohm is connected in parallel with potentiometer
+req=(500*50)/(500+50)
+v0=(v*req)/(50+req)//using voltage divison rule
+disp(v0,'Voltage at midpoint with load resistance 500Kiloohm (in volts)')
+
diff --git a/Working_Examples/3885/CH2/EX2.2/Ex2_2.sci b/Working_Examples/3885/CH2/EX2.2/Ex2_2.sci new file mode 100755 index 0000000..2f5f5c8 --- /dev/null +++ b/Working_Examples/3885/CH2/EX2.2/Ex2_2.sci @@ -0,0 +1,24 @@ +//control systems by Nagoor Kani A
+//Edition 3
+//Year of publication 2015
+//Scilab version 6.0.0
+//operating systems windows 10
+// Example 2.2
+clc;
+clear;
+n1=20//no of teeth in first gear
+n2=10//no of teeth in second gear
+diratio=n1/n2
+disp(diratio,'the ratio of diameters is')
+theta1=40//gear1 is rotated by an angle of 40 degree
+theta2=(n1/n2)*theta1
+disp(theta2,'displace ment of gear2 in (degrees)')
+as1=30//angular speed of gear1 is 30 rad/sec
+as2=(n1/n2)*as1
+disp(as2,' angular speed of gear2 in(rad/sec)')
+aa2=4//angular accleration of gear 2 is 4 rad/sec^2
+aa1=(n2/n1)*aa2
+disp(aa1,'angular accleration of gear 1 in (rad/sec^2)')
+t1=5//torque on gear1 5N-m
+t2=(n2/n1)*t1
+disp(t2,'torque on gear2 in (N-m)')
diff --git a/Working_Examples/3885/CH2/EX2.3/Ex2_3.sci b/Working_Examples/3885/CH2/EX2.3/Ex2_3.sci new file mode 100755 index 0000000..a61eea7 --- /dev/null +++ b/Working_Examples/3885/CH2/EX2.3/Ex2_3.sci @@ -0,0 +1,31 @@ +//control systems by Nagoor Kani A
+//Edition 3
+//Year of publication 2015
+//Scilab version 6.0.0
+//operating systems windows 10
+// Example 2.3
+clc;
+clear;
+n1=200//no of teeth in gear1
+n2=50//no of teeth in gear2
+n3=100//no of teeth in gear3
+n4=50//no of teeth in gear4
+n5=40//no of teeth in gear5
+n6=20//no of teeth in gear6
+n7=150//no of teeth in gear7
+//if gear 1 rotates in clockwise then all odd no gears rotate in clockwisw and even no gear rotate in anticlockwise
+ad1=2//angular displacement in gear 1 is 2rad
+ad4=(n1/n4)*ad1
+disp(ad4,'angular displacement in gear 4 in rad (anticlockwise)')
+ad7=(n1/n7)*ad1
+disp(ad7,'angular displacement in gear 7 in rad (clockwise)')
+av6=20//angular velocity of gear 6 is 20 rad/sec
+av1=(n6/n1)*av6
+disp(av1,'angular velocity of gear 1 in rad/sec; (clockwise)')
+av3=(n6/n3)*av6
+disp(av3,'angular velocity of gear 3 in rad/sec; (clockwise)')
+t1=10//torque on gear 1 is 10 N-m
+t3=(n3/n1)*t1
+disp(t3,'torque in gear 3 in N-m')
+t7=(n7/n1)*t1
+disp(t7,'torque in gear 7 in N-m')
diff --git a/Working_Examples/3885/CH3/EX3.1/Ex3_1.sci b/Working_Examples/3885/CH3/EX3.1/Ex3_1.sci new file mode 100755 index 0000000..24461f2 --- /dev/null +++ b/Working_Examples/3885/CH3/EX3.1/Ex3_1.sci @@ -0,0 +1,18 @@ +//control systems by Nagoor Kani A
+//Edition 3
+//Year of publication 2015
+//Scilab version 6.0.0
+//operating systems windows 10
+// Example 3.1
+
+clc;
+clear;
+s=%s
+p=poly([4],'s','coeff')
+q=poly([0 5 1],'s','coeff')
+g=p./q
+disp(g,'The given transfer function is')
+c=g/(1+g)
+disp(c,'The closed loop transfer function is')
+u=c/s
+disp(u,'The input is unit step signal')
diff --git a/Working_Examples/3885/CH3/EX3.1/Ex3_1.xcos b/Working_Examples/3885/CH3/EX3.1/Ex3_1.xcos new file mode 100755 index 0000000..6aa296a --- /dev/null +++ b/Working_Examples/3885/CH3/EX3.1/Ex3_1.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" finalIntegrationTime="30.0" title="Ex3_1"><!--Xcos - 1.0 - scilab-5.5.2 - 20160406 2040--><mxGraphModel as="model"><root><mxCell id="0:1:0"/><mxCell id="0:2:0" parent="0:1:0"/><BasicBlock id="-3088270e:166584c7420:-7e77" interfaceFunctionName="STEP_FUNCTION" ordering="1" parent="0:2:0" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="STEP_FUNCTION"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList" varName=""><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="1.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="3" width="1"><data column="0" line="0" value="1"/><data column="0" line="1" value="0"/><data column="0" line="2" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"STEP",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="STEP"/></ScilabString></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="step_func"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-3088270e:166584c7420:-7e33"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="STEP"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-3088270e:166584c7420:-7e33"/></ScilabString></Array></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="160.0"/><data column="1" line="0" realPart="-110.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"OUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="OUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-2.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-3088270e:166584c7420:-7e2f"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="OUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-3088270e:166584c7420:-7e2f"/></ScilabString></Array></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="84.0"/><data column="0" line="1" realPart="176.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-20.0"/><data column="0" line="1" realPart="-100.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="6" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="180.0"/><data column="0" line="2" realPart="140.0"/><data column="0" line="3" realPart="140.0"/><data column="0" line="4" realPart="180.0"/><data column="0" line="5" realPart="60.0"/></ScilabDouble><ScilabDouble height="6" width="1"><data column="0" line="0" realPart="-44.0"/><data column="0" line="1" realPart="-220.0"/><data column="0" line="2" realPart="-220.0"/><data column="0" line="3" realPart="-140.0"/><data column="0" line="4" realPart="-140.0"/><data column="0" line="5" realPart="4.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="100.0" y="160.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-3088270e:166584c7420:-7e76" ordering="1" parent="-3088270e:166584c7420:-7e77" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><BigSom dependsOnU="1" id="-3088270e:166584c7420:-7e6d" interfaceFunctionName="BIGSOM_f" ordering="2" parent="0:2:0" simulationFunctionName="sum" simulationFunctionType="TYPE_2" style="BIGSOM_f" value="+"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="[1;-1]"/></ScilabString><ScilabDouble as="realParameters" height="2" width="1"><data column="0" line="0" realPart="1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="60.0" width="40.0" x="200.0" y="160.0"/></BigSom><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="-3088270e:166584c7420:-7e67" ordering="1" parent="-3088270e:166584c7420:-7e6d" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0" value="+"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="-3088270e:166584c7420:-7e66" ordering="2" parent="-3088270e:166584c7420:-7e6d" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0" value="-"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="36.0"/></ExplicitInputPort><ExplicitOutputPort dataColumns="1" dataType="REAL_MATRIX" id="-3088270e:166584c7420:-7e65" ordering="1" parent="-3088270e:166584c7420:-7e6d" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="26.0"/></ExplicitOutputPort><ExplicitLink id="-3088270e:166584c7420:-7e69" parent="0:2:0" source="-3088270e:166584c7420:-7e76" target="-3088270e:166584c7420:-7e67"><mxGeometry as="geometry" x="-130.0"><mxPoint as="sourcePoint" x="140.0" y="180.0"/><mxPoint as="targetPoint" x="190.0" y="180.0"/></mxGeometry></ExplicitLink><BasicBlock dependsOnT="1" id="-3088270e:166584c7420:-7e57" interfaceFunctionName="CLR" ordering="3" parent="0:2:0" simulationFunctionName="csslti4" simulationFunctionType="C_OR_FORTRAN" style="CLR"><ScilabString as="exprs" height="2" width="1"><data column="0" line="0" value="1"/><data column="0" line="1" value="s*(s+5)"/></ScilabString><ScilabDouble as="realParameters" height="9" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="-0.0"/><data column="0" line="2" realPart="1.0"/><data column="0" line="3" realPart="-5.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="1.0"/><data column="0" line="6" realPart="1.0"/><data column="0" line="7" realPart="0.0"/><data column="0" line="8" realPart="0.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="state" height="2" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="60.0" x="310.0" y="170.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-3088270e:166584c7420:-7e52" ordering="1" parent="-3088270e:166584c7420:-7e57" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-3088270e:166584c7420:-7e51" ordering="1" parent="-3088270e:166584c7420:-7e57" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="60.0" y="16.0"/></ExplicitOutputPort><ExplicitLink id="-3088270e:166584c7420:-7e54" parent="0:2:0" source="-3088270e:166584c7420:-7e65" target="-3088270e:166584c7420:-7e52"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="240.0" y="190.0"/><mxPoint as="targetPoint" x="310.0" y="190.0"/></mxGeometry></ExplicitLink><BasicBlock blockType="h" id="-3088270e:166584c7420:-7e4c" interfaceFunctionName="CLOCK_c" ordering="4" parent="0:2:0" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList" varName=""><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="1.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="159.0"/><data column="1" line="0" realPart="-190.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-3088270e:166584c7420:-7e29"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-3088270e:166584c7420:-7e29"/></ScilabString></Array></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.1"/><data column="0" line="1" value="0.1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.1"/><data column="0" line="1" realPart="0.1"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.1"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-3088270e:166584c7420:-7e27"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-3088270e:166584c7420:-7e27"/></ScilabString></Array></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="189.3773266666667"/><data column="1" line="0" realPart="-235.33333333333331"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="7.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="5.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-3088270e:166584c7420:-7e24"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-3088270e:166584c7420:-7e24"/></ScilabString></Array></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="180.0"/><data column="0" line="2" realPart="199.8773266666667"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-44.0"/><data column="0" line="1" realPart="-260.0"/><data column="0" line="2" realPart="-224.33333333333331"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="198.71066000000005"/><data column="0" line="1" realPart="189.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-239.33333333333331"/><data column="0" line="1" realPart="-166.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="201.04399333333336"/><data column="0" line="1" realPart="220.70999999999998"/><data column="0" line="2" realPart="180.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-239.33333333333331"/><data column="0" line="1" realPart="-130.0"/><data column="0" line="2" realPart="-130.0"/><data column="0" line="3" realPart="4.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="430.0" y="60.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="-3088270e:166584c7420:-7e4b" ordering="1" parent="-3088270e:166584c7420:-7e4c" style="CommandPort;align=center;verticalAlign=bottom;spacing=10.0;rotation=90"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><BasicBlock dependsOnU="1" id="-3088270e:166584c7420:-7e44" interfaceFunctionName="CSCOPE" ordering="5" parent="0:2:0" simulationFunctionName="cscope" simulationFunctionType="C_OR_FORTRAN" style="CSCOPE"><ScilabString as="exprs" height="10" width="1"><data column="0" line="0" value="1 3 5 7 9 11 13 15"/><data column="0" line="1" value="-1"/><data column="0" line="2" value="[]"/><data column="0" line="3" value="[600;400]"/><data column="0" line="4" value="-15"/><data column="0" line="5" value="15"/><data column="0" line="6" value="30"/><data column="0" line="7" value="20"/><data column="0" line="8" value="0"/><data column="0" line="9" value=""/></ScilabString><ScilabDouble as="realParameters" height="4" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="-15.0"/><data column="0" line="2" realPart="15.0"/><data column="0" line="3" realPart="30.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="15" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="1.0"/><data column="0" line="4" realPart="3.0"/><data column="0" line="5" realPart="5.0"/><data column="0" line="6" realPart="7.0"/><data column="0" line="7" realPart="9.0"/><data column="0" line="8" realPart="11.0"/><data column="0" line="9" realPart="13.0"/><data column="0" line="10" realPart="15.0"/><data column="0" line="11" realPart="-1.0"/><data column="0" line="12" realPart="-1.0"/><data column="0" line="13" realPart="600.0"/><data column="0" line="14" realPart="400.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="430.0" y="170.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="-3088270e:166584c7420:-7e43" ordering="1" parent="-3088270e:166584c7420:-7e44" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ControlPort dataType="UNKNOW_TYPE" id="-3088270e:166584c7420:-7e42" ordering="1" parent="-3088270e:166584c7420:-7e44" style="ControlPort;align=center;verticalAlign=top;spacing=10.0;rotation=90"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><CommandControlLink id="-3088270e:166584c7420:-7e3e" parent="0:2:0" source="-3088270e:166584c7420:-7e4b" target="-3088270e:166584c7420:-7e42"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="450.0" y="100.0"/><mxPoint as="targetPoint" x="450.0" y="160.0"/></mxGeometry></CommandControlLink><SplitBlock id="-3088270e:166584c7420:-7e3b" ordering="6" parent="0:2:0" simulationFunctionType="DEFAULT"><mxGeometry as="geometry" height="7.0" width="7.0" x="387.0" y="187.0"/></SplitBlock><ExplicitInputPort dataType="UNKNOW_TYPE" id="-3088270e:166584c7420:-7e3a" ordering="1" parent="-3088270e:166584c7420:-7e3b" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ExplicitInputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="-3088270e:166584c7420:-7e39" ordering="1" parent="-3088270e:166584c7420:-7e3b" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="-3088270e:166584c7420:-7e38" ordering="2" parent="-3088270e:166584c7420:-7e3b" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitLink id="-3088270e:166584c7420:-7e37" parent="0:2:0" source="-3088270e:166584c7420:-7e51" target="-3088270e:166584c7420:-7e3a"><mxGeometry as="geometry"><Array as="points" scilabClass=""/></mxGeometry></ExplicitLink><ExplicitLink id="-3088270e:166584c7420:-7e36" parent="0:2:0" source="-3088270e:166584c7420:-7e39" target="-3088270e:166584c7420:-7e43"><mxGeometry as="geometry"><Array as="points" scilabClass=""/></mxGeometry></ExplicitLink><ExplicitLink id="-3088270e:166584c7420:-7e3c" parent="0:2:0" source="-3088270e:166584c7420:-7e38" target="-3088270e:166584c7420:-7e66"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="200.0" y="200.0"/><mxPoint as="targetPoint" x="390.0" y="190.0"/><Array as="points" scilabClass=""><mxPoint x="400.0" y="260.0"/><mxPoint x="400.0" y="260.0"/><mxPoint x="190.0" y="260.0"/><mxPoint x="180.0" y="200.0"/><mxPoint x="180.0" y="200.0"/></Array></mxGeometry></ExplicitLink></root></mxGraphModel><mxCell as="defaultParent" id="0:2:0" parent="0:1:0"/></XcosDiagram>
\ No newline at end of file diff --git a/Working_Examples/3885/CH3/EX3.2/Ex3_2.sci b/Working_Examples/3885/CH3/EX3.2/Ex3_2.sci new file mode 100755 index 0000000..0af5261 --- /dev/null +++ b/Working_Examples/3885/CH3/EX3.2/Ex3_2.sci @@ -0,0 +1,19 @@ +//control systems by Nagoor Kani A
+//Edition 3
+//Year of publication 2015
+//Scilab version 6.0.0
+//operating systems windows 10
+// Example 3.2
+
+clc;
+clear;
+s=%s
+p=poly([100],'s','coeff')
+q=poly([0 2 1],'s','coeff')
+h=poly([1 0.1 0 ],'s','coeff')
+g=p./q
+disp(g,'the given transfer function is')
+c=g/(1+(g*h))
+disp(c,'the closed loop transfer function is')
+u=c/s
+disp(u,'the in put is unit step signal')
diff --git a/Working_Examples/3885/CH3/EX3.2/Ex3_2.xcos b/Working_Examples/3885/CH3/EX3.2/Ex3_2.xcos new file mode 100755 index 0000000..03761df --- /dev/null +++ b/Working_Examples/3885/CH3/EX3.2/Ex3_2.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" finalIntegrationTime="30.0" title="Ex3_2"><!--Xcos - 1.0 - scilab-5.5.2 - 20160406 2040--><mxGraphModel as="model"><root><mxCell id="0:1:0"/><mxCell id="0:2:0" parent="0:1:0"/><BasicBlock id="73e2fecc:16667084192:-7e4b" interfaceFunctionName="STEP_FUNCTION" ordering="1" parent="0:2:0" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="STEP_FUNCTION"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList" varName=""><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="1.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="3" width="1"><data column="0" line="0" value="1"/><data column="0" line="1" value="0"/><data column="0" line="2" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"STEP",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="STEP"/></ScilabString></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="step_func"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="73e2fecc:16667084192:-7e0a"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="STEP"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="73e2fecc:16667084192:-7e0a"/></ScilabString></Array></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="180.0"/><data column="1" line="0" realPart="-130.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"OUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="OUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-2.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="73e2fecc:16667084192:-7e06"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="OUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="73e2fecc:16667084192:-7e06"/></ScilabString></Array></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="84.0"/><data column="0" line="1" realPart="196.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-20.0"/><data column="0" line="1" realPart="-120.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="6" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="220.0"/><data column="0" line="2" realPart="180.0"/><data column="0" line="3" realPart="180.0"/><data column="0" line="4" realPart="220.0"/><data column="0" line="5" realPart="60.0"/></ScilabDouble><ScilabDouble height="6" width="1"><data column="0" line="0" realPart="-44.0"/><data column="0" line="1" realPart="-260.0"/><data column="0" line="2" realPart="-260.0"/><data column="0" line="3" realPart="-180.0"/><data column="0" line="4" realPart="-180.0"/><data column="0" line="5" realPart="4.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="40.0" y="80.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="73e2fecc:16667084192:-7e4a" ordering="1" parent="73e2fecc:16667084192:-7e4b" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><BasicBlock dependsOnT="1" id="73e2fecc:16667084192:-7e41" interfaceFunctionName="CLR" ordering="2" parent="0:2:0" simulationFunctionName="csslti4" simulationFunctionType="C_OR_FORTRAN" style="CLR"><ScilabString as="exprs" height="2" width="1"><data column="0" line="0" value="100"/><data column="0" line="1" value="s^2 + 12*s + 100"/></ScilabString><ScilabDouble as="realParameters" height="9" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="-100.0"/><data column="0" line="2" realPart="1.0"/><data column="0" line="3" realPart="-12.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="1.0"/><data column="0" line="6" realPart="100.0"/><data column="0" line="7" realPart="0.0"/><data column="0" line="8" realPart="0.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="state" height="2" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="130.0" x="130.0" y="80.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="73e2fecc:16667084192:-7e3d" ordering="1" parent="73e2fecc:16667084192:-7e41" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="73e2fecc:16667084192:-7e3c" ordering="1" parent="73e2fecc:16667084192:-7e41" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="130.0" y="16.0"/></ExplicitOutputPort><ExplicitLink id="73e2fecc:16667084192:-7e3b" parent="0:2:0" source="73e2fecc:16667084192:-7e4a" target="73e2fecc:16667084192:-7e3d"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="80.0" y="100.0"/><mxPoint as="targetPoint" x="120.0" y="100.0"/></mxGeometry></ExplicitLink><BasicBlock blockType="h" id="73e2fecc:16667084192:-7e21" interfaceFunctionName="CLOCK_c" ordering="3" parent="0:2:0" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList" varName=""><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="1.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="179.0"/><data column="1" line="0" realPart="-210.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="73e2fecc:16667084192:-7e00"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="73e2fecc:16667084192:-7e00"/></ScilabString></Array></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.1"/><data column="0" line="1" value="0.1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.1"/><data column="0" line="1" realPart="0.1"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.1"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="73e2fecc:16667084192:-7dfe"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="73e2fecc:16667084192:-7dfe"/></ScilabString></Array></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="222.3773266666667"/><data column="1" line="0" realPart="-268.3333333333333"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="7.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="5.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="73e2fecc:16667084192:-7dfb"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="73e2fecc:16667084192:-7dfb"/></ScilabString></Array></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="220.0"/><data column="0" line="2" realPart="232.8773266666667"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-44.0"/><data column="0" line="1" realPart="-300.0"/><data column="0" line="2" realPart="-257.3333333333333"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="231.71066000000005"/><data column="0" line="1" realPart="209.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-272.3333333333333"/><data column="0" line="1" realPart="-186.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="234.04399333333336"/><data column="0" line="1" realPart="260.71"/><data column="0" line="2" realPart="220.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-272.3333333333333"/><data column="0" line="1" realPart="-170.0"/><data column="0" line="2" realPart="-170.0"/><data column="0" line="3" realPart="4.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="320.0" y="10.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="73e2fecc:16667084192:-7e20" ordering="1" parent="73e2fecc:16667084192:-7e21" style="CommandPort;align=center;verticalAlign=bottom;spacing=10.0;rotation=90"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><BasicBlock dependsOnU="1" id="73e2fecc:16667084192:-7e17" interfaceFunctionName="CSCOPE" ordering="4" parent="0:2:0" simulationFunctionName="cscope" simulationFunctionType="C_OR_FORTRAN" style="CSCOPE"><ScilabString as="exprs" height="10" width="1"><data column="0" line="0" value="1 3 5 7 9 11 13 15"/><data column="0" line="1" value="-1"/><data column="0" line="2" value="[]"/><data column="0" line="3" value="[600;400]"/><data column="0" line="4" value="-2"/><data column="0" line="5" value="2"/><data column="0" line="6" value="30"/><data column="0" line="7" value="20"/><data column="0" line="8" value="0"/><data column="0" line="9" value=""/></ScilabString><ScilabDouble as="realParameters" height="4" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="-2.0"/><data column="0" line="2" realPart="2.0"/><data column="0" line="3" realPart="30.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="15" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="1.0"/><data column="0" line="4" realPart="3.0"/><data column="0" line="5" realPart="5.0"/><data column="0" line="6" realPart="7.0"/><data column="0" line="7" realPart="9.0"/><data column="0" line="8" realPart="11.0"/><data column="0" line="9" realPart="13.0"/><data column="0" line="10" realPart="15.0"/><data column="0" line="11" realPart="-1.0"/><data column="0" line="12" realPart="-1.0"/><data column="0" line="13" realPart="600.0"/><data column="0" line="14" realPart="400.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="320.0" y="80.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="73e2fecc:16667084192:-7dba" ordering="1" parent="73e2fecc:16667084192:-7e17" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ControlPort dataType="UNKNOW_TYPE" id="73e2fecc:16667084192:-7db9" ordering="1" parent="73e2fecc:16667084192:-7e17" style="ControlPort;align=center;verticalAlign=top;spacing=10.0;rotation=90"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><ExplicitLink id="73e2fecc:16667084192:-7e0e" parent="0:2:0" source="73e2fecc:16667084192:-7e3c" target="73e2fecc:16667084192:-7dba"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="260.0" y="100.0"/><mxPoint as="targetPoint" x="320.0" y="100.0"/></mxGeometry></ExplicitLink><CommandControlLink id="73e2fecc:16667084192:-7e0d" parent="0:2:0" source="73e2fecc:16667084192:-7e20" target="73e2fecc:16667084192:-7db9"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="340.0" y="50.0"/><mxPoint as="targetPoint" x="340.0" y="70.0"/></mxGeometry></CommandControlLink></root></mxGraphModel><mxCell as="defaultParent" id="0:2:0" parent="0:1:0"/></XcosDiagram>
\ No newline at end of file diff --git a/Working_Examples/3885/CH3/EX3.3/Ex3_3.sci b/Working_Examples/3885/CH3/EX3.3/Ex3_3.sci new file mode 100755 index 0000000..8570f5e --- /dev/null +++ b/Working_Examples/3885/CH3/EX3.3/Ex3_3.sci @@ -0,0 +1,19 @@ +//control systems by Nagoor Kani A
+//Edition 3
+//Year of publication 2015
+//Scilab version 6.0.0
+//operating systems windows 10
+// Example 3.3
+
+clc;
+clear;
+s=poly(0,'s')
+// the input is unit step signal
+h=syslin('c', 600/(s^2+70*s+600))//the closed loop transfer function
+disp(h,'the closed loop transfer function')
+//standard form od second order system is w^2/s^2+2*zeta*w*s+w^2
+//compaing h with the standard form
+w=sqrt(600)//natural frequency of oscillation
+disp(w,'natural frequency of oscillation in rad/sec')
+zeta=70/(2*w)//damping ratio
+disp(zeta,'damping ratio')
diff --git a/Working_Examples/3885/CH3/EX3.4/Ex3_4.sci b/Working_Examples/3885/CH3/EX3.4/Ex3_4.sci new file mode 100755 index 0000000..c973cba --- /dev/null +++ b/Working_Examples/3885/CH3/EX3.4/Ex3_4.sci @@ -0,0 +1,24 @@ +//control systems by Nagoor Kani A
+//Edition 3
+//Year of publication 2015
+//Scilab version 6.0.0
+//operating systems windows 10
+// Example 3.4
+
+clc;
+clear;
+s=poly(0,'s')
+// the input is unit step signal
+h=syslin('c',100/(s^2+10*s+100))//the value of k is 100
+k=100
+zeta=0.5//given damping ratio
+disp(k,'the value of k is')
+disp(h,'the closed loop transfer function')
+//standard form od second order system is w^2/s^2+2*zeta*w*s+w^2
+//compaing h with the standard form
+w=sqrt(k)//natural frequency of oscillation
+disp(w,'natural frequency of oscillation in rad/sec')
+mp=exp((-zeta*%pi)/sqrt(1-(zeta)^2))*100//percentage peak overshoot
+disp(mp,'percentage peak overshoot in percentage')
+tp=%pi/(w*sqrt(1-(zeta)^2))
+disp(tp,'peak time in seconds')
diff --git a/Working_Examples/3885/CH3/EX3.6/Ex3_6.sci b/Working_Examples/3885/CH3/EX3.6/Ex3_6.sci new file mode 100755 index 0000000..0843446 --- /dev/null +++ b/Working_Examples/3885/CH3/EX3.6/Ex3_6.sci @@ -0,0 +1,34 @@ +//control systems by Nagoor Kani A
+//Edition 3
+//Year of publication 2015
+//Scilab version 6.0.0
+//operating systems windows 10
+// Example 3.6
+
+clc;
+clear;
+s=poly(0,'s')
+// the input is unit step signal
+h=syslin('c',16/(s^2+4*s+16))//the value of k is 0.2
+zeta=0.5//given damping ratio
+disp(h,'the closed loop transfer function')
+//standard form od second order system is w^2/s^2+2*zeta*w*s+w^2
+//compaing h with the standard form
+w=4//natural frequency of oscillation
+disp(w,'natural frequency of oscillation in rad/sec')
+k=(2*zeta*w-(0.8))/16
+disp(k,'the value of k is')
+mp=exp((-zeta*%pi)/sqrt(1-(zeta)^2))*100//percentage peak overshoot
+disp(mp,'percentage peak overshoot in percentage')
+tp=%pi/(w*sqrt(1-(zeta)^2))
+disp(tp,'peak time in seconds')
+//constructing a right angle triangle with zeta and sqrt(1-zeta^2)
+theta=atan(0.866/0.5)//(1-zeta^2)/zeta
+disp(theta,'the value of theta is')
+tr=(%pi- theta)/(w*sqrt(1-(zeta)^2))
+disp(tr,'the rise time in seconds')
+t=1/(zeta*w)//time constant
+ts1=3*t//settling time for 5% error
+disp(ts1,'settling time for 5% error in seconds')
+ts2=4*t//settling time for 2% error
+disp(ts2,'settling time for 2% error in seconds')
diff --git a/Working_Examples/3885/CH3/EX3.6/Ex3_6.xcos b/Working_Examples/3885/CH3/EX3.6/Ex3_6.xcos new file mode 100755 index 0000000..9a7560c --- /dev/null +++ b/Working_Examples/3885/CH3/EX3.6/Ex3_6.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" finalIntegrationTime="30.0" title="Ex3_6"><!--Xcos - 1.0 - scilab-5.5.2 - 20181120--><mxGraphModel as="model"><root><mxCell id="0:1:0"/><mxCell id="0:2:0" parent="0:1:0"/><BasicBlock dependsOnT="1" id="7ea52ad:167c0de0056:-7f19" interfaceFunctionName="CLR" ordering="1" parent="0:2:0" simulationFunctionName="csslti4" simulationFunctionType="C_OR_FORTRAN" style="CLR"><ScilabString as="exprs" height="2" width="1"><data column="0" line="0" value="16"/><data column="0" line="1" value="s^2+4*s+16"/></ScilabString><ScilabDouble as="realParameters" height="9" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="-16.0"/><data column="0" line="2" realPart="1.0"/><data column="0" line="3" realPart="-4.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="1.0"/><data column="0" line="6" realPart="16.0"/><data column="0" line="7" realPart="0.0"/><data column="0" line="8" realPart="0.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="state" height="2" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="60.0" x="240.0" y="240.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="7ea52ad:167c0de0056:-7ee7" ordering="1" parent="7ea52ad:167c0de0056:-7f19" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="7ea52ad:167c0de0056:-7ee6" ordering="1" parent="7ea52ad:167c0de0056:-7f19" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="60.0" y="16.0"/></ExplicitOutputPort><BasicBlock dependsOnU="1" id="7ea52ad:167c0de0056:-7f10" interfaceFunctionName="CSCOPE" ordering="2" parent="0:2:0" simulationFunctionName="cscope" simulationFunctionType="C_OR_FORTRAN" style="CSCOPE"><ScilabString as="exprs" height="10" width="1"><data column="0" line="0" value="1 3 5 7 9 11 13 15"/><data column="0" line="1" value="-1"/><data column="0" line="2" value="[]"/><data column="0" line="3" value="[600;400]"/><data column="0" line="4" value="0"/><data column="0" line="5" value="60"/><data column="0" line="6" value="30"/><data column="0" line="7" value="20"/><data column="0" line="8" value="0"/><data column="0" line="9" value=""/></ScilabString><ScilabDouble as="realParameters" height="4" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="0.0"/><data column="0" line="2" realPart="60.0"/><data column="0" line="3" realPart="30.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="15" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="1.0"/><data column="0" line="4" realPart="3.0"/><data column="0" line="5" realPart="5.0"/><data column="0" line="6" realPart="7.0"/><data column="0" line="7" realPart="9.0"/><data column="0" line="8" realPart="11.0"/><data column="0" line="9" realPart="13.0"/><data column="0" line="10" realPart="15.0"/><data column="0" line="11" realPart="-1.0"/><data column="0" line="12" realPart="-1.0"/><data column="0" line="13" realPart="600.0"/><data column="0" line="14" realPart="400.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="360.0" y="240.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="7ea52ad:167c0de0056:-7ee3" ordering="1" parent="7ea52ad:167c0de0056:-7f10" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ControlPort dataType="UNKNOW_TYPE" id="7ea52ad:167c0de0056:-7ee2" ordering="1" parent="7ea52ad:167c0de0056:-7f10" style="ControlPort;align=center;verticalAlign=top;spacing=10.0;rotation=90"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><BasicBlock id="7ea52ad:167c0de0056:-7f06" interfaceFunctionName="STEP_FUNCTION" ordering="3" parent="0:2:0" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="STEP_FUNCTION"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="1.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="3" width="1"><data column="0" line="0" value="1"/><data column="0" line="1" value="0"/><data column="0" line="2" value="50"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"STEP",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="STEP"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="step_func"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="50.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="7ea52ad:167c0de0056:-7ef5"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="STEP"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="7ea52ad:167c0de0056:-7ef5"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="320.0"/><data column="1" line="0" realPart="-270.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"OUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="OUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-2.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="7ea52ad:167c0de0056:-7ef1"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="OUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="7ea52ad:167c0de0056:-7ef1"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="84.0"/><data column="0" line="1" realPart="336.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-20.0"/><data column="0" line="1" realPart="-260.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="6" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="500.0"/><data column="0" line="2" realPart="460.0"/><data column="0" line="3" realPart="460.0"/><data column="0" line="4" realPart="500.0"/><data column="0" line="5" realPart="60.0"/></ScilabDouble><ScilabDouble height="6" width="1"><data column="0" line="0" realPart="-44.0"/><data column="0" line="1" realPart="-540.0"/><data column="0" line="2" realPart="-540.0"/><data column="0" line="3" realPart="-460.0"/><data column="0" line="4" realPart="-460.0"/><data column="0" line="5" realPart="4.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="90.0" y="240.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="7ea52ad:167c0de0056:-7e5f" ordering="1" parent="7ea52ad:167c0de0056:-7f06" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><BasicBlock blockType="h" id="7ea52ad:167c0de0056:-7f00" interfaceFunctionName="CLOCK_c" ordering="4" parent="0:2:0" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="1.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="179.0"/><data column="1" line="0" realPart="-210.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="7ea52ad:167c0de0056:-7ed5"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="7ea52ad:167c0de0056:-7ed5"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.1"/><data column="0" line="1" value="0.1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.1"/><data column="0" line="1" realPart="0.1"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.1"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="7ea52ad:167c0de0056:-7ed3"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="7ea52ad:167c0de0056:-7ed3"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="222.3773266666667"/><data column="1" line="0" realPart="-268.3333333333333"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="7.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="5.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="7ea52ad:167c0de0056:-7ed0"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="7ea52ad:167c0de0056:-7ed0"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="220.0"/><data column="0" line="2" realPart="232.8773266666667"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-44.0"/><data column="0" line="1" realPart="-300.0"/><data column="0" line="2" realPart="-257.3333333333333"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="231.71066000000005"/><data column="0" line="1" realPart="209.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-272.3333333333333"/><data column="0" line="1" realPart="-186.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="234.04399333333336"/><data column="0" line="1" realPart="260.71"/><data column="0" line="2" realPart="220.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-272.3333333333333"/><data column="0" line="1" realPart="-170.0"/><data column="0" line="2" realPart="-170.0"/><data column="0" line="3" realPart="4.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="360.0" y="70.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="7ea52ad:167c0de0056:-7eff" ordering="1" parent="7ea52ad:167c0de0056:-7f00" style="CommandPort;align=center;verticalAlign=bottom;spacing=10.0;rotation=90"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><CommandControlLink id="7ea52ad:167c0de0056:-7efc" parent="0:2:0" source="7ea52ad:167c0de0056:-7eff" target="7ea52ad:167c0de0056:-7ee2"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="380.0" y="110.0"/><mxPoint as="targetPoint" x="380.0" y="240.0"/></mxGeometry></CommandControlLink><ExplicitLink id="7ea52ad:167c0de0056:-7eed" parent="0:2:0" source="7ea52ad:167c0de0056:-7e5f" target="7ea52ad:167c0de0056:-7ee7"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="130.0" y="260.0"/><mxPoint as="targetPoint" x="230.0" y="260.0"/></mxGeometry></ExplicitLink><ExplicitLink id="7ea52ad:167c0de0056:-7eec" parent="0:2:0" source="7ea52ad:167c0de0056:-7ee6" target="7ea52ad:167c0de0056:-7ee3"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="300.0" y="260.0"/><mxPoint as="targetPoint" x="360.0" y="260.0"/></mxGeometry></ExplicitLink></root></mxGraphModel><mxCell as="defaultParent" id="0:2:0" parent="0:1:0"/></XcosDiagram>
\ No newline at end of file diff --git a/Working_Examples/3885/CH3/EX3.7/Ex3_7.sci b/Working_Examples/3885/CH3/EX3.7/Ex3_7.sci new file mode 100755 index 0000000..7eb252a --- /dev/null +++ b/Working_Examples/3885/CH3/EX3.7/Ex3_7.sci @@ -0,0 +1,28 @@ +//control systems by Nagoor Kani A
+//Edition 3
+//Year of publication 2015
+//Scilab version 6.0.0
+//operating systems windows 10
+// Example 3.7
+
+clc;
+clear;
+s=%s
+p=poly([1 0.4 0 ],'s','coeff')
+q=poly([0 0.6 1],'s','coeff')
+g=p./q
+disp(g,'the given transfer function is')
+c=g/(1+g)
+disp(c,'the closed loop transfer function is')
+u=c/s
+disp(u,'the in put is unit step signal')
+//standard form od second order system is w^2/s^2+2*zeta*w*s+w^2
+//compaing h with the standard form
+w=1//natural frequency of oscillation
+disp(w,'natural frequency of oscillation in rad/sec')
+zeta=1/(2*w)
+disp(zeta,'the damping ratio is')
+mp=exp((-zeta*%pi)/sqrt(1-(zeta)^2))*100//percentage peak overshoot
+disp(mp,'percentage peak overshoot in percentage')
+tp=%pi/(w*sqrt(1-(zeta)^2))
+disp(tp,'peak time in seconds')
diff --git a/Working_Examples/3885/CH3/EX3.7/Ex3_7.xcos b/Working_Examples/3885/CH3/EX3.7/Ex3_7.xcos new file mode 100755 index 0000000..6c8ba4d --- /dev/null +++ b/Working_Examples/3885/CH3/EX3.7/Ex3_7.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" finalIntegrationTime="30.0" title="Ex3_7"><!--Xcos - 1.0 - scilab-5.5.2 - 20160406 2040--><mxGraphModel as="model"><root><mxCell id="0:1:0"/><mxCell id="0:2:0" parent="0:1:0"/><BasicBlock dependsOnT="1" id="73e2fecc:16667084192:-7d40" interfaceFunctionName="CLR" ordering="1" parent="0:2:0" simulationFunctionName="csslti4" simulationFunctionType="C_OR_FORTRAN" style="CLR"><ScilabString as="exprs" height="2" width="1"><data column="0" line="0" value="0.4*s + 1"/><data column="0" line="1" value="s^2+s+1"/></ScilabString><ScilabDouble as="realParameters" height="9" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="-1.0"/><data column="0" line="2" realPart="1.0"/><data column="0" line="3" realPart="-1.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="1.0"/><data column="0" line="6" realPart="1.0"/><data column="0" line="7" realPart="0.4"/><data column="0" line="8" realPart="0.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="state" height="2" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="100.0" x="280.0" y="170.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="73e2fecc:16667084192:-7d24" ordering="1" parent="73e2fecc:16667084192:-7d40" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="73e2fecc:16667084192:-7d23" ordering="1" parent="73e2fecc:16667084192:-7d40" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="100.0" y="16.0"/></ExplicitOutputPort><BasicBlock blockType="h" id="73e2fecc:16667084192:-7d39" interfaceFunctionName="CLOCK_c" ordering="2" parent="0:2:0" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList" varName=""><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="1.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="139.0"/><data column="1" line="0" realPart="-170.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="73e2fecc:16667084192:-7d05"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="73e2fecc:16667084192:-7d05"/></ScilabString></Array></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.1"/><data column="0" line="1" value="0.1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.1"/><data column="0" line="1" realPart="0.1"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.1"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="73e2fecc:16667084192:-7d03"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="73e2fecc:16667084192:-7d03"/></ScilabString></Array></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="156.3773266666667"/><data column="1" line="0" realPart="-202.33333333333331"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="7.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="5.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="73e2fecc:16667084192:-7d00"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="73e2fecc:16667084192:-7d00"/></ScilabString></Array></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="140.0"/><data column="0" line="2" realPart="166.8773266666667"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-44.0"/><data column="0" line="1" realPart="-220.0"/><data column="0" line="2" realPart="-191.33333333333331"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="165.71066000000005"/><data column="0" line="1" realPart="169.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-206.33333333333331"/><data column="0" line="1" realPart="-146.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="168.04399333333336"/><data column="0" line="1" realPart="180.70999999999998"/><data column="0" line="2" realPart="140.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-206.33333333333331"/><data column="0" line="1" realPart="-90.0"/><data column="0" line="2" realPart="-90.0"/><data column="0" line="3" realPart="4.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="460.0" y="60.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="73e2fecc:16667084192:-7d38" ordering="1" parent="73e2fecc:16667084192:-7d39" style="CommandPort;align=center;verticalAlign=bottom;spacing=10.0;rotation=90"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><BasicBlock dependsOnU="1" id="73e2fecc:16667084192:-7d31" interfaceFunctionName="CSCOPE" ordering="3" parent="0:2:0" simulationFunctionName="cscope" simulationFunctionType="C_OR_FORTRAN" style="CSCOPE"><ScilabString as="exprs" height="10" width="1"><data column="0" line="0" value="1 3 5 7 9 11 13 15"/><data column="0" line="1" value="-1"/><data column="0" line="2" value="[]"/><data column="0" line="3" value="[600;400]"/><data column="0" line="4" value="0"/><data column="0" line="5" value="60"/><data column="0" line="6" value="30"/><data column="0" line="7" value="20"/><data column="0" line="8" value="0"/><data column="0" line="9" value=""/></ScilabString><ScilabDouble as="realParameters" height="4" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="0.0"/><data column="0" line="2" realPart="60.0"/><data column="0" line="3" realPart="30.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="15" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="1.0"/><data column="0" line="4" realPart="3.0"/><data column="0" line="5" realPart="5.0"/><data column="0" line="6" realPart="7.0"/><data column="0" line="7" realPart="9.0"/><data column="0" line="8" realPart="11.0"/><data column="0" line="9" realPart="13.0"/><data column="0" line="10" realPart="15.0"/><data column="0" line="11" realPart="-1.0"/><data column="0" line="12" realPart="-1.0"/><data column="0" line="13" realPart="600.0"/><data column="0" line="14" realPart="400.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="460.0" y="170.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="73e2fecc:16667084192:-7d21" ordering="1" parent="73e2fecc:16667084192:-7d31" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ControlPort dataType="UNKNOW_TYPE" id="73e2fecc:16667084192:-7d20" ordering="1" parent="73e2fecc:16667084192:-7d31" style="ControlPort;align=center;verticalAlign=top;spacing=10.0;rotation=90"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><BasicBlock id="73e2fecc:16667084192:-7d2a" interfaceFunctionName="STEP_FUNCTION" ordering="4" parent="0:2:0" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="STEP_FUNCTION"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList" varName=""><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="1.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="3" width="1"><data column="0" line="0" value="1"/><data column="0" line="1" value="0"/><data column="0" line="2" value="50"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"STEP",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="STEP"/></ScilabString></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="step_func"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="50.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="73e2fecc:16667084192:-7cf7"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="STEP"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="73e2fecc:16667084192:-7cf7"/></ScilabString></Array></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="260.0"/><data column="1" line="0" realPart="-210.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"OUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="OUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-2.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="73e2fecc:16667084192:-7cf3"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="OUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="73e2fecc:16667084192:-7cf3"/></ScilabString></Array></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="84.0"/><data column="0" line="1" realPart="276.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-20.0"/><data column="0" line="1" realPart="-200.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="6" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="380.0"/><data column="0" line="2" realPart="340.0"/><data column="0" line="3" realPart="340.0"/><data column="0" line="4" realPart="380.0"/><data column="0" line="5" realPart="60.0"/></ScilabDouble><ScilabDouble height="6" width="1"><data column="0" line="0" realPart="-44.0"/><data column="0" line="1" realPart="-420.0"/><data column="0" line="2" realPart="-420.0"/><data column="0" line="3" realPart="-340.0"/><data column="0" line="4" realPart="-340.0"/><data column="0" line="5" realPart="4.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="140.0" y="170.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="73e2fecc:16667084192:-7c9e" ordering="1" parent="73e2fecc:16667084192:-7d2a" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ExplicitLink id="73e2fecc:16667084192:-7d0c" parent="0:2:0" source="73e2fecc:16667084192:-7d23" target="73e2fecc:16667084192:-7d21"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="380.0" y="190.0"/><mxPoint as="targetPoint" x="460.0" y="190.0"/></mxGeometry></ExplicitLink><ExplicitLink id="73e2fecc:16667084192:-7d0b" parent="0:2:0" source="73e2fecc:16667084192:-7c9e" target="73e2fecc:16667084192:-7d24"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="180.0" y="190.0"/><mxPoint as="targetPoint" x="280.0" y="190.0"/></mxGeometry></ExplicitLink><CommandControlLink id="73e2fecc:16667084192:-7d08" parent="0:2:0" source="73e2fecc:16667084192:-7d38" target="73e2fecc:16667084192:-7d20"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="480.0" y="100.0"/><mxPoint as="targetPoint" x="480.0" y="170.0"/></mxGeometry></CommandControlLink></root></mxGraphModel><mxCell as="defaultParent" id="0:2:0" parent="0:1:0"/></XcosDiagram>
\ No newline at end of file diff --git a/Working_Examples/3885/CH3/EX3.9/Ex3_9.sci b/Working_Examples/3885/CH3/EX3.9/Ex3_9.sci new file mode 100755 index 0000000..6b421b1 --- /dev/null +++ b/Working_Examples/3885/CH3/EX3.9/Ex3_9.sci @@ -0,0 +1,35 @@ +//control systems by Nagoor Kani A
+//Edition 3
+//Year of publication 2015
+//Scilab version 6.0.0
+//operating systems windows 10
+// Example 3.9
+
+clc;
+clear;
+s=poly(0,'s')
+// the input is 12 unit step signal
+h=syslin('c',10/(s^2+2*s+10))
+disp(h,'the closed loop transfer function')
+//standard form od second order system is w^2/s^2+2*zeta*w*s+w^2
+//compaing h with the standard form
+w=3.162//natural frequency of oscillation
+disp(w,'natural frequency of oscillation in rad/sec')
+zeta=2/(2*w)
+disp(zeta,' damping ratio is')
+mp=exp((-zeta*%pi)/sqrt(1-(zeta)^2))*100//percentage peak overshoot
+disp(mp,'percentage peak overshoot in percentage')
+po=(mp/100)*12//peak over shoot for 12 units
+disp(po,'peak over shoot for 12 units')
+tp=%pi/(w*sqrt(1-(zeta)^2))
+disp(tp,'peak time in seconds')
+//constructing a right angle triangle with zeta and sqrt(1-zeta^2)
+theta=atan(0.866/0.5)//(1-zeta^2)/zeta
+disp(theta,'the value of theta is')
+tr=(%pi- theta)/(w*sqrt(1-(zeta)^2))
+disp(tr,'the rise time in seconds')
+t=1/(zeta*w)//time constant
+ts1=3*t//settling time for 5% error
+disp(ts1,'settling time for 5% error in seconds')
+ts2=4*t//settling time for 2% error
+disp(ts2,'settling time for 2% error in seconds')
diff --git a/Working_Examples/3885/CH4/EX4.1/Ex4_1.sce b/Working_Examples/3885/CH4/EX4.1/Ex4_1.sce new file mode 100755 index 0000000..391fddc --- /dev/null +++ b/Working_Examples/3885/CH4/EX4.1/Ex4_1.sce @@ -0,0 +1,16 @@ +//control systems by Nagoor Kani A +//Edition 3 +//Year of publication 2015 +//Scilab version 6.0.0 +//operating systems windows 10 +// Example 4.1 +clc; +clear; +s=poly(0,'s')//defines s as poly nomial variable +h=syslin('c',(s^2)/((1+0.2*s)*(1+0.02*s)))//the given transfer function assigned to variable h .Assume the value of K as 1 +scf(1) +bode(h,0.1,100)//frequency range +show_margins(h) +//calculation of system gain K +K=10^(-28/20)//value of K is calculated by equating 20logK to -28db +disp(K,'the value of gain') diff --git a/Working_Examples/3885/CH4/EX4.2/Ex4_2.sce b/Working_Examples/3885/CH4/EX4.2/Ex4_2.sce new file mode 100755 index 0000000..a308fe8 --- /dev/null +++ b/Working_Examples/3885/CH4/EX4.2/Ex4_2.sce @@ -0,0 +1,16 @@ +//control systems by Nagoor Kani A +//Edition 3 +//Year of publication 2015 +//Scilab version 6.0.0 +//operating systems windows 10 +// Example 4.2 +clc; +clear; +s=poly(0,'s')//defines s as poly nomial variable +h=syslin('c',(75*(1+0.2*s))/(s*(s^2+16*s+100)))//the given transfer function assigned to variable h +scf(1) +bode(h,0.1,100)//frequency range +show_margins(h) +a=g_margin(h) +b=p_margin(h) +disp(a,b,'the gain margin and phase margin are') diff --git a/Working_Examples/3885/CH4/EX4.3/Ex4_3.sce b/Working_Examples/3885/CH4/EX4.3/Ex4_3.sce new file mode 100755 index 0000000..cabb1b9 --- /dev/null +++ b/Working_Examples/3885/CH4/EX4.3/Ex4_3.sce @@ -0,0 +1,18 @@ +//control systems by Nagoor Kani A
+//Edition 3
+//Year of publication 2015
+//Scilab version 6.0.0
+//operating systems windows 10
+// Example 4.3
+clc;
+clear;
+s=poly(0,'s')//defines s as poly nomial variable
+h=syslin('c',(%e*(0.2*s)/(s*(s+2)*(s+8))))//the given transfer function assiganed to variable h assume K=1
+scf(1)
+bode(h,0.1,100)//frequency range
+show_margins(h)
+//calculation of K
+K1=10^(30/20)
+disp(K1 ,'when gain margin =2db ' )
+K2=10^(24/20)
+disp(K2,'the value of K when phase margin is 45')
diff --git a/Working_Examples/3885/CH4/EX4.4/Ex4_4.sce b/Working_Examples/3885/CH4/EX4.4/Ex4_4.sce new file mode 100755 index 0000000..b2e71f4 --- /dev/null +++ b/Working_Examples/3885/CH4/EX4.4/Ex4_4.sce @@ -0,0 +1,14 @@ +//control systems by Nagoor Kani A +//Edition 3 +//Year of publication 2015 +//Scilab version 6.0.0 +//operating systems windows 10 +// Example 4.4 +clc; +clear; +s=poly(0,'s')//defines s as poly nomial variable +h=syslin('c',(10)/(s*(1+0.4*s)*(1+0.1*s)))//the given transfer function assigned to variable h +scf(1) +bode(h,0.1,100)//frequency range +show_margins(h) + diff --git a/Working_Examples/3885/CH4/EX4.5/Ex4_5.sce b/Working_Examples/3885/CH4/EX4.5/Ex4_5.sce new file mode 100755 index 0000000..5a0abd2 --- /dev/null +++ b/Working_Examples/3885/CH4/EX4.5/Ex4_5.sce @@ -0,0 +1,15 @@ +//control systems by Nagoor Kani A +//Edition 3 +//Year of publication 2015 +//Scilab version 6.0.0 +//operating systems windows 10 +// Example 4.5 +clc; +clear; +s=poly(0,'s')////defines s as poly nomial variable +h=syslin('c',(20)/(s*(1+3*s)*(1+4*s)))//the given transfer function assigned to variable h +scf() +bode(h,0.1,100) +show_margins(h) +//calculation of gain cross over frequency +disp('from the plot the value of gain cross over frequency is :1.1rad/sec') diff --git a/Working_Examples/3885/CH4/EX4.6/Ex4_6.sce b/Working_Examples/3885/CH4/EX4.6/Ex4_6.sce new file mode 100755 index 0000000..70be9cc --- /dev/null +++ b/Working_Examples/3885/CH4/EX4.6/Ex4_6.sce @@ -0,0 +1,13 @@ +//control systems by Nagoor Kani A +//Edition 3 +//Year of publication 2015 +//Scilab version 6.0.0 +//operating systems windows 10 +// Example 4.6 +clc; +clear; +s=poly(0,'s')//defines s as polynomial variable +h=syslin('c',(5*(1+2*s))/(1+4*s)*(4+0.25*s))//the given transfer function assigned to variable h +scf(1) +bode(h,0.1,100)//frequency range +show_margins(h) diff --git a/Working_Examples/3885/CH5/EX5.1/Ex5_1.sci b/Working_Examples/3885/CH5/EX5.1/Ex5_1.sci new file mode 100755 index 0000000..15a5266 --- /dev/null +++ b/Working_Examples/3885/CH5/EX5.1/Ex5_1.sci @@ -0,0 +1,17 @@ +//control systems by Nagoor Kani A
+//Edition 3
+//Year of publication 2015
+//Scilab version 6.0.0
+//operating systems windows 10
+// Example 5.1
+
+clc;
+clear;
+s=poly(0,'s')
+a=(s^4)+(8*s^3)+(18*s^2)+(16*s)+5
+b=coeff(a)
+n=length(b)
+R=routh_t(a)
+disp(R,'the routh array is;')
+disp('since there is no sign change the system is stable')
+disp('all the four roots lie left half of the s plane')
diff --git a/Working_Examples/3885/CH5/EX5.12/Ex5_12.sci b/Working_Examples/3885/CH5/EX5.12/Ex5_12.sci new file mode 100755 index 0000000..c670d7c --- /dev/null +++ b/Working_Examples/3885/CH5/EX5.12/Ex5_12.sci @@ -0,0 +1,17 @@ +//control systems by Nagoor Kani A
+//Edition 3
+//Year of publication 2015
+//Scilab version 6.0.0
+//operating systems windows 10
+// Example 5.12
+
+clc;
+clear;
+s=poly(0,'s')
+//the close loop tranfer function is K(1-s)/s*(s^2+5s+9)+K(1-s)
+a=(s^3)+(5*s^2)+(8*s)+1//the charater stic equation is assuming K=1
+b=coeff(a)
+n=length(b)
+R=routh_t(a)
+disp(R,'the routh array is;')
+disp('the valus of K lies between 0 to7.5 for the system to be stable')
diff --git a/Working_Examples/3885/CH5/EX5.13/Ex5_13.sci b/Working_Examples/3885/CH5/EX5.13/Ex5_13.sci new file mode 100755 index 0000000..3428231 --- /dev/null +++ b/Working_Examples/3885/CH5/EX5.13/Ex5_13.sci @@ -0,0 +1,17 @@ +//control systems by Nagoor Kani A
+//Edition 3
+//Year of publication 2015
+//Scilab version 6.0.0
+//operating systems windows 10
+// Example 5.13
+
+clc;
+clear;
+s=poly(0,'s')//defines s as poly nomial variable
+h=syslin('c',(230/(s*(s+2)*(s+10))))//the value of K lies between 0 to 240 .the given transfer function assigned to variable h
+nyquist(h)
+show_margins(h,'nyquist')
+//calculation of K
+//when -0.00417K=-1the contour passes through -1+j0 and the corrospondig value of K is the limiting value of k for stabilty
+K=1/0.00417
+disp(K,'the value of K is')
diff --git a/Working_Examples/3885/CH5/EX5.14/Ex5_14.sci b/Working_Examples/3885/CH5/EX5.14/Ex5_14.sci new file mode 100755 index 0000000..bc93177 --- /dev/null +++ b/Working_Examples/3885/CH5/EX5.14/Ex5_14.sci @@ -0,0 +1,16 @@ +//control systems by Nagoor Kani A
+//Edition 3
+//Year of publication 2015
+//Scilab version 6.0.0
+//operating systems windows 10
+// Example 5.14
+
+clc;
+clear;
+s=poly(0,'s')//defines s as poly nomial variable
+h=syslin('c',(0.6*(1+s)^2/(s^3)))//the system is stable for K vlaue greater than 0.5. the given transfer function assigned to variable h
+scf()
+nyquist(h)
+show_margins(h,'nyquist')
+//when K>0.5 -1+j0 is encircled in both clockwise and anticlockwise direction one time. so the system is stable
+disp('the system is stable for K vlaue greater than 0.5.')
diff --git a/Working_Examples/3885/CH5/EX5.15/Ex5_15.sci b/Working_Examples/3885/CH5/EX5.15/Ex5_15.sci new file mode 100755 index 0000000..f4eef5e --- /dev/null +++ b/Working_Examples/3885/CH5/EX5.15/Ex5_15.sci @@ -0,0 +1,16 @@ +//control systems by Nagoor Kani A
+//Edition 3
+//Year of publication 2015
+//Scilab version 6.0.0
+//operating systems windows 10
+// Example 5.15
+
+clc;
+clear;
+s=poly(0,'s')//defines s as poly nomial variable
+h=syslin('c',(1+4*s)/(s*(1+s)*(1+2*s)))//the given transfer function assigned to variable h
+scf()
+nyquist(h)
+show_margins(h,'nyquist')
+disp('the closed loop system is unstable ')
+disp('two poles of closed loop system are lying on right half of s plane')
diff --git a/Working_Examples/3885/CH5/EX5.16/Ex5_16.sci b/Working_Examples/3885/CH5/EX5.16/Ex5_16.sci new file mode 100755 index 0000000..25d9851 --- /dev/null +++ b/Working_Examples/3885/CH5/EX5.16/Ex5_16.sci @@ -0,0 +1,21 @@ +//control systems by Nagoor Kani A
+//Edition 3
+//Year of publication 2015
+//Scilab version 6.0.0
+//operating systems windows 10
+// Example 5.16
+
+clc;
+clear;
+s=poly(0,'s')//defines s as poly nomial variable
+h=syslin('c',(7*(1+0.5*s)*(1+s)/(1+10*s)*(s-1)))//system is stable for K>6.....the given transfer function assigned to variable h
+scf()
+nyquist(h)
+show_margins(h,'nyquist')
+//calculation of K
+//when -0.01667K=-1the contur passes through -1=j0and the corrospong value of K is the limiting value of k for stabilty
+K=1/0.1667
+disp(K,'the value of K is')
+disp('the open loop system is unstable')
+disp('for stability of closed loop system K>6')
+
diff --git a/Working_Examples/3885/CH5/EX5.17/Ex5_17.sci b/Working_Examples/3885/CH5/EX5.17/Ex5_17.sci new file mode 100755 index 0000000..157b06b --- /dev/null +++ b/Working_Examples/3885/CH5/EX5.17/Ex5_17.sci @@ -0,0 +1,14 @@ +//control systems by Nagoor Kani A
+//Edition 3
+//Year of publication 2015
+//Scilab version 6.0.0
+//operating systems windows 10
+// Example 5.17
+
+clc;
+clear;
+s=poly(0,'s')//defines s as polynomial variable
+h=syslin('c',(5/(s*(1-s))))//the given transfer function assigned to variable h
+scf()
+nyquist(h)
+disp('Both open loop and closed loop functions are unstable ')
diff --git a/Working_Examples/3885/CH5/EX5.18/Ex5_18.sci b/Working_Examples/3885/CH5/EX5.18/Ex5_18.sci new file mode 100755 index 0000000..d5327b7 --- /dev/null +++ b/Working_Examples/3885/CH5/EX5.18/Ex5_18.sci @@ -0,0 +1,16 @@ +//control systems by Nagoor Kani A
+//Edition 3
+//Year of publication 2015
+//Scilab version 6.0.0
+//operating systems windows 10
+// Example 5.28
+
+clc;
+clear;
+s=poly(0,'s')//defines s as poly nomial variable
+h=syslin('c',(s+2)/(s+1)*(s-1))//the given transfer function assigned to variable h
+scf()
+nyquist(h)
+show_margins(h,'nyquist')
+disp('open loop system is unstable')
+disp('closed loop system is stable;' )
diff --git a/Working_Examples/3885/CH5/EX5.2/Ex5_2.sci b/Working_Examples/3885/CH5/EX5.2/Ex5_2.sci new file mode 100755 index 0000000..7e9f4d9 --- /dev/null +++ b/Working_Examples/3885/CH5/EX5.2/Ex5_2.sci @@ -0,0 +1,20 @@ +//control systems by Nagoor Kani A
+//Edition 3
+//Year of publication 2015
+//Scilab version 6.0.0
+//operating systems windows 10
+// Example 5.2
+
+clc;
+clear;
+s=poly(0,'s')
+a=(s^6)+(2*s^5)+(8*s^4)+(12*s^3)+(20*s^2)+(16*s)+16
+b=coeff(a)
+n=length(b)
+R=routh_t(a)
+disp(R,'the routh array is;')
+ap=s^4+6*s^2+8
+r=roots(ap)
+disp(r,'the roots of auxilary polynomial;')
+disp('the system is marginally stable;')
+disp('four roots lying in imaginary axis ;')
diff --git a/Working_Examples/3885/CH5/EX5.22/Ex5_22.sci b/Working_Examples/3885/CH5/EX5.22/Ex5_22.sci new file mode 100755 index 0000000..a411018 --- /dev/null +++ b/Working_Examples/3885/CH5/EX5.22/Ex5_22.sci @@ -0,0 +1,19 @@ +//control systems by Nagoor Kani A
+//Edition 3
+//Year of publication 2015
+//Scilab version 6.0.0
+//operating systems windows 10
+// Example 5.22
+
+clc;
+clear;
+s=poly(0,'s')//defines s as poly nomial variable
+G=syslin('c',(1/(s*(s^2+4*s+13))))//the given transfer function assigned to variable G assume K=1
+scf()
+evans(G)
+//calculation of K
+disp('the characterstic equation is given by : s^2+4*s^2+13*s+K')
+//put s=jw and equate real and imaginary parts
+//K=4*w^2
+K=4*13
+disp(K,'the value of K is ')
diff --git a/Working_Examples/3885/CH5/EX5.23/Ex5_23.sci b/Working_Examples/3885/CH5/EX5.23/Ex5_23.sci new file mode 100755 index 0000000..feea174 --- /dev/null +++ b/Working_Examples/3885/CH5/EX5.23/Ex5_23.sci @@ -0,0 +1,19 @@ +//control systems by Nagoor Kani A
+//Edition 3
+//Year of publication 2015
+//Scilab version 6.0.0
+//operating systems windows 10
+// Example 5.23
+
+clc;
+clear;
+s=poly(0,'s')//defines s as poly nomial variable
+h=syslin('c',(48/(s*(s+2)*(s+4))))//the given transfer function assigned to variable h assume K=1
+scf()
+evans(h)
+//calculation of K
+disp('the characterstic equation is given by : s^3+6*s^2+8*s+K')
+//put s=jw and equate real and imaginary parts
+//K=4*w^2
+K=6*8
+disp(K,'the value of K is ')
diff --git a/Working_Examples/3885/CH5/EX5.24/Ex5_24.sci b/Working_Examples/3885/CH5/EX5.24/Ex5_24.sci new file mode 100755 index 0000000..91800d8 --- /dev/null +++ b/Working_Examples/3885/CH5/EX5.24/Ex5_24.sci @@ -0,0 +1,22 @@ +//control systems by Nagoor Kani A
+//Edition 3
+//Year of publication 2015
+//Scilab version 6.0.0
+//operating systems windows 10
+// Example 5.24
+
+clc;
+clear;
+s=poly(0,'s')//defines s as poly nomial variable
+h=syslin('c',(s+9)/(s*(s^2+4*s+11)))//the given transfer function assigned to variable h assume K=1
+scf()
+evans(h)
+//the characterstic equation is (s^3+4s^2+11s)+Ks+9K
+//put s=jw and equating real and imaginary parts to calculate K
+K=(4*(4.4)^2)/9//the value of w is 4.4
+disp(K,'the value of K is;')
+
+
+
+
+
diff --git a/Working_Examples/3885/CH5/EX5.25/Ex5_25.sci b/Working_Examples/3885/CH5/EX5.25/Ex5_25.sci new file mode 100755 index 0000000..f3c7eb9 --- /dev/null +++ b/Working_Examples/3885/CH5/EX5.25/Ex5_25.sci @@ -0,0 +1,17 @@ +//control systems by Nagoor Kani A
+//Edition 3
+//Year of publication 2015
+//Scilab version 6.0.0
+//operating systems windows 10
+// Example 5.25
+
+clc;
+clear;
+s=poly(0,'s')//defines s as poly nomial variable
+h=syslin('c',(1/(s*(s+4)*(s^2+4*s+20))))// the given transfer function assigned to variable h assume K=1
+scf()
+evans(h)
+//the characterstic equation is (s^4+8s^3+36s^2+80s)+K
+//put s=jw and equating real and imaginary parts to calculate K
+K=-(3.2)^4+36*(3.2)^2//the value of w is 3.2
+disp(K,'yhe value of K is;')
diff --git a/Working_Examples/3885/CH5/EX5.26/Ex5_26.sci b/Working_Examples/3885/CH5/EX5.26/Ex5_26.sci new file mode 100755 index 0000000..d8e13f3 --- /dev/null +++ b/Working_Examples/3885/CH5/EX5.26/Ex5_26.sci @@ -0,0 +1,17 @@ +//control systems by Nagoor Kani A
+//Edition 3
+//Year of publication 2015
+//Scilab version 6.0.0
+//operating systems windows 10
+// Example 5.26
+
+clc;
+clear;
+s=poly(0,'s')//defines s as poly nomial variable
+h=syslin('c',(s+15)/(s*(s+1)*(s+5)))//the given transfer function assigned to variable h assume K=1
+scf()
+evans(h)
+//the characterstic equation is (s^3+6s^2+5s)+Ks+15K
+//put s=jw and equating real and imaginary parts to calculate K
+K=30/(-4.5)
+disp(K,'yhe value of K is;')
diff --git a/Working_Examples/3885/CH5/EX5.27/Ex5_27.sci b/Working_Examples/3885/CH5/EX5.27/Ex5_27.sci new file mode 100755 index 0000000..36f588d --- /dev/null +++ b/Working_Examples/3885/CH5/EX5.27/Ex5_27.sci @@ -0,0 +1,18 @@ +//control systems by Nagoor Kani A
+//Edition 3
+//Year of publication 2015
+//Scilab version 6.0.0
+//operating systems windows 10
+// Example 5.27
+
+clc;
+clear;
+s=poly(0,'s')//defines s as poly nomial variable
+K=poly(0,'K')
+h=syslin('c',(s^2+6*s+25)/(s*(s+1)*(s+2)))//the given transfer function assigned to variable h assume K=1
+scf()
+evans(h)
+//the characterstic equation is (s^3+(3+K)s^2+(2+6K)s)25K
+//put s=jw and equating real and imaginary parts to calculate K
+a=roots((-6*K^2)+5*K-6)
+disp(a,'the value of K is')
diff --git a/Working_Examples/3885/CH5/EX5.28/Ex5_28.sci b/Working_Examples/3885/CH5/EX5.28/Ex5_28.sci new file mode 100755 index 0000000..64e45a9 --- /dev/null +++ b/Working_Examples/3885/CH5/EX5.28/Ex5_28.sci @@ -0,0 +1,17 @@ +//control systems by Nagoor Kani A
+//Edition 3
+//Year of publication 2015
+//Scilab version 6.0.0
+//operating systems windows 10
+// Example 5.28
+
+clc;
+clear;
+s=poly(0,'s')//defines s as poly nomial variable
+h=syslin('c',(1/(s*(s^2+6*s+10))))//the given transfer function assigned to variable h assume K=1
+scf()
+evans(h)
+//the characterstic equation is (s^3+6s^2+10s)+K
+//put s=jw and equating real and imaginary parts to calculate K
+K=6*(3.2)^2//the valuw of w is 3.2
+disp(K,'the value of K is ')
diff --git a/Working_Examples/3885/CH5/EX5.3/Ex5_3.sci b/Working_Examples/3885/CH5/EX5.3/Ex5_3.sci new file mode 100755 index 0000000..b295151 --- /dev/null +++ b/Working_Examples/3885/CH5/EX5.3/Ex5_3.sci @@ -0,0 +1,16 @@ +//control systems by Nagoor Kani A
+//Edition 3
+//Year of publication 2015
+//Scilab version 6.0.0
+//operating systems windows 10
+// Example 5.3
+
+clc;
+clear;
+s=poly(0,'s')
+a=(s^5)+(s^4)+(2*s^3)+(2*s^2)+(3*s)+5
+b=coeff(a)
+n=length(b)
+R=routh_t(a)
+disp(R,'the routh array is;')
+disp('the system is unstable')
diff --git a/Working_Examples/3885/CH5/EX5.4/Ex5_4.sci b/Working_Examples/3885/CH5/EX5.4/Ex5_4.sci new file mode 100755 index 0000000..972e7e1 --- /dev/null +++ b/Working_Examples/3885/CH5/EX5.4/Ex5_4.sci @@ -0,0 +1,17 @@ +//control systems by Nagoor Kani A
+//Edition 3
+//Year of publication 2015
+//Scilab version 6.0.0
+//operating systems windows 10
+// Example 5.4
+
+clc;
+clear;
+s=poly(0,'s')
+a=(9*s^5)-(20*s^4)+(10*s^3)-(s^2)-(9*s)-10
+b=coeff(a)
+n=length(b)
+R=routh_t(a)
+disp(R,'the routh array is;')
+disp('there are 3 sign changes in first column of routh array ')
+disp('three roots lie on right side of s plane so the system is unstable')
diff --git a/Working_Examples/3885/CH5/EX5.5/Ex5_5.sci b/Working_Examples/3885/CH5/EX5.5/Ex5_5.sci new file mode 100755 index 0000000..78c8584 --- /dev/null +++ b/Working_Examples/3885/CH5/EX5.5/Ex5_5.sci @@ -0,0 +1,21 @@ +//control systems by Nagoor Kani A
+//Edition 3
+//Year of publication 2015
+//Scilab version 6.0.0
+//operating systems windows 10
+// Example 5.5
+
+clc;
+clear;
+s=poly(0,'s')
+a=(s^7)+(9*s^6)+(24*s^5)+(24*s^4)+(24*s^3)+(24*s^2)+(23*s)+15
+b=coeff(a)
+n=length(b)
+R=routh_t(a)
+disp(R,'the routh array is;')
+disp('there is sign change in first column of routh array so ths system is unstable;')
+ae=s^4+s^2+1
+r=roots(ae)
+disp(r,'the roots of auxilary equation are')
+disp('two roots lie on right half of splane five roots lie on left half of s plane')
+
diff --git a/Working_Examples/3885/CH5/EX5.6/Ex5_6.sci b/Working_Examples/3885/CH5/EX5.6/Ex5_6.sci new file mode 100755 index 0000000..d513434 --- /dev/null +++ b/Working_Examples/3885/CH5/EX5.6/Ex5_6.sci @@ -0,0 +1,27 @@ +//control systems by Nagoor Kani A
+//Edition 3
+//Year of publication 2015
+//Scilab version 6.0.0
+//operating systems windows 10
+// Example 5.6
+
+clc;
+clear;
+s=poly(0,'s')
+a=(s^7)+(5*s^6)+(9*s^5)+(9*s^4)+(4*s^3)+(20*s^2)+(36*s)+36
+b=coeff(a)
+n=length(b)
+R=routh_t(a)
+disp(R,'the routh array is;')
+//divide characterstic equation by auxilary polynomial to get quotient polynomial
+//routh table for quotient poly nomial
+a1=(s^3)+(5*s^2)+(9*s)+9 //quotient poly nomial
+b1=coeff(a1)
+n1=length(b1)
+R1=routh_t(a1)
+disp(R1,'the routh array for quotient poly nomial is;')
+ap=s^4+4 //auxillary polynomial
+r=roots(ap)
+disp(r,'the roots are')
+disp('the system is unstable')
+disp('two roots on right half of s plane and five roots lie in left half of s plane')
diff --git a/Working_Examples/3885/CH5/EX5.7/Ex5_7.sci b/Working_Examples/3885/CH5/EX5.7/Ex5_7.sci new file mode 100755 index 0000000..6111bfe --- /dev/null +++ b/Working_Examples/3885/CH5/EX5.7/Ex5_7.sci @@ -0,0 +1,20 @@ +//control systems by Nagoor Kani A
+//Edition 3
+//Year of publication 2015
+//Scilab version 6.0.0
+//operating systems windows 10
+// Example 5.7
+
+clc;
+clear;
+s=poly(0,'s')
+a=(s^5)+(4*s^4)+(8*s^3)+(8*s^2)+(7*s)+4
+b=coeff(a)
+n=length(b)
+R=routh_t(a)
+disp(R,'the routh array is;')
+ap=s^2+1
+r=roots(ap)
+disp(r,'the roots are')
+disp ('the roots of auxillary equation are in imagianry axis so the system is marginally stable')
+disp('three roots lie in left half of s plane')
diff --git a/Working_Examples/3885/CH5/EX5.8/Ex5_8.sci b/Working_Examples/3885/CH5/EX5.8/Ex5_8.sci new file mode 100755 index 0000000..9de51e2 --- /dev/null +++ b/Working_Examples/3885/CH5/EX5.8/Ex5_8.sci @@ -0,0 +1,28 @@ +//control systems by Nagoor Kani A
+//Edition 3
+//Year of publication 2015
+//Scilab version 6.0.0
+//operating systems windows 10
+// Example 5.8
+
+clc;
+clear;
+s=poly(0,'s')
+a=(s^6)+(s^5)+(3*s^4)+(3*s^3)+(3*s^2)+(2*s)+1
+b=coeff(a)
+n=length(b)
+R=routh_t(a)
+disp(R,'the routh array is;')
+//characterstic polynomial can be expressed as product of auxillary polynomial and quotient polynomial
+//divide characterstic equation by auxilary polynomial to get quotient polynomial
+//routh table for quotient poly nomial
+a1=(s^4)+(s^3)+(2*s^2)+(2*s)+1 //quotient poly nomial
+b1=coeff(a1)
+n1=length(b1)
+R1=routh_t(a1)
+disp(R1,'the routh array for quotient poly nomial is;')
+ap=s^2+1
+r=roots(ap)
+disp(r,'the roots are')
+disp('the system is unstable')
+disp('two roota on imaginary axis ,two roots on right half of s plane and two roots lie in left half of s plane')
diff --git a/Working_Examples/3885/CH5/EX5.9/Ex5_9.sci b/Working_Examples/3885/CH5/EX5.9/Ex5_9.sci new file mode 100755 index 0000000..d9b5660 --- /dev/null +++ b/Working_Examples/3885/CH5/EX5.9/Ex5_9.sci @@ -0,0 +1,17 @@ +//control systems by Nagoor Kani A
+//Edition 3
+//Year of publication 2015
+//Scilab version 6.0.0
+//operating systems windows 10
+// Example 5.9
+
+clc;
+clear;
+s=poly(0,'s')
+//the close loop tranfer function is K/s*(s+1)*(s+2)+K
+a=(s^3)+(3*s^2)+(2*s)+1//the characterstic equation assuming K=1
+b=coeff(a)
+n=length(b)
+R=routh_t(a)
+disp(R,'the routh array is;')
+disp('the valus of K lies between 0 to6 for the system to be stable')
diff --git a/Working_Examples/3885/CH6/EX6.1/Ex6_1.sci b/Working_Examples/3885/CH6/EX6.1/Ex6_1.sci new file mode 100755 index 0000000..a11b658 --- /dev/null +++ b/Working_Examples/3885/CH6/EX6.1/Ex6_1.sci @@ -0,0 +1,47 @@ +//control systems by Nagoor Kani A
+//Edition 3
+//Year of publication 2015
+//Scilab version 6.0.0
+//operating systems windows 10
+// Example 6.1
+
+clc;
+clear;
+s=poly(0,'s')
+//calculation of gain K
+//for ramp input ess(steady state error ) is0.2
+ess=0.2
+kv=1/ess
+// open loop transfer function G(s)=K/s*(1+2*s)
+//by definition of velocity error constant applying limit s=0 in G(s)
+disp('the value of K is 5;')
+h=syslin('c',5/(s*(1+2*s)))
+bode(h)
+show_margins(h)
+xtitle("uncompensated system")
+//from the plot the phase margin of uncompensated system is 18
+//but the system requires phase margin of 40 so lag compensation required
+pm=45//choose PM of compensated system is 45 degree
+phigcn=45-180// phase of G(s) at new gain cross over frequency
+wgcn=0.5//the frequency corrosponding to phase of -135 is 0.5 rad/sec
+agcn=20//db magnitude at wgcn
+//20log betaa=20
+betaa=10^(agcn/20)
+disp(betaa,'the value for betaa is')
+zc=wgcn/10//zero of lag compensator
+t=10/wgcn
+disp(t,'the value for t is')
+pc=1/(betaa*t)
+disp(pc,'pole of lag compensator is')
+//transfer function of lag compensation is (s+1/t)/(s+1/betaa*t))
+hc=syslin('c', (10*(1+20*s))/(1+200*s))
+disp(hc,'the transfer function of lag compensator is;')
+//open loop transfer function of compensated system is h*hc
+hcmp=syslin('c',h*hc)
+disp(hcmp,'open loop transfer function of compensated system is')
+figure()
+bode(hcmp)
+show_margins(hcmp)
+xtitle("compensated system")
+
+
diff --git a/Working_Examples/3885/CH6/EX6.11/Ex6_11.sci b/Working_Examples/3885/CH6/EX6.11/Ex6_11.sci new file mode 100755 index 0000000..2d6ae51 --- /dev/null +++ b/Working_Examples/3885/CH6/EX6.11/Ex6_11.sci @@ -0,0 +1,26 @@ +//control systems by Nagoor Kani A
+//Edition 3
+//Year of publication 2015
+//Scilab version 6.0.0
+//operating systems windows 10
+// Example 6.11
+
+clc;
+clear;
+s=poly(0,'s')
+//given tranfer function g(s)=10/(s*(1+2*s)*(1+s))
+h=syslin('c',10/(s*(1+2*s)*(1+s)))
+pm=30//given phase margin
+w=6.2//given gain cross over frequency in rad/sec
+//put s=jw in G(s) magnitude of G(jw) gives A1 and angle of G(jw) gives phi1 at w
+A1=2.052
+phi=-207.5//in degrees
+theta=30-(-27.5)//desired pm -pm of uncompensated system
+kd=sind(theta)/w*A1//derivative constant
+kp=cosd(theta)/A1//proportional constant
+disp(kd,kp,'the values of derivative constant and proportional constant are')
+//transfer function of PD controller is (kp+kd*s)
+hc=syslin('c', s*((0.343/s)+0.262))
+disp(hc,'the transfer function of PD controller is')
+hcmp=syslin('c', h*hc)
+disp(hcmp,'the transfer function of compensated system is')
diff --git a/Working_Examples/3885/CH6/EX6.12/Ex6_12.sci b/Working_Examples/3885/CH6/EX6.12/Ex6_12.sci new file mode 100755 index 0000000..b76533c --- /dev/null +++ b/Working_Examples/3885/CH6/EX6.12/Ex6_12.sci @@ -0,0 +1,26 @@ +//control systems by Nagoor Kani A
+//Edition 3
+//Year of publication 2015
+//Scilab version 6.0.0
+//operating systems windows 10
+// Example 6.12
+
+clc;
+clear;
+s=poly(0,'s')
+//given tranfer function g(s)=100/(s+1)*(s+2)*(s+5)
+h=syslin('c',100/(s+1)*(s+2)*(s+5))
+pm=60//given phase margin
+w=0.5//given gain cross over frequency in rad/sec
+//put s=jw in G(s) magnitude of G(jw) gives A1 and angle of G(jw) gives phi1 at w
+A1=8.63
+phi=-46//in degrees
+theta=pm-134//desired pm -pm of uncompensated system
+ki=(-w)*sind(theta)/A1//integral constant
+kp=cosd(theta)/A1//proportional constant
+disp(ki,kp,'the values of integral constant and proportional constant are')
+//transfer function of PI controller is (kp+ki/s)
+hc=syslin('c', 0.056*(1+0.57*s)/s)
+disp(hc,'the transfer function of PD controller is')
+hcmp=syslin('c', h*hc)
+disp(hcmp,'the transfer function of compensated system is')
diff --git a/Working_Examples/3885/CH6/EX6.13/Ex6_13.sci b/Working_Examples/3885/CH6/EX6.13/Ex6_13.sci new file mode 100755 index 0000000..71b989e --- /dev/null +++ b/Working_Examples/3885/CH6/EX6.13/Ex6_13.sci @@ -0,0 +1,31 @@ +//control systems by Nagoor Kani A
+//Edition 3
+//Year of publication 2015
+//Scilab version 6.0.0
+//operating systems windows 10
+// Example 6.13
+
+clc;
+clear;
+s=poly(0,'s')
+//given tranfer function g(s)=100/(s+1)*(s+2)*(s+10)
+h=syslin('c',100/(s+1)*(s+2)*(s+10))
+pm=45//given phase margin
+w=4//given gain cross over frequency in rad/sec
+//put s=jw in G(s) magnitude of G(jw) gives A1 and angle of G(jw) gives phi1 at w
+A1=0.5
+phi=-161//in degrees
+theta=pm-19//desired pm -pm of uncompensated system
+ess=0.1//steady state error for ramp input
+kv=1/ess//velocity errpr constant
+//the transfer function of PID controller is Gc(s)=kp+kd*s+ki/s
+//by definition of velocity error constant applying s=0 in S*Gc(s)*G(s)
+ki=2//integeral constant
+disp(ki,'the value of integral constant')
+kd=((sind(theta)/(w*A1))+(ki/w^2))//derivative constant
+kp=cosd(theta)/A1//proportional constant
+disp(kd,kp,'the values of proportional constant and derivative constant are')
+hc=syslin('c',0.344*(s^2+5.23*s+5.81)/s)
+disp(hc,'the transfer function of PID controller is')
+hcmp=syslin('c',h*hc)
+disp(hcmp,'the transfer function of compensated system is')
diff --git a/Working_Examples/3885/CH6/EX6.14/Ex6_14.sci b/Working_Examples/3885/CH6/EX6.14/Ex6_14.sci new file mode 100755 index 0000000..e1257ac --- /dev/null +++ b/Working_Examples/3885/CH6/EX6.14/Ex6_14.sci @@ -0,0 +1,34 @@ +//control systems by Nagoor Kani A
+//Edition 3
+//Year of publication 2015
+//Scilab version 6.0.0
+//operating systems windows 10
+// Example 6.14
+
+clc;
+clear;
+s=poly(0,'s')
+//dominent pole sd=-zeta*w=%i*w*sqrt(1-zeta^2)
+zeta=0.8//damping ratio
+w=2//natural frequency of osciilation in rad/sec
+sd=(-zeta*w)+((%i*w)*sqrt(1-zeta^2))
+disp(sd,'the dominennt pole is')
+d=abs(sd)
+disp(d,'the value of d is ')
+betaa=phasemag(sd)
+disp(betaa,'the value of betaa is;')
+h=syslin('c',20/s*(s+2)*(s+4))//given tranfer function G(s)
+//find magnitude and phase of G(s) at s=sd
+a=20/(sd*(2+sd)*(4+sd))
+ad=abs(a)
+disp(ad,'the value of ad is')
+phid=phasemag(a)
+disp(phid,'the value of phid is')
+kd=sind(phid)/(d*ad*sind(betaa))//derivative constant
+disp(kd,'the derivative constant is')
+kp=(-sind(betaa+phid))/(ad*sind(betaa))//proportional constant
+disp(kp,'the integral constant is')
+hc=syslin('c', s*((0.243/s)+0.557))//transfer function of PD controller is kpof +kd*s
+disp(hc,'transfer function of PD controller is')
+hcmp=syslin('c',h*hc)//transfer function compensated system
+disp(hcmp,'transfer function compensated system ')
diff --git a/Working_Examples/3885/CH6/EX6.15/Ex6_15.sci b/Working_Examples/3885/CH6/EX6.15/Ex6_15.sci new file mode 100755 index 0000000..1f10885 --- /dev/null +++ b/Working_Examples/3885/CH6/EX6.15/Ex6_15.sci @@ -0,0 +1,34 @@ +//control systems by Nagoor Kani A
+//Edition 3
+//Year of publication 2015
+//Scilab version 6.0.0
+//operating systems windows 10
+// Example 6.15
+
+clc;
+clear;
+s=poly(0,'s')
+//dominent pole sd=-zeta*w=%i*w*sqrt(1-zeta^2)
+zeta=0.9//damping ratio
+w=2.5//natural frequency of osciilation in rad/sec
+sd=(-zeta*w)+((%i*w)*sqrt(1-zeta^2))
+disp(sd,'the dominennt pole is')
+d=abs(sd)
+disp(d,'the value of d is ')
+betaa=phasemag(sd)
+disp(betaa,'the value of betaa is;')
+h=syslin('c',4/(s+1)*(s+5))//given tranfer function G(s)
+//find magnitude and phase of G(s) at s=sd
+a=4/((1+sd)*(5+sd))
+ad=abs(a)
+disp(ad,'the value of ad is')
+phid=phasemag(a)
+disp(phid,'the value of phid is')
+ki=-(d*sind(phid))/(ad*sind(betaa))//integral constant
+disp(ki,'the integral constant is')
+kp=(-sind(betaa+phid))/(ad*sind(betaa))-(2*ki*cosd(betaa))/d //proportional constant
+disp(kp,'the proportional constant is')
+hc=syslin('c', 2.02*(s+1.19)/s)//transfer function of PD controller is kpof +kd*s
+disp(hc,'transfer function of PI controller is')
+hcmp=syslin('c',h*hc)//transfer function compensated system
+disp(hcmp,'transfer function compensated system ')
diff --git a/Working_Examples/3885/CH6/EX6.16/Ex6_16.sci b/Working_Examples/3885/CH6/EX6.16/Ex6_16.sci new file mode 100755 index 0000000..1b0933b --- /dev/null +++ b/Working_Examples/3885/CH6/EX6.16/Ex6_16.sci @@ -0,0 +1,39 @@ +//control systems by Nagoor Kani A
+//Edition 3
+//Year of publication 2015
+//Scilab version 6.0.0
+//operating systems windows 10
+// Example 6.15
+
+clc;
+clear;
+s=poly(0,'s')
+//dominent pole sd=-zeta*w=%i*w*sqrt(1-zeta^2)
+zeta=0.8//damping ratio
+w=2.5//natural frequency of osciilation in rad/sec
+sd=(-zeta*w)+((%i*w)*sqrt(1-zeta^2))
+disp(sd,'the dominennt pole is')
+d=abs(sd)
+disp(d,'the value of d is ')
+betaa=phasemag(sd)
+disp(betaa,'the value of betaa is;')
+h=syslin('c',75/(s+1)*(s+3)*(s+8))//given tranfer function G(s)
+//find magnitude and phase of G(s) at s=sd
+a=75/((1+sd)*(3+sd)*(8+sd))
+ad=abs(a)
+disp(ad,'the value of ad is')
+phid=phasemag(a)
+disp(phid,'the value of phid is')
+ess=0.08//steady state error
+kv=1/ess//velocity error constant
+//the transfer function of PID controller is Gc(s)=kp+kd*s+ki/s
+//by definition of velocity error constant applying s=0 in S*Gc(s)*G(s)
+ki=12.5/3.125//integeral constant
+kd=sind(phid)/(d*ad*sind(betaa))+(ki/(d^2)) //derivative constant
+disp(kd,'the derivative constant is')
+kp=(-sind(betaa+phid))/(ad*sind(betaa))-(2*ki*cosd(betaa))/d //proportional constant
+disp(kp,'the proportional constant is')
+hc=syslin('c', 0.68*(s^2+4.26*s+5.88)/s)//transfer function of PID controller is kpof +kd*s
+disp(hc,'transfer function of PI controller is')
+hcmp=syslin('c',h*hc)//transfer function compensated system
+disp(hcmp,'transfer function compensated system ')
diff --git a/Working_Examples/3885/CH6/EX6.2/Ex6_2.sce b/Working_Examples/3885/CH6/EX6.2/Ex6_2.sce new file mode 100755 index 0000000..a413259 --- /dev/null +++ b/Working_Examples/3885/CH6/EX6.2/Ex6_2.sce @@ -0,0 +1,45 @@ +//control systems by Nagoor Kani A
+//Edition 3
+//Year of publication 2015
+//Scilab version 6.0.0
+//operating systems windows 10
+// Example 6.2
+
+clc;
+clear;
+s=poly(0,'s')
+//calculation of gain K
+kv=30//velocity error constant is 30sec^-1
+// open loop transfer function G(s)=K/s*(s+4)*(s+80)
+//by definition of velocity error constant applying limit s=0 in G(s)
+disp('the value of K is 9600;')
+h=syslin('c',9600/(s*(s+4)*(s+80)))
+bode(h)
+show_margins(h)
+xtitle("uncompensated system")
+//from the plot the phase margin of uncompensated system is 12
+//but the system requires phase margin of 33 so lag compensation required
+pm=38//choose PM of compensated system is 38 degree
+phigcn=38-180// phase of G(s) at new gain cross over frequency
+wgcn=4.7//the frequency corrosponding to phase of -142 is 4.7 rad/sec
+agcn=16//db magnitude at wgcn
+//20log betaa=16
+betaa=10^(agcn/20)
+disp(betaa,'the value for betaa is')
+zc=wgcn/10//zero of lag compensator
+t=10/wgcn
+disp(t,'the value for t is')
+pc=1/(betaa*t)
+disp(pc,'pole of lag compensator is')
+//transfer function of lag compensation is (s+1/t)/(s+1/betaa*t))
+hc=syslin('c', (6.3*(1+2.13*s))/(1+13.419*s))
+disp(hc,'the transfer function of lag compensator is;')
+//open loop transfer function of compensated system is h*hc
+hcmp=syslin('c',h*hc)
+disp(hcmp,'open loop transfer function of compensated system is')
+figure()
+bode(hcmp)
+show_margins(hcmp)
+xtitle("compensated system")
+
+
diff --git a/Working_Examples/3885/CH6/EX6.3/Ex6_3.sci b/Working_Examples/3885/CH6/EX6.3/Ex6_3.sci new file mode 100755 index 0000000..331501d --- /dev/null +++ b/Working_Examples/3885/CH6/EX6.3/Ex6_3.sci @@ -0,0 +1,45 @@ +//control systems by Nagoor Kani A
+//Edition 3
+//Year of publication 2015
+//Scilab version 6.0.0
+//operating systems windows 10
+// Example 6.3
+
+clc;
+clear;
+s=poly(0,'s')
+K=20//the value of K
+h=syslin('c',20/(s*(s+2)*(s+8)))
+evans(h)
+xtitle("uncompensated system")
+//given ramp input ess(steady state error ) is0.125
+ess=0.125
+kvd=1/ess//desired velocity error constant
+// transfer function of un compessated system G(s)=20/s*(s+2)*(s+8)
+//by definition of velocity error constant applying limit s=0 in G(s)
+kvu=1.25
+disp(kvu,'The velocity error constant of un compensated system is')
+disp(kvd,'desired velocity error constant')
+A=kvd/kvu//A is the factor by which velocity error constant increases
+betaa=A*1.2
+disp(betaa,'the value of betaa is')
+zc=0.1*(-2)//zero of lag compensator=0.1* second pole
+t=(-1/zc)
+disp(t,'the value for t is')
+pc=(-1)/(betaa*t)//pole of lag compensator
+//transfer function of lag compensation is (s+1/t)/(s+1/betaa*t))
+hc=syslin('c',(s+0.2*s)/(s+0.026*s))
+disp(hc,'transfer function of lag compensation is')
+//open loop transfer function of compensated system is h*hc
+hcmp=syslin('c', h*hc)
+disp(hcmp,'open loop transfer function of compensated system is')
+figure()
+evans(hcmp)
+xtitle("compensated system")
+//by definition of velocity error constant applying limit s=0 in hcmp
+kvc=9.165//velocity error constant of compensated system
+essc=1/kvc//steady state error for compensated system
+disp(essc,'steady state error for compensated system')
+disp('since the steady state error of compensated system is less than 0.125 the design is acceptable')
+
+
diff --git a/Working_Examples/3885/CH6/EX6.4/Ex6_4.sci b/Working_Examples/3885/CH6/EX6.4/Ex6_4.sci new file mode 100755 index 0000000..c67536b --- /dev/null +++ b/Working_Examples/3885/CH6/EX6.4/Ex6_4.sci @@ -0,0 +1,39 @@ +//control systems by Nagoor Kani A
+//Edition 3
+//Year of publication 2015
+//Scilab version 6.0.0
+//operating systems windows 10
+// Example 6.4
+
+clc;
+clear;
+s=poly(0,'s')
+K=240//the value of K
+h=syslin('c',240/(s*(s+10)^2))
+evans(h)
+xtitle("uncompensated system")
+kvd=20//given desired velocity error constant
+// transfer function of un compessated system G(s)=20/s*(s+2)*(s+8)
+//by definition of velocity error constant applying limit s=0 in G(s)
+kvu=2.4
+disp(kvu,'The velocity error constant of un compensated system is')
+disp(kvd,'desired velocity error constant')
+A=kvd/kvu//A is the factor by which velocity error constant increases
+betaa=A*1.2
+disp(betaa,'the value of betaa is')
+zc=0.1*(-10)//zero of lag compensator=0.1* second pole
+t=(-1/zc)
+disp(t,'the value for t is')
+pc=(-1)/(betaa*t)//pole of lag compensator
+//transfer function of lag compensation is (s+1/t)/(s+1/betaa*t))
+hc=syslin('c',(s+1)/(s+0.1))
+disp(hc,'transfer function of lag compensation is')
+//open loop transfer function of compensated system is h*hc
+hcmp=syslin('c', h*hc)
+disp(hcmp,'open loop transfer function of compensated system is')
+figure()
+evans(hcmp)
+xtitle("compensated system")
+//by definition of velocity error constant applying limit s=0 in hcmp
+kvc=24//velocity error constant of compensated system
+disp('since the velocity error constant of compensated system is greater than specified value the design is acceptable')
diff --git a/Working_Examples/3885/CH6/EX6.5/Ex6_5.sci b/Working_Examples/3885/CH6/EX6.5/Ex6_5.sci new file mode 100755 index 0000000..caff6d6 --- /dev/null +++ b/Working_Examples/3885/CH6/EX6.5/Ex6_5.sci @@ -0,0 +1,41 @@ +//control systems by Nagoor Kani A
+//Edition 3
+//Year of publication 2015
+//Scilab version 6.0.0
+//operating systems windows 10
+// Example 6.5
+
+clc;
+clear;
+s=poly(0,'s')
+//calculation of gain K
+//given for ramp input ess(steady state error ) is 1/15
+ess=1/15
+kv=1/ess
+// open loop transfer function G(s)=K/s*(s+1)
+//by definition of velocity error constant applying limit s=0 in G(s)
+disp('the value of K is 15;')
+h=syslin('c',15/(s*(s+1)))
+bode(h)
+show_margins(h)
+xtitle("uncompensated system")
+//from the plot the phase margin of uncompensated system is 13
+//but the system requires phase margin of 45 so lead compensation required
+pm=45//choose PM of compensated system is 45 degree
+phim=37//maximum lead angle
+alpha=(1-(sind(phim)))/(1+(sind(phim)))
+disp(alpha,'the vale of alpha is')
+wmdb=-20*log(1/sqrt(alpha))////db magnitude
+wm=5.6//from the bode plot of uncompensated system the frequency wm corrosponding to db gain of -6db is 5.6rad/sec
+t=1/(wm*sqrt(alpha))
+disp(t,'the value of t is')
+//transfer function of lead compensator is (s+1/t)/(s+1/alpha*t)
+hc=syslin('c',(0.25*(1+0.36*s))/(1+0.09*s))
+disp(hc,' transfer function of lead compensator is')
+//open loop transfer function of compensated system is h*hc
+hcmp=syslin('c',h*hc)
+disp(hcmp,'open loop transfer function of compensated system is ')
+figure()
+bode(hcmp)
+show_margins(hcmp)
+xtitle("compensated system")
diff --git a/Working_Examples/3885/CH6/EX6.6/Ex6_6.sci b/Working_Examples/3885/CH6/EX6.6/Ex6_6.sci new file mode 100755 index 0000000..40a0f47 --- /dev/null +++ b/Working_Examples/3885/CH6/EX6.6/Ex6_6.sci @@ -0,0 +1,40 @@ +//control systems by Nagoor Kani A
+//Edition 3
+//Year of publication 2015
+//Scilab version 6.0.0
+//operating systems windows 10
+// Example 6.6
+
+clc;
+clear;
+s=poly(0,'s')
+//calculation of gain K
+kv=50//given velocity error constant
+// open loop transfer function G(s)=K/s*(s+1)(s+5)
+//by definition of velocity error constant applying limit s=0 in G(s)
+disp('the value of K is 250;')
+h=syslin('c',250/(s*(s+1)*(s+5)))
+bode(h)
+show_margins(h)
+xtitle("uncompensated system")
+//from the plot the phase margin of uncompensated system is -44
+//but the system requires phase margin of 20 so lead compensation required
+pm=20//choose PM of compensated system is 20 degree
+//since the lead angle required is greater than 60 we have to realise lead compensator as cascade of two compensators with each compensator providing half of required phase
+phim=69/2//maximum lead angle
+alpha=(1-sind(phim))/(1+sind(phim))
+disp(alpha,'the vale of alpha is')
+wmdb=-20*log(1/sqrt(alpha))////db magnitude
+wm=7.8//from the bode plot of uncompensated system the frequency wm corrosponding to db gain of -6db is 5.6rad/sec
+t=1/(wm*sqrt(alpha))
+disp(t,'the value of t is')
+//transfer function of lead compensator is (s+1/t)/(s+1/alpha*t)
+hc=syslin('c',(0.0784*(1+0.024*s)^2)/(1+0.067*s)^2)
+disp(hc,' transfer function of lead compensator is')
+//open loop transfer function of compensated system is h*hc
+hcmp=syslin('c',h*hc)
+disp(hcmp,'open loop transfer function of compensated system is ')
+figure()
+bode(hcmp)
+show_margins(hcmp)
+xtitle("compensated system")
diff --git a/Working_Examples/3885/CH6/EX6.9/Ex6_9.sci b/Working_Examples/3885/CH6/EX6.9/Ex6_9.sci new file mode 100755 index 0000000..b4e38f2 --- /dev/null +++ b/Working_Examples/3885/CH6/EX6.9/Ex6_9.sci @@ -0,0 +1,54 @@ +//control systems by Nagoor Kani A
+//Edition 3
+//Year of publication 2015
+//Scilab version 6.0.0
+//operating systems windows 10
+// Example 6.9
+
+clc;
+clear;
+s=poly(0,'s')
+//calculation of gain K
+kv=80//given velocity error constant
+// open loop transfer function G(s)=K/s*(s+3)(s+6)
+//by definition of velocity error constant applying limit s=0 in G(s)
+disp('the value of K is 1440;')
+h=syslin('c',1440/(s*(s+3)*(s+6)))
+bode(h)
+show_margins(h)
+xtitle("uncompensated system")
+//from the plot the phase margin of uncompensated system is -46
+pm=40//choose PM of compensated system is 40 degree
+phigcn=40-180// phase of G(s) at new gain cross over frequency
+wgcn=1.8//the frequency corrosponding to phase of -140 is 1.8 rad/sec
+wgcl=4//choose gain cross over frequency of lag compensator as 4rad/sec
+agcl=23//db magnitude at egcl is 23db
+//agcl=20log*betaa
+betaa=10^(agcl/20)
+disp(betaa,'the value of betaa is')
+zc1=wgcl/10//zero of lag compensator
+t1=10/wgcl
+disp(t1,'the value of t1 is ')
+pc1=1/(betaa*t1)
+disp(pc1,'pole of lag compensator is')
+//transfer function of lag section is (betaa*1+st1)/(1+s*betaa*t1)
+hc1=syslin('c',(14*(1+2.5*s))/(1+35*s))
+disp(hc1,'transfer function of lag section')
+alpha=1/betaa
+disp(alpha,'the value of alpha is')
+wmdb=-20*log(1/sqrt(alpha))////db magnitude
+wm=17//from the bode plot of uncompensated system the frequency wm corrosponding to db gain of -12db is 17rad/sec
+t2=1/(wm*sqrt(alpha))
+//transfer function of lead section is (alpha*1+st2)/(1+s*alpha*t2)
+hc2=syslin('c',(0.07*(1+0.22*s))/(1+0.0154*s))
+disp(hc2,'transfer function of lead section')
+hc3=syslin('c',hc1*hc2)
+disp(hc3,'the tansfer function of lag lead compensation system is')
+//open loop transfer function of compensated system is h*hc3
+hcmp=syslin('c',h*hc3)
+disp(hcmp,'the overll transfer function of compensated system')
+figure()
+bode(hcmp)
+show_margins(hcmp)
+xtitle("compensated system")
+
diff --git a/Working_Examples/3885/CH7/EX7.10/Ex7_10.sci b/Working_Examples/3885/CH7/EX7.10/Ex7_10.sci new file mode 100755 index 0000000..f4ed6fb --- /dev/null +++ b/Working_Examples/3885/CH7/EX7.10/Ex7_10.sci @@ -0,0 +1,14 @@ +//control systems by Nagoor Kani A
+//Edition 3
+//Year of publication 2015
+//Scilab version 6.0.0
+//operating systems windows 10
+// Example 7.10
+
+clc;
+clear;
+s=%s
+p=poly([10],'s','coeff')
+q=poly([1 2 4 1],'s','coeff')
+sm=cont_frm(p,q)
+disp(sm,'the state model in matrix form is')
diff --git a/Working_Examples/3885/CH7/EX7.10/Ex7_10.xcos b/Working_Examples/3885/CH7/EX7.10/Ex7_10.xcos new file mode 100755 index 0000000..420a28d --- /dev/null +++ b/Working_Examples/3885/CH7/EX7.10/Ex7_10.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" finalIntegrationTime="30.0" title="Ex7_10"><!--Xcos - 1.0 - scilab-5.5.2 - 20160406 2040--><mxGraphModel as="model"><root><mxCell id="0:1:0"/><mxCell id="0:2:0" parent="0:1:0"/><BasicBlock id="-3088270e:166584c7420:-7f30" interfaceFunctionName="STEP_FUNCTION" ordering="1" parent="0:2:0" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="STEP_FUNCTION"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList" varName=""><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="1.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="3" width="1"><data column="0" line="0" value="5"/><data column="0" line="1" value="0"/><data column="0" line="2" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"STEP",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="STEP"/></ScilabString></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="step_func"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-3088270e:166584c7420:-7f2b"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="STEP"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-3088270e:166584c7420:-7f2b"/></ScilabString></Array></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="180.0"/><data column="1" line="0" realPart="-130.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"OUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="OUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-2.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-3088270e:166584c7420:-7f27"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="OUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-3088270e:166584c7420:-7f27"/></ScilabString></Array></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="84.0"/><data column="0" line="1" realPart="196.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-20.0"/><data column="0" line="1" realPart="-120.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="6" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="220.0"/><data column="0" line="2" realPart="180.0"/><data column="0" line="3" realPart="180.0"/><data column="0" line="4" realPart="220.0"/><data column="0" line="5" realPart="60.0"/></ScilabDouble><ScilabDouble height="6" width="1"><data column="0" line="0" realPart="-44.0"/><data column="0" line="1" realPart="-260.0"/><data column="0" line="2" realPart="-260.0"/><data column="0" line="3" realPart="-180.0"/><data column="0" line="4" realPart="-180.0"/><data column="0" line="5" realPart="4.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="70.0" y="110.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-3088270e:166584c7420:-7f22" ordering="1" parent="-3088270e:166584c7420:-7f30" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><BasicBlock dependsOnT="1" id="-3088270e:166584c7420:-7f11" interfaceFunctionName="CLSS" ordering="2" parent="0:2:0" simulationFunctionName="csslti4" simulationFunctionType="C_OR_FORTRAN" style="CLSS"><ScilabString as="exprs" height="5" width="1"><data column="0" line="0" value="[0 1 0;0 0 1;-1 -2 -4]"/><data column="0" line="1" value="[0;0;10]"/><data column="0" line="2" value="[1 0 0]"/><data column="0" line="3" value="0"/><data column="0" line="4" value="[0 0 1]"/></ScilabString><ScilabDouble as="realParameters" height="16" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="0.0"/><data column="0" line="2" realPart="-1.0"/><data column="0" line="3" realPart="1.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="-2.0"/><data column="0" line="6" realPart="0.0"/><data column="0" line="7" realPart="1.0"/><data column="0" line="8" realPart="-4.0"/><data column="0" line="9" realPart="0.0"/><data column="0" line="10" realPart="0.0"/><data column="0" line="11" realPart="10.0"/><data column="0" line="12" realPart="1.0"/><data column="0" line="13" realPart="0.0"/><data column="0" line="14" realPart="0.0"/><data column="0" line="15" realPart="0.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="state" height="3" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="0.0"/><data column="0" line="2" realPart="1.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="80.0" x="180.0" y="110.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-3088270e:166584c7420:-7f0d" ordering="1" parent="-3088270e:166584c7420:-7f11" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-3088270e:166584c7420:-7f0c" ordering="1" parent="-3088270e:166584c7420:-7f11" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="80.0" y="16.0"/></ExplicitOutputPort><ExplicitLink id="-3088270e:166584c7420:-7f08" parent="0:2:0" source="-3088270e:166584c7420:-7f22" target="-3088270e:166584c7420:-7f0d"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="110.0" y="130.0"/><mxPoint as="targetPoint" x="170.0" y="130.0"/></mxGeometry></ExplicitLink><BasicBlock dependsOnU="1" id="-3088270e:166584c7420:-7ef6" interfaceFunctionName="CSCOPE" ordering="3" parent="0:2:0" simulationFunctionName="cscope" simulationFunctionType="C_OR_FORTRAN" style="CSCOPE"><ScilabString as="exprs" height="10" width="1"><data column="0" line="0" value="1 3 5 7 9 11 13 15"/><data column="0" line="1" value="-1"/><data column="0" line="2" value="[]"/><data column="0" line="3" value="[600;400]"/><data column="0" line="4" value="-15"/><data column="0" line="5" value="15"/><data column="0" line="6" value="30"/><data column="0" line="7" value="20"/><data column="0" line="8" value="0"/><data column="0" line="9" value=""/></ScilabString><ScilabDouble as="realParameters" height="4" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="-15.0"/><data column="0" line="2" realPart="15.0"/><data column="0" line="3" realPart="30.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="15" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="1.0"/><data column="0" line="4" realPart="3.0"/><data column="0" line="5" realPart="5.0"/><data column="0" line="6" realPart="7.0"/><data column="0" line="7" realPart="9.0"/><data column="0" line="8" realPart="11.0"/><data column="0" line="9" realPart="13.0"/><data column="0" line="10" realPart="15.0"/><data column="0" line="11" realPart="-1.0"/><data column="0" line="12" realPart="-1.0"/><data column="0" line="13" realPart="600.0"/><data column="0" line="14" realPart="400.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="340.0" y="110.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="-3088270e:166584c7420:-7ef5" ordering="1" parent="-3088270e:166584c7420:-7ef6" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ControlPort dataType="UNKNOW_TYPE" id="-3088270e:166584c7420:-7ef4" ordering="1" parent="-3088270e:166584c7420:-7ef6" style="ControlPort;align=center;verticalAlign=top;spacing=10.0;rotation=90"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><ExplicitLink id="-3088270e:166584c7420:-7ef3" parent="0:2:0" source="-3088270e:166584c7420:-7f0c" target="-3088270e:166584c7420:-7ef5"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="260.0" y="130.0"/><mxPoint as="targetPoint" x="340.0" y="130.0"/></mxGeometry></ExplicitLink><BasicBlock blockType="h" id="-3088270e:166584c7420:-7eee" interfaceFunctionName="CLOCK_c" ordering="4" parent="0:2:0" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList" varName=""><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="1.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="119.0"/><data column="1" line="0" realPart="-150.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-3088270e:166584c7420:-7edf"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-3088270e:166584c7420:-7edf"/></ScilabString></Array></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.1"/><data column="0" line="1" value="0.1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.1"/><data column="0" line="1" realPart="0.1"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.1"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-3088270e:166584c7420:-7edd"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-3088270e:166584c7420:-7edd"/></ScilabString></Array></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="123.3773266666667"/><data column="1" line="0" realPart="-169.33333333333331"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="7.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="5.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-3088270e:166584c7420:-7eda"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-3088270e:166584c7420:-7eda"/></ScilabString></Array></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="100.0"/><data column="0" line="2" realPart="133.8773266666667"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-44.0"/><data column="0" line="1" realPart="-180.0"/><data column="0" line="2" realPart="-158.33333333333331"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="132.71066000000005"/><data column="0" line="1" realPart="149.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-173.33333333333331"/><data column="0" line="1" realPart="-126.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="135.04399333333336"/><data column="0" line="1" realPart="140.70999999999998"/><data column="0" line="2" realPart="100.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-173.33333333333331"/><data column="0" line="1" realPart="-50.0"/><data column="0" line="2" realPart="-50.0"/><data column="0" line="3" realPart="4.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="340.0" y="30.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="-3088270e:166584c7420:-7eed" ordering="1" parent="-3088270e:166584c7420:-7eee" style="CommandPort;align=center;verticalAlign=bottom;spacing=10.0;rotation=90"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><CommandControlLink id="-3088270e:166584c7420:-7eec" parent="0:2:0" source="-3088270e:166584c7420:-7eed" target="-3088270e:166584c7420:-7ef4"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="360.0" y="70.0"/><mxPoint as="targetPoint" x="360.0" y="110.0"/></mxGeometry></CommandControlLink></root></mxGraphModel><mxCell as="defaultParent" id="0:2:0" parent="0:1:0"/></XcosDiagram>
\ No newline at end of file diff --git a/Working_Examples/3885/CH7/EX7.11/Ex7_11.sci b/Working_Examples/3885/CH7/EX7.11/Ex7_11.sci new file mode 100755 index 0000000..0ff5845 --- /dev/null +++ b/Working_Examples/3885/CH7/EX7.11/Ex7_11.sci @@ -0,0 +1,14 @@ +//control systems by Nagoor Kani A
+//Edition 3
+//Year of publication 2015
+//Scilab version 6.0.0
+//operating systems windows 10
+// Example 7.11
+
+clc;
+clear;
+s=%s
+p=poly([40 10],'s','coeff')
+q=poly([0 3 4 1],'s','coeff')
+sm=cont_frm(p,q)
+disp(sm,'the state model in matrix form is')
diff --git a/Working_Examples/3885/CH7/EX7.11/Ex7_11.xcos b/Working_Examples/3885/CH7/EX7.11/Ex7_11.xcos new file mode 100755 index 0000000..1e3b0f8 --- /dev/null +++ b/Working_Examples/3885/CH7/EX7.11/Ex7_11.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" finalIntegrationTime="30.0" title="Ex7_11"><!--Xcos - 1.0 - scilab-5.5.2 - 20160406 2040--><mxGraphModel as="model"><root><mxCell id="0:1:0"/><mxCell id="0:2:0" parent="0:1:0"/><BasicBlock id="444cf09b:167c0310107:-7fa8" interfaceFunctionName="STEP_FUNCTION" ordering="1" parent="0:2:0" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="STEP_FUNCTION"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList" varName=""><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="1.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="3" width="1"><data column="0" line="0" value="1"/><data column="0" line="1" value="0"/><data column="0" line="2" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"STEP",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="STEP"/></ScilabString></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="step_func"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="444cf09b:167c0310107:-7f7a"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="STEP"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="444cf09b:167c0310107:-7f7a"/></ScilabString></Array></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="340.0"/><data column="1" line="0" realPart="-290.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"OUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="OUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-2.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="444cf09b:167c0310107:-7f76"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="OUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="444cf09b:167c0310107:-7f76"/></ScilabString></Array></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="84.0"/><data column="0" line="1" realPart="356.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-20.0"/><data column="0" line="1" realPart="-280.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="6" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="540.0"/><data column="0" line="2" realPart="500.0"/><data column="0" line="3" realPart="500.0"/><data column="0" line="4" realPart="540.0"/><data column="0" line="5" realPart="60.0"/></ScilabDouble><ScilabDouble height="6" width="1"><data column="0" line="0" realPart="-44.0"/><data column="0" line="1" realPart="-580.0"/><data column="0" line="2" realPart="-580.0"/><data column="0" line="3" realPart="-500.0"/><data column="0" line="4" realPart="-500.0"/><data column="0" line="5" realPart="4.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="90.0" y="190.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="444cf09b:167c0310107:-7fa7" ordering="1" parent="444cf09b:167c0310107:-7fa8" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><BasicBlock dependsOnT="1" id="444cf09b:167c0310107:-7fa0" interfaceFunctionName="CLSS" ordering="2" parent="0:2:0" simulationFunctionName="csslti4" simulationFunctionType="C_OR_FORTRAN" style="CLSS"><ScilabString as="exprs" height="5" width="1"><data column="0" line="0" value="[-4 1 0;-3 0 1;0 0 0]"/><data column="0" line="1" value="[0 ; 10; 40]"/><data column="0" line="2" value="[1 0 0]"/><data column="0" line="3" value="0"/><data column="0" line="4" value="[ 0;0;1 ]"/></ScilabString><ScilabDouble as="realParameters" height="16" width="1"><data column="0" line="0" realPart="-4.0"/><data column="0" line="1" realPart="-3.0"/><data column="0" line="2" realPart="0.0"/><data column="0" line="3" realPart="1.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/><data column="0" line="7" realPart="1.0"/><data column="0" line="8" realPart="0.0"/><data column="0" line="9" realPart="0.0"/><data column="0" line="10" realPart="10.0"/><data column="0" line="11" realPart="40.0"/><data column="0" line="12" realPart="1.0"/><data column="0" line="13" realPart="0.0"/><data column="0" line="14" realPart="0.0"/><data column="0" line="15" realPart="0.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="state" height="3" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="0.0"/><data column="0" line="2" realPart="1.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="80.0" x="190.0" y="190.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="444cf09b:167c0310107:-7f86" ordering="1" parent="444cf09b:167c0310107:-7fa0" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="444cf09b:167c0310107:-7f85" ordering="1" parent="444cf09b:167c0310107:-7fa0" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="80.0" y="16.0"/></ExplicitOutputPort><BasicBlock dependsOnU="1" id="444cf09b:167c0310107:-7f97" interfaceFunctionName="CSCOPE" ordering="3" parent="0:2:0" simulationFunctionName="cscope" simulationFunctionType="C_OR_FORTRAN" style="CSCOPE"><ScilabString as="exprs" height="10" width="1"><data column="0" line="0" value="1 3 5 7 9 11 13 15"/><data column="0" line="1" value="-1"/><data column="0" line="2" value="[]"/><data column="0" line="3" value="[600;400]"/><data column="0" line="4" value="0"/><data column="0" line="5" value="500"/><data column="0" line="6" value="30"/><data column="0" line="7" value="20"/><data column="0" line="8" value="0"/><data column="0" line="9" value=""/></ScilabString><ScilabDouble as="realParameters" height="4" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="0.0"/><data column="0" line="2" realPart="500.0"/><data column="0" line="3" realPart="30.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="15" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="1.0"/><data column="0" line="4" realPart="3.0"/><data column="0" line="5" realPart="5.0"/><data column="0" line="6" realPart="7.0"/><data column="0" line="7" realPart="9.0"/><data column="0" line="8" realPart="11.0"/><data column="0" line="9" realPart="13.0"/><data column="0" line="10" realPart="15.0"/><data column="0" line="11" realPart="-1.0"/><data column="0" line="12" realPart="-1.0"/><data column="0" line="13" realPart="600.0"/><data column="0" line="14" realPart="400.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="330.0" y="190.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="444cf09b:167c0310107:-7e7c" ordering="1" parent="444cf09b:167c0310107:-7f97" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ControlPort dataType="UNKNOW_TYPE" id="444cf09b:167c0310107:-7e7b" ordering="1" parent="444cf09b:167c0310107:-7f97" style="ControlPort;align=center;verticalAlign=top;spacing=10.0;rotation=90"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><BasicBlock blockType="h" id="444cf09b:167c0310107:-7f90" interfaceFunctionName="CLOCK_c" ordering="4" parent="0:2:0" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList" varName=""><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="1.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="319.0"/><data column="1" line="0" realPart="-350.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="444cf09b:167c0310107:-7f70"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="444cf09b:167c0310107:-7f70"/></ScilabString></Array></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.1"/><data column="0" line="1" value="0.1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.1"/><data column="0" line="1" realPart="0.1"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.1"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="444cf09b:167c0310107:-7f6e"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="444cf09b:167c0310107:-7f6e"/></ScilabString></Array></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="453.3773266666667"/><data column="1" line="0" realPart="-499.3333333333333"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="7.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="5.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="444cf09b:167c0310107:-7f6b"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="444cf09b:167c0310107:-7f6b"/></ScilabString></Array></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="500.0"/><data column="0" line="2" realPart="463.8773266666667"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-44.0"/><data column="0" line="1" realPart="-580.0"/><data column="0" line="2" realPart="-488.3333333333333"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="462.71066"/><data column="0" line="1" realPart="349.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-503.3333333333333"/><data column="0" line="1" realPart="-326.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="465.0439933333334"/><data column="0" line="1" realPart="540.71"/><data column="0" line="2" realPart="500.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-503.3333333333333"/><data column="0" line="1" realPart="-450.0"/><data column="0" line="2" realPart="-450.0"/><data column="0" line="3" realPart="4.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="330.0" y="110.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="444cf09b:167c0310107:-7f8f" ordering="1" parent="444cf09b:167c0310107:-7f90" style="CommandPort;align=center;verticalAlign=bottom;spacing=10.0;rotation=90"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><CommandControlLink id="444cf09b:167c0310107:-7f8e" parent="0:2:0" source="444cf09b:167c0310107:-7f8f" target="444cf09b:167c0310107:-7e7b"><mxGeometry as="geometry" y="-10.0"><mxPoint as="sourcePoint" x="350.0" y="190.0"/><mxPoint as="targetPoint" x="350.0" y="150.0"/></mxGeometry></CommandControlLink><ExplicitLink id="444cf09b:167c0310107:-7f82" parent="0:2:0" source="444cf09b:167c0310107:-7fa7" target="444cf09b:167c0310107:-7f86"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="130.0" y="210.0"/><mxPoint as="targetPoint" x="190.0" y="210.0"/></mxGeometry></ExplicitLink><ExplicitLink id="444cf09b:167c0310107:-7f81" parent="0:2:0" source="444cf09b:167c0310107:-7f85" target="444cf09b:167c0310107:-7e7c"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="270.0" y="210.0"/><mxPoint as="targetPoint" x="330.0" y="220.0"/></mxGeometry></ExplicitLink></root></mxGraphModel><mxCell as="defaultParent" id="0:2:0" parent="0:1:0"/></XcosDiagram>
\ No newline at end of file diff --git a/Working_Examples/3885/CH7/EX7.12/Ex7_12.sci b/Working_Examples/3885/CH7/EX7.12/Ex7_12.sci new file mode 100755 index 0000000..11e0d08 --- /dev/null +++ b/Working_Examples/3885/CH7/EX7.12/Ex7_12.sci @@ -0,0 +1,16 @@ +//control systems by Nagoor Kani A
+//Edition 3
+//Year of publication 2015
+//Scilab version 6.0.0
+//operating systems windows 10
+// Example 7.12
+
+clc;
+clear;
+s=%s
+h=syslin('c',(2*(s+5))/((s+2)*(s+3)*(s+4)))
+disp(h,'thr transfer function is')
+ss=tf2ss(h)
+disp(ss,'the state space model is')
+[Ac,Bc,U,ind]=canon(ss(2),ss(3))
+disp(Ac,Bc,U,ind)
diff --git a/Working_Examples/3885/CH7/EX7.12/Ex7_12.xcos b/Working_Examples/3885/CH7/EX7.12/Ex7_12.xcos new file mode 100755 index 0000000..0b19775 --- /dev/null +++ b/Working_Examples/3885/CH7/EX7.12/Ex7_12.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" finalIntegrationTime="30.0" title="Ex7_12"><!--Xcos - 1.0 - scilab-5.5.2 - 20160406 2040--><mxGraphModel as="model"><root><mxCell id="0:1:0"/><mxCell id="0:2:0" parent="0:1:0"/><BasicBlock dependsOnT="1" id="73e2fecc:16667084192:-7b32" interfaceFunctionName="CLSS" ordering="1" parent="0:2:0" simulationFunctionName="csslti4" simulationFunctionType="C_OR_FORTRAN" style="CLSS"><ScilabString as="exprs" height="5" width="1"><data column="0" line="0" value="[-2 0 0;0 -3 0;0 0 -4]"/><data column="0" line="1" value="[1;1;1]"/><data column="0" line="2" value="[3 -4 1]"/><data column="0" line="3" value="0"/><data column="0" line="4" value="[0; 0; 1]"/></ScilabString><ScilabDouble as="realParameters" height="16" width="1"><data column="0" line="0" realPart="-2.0"/><data column="0" line="1" realPart="0.0"/><data column="0" line="2" realPart="0.0"/><data column="0" line="3" realPart="0.0"/><data column="0" line="4" realPart="-3.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/><data column="0" line="7" realPart="0.0"/><data column="0" line="8" realPart="-4.0"/><data column="0" line="9" realPart="1.0"/><data column="0" line="10" realPart="1.0"/><data column="0" line="11" realPart="1.0"/><data column="0" line="12" realPart="3.0"/><data column="0" line="13" realPart="-4.0"/><data column="0" line="14" realPart="1.0"/><data column="0" line="15" realPart="0.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="state" height="3" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="0.0"/><data column="0" line="2" realPart="1.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="80.0" x="200.0" y="140.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="73e2fecc:16667084192:-7aff" ordering="1" parent="73e2fecc:16667084192:-7b32" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="73e2fecc:16667084192:-7afe" ordering="1" parent="73e2fecc:16667084192:-7b32" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="80.0" y="16.0"/></ExplicitOutputPort><BasicBlock id="73e2fecc:16667084192:-7b28" interfaceFunctionName="STEP_FUNCTION" ordering="2" parent="0:2:0" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="STEP_FUNCTION"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList" varName=""><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="1.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="3" width="1"><data column="0" line="0" value="1"/><data column="0" line="1" value="0"/><data column="0" line="2" value="50"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"STEP",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="STEP"/></ScilabString></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="step_func"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="50.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="73e2fecc:16667084192:-7af8"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="STEP"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="73e2fecc:16667084192:-7af8"/></ScilabString></Array></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="160.0"/><data column="1" line="0" realPart="-110.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"OUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="OUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-2.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="73e2fecc:16667084192:-7af4"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="OUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="73e2fecc:16667084192:-7af4"/></ScilabString></Array></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="84.0"/><data column="0" line="1" realPart="176.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-20.0"/><data column="0" line="1" realPart="-100.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="6" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="180.0"/><data column="0" line="2" realPart="140.0"/><data column="0" line="3" realPart="140.0"/><data column="0" line="4" realPart="180.0"/><data column="0" line="5" realPart="60.0"/></ScilabDouble><ScilabDouble height="6" width="1"><data column="0" line="0" realPart="-44.0"/><data column="0" line="1" realPart="-220.0"/><data column="0" line="2" realPart="-220.0"/><data column="0" line="3" realPart="-140.0"/><data column="0" line="4" realPart="-140.0"/><data column="0" line="5" realPart="4.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="90.0" y="140.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="73e2fecc:16667084192:-7aef" ordering="1" parent="73e2fecc:16667084192:-7b28" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><BasicBlock blockType="h" id="73e2fecc:16667084192:-7b22" interfaceFunctionName="CLOCK_c" ordering="3" parent="0:2:0" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList" varName=""><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="1.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="119.0"/><data column="1" line="0" realPart="-150.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="73e2fecc:16667084192:-7ad8"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="73e2fecc:16667084192:-7ad8"/></ScilabString></Array></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.1"/><data column="0" line="1" value="0.1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.1"/><data column="0" line="1" realPart="0.1"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.1"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="73e2fecc:16667084192:-7ad6"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="73e2fecc:16667084192:-7ad6"/></ScilabString></Array></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="123.3773266666667"/><data column="1" line="0" realPart="-169.33333333333331"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="7.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="5.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="73e2fecc:16667084192:-7ad3"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="73e2fecc:16667084192:-7ad3"/></ScilabString></Array></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="100.0"/><data column="0" line="2" realPart="133.8773266666667"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-44.0"/><data column="0" line="1" realPart="-180.0"/><data column="0" line="2" realPart="-158.33333333333331"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="132.71066000000005"/><data column="0" line="1" realPart="149.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-173.33333333333331"/><data column="0" line="1" realPart="-126.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList" varName=""><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="135.04399333333336"/><data column="0" line="1" realPart="140.70999999999998"/><data column="0" line="2" realPart="100.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-173.33333333333331"/><data column="0" line="1" realPart="-50.0"/><data column="0" line="2" realPart="-50.0"/><data column="0" line="3" realPart="4.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="340.0" y="80.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="73e2fecc:16667084192:-7b21" ordering="1" parent="73e2fecc:16667084192:-7b22" style="CommandPort;align=center;verticalAlign=bottom;spacing=10.0;rotation=90"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><BasicBlock dependsOnU="1" id="73e2fecc:16667084192:-7b1a" interfaceFunctionName="CSCOPE" ordering="4" parent="0:2:0" simulationFunctionName="cscope" simulationFunctionType="C_OR_FORTRAN" style="CSCOPE"><ScilabString as="exprs" height="10" width="1"><data column="0" line="0" value="1 3 5 7 9 11 13 15"/><data column="0" line="1" value="-1"/><data column="0" line="2" value="[]"/><data column="0" line="3" value="[600;400]"/><data column="0" line="4" value="-30"/><data column="0" line="5" value="30"/><data column="0" line="6" value="30"/><data column="0" line="7" value="20"/><data column="0" line="8" value="0"/><data column="0" line="9" value=""/></ScilabString><ScilabDouble as="realParameters" height="4" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="-30.0"/><data column="0" line="2" realPart="30.0"/><data column="0" line="3" realPart="30.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="15" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="1.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="1.0"/><data column="0" line="4" realPart="3.0"/><data column="0" line="5" realPart="5.0"/><data column="0" line="6" realPart="7.0"/><data column="0" line="7" realPart="9.0"/><data column="0" line="8" realPart="11.0"/><data column="0" line="9" realPart="13.0"/><data column="0" line="10" realPart="15.0"/><data column="0" line="11" realPart="-1.0"/><data column="0" line="12" realPart="-1.0"/><data column="0" line="13" realPart="600.0"/><data column="0" line="14" realPart="400.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="340.0" y="140.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="73e2fecc:16667084192:-7afc" ordering="1" parent="73e2fecc:16667084192:-7b1a" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0" value=""><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ControlPort dataType="UNKNOW_TYPE" id="73e2fecc:16667084192:-7afb" ordering="1" parent="73e2fecc:16667084192:-7b1a" style="ControlPort;align=center;verticalAlign=top;spacing=10.0;rotation=90"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><ExplicitLink id="73e2fecc:16667084192:-7b15" parent="0:2:0" source="73e2fecc:16667084192:-7aef" target="73e2fecc:16667084192:-7aff"><mxGeometry as="geometry" x="10.0" y="-80.0"><mxPoint as="sourcePoint" x="130.0" y="160.0"/><mxPoint as="targetPoint" x="190.0" y="160.0"/></mxGeometry></ExplicitLink><ExplicitLink id="73e2fecc:16667084192:-7b11" parent="0:2:0" source="73e2fecc:16667084192:-7afe" target="73e2fecc:16667084192:-7afc"><mxGeometry as="geometry" x="10.0" y="-80.0"><mxPoint as="sourcePoint" x="280.0" y="160.0"/><mxPoint as="targetPoint" x="340.0" y="160.0"/></mxGeometry></ExplicitLink><CommandControlLink id="73e2fecc:16667084192:-7b0e" parent="0:2:0" source="73e2fecc:16667084192:-7b21" target="73e2fecc:16667084192:-7afb"><mxGeometry as="geometry" x="10.0" y="-80.0"><mxPoint as="sourcePoint" x="360.0" y="120.0"/><mxPoint as="targetPoint" x="360.0" y="140.0"/></mxGeometry></CommandControlLink></root></mxGraphModel><mxCell as="defaultParent" id="0:2:0" parent="0:1:0"/></XcosDiagram>
\ No newline at end of file diff --git a/Working_Examples/83.zip b/Working_Examples/83.zip Binary files differnew file mode 100644 index 0000000..4491474 --- /dev/null +++ b/Working_Examples/83.zip diff --git a/Working_Examples/83/CH1/EX1.1/example_1_1.sce b/Working_Examples/83/CH1/EX1.1/example_1_1.sce new file mode 100755 index 0000000..c0c3072 --- /dev/null +++ b/Working_Examples/83/CH1/EX1.1/example_1_1.sce @@ -0,0 +1,49 @@ +//Chapter 1 +//Example 1.1 +//page 5 +clear;clc; +fl=760e3; +pf=0.8; +lsg=0.05; +csg=60; +depre=0.12; +hpw=48; +lv=32; +hv=30; +pkwhr=0.10; + +md=fl/pf; +printf('Maximum Demand= %.1f kVA \n\n',md/1000); + +//calculation for tariff (b) + +printf('Loss in switchgear=%.2f %% \n\n',lsg*100); +input_demand=md/(1-lsg); +input_demand=input_demand/1000; +cost_sw_ge=input_demand*60; +depreciation=depre*cost_sw_ge; +fixed_charges=hv*input_demand; +running_cost=input_demand*pf*hpw*52*pkwhr;//52 weeks per year +total_b=depreciation + fixed_charges + running_cost; +printf('Input Demand= %.1f kVA \n\n',input_demand); +printf('Cost of switchgear=Rs %d\n\n',cost_sw_ge); +printf('Annual charges on depreciation=Rs %d \n\n',depreciation); +printf('Annual fixed charges due to maximum demand corresponding to triff(b)=Rs %d \n\n',fixed_charges); +printf('Annual running cost due to kWh consumed=Rs %d \n\n',running_cost); +printf('Total charges/annum for tariff(b) = Rs %d\n\n',total_b) + +//calculation for tariff (a) +input_demand=md; +input_demand=input_demand/1000; +fixed_charges=lv*input_demand; +running_cost=input_demand*pf*hpw*52*pkwhr; +total_a=fixed_charges + running_cost; +printf('maximum demand corresponding to tariff(a) = %.f kVA \n\n',input_demand); +printf('Annual fixed charges=Rs %d \n\n',fixed_charges); +printf('Annual running charges for kWh consumed = Rs %d \n\n',running_cost); +printf('Total charges/annum for tariff(a) = Rs %d \n\n',total_a); +if(total_a > total_b) + printf('Therefore, tariff(b) is economical\n\n\n'); +else + printf('Therefore, tariff(a) is economical\n\n\n'); +
\ No newline at end of file diff --git a/Working_Examples/83/CH1/EX1.1/result_example_1_1.txt b/Working_Examples/83/CH1/EX1.1/result_example_1_1.txt new file mode 100755 index 0000000..ba5c666 --- /dev/null +++ b/Working_Examples/83/CH1/EX1.1/result_example_1_1.txt @@ -0,0 +1,26 @@ + +Maximum Demand= 950.0 kVA + +Loss in switchgear=5.00 % + +Input Demand= 1000.0 kVA + +Cost of switchgear=Rs 60000 + +Annual charges on depreciation=Rs 7200 + +Annual fixed charges due to maximum demand corresponding to triff(b)=Rs 30000 + +Annual running cost due to kWh consumed=Rs 199680 + +Total charges/annum for tariff(b) = Rs 236880 + +maximum demand corresponding to tariff(a) = 950 kVA + +Annual fixed charges=Rs 30400 + +Annual running charges for kWh consumed = Rs 189696 + +Total charges/annum for tariff(a) = Rs 220096 + +Therefore, tariff(a) is economical diff --git a/Working_Examples/83/CH1/EX1.3/example_1_3.sce b/Working_Examples/83/CH1/EX1.3/example_1_3.sce new file mode 100755 index 0000000..07632e5 --- /dev/null +++ b/Working_Examples/83/CH1/EX1.3/example_1_3.sce @@ -0,0 +1,23 @@ +//Chapter 1 +//Example 1.3 +//page 7 +clear;clc; +md=25; +lf=0.6; +pcf=0.5; +puf=0.72; + +avg_demand=lf*md; +installed_capacity=avg_demand/pcf; +reserve=installed_capacity-md; +daily_ener=avg_demand*24; +ener_inst_capa=installed_capacity*24; +max_energy=daily_ener/puf; + +printf('Average Demand= %.2f MW \n\n',avg_demand); +printf('Installed capacity= %.2f MW \n\n\',installed_capacity); +printf('Reserve capacity of the plant= %.2f MW \n\n',reserve); +printf('Daily energy produced= %d MWh \n\n',daily_ener); +printf('Energy corresponding to installed capacity per day= %d MWh \n\n',ener_inst_capa); +printf('Maximum energy that could be produced = %d MWh/day \n\n',max_energy); + diff --git a/Working_Examples/83/CH1/EX1.3/result_example_1_3.txt b/Working_Examples/83/CH1/EX1.3/result_example_1_3.txt new file mode 100755 index 0000000..e49091d --- /dev/null +++ b/Working_Examples/83/CH1/EX1.3/result_example_1_3.txt @@ -0,0 +1,13 @@ + +Average Demand= 15.00 MW + +Installed capacity= 30.00 MW + +Reserve capacity of the plant= 5.00 MW + +Daily energy produced= 360 MWh + +Energy corresponding to installed capacity per day= 720 MWh + +Maximum energy that could be produced = 500 MWh/day + diff --git a/Working_Examples/83/CH1/EX1.4/example_1_4.sce b/Working_Examples/83/CH1/EX1.4/example_1_4.sce new file mode 100755 index 0000000..9b05014 --- /dev/null +++ b/Working_Examples/83/CH1/EX1.4/example_1_4.sce @@ -0,0 +1,32 @@ +//Chapter 1 +//Example 1.2 +//page 6 +clear;clc; +md=20e3; +unit_1=14e3; +unit_2=10e3; +ener_1=1e8; +ener_2=7.5e6; +unit1_time=1; +unit2_time=0.45; + +annual_lf_unit1=ener_1/(unit_1*24*365); +md_unit_2=md-unit_1; +annual_lf_unit2=ener_2/(md_unit_2*24*365); +lf_unit_2=ener_2/(md_unit_2*unit2_time*24*365); +unit1_cf=annual_lf_unit1; +unit1_puf=unit1_cf; +unit2_cf=ener_2/(unit_2*24*365); +unit2_puf=unit2_cf/unit2_time; +annual_lf=(ener_1+ener_2)/(md*24*365); + + +printf('Annual load factor for Unit 1 = %.2f %% \n\n',annual_lf_unit1*100); +printf('The maximum demand on Unit 2 is %d MW \n\n',md_unit_2/1000); +printf('Annual load factor for Unit 2 = %.2f %% \n\n',annual_lf_unit2*100); +printf('Load factor of Unit 2 for the time it takes the load= %.2f %% \n\n',lf_unit_2*100); +printf('Plant capacity factor of unit 1 = %.2f %% \n\n',unit1_cf*100); +printf('Plant use factor of unit 1 = %.2f %% \n\n',unit1_puf*100); +printf('Annual plant capacity factor of unit 2 = %.2f %% \n\n',unit2_cf*100); +printf('Plant use factor of unit 2 = %.2f %% \n\n',unit2_puf*100); +printf('The annual load factor of the total plant = %.2f %% \n\n',annual_lf*100); diff --git a/Working_Examples/83/CH1/EX1.4/result_example_1_4.txt b/Working_Examples/83/CH1/EX1.4/result_example_1_4.txt new file mode 100755 index 0000000..b735190 --- /dev/null +++ b/Working_Examples/83/CH1/EX1.4/result_example_1_4.txt @@ -0,0 +1,20 @@ + + +Annual load factor for Unit 1 = 81.54 % + +The maximum demand on Unit 2 is 6 MW + +Annual load factor for Unit 2 = 14.27 % + +Load factor of Unit 2 for the time it takes the load= 31.71 % + +Plant capacity factor of unit 1 = 81.54 % + +Plant use factor of unit 1 = 81.54 % + +Annual plant capacity factor of unit 2 = 8.56 % + +Plant use factor of unit 2 = 19.03 % + +The annual load factor of the total plant = 61.36 % + diff --git a/Working_Examples/83/CH1/EX1.5/example_1_5.sce b/Working_Examples/83/CH1/EX1.5/example_1_5.sce new file mode 100755 index 0000000..5afcf5d --- /dev/null +++ b/Working_Examples/83/CH1/EX1.5/example_1_5.sce @@ -0,0 +1,30 @@ +//Chapter 1 +//Example 1.2 +//page 6 +clear;clc; + +c1_md_6pm=5; c1_d_7pm=3; c1_lf=0.2; +c2_md_11am=5; c2_d_7pm=2; c2_avg_load=1.2; +c3_md_7pm=3; c3_avg_load=1; + +md_system=c1_d_7pm + c2_d_7pm + c3_md_7pm; +sum_mds=c1_md_6pm + c2_md_11am + c3_md_7pm; +df=sum_mds/md_system; + +printf('Maximum demand of the system is %d kW at 7p.m \n',md_system); +printf('Sum of the individual maximum demands = %d kW \n',sum_mds); +printf('Diversity factor= %.3f \n\n',df); + +c1_avg_load=c1_md_6pm*c1_lf; +c2_lf=c2_avg_load/c2_md_11am; +c3_lf=c3_avg_load/c3_md_7pm; + +printf('Consumer1 -->\t Avg_load= %.2f kW \t LF= %.1f %% \n',c1_avg_load,c1_lf*100); +printf('Consumer2 -->\t Avg_load= %.2f kW \t LF= %.1f %% \n',c2_avg_load,c2_lf*100); +printf('Consumer3 -->\t Avg_load= %.2f kW \t LF= %.1f %% \n\n',c3_avg_load,c3_lf*100); + +avg_load=c1_avg_load + c2_avg_load + c3_avg_load; +lf=avg_load/md_system; + +printf('Combined average load = %.1f kW \n',avg_load); +printf('Combined load factor= %.1f %% \n\n',lf*100); diff --git a/Working_Examples/83/CH1/EX1.5/result_example_1_5.txt b/Working_Examples/83/CH1/EX1.5/result_example_1_5.txt new file mode 100755 index 0000000..b00121a --- /dev/null +++ b/Working_Examples/83/CH1/EX1.5/result_example_1_5.txt @@ -0,0 +1,12 @@ + +Maximum demand of the system is 8 kW at 7p.m +Sum of the individual maximum demands = 13 kW +Diversity factor= 1.625 + +Consumer1 --> Avg_load= 1.00 kW LF= 20.0 % +Consumer2 --> Avg_load= 1.20 kW LF= 24.0 % +Consumer3 --> Avg_load= 1.00 kW LF= 33.3 % + +Combined average load = 3.2 kW +Combined load factor= 40.0 % + diff --git a/Working_Examples/83/CH10/EX10.1/example_10_1.sce b/Working_Examples/83/CH10/EX10.1/example_10_1.sce new file mode 100755 index 0000000..5d84bb3 --- /dev/null +++ b/Working_Examples/83/CH10/EX10.1/example_10_1.sce @@ -0,0 +1,83 @@ +//Chapter 10 +//Example 10.1 +//page 374 +//To calculate symmetrical components of line currents +clear;clc; +Ia=10*(cosd(30)+%i*sind(30)); +Ib=15*(cosd(-60)+%i*sind(-60)); +// from KCL Ia+Ib+Ic=0 +Ic=-(Ia+Ib); +//defining alpha(a) +a=cosd(120)+(%i*sind(120)); +Ip=[Ia;Ib;Ic]; +A=[1 1 1;a^2 a 1;a a^2 1]; +IA=inv(A)*Ip; +IB=diag([a^2,a,1])*IA; +IC=diag([a,a^2,1])*IA; + +function [r,theta]=phasorform(x) + r=abs(x); + theta=atand(imag(x),real(x)); +endfunction + +[IAr,IAth]=phasorform(IA); +[IBr,IBth]=phasorform(IB); +[ICr,ICth]=phasorform(IC); + +//to display the results of symettrical components of line currents + +printf('\n\nIA1=%0.2f @ %d deg A',IAr(1,1),IAth(1,1)); +printf('\nIA2=%0.2f @ %d deg A',IAr(2,1),IAth(2,1)); +printf('\nIA0=%0.2f A',IAr(3,1)); + + +printf('\n\nIB1=%0.2f @ %d deg A',IBr(1,1),IBth(1,1)); +printf('\nIB2=%0.2f @ %d deg A',IBr(2,1),IBth(2,1)); +printf('\nIB0=%0.2f A',IBr(3,1)); + + +printf('\n\nIC1=%0.2f @ %d deg A',ICr(1,1),ICth(1,1)); +printf('\nIC2=%0.2f @ %d deg A',ICr(2,1),ICth(2,1)); +printf('\nIC0=%0.2f A',ICr(3,1)); + +//to calculate Delta currents + +IAB=(Ia-Ib)/3; +IBC=(Ib-Ic)/3; +ICA=(Ic-Ia)/3; + +//to get the results in phasor notation +[IABr,IABth]=phasorform(IAB); +[IBCr,IBCth]=phasorform(IBC); +[ICAr,ICAth]=phasorform(ICA); + +printf('\n\nIAB=%0.2f @ %d deg A',IABr,IABth); +printf('\nIBC=%0.2f @ %d deg A',IBCr,IBCth); +printf('\nICA=%0.2f @ %d deg A',ICAr,ICAth); + +//to calculte the symmetrical components of delta currents by reusing the variable Ip +Ip=[IAB;IBC;ICA]; +IAB=inv(A)*Ip; +IBC=diag([a^2,a,1])*IAB; +ICA=diag([a,a^2,1])*IAB; + +[IABr,IABth]=phasorform(IAB); +[IBCr,IBCth]=phasorform(IBC); +[ICAr,ICAth]=phasorform(ICA); + +//to display the results of symmetrical components of Delta currents + +printf('\n\nIAB1=%0.2f @ %d deg A',IABr(1,1),IABth(1,1)); +printf('\nIAB2=%0.2f @ %d deg A',IABr(2,1),IABth(2,1)); +printf('\nIAB0=%0.2f A',IABr(3,1)); + + +printf('\n\nIBC1=%0.2f @ %d deg A',IBCr(1,1),IBCth(1,1)); +printf('\nIBC2=%0.2f @ %d deg A',IBCr(2,1),IBCth(2,1)); +printf('\nIBC0=%0.2f A',IBCr(3,1)); + + +printf('\n\nICA1=%0.2f @ %d deg A',ICAr(1,1),ICAth(1,1)); +printf('\nICA2=%0.2f @ %d deg A',ICAr(2,1),ICAth(2,1)); +printf('\nICA0=%0.2f A\n\n',ICAr(3,1)); + diff --git a/Working_Examples/83/CH10/EX10.1/result_exapmle_10_1.txt b/Working_Examples/83/CH10/EX10.1/result_exapmle_10_1.txt new file mode 100755 index 0000000..e17817b --- /dev/null +++ b/Working_Examples/83/CH10/EX10.1/result_exapmle_10_1.txt @@ -0,0 +1,33 @@ + + + +IA1=13.96 @ 41 deg A +IA2=4.66 @ -111 deg A +IA0=0.00 A + +IB1=13.96 @ -78 deg A +IB2=4.66 @ 8 deg A +IB0=0.00 A + +IC1=13.96 @ 161 deg A +IC2=4.66 @ 128 deg A +IC0=0.00 A + +IAB=6.01 @ 86 deg A +IBC=10.54 @ -41 deg A +ICA=8.33 @ 173 deg A + +IAB1=8.06 @ 71 deg A +IAB2=2.69 @ -141 deg A +IAB0=0.00 A + +IBC1=8.06 @ -48 deg A +IBC2=2.69 @ -21 deg A +IBC0=0.00 A + +ICA1=8.06 @ -168 deg A +ICA2=2.69 @ 98 deg A +ICA0=0.00 A + + + diff --git a/Working_Examples/83/CH10/EX10.2/example_10_2.sce b/Working_Examples/83/CH10/EX10.2/example_10_2.sce new file mode 100755 index 0000000..0d1834e --- /dev/null +++ b/Working_Examples/83/CH10/EX10.2/example_10_2.sce @@ -0,0 +1,42 @@ +//Chapter 10 +//Example 10.2 +//page no 390 +//To draw sequence networks of the system +clear;clc; + +//selecting generator rating as base in generator circuit + +mvab=25; +kvGb=11; //base voltage for generator +kvTLb=kvGb*(121/10.8); //base voltage for TL +kvMb=kvTLb*(10.8/121); //base voltage for motors + +xG=%i*0.2; +xT=%i*0.1; +xTL=100; +xM=%i*0.25; + +mvaG=25; +mvaT=30; +mvaM1=15; +mvaM2=7.5; + +kvM=10; + +//converting all the reactances to PUs + +xT=xT*(mvab/mvaT)*(10.8/kvGb)^2; +xTL=xTL*(mvab/(kvTLb)^2); +xM1=xM*(mvab/mvaM1)*(kvM/kvMb)^2; +xM2=xM*(mvab/mvaM2)*(kvM/kvMb)^2; + +//displaying the results + +printf('\n\nTransmission line voltage base = %0.1f kV',kvTLb); +printf('\n\Motor voltage base = %d kV',kvMb); +printf('\n\nTransformer reactance = %0.4f pu',abs(imag(xT))); +printf('\nLine reactance = %0.3f pu',abs(xTL)); +printf('\nReactance of motor 1 = %0.3f pu',abs(imag(xM1))); +printf('\nReactance of motor 2 = %0.3f pu\n\n',abs(imag(xM2))); + +disp('Positive and Negative sequence diagram has been drawn using XCOS,simulation has not been done as it is not being asked in the problem'); diff --git a/Working_Examples/83/CH10/EX10.2/result_example_10_2.txt b/Working_Examples/83/CH10/EX10.2/result_example_10_2.txt new file mode 100755 index 0000000..ade8b84 --- /dev/null +++ b/Working_Examples/83/CH10/EX10.2/result_example_10_2.txt @@ -0,0 +1,17 @@ + + + +Transmission line voltage base = 123.2 kV +Motor voltage base = 11 kV + +Transformer reactance = 0.0803 pu +Line reactance = 0.165 pu +Reactance of motor 1 = 0.344 pu +Reactance of motor 2 = 0.689 pu + + + Positive and Negative sequence diagram has been drawn using XCO + S,simulation has not been done as it is not being asked in + the problem + + diff --git a/Working_Examples/83/CH10/EX10.3/example_10_3.sce b/Working_Examples/83/CH10/EX10.3/example_10_3.sce new file mode 100755 index 0000000..1a32d15 --- /dev/null +++ b/Working_Examples/83/CH10/EX10.3/example_10_3.sce @@ -0,0 +1,7 @@ +//Chapter 10 +//Example 10.3 +//page no 392 +//To draw the zero sequence networks of the system +clear;clc; + +disp('Zero sequence diagram has been drawn using XCOS,simulation has not been done as it is not being asked in the problem');
\ No newline at end of file diff --git a/Working_Examples/83/CH10/EX10.3/example_10_3.zcos b/Working_Examples/83/CH10/EX10.3/example_10_3.zcos new file mode 100755 index 0000000..4a20558 --- /dev/null +++ b/Working_Examples/83/CH10/EX10.3/example_10_3.zcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1"><!--Xcos - 1.0 - scilab-5.3.2 - 20110511 1835--><mxGraphModel as="model"><root><mxCell id="-46a41603:1313306f260:-7c09"/><mxCell id="-46a41603:1313306f260:-7c0a" parent="-46a41603:1313306f260:-7c09"/><BasicBlock angle="90" dependsOnU="1" id="-46a41603:1313306f260:-7c01" interfaceFunctionName="Resistor" parent="-46a41603:1313306f260:-7c0a" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=90"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="0.01"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="0.01"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.01"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="130.0" y="260.0"/></BasicBlock><ImplicitOutputPort connectable="0" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-46a41603:1313306f260:-7c00" ordering="1" parent="-46a41603:1313306f260:-7c01" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitInputPort connectable="0" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-46a41603:1313306f260:-7bff" ordering="1" parent="-46a41603:1313306f260:-7c01" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock angle="90" dependsOnU="1" id="-46a41603:1313306f260:-7bfe" interfaceFunctionName="Inductor" parent="-46a41603:1313306f260:-7c0a" simulationFunctionName="Inductor" simulationFunctionType="DEFAULT" style="Inductor;rotation=90"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="0.00001"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="1.0E-5"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Inductor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="L"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0E-5"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="130.0" y="370.0"/></BasicBlock><ImplicitOutputPort connectable="0" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-46a41603:1313306f260:-7bfd" ordering="1" parent="-46a41603:1313306f260:-7bfe" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitInputPort connectable="0" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-46a41603:1313306f260:-7bfc" ordering="1" parent="-46a41603:1313306f260:-7bfe" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitLink id="-46a41603:1313306f260:-7bf5"><mxGeometry as="geometry" x="10.0" y="10.0"><mxPoint as="sourcePoint" x="150.0" y="336.0"/><mxPoint as="targetPoint" x="145.59322033898306" y="306.6101694915254"/></mxGeometry><mxCell as="parent" id="-46a41603:1313306f260:-7c0a" parent="-46a41603:1313306f260:-7c09"/><ImplicitOutputPort as="source" connectable="0" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-46a41603:1313306f260:-7c00" ordering="1" parent="-46a41603:1313306f260:-7c01" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitInputPort as="target" connectable="0" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-46a41603:1313306f260:-7bfc" ordering="1" parent="-46a41603:1313306f260:-7bfe" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort></ImplicitLink><SplitBlock id="-46a41603:1313306f260:-7bf4" parent="-46a41603:1313306f260:-7c0a" simulationFunctionType="DEFAULT"><mxGeometry as="geometry" height="7.0" width="7.0" x="217.0" y="437.0"/></SplitBlock><ImplicitInputPort connectable="0" dataType="UNKNOW_TYPE" id="-46a41603:1313306f260:-7bf3" ordering="1" parent="-46a41603:1313306f260:-7bf4" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-46a41603:1313306f260:-7bf2" ordering="1" parent="-46a41603:1313306f260:-7bf4" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-46a41603:1313306f260:-7bf1" ordering="2" parent="-46a41603:1313306f260:-7bf4" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitLink id="-46a41603:1313306f260:-7bf0"><mxGeometry as="geometry" x="10.0" y="30.0"><Array as="points" scilabClass=""><mxPoint x="150.0" y="440.0"/></Array></mxGeometry><mxCell as="parent" id="-46a41603:1313306f260:-7c0a" parent="-46a41603:1313306f260:-7c09"/><ImplicitOutputPort as="source" connectable="0" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-46a41603:1313306f260:-7bfd" ordering="1" parent="-46a41603:1313306f260:-7bfe" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitInputPort as="target" connectable="0" dataType="UNKNOW_TYPE" id="-46a41603:1313306f260:-7bf3" ordering="1" parent="-46a41603:1313306f260:-7bf4" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort></ImplicitLink><BasicBlock angle="90" dependsOnU="1" id="-46a41603:1313306f260:-7b75" interfaceFunctionName="Inductor" parent="-46a41603:1313306f260:-7c0a" simulationFunctionName="Inductor" simulationFunctionType="DEFAULT" style="Inductor;rotation=90"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="0.00001"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="1.0E-5"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Inductor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="L"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0E-5"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="720.0" y="350.0"/></BasicBlock><ImplicitOutputPort connectable="0" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-46a41603:1313306f260:-7b74" ordering="1" parent="-46a41603:1313306f260:-7b75" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-46a41603:1313306f260:-7b73" ordering="1" parent="-46a41603:1313306f260:-7b75" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><SplitBlock id="-46a41603:1313306f260:-7b72" parent="-46a41603:1313306f260:-7c0a" simulationFunctionType="DEFAULT"><mxGeometry as="geometry" height="7.0" width="7.0" x="667.0" y="437.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="-46a41603:1313306f260:-7b71" ordering="1" parent="-46a41603:1313306f260:-7b72" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort connectable="0" dataType="UNKNOW_TYPE" id="-46a41603:1313306f260:-7b70" ordering="1" parent="-46a41603:1313306f260:-7b72" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-46a41603:1313306f260:-7b6f" ordering="2" parent="-46a41603:1313306f260:-7b72" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitLink id="-46a41603:1313306f260:-7b6e"><mxGeometry as="geometry" x="52.0" y="30.0"><Array as="points" scilabClass=""><mxPoint x="740.0" y="440.0"/></Array></mxGeometry><mxCell as="parent" id="-46a41603:1313306f260:-7c0a" parent="-46a41603:1313306f260:-7c09"/><ImplicitOutputPort as="source" connectable="0" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-46a41603:1313306f260:-7b74" ordering="1" parent="-46a41603:1313306f260:-7b75" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitOutputPort as="target" connectable="0" dataType="UNKNOW_TYPE" id="-46a41603:1313306f260:-7b70" ordering="1" parent="-46a41603:1313306f260:-7b72" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort></ImplicitLink><SplitBlock id="-46a41603:1313306f260:-7af9" parent="-46a41603:1313306f260:-7c0a" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="627.0" y="197.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-46a41603:1313306f260:-7af8" ordering="1" parent="-46a41603:1313306f260:-7af9" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-46a41603:1313306f260:-7af7" ordering="2" parent="-46a41603:1313306f260:-7af9" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort connectable="0" dataType="UNKNOW_TYPE" id="-46a41603:1313306f260:-7af6" ordering="1" parent="-46a41603:1313306f260:-7af9" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-46a41603:1313306f260:-7af5"><mxGeometry as="geometry" x="20.0" y="20.0"><mxPoint as="sourcePoint" x="740.0" y="216.0"/><mxPoint as="targetPoint" x="740.0" y="214.0"/><Array as="points" scilabClass=""><mxPoint x="740.0" y="200.0"/></Array></mxGeometry><mxCell as="parent" id="-46a41603:1313306f260:-7c0a" parent="-46a41603:1313306f260:-7c09"/><ImplicitOutputPort as="source" dataType="UNKNOW_TYPE" id="-46a41603:1313306f260:-7af7" ordering="2" parent="-46a41603:1313306f260:-7af9" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort></ImplicitLink><TextBlock id="-46a41603:1313306f260:-7af4" parent="-46a41603:1313306f260:-7c0a" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;flip=false;mirror=false;fontColor=#DB1717" value="<html> <head> <style type="text/css"> <!-- body { color: #DB1717; font-family: Arial,Helvetica; font-weight: bold; font-size: 14 pt } --> </style> </head> <body> Reference Bus </body> </html> "><mxGeometry as="geometry" height="40.0" width="40.0" x="414.0" y="170.0"/></TextBlock><BasicBlock dependsOnU="1" id="-46a41603:1313306f260:-7af3" interfaceFunctionName="Inductor" parent="-46a41603:1313306f260:-7c0a" simulationFunctionName="Inductor" simulationFunctionType="DEFAULT" style="Inductor"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="0.00001"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="1.0E-5"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Inductor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="L"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0E-5"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="314.0" y="420.0"/></BasicBlock><ImplicitOutputPort connectable="0" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-46a41603:1313306f260:-7af2" ordering="1" parent="-46a41603:1313306f260:-7af3" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><ImplicitInputPort connectable="0" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-46a41603:1313306f260:-7af1" ordering="1" parent="-46a41603:1313306f260:-7af3" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="-46a41603:1313306f260:-7af0" interfaceFunctionName="Inductor" parent="-46a41603:1313306f260:-7c0a" simulationFunctionName="Inductor" simulationFunctionType="DEFAULT" style="Inductor"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="0.00001"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="1.0E-5"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Inductor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="L"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0E-5"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="544.0" y="420.0"/></BasicBlock><ImplicitOutputPort connectable="0" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-46a41603:1313306f260:-7aef" ordering="1" parent="-46a41603:1313306f260:-7af0" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><ImplicitInputPort connectable="0" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-46a41603:1313306f260:-7aee" ordering="1" parent="-46a41603:1313306f260:-7af0" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="-46a41603:1313306f260:-7aed" interfaceFunctionName="Inductor" parent="-46a41603:1313306f260:-7c0a" simulationFunctionName="Inductor" simulationFunctionType="DEFAULT" style="Inductor"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="0.00001"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="1.0E-5"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Inductor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="L"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0E-5"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="444.0" y="420.0"/></BasicBlock><ImplicitOutputPort connectable="0" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-46a41603:1313306f260:-7aec" ordering="1" parent="-46a41603:1313306f260:-7aed" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><ImplicitInputPort connectable="0" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-46a41603:1313306f260:-7aeb" ordering="1" parent="-46a41603:1313306f260:-7aed" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitLink id="-46a41603:1313306f260:-7aea"><mxGeometry as="geometry" x="4.0" y="20.0"><mxPoint as="sourcePoint" x="358.0" y="440.0"/><mxPoint as="targetPoint" x="441.5" y="436.6666666666667"/></mxGeometry><mxCell as="parent" id="-46a41603:1313306f260:-7c0a" parent="-46a41603:1313306f260:-7c09"/><ImplicitOutputPort as="source" connectable="0" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-46a41603:1313306f260:-7af2" ordering="1" parent="-46a41603:1313306f260:-7af3" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><ImplicitInputPort as="target" connectable="0" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-46a41603:1313306f260:-7aeb" ordering="1" parent="-46a41603:1313306f260:-7aed" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort></ImplicitLink><ImplicitLink id="-46a41603:1313306f260:-7ae9"><mxGeometry as="geometry" x="4.0" y="20.0"><mxPoint as="sourcePoint" x="487.99999999999994" y="440.0"/><mxPoint as="targetPoint" x="538.7222222222223" y="443.61111111111114"/></mxGeometry><mxCell as="parent" id="-46a41603:1313306f260:-7c0a" parent="-46a41603:1313306f260:-7c09"/><ImplicitOutputPort as="source" connectable="0" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-46a41603:1313306f260:-7aec" ordering="1" parent="-46a41603:1313306f260:-7aed" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><ImplicitInputPort as="target" connectable="0" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-46a41603:1313306f260:-7aee" ordering="1" parent="-46a41603:1313306f260:-7af0" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort></ImplicitLink><SplitBlock id="-46a41603:1313306f260:-7ae8" parent="-46a41603:1313306f260:-7c0a" simulationFunctionType="DEFAULT"><mxGeometry as="geometry" height="7.0" width="7.0" x="627.0" y="197.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="-46a41603:1313306f260:-7ae7" ordering="1" parent="-46a41603:1313306f260:-7ae8" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort connectable="0" dataType="UNKNOW_TYPE" id="-46a41603:1313306f260:-7ae6" ordering="1" parent="-46a41603:1313306f260:-7ae8" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort connectable="0" dataType="UNKNOW_TYPE" id="-46a41603:1313306f260:-7ae5" ordering="2" parent="-46a41603:1313306f260:-7ae8" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitLink id="-46a41603:1313306f260:-7ae4"><mxGeometry as="geometry" x="4.0" y="10.0"><Array as="points" scilabClass=""/></mxGeometry><mxCell as="parent" id="-46a41603:1313306f260:-7c0a" parent="-46a41603:1313306f260:-7c09"/><ImplicitOutputPort as="source" connectable="0" dataType="UNKNOW_TYPE" id="-46a41603:1313306f260:-7ae6" ordering="1" parent="-46a41603:1313306f260:-7ae8" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitInputPort as="target" connectable="0" dataType="UNKNOW_TYPE" id="-46a41603:1313306f260:-7af6" ordering="1" parent="-46a41603:1313306f260:-7af9" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort></ImplicitLink><SplitBlock id="-46a41603:1313306f260:-7ae3" parent="-46a41603:1313306f260:-7c0a" simulationFunctionType="DEFAULT"><mxGeometry as="geometry" height="7.0" width="7.0" x="627.0" y="197.0"/></SplitBlock><ImplicitInputPort connectable="0" dataType="UNKNOW_TYPE" id="-46a41603:1313306f260:-7ae2" ordering="1" parent="-46a41603:1313306f260:-7ae3" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort connectable="0" dataType="UNKNOW_TYPE" id="-46a41603:1313306f260:-7ae1" ordering="1" parent="-46a41603:1313306f260:-7ae3" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort connectable="0" dataType="UNKNOW_TYPE" id="-46a41603:1313306f260:-7ae0" ordering="2" parent="-46a41603:1313306f260:-7ae3" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitLink id="-46a41603:1313306f260:-7adf"><mxGeometry as="geometry" x="4.0" y="10.0"><Array as="points" scilabClass=""/></mxGeometry><mxCell as="parent" id="-46a41603:1313306f260:-7c0a" parent="-46a41603:1313306f260:-7c09"/><ImplicitOutputPort as="source" connectable="0" dataType="UNKNOW_TYPE" id="-46a41603:1313306f260:-7ae5" ordering="2" parent="-46a41603:1313306f260:-7ae8" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort as="target" connectable="0" dataType="UNKNOW_TYPE" id="-46a41603:1313306f260:-7ae2" ordering="1" parent="-46a41603:1313306f260:-7ae3" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort></ImplicitLink><ImplicitLink id="-46a41603:1313306f260:-7add"><mxGeometry as="geometry" x="4.0" y="10.0"><mxPoint as="sourcePoint" x="588.0" y="440.0"/><mxPoint as="targetPoint" x="619.3846153846154" y="199.3491124260355"/><Array as="points" scilabClass=""><mxPoint x="630.0" y="440.0"/></Array></mxGeometry><mxCell as="parent" id="-46a41603:1313306f260:-7c0a" parent="-46a41603:1313306f260:-7c09"/><ImplicitOutputPort as="source" connectable="0" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-46a41603:1313306f260:-7aef" ordering="1" parent="-46a41603:1313306f260:-7af0" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><ImplicitOutputPort as="target" connectable="0" dataType="UNKNOW_TYPE" id="-46a41603:1313306f260:-7ae0" ordering="2" parent="-46a41603:1313306f260:-7ae3" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort></ImplicitLink><SplitBlock id="-46a41603:1313306f260:-7a58" parent="-46a41603:1313306f260:-7c0a" simulationFunctionType="DEFAULT"><mxGeometry as="geometry" height="7.0" width="7.0" x="267.0" y="197.0"/></SplitBlock><ImplicitInputPort connectable="0" dataType="UNKNOW_TYPE" id="-46a41603:1313306f260:-7a57" ordering="1" parent="-46a41603:1313306f260:-7a58" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort connectable="0" dataType="UNKNOW_TYPE" id="-46a41603:1313306f260:-7a56" ordering="1" parent="-46a41603:1313306f260:-7a58" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort connectable="0" dataType="UNKNOW_TYPE" id="-46a41603:1313306f260:-7a55" ordering="2" parent="-46a41603:1313306f260:-7a58" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitLink id="-46a41603:1313306f260:-7a54"><mxGeometry as="geometry"><Array as="points" scilabClass=""><mxPoint x="270.2721893491124" y="199.3491124260355"/><mxPoint x="270.2721893491124" y="199.3491124260355"/></Array></mxGeometry><mxCell as="parent" id="-46a41603:1313306f260:-7c0a" parent="-46a41603:1313306f260:-7c09"/><ImplicitOutputPort as="source" connectable="0" dataType="UNKNOW_TYPE" id="-46a41603:1313306f260:-7ae1" ordering="1" parent="-46a41603:1313306f260:-7ae3" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitInputPort as="target" connectable="0" dataType="UNKNOW_TYPE" id="-46a41603:1313306f260:-7a57" ordering="1" parent="-46a41603:1313306f260:-7a58" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort></ImplicitLink><ImplicitLink id="-46a41603:1313306f260:-7a53"><mxGeometry as="geometry"><Array as="points" scilabClass=""><mxPoint x="270.0" y="440.0"/></Array></mxGeometry><mxCell as="parent" id="-46a41603:1313306f260:-7c0a" parent="-46a41603:1313306f260:-7c09"/><ImplicitOutputPort as="source" connectable="0" dataType="UNKNOW_TYPE" id="-46a41603:1313306f260:-7a56" ordering="1" parent="-46a41603:1313306f260:-7a58" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitInputPort as="target" connectable="0" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-46a41603:1313306f260:-7af1" ordering="1" parent="-46a41603:1313306f260:-7af3" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort></ImplicitLink><ImplicitLink id="-46a41603:1313306f260:-7a59"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="150.0" y="256.0"/><mxPoint as="targetPoint" x="270.5882352941177" y="200.0"/><Array as="points" scilabClass=""><mxPoint x="150.0" y="200.0"/></Array></mxGeometry><mxCell as="parent" id="-46a41603:1313306f260:-7c0a" parent="-46a41603:1313306f260:-7c09"/><ImplicitOutputPort as="source" connectable="0" dataType="UNKNOW_TYPE" id="-46a41603:1313306f260:-7a55" ordering="2" parent="-46a41603:1313306f260:-7a58" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort as="target" connectable="0" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-46a41603:1313306f260:-7bff" ordering="1" parent="-46a41603:1313306f260:-7c01" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort></ImplicitLink><TextBlock id="-46a41603:1313306f260:-7996" parent="-46a41603:1313306f260:-7c0a" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;flip=false;mirror=false" value="<html> <head> <style type="text/css"> <!-- body { color: black; font-family: Arial,Helvetica; font-weight: bold; font-size: 23 pt } --> </style> </head> <body> 3Zn </body> </html> "><mxGeometry as="geometry" height="40.0" width="40.0" x="90.0" y="260.0"/></TextBlock><TextBlock id="-46a41603:1313306f260:-7993" parent="-46a41603:1313306f260:-7c0a" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;flip=false;mirror=false" value="<html> <head> <style type="text/css"> <!-- body { color: black; font-family: Arial,Helvetica; font-weight: bold; font-size: 23 pt } --> </style> </head> <body> Z0g1 </body> </html> "><mxGeometry as="geometry" height="40.0" width="40.0" x="90.0" y="370.0"/></TextBlock><TextBlock id="-46a41603:1313306f260:-798e" parent="-46a41603:1313306f260:-7c0a" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;flip=false;mirror=false" value="<html> <head> <style type="text/css"> <!-- body { color: black; font-family: Arial,Helvetica; font-weight: bold; font-size: 16 pt } --> </style> </head> <body> ZT1 </body> </html> "><mxGeometry as="geometry" height="40.0" width="40.0" x="310.0" y="460.0"/></TextBlock><TextBlock id="-46a41603:1313306f260:-798a" parent="-46a41603:1313306f260:-7c0a" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;flip=false;mirror=false" value="<html> <head> <style type="text/css"> <!-- body { color: black; font-family: Arial,Helvetica; font-weight: bold; font-size: 16 pt } --> </style> </head> <body> Z0(line) </body> </html> "><mxGeometry as="geometry" height="40.0" width="40.0" x="440.0" y="460.0"/></TextBlock><TextBlock id="-46a41603:1313306f260:-7987" parent="-46a41603:1313306f260:-7c0a" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;flip=false;mirror=false" value="<html> <head> <style type="text/css"> <!-- body { color: black; font-family: Arial,Helvetica; font-weight: bold; font-size: 16 pt } --> </style> </head> <body> ZT2 </body> </html> "><mxGeometry as="geometry" height="40.0" width="40.0" x="540.0" y="460.0"/></TextBlock><TextBlock id="-46a41603:1313306f260:-7983" parent="-46a41603:1313306f260:-7c0a" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;flip=false;mirror=false" value="<html> <head> <style type="text/css"> <!-- body { color: black; font-family: Arial,Helvetica; font-weight: bold; font-size: 16 pt } --> </style> </head> <body> Z0g2 </body> </html> "><mxGeometry as="geometry" height="40.0" width="40.0" x="770.0" y="350.0"/></TextBlock><TextBlock id="-46a41603:1313306f260:-797f" parent="-46a41603:1313306f260:-7c0a" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;flip=false;mirror=false;fontColor=#881515" value="<html> <head> <style type="text/css"> <!-- body { color: #881515; font-family: Arial,Helvetica; font-weight: bold; font-size: 16 pt } --> </style> </head> <body> M </body> </html> "><mxGeometry as="geometry" height="40.0" width="40.0" x="200.0" y="440.0"/></TextBlock><TextBlock id="-46a41603:1313306f260:-797c" parent="-46a41603:1313306f260:-7c0a" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;flip=false;mirror=false;fontColor=#881515" value="<html> <head> <style type="text/css"> <!-- body { color: #881515; font-family: Arial,Helvetica; font-weight: bold; font-size: 16 pt } --> </style> </head> <body> V </body> </html> "><mxGeometry as="geometry" height="40.0" width="40.0" x="650.0" y="400.0"/></TextBlock><TextBlock id="-46a41603:1313306f260:-797b" parent="-46a41603:1313306f260:-7c0a" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;flip=false;mirror=false;fontColor=#881515" value="<html> <head> <style type="text/css"> <!-- body { color: #881515; font-family: Arial,Helvetica; font-weight: bold; font-size: 16 pt } --> </style> </head> <body> U </body> </html> "><mxGeometry as="geometry" height="40.0" width="40.0" x="490.0" y="410.0"/></TextBlock><TextBlock id="-46a41603:1313306f260:-797a" parent="-46a41603:1313306f260:-7c0a" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;flip=false;mirror=false;fontColor=#881515" value="<html> <head> <style type="text/css"> <!-- body { color: #881515; font-family: Arial,Helvetica; font-weight: bold; font-size: 16 pt } --> </style> </head> <body> N </body> </html> "><mxGeometry as="geometry" height="40.0" width="40.0" x="380.0" y="410.0"/></TextBlock><TextBlock id="-46a41603:1313306f260:-7970" parent="-46a41603:1313306f260:-7c0a" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;flip=false;mirror=false;fontColor=#3885C1" value="<html> <head> <style type="text/css"> <!-- body { color: #3885C1; font-family: Arial,Helvetica; font-weight: bold; font-size: 16 pt } --> </style> </head> <body> Zero sequence network of the system presented in Fig.10.25 </body> </html> "><mxGeometry as="geometry" height="40.0" width="40.0" x="470.0" y="490.0"/></TextBlock></root></mxGraphModel><mxCell as="defaultParent" id="-46a41603:1313306f260:-7c0a" parent="-46a41603:1313306f260:-7c09"/></XcosDiagram>
\ No newline at end of file diff --git a/Working_Examples/83/CH10/EX10.3/result_example_10_3.txt b/Working_Examples/83/CH10/EX10.3/result_example_10_3.txt new file mode 100755 index 0000000..5528163 --- /dev/null +++ b/Working_Examples/83/CH10/EX10.3/result_example_10_3.txt @@ -0,0 +1,5 @@ + + + Zero sequence diagram has been drawn using XCOS,simulation has + not been done as it is not being asked in the problem + diff --git a/Working_Examples/83/CH10/EX10.4/example_10_4.sce b/Working_Examples/83/CH10/EX10.4/example_10_4.sce new file mode 100755 index 0000000..33f6f06 --- /dev/null +++ b/Working_Examples/83/CH10/EX10.4/example_10_4.sce @@ -0,0 +1,33 @@ +//Chapter 10 +//Example 10.4 +//page no 392 +//To draw the zero sequence networks of the system given in example 10.2 +clear;clc; + +//selecting generator rating as base in generator circuit + +mvab=25; +kvGb=11; //base voltage for generator +kvTLb=kvGb*(121/10.8); //base voltage for TL +kvMb=kvTLb*(10.8/121); //base voltage for motors + +//Calculation of zero sequence reactance + +xT0=0.0805; //zero sequence reactance of transformer +xG0=0.06; //zero sequence reactance of generator + +//zero sequence reactanc eof motors +xM1_0=0.06*(mvab/15)*(10/kvMb)^2; +xM2_0=0.06*(mvab/7.5)*(10/kvMb)^2; + +x_clr_0=3*2.5*(mvab/kvGb^2); // Reactance of current limiting reactors to be icluded in the zero sequence network +x_TL_0=300*(mvab/kvTLb^2); //Zero sequence reactance of TL + +printf('\n\nTransformer zero sequence reactance = %0.4f pu',xT0); +printf('\nGenerator zero sequence reactances = %0.2f pu',xG0); +printf('\nZero sequence reactance of motor 1 = %0.3f pu',xM1_0); +printf('\nZero sequence reactance of motor 2 = %0.3f pu',xM2_0); +printf('\nReactance of current limiting reactors = %0.3f pu',x_clr_0); +printf('\nZero sequence reactance of transmission line = %0.3f pu\n\n',x_TL_0); + +disp('Zero sequence diagram has been drawn using XCOS,simulation has not been done as it is not being asked in the problem');
\ No newline at end of file diff --git a/Working_Examples/83/CH10/EX10.4/example_10_4.zcos b/Working_Examples/83/CH10/EX10.4/example_10_4.zcos new file mode 100755 index 0000000..681772e --- /dev/null +++ b/Working_Examples/83/CH10/EX10.4/example_10_4.zcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" title="example_10_4"><!--Xcos - 1.0 - scilab-5.3.2 - 20110511 1835--><mxGraphModel as="model"><root><mxCell id="-46a41603:1313306f260:-791e"/><mxCell id="-46a41603:1313306f260:-791f" parent="-46a41603:1313306f260:-791e"/><BasicBlock angle="90" dependsOnU="1" id="-46a41603:1313306f260:-791a" interfaceFunctionName="Inductor" parent="-46a41603:1313306f260:-791f" simulationFunctionName="Inductor" simulationFunctionType="DEFAULT" style="Inductor;rotation=90"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="0.000019098593"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="1.9098593E-5"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Inductor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="L"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.9098593E-5"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="140.0" y="380.0"/></BasicBlock><ImplicitOutputPort connectable="0" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-46a41603:1313306f260:-787a" ordering="1" parent="-46a41603:1313306f260:-791a" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitInputPort connectable="0" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-46a41603:1313306f260:-787b" ordering="1" parent="-46a41603:1313306f260:-791a" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><SplitBlock id="-46a41603:1313306f260:-7916" parent="-46a41603:1313306f260:-791f" simulationFunctionType="DEFAULT"><mxGeometry as="geometry" height="7.0" width="7.0" x="227.0" y="447.0"/></SplitBlock><ImplicitInputPort connectable="0" dataType="UNKNOW_TYPE" id="-46a41603:1313306f260:-7915" ordering="1" parent="-46a41603:1313306f260:-7916" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-46a41603:1313306f260:-7914" ordering="1" parent="-46a41603:1313306f260:-7916" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-46a41603:1313306f260:-7913" ordering="2" parent="-46a41603:1313306f260:-7916" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitLink id="-46a41603:1313306f260:-7912"><mxGeometry as="geometry" x="20.0" y="40.0"><Array as="points" scilabClass=""><mxPoint x="160.0" y="450.0"/></Array></mxGeometry><mxCell as="parent" id="-46a41603:1313306f260:-791f" parent="-46a41603:1313306f260:-791e"/><ImplicitOutputPort as="source" connectable="0" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-46a41603:1313306f260:-787a" ordering="1" parent="-46a41603:1313306f260:-791a" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitInputPort as="target" connectable="0" dataType="UNKNOW_TYPE" id="-46a41603:1313306f260:-7915" ordering="1" parent="-46a41603:1313306f260:-7916" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort></ImplicitLink><BasicBlock angle="90" dependsOnU="1" id="-46a41603:1313306f260:-7911" interfaceFunctionName="Inductor" parent="-46a41603:1313306f260:-791f" simulationFunctionName="Inductor" simulationFunctionType="DEFAULT" style="Inductor;rotation=90;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="0.0002610141"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="2.610141E-4"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Inductor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="L"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="2.610141E-4"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="710.0" y="360.0"/></BasicBlock><ImplicitOutputPort connectable="0" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-46a41603:1313306f260:-7866" ordering="1" parent="-46a41603:1313306f260:-7911" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-46a41603:1313306f260:-7867" ordering="1" parent="-46a41603:1313306f260:-7911" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><SplitBlock id="-46a41603:1313306f260:-790e" parent="-46a41603:1313306f260:-791f" simulationFunctionType="DEFAULT" style="SPLIT_f;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="837.0" y="447.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="-46a41603:1313306f260:-790d" ordering="1" parent="-46a41603:1313306f260:-790e" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort connectable="0" dataType="UNKNOW_TYPE" id="-46a41603:1313306f260:-790c" ordering="1" parent="-46a41603:1313306f260:-790e" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-46a41603:1313306f260:-790b" ordering="2" parent="-46a41603:1313306f260:-790e" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><SplitBlock id="-46a41603:1313306f260:-7909" parent="-46a41603:1313306f260:-791f" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="637.0" y="207.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-46a41603:1313306f260:-7908" ordering="1" parent="-46a41603:1313306f260:-7909" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-46a41603:1313306f260:-7907" ordering="2" parent="-46a41603:1313306f260:-7909" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort connectable="0" dataType="UNKNOW_TYPE" id="-46a41603:1313306f260:-7906" ordering="1" parent="-46a41603:1313306f260:-7909" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><TextBlock id="-46a41603:1313306f260:-7904" parent="-46a41603:1313306f260:-791f" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;flip=false;mirror=false;fontColor=#DB1717" value="<html> <head> <style type="text/css"> <!-- body { color: #DB1717; font-family: Arial,Helvetica; font-weight: bold; font-size: 14 pt } --> </style> </head> <body> Reference Bus </body> </html> "><mxGeometry as="geometry" height="40.0" width="40.0" x="424.0" y="180.0"/></TextBlock><BasicBlock dependsOnU="1" id="-46a41603:1313306f260:-7903" interfaceFunctionName="Inductor" parent="-46a41603:1313306f260:-791f" simulationFunctionName="Inductor" simulationFunctionType="DEFAULT" style="Inductor"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="0.00025623945"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="2.5623945E-4"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Inductor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="L"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="2.5623945E-4"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="324.0" y="430.0"/></BasicBlock><ImplicitOutputPort connectable="0" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-46a41603:1313306f260:-7876" ordering="1" parent="-46a41603:1313306f260:-7903" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><ImplicitInputPort connectable="0" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-46a41603:1313306f260:-7877" ordering="1" parent="-46a41603:1313306f260:-7903" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="-46a41603:1313306f260:-7900" interfaceFunctionName="Inductor" parent="-46a41603:1313306f260:-791f" simulationFunctionName="Inductor" simulationFunctionType="DEFAULT" style="Inductor"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="0.00025623945"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="2.5623945E-4"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Inductor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="L"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="2.5623945E-4"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="554.0" y="430.0"/></BasicBlock><ImplicitOutputPort connectable="0" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-46a41603:1313306f260:-786e" ordering="1" parent="-46a41603:1313306f260:-7900" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><ImplicitInputPort connectable="0" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-46a41603:1313306f260:-786f" ordering="1" parent="-46a41603:1313306f260:-7900" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="-46a41603:1313306f260:-78fd" interfaceFunctionName="Inductor" parent="-46a41603:1313306f260:-791f" simulationFunctionName="Inductor" simulationFunctionType="DEFAULT" style="Inductor"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="0.0015724508"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="0.0015724508"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Inductor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="L"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0015724508"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="454.0" y="430.0"/></BasicBlock><ImplicitOutputPort connectable="0" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-46a41603:1313306f260:-786a" ordering="1" parent="-46a41603:1313306f260:-78fd" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><ImplicitInputPort connectable="0" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-46a41603:1313306f260:-786b" ordering="1" parent="-46a41603:1313306f260:-78fd" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitLink id="-46a41603:1313306f260:-78fa"><mxGeometry as="geometry" x="14.0" y="30.0"><mxPoint as="sourcePoint" x="368.0" y="450.0"/><mxPoint as="targetPoint" x="451.5" y="446.6666666666667"/></mxGeometry><mxCell as="parent" id="-46a41603:1313306f260:-791f" parent="-46a41603:1313306f260:-791e"/><ImplicitOutputPort as="source" connectable="0" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-46a41603:1313306f260:-7876" ordering="1" parent="-46a41603:1313306f260:-7903" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><ImplicitInputPort as="target" connectable="0" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-46a41603:1313306f260:-786b" ordering="1" parent="-46a41603:1313306f260:-78fd" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort></ImplicitLink><ImplicitLink id="-46a41603:1313306f260:-78f9"><mxGeometry as="geometry" x="14.0" y="30.0"><mxPoint as="sourcePoint" x="497.99999999999994" y="450.0"/><mxPoint as="targetPoint" x="548.7222222222223" y="453.61111111111114"/></mxGeometry><mxCell as="parent" id="-46a41603:1313306f260:-791f" parent="-46a41603:1313306f260:-791e"/><ImplicitOutputPort as="source" connectable="0" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-46a41603:1313306f260:-786a" ordering="1" parent="-46a41603:1313306f260:-78fd" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><ImplicitInputPort as="target" connectable="0" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-46a41603:1313306f260:-786f" ordering="1" parent="-46a41603:1313306f260:-7900" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort></ImplicitLink><SplitBlock id="-46a41603:1313306f260:-78f8" parent="-46a41603:1313306f260:-791f" simulationFunctionType="DEFAULT"><mxGeometry as="geometry" height="7.0" width="7.0" x="637.0" y="207.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="-46a41603:1313306f260:-78f7" ordering="1" parent="-46a41603:1313306f260:-78f8" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort connectable="0" dataType="UNKNOW_TYPE" id="-46a41603:1313306f260:-78f6" ordering="1" parent="-46a41603:1313306f260:-78f8" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort connectable="0" dataType="UNKNOW_TYPE" id="-46a41603:1313306f260:-78f5" ordering="2" parent="-46a41603:1313306f260:-78f8" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitLink id="-46a41603:1313306f260:-78f4"><mxGeometry as="geometry" x="14.0" y="20.0"><Array as="points" scilabClass=""/></mxGeometry><mxCell as="parent" id="-46a41603:1313306f260:-791f" parent="-46a41603:1313306f260:-791e"/><ImplicitOutputPort as="source" connectable="0" dataType="UNKNOW_TYPE" id="-46a41603:1313306f260:-78f6" ordering="1" parent="-46a41603:1313306f260:-78f8" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitInputPort as="target" connectable="0" dataType="UNKNOW_TYPE" id="-46a41603:1313306f260:-7906" ordering="1" parent="-46a41603:1313306f260:-7909" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort></ImplicitLink><SplitBlock id="-46a41603:1313306f260:-78f3" parent="-46a41603:1313306f260:-791f" simulationFunctionType="DEFAULT"><mxGeometry as="geometry" height="7.0" width="7.0" x="637.0" y="207.0"/></SplitBlock><ImplicitInputPort connectable="0" dataType="UNKNOW_TYPE" id="-46a41603:1313306f260:-78f2" ordering="1" parent="-46a41603:1313306f260:-78f3" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort connectable="0" dataType="UNKNOW_TYPE" id="-46a41603:1313306f260:-78f1" ordering="1" parent="-46a41603:1313306f260:-78f3" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort connectable="0" dataType="UNKNOW_TYPE" id="-46a41603:1313306f260:-78f0" ordering="2" parent="-46a41603:1313306f260:-78f3" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitLink id="-46a41603:1313306f260:-78ef"><mxGeometry as="geometry" x="14.0" y="20.0"><Array as="points" scilabClass=""/></mxGeometry><mxCell as="parent" id="-46a41603:1313306f260:-791f" parent="-46a41603:1313306f260:-791e"/><ImplicitOutputPort as="source" connectable="0" dataType="UNKNOW_TYPE" id="-46a41603:1313306f260:-78f5" ordering="2" parent="-46a41603:1313306f260:-78f8" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort as="target" connectable="0" dataType="UNKNOW_TYPE" id="-46a41603:1313306f260:-78f2" ordering="1" parent="-46a41603:1313306f260:-78f3" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort></ImplicitLink><TextBlock id="-46a41603:1313306f260:-78e5" parent="-46a41603:1313306f260:-791f" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;flip=false;mirror=false" value="<html> <head> <style type="text/css"> <!-- body { color: black; font-family: Arial,Helvetica; font-weight: bold; font-size: 22 pt } --> </style> </head> <body> j0.06 </body> </html> "><mxGeometry as="geometry" height="40.0" width="40.0" x="90.0" y="380.0"/></TextBlock><TextBlock id="-46a41603:1313306f260:-78e4" parent="-46a41603:1313306f260:-791f" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;flip=false;mirror=false" value="<html> <head> <style type="text/css"> <!-- body { color: black; font-family: Arial,Helvetica; font-weight: bold; font-size: 22 pt } --> </style> </head> <body> j0.0805 </body> </html> "><mxGeometry as="geometry" height="40.0" width="40.0" x="320.0" y="470.0"/></TextBlock><TextBlock id="-46a41603:1313306f260:-78e3" parent="-46a41603:1313306f260:-791f" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;flip=false;mirror=false" value="<html> <head> <style type="text/css"> <!-- body { color: black; font-family: Arial,Helvetica; font-weight: bold; font-size: 22 pt } --> </style> </head> <body> j0.494 </body> </html> "><mxGeometry as="geometry" height="40.0" width="40.0" x="450.0" y="470.0"/></TextBlock><TextBlock id="-46a41603:1313306f260:-78e2" parent="-46a41603:1313306f260:-791f" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;flip=false;mirror=false" value="<html> <head> <style type="text/css"> <!-- body { color: black; font-family: Arial,Helvetica; font-weight: bold; font-size: 22 pt } --> </style> </head> <body> j0.0805 </body> </html> "><mxGeometry as="geometry" height="40.0" width="40.0" x="550.0" y="470.0"/></TextBlock><TextBlock id="-46a41603:1313306f260:-78e1" parent="-46a41603:1313306f260:-791f" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;flip=false;mirror=false" value="<html> <head> <style type="text/css"> <!-- body { color: black; font-family: Arial,Helvetica; font-weight: bold; font-size: 22 pt } --> </style> </head> <body> j0.082 </body> </html> "><mxGeometry as="geometry" height="40.0" width="40.0" x="760.0" y="360.0"/></TextBlock><TextBlock id="-46a41603:1313306f260:-78e0" parent="-46a41603:1313306f260:-791f" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;flip=false;mirror=false;fontColor=#881515" value="<html> <head> <style type="text/css"> <!-- body { color: #881515; font-family: Arial,Helvetica; font-weight: bold; font-size: 22 pt } --> </style> </head> <body> d </body> </html> "><mxGeometry as="geometry" height="40.0" width="40.0" x="210.0" y="450.0"/></TextBlock><TextBlock id="-46a41603:1313306f260:-78df" parent="-46a41603:1313306f260:-791f" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;flip=false;mirror=false;fontColor=#881515" value="<html> <head> <style type="text/css"> <!-- body { color: #881515; font-family: Arial,Helvetica; font-weight: bold; font-size: 22 pt } --> </style> </head> <body> g </body> </html> "><mxGeometry as="geometry" height="40.0" width="40.0" x="690.0" y="450.0"/></TextBlock><TextBlock id="-46a41603:1313306f260:-78de" parent="-46a41603:1313306f260:-791f" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;flip=false;mirror=false;fontColor=#881515" value="<html> <head> <style type="text/css"> <!-- body { color: #881515; font-family: Arial,Helvetica; font-weight: bold; font-size: 22 pt } --> </style> </head> <body> f </body> </html> "><mxGeometry as="geometry" height="40.0" width="40.0" x="500.0" y="420.0"/></TextBlock><TextBlock id="-46a41603:1313306f260:-78dd" parent="-46a41603:1313306f260:-791f" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;flip=false;mirror=false;fontColor=#881515" value="<html> <head> <style type="text/css"> <!-- body { color: #881515; font-family: Arial,Helvetica; font-weight: bold; font-size: 22 pt } --> </style> </head> <body> e </body> </html> "><mxGeometry as="geometry" height="40.0" width="40.0" x="390.0" y="420.0"/></TextBlock><TextBlock id="-46a41603:1313306f260:-78dc" parent="-46a41603:1313306f260:-791f" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;flip=false;mirror=false;fontColor=#3885C1" value="<html> <head> <style type="text/css"> <!-- body { color: #3885C1; font-family: Arial,Helvetica; font-weight: bold; font-size: 22 pt } --> </style> </head> <body> Zero sequence network of Example 10.5 </body> </html> "><mxGeometry as="geometry" height="40.0" width="40.0" x="460.0" y="500.0"/></TextBlock><BasicBlock angle="90" dependsOnU="1" id="-46a41603:1313306f260:-78da" interfaceFunctionName="Inductor" parent="-46a41603:1313306f260:-791f" simulationFunctionName="Inductor" simulationFunctionType="DEFAULT" style="Inductor;rotation=90"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="0.004927437"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="0.004927437"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Inductor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="L"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.004927437"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="140.0" y="270.0"/></BasicBlock><ImplicitOutputPort connectable="0" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-46a41603:1313306f260:-787e" ordering="1" parent="-46a41603:1313306f260:-78da" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitInputPort connectable="0" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-46a41603:1313306f260:-787f" ordering="1" parent="-46a41603:1313306f260:-78da" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><SplitBlock id="-46a41603:1313306f260:-78d6" parent="-46a41603:1313306f260:-791f" simulationFunctionType="DEFAULT"><mxGeometry as="geometry" height="7.0" width="7.0" x="277.0" y="207.0"/></SplitBlock><ImplicitInputPort connectable="0" dataType="UNKNOW_TYPE" id="-46a41603:1313306f260:-78d5" ordering="1" parent="-46a41603:1313306f260:-78d6" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort connectable="0" dataType="UNKNOW_TYPE" id="-46a41603:1313306f260:-78d4" ordering="1" parent="-46a41603:1313306f260:-78d6" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort connectable="0" dataType="UNKNOW_TYPE" id="-46a41603:1313306f260:-78d3" ordering="2" parent="-46a41603:1313306f260:-78d6" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitLink id="-46a41603:1313306f260:-78d2"><mxGeometry as="geometry"><Array as="points" scilabClass=""><mxPoint x="280.2721893491124" y="209.3491124260355"/><mxPoint x="280.2721893491124" y="209.3491124260355"/></Array></mxGeometry><mxCell as="parent" id="-46a41603:1313306f260:-791f" parent="-46a41603:1313306f260:-791e"/><ImplicitOutputPort as="source" connectable="0" dataType="UNKNOW_TYPE" id="-46a41603:1313306f260:-78f1" ordering="1" parent="-46a41603:1313306f260:-78f3" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitInputPort as="target" connectable="0" dataType="UNKNOW_TYPE" id="-46a41603:1313306f260:-78d5" ordering="1" parent="-46a41603:1313306f260:-78d6" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort></ImplicitLink><ImplicitLink id="-46a41603:1313306f260:-78d1"><mxGeometry as="geometry"><Array as="points" scilabClass=""><mxPoint x="280.0" y="450.0"/></Array></mxGeometry><mxCell as="parent" id="-46a41603:1313306f260:-791f" parent="-46a41603:1313306f260:-791e"/><ImplicitOutputPort as="source" connectable="0" dataType="UNKNOW_TYPE" id="-46a41603:1313306f260:-78d4" ordering="1" parent="-46a41603:1313306f260:-78d6" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitInputPort as="target" connectable="0" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-46a41603:1313306f260:-7877" ordering="1" parent="-46a41603:1313306f260:-7903" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort></ImplicitLink><ImplicitLink id="-46a41603:1313306f260:-78d7"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="160.0" y="266.0"/><mxPoint as="targetPoint" x="280.0" y="210.0"/><Array as="points" scilabClass=""><mxPoint x="160.0" y="210.0"/></Array></mxGeometry><mxCell as="parent" id="-46a41603:1313306f260:-791f" parent="-46a41603:1313306f260:-791e"/><ImplicitOutputPort as="source" connectable="0" dataType="UNKNOW_TYPE" id="-46a41603:1313306f260:-78d3" ordering="2" parent="-46a41603:1313306f260:-78d6" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort as="target" connectable="0" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-46a41603:1313306f260:-787f" ordering="1" parent="-46a41603:1313306f260:-78da" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort></ImplicitLink><ImplicitLink id="-46a41603:1313306f260:-78d0"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="160.0" y="314.0"/><mxPoint as="targetPoint" x="160.0" y="380.0"/></mxGeometry><mxCell as="parent" id="-46a41603:1313306f260:-791f" parent="-46a41603:1313306f260:-791e"/><ImplicitOutputPort as="source" connectable="0" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-46a41603:1313306f260:-787e" ordering="1" parent="-46a41603:1313306f260:-78da" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitInputPort as="target" connectable="0" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-46a41603:1313306f260:-787b" ordering="1" parent="-46a41603:1313306f260:-791a" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort></ImplicitLink><BasicBlock angle="90" dependsOnU="1" id="-46a41603:1313306f260:-78a8" interfaceFunctionName="Inductor" parent="-46a41603:1313306f260:-791f" simulationFunctionName="Inductor" simulationFunctionType="DEFAULT" style="Inductor;rotation=90;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="0.00052202821"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="5.2202821E-4"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Inductor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="L"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.2202821E-4"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="820.0" y="350.0"/></BasicBlock><ImplicitOutputPort connectable="0" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-46a41603:1313306f260:-7862" ordering="1" parent="-46a41603:1313306f260:-78a8" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitInputPort connectable="0" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-46a41603:1313306f260:-7863" ordering="1" parent="-46a41603:1313306f260:-78a8" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock angle="90" dependsOnU="1" id="-46a41603:1313306f260:-78a5" interfaceFunctionName="Inductor" parent="-46a41603:1313306f260:-791f" simulationFunctionName="Inductor" simulationFunctionType="DEFAULT" style="Inductor;rotation=90;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="0.004927437"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="0.004927437"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Inductor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="L"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.004927437"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="820.0" y="260.0"/></BasicBlock><ImplicitOutputPort connectable="0" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-46a41603:1313306f260:-785e" ordering="1" parent="-46a41603:1313306f260:-78a5" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitInputPort connectable="0" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-46a41603:1313306f260:-785f" ordering="1" parent="-46a41603:1313306f260:-78a5" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><SplitBlock id="-46a41603:1313306f260:-789b" parent="-46a41603:1313306f260:-791f" simulationFunctionType="DEFAULT"><mxGeometry as="geometry" height="7.0" width="7.0" x="637.0" y="207.0"/></SplitBlock><ImplicitInputPort connectable="0" dataType="UNKNOW_TYPE" id="-46a41603:1313306f260:-789a" ordering="1" parent="-46a41603:1313306f260:-789b" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort connectable="0" dataType="UNKNOW_TYPE" id="-46a41603:1313306f260:-7899" ordering="1" parent="-46a41603:1313306f260:-789b" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort connectable="0" dataType="UNKNOW_TYPE" id="-46a41603:1313306f260:-7898" ordering="2" parent="-46a41603:1313306f260:-789b" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitLink id="-46a41603:1313306f260:-7897"><mxGeometry as="geometry"><Array as="points" scilabClass=""><mxPoint x="640.0" y="450.0"/></Array></mxGeometry><mxCell as="parent" id="-46a41603:1313306f260:-791f" parent="-46a41603:1313306f260:-791e"/><ImplicitOutputPort as="source" connectable="0" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-46a41603:1313306f260:-786e" ordering="1" parent="-46a41603:1313306f260:-7900" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><ImplicitInputPort as="target" connectable="0" dataType="UNKNOW_TYPE" id="-46a41603:1313306f260:-789a" ordering="1" parent="-46a41603:1313306f260:-789b" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort></ImplicitLink><ImplicitLink id="-46a41603:1313306f260:-7896"><mxGeometry as="geometry"><Array as="points" scilabClass=""/></mxGeometry><mxCell as="parent" id="-46a41603:1313306f260:-791f" parent="-46a41603:1313306f260:-791e"/><ImplicitOutputPort as="source" connectable="0" dataType="UNKNOW_TYPE" id="-46a41603:1313306f260:-78f0" ordering="2" parent="-46a41603:1313306f260:-78f3" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitOutputPort as="target" connectable="0" dataType="UNKNOW_TYPE" id="-46a41603:1313306f260:-7899" ordering="1" parent="-46a41603:1313306f260:-789b" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort></ImplicitLink><ImplicitLink id="-46a41603:1313306f260:-789c"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="839.9999999999999" y="226.00000000000003"/><mxPoint as="targetPoint" x="641.0256410256411" y="213.67521367521368"/><Array as="points" scilabClass=""><mxPoint x="840.0" y="210.0"/></Array></mxGeometry><mxCell as="parent" id="-46a41603:1313306f260:-791f" parent="-46a41603:1313306f260:-791e"/><ImplicitOutputPort as="source" connectable="0" dataType="UNKNOW_TYPE" id="-46a41603:1313306f260:-7898" ordering="2" parent="-46a41603:1313306f260:-789b" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort as="target" connectable="0" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-46a41603:1313306f260:-785f" ordering="1" parent="-46a41603:1313306f260:-78a5" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort></ImplicitLink><ImplicitLink id="-46a41603:1313306f260:-788e"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="839.9999999999999" y="316.0"/><mxPoint as="targetPoint" x="840.5797101449276" y="282.60869565217394"/></mxGeometry><mxCell as="parent" id="-46a41603:1313306f260:-791f" parent="-46a41603:1313306f260:-791e"/><ImplicitOutputPort as="source" connectable="0" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-46a41603:1313306f260:-785e" ordering="1" parent="-46a41603:1313306f260:-78a5" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitInputPort as="target" connectable="0" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-46a41603:1313306f260:-7863" ordering="1" parent="-46a41603:1313306f260:-78a8" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort></ImplicitLink><SplitBlock id="-46a41603:1313306f260:-788c" parent="-46a41603:1313306f260:-791f" simulationFunctionType="DEFAULT"><mxGeometry as="geometry" height="7.0" width="7.0" x="707.0" y="447.0"/></SplitBlock><ImplicitInputPort connectable="0" dataType="UNKNOW_TYPE" id="-46a41603:1313306f260:-788b" ordering="1" parent="-46a41603:1313306f260:-788c" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort connectable="0" dataType="UNKNOW_TYPE" id="-46a41603:1313306f260:-788a" ordering="1" parent="-46a41603:1313306f260:-788c" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort connectable="0" dataType="UNKNOW_TYPE" id="-46a41603:1313306f260:-7889" ordering="2" parent="-46a41603:1313306f260:-788c" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitLink id="-46a41603:1313306f260:-7888"><mxGeometry as="geometry"><Array as="points" scilabClass=""><mxPoint x="730.0" y="450.0"/></Array></mxGeometry><mxCell as="parent" id="-46a41603:1313306f260:-791f" parent="-46a41603:1313306f260:-791e"/><ImplicitOutputPort as="source" connectable="0" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-46a41603:1313306f260:-7866" ordering="1" parent="-46a41603:1313306f260:-7911" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitInputPort as="target" connectable="0" dataType="UNKNOW_TYPE" id="-46a41603:1313306f260:-788b" ordering="1" parent="-46a41603:1313306f260:-788c" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort></ImplicitLink><ImplicitLink id="-46a41603:1313306f260:-7887"><mxGeometry as="geometry"><Array as="points" scilabClass=""/></mxGeometry><mxCell as="parent" id="-46a41603:1313306f260:-791f" parent="-46a41603:1313306f260:-791e"/><ImplicitOutputPort as="source" connectable="0" dataType="UNKNOW_TYPE" id="-46a41603:1313306f260:-790c" ordering="1" parent="-46a41603:1313306f260:-790e" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort as="target" connectable="0" dataType="UNKNOW_TYPE" id="-46a41603:1313306f260:-788a" ordering="1" parent="-46a41603:1313306f260:-788c" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort></ImplicitLink><ImplicitLink id="-46a41603:1313306f260:-788d"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="839.9999999999999" y="364.0"/><mxPoint as="targetPoint" x="797.1014492753624" y="449.2753623188406"/><Array as="points" scilabClass=""><mxPoint x="840.0" y="450.0"/></Array></mxGeometry><mxCell as="parent" id="-46a41603:1313306f260:-791f" parent="-46a41603:1313306f260:-791e"/><ImplicitOutputPort as="source" connectable="0" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-46a41603:1313306f260:-7862" ordering="1" parent="-46a41603:1313306f260:-78a8" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitOutputPort as="target" connectable="0" dataType="UNKNOW_TYPE" id="-46a41603:1313306f260:-7889" ordering="2" parent="-46a41603:1313306f260:-788c" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort></ImplicitLink><TextBlock id="-46a41603:1313306f260:-785b" parent="-46a41603:1313306f260:-791f" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;flip=false;mirror=false" value="<html> <head> <style type="text/css"> <!-- body { color: black; font-family: Arial,Helvetica; font-weight: bold; font-size: 22 pt } --> </style> </head> <body> j1.548 </body> </html> "><mxGeometry as="geometry" height="40.0" width="40.0" x="90.0" y="270.0"/></TextBlock><TextBlock id="-46a41603:1313306f260:-784d" parent="-46a41603:1313306f260:-791f" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;flip=false;mirror=false;fontColor=#881515" value="<html> <head> <style type="text/css"> <!-- body { color: #881515; font-family: Arial,Helvetica; font-weight: bold; font-size: 22 pt } --> </style> </head> <body> q </body> </html> "><mxGeometry as="geometry" height="40.0" width="40.0" x="820.0" y="450.0"/></TextBlock><TextBlock id="-46a41603:1313306f260:-784a" parent="-46a41603:1313306f260:-791f" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;flip=false;mirror=false" value="<html> <head> <style type="text/css"> <!-- body { color: black; font-family: Arial,Helvetica; font-weight: bold; font-size: 22 pt } --> </style> </head> <body> j0.164 </body> </html> "><mxGeometry as="geometry" height="40.0" width="40.0" x="870.0" y="350.0"/></TextBlock><TextBlock id="-46a41603:1313306f260:-7848" parent="-46a41603:1313306f260:-791f" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;flip=false;mirror=false" value="<html> <head> <style type="text/css"> <!-- body { color: black; font-family: Arial,Helvetica; font-weight: bold; font-size: 22 pt } --> </style> </head> <body> j1.548 </body> </html> "><mxGeometry as="geometry" height="40.0" width="40.0" x="870.0" y="260.0"/></TextBlock></root></mxGraphModel><mxCell as="defaultParent" id="-46a41603:1313306f260:-791f" parent="-46a41603:1313306f260:-791e"/></XcosDiagram>
\ No newline at end of file diff --git a/Working_Examples/83/CH10/EX10.4/result_example_10_4.txt b/Working_Examples/83/CH10/EX10.4/result_example_10_4.txt new file mode 100755 index 0000000..93df320 --- /dev/null +++ b/Working_Examples/83/CH10/EX10.4/result_example_10_4.txt @@ -0,0 +1,14 @@ + + + +Transformer zero sequence reactance = 0.0805 pu +Generator zero sequence reactances = 0.06 pu +Zero sequence reactance of motor 1 = 0.083 pu +Zero sequence reactance of motor 2 = 0.165 pu +Reactance of current limiting reactors = 1.550 pu +Zero sequence reactance of transmission line = 0.494 pu + + + Zero sequence diagram has been drawn using XCOS,simulation has + not been done as it is not being asked in the problem + diff --git a/Working_Examples/83/CH11/EX11.1/example_11_1.sce b/Working_Examples/83/CH11/EX11.1/example_11_1.sce new file mode 100755 index 0000000..04e6f41 --- /dev/null +++ b/Working_Examples/83/CH11/EX11.1/example_11_1.sce @@ -0,0 +1,20 @@ +//Chapter 11 +//Example 11.1 +//page 406 +//To draw sequence networks of generator and to compare LG fault current will be greater than three-phase fault current when neutral is solidly grounded +clear;clc; + +disp("Sequence networks of synchronous generator grounded through neutral impedance has been drawn using XCOS "); + +disp("Since the derivation can not be done here, let us do this problem by taking a suitable values for the sequence reactances of the generator"); + +disp("X1=j0.18, X2=j0.15, X0=j0.10 pu and Ea=1"); + +disp("From the figs 11.13 and 11.14 in the textbook,we can find Ilg and I3L"); + +Ea=1;X1=0.18*%i;X2=0.15*%i;X0=0.10*%i; + +IaLG=3*Ea/(2*X1+X0) +Ia3L=3*Ea/(3*X1) + +disp("Same values of sequence impedance have been used in XCOS simulation also to varify the result"); diff --git a/Working_Examples/83/CH11/EX11.1/example_11_1.xcos b/Working_Examples/83/CH11/EX11.1/example_11_1.xcos new file mode 100755 index 0000000..17bcda9 --- /dev/null +++ b/Working_Examples/83/CH11/EX11.1/example_11_1.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" finalIntegrationTime="0.25" title="example_11_1"><!--Xcos - 1.0 - scilab-5.5.2 - 20160406 2040--><mxGraphModel as="model"><root><mxCell id="67e02cde:13157ae1f65:-7fff"/><mxCell id="67e02cde:13157ae1f65:-8000" parent="67e02cde:13157ae1f65:-7fff"/><BasicBlock angle="90" dependsOnU="1" id="67e02cde:13157ae1f65:-7fd1" interfaceFunctionName="Inductor" ordering="1" parent="67e02cde:13157ae1f65:-8000" simulationFunctionName="Inductor" simulationFunctionType="DEFAULT" style="Inductor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="0.00047746482"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="4.7746482E-4"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Inductor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="L"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.7746482E-4"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="120.0" y="360.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="67e02cde:13157ae1f65:-7f60" ordering="1" parent="67e02cde:13157ae1f65:-7fd1" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="67e02cde:13157ae1f65:-7f61" ordering="1" parent="67e02cde:13157ae1f65:-7fd1" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock angle="90" dependsOnU="1" id="67e02cde:13157ae1f65:-7fce" interfaceFunctionName="Inductor" ordering="2" parent="67e02cde:13157ae1f65:-8000" simulationFunctionName="Inductor" simulationFunctionType="DEFAULT" style="Inductor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="0.00031830988"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="3.1830988E-4"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Inductor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="L"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="3.1830988E-4"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="170.0" y="520.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="67e02cde:13157ae1f65:-7f5c" ordering="1" parent="67e02cde:13157ae1f65:-7fce" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="67e02cde:13157ae1f65:-7f5d" ordering="1" parent="67e02cde:13157ae1f65:-7fce" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock angle="90" dependsOnU="1" id="67e02cde:13157ae1f65:-7fcb" interfaceFunctionName="Inductor" ordering="3" parent="67e02cde:13157ae1f65:-8000" simulationFunctionName="Inductor" simulationFunctionType="DEFAULT" style="Inductor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="0.0000"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Inductor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="L"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="170.0" y="600.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="67e02cde:13157ae1f65:-7f58" ordering="1" parent="67e02cde:13157ae1f65:-7fcb" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="67e02cde:13157ae1f65:-7f59" ordering="1" parent="67e02cde:13157ae1f65:-7fcb" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitLink id="67e02cde:13157ae1f65:-7fb6" parent="67e02cde:13157ae1f65:-8000" source="67e02cde:13157ae1f65:-7f68" target="67e02cde:13157ae1f65:-7f65"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="110.0" y="164.0"/><mxPoint as="targetPoint" x="110.0" y="220.0"/></mxGeometry></ImplicitLink><ImplicitLink id="67e02cde:13157ae1f65:-7fb5" parent="67e02cde:13157ae1f65:-8000" source="67e02cde:13157ae1f65:-7f64" target="67e02cde:13157ae1f65:-7f61"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="110.0" y="264.0"/><mxPoint as="targetPoint" x="140.0" y="320.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="110.0" y="310.0"/><mxPoint x="140.0" y="310.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="67e02cde:13157ae1f65:-7fb4" parent="67e02cde:13157ae1f65:-8000" source="67e02cde:13157ae1f65:-7f60" target="67e02cde:13157ae1f65:-7f5d"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="140.0" y="374.0"/><mxPoint as="targetPoint" x="190.0" y="480.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="140.0" y="460.0"/><mxPoint x="190.0" y="460.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="67e02cde:13157ae1f65:-7fb3" parent="67e02cde:13157ae1f65:-8000" source="67e02cde:13157ae1f65:-7f5c" target="67e02cde:13157ae1f65:-7f59"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="190.0" y="534.0"/><mxPoint as="targetPoint" x="190.0" y="620.0"/></mxGeometry></ImplicitLink><GroundBlock dependsOnU="1" id="67e02cde:13157ae1f65:-7fac" interfaceFunctionName="Ground" ordering="4" parent="67e02cde:13157ae1f65:-8000" simulationFunctionName="Ground" simulationFunctionType="DEFAULT" style="Ground;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Ground"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="10.0" y="60.0"/></GroundBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="67e02cde:13157ae1f65:-7fab" ordering="1" parent="67e02cde:13157ae1f65:-7fac" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><Orientation as="orientation" value="NORTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock angle="90" dependsOnU="1" id="67e02cde:13157ae1f65:-7fde" interfaceFunctionName="SineVoltage" ordering="5" parent="67e02cde:13157ae1f65:-8000" simulationFunctionName="SineVoltage" simulationFunctionType="DEFAULT" style="SineVoltage;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="5" width="1"><data column="0" line="0" value="4.242"/><data column="0" line="1" value="0"/><data column="0" line="2" value="50"/><data column="0" line="3" value="0"/><data column="0" line="4" value="0"/></ScilabString><ScilabDouble as="realParameters" height="5" width="1"><data column="0" line="0" realPart="4.242"/><data column="0" line="1" realPart="0.0"/><data column="0" line="2" realPart="50.0"/><data column="0" line="3" realPart="0.0"/><data column="0" line="4" realPart="0.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="SineVoltage"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="5" width="1"><data column="0" line="0" value="V"/><data column="0" line="1" value="phase"/><data column="0" line="2" value="freqHz"/><data column="0" line="3" value="offset"/><data column="0" line="4" value="startTime"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.242"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="50.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="60.0" width="50.0" x="90.0" y="100.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="67e02cde:13157ae1f65:-7f68" ordering="1" parent="67e02cde:13157ae1f65:-7fde" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="60.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="67e02cde:13157ae1f65:-7f69" ordering="1" parent="67e02cde:13157ae1f65:-7fde" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock angle="270" dependsOnU="1" id="67e02cde:13157ae1f65:-7f4c" interfaceFunctionName="CurrentSensor" ordering="6" parent="67e02cde:13157ae1f65:-8000" simulationFunctionName="CurrentSensor" simulationFunctionType="DEFAULT" style="CurrentSensor;rotation=270;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CurrentSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="i"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="310.0" y="370.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="67e02cde:13157ae1f65:-7f4a" ordering="2" parent="67e02cde:13157ae1f65:-7f4c" style="ExplicitOutputPort;align=center;verticalAlign=top;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="26.0" y="-8.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="67e02cde:13157ae1f65:-7f49" ordering="1" parent="67e02cde:13157ae1f65:-7f4c" style="ImplicitInputPort;align=center;verticalAlign=bottom;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="67e02cde:13157ae1f65:-7f4b" ordering="1" parent="67e02cde:13157ae1f65:-7f4c" style="ImplicitOutputPort;align=center;verticalAlign=top;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="6.0" y="-8.0"/></ImplicitOutputPort><ImplicitLink id="67e02cde:13157ae1f65:-7f39" parent="67e02cde:13157ae1f65:-8000" source="67e02cde:13157ae1f65:-7f58" target="67e02cde:13157ae1f65:-7f49"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="190.0" y="664.0"/><mxPoint as="targetPoint" x="330.0" y="420.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="190.0" y="680.0"/><mxPoint x="330.0" y="680.0"/></Array></mxGeometry></ImplicitLink><BasicBlock angle="90" dependsOnU="1" id="67e02cde:13157ae1f65:-7f35" interfaceFunctionName="SineVoltage" ordering="7" parent="67e02cde:13157ae1f65:-8000" simulationFunctionName="SineVoltage" simulationFunctionType="DEFAULT" style="SineVoltage;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="5" width="1"><data column="0" line="0" value="4.242"/><data column="0" line="1" value="0"/><data column="0" line="2" value="50"/><data column="0" line="3" value="0"/><data column="0" line="4" value="0"/></ScilabString><ScilabDouble as="realParameters" height="5" width="1"><data column="0" line="0" realPart="4.242"/><data column="0" line="1" realPart="0.0"/><data column="0" line="2" realPart="50.0"/><data column="0" line="3" realPart="0.0"/><data column="0" line="4" realPart="0.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="SineVoltage"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="5" width="1"><data column="0" line="0" value="V"/><data column="0" line="1" value="phase"/><data column="0" line="2" value="freqHz"/><data column="0" line="3" value="offset"/><data column="0" line="4" value="startTime"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.242"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="50.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="60.0" width="50.0" x="740.0" y="290.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="67e02cde:13157ae1f65:-7f33" ordering="1" parent="67e02cde:13157ae1f65:-7f35" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="60.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="67e02cde:13157ae1f65:-7f34" ordering="1" parent="67e02cde:13157ae1f65:-7f35" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock angle="90" dependsOnU="1" id="67e02cde:13157ae1f65:-7f2c" interfaceFunctionName="Inductor" ordering="8" parent="67e02cde:13157ae1f65:-8000" simulationFunctionName="Inductor" simulationFunctionType="DEFAULT" style="Inductor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="0.0017188733"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="0.0017188733"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Inductor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="L"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0017188733"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="740.0" y="400.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="67e02cde:13157ae1f65:-7f24" ordering="1" parent="67e02cde:13157ae1f65:-7f2c" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="67e02cde:13157ae1f65:-7f25" ordering="1" parent="67e02cde:13157ae1f65:-7f2c" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock angle="180" dependsOnU="1" id="67e02cde:13157ae1f65:-7f1d" interfaceFunctionName="CurrentSensor" ordering="9" parent="67e02cde:13157ae1f65:-8000" simulationFunctionName="CurrentSensor" simulationFunctionType="DEFAULT" style="CurrentSensor;rotation=180;mirror=false;flip=true"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CurrentSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="i"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="630.0" y="350.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="67e02cde:13157ae1f65:-7f1b" ordering="2" parent="67e02cde:13157ae1f65:-7f1d" style="ExplicitOutputPort;align=left;verticalAlign=middle;spacing=10;rotation=180;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="26.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="67e02cde:13157ae1f65:-7f1a" ordering="1" parent="67e02cde:13157ae1f65:-7f1d" style="ImplicitInputPort;align=right;verticalAlign=middle;spacing=10;rotation=180;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="67e02cde:13157ae1f65:-7f1c" ordering="1" parent="67e02cde:13157ae1f65:-7f1d" style="ImplicitOutputPort;align=left;verticalAlign=middle;spacing=10;rotation=180;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ImplicitOutputPort><GroundBlock dependsOnU="1" id="67e02cde:13157ae1f65:-7f13" interfaceFunctionName="Ground" ordering="10" parent="67e02cde:13157ae1f65:-8000" simulationFunctionName="Ground" simulationFunctionType="DEFAULT" style="Ground;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Ground"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="850.0" y="280.0"/></GroundBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="67e02cde:13157ae1f65:-7f12" ordering="1" parent="67e02cde:13157ae1f65:-7f13" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><Orientation as="orientation" value="NORTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitLink id="67e02cde:13157ae1f65:-7efc" parent="67e02cde:13157ae1f65:-8000" source="67e02cde:13157ae1f65:-7f33" target="67e02cde:13157ae1f65:-7f25"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="760.0" y="426.0"/><mxPoint as="targetPoint" x="760.0" y="360.0"/></mxGeometry></ImplicitLink><ImplicitLink id="67e02cde:13157ae1f65:-7ed7" parent="67e02cde:13157ae1f65:-8000" source="67e02cde:13157ae1f65:-7f24" target="67e02cde:13157ae1f65:-7f1a"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="674.0" y="370.0"/><mxPoint as="targetPoint" x="760.0" y="470.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="760.0" y="500.0"/><mxPoint x="700.0" y="500.0"/><mxPoint x="700.0" y="370.0"/></Array></mxGeometry></ImplicitLink><BasicBlock angle="90" dependsOnU="1" id="67e02cde:13157ae1f65:-7ecd" interfaceFunctionName="CMSCOPE" ordering="11" parent="67e02cde:13157ae1f65:-8000" simulationFunctionName="cmscope" simulationFunctionType="C_OR_FORTRAN" style="CMSCOPE;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="11" width="1"><data column="0" line="0" value="1 1"/><data column="0" line="1" value="1 3 5 7 9 11 13 15"/><data column="0" line="2" value="-1"/><data column="0" line="3" value="[]"/><data column="0" line="4" value="[]"/><data column="0" line="5" value="-15 -15"/><data column="0" line="6" value="15 15"/><data column="0" line="7" value="0.250 0.250"/><data column="0" line="8" value="2"/><data column="0" line="9" value="0"/><data column="0" line="10" value="Fault current in LG and 3Phase faults"/></ScilabString><ScilabDouble as="realParameters" height="7" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="0.25"/><data column="0" line="2" realPart="0.25"/><data column="0" line="3" realPart="-15.0"/><data column="0" line="4" realPart="15.0"/><data column="0" line="5" realPart="-15.0"/><data column="0" line="6" realPart="15.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="12" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="2.0"/><data column="0" line="2" realPart="2.0"/><data column="0" line="3" realPart="-1.0"/><data column="0" line="4" realPart="-1.0"/><data column="0" line="5" realPart="-1.0"/><data column="0" line="6" realPart="-1.0"/><data column="0" line="7" realPart="1.0"/><data column="0" line="8" realPart="1.0"/><data column="0" line="9" realPart="1.0"/><data column="0" line="10" realPart="3.0"/><data column="0" line="11" realPart="0.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="470.0" y="490.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="67e02cde:13157ae1f65:-7e38" ordering="1" parent="67e02cde:13157ae1f65:-7ecd" style="ExplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="6.0" y="-8.0"/></ExplicitInputPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="67e02cde:13157ae1f65:-7e37" ordering="2" parent="67e02cde:13157ae1f65:-7ecd" style="ExplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="26.0" y="-8.0"/></ExplicitInputPort><ControlPort dataType="UNKNOW_TYPE" id="67e02cde:13157ae1f65:-7e36" ordering="1" parent="67e02cde:13157ae1f65:-7ecd" style="ControlPort;align=right;verticalAlign=middle;spacing=10;rotation=180;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ControlPort><BasicBlock angle="90" blockType="h" id="67e02cde:13157ae1f65:-7ec4" interfaceFunctionName="CLOCK_c" ordering="12" parent="67e02cde:13157ae1f65:-8000" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;rotation=90;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="119.0"/><data column="1" line="0" realPart="-150.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="18756eea:131b9e5142d:-7f69"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="18756eea:131b9e5142d:-7f69"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.0001"/><data column="0" line="1" value="0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="1.0E-4"/><data column="0" line="1" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="18756eea:131b9e5142d:-7f65"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="18756eea:131b9e5142d:-7f65"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="124.71066000000002"/><data column="1" line="0" realPart="-164.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="8.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="4.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="18756eea:131b9e5142d:-7f60"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="18756eea:131b9e5142d:-7f60"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="106.0"/><data column="0" line="2" realPart="135.37732666666668"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="4.0"/><data column="0" line="1" realPart="-204.0"/><data column="0" line="2" realPart="-168.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="136.71066000000002"/><data column="0" line="1" realPart="149.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-152.0"/><data column="0" line="1" realPart="-126.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="138.04399333333336"/><data column="0" line="1" realPart="151.70999999999998"/><data column="0" line="2" realPart="111.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-168.0"/><data column="0" line="1" realPart="-58.0"/><data column="0" line="2" realPart="-58.0"/><data column="0" line="3" realPart="-44.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="590.0" y="490.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="67e02cde:13157ae1f65:-7eaf" ordering="1" parent="67e02cde:13157ae1f65:-7ec4" style="CommandPort;align=left;verticalAlign=middle;spacing=10;rotation=180;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></CommandPort><CommandControlLink id="67e02cde:13157ae1f65:-7eb8" parent="67e02cde:13157ae1f65:-8000" source="67e02cde:13157ae1f65:-7eaf" target="67e02cde:13157ae1f65:-7e36"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="514.0" y="510.0"/><mxPoint as="targetPoint" x="590.0" y="510.0"/></mxGeometry></CommandControlLink><ExplicitLink id="67e02cde:13157ae1f65:-7eb7" parent="67e02cde:13157ae1f65:-8000" source="67e02cde:13157ae1f65:-7f4a" target="67e02cde:13157ae1f65:-7e38"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="480.0" y="486.0"/><mxPoint as="targetPoint" x="340.0" y="370.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="340.0" y="330.0"/><mxPoint x="480.0" y="330.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="67e02cde:13157ae1f65:-7eb6" parent="67e02cde:13157ae1f65:-8000" source="67e02cde:13157ae1f65:-7f1b" target="67e02cde:13157ae1f65:-7e37"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="500.0" y="486.0"/><mxPoint as="targetPoint" x="620.0" y="380.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="500.0" y="380.0"/></Array></mxGeometry></ExplicitLink><BasicBlock angle="270" dependsOnU="1" id="67e02cde:13157ae1f65:-7e98" interfaceFunctionName="Switch" ordering="13" parent="67e02cde:13157ae1f65:-8000" simulationFunctionName="Switch" simulationFunctionType="DEFAULT" style="Switch;rotation=270;flip=false;mirror=false"><ScilabString as="exprs" height="2" width="1"><data column="0" line="0" value="0.01"/><data column="0" line="1" value="100000"/></ScilabString><ScilabDouble as="realParameters" height="2" width="1"><data column="0" line="0" realPart="0.01"/><data column="0" line="1" realPart="100000.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Switch"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="p"/><data column="0" line="1" value="inp"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="2" width="1"><data column="0" line="0" value="Ron"/><data column="0" line="1" value="Roff"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.01"/><data column="0" line="1" realPart="100000.0"/></ScilabDouble></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="310.0" y="170.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="67e02cde:13157ae1f65:-7e96" ordering="1" parent="67e02cde:13157ae1f65:-7e98" style="ImplicitInputPort;align=center;verticalAlign=bottom;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="6.0" y="40.0"/></ImplicitInputPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="67e02cde:13157ae1f65:-7e95" ordering="2" parent="67e02cde:13157ae1f65:-7e98" style="ExplicitInputPort;align=center;verticalAlign=bottom;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="26.0" y="40.0"/></ExplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="67e02cde:13157ae1f65:-7e97" ordering="1" parent="67e02cde:13157ae1f65:-7e98" style="ImplicitOutputPort;align=center;verticalAlign=top;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitOutputPort><BasicBlock angle="270" blockType="h" id="67e02cde:13157ae1f65:-7e8f" interfaceFunctionName="STEP_FUNCTION" ordering="14" parent="67e02cde:13157ae1f65:-8000" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="STEP_FUNCTION;rotation=270;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="STEP_FUNCTION"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-4"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="14.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=" "/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="3" width="1"><data column="0" line="0" value="0.005"/><data column="0" line="1" value="-2"/><data column="0" line="2" value="5"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"STEP",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="STEP"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="step_func"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-2.0"/><data column="0" line="1" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.005"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="true"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="18756eea:131b9e5142d:-7f55"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="STEP"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="18756eea:131b9e5142d:-7f55"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="108.57143300000001"/><data column="1" line="0" realPart="-70.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"OUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="OUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-2.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="18756eea:131b9e5142d:-7f52"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="OUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="18756eea:131b9e5142d:-7f52"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="6" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="116.00000299999998"/><data column="0" line="2" realPart="77.47839499999999"/><data column="0" line="3" realPart="77.47839499999999"/><data column="0" line="4" realPart="116.00000299999998"/><data column="0" line="5" realPart="60.0"/></ScilabDouble><ScilabDouble height="6" width="1"><data column="0" line="0" realPart="4.0"/><data column="0" line="1" realPart="-174.39289999999994"/><data column="0" line="2" realPart="-174.39289999999994"/><data column="0" line="3" realPart="-84.69677999999999"/><data column="0" line="4" realPart="-84.69677999999999"/><data column="0" line="5" realPart="-44.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="84.0"/><data column="0" line="1" realPart="124.57143300000001"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-20.0"/><data column="0" line="1" realPart="-60.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="390.0" y="260.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataType="REAL_MATRIX" id="67e02cde:13157ae1f65:-7e40" ordering="1" parent="67e02cde:13157ae1f65:-7e8f" style="ExplicitOutputPort;align=center;verticalAlign=top;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ExplicitOutputPort><BasicBlock angle="180" dependsOnU="1" id="67e02cde:13157ae1f65:-7e83" interfaceFunctionName="Switch" ordering="15" parent="67e02cde:13157ae1f65:-8000" simulationFunctionName="Switch" simulationFunctionType="DEFAULT" style="Switch;rotation=180;mirror=true;flip=false"><ScilabString as="exprs" height="2" width="1"><data column="0" line="0" value="0.01"/><data column="0" line="1" value="100000"/></ScilabString><ScilabDouble as="realParameters" height="2" width="1"><data column="0" line="0" realPart="0.01"/><data column="0" line="1" realPart="100000.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Switch"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="p"/><data column="0" line="1" value="inp"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="2" width="1"><data column="0" line="0" value="Ron"/><data column="0" line="1" value="Roff"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.01"/><data column="0" line="1" realPart="100000.0"/></ScilabDouble></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="600.0" y="220.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="67e02cde:13157ae1f65:-7e81" ordering="1" parent="67e02cde:13157ae1f65:-7e83" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ImplicitInputPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="67e02cde:13157ae1f65:-7e80" ordering="2" parent="67e02cde:13157ae1f65:-7e83" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="26.0"/></ExplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="67e02cde:13157ae1f65:-7e82" ordering="1" parent="67e02cde:13157ae1f65:-7e83" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><ImplicitLink id="67e02cde:13157ae1f65:-7e6f" parent="67e02cde:13157ae1f65:-8000" source="67e02cde:13157ae1f65:-7f1c" target="67e02cde:13157ae1f65:-7e81"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="596.0" y="250.0"/><mxPoint as="targetPoint" x="630.0" y="360.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="550.0" y="360.0"/><mxPoint x="550.0" y="230.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="67e02cde:13157ae1f65:-7e6d" ordering="16" parent="67e02cde:13157ae1f65:-8000" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="757.0" y="237.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="67e02cde:13157ae1f65:-7e6b" ordering="1" parent="67e02cde:13157ae1f65:-7e6d" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="67e02cde:13157ae1f65:-7e6a" ordering="2" parent="67e02cde:13157ae1f65:-7e6d" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="67e02cde:13157ae1f65:-7e6c" ordering="1" parent="67e02cde:13157ae1f65:-7e6d" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="67e02cde:13157ae1f65:-7e69" parent="67e02cde:13157ae1f65:-8000" source="67e02cde:13157ae1f65:-7f34" target="67e02cde:13157ae1f65:-7e6c"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="67e02cde:13157ae1f65:-7e68" parent="67e02cde:13157ae1f65:-8000" source="67e02cde:13157ae1f65:-7e6b" target="67e02cde:13157ae1f65:-7f12"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="760.0" y="240.0"/><mxPoint x="870.0" y="240.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="67e02cde:13157ae1f65:-7e6e" parent="67e02cde:13157ae1f65:-8000" source="67e02cde:13157ae1f65:-7e82" target="67e02cde:13157ae1f65:-7e6a"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="644.0" y="260.0"/><mxPoint as="targetPoint" x="760.0" y="260.0"/></mxGeometry></ImplicitLink><ImplicitLink id="67e02cde:13157ae1f65:-7e54" parent="67e02cde:13157ae1f65:-8000" source="67e02cde:13157ae1f65:-7f4b" target="67e02cde:13157ae1f65:-7e96"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="320.0" y="214.0"/><mxPoint as="targetPoint" x="320.0" y="370.0"/></mxGeometry></ImplicitLink><SplitBlock id="67e02cde:13157ae1f65:-7e52" ordering="17" parent="67e02cde:13157ae1f65:-8000" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="107.0" y="37.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="67e02cde:13157ae1f65:-7e50" ordering="1" parent="67e02cde:13157ae1f65:-7e52" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="67e02cde:13157ae1f65:-7e4f" ordering="2" parent="67e02cde:13157ae1f65:-7e52" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="67e02cde:13157ae1f65:-7e51" ordering="1" parent="67e02cde:13157ae1f65:-7e52" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="67e02cde:13157ae1f65:-7e4e" parent="67e02cde:13157ae1f65:-8000" source="67e02cde:13157ae1f65:-7f69" target="67e02cde:13157ae1f65:-7e51"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="67e02cde:13157ae1f65:-7e4d" parent="67e02cde:13157ae1f65:-8000" source="67e02cde:13157ae1f65:-7e50" target="67e02cde:13157ae1f65:-7fab"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="30.0" y="40.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="67e02cde:13157ae1f65:-7e53" parent="67e02cde:13157ae1f65:-8000" source="67e02cde:13157ae1f65:-7e97" target="67e02cde:13157ae1f65:-7e4f"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="330.0" y="166.0"/><mxPoint as="targetPoint" x="110.0" y="40.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="330.0" y="40.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="67e02cde:13157ae1f65:-7e4a" ordering="18" parent="67e02cde:13157ae1f65:-8000" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="407.0" y="237.0"/></SplitBlock><ExplicitOutputPort dataType="UNKNOW_TYPE" id="67e02cde:13157ae1f65:-7e48" ordering="1" parent="67e02cde:13157ae1f65:-7e4a" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="67e02cde:13157ae1f65:-7e47" ordering="2" parent="67e02cde:13157ae1f65:-7e4a" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ExplicitOutputPort><ExplicitInputPort dataType="UNKNOW_TYPE" id="67e02cde:13157ae1f65:-7e49" ordering="1" parent="67e02cde:13157ae1f65:-7e4a" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ExplicitInputPort><ExplicitLink id="67e02cde:13157ae1f65:-7e46" parent="67e02cde:13157ae1f65:-8000" source="67e02cde:13157ae1f65:-7e40" target="67e02cde:13157ae1f65:-7e49"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ExplicitLink><ExplicitLink id="67e02cde:13157ae1f65:-7e45" parent="67e02cde:13157ae1f65:-8000" source="67e02cde:13157ae1f65:-7e48" target="67e02cde:13157ae1f65:-7e95"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="340.0" y="240.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="67e02cde:13157ae1f65:-7e4b" parent="67e02cde:13157ae1f65:-8000" source="67e02cde:13157ae1f65:-7e47" target="67e02cde:13157ae1f65:-7e80"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="596.0" y="250.0"/><mxPoint as="targetPoint" x="410.0" y="240.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="490.0" y="240.0"/><mxPoint x="490.0" y="250.0"/></Array></mxGeometry></ExplicitLink><TextBlock id="67e02cde:13157ae1f65:-7d9f" parent="67e02cde:13157ae1f65:-8000" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;flip=false;mirror=false" value="j0.18"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="j0.18"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="j0.18"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="140.0" y="220.0"/></TextBlock><TextBlock id="67e02cde:13157ae1f65:-7d98" parent="67e02cde:13157ae1f65:-8000" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;fontColor=#D31B1B;flip=false;mirror=false" value="Fault current Waveform in<br>LG and 3phase faults"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="Fault current Waveform in<br>LG and 3phase faults"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="Fault current Waveform in<br>LG and 3phase faults"/></ScilabString><mxGeometry as="geometry" height="40.0" width="50.0" x="500.0" y="540.0"/></TextBlock><TextBlock id="67e02cde:13157ae1f65:-7d95" parent="67e02cde:13157ae1f65:-8000" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;fontColor=#D31B1B;flip=false;mirror=false" value="Fault Initiation"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="Fault Initiation"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="Fault Initiation"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="390.0" y="290.0"/></TextBlock><TextBlock id="67e02cde:13157ae1f65:-7d8e" parent="67e02cde:13157ae1f65:-8000" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;flip=false;mirror=false" value="j0.15"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="j0.15"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="j0.15"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="160.0" y="350.0"/></TextBlock><TextBlock id="67e02cde:13157ae1f65:-7d8b" parent="67e02cde:13157ae1f65:-8000" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;flip=false;mirror=false" value="j0.10"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="j0.10"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="j0.10"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="210.0" y="520.0"/></TextBlock><TextBlock id="67e02cde:13157ae1f65:-7d88" parent="67e02cde:13157ae1f65:-8000" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;flip=false;mirror=false" value="3(j0)"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="3(j0)"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="3(j0)"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="220.0" y="600.0"/></TextBlock><TextBlock id="67e02cde:13157ae1f65:-7d85" parent="67e02cde:13157ae1f65:-8000" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;flip=false;mirror=false" value="3(j0.18)"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="3(j0.18)"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="3(j0.18)"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="790.0" y="430.0"/></TextBlock><TextBlock id="67e02cde:13157ae1f65:-7d81" parent="67e02cde:13157ae1f65:-8000" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;flip=false;mirror=false" value="3(Ea)"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="3(Ea)"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="3(Ea)"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="150.0" y="110.0"/></TextBlock><TextBlock id="67e02cde:13157ae1f65:-7d7e" parent="67e02cde:13157ae1f65:-8000" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;flip=false;mirror=false" value="3(Ea)"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="3(Ea)"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="3(Ea)"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="800.0" y="300.0"/></TextBlock><TextBlock id="67e02cde:13157ae1f65:-7d78" parent="67e02cde:13157ae1f65:-8000" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;fontColor=#5B80E5;flip=false;mirror=false;fillColor=#E4CE26" value="Three-phase fault"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="Three-phase fault"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="Three-phase fault"/></ScilabString><mxGeometry as="geometry" height="30.0" width="130.0" x="710.0" y="520.0"/></TextBlock><TextBlock id="67e02cde:13157ae1f65:-7d74" parent="67e02cde:13157ae1f65:-8000" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;fontColor=#E09038;flip=false;mirror=false" value="Positive"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="Positive"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="Positive"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="40.0" y="170.0"/></TextBlock><TextBlock id="67e02cde:13157ae1f65:-7d70" parent="67e02cde:13157ae1f65:-8000" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;fontColor=#E09038;flip=false;mirror=false" value="Negative"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="Negative"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="Negative"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="60.0" y="340.0"/></TextBlock><TextBlock id="67e02cde:13157ae1f65:-7d6d" parent="67e02cde:13157ae1f65:-8000" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;fontColor=#E09038;flip=false;mirror=false" value="Zero"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="Zero"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="Zero"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="130.0" y="550.0"/></TextBlock><TextBlock id="67e02cde:13157ae1f65:-7d58" parent="67e02cde:13157ae1f65:-8000" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;fontColor=#D31B1B;flip=false;mirror=false" value="Measure LG <br>fault Current"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="Measure LG <br>fault Current"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="Measure LG <br>fault Current"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="320.0" y="420.0"/></TextBlock><TextBlock id="67e02cde:13157ae1f65:-7d53" parent="67e02cde:13157ae1f65:-8000" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;fontColor=#D31B1B;flip=false;mirror=false" value="Measure 3ph fault <br>Current"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="Measure 3ph fault <br>Current"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="Measure 3ph fault <br>Current"/></ScilabString><mxGeometry as="geometry" height="40.0" width="120.0" x="580.0" y="390.0"/></TextBlock><TextBlock id="67e02cde:13157ae1f65:-7d4c" parent="67e02cde:13157ae1f65:-8000" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;fontColor=#D31B1B;flip=false;mirror=false" value="Switch1"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="Switch1"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="Switch1"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="360.0" y="170.0"/></TextBlock><TextBlock id="67e02cde:13157ae1f65:-7d48" parent="67e02cde:13157ae1f65:-8000" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;fontColor=#D31B1B;flip=false;mirror=false" value="Switch2"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="Switch2"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="Switch2"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="600.0" y="180.0"/></TextBlock><TextBlock id="67e02cde:13157ae1f65:-7d45" parent="67e02cde:13157ae1f65:-8000" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;fontColor=#5B80E5;flip=false;mirror=false;fillColor=#E4CE26" value="LG fault"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="LG fault"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="LG fault"/></ScilabString><mxGeometry as="geometry" height="30.0" width="70.0" x="210.0" y="700.0"/></TextBlock><BasicBlock angle="90" dependsOnU="1" id="67e02cde:13157ae1f65:-7fd4" interfaceFunctionName="Inductor" ordering="19" parent="67e02cde:13157ae1f65:-8000" simulationFunctionName="Inductor" simulationFunctionType="DEFAULT" style="Inductor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="0.00057295779"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="5.7295779E-4"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Inductor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="L"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.7295779E-4"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="90.0" y="220.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="67e02cde:13157ae1f65:-7f64" ordering="1" parent="67e02cde:13157ae1f65:-7fd4" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="67e02cde:13157ae1f65:-7f65" ordering="1" parent="67e02cde:13157ae1f65:-7fd4" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort></root></mxGraphModel><mxCell as="defaultParent" id="67e02cde:13157ae1f65:-8000" parent="67e02cde:13157ae1f65:-7fff"/></XcosDiagram>
\ No newline at end of file diff --git a/Working_Examples/83/CH11/EX11.1/result_example_11_1.txt b/Working_Examples/83/CH11/EX11.1/result_example_11_1.txt new file mode 100755 index 0000000..56faa7a --- /dev/null +++ b/Working_Examples/83/CH11/EX11.1/result_example_11_1.txt @@ -0,0 +1,19 @@ + + + Sequence networks of synchronous generator grounded through neutral impedance has been drawn using XCOS + + Since the derivation can not be done here, let us do this problem by taking a suitable values for the sequence reactances of the generator + + X1=j0.18, X2=j0.15, X0=j0.10 pu and Ea=1 + + From the figs 11.13 and 11.14 in the textbook,we can find Ilg and I3L + IaLG = + + - 6.5217391i + Ia3L = + + - 5.5555556i + + Same values of sequence impedance have been used in XCOS simulation also to varify the result + + diff --git a/Working_Examples/83/CH11/EX11.1/xcos_result_example_11_1.jpeg b/Working_Examples/83/CH11/EX11.1/xcos_result_example_11_1.jpeg Binary files differnew file mode 100755 index 0000000..3c5dd57 --- /dev/null +++ b/Working_Examples/83/CH11/EX11.1/xcos_result_example_11_1.jpeg diff --git a/Working_Examples/83/CH11/EX11.2/example_11_2.sce b/Working_Examples/83/CH11/EX11.2/example_11_2.sce new file mode 100755 index 0000000..e45c76c --- /dev/null +++ b/Working_Examples/83/CH11/EX11.2/example_11_2.sce @@ -0,0 +1,23 @@ +//Chapter 11 +//Example 11.2 +//page 408 +//To find fault current and voltage across the grounding resistor +clear;clc; + +X1eq=(%i*0.18)/2; +X2eq=(%i*0.15)/2; +Z0eq=(%i*0.10)+3*(2*20/(11^2)); + +Ea=1; + +//calculation of fault current +printf('\nFault current is given by '); +If=(3*Ea)/(X1eq+X2eq+Z0eq) + +//current in grounding resistor +Ifg=abs(If)*(20/(11*sqrt(3))); +printf('\n\nCurrent through grounding resistor Ifg=%0.2fkA',Ifg); + +//voltage across grounding resistor +Vgr=abs(If*(2*20/(11^2))*(11/sqrt(3))); +printf('\n\nVoltage across grounding resistor Vgr=%0.2fkV\n\n',Vgr);
\ No newline at end of file diff --git a/Working_Examples/83/CH11/EX11.2/example_11_2.xcos b/Working_Examples/83/CH11/EX11.2/example_11_2.xcos new file mode 100755 index 0000000..f962f5f --- /dev/null +++ b/Working_Examples/83/CH11/EX11.2/example_11_2.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" finalIntegrationTime="0.25" title="example_11_2"><!--Xcos - 1.0 - scilab-5.5.2 - 20160406 2040--><mxGraphModel as="model"><root><mxCell id="67e02cde:13157ae1f65:-7af9"/><mxCell id="67e02cde:13157ae1f65:-7afa" parent="67e02cde:13157ae1f65:-7af9"/><BasicBlock angle="90" dependsOnU="1" id="67e02cde:13157ae1f65:-7adb" interfaceFunctionName="SineVoltage" ordering="1" parent="67e02cde:13157ae1f65:-7afa" simulationFunctionName="SineVoltage" simulationFunctionType="DEFAULT" style="SineVoltage;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="5" width="1"><data column="0" line="0" value="1.414"/><data column="0" line="1" value="0"/><data column="0" line="2" value="50"/><data column="0" line="3" value="0"/><data column="0" line="4" value="0"/></ScilabString><ScilabDouble as="realParameters" height="5" width="1"><data column="0" line="0" realPart="1.414"/><data column="0" line="1" realPart="0.0"/><data column="0" line="2" realPart="50.0"/><data column="0" line="3" realPart="0.0"/><data column="0" line="4" realPart="0.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="SineVoltage"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="5" width="1"><data column="0" line="0" value="V"/><data column="0" line="1" value="phase"/><data column="0" line="2" value="freqHz"/><data column="0" line="3" value="offset"/><data column="0" line="4" value="startTime"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.414"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="50.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="60.0" width="50.0" x="230.0" y="130.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="67e02cde:13157ae1f65:-79fb" ordering="1" parent="67e02cde:13157ae1f65:-7adb" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="60.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="67e02cde:13157ae1f65:-79fc" ordering="1" parent="67e02cde:13157ae1f65:-7adb" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock angle="90" dependsOnU="1" id="67e02cde:13157ae1f65:-7ad8" interfaceFunctionName="Inductor" ordering="2" parent="67e02cde:13157ae1f65:-7afa" simulationFunctionName="Inductor" simulationFunctionType="DEFAULT" style="Inductor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="0.00057295779"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="5.7295779E-4"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Inductor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="L"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.7295779E-4"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="230.0" y="240.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="67e02cde:13157ae1f65:-79f2" ordering="1" parent="67e02cde:13157ae1f65:-7ad8" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="67e02cde:13157ae1f65:-79f3" ordering="1" parent="67e02cde:13157ae1f65:-7ad8" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock angle="270" dependsOnU="1" id="67e02cde:13157ae1f65:-7ac9" interfaceFunctionName="Inductor" ordering="3" parent="67e02cde:13157ae1f65:-7afa" simulationFunctionName="Inductor" simulationFunctionType="DEFAULT" style="Inductor;rotation=270;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="0.00047746482"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="4.7746482E-4"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Inductor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="L"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.7746482E-4"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="120.0" y="350.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="67e02cde:13157ae1f65:-79ee" ordering="1" parent="67e02cde:13157ae1f65:-7ac9" style="ImplicitOutputPort;align=center;verticalAlign=top;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="67e02cde:13157ae1f65:-79ef" ordering="1" parent="67e02cde:13157ae1f65:-7ac9" style="ImplicitInputPort;align=center;verticalAlign=bottom;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitInputPort><BasicBlock angle="270" dependsOnU="1" id="67e02cde:13157ae1f65:-7ac3" interfaceFunctionName="Inductor" ordering="4" parent="67e02cde:13157ae1f65:-7afa" simulationFunctionName="Inductor" simulationFunctionType="DEFAULT" style="Inductor;rotation=270;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="0.00047746482"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="4.7746482E-4"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Inductor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="L"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.7746482E-4"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="230.0" y="350.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="67e02cde:13157ae1f65:-79ea" ordering="1" parent="67e02cde:13157ae1f65:-7ac3" style="ImplicitOutputPort;align=center;verticalAlign=top;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="67e02cde:13157ae1f65:-79eb" ordering="1" parent="67e02cde:13157ae1f65:-7ac3" style="ImplicitInputPort;align=center;verticalAlign=bottom;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitInputPort><BasicBlock angle="270" dependsOnU="1" id="67e02cde:13157ae1f65:-7ab7" interfaceFunctionName="Inductor" ordering="5" parent="67e02cde:13157ae1f65:-7afa" simulationFunctionName="Inductor" simulationFunctionType="DEFAULT" style="Inductor;rotation=270;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="0.00031830988"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="3.1830988E-4"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Inductor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="L"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="3.1830988E-4"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="120.0" y="470.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="67e02cde:13157ae1f65:-79e6" ordering="1" parent="67e02cde:13157ae1f65:-7ab7" style="ImplicitOutputPort;align=center;verticalAlign=top;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="67e02cde:13157ae1f65:-79e7" ordering="1" parent="67e02cde:13157ae1f65:-7ab7" style="ImplicitInputPort;align=center;verticalAlign=bottom;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitInputPort><BasicBlock angle="270" dependsOnU="1" id="67e02cde:13157ae1f65:-7aab" interfaceFunctionName="Resistor" ordering="6" parent="67e02cde:13157ae1f65:-7afa" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=270;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="0.99"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="0.99"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.99"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="120.0" y="560.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="67e02cde:13157ae1f65:-79e1" ordering="1" parent="67e02cde:13157ae1f65:-7aab" style="ImplicitOutputPort;align=center;verticalAlign=top;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="67e02cde:13157ae1f65:-79e2" ordering="1" parent="67e02cde:13157ae1f65:-7aab" style="ImplicitInputPort;align=center;verticalAlign=bottom;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitInputPort><BasicBlock angle="270" dependsOnU="1" id="67e02cde:13157ae1f65:-7a9c" interfaceFunctionName="CurrentSensor" ordering="7" parent="67e02cde:13157ae1f65:-7afa" simulationFunctionName="CurrentSensor" simulationFunctionType="DEFAULT" style="CurrentSensor;rotation=270;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CurrentSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="i"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="510.0" y="290.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="67e02cde:13157ae1f65:-7a99" ordering="1" parent="67e02cde:13157ae1f65:-7a9c" style="ImplicitInputPort;align=center;verticalAlign=bottom;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="67e02cde:13157ae1f65:-7a9b" ordering="1" parent="67e02cde:13157ae1f65:-7a9c" style="ImplicitOutputPort;align=center;verticalAlign=top;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="6.0" y="-8.0"/></ImplicitOutputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="67e02cde:13157ae1f65:-7a9a" ordering="2" parent="67e02cde:13157ae1f65:-7a9c" style="ExplicitOutputPort;align=center;verticalAlign=top;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="26.0" y="-8.0"/></ExplicitOutputPort><GroundBlock dependsOnU="1" id="67e02cde:13157ae1f65:-7a8f" interfaceFunctionName="Ground" ordering="8" parent="67e02cde:13157ae1f65:-7afa" simulationFunctionName="Ground" simulationFunctionType="DEFAULT" style="Ground;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Ground"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="30.0" y="140.0"/></GroundBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="67e02cde:13157ae1f65:-7a8e" ordering="1" parent="67e02cde:13157ae1f65:-7a8f" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><Orientation as="orientation" value="NORTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><SplitBlock id="67e02cde:13157ae1f65:-7a8a" ordering="9" parent="67e02cde:13157ae1f65:-7afa" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="137.0" y="67.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="67e02cde:13157ae1f65:-7a87" ordering="2" parent="67e02cde:13157ae1f65:-7a8a" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="67e02cde:13157ae1f65:-7a89" ordering="1" parent="67e02cde:13157ae1f65:-7a8a" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="67e02cde:13157ae1f65:-7a88" ordering="1" parent="67e02cde:13157ae1f65:-7a8a" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="67e02cde:13157ae1f65:-7a86" parent="67e02cde:13157ae1f65:-7afa" source="67e02cde:13157ae1f65:-7a00" target="67e02cde:13157ae1f65:-7a89"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="67e02cde:13157ae1f65:-7a85" parent="67e02cde:13157ae1f65:-7afa" source="67e02cde:13157ae1f65:-7a88" target="67e02cde:13157ae1f65:-7a8e"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="50.0" y="70.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="67e02cde:13157ae1f65:-7a84" parent="67e02cde:13157ae1f65:-7afa" source="67e02cde:13157ae1f65:-79ff" target="67e02cde:13157ae1f65:-79f7"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="140.0" y="193.99999999999997"/><mxPoint as="targetPoint" x="142.85714285714286" y="234.69387755102042"/></mxGeometry></ImplicitLink><ImplicitLink id="67e02cde:13157ae1f65:-7a83" parent="67e02cde:13157ae1f65:-7afa" source="67e02cde:13157ae1f65:-79fb" target="67e02cde:13157ae1f65:-79f3"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="249.99999999999997" y="193.99999999999997"/><mxPoint as="targetPoint" x="244.89795918367346" y="234.69387755102042"/></mxGeometry></ImplicitLink><SplitBlock id="67e02cde:13157ae1f65:-7a79" ordering="10" parent="67e02cde:13157ae1f65:-7afa" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="247.0" y="307.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="67e02cde:13157ae1f65:-7a76" ordering="2" parent="67e02cde:13157ae1f65:-7a79" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="67e02cde:13157ae1f65:-7a78" ordering="1" parent="67e02cde:13157ae1f65:-7a79" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="67e02cde:13157ae1f65:-7a77" ordering="1" parent="67e02cde:13157ae1f65:-7a79" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="67e02cde:13157ae1f65:-7a75" parent="67e02cde:13157ae1f65:-7afa" source="67e02cde:13157ae1f65:-79f2" target="67e02cde:13157ae1f65:-7a78"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="67e02cde:13157ae1f65:-7a7a" parent="67e02cde:13157ae1f65:-7afa" source="67e02cde:13157ae1f65:-79ea" target="67e02cde:13157ae1f65:-7a76"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="280.00000000000006" y="356.0"/><mxPoint as="targetPoint" x="255.10204081632654" y="316.3265306122449"/></mxGeometry></ImplicitLink><SplitBlock id="67e02cde:13157ae1f65:-7a70" ordering="11" parent="67e02cde:13157ae1f65:-7afa" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="137.0" y="437.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="67e02cde:13157ae1f65:-7a6d" ordering="2" parent="67e02cde:13157ae1f65:-7a70" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="67e02cde:13157ae1f65:-7a6f" ordering="1" parent="67e02cde:13157ae1f65:-7a70" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="67e02cde:13157ae1f65:-7a6e" ordering="1" parent="67e02cde:13157ae1f65:-7a70" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="67e02cde:13157ae1f65:-7a6c" parent="67e02cde:13157ae1f65:-7afa" source="67e02cde:13157ae1f65:-79ef" target="67e02cde:13157ae1f65:-7a6f"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="140.0" y="440.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="67e02cde:13157ae1f65:-7a6b" parent="67e02cde:13157ae1f65:-7afa" source="67e02cde:13157ae1f65:-7a6e" target="67e02cde:13157ae1f65:-79eb"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="250.0" y="440.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="67e02cde:13157ae1f65:-7a71" parent="67e02cde:13157ae1f65:-7afa" source="67e02cde:13157ae1f65:-79e6" target="67e02cde:13157ae1f65:-7a6d"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="220.0" y="466.0"/><mxPoint as="targetPoint" x="224.48979591836735" y="438.7755102040816"/></mxGeometry></ImplicitLink><BasicBlock dependsOnU="1" id="67e02cde:13157ae1f65:-7a58" interfaceFunctionName="CMSCOPE" ordering="12" parent="67e02cde:13157ae1f65:-7afa" simulationFunctionName="cmscope" simulationFunctionType="C_OR_FORTRAN" style="CMSCOPE;flip=false;mirror=false"><ScilabString as="exprs" height="11" width="1"><data column="0" line="0" value="1 1"/><data column="0" line="1" value="1 3 5 7 9 11 13 15"/><data column="0" line="2" value="-1"/><data column="0" line="3" value="[]"/><data column="0" line="4" value="[]"/><data column="0" line="5" value="-3 -5"/><data column="0" line="6" value="3 5"/><data column="0" line="7" value="0.250 0.250"/><data column="0" line="8" value="2"/><data column="0" line="9" value="0"/><data column="0" line="10" value="Fault current and Voltage across Grounding resistor"/></ScilabString><ScilabDouble as="realParameters" height="7" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="0.25"/><data column="0" line="2" realPart="0.25"/><data column="0" line="3" realPart="-3.0"/><data column="0" line="4" realPart="3.0"/><data column="0" line="5" realPart="-5.0"/><data column="0" line="6" realPart="5.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="12" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="2.0"/><data column="0" line="2" realPart="2.0"/><data column="0" line="3" realPart="-1.0"/><data column="0" line="4" realPart="-1.0"/><data column="0" line="5" realPart="-1.0"/><data column="0" line="6" realPart="-1.0"/><data column="0" line="7" realPart="1.0"/><data column="0" line="8" realPart="1.0"/><data column="0" line="9" realPart="1.0"/><data column="0" line="10" realPart="3.0"/><data column="0" line="11" realPart="0.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="620.0" y="270.0"/></BasicBlock><ControlPort dataType="UNKNOW_TYPE" id="390d52f:131bf23b07c:-7f3a" ordering="1" parent="67e02cde:13157ae1f65:-7a58" style="ControlPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="390d52f:131bf23b07c:-7f3c" ordering="1" parent="67e02cde:13157ae1f65:-7a58" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ExplicitInputPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="390d52f:131bf23b07c:-7f3b" ordering="2" parent="67e02cde:13157ae1f65:-7a58" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="26.0"/></ExplicitInputPort><VoltageSensorBlock dependsOnU="1" id="67e02cde:13157ae1f65:-7a4b" interfaceFunctionName="VoltageSensor" ordering="13" parent="67e02cde:13157ae1f65:-7afa" simulationFunctionName="VoltageSensor" simulationFunctionType="DEFAULT" style="VoltageSensor;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="VoltageSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="v"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="330.0" y="510.0"/></VoltageSensorBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="67e02cde:13157ae1f65:-7a48" ordering="1" parent="67e02cde:13157ae1f65:-7a4b" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="67e02cde:13157ae1f65:-7a4a" ordering="1" parent="67e02cde:13157ae1f65:-7a4b" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><Orientation as="orientation" value="SOUTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="67e02cde:13157ae1f65:-7a49" ordering="2" parent="67e02cde:13157ae1f65:-7a4b" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><SplitBlock id="67e02cde:13157ae1f65:-7a42" ordering="14" parent="67e02cde:13157ae1f65:-7afa" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="347.0" y="627.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="67e02cde:13157ae1f65:-7a3f" ordering="2" parent="67e02cde:13157ae1f65:-7a42" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="67e02cde:13157ae1f65:-7a41" ordering="1" parent="67e02cde:13157ae1f65:-7a42" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="67e02cde:13157ae1f65:-7a40" ordering="1" parent="67e02cde:13157ae1f65:-7a42" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="67e02cde:13157ae1f65:-7a3e" parent="67e02cde:13157ae1f65:-7afa" source="67e02cde:13157ae1f65:-79e2" target="67e02cde:13157ae1f65:-7a41"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="140.0" y="630.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="67e02cde:13157ae1f65:-7a3d" parent="67e02cde:13157ae1f65:-7afa" source="67e02cde:13157ae1f65:-7a40" target="67e02cde:13157ae1f65:-7a99"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="530.0" y="630.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="67e02cde:13157ae1f65:-7a43" parent="67e02cde:13157ae1f65:-7afa" source="67e02cde:13157ae1f65:-7a4a" target="67e02cde:13157ae1f65:-7a3f"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="350.0" y="554.0"/><mxPoint as="targetPoint" x="346.9387755102041" y="612.2448979591837"/></mxGeometry></ImplicitLink><SplitBlock id="67e02cde:13157ae1f65:-7a3b" ordering="15" parent="67e02cde:13157ae1f65:-7afa" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="137.0" y="527.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="67e02cde:13157ae1f65:-7a38" ordering="2" parent="67e02cde:13157ae1f65:-7a3b" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="67e02cde:13157ae1f65:-7a3a" ordering="1" parent="67e02cde:13157ae1f65:-7a3b" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="67e02cde:13157ae1f65:-7a39" ordering="1" parent="67e02cde:13157ae1f65:-7a3b" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="67e02cde:13157ae1f65:-7a37" parent="67e02cde:13157ae1f65:-7afa" source="67e02cde:13157ae1f65:-79e1" target="67e02cde:13157ae1f65:-7a3a"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="67e02cde:13157ae1f65:-7a36" parent="67e02cde:13157ae1f65:-7afa" source="67e02cde:13157ae1f65:-7a39" target="67e02cde:13157ae1f65:-79e7"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="67e02cde:13157ae1f65:-7a3c" parent="67e02cde:13157ae1f65:-7afa" source="67e02cde:13157ae1f65:-7a38" target="67e02cde:13157ae1f65:-7a48"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="326.0" y="530.0"/><mxPoint as="targetPoint" x="214.28571428571428" y="540.8163265306123"/></mxGeometry></ImplicitLink><ExplicitLink id="67e02cde:13157ae1f65:-7a35" parent="67e02cde:13157ae1f65:-7afa" source="67e02cde:13157ae1f65:-7a49" target="390d52f:131bf23b07c:-7f3b"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="374.0" y="530.0"/><mxPoint as="targetPoint" x="612.2448979591837" y="306.12244897959187"/><Array as="points" scilabClass="ScilabList"><mxPoint x="590.0" y="530.0"/><mxPoint x="590.0" y="300.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="67e02cde:13157ae1f65:-7a34" parent="67e02cde:13157ae1f65:-7afa" source="67e02cde:13157ae1f65:-7a9a" target="390d52f:131bf23b07c:-7f3c"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="539.9999999999999" y="286.00000000000006"/><mxPoint as="targetPoint" x="612.2448979591837" y="285.7142857142857"/><Array as="points" scilabClass="ScilabList"><mxPoint x="540.0" y="260.0"/><mxPoint x="580.0" y="260.0"/><mxPoint x="580.0" y="280.0"/></Array></mxGeometry></ExplicitLink><BasicBlock blockType="h" id="67e02cde:13157ae1f65:-7a2e" interfaceFunctionName="CLOCK_c" ordering="16" parent="67e02cde:13157ae1f65:-7afa" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="99.0"/><data column="1" line="0" realPart="-144.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="390d52f:131bf23b07c:-7f5c"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="390d52f:131bf23b07c:-7f5c"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-54.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.001"/><data column="0" line="1" value="0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.001"/><data column="0" line="1" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="390d52f:131bf23b07c:-7f58"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="390d52f:131bf23b07c:-7f58"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="92.71066000000002"/><data column="1" line="0" realPart="-146.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="8.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="5.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="390d52f:131bf23b07c:-7f53"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="390d52f:131bf23b07c:-7f53"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="72.0"/><data column="0" line="2" realPart="104.71066000000002"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-58.0"/><data column="0" line="1" realPart="-186.0"/><data column="0" line="2" realPart="-134.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="103.37732666666669"/><data column="0" line="1" realPart="129.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-150.0"/><data column="0" line="1" realPart="-120.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="106.04399333333335"/><data column="0" line="1" realPart="122.70999999999998"/><data column="0" line="2" realPart="82.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-150.0"/><data column="0" line="1" realPart="-40.0"/><data column="0" line="2" realPart="-40.0"/><data column="0" line="3" realPart="-10.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="50.0" width="40.0" x="620.0" y="140.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="67e02cde:13157ae1f65:-79d9" ordering="1" parent="67e02cde:13157ae1f65:-7a2e" style="CommandPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="50.0"/></CommandPort><CommandControlLink id="67e02cde:13157ae1f65:-7a2c" parent="67e02cde:13157ae1f65:-7afa" source="67e02cde:13157ae1f65:-79d9" target="390d52f:131bf23b07c:-7f3a"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="630.0" y="193.99999999999997"/><mxPoint as="targetPoint" x="642.8571428571429" y="265.3061224489796"/></mxGeometry></CommandControlLink><SplitBlock id="67e02cde:13157ae1f65:-7a07" ordering="17" parent="67e02cde:13157ae1f65:-7afa" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="137.0" y="307.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="67e02cde:13157ae1f65:-7a04" ordering="2" parent="67e02cde:13157ae1f65:-7a07" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="67e02cde:13157ae1f65:-7a06" ordering="1" parent="67e02cde:13157ae1f65:-7a07" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="67e02cde:13157ae1f65:-7a05" ordering="1" parent="67e02cde:13157ae1f65:-7a07" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="67e02cde:13157ae1f65:-7a03" parent="67e02cde:13157ae1f65:-7afa" source="67e02cde:13157ae1f65:-79ee" target="67e02cde:13157ae1f65:-7a06"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="67e02cde:13157ae1f65:-7a02" parent="67e02cde:13157ae1f65:-7afa" source="67e02cde:13157ae1f65:-7a77" target="67e02cde:13157ae1f65:-7a05"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="140.0" y="310.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="67e02cde:13157ae1f65:-7a08" parent="67e02cde:13157ae1f65:-7afa" source="67e02cde:13157ae1f65:-79f6" target="67e02cde:13157ae1f65:-7a04"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="140.0" y="284.0"/><mxPoint as="targetPoint" x="138.29787234042553" y="308.51063829787233"/></mxGeometry></ImplicitLink><TextBlock id="67e02cde:13157ae1f65:-79d6" parent="67e02cde:13157ae1f65:-7afa" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;flip=false;mirror=false" value="Ea"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="Ea"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="Ea"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="80.0" y="140.0"/></TextBlock><TextBlock id="67e02cde:13157ae1f65:-79d4" parent="67e02cde:13157ae1f65:-7afa" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;flip=false;mirror=false" value="Ea"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="Ea"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="Ea"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="280.0" y="143.0"/></TextBlock><TextBlock id="67e02cde:13157ae1f65:-79d2" parent="67e02cde:13157ae1f65:-7afa" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;flip=false;mirror=false" value="j0.18"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="j0.18"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="j0.18"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="70.0" y="240.0"/></TextBlock><TextBlock id="67e02cde:13157ae1f65:-79d0" parent="67e02cde:13157ae1f65:-7afa" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;flip=false;mirror=false" value="j0.18"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="j0.18"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="j0.18"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="270.0" y="243.0"/></TextBlock><TextBlock id="67e02cde:13157ae1f65:-79ce" parent="67e02cde:13157ae1f65:-7afa" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;flip=false;mirror=false" value="j0.15"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="j0.15"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="j0.15"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="80.0" y="350.0"/></TextBlock><TextBlock id="67e02cde:13157ae1f65:-79cc" parent="67e02cde:13157ae1f65:-7afa" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;flip=false;mirror=false" value="j0.15"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="j0.15"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="j0.15"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="270.0" y="353.0"/></TextBlock><TextBlock id="67e02cde:13157ae1f65:-79ca" parent="67e02cde:13157ae1f65:-7afa" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;flip=false;mirror=false" value="j0.10"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="j0.10"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="j0.10"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="160.0" y="470.0"/></TextBlock><TextBlock id="67e02cde:13157ae1f65:-79c8" parent="67e02cde:13157ae1f65:-7afa" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;flip=false;mirror=false" value="0.99"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="0.99"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="0.99"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="160.0" y="560.0"/></TextBlock><TextBlock id="67e02cde:13157ae1f65:-79c6" parent="67e02cde:13157ae1f65:-7afa" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;fontColor=#5B80E5;flip=false;mirror=false;fillColor=#E4CE26" value="LG fault"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="LG fault"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="LG fault"/></ScilabString><mxGeometry as="geometry" height="30.0" width="70.0" x="130.0" y="640.0"/></TextBlock><TextBlock id="67e02cde:13157ae1f65:-79c4" parent="67e02cde:13157ae1f65:-7afa" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;fontColor=#E09038;flip=false;mirror=false" value="Zero"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="Zero"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="Zero"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="70.0" y="510.0"/></TextBlock><TextBlock id="67e02cde:13157ae1f65:-79c2" parent="67e02cde:13157ae1f65:-7afa" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;fontColor=#E09038;flip=false;mirror=false" value="Negative"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="Negative"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="Negative"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="60.0" y="380.0"/></TextBlock><TextBlock id="67e02cde:13157ae1f65:-79c0" parent="67e02cde:13157ae1f65:-7afa" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;fontColor=#E09038;flip=false;mirror=false" value="Positive"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="Positive"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="Positive"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="70.0" y="190.0"/></TextBlock><BasicBlock angle="90" dependsOnU="1" id="67e02cde:13157ae1f65:-79b6" interfaceFunctionName="Switch" ordering="18" parent="67e02cde:13157ae1f65:-7afa" simulationFunctionName="Switch" simulationFunctionType="DEFAULT" style="Switch;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="2" width="1"><data column="0" line="0" value="0.01"/><data column="0" line="1" value="100000"/></ScilabString><ScilabDouble as="realParameters" height="2" width="1"><data column="0" line="0" realPart="0.01"/><data column="0" line="1" realPart="100000.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Switch"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="p"/><data column="0" line="1" value="inp"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="2" width="1"><data column="0" line="0" value="Ron"/><data column="0" line="1" value="Roff"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.01"/><data column="0" line="1" realPart="100000.0"/></ScilabDouble></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="500.0" y="150.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="67e02cde:13157ae1f65:-79b3" ordering="2" parent="67e02cde:13157ae1f65:-79b6" style="ExplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="26.0" y="-8.0"/></ExplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="67e02cde:13157ae1f65:-79b5" ordering="1" parent="67e02cde:13157ae1f65:-79b6" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="67e02cde:13157ae1f65:-79b4" ordering="1" parent="67e02cde:13157ae1f65:-79b6" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="6.0" y="-8.0"/></ImplicitInputPort><ImplicitLink id="67e02cde:13157ae1f65:-79a5" parent="67e02cde:13157ae1f65:-7afa" source="67e02cde:13157ae1f65:-79b5" target="67e02cde:13157ae1f65:-7a9b"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="520.0" y="286.0"/><mxPoint as="targetPoint" x="521.2765957446809" y="191.48936170212767"/></mxGeometry></ImplicitLink><SplitBlock id="67e02cde:13157ae1f65:-79a3" ordering="19" parent="67e02cde:13157ae1f65:-7afa" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="247.0" y="67.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="67e02cde:13157ae1f65:-79a0" ordering="2" parent="67e02cde:13157ae1f65:-79a3" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="67e02cde:13157ae1f65:-79a2" ordering="1" parent="67e02cde:13157ae1f65:-79a3" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="67e02cde:13157ae1f65:-79a1" ordering="1" parent="67e02cde:13157ae1f65:-79a3" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="67e02cde:13157ae1f65:-799f" parent="67e02cde:13157ae1f65:-7afa" source="67e02cde:13157ae1f65:-7a87" target="67e02cde:13157ae1f65:-79a2"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="244.89795918367346" y="71.42857142857143"/><mxPoint x="250.0" y="70.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="67e02cde:13157ae1f65:-799e" parent="67e02cde:13157ae1f65:-7afa" source="67e02cde:13157ae1f65:-79a1" target="67e02cde:13157ae1f65:-79fc"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="67e02cde:13157ae1f65:-79a4" parent="67e02cde:13157ae1f65:-7afa" source="67e02cde:13157ae1f65:-79a0" target="67e02cde:13157ae1f65:-79b4"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="510.0" y="146.0"/><mxPoint as="targetPoint" x="255.31914893617022" y="74.46808510638299"/><Array as="points" scilabClass="ScilabList"><mxPoint x="510.0" y="70.0"/></Array></mxGeometry></ImplicitLink><BasicBlock angle="180" blockType="h" id="67e02cde:13157ae1f65:-7994" interfaceFunctionName="STEP_FUNCTION" ordering="20" parent="67e02cde:13157ae1f65:-7afa" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="STEP_FUNCTION;rotation=180;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="STEP_FUNCTION"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-4"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="14.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=" "/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="3" width="1"><data column="0" line="0" value="0.005"/><data column="0" line="1" value="-5"/><data column="0" line="2" value="5"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"STEP",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="STEP"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="step_func"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-5.0"/><data column="0" line="1" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.005"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="true"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="390d52f:131bf23b07c:-7f48"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="STEP"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="390d52f:131bf23b07c:-7f48"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="88.57143300000001"/><data column="1" line="0" realPart="-50.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"OUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="OUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-2.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="390d52f:131bf23b07c:-7f45"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="OUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="390d52f:131bf23b07c:-7f45"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="6" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="92.00000299999999"/><data column="0" line="2" realPart="53.478395000000006"/><data column="0" line="3" realPart="53.478395000000006"/><data column="0" line="4" realPart="92.00000299999999"/><data column="0" line="5" realPart="60.0"/></ScilabDouble><ScilabDouble height="6" width="1"><data column="0" line="0" realPart="-44.0"/><data column="0" line="1" realPart="-158.39289999999994"/><data column="0" line="2" realPart="-158.39289999999994"/><data column="0" line="3" realPart="-68.69677999999999"/><data column="0" line="4" realPart="-68.69677999999999"/><data column="0" line="5" realPart="4.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="84.0"/><data column="0" line="1" realPart="104.57143300000001"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-20.0"/><data column="0" line="1" realPart="-40.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="570.0" y="70.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataType="REAL_MATRIX" id="67e02cde:13157ae1f65:-7990" ordering="1" parent="67e02cde:13157ae1f65:-7994" style="ExplicitOutputPort;align=left;verticalAlign=middle;spacing=10;rotation=180;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitOutputPort><ExplicitLink id="67e02cde:13157ae1f65:-7992" parent="67e02cde:13157ae1f65:-7afa" source="67e02cde:13157ae1f65:-7990" target="67e02cde:13157ae1f65:-79b3"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="566.0" y="90.0"/><mxPoint as="targetPoint" x="531.9148936170213" y="148.93617021276597"/><Array as="points" scilabClass="ScilabList"><mxPoint x="530.0" y="90.0"/></Array></mxGeometry></ExplicitLink><TextBlock id="67e02cde:13157ae1f65:-7987" parent="67e02cde:13157ae1f65:-7afa" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;fontColor=#D31B1B;flip=false;mirror=false" value="Switch1"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="Switch1"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="Switch1"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="440.0" y="150.0"/></TextBlock><TextBlock id="67e02cde:13157ae1f65:-7985" parent="67e02cde:13157ae1f65:-7afa" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;fontColor=#D31B1B;flip=false;mirror=false" value="Fault Initiation"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="Fault Initiation"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="Fault Initiation"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="650.0" y="70.0"/></TextBlock><TextBlock id="67e02cde:13157ae1f65:-7980" parent="67e02cde:13157ae1f65:-7afa" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;fontColor=#D31B1B;flip=false;mirror=false" value="Measure LG <br>fault Current"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="Measure LG <br>fault Current"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="Measure LG <br>fault Current"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="510.0" y="340.0"/></TextBlock><TextBlock id="67e02cde:13157ae1f65:-797e" parent="67e02cde:13157ae1f65:-7afa" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;fontColor=#D31B1B;flip=false;mirror=false" value="Fault current and voltage<br> across resistorWaveform"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="Fault current and voltage<br> across resistorWaveform"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="Fault current and voltage<br> across resistorWaveform"/></ScilabString><mxGeometry as="geometry" height="40.0" width="50.0" x="670.0" y="310.0"/></TextBlock><BasicBlock angle="90" dependsOnU="1" id="67e02cde:13157ae1f65:-7af1" interfaceFunctionName="SineVoltage" ordering="21" parent="67e02cde:13157ae1f65:-7afa" simulationFunctionName="SineVoltage" simulationFunctionType="DEFAULT" style="SineVoltage;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="5" width="1"><data column="0" line="0" value="1.414"/><data column="0" line="1" value="0"/><data column="0" line="2" value="50"/><data column="0" line="3" value="0"/><data column="0" line="4" value="0"/></ScilabString><ScilabDouble as="realParameters" height="5" width="1"><data column="0" line="0" realPart="1.414"/><data column="0" line="1" realPart="0.0"/><data column="0" line="2" realPart="50.0"/><data column="0" line="3" realPart="0.0"/><data column="0" line="4" realPart="0.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="SineVoltage"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="5" width="1"><data column="0" line="0" value="V"/><data column="0" line="1" value="phase"/><data column="0" line="2" value="freqHz"/><data column="0" line="3" value="offset"/><data column="0" line="4" value="startTime"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.414"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="50.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="60.0" width="50.0" x="120.0" y="130.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="67e02cde:13157ae1f65:-79ff" ordering="1" parent="67e02cde:13157ae1f65:-7af1" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="60.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="67e02cde:13157ae1f65:-7a00" ordering="1" parent="67e02cde:13157ae1f65:-7af1" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock angle="90" dependsOnU="1" id="67e02cde:13157ae1f65:-7ae7" interfaceFunctionName="Inductor" ordering="22" parent="67e02cde:13157ae1f65:-7afa" simulationFunctionName="Inductor" simulationFunctionType="DEFAULT" style="Inductor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="0.00057295779"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="5.7295779E-4"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Inductor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="L"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.7295779E-4"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="120.0" y="240.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="67e02cde:13157ae1f65:-79f6" ordering="1" parent="67e02cde:13157ae1f65:-7ae7" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="67e02cde:13157ae1f65:-79f7" ordering="1" parent="67e02cde:13157ae1f65:-7ae7" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort></root></mxGraphModel><mxCell as="defaultParent" id="67e02cde:13157ae1f65:-7afa" parent="67e02cde:13157ae1f65:-7af9"/></XcosDiagram>
\ No newline at end of file diff --git a/Working_Examples/83/CH11/EX11.2/result_example_11_2.txt b/Working_Examples/83/CH11/EX11.2/result_example_11_2.txt new file mode 100755 index 0000000..42f4b76 --- /dev/null +++ b/Working_Examples/83/CH11/EX11.2/result_example_11_2.txt @@ -0,0 +1,11 @@ + + +Fault current is given by If = + + 2.8234079 - 0.7544381i + + +Current through grounding resistor Ifg=3.07kA + +Voltage across grounding resistor Vgr=6.14kV + diff --git a/Working_Examples/83/CH11/EX11.2/xcos_result_example_11_2.jpeg b/Working_Examples/83/CH11/EX11.2/xcos_result_example_11_2.jpeg Binary files differnew file mode 100755 index 0000000..a3a6f25 --- /dev/null +++ b/Working_Examples/83/CH11/EX11.2/xcos_result_example_11_2.jpeg diff --git a/Working_Examples/83/CH11/EX11.3/example_11_3.sce b/Working_Examples/83/CH11/EX11.3/example_11_3.sce new file mode 100755 index 0000000..0806a83 --- /dev/null +++ b/Working_Examples/83/CH11/EX11.3/example_11_3.sce @@ -0,0 +1,77 @@ +//Chapter 11 +//Example 11.3 +//page 409 +//To find fault current and subtransient current in all parts of the system +clear;clc; + +a=-0.5+(sqrt(3)/2)*%i; + +//neglecting prefault currents +Vf0=10/11; +Eg=Vf0; Em1=Vf0 ;Em2=Vf0; + +//positive sequence network when it is replaced by its thevenin's equvivalent as shown in fig11.18 +printf('\nsequence impedances are given by \n'); +Z1=(%i*0.525*%i*0.23)/(%i*0.755); +Z2=Z1; +Z0=%i*1.712; +printf('Z1=j%0.4f \nZ2=j%0.4f \nZ0=j%0.4f',abs(imag(Z1)),abs(imag(Z2)),abs(imag(Z0))); +//to find sequence current +Ia1=Vf0/(Z1+Z2+Z0); +Ia2=Ia1; +Ia0=Ia1; + +//to find fault current +If=3*Ia0; +printf('\n\nFault Current= -j%0.4f',abs(imag(If))); + + +//component current flowing from generator and motor +printf('\n\nComponents currents flowing from Generator and motor are \n') +Ig1=Ia1*(0.23/0.755) ; +Ig2=Ig1; +Ig0=0; +printf('Ig1= -j%0.4f \nIg2= -j%0.4f \nIg0=%d',abs(Ig1),abs(Ig2),abs(Ig0)); +printf('\n'); +Im1=Ia1*(0.525/0.755); +Im2=Im1; +Im0=Ia0; +printf('\nIm1= -j%0.4f \nIm2= -j%0.4f \nIm0= -j%0.4f',abs(Im1),abs(Im2),abs(Im0)); + +//fault currents from the generator and motor towards g are +printf('\n\nFault current from the generator towards g are '); +Ig=[1 1 1;a^2 a 1;a a^2 1]*[Ig1;Ig2;Ig0]; +disp(Ig); +printf('and to g from motors are'); +Im=[1 1 1;a^2 a 1;a a^2 1]*[Im1;Im2;Im0]; +disp(Im); + +printf('\nPositive sequence current =%0.3f pu',(-%i*Ig1)); +printf('\nNegative sequence current =%0.3f pu',(%i*Ig2)); +printf('\nZero sequence current=%d\n',Ig0); + +//under loaded condition,PU motor currents are +Im1o=(15/(25*0.909*0.8))*(0.800103636+%i*0.5998617938); +Im2o=(7.5/(25*0.909*0.8))*(0.800103636+%i*0.5998617938); +printf('\nThe per unit motor currents are:\n'); +printf('Motor1:%0.2f +j%0.3f pu',real(Im1o),imag(Im1o)); +printf('\nMotor2:%0.2f +j%0.3f pu',real(Im2o),imag(Im2o)); + +//the voltages behind subtransient reactances are calculated below +printf('\n\nVoltage behind subtransient reactances:\n'); +printf('Motor1:'); +Em1=Em1-(%i*0.345*Im1o); +printf('Em1= %0.4f-j%0.4f',real(Em1),abs(imag(Em1))); + +printf('\nMotor2:'); +Em2=Em2-(%i*0.69*Im2o); +printf('Em2= %0.4f-j%0.4f',real(Em2),abs(imag(Em2))); + +printf('\nGenerator:'); +Eg=Eg+(%i*0.525*(Im2o+Im1o)); +printf('Eg= %0.4fj+%0.4f',real(Eg),abs(imag(Eg))); + +//actual value of positive sequence current from generator and motor +printf('\n\nThe actual value of positive sequence current from the generator towards fault is = %0.2f+j%0.3f',real(Im1o+Im2o+Ig1),imag(Im1o+Im2o+Ig1)); +printf('\nThe actual value of positive sequence current from the motors towards fault is = %0.2f-j%0.3f',real(-Im1o-Im2o+Im1),abs(imag(-Im1o-Im2o+Im1))); + diff --git a/Working_Examples/83/CH11/EX11.3/example_11_3.xcos b/Working_Examples/83/CH11/EX11.3/example_11_3.xcos new file mode 100755 index 0000000..4bbd370 --- /dev/null +++ b/Working_Examples/83/CH11/EX11.3/example_11_3.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" finalIntegrationTime="0.25" title="example_11_3"><!--Xcos - 1.0 - scilab-5.5.2 - 20160406 2040--><mxGraphModel as="model"><root><mxCell id="2af926ac:131590fb290:-7ef3"/><mxCell id="2af926ac:131590fb290:-7ef4" parent="2af926ac:131590fb290:-7ef3"/><BasicBlock angle="90" dependsOnU="1" id="2af926ac:131590fb290:-7ee9" interfaceFunctionName="SineVoltage" ordering="1" parent="2af926ac:131590fb290:-7ef4" simulationFunctionName="SineVoltage" simulationFunctionType="DEFAULT" style="SineVoltage;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="5" width="1"><data column="0" line="0" value="1.285326"/><data column="0" line="1" value="0"/><data column="0" line="2" value="50"/><data column="0" line="3" value="0"/><data column="0" line="4" value="0"/></ScilabString><ScilabDouble as="realParameters" height="5" width="1"><data column="0" line="0" realPart="1.285326"/><data column="0" line="1" realPart="0.0"/><data column="0" line="2" realPart="50.0"/><data column="0" line="3" realPart="0.0"/><data column="0" line="4" realPart="0.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="SineVoltage"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="5" width="1"><data column="0" line="0" value="V"/><data column="0" line="1" value="phase"/><data column="0" line="2" value="freqHz"/><data column="0" line="3" value="offset"/><data column="0" line="4" value="startTime"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.285326"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="50.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="60.0" width="50.0" x="200.0" y="130.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="2af926ac:131590fb290:-7da5" ordering="1" parent="2af926ac:131590fb290:-7ee9" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="60.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="2af926ac:131590fb290:-7da6" ordering="1" parent="2af926ac:131590fb290:-7ee9" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock angle="90" dependsOnU="1" id="2af926ac:131590fb290:-7ee3" interfaceFunctionName="SineVoltage" ordering="2" parent="2af926ac:131590fb290:-7ef4" simulationFunctionName="SineVoltage" simulationFunctionType="DEFAULT" style="SineVoltage;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="5" width="1"><data column="0" line="0" value="1.285326"/><data column="0" line="1" value="0"/><data column="0" line="2" value="50"/><data column="0" line="3" value="0"/><data column="0" line="4" value="0"/></ScilabString><ScilabDouble as="realParameters" height="5" width="1"><data column="0" line="0" realPart="1.285326"/><data column="0" line="1" realPart="0.0"/><data column="0" line="2" realPart="50.0"/><data column="0" line="3" realPart="0.0"/><data column="0" line="4" realPart="0.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="SineVoltage"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="5" width="1"><data column="0" line="0" value="V"/><data column="0" line="1" value="phase"/><data column="0" line="2" value="freqHz"/><data column="0" line="3" value="offset"/><data column="0" line="4" value="startTime"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.285326"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="50.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="60.0" width="50.0" x="500.0" y="130.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="2af926ac:131590fb290:-7da1" ordering="1" parent="2af926ac:131590fb290:-7ee3" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="60.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="2af926ac:131590fb290:-7da2" ordering="1" parent="2af926ac:131590fb290:-7ee3" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock angle="90" dependsOnU="1" id="2af926ac:131590fb290:-7ee0" interfaceFunctionName="SineVoltage" ordering="3" parent="2af926ac:131590fb290:-7ef4" simulationFunctionName="SineVoltage" simulationFunctionType="DEFAULT" style="SineVoltage;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="5" width="1"><data column="0" line="0" value="1.285326"/><data column="0" line="1" value="0"/><data column="0" line="2" value="50"/><data column="0" line="3" value="0"/><data column="0" line="4" value="0"/></ScilabString><ScilabDouble as="realParameters" height="5" width="1"><data column="0" line="0" realPart="1.285326"/><data column="0" line="1" realPart="0.0"/><data column="0" line="2" realPart="50.0"/><data column="0" line="3" realPart="0.0"/><data column="0" line="4" realPart="0.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="SineVoltage"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="5" width="1"><data column="0" line="0" value="V"/><data column="0" line="1" value="phase"/><data column="0" line="2" value="freqHz"/><data column="0" line="3" value="offset"/><data column="0" line="4" value="startTime"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.285326"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="50.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="60.0" width="50.0" x="390.0" y="130.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="2af926ac:131590fb290:-7da9" ordering="1" parent="2af926ac:131590fb290:-7ee0" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="60.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="2af926ac:131590fb290:-7daa" ordering="1" parent="2af926ac:131590fb290:-7ee0" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock angle="270" dependsOnU="1" id="2af926ac:131590fb290:-7ed0" interfaceFunctionName="Inductor" ordering="4" parent="2af926ac:131590fb290:-7ef4" simulationFunctionName="Inductor" simulationFunctionType="DEFAULT" style="Inductor;rotation=270;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="0.00063661977"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="6.3661977E-4"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Inductor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="L"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.3661977E-4"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="200.0" y="240.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="2af926ac:131590fb290:-7d9d" ordering="1" parent="2af926ac:131590fb290:-7ed0" style="ImplicitOutputPort;align=center;verticalAlign=top;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="2af926ac:131590fb290:-7d9e" ordering="1" parent="2af926ac:131590fb290:-7ed0" style="ImplicitInputPort;align=center;verticalAlign=bottom;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="2af926ac:131590fb290:-7ecd" interfaceFunctionName="Inductor" ordering="5" parent="2af926ac:131590fb290:-7ef4" simulationFunctionName="Inductor" simulationFunctionType="DEFAULT" style="Inductor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="0.0010345071"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="0.0010345071"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Inductor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="L"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0010345071"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="290.0" y="330.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="2af926ac:131590fb290:-7d91" ordering="1" parent="2af926ac:131590fb290:-7ecd" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="2af926ac:131590fb290:-7d92" ordering="1" parent="2af926ac:131590fb290:-7ecd" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><BasicBlock angle="270" dependsOnU="1" id="2af926ac:131590fb290:-7eca" interfaceFunctionName="Inductor" ordering="6" parent="2af926ac:131590fb290:-7ef4" simulationFunctionName="Inductor" simulationFunctionType="DEFAULT" style="Inductor;rotation=270;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="0.0010981691"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="0.0010981691"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Inductor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="L"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0010981691"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="390.0" y="240.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="2af926ac:131590fb290:-7d99" ordering="1" parent="2af926ac:131590fb290:-7eca" style="ImplicitOutputPort;align=center;verticalAlign=top;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="2af926ac:131590fb290:-7d9a" ordering="1" parent="2af926ac:131590fb290:-7eca" style="ImplicitInputPort;align=center;verticalAlign=bottom;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitInputPort><BasicBlock angle="270" dependsOnU="1" id="2af926ac:131590fb290:-7ec7" interfaceFunctionName="Inductor" ordering="7" parent="2af926ac:131590fb290:-7ef4" simulationFunctionName="Inductor" simulationFunctionType="DEFAULT" style="Inductor;rotation=270;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="0.0021963382"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="0.0021963382"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Inductor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="L"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0021963382"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="500.0" y="240.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="2af926ac:131590fb290:-7d95" ordering="1" parent="2af926ac:131590fb290:-7ec7" style="ImplicitOutputPort;align=center;verticalAlign=top;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="2af926ac:131590fb290:-7d96" ordering="1" parent="2af926ac:131590fb290:-7ec7" style="ImplicitInputPort;align=center;verticalAlign=bottom;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitInputPort><ImplicitLink id="2af926ac:131590fb290:-7ebe" parent="2af926ac:131590fb290:-7ef4" source="2af926ac:131590fb290:-7da5" target="2af926ac:131590fb290:-7d9d"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="220.0" y="236.0"/><mxPoint as="targetPoint" x="220.0" y="200.0"/></mxGeometry></ImplicitLink><ImplicitLink id="2af926ac:131590fb290:-7ebd" parent="2af926ac:131590fb290:-7ef4" source="2af926ac:131590fb290:-7da9" target="2af926ac:131590fb290:-7d99"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="410.0" y="236.0"/><mxPoint as="targetPoint" x="410.0" y="200.0"/></mxGeometry></ImplicitLink><ImplicitLink id="2af926ac:131590fb290:-7ebc" parent="2af926ac:131590fb290:-7ef4" source="2af926ac:131590fb290:-7da1" target="2af926ac:131590fb290:-7d95"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="520.0" y="236.0"/><mxPoint as="targetPoint" x="520.0" y="180.0"/></mxGeometry></ImplicitLink><SplitBlock id="2af926ac:131590fb290:-7eb6" ordering="8" parent="2af926ac:131590fb290:-7ef4" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="407.0" y="87.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="2af926ac:131590fb290:-7eb5" ordering="1" parent="2af926ac:131590fb290:-7eb6" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="2af926ac:131590fb290:-7eb4" ordering="1" parent="2af926ac:131590fb290:-7eb6" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="2af926ac:131590fb290:-7eb3" ordering="2" parent="2af926ac:131590fb290:-7eb6" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitLink id="2af926ac:131590fb290:-7eb1" parent="2af926ac:131590fb290:-7ef4" source="2af926ac:131590fb290:-7eb4" target="2af926ac:131590fb290:-7daa"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="2af926ac:131590fb290:-7eb7" parent="2af926ac:131590fb290:-7ef4" source="2af926ac:131590fb290:-7eb3" target="2af926ac:131590fb290:-7da2"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="520.0" y="126.0"/><mxPoint as="targetPoint" x="410.0" y="90.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="520.0" y="90.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="2af926ac:131590fb290:-7eb0" parent="2af926ac:131590fb290:-7ef4" source="2af926ac:131590fb290:-7d9e" target="2af926ac:131590fb290:-7d92"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="220.0" y="284.0"/><mxPoint as="targetPoint" x="290.0" y="350.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="220.0" y="350.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="2af926ac:131590fb290:-7ea4" ordering="9" parent="2af926ac:131590fb290:-7ef4" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="457.0" y="307.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="2af926ac:131590fb290:-7ea3" ordering="1" parent="2af926ac:131590fb290:-7ea4" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="2af926ac:131590fb290:-7ea2" ordering="1" parent="2af926ac:131590fb290:-7ea4" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="2af926ac:131590fb290:-7ea1" ordering="2" parent="2af926ac:131590fb290:-7ea4" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitLink id="2af926ac:131590fb290:-7ea0" parent="2af926ac:131590fb290:-7ef4" source="2af926ac:131590fb290:-7d96" target="2af926ac:131590fb290:-7ea3"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="520.0" y="310.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="2af926ac:131590fb290:-7e9f" parent="2af926ac:131590fb290:-7ef4" source="2af926ac:131590fb290:-7ea2" target="2af926ac:131590fb290:-7d9a"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="410.0" y="310.0"/></Array></mxGeometry></ImplicitLink><BasicBlock angle="270" dependsOnU="1" id="2af926ac:131590fb290:-7e9e" interfaceFunctionName="Inductor" ordering="10" parent="2af926ac:131590fb290:-7ef4" simulationFunctionName="Inductor" simulationFunctionType="DEFAULT" style="Inductor;rotation=270;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="0.00063661977"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="6.3661977E-4"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Inductor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="L"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.3661977E-4"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="220.0" y="460.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="2af926ac:131590fb290:-7d8d" ordering="1" parent="2af926ac:131590fb290:-7e9e" style="ImplicitOutputPort;align=center;verticalAlign=top;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="2af926ac:131590fb290:-7d8e" ordering="1" parent="2af926ac:131590fb290:-7e9e" style="ImplicitInputPort;align=center;verticalAlign=bottom;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="2af926ac:131590fb290:-7e9b" interfaceFunctionName="Inductor" ordering="11" parent="2af926ac:131590fb290:-7ef4" simulationFunctionName="Inductor" simulationFunctionType="DEFAULT" style="Inductor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="0.0010345071"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="0.0010345071"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Inductor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="L"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0010345071"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="250.0" y="580.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="2af926ac:131590fb290:-7d85" ordering="1" parent="2af926ac:131590fb290:-7e9b" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="2af926ac:131590fb290:-7d86" ordering="1" parent="2af926ac:131590fb290:-7e9b" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><BasicBlock angle="270" dependsOnU="1" id="2af926ac:131590fb290:-7e98" interfaceFunctionName="Inductor" ordering="12" parent="2af926ac:131590fb290:-7ef4" simulationFunctionName="Inductor" simulationFunctionType="DEFAULT" style="Inductor;rotation=270;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="0.00073211273"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="7.3211273E-4"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Inductor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="L"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="7.3211273E-4"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="500.0" y="450.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="2af926ac:131590fb290:-7d89" ordering="1" parent="2af926ac:131590fb290:-7e98" style="ImplicitOutputPort;align=center;verticalAlign=top;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="2af926ac:131590fb290:-7d8a" ordering="1" parent="2af926ac:131590fb290:-7e98" style="ImplicitInputPort;align=center;verticalAlign=bottom;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitInputPort><ImplicitLink id="2af926ac:131590fb290:-7e91" parent="2af926ac:131590fb290:-7ef4" source="2af926ac:131590fb290:-7d8e" target="2af926ac:131590fb290:-7d86"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="240.0" y="504.0"/><mxPoint as="targetPoint" x="300.0" y="600.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="240.0" y="600.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="2af926ac:131590fb290:-7e8e" ordering="13" parent="2af926ac:131590fb290:-7ef4" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="397.0" y="347.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="2af926ac:131590fb290:-7e8d" ordering="1" parent="2af926ac:131590fb290:-7e8e" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="2af926ac:131590fb290:-7e8c" ordering="1" parent="2af926ac:131590fb290:-7e8e" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="2af926ac:131590fb290:-7e8b" ordering="2" parent="2af926ac:131590fb290:-7e8e" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitLink id="2af926ac:131590fb290:-7e8a" parent="2af926ac:131590fb290:-7ef4" source="2af926ac:131590fb290:-7d91" target="2af926ac:131590fb290:-7e8d"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="2af926ac:131590fb290:-7e89" parent="2af926ac:131590fb290:-7ef4" source="2af926ac:131590fb290:-7ea1" target="2af926ac:131590fb290:-7e8c"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="460.0" y="350.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="2af926ac:131590fb290:-7e87" ordering="14" parent="2af926ac:131590fb290:-7ef4" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="397.0" y="427.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="2af926ac:131590fb290:-7e86" ordering="1" parent="2af926ac:131590fb290:-7e87" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="2af926ac:131590fb290:-7e85" ordering="1" parent="2af926ac:131590fb290:-7e87" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="2af926ac:131590fb290:-7e84" ordering="2" parent="2af926ac:131590fb290:-7e87" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitLink id="2af926ac:131590fb290:-7e83" parent="2af926ac:131590fb290:-7ef4" source="2af926ac:131590fb290:-7d89" target="2af926ac:131590fb290:-7e86"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="520.0" y="430.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="2af926ac:131590fb290:-7e82" parent="2af926ac:131590fb290:-7ef4" source="2af926ac:131590fb290:-7e8b" target="2af926ac:131590fb290:-7e85"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="2af926ac:131590fb290:-7e88" parent="2af926ac:131590fb290:-7ef4" source="2af926ac:131590fb290:-7d8d" target="2af926ac:131590fb290:-7e84"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="240.0" y="456.0"/><mxPoint as="targetPoint" x="400.0" y="430.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="240.0" y="430.0"/></Array></mxGeometry></ImplicitLink><BasicBlock angle="270" dependsOnU="1" id="2af926ac:131590fb290:-7e75" interfaceFunctionName="Inductor" ordering="15" parent="2af926ac:131590fb290:-7ef4" simulationFunctionName="Inductor" simulationFunctionType="DEFAULT" style="Inductor;rotation=270;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="0.0054494652"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="0.0054494652"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Inductor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="L"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0054494652"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="420.0" y="640.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="2af926ac:131590fb290:-7d75" ordering="1" parent="2af926ac:131590fb290:-7e75" style="ImplicitOutputPort;align=center;verticalAlign=top;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="2af926ac:131590fb290:-7d76" ordering="1" parent="2af926ac:131590fb290:-7e75" style="ImplicitInputPort;align=center;verticalAlign=bottom;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="2af926ac:131590fb290:-7e17" interfaceFunctionName="CurrentSensor" ordering="16" parent="2af926ac:131590fb290:-7ef4" simulationFunctionName="CurrentSensor" simulationFunctionType="DEFAULT" style="CurrentSensor;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CurrentSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="i"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="320.0" y="580.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="2af926ac:131590fb290:-7e16" ordering="1" parent="2af926ac:131590fb290:-7e17" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="6.0"/></ImplicitOutputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="2af926ac:131590fb290:-7e15" ordering="2" parent="2af926ac:131590fb290:-7e17" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="26.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="2af926ac:131590fb290:-7e14" ordering="1" parent="2af926ac:131590fb290:-7e17" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitLink id="2af926ac:131590fb290:-7e06" parent="2af926ac:131590fb290:-7ef4" source="2af926ac:131590fb290:-7d85" target="2af926ac:131590fb290:-7e14"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="294.0" y="600.0000000000001"/><mxPoint as="targetPoint" x="315.38461538461536" y="600.0"/></mxGeometry></ImplicitLink><BasicBlock angle="270" dependsOnU="1" id="2af926ac:131590fb290:-7de2" interfaceFunctionName="CurrentSensor" ordering="17" parent="2af926ac:131590fb290:-7ef4" simulationFunctionName="CurrentSensor" simulationFunctionType="DEFAULT" style="CurrentSensor;rotation=270;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CurrentSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="i"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="730.0" y="490.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="2af926ac:131590fb290:-7de1" ordering="1" parent="2af926ac:131590fb290:-7de2" style="ImplicitOutputPort;align=center;verticalAlign=top;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="6.0" y="-8.0"/></ImplicitOutputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="2af926ac:131590fb290:-7de0" ordering="2" parent="2af926ac:131590fb290:-7de2" style="ExplicitOutputPort;align=center;verticalAlign=top;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="26.0" y="-8.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="2af926ac:131590fb290:-7ddf" ordering="1" parent="2af926ac:131590fb290:-7de2" style="ImplicitInputPort;align=center;verticalAlign=bottom;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitInputPort><BasicBlock angle="270" dependsOnU="1" id="2af926ac:131590fb290:-7dd5" interfaceFunctionName="Switch" ordering="18" parent="2af926ac:131590fb290:-7ef4" simulationFunctionName="Switch" simulationFunctionType="DEFAULT" style="Switch;rotation=270;flip=false;mirror=false"><ScilabString as="exprs" height="2" width="1"><data column="0" line="0" value="0.0000001"/><data column="0" line="1" value="10000000"/></ScilabString><ScilabDouble as="realParameters" height="2" width="1"><data column="0" line="0" realPart="0.01"/><data column="0" line="1" realPart="100000.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Switch"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="p"/><data column="0" line="1" value="inp"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="2" width="1"><data column="0" line="0" value="Ron"/><data column="0" line="1" value="Roff"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0E-7"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0E7"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="730.0" y="250.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="2af926ac:131590fb290:-7d6c" ordering="1" parent="2af926ac:131590fb290:-7dd5" style="ImplicitOutputPort;align=center;verticalAlign=top;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="2af926ac:131590fb290:-7d6e" ordering="1" parent="2af926ac:131590fb290:-7dd5" style="ImplicitInputPort;align=center;verticalAlign=bottom;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="6.0" y="40.0"/></ImplicitInputPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="2af926ac:131590fb290:-7d6d" ordering="2" parent="2af926ac:131590fb290:-7dd5" style="ExplicitInputPort;align=center;verticalAlign=bottom;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="26.0" y="40.0"/></ExplicitInputPort><BasicBlock angle="180" blockType="h" id="2af926ac:131590fb290:-7dc8" interfaceFunctionName="STEP_FUNCTION" ordering="19" parent="2af926ac:131590fb290:-7ef4" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="STEP_FUNCTION;rotation=180;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="STEP_FUNCTION"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-4"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="14.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=" "/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="18.521605"/><data column="1" line="0" realPart="-59.30322000000001"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="3" width="1"><data column="0" line="0" value="0.005"/><data column="0" line="1" value="-5"/><data column="0" line="2" value="5"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"STEP",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="STEP"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="step_func"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-5.0"/><data column="0" line="1" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.005"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="true"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-4c79a1b6:166e2706967:-7d2f"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="STEP"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-4c79a1b6:166e2706967:-7d2f"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="107.093038"/><data column="1" line="0" realPart="-69.30322000000001"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"OUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="OUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-2.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-4c79a1b6:166e2706967:-7d2b"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="OUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-4c79a1b6:166e2706967:-7d2b"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="6" width="1"><data column="0" line="0" realPart="78.521605"/><data column="0" line="1" realPart="78.52160799999999"/><data column="0" line="2" realPart="40.0"/><data column="0" line="3" realPart="40.0"/><data column="0" line="4" realPart="78.52160799999999"/><data column="0" line="5" realPart="78.521605"/></ScilabDouble><ScilabDouble height="6" width="1"><data column="0" line="0" realPart="-63.30322000000001"/><data column="0" line="1" realPart="-129.69611999999995"/><data column="0" line="2" realPart="-129.69611999999995"/><data column="0" line="3" realPart="-40.0"/><data column="0" line="4" realPart="-40.0"/><data column="0" line="5" realPart="-15.30322000000001"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="102.521605"/><data column="0" line="1" realPart="123.093038"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-39.30322000000001"/><data column="0" line="1" realPart="-59.30322000000001"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="860.0" y="350.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataType="REAL_MATRIX" id="2af926ac:131590fb290:-7d69" ordering="1" parent="2af926ac:131590fb290:-7dc8" style="ExplicitOutputPort;align=left;verticalAlign=middle;spacing=10;rotation=180;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitOutputPort><ImplicitLink id="2af926ac:131590fb290:-7dc6" parent="2af926ac:131590fb290:-7ef4" source="2af926ac:131590fb290:-7de1" target="2af926ac:131590fb290:-7d6e"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="740.0" y="304.0"/><mxPoint as="targetPoint" x="744.4444444444445" y="500.0"/></mxGeometry></ImplicitLink><SplitBlock id="2af926ac:131590fb290:-7dc4" ordering="20" parent="2af926ac:131590fb290:-7ef4" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="387.0" y="87.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="2af926ac:131590fb290:-7dc3" ordering="1" parent="2af926ac:131590fb290:-7dc4" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="2af926ac:131590fb290:-7dc2" ordering="1" parent="2af926ac:131590fb290:-7dc4" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="2af926ac:131590fb290:-7dc1" ordering="2" parent="2af926ac:131590fb290:-7dc4" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitLink id="2af926ac:131590fb290:-7dc0" parent="2af926ac:131590fb290:-7ef4" source="2af926ac:131590fb290:-7da6" target="2af926ac:131590fb290:-7dc3"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="220.0" y="90.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="2af926ac:131590fb290:-7dbf" parent="2af926ac:131590fb290:-7ef4" source="2af926ac:131590fb290:-7dc2" target="2af926ac:131590fb290:-7eb5"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ExplicitLink id="2af926ac:131590fb290:-7db0" parent="2af926ac:131590fb290:-7ef4" source="2af926ac:131590fb290:-7d69" target="2af926ac:131590fb290:-7d6d"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="856.0" y="369.99999999999994"/><mxPoint as="targetPoint" x="750.0" y="295.45454545454544"/><Array as="points" scilabClass="ScilabList"><mxPoint x="760.0" y="370.0"/></Array></mxGeometry></ExplicitLink><BasicBlock dependsOnU="1" id="2af926ac:131590fb290:-7d5e" interfaceFunctionName="MUX" ordering="21" parent="2af926ac:131590fb290:-7ef4" simulationFunctionName="multiplex" simulationFunctionType="C_OR_FORTRAN" style="MUX;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="2"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="20.0" width="30.0" x="880.0" y="640.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="0" dataType="REAL_MATRIX" id="2af926ac:131590fb290:-7d5d" ordering="1" parent="2af926ac:131590fb290:-7d5e" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="30.0" y="6.0"/></ExplicitOutputPort><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="2af926ac:131590fb290:-7d5c" ordering="1" parent="2af926ac:131590fb290:-7d5e" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ExplicitInputPort><ExplicitInputPort dataColumns="1" dataLines="-2" dataType="REAL_MATRIX" id="2af926ac:131590fb290:-7d5b" ordering="2" parent="2af926ac:131590fb290:-7d5e" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitLink id="2af926ac:131590fb290:-7d56" parent="2af926ac:131590fb290:-7ef4" source="2af926ac:131590fb290:-7e15" target="2af926ac:131590fb290:-7d5b"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="364.0" y="610.0"/><mxPoint as="targetPoint" x="875.0" y="659.0909090909091"/><Array as="points" scilabClass="ScilabList"><mxPoint x="650.0" y="610.0"/><mxPoint x="650.0" y="660.0"/></Array></mxGeometry></ExplicitLink><BasicBlock dependsOnU="1" id="2af926ac:131590fb290:-7d4b" interfaceFunctionName="CMSCOPE" ordering="22" parent="2af926ac:131590fb290:-7ef4" simulationFunctionName="cmscope" simulationFunctionType="C_OR_FORTRAN" style="CMSCOPE;flip=false;mirror=false"><ScilabString as="exprs" height="11" width="1"><data column="0" line="0" value="1 2"/><data column="0" line="1" value="1 3 5 7 9 11 13 15"/><data column="0" line="2" value="-1"/><data column="0" line="3" value="[]"/><data column="0" line="4" value="[]"/><data column="0" line="5" value="-1.5 -1.5"/><data column="0" line="6" value="1.5 1.5"/><data column="0" line="7" value="0.250 0.250"/><data column="0" line="8" value="2"/><data column="0" line="9" value="0"/><data column="0" line="10" value="Fault Current,Generator and Motor side components"/></ScilabString><ScilabDouble as="realParameters" height="7" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="0.25"/><data column="0" line="2" realPart="0.25"/><data column="0" line="3" realPart="-1.5"/><data column="0" line="4" realPart="1.5"/><data column="0" line="5" realPart="-1.5"/><data column="0" line="6" realPart="1.5"/></ScilabDouble><ScilabDouble as="integerParameters" height="13" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="2.0"/><data column="0" line="2" realPart="2.0"/><data column="0" line="3" realPart="-1.0"/><data column="0" line="4" realPart="-1.0"/><data column="0" line="5" realPart="-1.0"/><data column="0" line="6" realPart="-1.0"/><data column="0" line="7" realPart="1.0"/><data column="0" line="8" realPart="2.0"/><data column="0" line="9" realPart="1.0"/><data column="0" line="10" realPart="3.0"/><data column="0" line="11" realPart="5.0"/><data column="0" line="12" realPart="0.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="960.0" y="520.0"/></BasicBlock><ControlPort dataType="UNKNOW_TYPE" id="2af926ac:131590fb290:-7ce5" ordering="1" parent="2af926ac:131590fb290:-7d4b" style="ControlPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="2af926ac:131590fb290:-7ce7" ordering="1" parent="2af926ac:131590fb290:-7d4b" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ExplicitInputPort><ExplicitInputPort dataColumns="1" dataLines="2" dataType="REAL_MATRIX" id="2af926ac:131590fb290:-7ce6" ordering="2" parent="2af926ac:131590fb290:-7d4b" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="26.0"/></ExplicitInputPort><ExplicitLink id="2af926ac:131590fb290:-7d47" parent="2af926ac:131590fb290:-7ef4" source="2af926ac:131590fb290:-7d5d" target="2af926ac:131590fb290:-7ce6"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="913.9999999999999" y="650.0"/><mxPoint as="targetPoint" x="954.5454545454545" y="545.4545454545455"/><Array as="points" scilabClass="ScilabList"><mxPoint x="940.0" y="650.0"/><mxPoint x="940.0" y="550.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="2af926ac:131590fb290:-7d46" parent="2af926ac:131590fb290:-7ef4" source="2af926ac:131590fb290:-7de0" target="2af926ac:131590fb290:-7ce7"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="759.9999999999999" y="486.0"/><mxPoint as="targetPoint" x="953.6423841059602" y="529.8013245033112"/><Array as="points" scilabClass="ScilabList"><mxPoint x="760.0" y="460.0"/><mxPoint x="890.0" y="460.0"/><mxPoint x="890.0" y="530.0"/></Array></mxGeometry></ExplicitLink><BasicBlock blockType="h" id="2af926ac:131590fb290:-7d40" interfaceFunctionName="CLOCK_c" ordering="23" parent="2af926ac:131590fb290:-7ef4" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="99.0"/><data column="1" line="0" realPart="-160.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-4c79a1b6:166e2706967:-7d25"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-4c79a1b6:166e2706967:-7d25"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-70.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.0001"/><data column="0" line="1" value="0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="1.0E-4"/><data column="0" line="1" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-4c79a1b6:166e2706967:-7d23"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-4c79a1b6:166e2706967:-7d23"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="90.3773266666667"/><data column="1" line="0" realPart="-166.33333333333331"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="7.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="5.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-4c79a1b6:166e2706967:-7d20"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-4c79a1b6:166e2706967:-7d20"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="60.0"/><data column="0" line="2" realPart="97.54399333333338"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-74.0"/><data column="0" line="1" realPart="-170.0"/><data column="0" line="2" realPart="-155.33333333333331"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="97.48843777777782"/><data column="0" line="1" realPart="129.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-163.66666666666666"/><data column="0" line="1" realPart="-136.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="97.59954888888893"/><data column="0" line="1" realPart="100.70999999999998"/><data column="0" line="2" realPart="60.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-163.66666666666666"/><data column="0" line="1" realPart="-40.0"/><data column="0" line="2" realPart="-40.0"/><data column="0" line="3" realPart="-26.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="960.0" y="420.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="2af926ac:131590fb290:-7d34" ordering="1" parent="2af926ac:131590fb290:-7d40" style="CommandPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><CommandControlLink id="2af926ac:131590fb290:-7d3d" parent="2af926ac:131590fb290:-7ef4" source="2af926ac:131590fb290:-7d34" target="2af926ac:131590fb290:-7ce5"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="980.0" y="444.0"/><mxPoint as="targetPoint" x="976.4705882352941" y="517.6470588235294"/></mxGeometry></CommandControlLink><GroundBlock angle="180" dependsOnU="1" id="2af926ac:131590fb290:-7d2d" interfaceFunctionName="Ground" ordering="24" parent="2af926ac:131590fb290:-7ef4" simulationFunctionName="Ground" simulationFunctionType="DEFAULT" style="Ground;rotation=180;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Ground"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="370.0" y="10.0"/></GroundBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="2af926ac:131590fb290:-7d2c" ordering="1" parent="2af926ac:131590fb290:-7d2d" style="ImplicitInputPort;align=center;verticalAlign=bottom;spacing=10;rotation=270;flip=false;mirror=false"><Orientation as="orientation" value="NORTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitInputPort><SplitBlock id="2af926ac:131590fb290:-7d23" ordering="25" parent="2af926ac:131590fb290:-7ef4" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="387.0" y="67.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="2af926ac:131590fb290:-7d22" ordering="1" parent="2af926ac:131590fb290:-7d23" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="2af926ac:131590fb290:-7d21" ordering="1" parent="2af926ac:131590fb290:-7d23" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="2af926ac:131590fb290:-7d20" ordering="2" parent="2af926ac:131590fb290:-7d23" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitLink id="2af926ac:131590fb290:-7d1f" parent="2af926ac:131590fb290:-7ef4" source="2af926ac:131590fb290:-7d6c" target="2af926ac:131590fb290:-7d22"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="750.0" y="70.0"/><mxPoint x="390.0" y="70.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="2af926ac:131590fb290:-7d1e" parent="2af926ac:131590fb290:-7ef4" source="2af926ac:131590fb290:-7dc1" target="2af926ac:131590fb290:-7d21"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="2af926ac:131590fb290:-7d24" parent="2af926ac:131590fb290:-7ef4" source="2af926ac:131590fb290:-7d20" target="2af926ac:131590fb290:-7d2c"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="389.99999999999994" y="44.0"/><mxPoint as="targetPoint" x="388.2352941176471" y="70.58823529411765"/></mxGeometry></ImplicitLink><SplitBlock id="2af926ac:131590fb290:-7d01" ordering="26" parent="2af926ac:131590fb290:-7ef4" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="437.0" y="587.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="2af926ac:131590fb290:-7d00" ordering="1" parent="2af926ac:131590fb290:-7d01" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="2af926ac:131590fb290:-7cff" ordering="1" parent="2af926ac:131590fb290:-7d01" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="2af926ac:131590fb290:-7cfe" ordering="2" parent="2af926ac:131590fb290:-7d01" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitLink id="2af926ac:131590fb290:-7cfd" parent="2af926ac:131590fb290:-7ef4" source="2af926ac:131590fb290:-7d75" target="2af926ac:131590fb290:-7d00"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="2af926ac:131590fb290:-7cfc" parent="2af926ac:131590fb290:-7ef4" source="2af926ac:131590fb290:-7e16" target="2af926ac:131590fb290:-7cff"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="2af926ac:131590fb290:-7d02" parent="2af926ac:131590fb290:-7ef4" source="2af926ac:131590fb290:-7e12" target="2af926ac:131590fb290:-7cfe"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="509.99999999999994" y="584.0"/><mxPoint as="targetPoint" x="435.29411764705884" y="588.2352941176471"/><Array as="points" scilabClass="ScilabList"><mxPoint x="510.0" y="590.0"/></Array></mxGeometry></ImplicitLink><BasicBlock angle="90" dependsOnU="1" id="2af926ac:131590fb290:-7e13" interfaceFunctionName="CurrentSensor" ordering="27" parent="2af926ac:131590fb290:-7ef4" simulationFunctionName="CurrentSensor" simulationFunctionType="DEFAULT" style="CurrentSensor;rotation=90;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CurrentSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="i"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="500.0" y="510.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="2af926ac:131590fb290:-7e12" ordering="1" parent="2af926ac:131590fb290:-7e13" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="6.0" y="40.0"/></ImplicitOutputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="2af926ac:131590fb290:-7e11" ordering="2" parent="2af926ac:131590fb290:-7e13" style="ExplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="26.0" y="40.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="2af926ac:131590fb290:-7e10" ordering="1" parent="2af926ac:131590fb290:-7e13" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitLink id="2af926ac:131590fb290:-7cf0" parent="2af926ac:131590fb290:-7ef4" source="2af926ac:131590fb290:-7d8a" target="2af926ac:131590fb290:-7e10"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="520.0" y="494.0"/><mxPoint as="targetPoint" x="520.0" y="502.85714285714283"/></mxGeometry></ImplicitLink><ExplicitLink id="2af926ac:131590fb290:-7cef" parent="2af926ac:131590fb290:-7ef4" source="2af926ac:131590fb290:-7e11" target="2af926ac:131590fb290:-7d5c"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="530.0" y="554.0"/><mxPoint as="targetPoint" x="874.2857142857143" y="640.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="531.4285714285714" y="588.5714285714286"/><mxPoint x="700.0" y="590.0"/><mxPoint x="700.0" y="640.0"/></Array></mxGeometry></ExplicitLink><ImplicitLink id="2af926ac:131590fb290:-7ce9" parent="2af926ac:131590fb290:-7ef4" source="2af926ac:131590fb290:-7d76" target="2af926ac:131590fb290:-7ddf"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="440.0" y="684.0"/><mxPoint as="targetPoint" x="752.5773195876288" y="536.0824742268042"/><Array as="points" scilabClass="ScilabList"><mxPoint x="440.0" y="730.0"/><mxPoint x="750.0" y="730.0"/></Array></mxGeometry></ImplicitLink><TextBlock id="2af926ac:131590fb290:-7c5a" parent="2af926ac:131590fb290:-7ef4" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;fontColor=#E09038;flip=false;mirror=false" value="Positive"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="Positive"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="Positive"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="140.0" y="210.0"/></TextBlock><TextBlock id="2af926ac:131590fb290:-7c58" parent="2af926ac:131590fb290:-7ef4" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;fontColor=#E09038;flip=false;mirror=false" value="Negative"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="Negative"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="Negative"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="140.0" y="480.0"/></TextBlock><TextBlock id="2af926ac:131590fb290:-7c56" parent="2af926ac:131590fb290:-7ef4" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;fontColor=#E09038;flip=false;mirror=false" value="Zero"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="Zero"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="Zero"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="380.0" y="640.0"/></TextBlock><TextBlock id="2af926ac:131590fb290:-7c54" parent="2af926ac:131590fb290:-7ef4" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;flip=false;mirror=false" value="j0.2"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="j0.2"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="j0.2"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="160.0" y="250.0"/></TextBlock><TextBlock id="2af926ac:131590fb290:-7c50" parent="2af926ac:131590fb290:-7ef4" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;flip=false;mirror=false" value="j0.345"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="j0.345"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="j0.345"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="340.0" y="240.0"/></TextBlock><TextBlock id="2af926ac:131590fb290:-7c4c" parent="2af926ac:131590fb290:-7ef4" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;flip=false;mirror=false" value="j0.69"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="j0.69"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="j0.69"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="550.0" y="240.0"/></TextBlock><TextBlock id="2af926ac:131590fb290:-7c48" parent="2af926ac:131590fb290:-7ef4" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;flip=false;mirror=false" value="j0.325"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="j0.325"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="j0.325"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="290.0" y="370.0"/></TextBlock><TextBlock id="2af926ac:131590fb290:-7c45" parent="2af926ac:131590fb290:-7ef4" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;flip=false;mirror=false" value="E&quot;g"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="E&quot;g"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="E&quot;g"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="140.0" y="140.0"/></TextBlock><TextBlock id="2af926ac:131590fb290:-7c42" parent="2af926ac:131590fb290:-7ef4" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;flip=false;mirror=false" value="E&quot;m2"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="E&quot;m2"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="E&quot;m2"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="560.0" y="140.0"/></TextBlock><TextBlock id="2af926ac:131590fb290:-7c41" parent="2af926ac:131590fb290:-7ef4" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;flip=false;mirror=false" value="E&quot;m1"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="E&quot;m1"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="E&quot;m1"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="330.0" y="140.0"/></TextBlock><TextBlock id="2af926ac:131590fb290:-7c3d" parent="2af926ac:131590fb290:-7ef4" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;flip=false;mirror=false" value="j0.2"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="j0.2"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="j0.2"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="180.0" y="460.0"/></TextBlock><TextBlock id="2af926ac:131590fb290:-7c3a" parent="2af926ac:131590fb290:-7ef4" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;flip=false;mirror=false" value="j0.325"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="j0.325"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="j0.325"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="250.0" y="540.0"/></TextBlock><TextBlock id="2af926ac:131590fb290:-7c37" parent="2af926ac:131590fb290:-7ef4" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;flip=false;mirror=false" value="j0.23"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="j0.23"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="j0.23"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="550.0" y="450.0"/></TextBlock><TextBlock id="2af926ac:131590fb290:-7c34" parent="2af926ac:131590fb290:-7ef4" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;flip=false;mirror=false" value="j1.712"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="j1.712"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="j1.712"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="470.0" y="640.0"/></TextBlock><TextBlock id="2af926ac:131590fb290:-7c30" parent="2af926ac:131590fb290:-7ef4" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;fontColor=#D31B1B;flip=false;mirror=false" value="Generator side comp"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="Generator side comp"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="Generator side comp"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="320.0" y="610.0"/></TextBlock><TextBlock id="2af926ac:131590fb290:-7c2c" parent="2af926ac:131590fb290:-7ef4" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;fontColor=#D31B1B;flip=false;mirror=false" value="Motor <br>side comp"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="Motor <br>side comp"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="Motor <br>side comp"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="570.0" y="510.0"/></TextBlock><TextBlock id="2af926ac:131590fb290:-7c28" parent="2af926ac:131590fb290:-7ef4" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;fontColor=#D31B1B;flip=false;mirror=false" value="Measure <br>fault Current"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="Measure <br>fault Current"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="Measure <br>fault Current"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="740.0" y="540.0"/></TextBlock><TextBlock id="2af926ac:131590fb290:-7c26" parent="2af926ac:131590fb290:-7ef4" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;fontColor=#D31B1B;flip=false;mirror=false" value="Fault Initiation"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="Fault Initiation"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="Fault Initiation"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="860.0" y="310.0"/></TextBlock><TextBlock id="2af926ac:131590fb290:-7c24" parent="2af926ac:131590fb290:-7ef4" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;fontColor=#D31B1B;flip=false;mirror=false" value="Switch1"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="Switch1"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="Switch1"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="790.0" y="250.0"/></TextBlock></root></mxGraphModel><mxCell as="defaultParent" id="2af926ac:131590fb290:-7ef4" parent="2af926ac:131590fb290:-7ef3"/></XcosDiagram>
\ No newline at end of file diff --git a/Working_Examples/83/CH11/EX11.3/result_example_11_3.txt b/Working_Examples/83/CH11/EX11.3/result_example_11_3.txt new file mode 100755 index 0000000..fa49a93 --- /dev/null +++ b/Working_Examples/83/CH11/EX11.3/result_example_11_3.txt @@ -0,0 +1,42 @@ + +sequence impedances are given by +Z1=j0.1599 +Z2=j0.1599 +Z0=j1.7120 + +Fault Current= -j1.3422 + +Components currents flowing from Generator and motor are +Ig1= -j0.1363 +Ig2= -j0.1363 +Ig0=0 + +Im1= -j0.3111 +Im2= -j0.3111 +Im0= -j0.4474 + +Fault current from the generator towards g are + - 0.2725981i + 0.1362990i + 0.1362990i +and to g from motors are + - 1.0696512i + - 0.1362990i + - 0.1362990i + +Positive sequence current =-0.136 pu +Negative sequence current =0.136 pu +Zero sequence current=0 + +The per unit motor currents are: +Motor1:0.66 +j0.495 pu +Motor2:0.33 +j0.247 pu + +Voltage behind subtransient reactances: +Motor1:Em1= 1.0798-j0.2278 +Motor2:Em2= 1.0798-j0.2278 +Generator:Eg= 0.5193j+0.5199 + +The actual value of positive sequence current from the generator towards fault is = 0.99+j0.606 +The actual value of positive sequence current from the motors towards fault is = -0.99-j1.054 + diff --git a/Working_Examples/83/CH11/EX11.3/xcos_result_example_11_3.jpeg b/Working_Examples/83/CH11/EX11.3/xcos_result_example_11_3.jpeg Binary files differnew file mode 100755 index 0000000..b1d7d67 --- /dev/null +++ b/Working_Examples/83/CH11/EX11.3/xcos_result_example_11_3.jpeg diff --git a/Working_Examples/83/CH11/EX11.4/example_11_4.sce b/Working_Examples/83/CH11/EX11.4/example_11_4.sce new file mode 100755 index 0000000..f317fbf --- /dev/null +++ b/Working_Examples/83/CH11/EX11.4/example_11_4.sce @@ -0,0 +1,29 @@ +//Chapter 11 +//Example 11.4 +//page 412 +//To find L-L fault current and voltage of healthy phase +clc;clear; +X1eq=0.09*%i; +X2eq=0.075*%i; +Z0=0.99+(%i*0.1); +Ea=1;Ia0=0; + +//to calculate Ia1 +Ia1=Ea/(X1eq+X2eq); + +//to calculate fault current +If=(-%i*sqrt(3))*(-%i*6.06); +Va1=Ea-(Ia1*X1eq); +Va0=(-Ia0*Z0); +Va2=Va1; + +//voltage in healthy phase +Va=Va1+Va2+Va0; + +//displaying the result +printf('\nIa1=-j%0.2f',abs(Ia1)); +printf('\nIf=%0.3f',If); +printf('\nVa1=Va2=%0.3f',Va1); +printf('\nVa0=%d',Va0); +printf('\nVa=Va1+Va2+Va0=%0.2f\n\n',Va); + diff --git a/Working_Examples/83/CH11/EX11.4/example_11_4.xcos b/Working_Examples/83/CH11/EX11.4/example_11_4.xcos new file mode 100755 index 0000000..87dd270 --- /dev/null +++ b/Working_Examples/83/CH11/EX11.4/example_11_4.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" finalIntegrationTime="0.25" title="example_11_4"><!--Xcos - 1.0 - scilab-5.5.2 - 20160406 2040--><mxGraphModel as="model"><root><mxCell id="-1f09110a:1315ad634dc:-7fff"/><mxCell id="-1f09110a:1315ad634dc:-8000" parent="-1f09110a:1315ad634dc:-7fff"/><BasicBlock angle="90" dependsOnU="1" id="-1f09110a:1315ad634dc:-7fd4" interfaceFunctionName="Inductor" ordering="1" parent="-1f09110a:1315ad634dc:-8000" simulationFunctionName="Inductor" simulationFunctionType="DEFAULT" style="Inductor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="0.00028647889"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="2.8647889E-4"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Inductor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="L"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="2.8647889E-4"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="130.0" y="340.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1f09110a:1315ad634dc:-7f6b" ordering="1" parent="-1f09110a:1315ad634dc:-7fd4" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1f09110a:1315ad634dc:-7f6a" ordering="1" parent="-1f09110a:1315ad634dc:-7fd4" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><BasicBlock angle="270" dependsOnU="1" id="-1f09110a:1315ad634dc:-7fd1" interfaceFunctionName="Inductor" ordering="2" parent="-1f09110a:1315ad634dc:-8000" simulationFunctionName="Inductor" simulationFunctionType="DEFAULT" style="Inductor;rotation=270;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="0.00023873241"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="2.3873241E-4"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Inductor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="L"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="2.3873241E-4"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="620.0" y="270.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1f09110a:1315ad634dc:-7f67" ordering="1" parent="-1f09110a:1315ad634dc:-7fd1" style="ImplicitInputPort;align=center;verticalAlign=bottom;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1f09110a:1315ad634dc:-7f66" ordering="1" parent="-1f09110a:1315ad634dc:-7fd1" style="ImplicitOutputPort;align=center;verticalAlign=top;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitOutputPort><ImplicitLink id="-1f09110a:1315ad634dc:-7fce" parent="-1f09110a:1315ad634dc:-8000" source="-1f09110a:1315ad634dc:-7f6e" target="-1f09110a:1315ad634dc:-7f6b"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="150.0" y="264.0"/><mxPoint as="targetPoint" x="150.0" y="340.0"/></mxGeometry></ImplicitLink><VoltageSensorBlock dependsOnU="1" id="-1f09110a:1315ad634dc:-7fc4" interfaceFunctionName="VoltageSensor" ordering="3" parent="-1f09110a:1315ad634dc:-8000" simulationFunctionName="VoltageSensor" simulationFunctionType="DEFAULT" style="VoltageSensor;rotation=0;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="VoltageSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="v"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="360.0" y="250.0"/></VoltageSensorBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1f09110a:1315ad634dc:-7fc2" ordering="2" parent="-1f09110a:1315ad634dc:-7fc4" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1f09110a:1315ad634dc:-7fc1" ordering="1" parent="-1f09110a:1315ad634dc:-7fc4" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1f09110a:1315ad634dc:-7fc3" ordering="1" parent="-1f09110a:1315ad634dc:-7fc4" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><Orientation as="orientation" value="SOUTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><BasicBlock dependsOnU="1" id="-1f09110a:1315ad634dc:-7faa" interfaceFunctionName="CurrentSensor" ordering="4" parent="-1f09110a:1315ad634dc:-8000" simulationFunctionName="CurrentSensor" simulationFunctionType="DEFAULT" style="CurrentSensor;rotation=0;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CurrentSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="i"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="380.0" y="440.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1f09110a:1315ad634dc:-7fa8" ordering="2" parent="-1f09110a:1315ad634dc:-7faa" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="26.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1f09110a:1315ad634dc:-7fa7" ordering="1" parent="-1f09110a:1315ad634dc:-7faa" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1f09110a:1315ad634dc:-7fa9" ordering="1" parent="-1f09110a:1315ad634dc:-7faa" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="6.0"/></ImplicitOutputPort><ImplicitLink id="-1f09110a:1315ad634dc:-7fa6" parent="-1f09110a:1315ad634dc:-8000" source="-1f09110a:1315ad634dc:-7fa9" target="-1f09110a:1315ad634dc:-7f67"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="424.0" y="450.0"/><mxPoint as="targetPoint" x="540.0" y="320.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="640.0" y="450.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="-1f09110a:1315ad634dc:-7f9c" ordering="5" parent="-1f09110a:1315ad634dc:-8000" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="227.0" y="417.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-1f09110a:1315ad634dc:-7f9a" ordering="1" parent="-1f09110a:1315ad634dc:-7f9c" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-1f09110a:1315ad634dc:-7f99" ordering="2" parent="-1f09110a:1315ad634dc:-7f9c" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-1f09110a:1315ad634dc:-7f9b" ordering="1" parent="-1f09110a:1315ad634dc:-7f9c" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-1f09110a:1315ad634dc:-7f98" parent="-1f09110a:1315ad634dc:-8000" source="-1f09110a:1315ad634dc:-7fc3" target="-1f09110a:1315ad634dc:-7f9b"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="380.0" y="420.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-1f09110a:1315ad634dc:-7f97" parent="-1f09110a:1315ad634dc:-8000" source="-1f09110a:1315ad634dc:-7f6a" target="-1f09110a:1315ad634dc:-7f9a"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="150.0" y="420.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-1f09110a:1315ad634dc:-7f9d" parent="-1f09110a:1315ad634dc:-8000" source="-1f09110a:1315ad634dc:-7f99" target="-1f09110a:1315ad634dc:-7fa7"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="376.0" y="460.0"/><mxPoint as="targetPoint" x="230.0" y="420.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="230.0" y="460.0"/></Array></mxGeometry></ImplicitLink><BasicBlock dependsOnU="1" id="-1f09110a:1315ad634dc:-7f8d" interfaceFunctionName="CMSCOPE" ordering="6" parent="-1f09110a:1315ad634dc:-8000" simulationFunctionName="cmscope" simulationFunctionType="C_OR_FORTRAN" style="CMSCOPE;flip=false;mirror=false"><ScilabString as="exprs" height="11" width="1"><data column="0" line="0" value="1 1"/><data column="0" line="1" value="1 3 5 7 9 11 13 15"/><data column="0" line="2" value="-1"/><data column="0" line="3" value="[]"/><data column="0" line="4" value="[]"/><data column="0" line="5" value="-1.3 -20"/><data column="0" line="6" value="1.3 20"/><data column="0" line="7" value="0.250 0.250"/><data column="0" line="8" value="2"/><data column="0" line="9" value="0"/><data column="0" line="10" value="Measure of positive sequence voltage and current"/></ScilabString><ScilabDouble as="realParameters" height="7" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="0.25"/><data column="0" line="2" realPart="0.25"/><data column="0" line="3" realPart="-1.3"/><data column="0" line="4" realPart="1.3"/><data column="0" line="5" realPart="-20.0"/><data column="0" line="6" realPart="20.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="12" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="2.0"/><data column="0" line="2" realPart="2.0"/><data column="0" line="3" realPart="-1.0"/><data column="0" line="4" realPart="-1.0"/><data column="0" line="5" realPart="-1.0"/><data column="0" line="6" realPart="-1.0"/><data column="0" line="7" realPart="1.0"/><data column="0" line="8" realPart="1.0"/><data column="0" line="9" realPart="1.0"/><data column="0" line="10" realPart="3.0"/><data column="0" line="11" realPart="0.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="470.0" y="260.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="390d52f:131bf23b07c:-7e22" ordering="1" parent="-1f09110a:1315ad634dc:-7f8d" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ExplicitInputPort><ControlPort dataType="UNKNOW_TYPE" id="390d52f:131bf23b07c:-7e20" ordering="1" parent="-1f09110a:1315ad634dc:-7f8d" style="ControlPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="390d52f:131bf23b07c:-7e21" ordering="2" parent="-1f09110a:1315ad634dc:-7f8d" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="26.0"/></ExplicitInputPort><ExplicitLink id="-1f09110a:1315ad634dc:-7f7a" parent="-1f09110a:1315ad634dc:-8000" source="-1f09110a:1315ad634dc:-7fc2" target="390d52f:131bf23b07c:-7e22"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="304.0" y="270.0"/><mxPoint as="targetPoint" x="460.0" y="270.0"/></mxGeometry></ExplicitLink><ExplicitLink id="-1f09110a:1315ad634dc:-7f79" parent="-1f09110a:1315ad634dc:-8000" source="-1f09110a:1315ad634dc:-7fa8" target="390d52f:131bf23b07c:-7e21"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="466.0" y="290.0"/><mxPoint as="targetPoint" x="420.0" y="470.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="440.0" y="470.0"/><mxPoint x="440.0" y="290.0"/></Array></mxGeometry></ExplicitLink><BasicBlock blockType="h" id="-1f09110a:1315ad634dc:-7f73" interfaceFunctionName="CLOCK_c" ordering="7" parent="-1f09110a:1315ad634dc:-8000" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="99.0"/><data column="1" line="0" realPart="-152.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="390d52f:131bf23b07c:-7e3d"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="390d52f:131bf23b07c:-7e3d"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-62.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.0001"/><data column="0" line="1" value="0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="1.0E-4"/><data column="0" line="1" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="390d52f:131bf23b07c:-7e39"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="390d52f:131bf23b07c:-7e39"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="92.71066000000002"/><data column="1" line="0" realPart="-154.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="8.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="4.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="390d52f:131bf23b07c:-7e34"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="390d52f:131bf23b07c:-7e34"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="66.0"/><data column="0" line="2" realPart="103.37732666666669"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-18.0"/><data column="0" line="1" realPart="-186.0"/><data column="0" line="2" realPart="-158.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="104.71066000000002"/><data column="0" line="1" realPart="129.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-142.0"/><data column="0" line="1" realPart="-128.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="106.04399333333335"/><data column="0" line="1" realPart="111.70999999999998"/><data column="0" line="2" realPart="71.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-158.0"/><data column="0" line="1" realPart="-40.0"/><data column="0" line="2" realPart="-40.0"/><data column="0" line="3" realPart="-66.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="470.0" y="180.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="-1f09110a:1315ad634dc:-7f5e" ordering="1" parent="-1f09110a:1315ad634dc:-7f73" style="CommandPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><CommandControlLink id="-1f09110a:1315ad634dc:-7f71" parent="-1f09110a:1315ad634dc:-8000" source="-1f09110a:1315ad634dc:-7f5e" target="390d52f:131bf23b07c:-7e20"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="490.0" y="224.0"/><mxPoint as="targetPoint" x="490.0" y="250.0"/></mxGeometry></CommandControlLink><BasicBlock dependsOnU="1" id="-1f09110a:1315ad634dc:-7f52" interfaceFunctionName="Switch" ordering="8" parent="-1f09110a:1315ad634dc:-8000" simulationFunctionName="Switch" simulationFunctionType="DEFAULT" style="Switch;rotation=0;flip=false;mirror=false"><ScilabString as="exprs" height="2" width="1"><data column="0" line="0" value="0.000001"/><data column="0" line="1" value="1000000"/></ScilabString><ScilabDouble as="realParameters" height="2" width="1"><data column="0" line="0" realPart="0.01"/><data column="0" line="1" realPart="100000.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Switch"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="p"/><data column="0" line="1" value="inp"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="2" width="1"><data column="0" line="0" value="Ron"/><data column="0" line="1" value="Roff"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0E-6"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1000000.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="270.0" y="140.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1f09110a:1315ad634dc:-7f39" ordering="1" parent="-1f09110a:1315ad634dc:-7f52" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ImplicitInputPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1f09110a:1315ad634dc:-7f38" ordering="2" parent="-1f09110a:1315ad634dc:-7f52" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="26.0"/></ExplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1f09110a:1315ad634dc:-7f37" ordering="1" parent="-1f09110a:1315ad634dc:-7f52" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><BasicBlock blockType="h" id="-1f09110a:1315ad634dc:-7f3d" interfaceFunctionName="STEP_FUNCTION" ordering="9" parent="-1f09110a:1315ad634dc:-8000" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="STEP_FUNCTION;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="STEP_FUNCTION"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-4"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="14.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=" "/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="2.521605000000008"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="3" width="1"><data column="0" line="0" value="0.005"/><data column="0" line="1" value="-5"/><data column="0" line="2" value="5"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"STEP",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="STEP"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="step_func"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-5.0"/><data column="0" line="1" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.005"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="true"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="390d52f:131bf23b07c:-7e29"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="STEP"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="390d52f:131bf23b07c:-7e29"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="91.093038"/><data column="1" line="0" realPart="-50.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"OUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="OUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-2.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="390d52f:131bf23b07c:-7e26"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="OUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="390d52f:131bf23b07c:-7e26"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="6" width="1"><data column="0" line="0" realPart="62.52160500000001"/><data column="0" line="1" realPart="78.52160799999999"/><data column="0" line="2" realPart="40.0"/><data column="0" line="3" realPart="40.0"/><data column="0" line="4" realPart="78.52160799999999"/><data column="0" line="5" realPart="62.52160500000001"/></ScilabDouble><ScilabDouble height="6" width="1"><data column="0" line="0" realPart="4.0"/><data column="0" line="1" realPart="-134.39289999999994"/><data column="0" line="2" realPart="-134.39289999999994"/><data column="0" line="3" realPart="-44.69677999999999"/><data column="0" line="4" realPart="-44.69677999999999"/><data column="0" line="5" realPart="-44.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="86.52160500000001"/><data column="0" line="1" realPart="107.093038"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-20.0"/><data column="0" line="1" realPart="-40.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="210.0" y="200.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataType="REAL_MATRIX" id="-1f09110a:1315ad634dc:-7f34" ordering="1" parent="-1f09110a:1315ad634dc:-7f3d" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><GroundBlock angle="180" dependsOnU="1" id="-1f09110a:1315ad634dc:-7f1f" interfaceFunctionName="Ground" ordering="10" parent="-1f09110a:1315ad634dc:-8000" simulationFunctionName="Ground" simulationFunctionType="DEFAULT" style="Ground;rotation=180;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Ground"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="130.0" y="60.0"/></GroundBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1f09110a:1315ad634dc:-7f1e" ordering="1" parent="-1f09110a:1315ad634dc:-7f1f" style="ImplicitInputPort;align=center;verticalAlign=bottom;spacing=10;rotation=270;flip=false;mirror=false"><Orientation as="orientation" value="NORTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitInputPort><SplitBlock id="-1f09110a:1315ad634dc:-7f1a" ordering="11" parent="-1f09110a:1315ad634dc:-8000" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="147.0" y="147.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-1f09110a:1315ad634dc:-7f18" ordering="1" parent="-1f09110a:1315ad634dc:-7f1a" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-1f09110a:1315ad634dc:-7f17" ordering="2" parent="-1f09110a:1315ad634dc:-7f1a" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-1f09110a:1315ad634dc:-7f19" ordering="1" parent="-1f09110a:1315ad634dc:-7f1a" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-1f09110a:1315ad634dc:-7f15" parent="-1f09110a:1315ad634dc:-8000" source="-1f09110a:1315ad634dc:-7f18" target="-1f09110a:1315ad634dc:-7f6f"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-1f09110a:1315ad634dc:-7f1b" parent="-1f09110a:1315ad634dc:-8000" source="-1f09110a:1315ad634dc:-7f17" target="-1f09110a:1315ad634dc:-7f1e"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="150.0" y="104.0"/><mxPoint as="targetPoint" x="150.0" y="150.0"/></mxGeometry></ImplicitLink><ImplicitLink id="-1f09110a:1315ad634dc:-7f14" parent="-1f09110a:1315ad634dc:-8000" source="-1f09110a:1315ad634dc:-7f19" target="-1f09110a:1315ad634dc:-7f39"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="210.0" y="150.0"/><mxPoint x="240.0" y="150.0"/></Array></mxGeometry></ImplicitLink><ExplicitLink id="-1f09110a:1315ad634dc:-7efb" parent="-1f09110a:1315ad634dc:-8000" source="-1f09110a:1315ad634dc:-7f34" target="-1f09110a:1315ad634dc:-7f38"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="244.0" y="220.0"/><mxPoint as="targetPoint" x="260.0" y="170.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="260.0" y="220.0"/><mxPoint x="260.0" y="170.0"/></Array></mxGeometry></ExplicitLink><SplitBlock id="-1f09110a:1315ad634dc:-7ec6" ordering="12" parent="-1f09110a:1315ad634dc:-8000" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="337.0" y="157.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-1f09110a:1315ad634dc:-7ec4" ordering="1" parent="-1f09110a:1315ad634dc:-7ec6" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-1f09110a:1315ad634dc:-7ec3" ordering="2" parent="-1f09110a:1315ad634dc:-7ec6" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-1f09110a:1315ad634dc:-7ec5" ordering="1" parent="-1f09110a:1315ad634dc:-7ec6" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-1f09110a:1315ad634dc:-7ec2" parent="-1f09110a:1315ad634dc:-8000" source="-1f09110a:1315ad634dc:-7f37" target="-1f09110a:1315ad634dc:-7ec5"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-1f09110a:1315ad634dc:-7ec1" parent="-1f09110a:1315ad634dc:-8000" source="-1f09110a:1315ad634dc:-7f66" target="-1f09110a:1315ad634dc:-7ec4"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="640.0" y="160.0"/><mxPoint x="640.0" y="160.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-1f09110a:1315ad634dc:-7ec7" parent="-1f09110a:1315ad634dc:-8000" source="-1f09110a:1315ad634dc:-7ec3" target="-1f09110a:1315ad634dc:-7fc1"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="356.0" y="270.0"/><mxPoint as="targetPoint" x="336.734693877551" y="163.26530612244898"/><Array as="points" scilabClass="ScilabList"><mxPoint x="340.0" y="270.0"/></Array></mxGeometry></ImplicitLink><TextBlock id="-1f09110a:1315ad634dc:-7e0c" parent="-1f09110a:1315ad634dc:-8000" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;flip=false;mirror=false" value="Ea"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="Ea"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="Ea"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="90.0" y="210.0"/></TextBlock><TextBlock id="-1f09110a:1315ad634dc:-7e08" parent="-1f09110a:1315ad634dc:-8000" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;flip=false;mirror=false" value="j0.09"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="j0.09"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="j0.09"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="80.0" y="340.0"/></TextBlock><TextBlock id="-1f09110a:1315ad634dc:-7e05" parent="-1f09110a:1315ad634dc:-8000" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;flip=false;mirror=false" value="j0.075"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="j0.075"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="j0.075"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="670.0" y="270.0"/></TextBlock><TextBlock id="-1f09110a:1315ad634dc:-7e01" parent="-1f09110a:1315ad634dc:-8000" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;fontColor=#D31B1B;flip=false;mirror=false" value="Measure of positive<br>sequence voltage<br>&amp; Current"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="Measure of positive<br>sequence voltage<br>&amp; Current"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="Measure of positive<br>sequence voltage<br>&amp; Current"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="510.0" y="320.0"/></TextBlock><TextBlock id="-1f09110a:1315ad634dc:-7dff" parent="-1f09110a:1315ad634dc:-8000" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;fontColor=#D31B1B;flip=false;mirror=false" value="Fault Initiation"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="Fault Initiation"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="Fault Initiation"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="240.0" y="240.0"/></TextBlock><TextBlock id="-1f09110a:1315ad634dc:-7dfd" parent="-1f09110a:1315ad634dc:-8000" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;fontColor=#D31B1B;flip=false;mirror=false" value="Switch1"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="Switch1"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="Switch1"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="270.0" y="100.0"/></TextBlock><BasicBlock angle="90" dependsOnU="1" id="-1f09110a:1315ad634dc:-7fde" interfaceFunctionName="SineVoltage" ordering="13" parent="-1f09110a:1315ad634dc:-8000" simulationFunctionName="SineVoltage" simulationFunctionType="DEFAULT" style="SineVoltage;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="5" width="1"><data column="0" line="0" value="1.414"/><data column="0" line="1" value="0"/><data column="0" line="2" value="50"/><data column="0" line="3" value="0"/><data column="0" line="4" value="0"/></ScilabString><ScilabDouble as="realParameters" height="5" width="1"><data column="0" line="0" realPart="1.414"/><data column="0" line="1" realPart="0.0"/><data column="0" line="2" realPart="50.0"/><data column="0" line="3" realPart="0.0"/><data column="0" line="4" realPart="0.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="SineVoltage"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="5" width="1"><data column="0" line="0" value="V"/><data column="0" line="1" value="phase"/><data column="0" line="2" value="freqHz"/><data column="0" line="3" value="offset"/><data column="0" line="4" value="startTime"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.414"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="50.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="60.0" width="50.0" x="130.0" y="200.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1f09110a:1315ad634dc:-7f6f" ordering="1" parent="-1f09110a:1315ad634dc:-7fde" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1f09110a:1315ad634dc:-7f6e" ordering="1" parent="-1f09110a:1315ad634dc:-7fde" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="60.0"/></ImplicitOutputPort></root></mxGraphModel><mxCell as="defaultParent" id="-1f09110a:1315ad634dc:-8000" parent="-1f09110a:1315ad634dc:-7fff"/></XcosDiagram>
\ No newline at end of file diff --git a/Working_Examples/83/CH11/EX11.4/result_example_11_4.txt b/Working_Examples/83/CH11/EX11.4/result_example_11_4.txt new file mode 100755 index 0000000..3d43e5b --- /dev/null +++ b/Working_Examples/83/CH11/EX11.4/result_example_11_4.txt @@ -0,0 +1,9 @@ + + +Ia1=-j6.06 +If=-10.496 +Va1=Va2=0.455 +Va0=0 +Va=Va1+Va2+Va0=0.91 + + diff --git a/Working_Examples/83/CH11/EX11.4/xcos_result_example_11_4.jpeg b/Working_Examples/83/CH11/EX11.4/xcos_result_example_11_4.jpeg Binary files differnew file mode 100755 index 0000000..9f7ff83 --- /dev/null +++ b/Working_Examples/83/CH11/EX11.4/xcos_result_example_11_4.jpeg diff --git a/Working_Examples/83/CH11/EX11.5/example_11_5.sce b/Working_Examples/83/CH11/EX11.5/example_11_5.sce new file mode 100755 index 0000000..05f6869 --- /dev/null +++ b/Working_Examples/83/CH11/EX11.5/example_11_5.sce @@ -0,0 +1,36 @@ +//Chapter 11 +//Example 11.5 +//page 413 +//To find Double line to ground fault current and voltage of healthy phase +clc;clear; + +Z1eq=0.09*%i; +Z2eq=0.075*%i; +Z0=(%i*0.1); +Ea=1; +a=(-0.5+%i*sqrt(3)/2); + +//to find the sequence components of healthy phase +Ia1=Ea/(Z1eq+(Z2eq*Z0/(Z2eq+Z0))); +Va1=Ea-(Ia1*Z1eq); +Va2=Va1; +Va0=Va1; + +Ia2=-(Va2/Z2eq); +Ia0=-(Va0/Z0); + +I=[1 1 1;a^2 a 1;a a^2 1]*[Ia1; Ia2; Ia0]; + +//voltage of the healthy phase +Va=3*Va1; + +//displaying the results +printf('Ia1=-j%0.3f\n',abs(Ia1)); +printf(' Ia2=j%0.3f\n',abs(Ia2)); +printf(' Ia0=j%0.3f\n\n',abs(Ia0)); + +printf(' Ia=%0.3f + j%0.3f\n',real(I(1,1)),imag(I(1,1))); +printf(' Ib=%0.3f + j%0.3f\n',real(I(2,1)),imag(I(2,1))); +printf(' Ic=%0.3f + j%0.3f\n\n',real(I(3,1)),imag(I(3,1))); + +printf(' Voltage of the healthy phase Va=3Va1=%0.3f',Va);
\ No newline at end of file diff --git a/Working_Examples/83/CH11/EX11.5/example_11_5.xcos b/Working_Examples/83/CH11/EX11.5/example_11_5.xcos new file mode 100755 index 0000000..21a6f04 --- /dev/null +++ b/Working_Examples/83/CH11/EX11.5/example_11_5.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" finalIntegrationTime="0.25" title="example_11_5"><!--Xcos - 1.0 - scilab-5.5.2 - 20160406 2040--><mxGraphModel as="model"><root><mxCell id="-1f09110a:1315ad634dc:-7fff"/><mxCell id="-1f09110a:1315ad634dc:-8000" parent="-1f09110a:1315ad634dc:-7fff"/><BasicBlock angle="270" dependsOnU="1" id="-1f09110a:1315ad634dc:-7fd1" interfaceFunctionName="Inductor" ordering="2" parent="-1f09110a:1315ad634dc:-8000" simulationFunctionName="Inductor" simulationFunctionType="DEFAULT" style="Inductor;rotation=270;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="0.00023873241"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="2.3873241E-4"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Inductor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="L"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="2.3873241E-4"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="620.0" y="270.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1f09110a:1315ad634dc:-7f66" ordering="1" parent="-1f09110a:1315ad634dc:-7fd1" style="ImplicitOutputPort;align=center;verticalAlign=top;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1f09110a:1315ad634dc:-7f67" ordering="1" parent="-1f09110a:1315ad634dc:-7fd1" style="ImplicitInputPort;align=center;verticalAlign=bottom;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitInputPort><ImplicitLink id="-1f09110a:1315ad634dc:-7fce" parent="-1f09110a:1315ad634dc:-8000" source="-1f09110a:1315ad634dc:-7f6e" target="-1f09110a:1315ad634dc:-7f6b"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="150.0" y="264.0"/><mxPoint as="targetPoint" x="150.0" y="340.0"/></mxGeometry></ImplicitLink><VoltageSensorBlock dependsOnU="1" id="-1f09110a:1315ad634dc:-7fc4" interfaceFunctionName="VoltageSensor" ordering="3" parent="-1f09110a:1315ad634dc:-8000" simulationFunctionName="VoltageSensor" simulationFunctionType="DEFAULT" style="VoltageSensor;rotation=0;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="VoltageSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="v"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="360.0" y="250.0"/></VoltageSensorBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1f09110a:1315ad634dc:-7fc1" ordering="1" parent="-1f09110a:1315ad634dc:-7fc4" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1f09110a:1315ad634dc:-7fc3" ordering="1" parent="-1f09110a:1315ad634dc:-7fc4" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><Orientation as="orientation" value="SOUTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1f09110a:1315ad634dc:-7fc2" ordering="2" parent="-1f09110a:1315ad634dc:-7fc4" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><BasicBlock dependsOnU="1" id="-1f09110a:1315ad634dc:-7faa" interfaceFunctionName="CurrentSensor" ordering="4" parent="-1f09110a:1315ad634dc:-8000" simulationFunctionName="CurrentSensor" simulationFunctionType="DEFAULT" style="CurrentSensor;rotation=0;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CurrentSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="i"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="380.0" y="440.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1f09110a:1315ad634dc:-7fa7" ordering="1" parent="-1f09110a:1315ad634dc:-7faa" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1f09110a:1315ad634dc:-7fa9" ordering="1" parent="-1f09110a:1315ad634dc:-7faa" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="6.0"/></ImplicitOutputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1f09110a:1315ad634dc:-7fa8" ordering="2" parent="-1f09110a:1315ad634dc:-7faa" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="26.0"/></ExplicitOutputPort><SplitBlock id="-1f09110a:1315ad634dc:-7f9c" ordering="5" parent="-1f09110a:1315ad634dc:-8000" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="227.0" y="417.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-1f09110a:1315ad634dc:-7f99" ordering="2" parent="-1f09110a:1315ad634dc:-7f9c" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-1f09110a:1315ad634dc:-7f9b" ordering="1" parent="-1f09110a:1315ad634dc:-7f9c" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-1f09110a:1315ad634dc:-7f9a" ordering="1" parent="-1f09110a:1315ad634dc:-7f9c" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="-1f09110a:1315ad634dc:-7f98" parent="-1f09110a:1315ad634dc:-8000" source="-1f09110a:1315ad634dc:-7fc3" target="-1f09110a:1315ad634dc:-7f9b"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="380.0" y="420.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-1f09110a:1315ad634dc:-7f97" parent="-1f09110a:1315ad634dc:-8000" source="-1f09110a:1315ad634dc:-7f6a" target="-1f09110a:1315ad634dc:-7f9a"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="150.0" y="420.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-1f09110a:1315ad634dc:-7f9d" parent="-1f09110a:1315ad634dc:-8000" source="-1f09110a:1315ad634dc:-7f99" target="-1f09110a:1315ad634dc:-7fa7"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="376.0" y="460.0"/><mxPoint as="targetPoint" x="230.0" y="420.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="230.0" y="460.0"/></Array></mxGeometry></ImplicitLink><BasicBlock dependsOnU="1" id="-1f09110a:1315ad634dc:-7f8d" interfaceFunctionName="CMSCOPE" ordering="6" parent="-1f09110a:1315ad634dc:-8000" simulationFunctionName="cmscope" simulationFunctionType="C_OR_FORTRAN" style="CMSCOPE;flip=false;mirror=false"><ScilabString as="exprs" height="11" width="1"><data column="0" line="0" value="1 3"/><data column="0" line="1" value="1 3 5 7 9 11 13 15"/><data column="0" line="2" value="-1"/><data column="0" line="3" value="[]"/><data column="0" line="4" value="[]"/><data column="0" line="5" value="-2 -20"/><data column="0" line="6" value="2 20"/><data column="0" line="7" value="0.250 0.250"/><data column="0" line="8" value="2"/><data column="0" line="9" value="0"/><data column="0" line="10" value="Positive Seq Voltage & Sequence Currents"/></ScilabString><ScilabDouble as="realParameters" height="7" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="0.25"/><data column="0" line="2" realPart="0.25"/><data column="0" line="3" realPart="-2.0"/><data column="0" line="4" realPart="2.0"/><data column="0" line="5" realPart="-20.0"/><data column="0" line="6" realPart="20.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="14" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="2.0"/><data column="0" line="2" realPart="2.0"/><data column="0" line="3" realPart="-1.0"/><data column="0" line="4" realPart="-1.0"/><data column="0" line="5" realPart="-1.0"/><data column="0" line="6" realPart="-1.0"/><data column="0" line="7" realPart="1.0"/><data column="0" line="8" realPart="3.0"/><data column="0" line="9" realPart="1.0"/><data column="0" line="10" realPart="3.0"/><data column="0" line="11" realPart="5.0"/><data column="0" line="12" realPart="7.0"/><data column="0" line="13" realPart="0.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="470.0" y="260.0"/></BasicBlock><ControlPort dataType="UNKNOW_TYPE" id="-75109587:131bf421888:-7f52" ordering="1" parent="-1f09110a:1315ad634dc:-7f8d" style="ControlPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-75109587:131bf421888:-7f54" ordering="1" parent="-1f09110a:1315ad634dc:-7f8d" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ExplicitInputPort><ExplicitInputPort dataColumns="1" dataLines="3" dataType="REAL_MATRIX" id="-75109587:131bf421888:-7f53" ordering="2" parent="-1f09110a:1315ad634dc:-7f8d" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="26.0"/></ExplicitInputPort><ExplicitLink id="-1f09110a:1315ad634dc:-7f7a" parent="-1f09110a:1315ad634dc:-8000" source="-1f09110a:1315ad634dc:-7fc2" target="-75109587:131bf421888:-7f54"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="304.0" y="270.0"/><mxPoint as="targetPoint" x="460.0" y="270.0"/></mxGeometry></ExplicitLink><BasicBlock blockType="h" id="-1f09110a:1315ad634dc:-7f73" interfaceFunctionName="CLOCK_c" ordering="7" parent="-1f09110a:1315ad634dc:-8000" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="99.0"/><data column="1" line="0" realPart="-144.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-75109587:131bf421888:-7f6f"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-75109587:131bf421888:-7f6f"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-54.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.0001"/><data column="0" line="1" value="0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="1.0E-4"/><data column="0" line="1" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-75109587:131bf421888:-7f6b"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-75109587:131bf421888:-7f6b"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="92.71066000000002"/><data column="1" line="0" realPart="-146.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="8.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="5.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-75109587:131bf421888:-7f66"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-75109587:131bf421888:-7f66"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="72.0"/><data column="0" line="2" realPart="104.71066000000002"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-58.0"/><data column="0" line="1" realPart="-186.0"/><data column="0" line="2" realPart="-134.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="103.37732666666669"/><data column="0" line="1" realPart="129.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-150.0"/><data column="0" line="1" realPart="-120.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="106.04399333333335"/><data column="0" line="1" realPart="122.70999999999998"/><data column="0" line="2" realPart="82.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-150.0"/><data column="0" line="1" realPart="-40.0"/><data column="0" line="2" realPart="-40.0"/><data column="0" line="3" realPart="-10.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="470.0" y="180.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="-1f09110a:1315ad634dc:-7f5e" ordering="1" parent="-1f09110a:1315ad634dc:-7f73" style="CommandPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><CommandControlLink id="-1f09110a:1315ad634dc:-7f71" parent="-1f09110a:1315ad634dc:-8000" source="-1f09110a:1315ad634dc:-7f5e" target="-75109587:131bf421888:-7f52"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="490.0" y="224.0"/><mxPoint as="targetPoint" x="490.0" y="250.0"/></mxGeometry></CommandControlLink><BasicBlock dependsOnU="1" id="-1f09110a:1315ad634dc:-7f52" interfaceFunctionName="Switch" ordering="8" parent="-1f09110a:1315ad634dc:-8000" simulationFunctionName="Switch" simulationFunctionType="DEFAULT" style="Switch;rotation=0;flip=false;mirror=false"><ScilabString as="exprs" height="2" width="1"><data column="0" line="0" value="0.000001"/><data column="0" line="1" value="1000000"/></ScilabString><ScilabDouble as="realParameters" height="2" width="1"><data column="0" line="0" realPart="0.01"/><data column="0" line="1" realPart="100000.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Switch"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="p"/><data column="0" line="1" value="inp"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="2" width="1"><data column="0" line="0" value="Ron"/><data column="0" line="1" value="Roff"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0E-6"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1000000.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="270.0" y="140.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1f09110a:1315ad634dc:-7f38" ordering="2" parent="-1f09110a:1315ad634dc:-7f52" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="26.0"/></ExplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1f09110a:1315ad634dc:-7f37" ordering="1" parent="-1f09110a:1315ad634dc:-7f52" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1f09110a:1315ad634dc:-7f39" ordering="1" parent="-1f09110a:1315ad634dc:-7f52" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ImplicitInputPort><BasicBlock blockType="h" id="-1f09110a:1315ad634dc:-7f3d" interfaceFunctionName="STEP_FUNCTION" ordering="9" parent="-1f09110a:1315ad634dc:-8000" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="STEP_FUNCTION;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="STEP_FUNCTION"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-4"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="14.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=" "/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="3" width="1"><data column="0" line="0" value="0.005"/><data column="0" line="1" value="-5"/><data column="0" line="2" value="5"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"STEP",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="STEP"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="step_func"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-5.0"/><data column="0" line="1" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.005"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="true"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-75109587:131bf421888:-7f5b"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="STEP"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-75109587:131bf421888:-7f5b"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="88.57143300000001"/><data column="1" line="0" realPart="-50.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"OUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="OUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-2.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-75109587:131bf421888:-7f58"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="OUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-75109587:131bf421888:-7f58"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="6" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="92.00000299999999"/><data column="0" line="2" realPart="53.478395000000006"/><data column="0" line="3" realPart="53.478395000000006"/><data column="0" line="4" realPart="92.00000299999999"/><data column="0" line="5" realPart="60.0"/></ScilabDouble><ScilabDouble height="6" width="1"><data column="0" line="0" realPart="-44.0"/><data column="0" line="1" realPart="-158.39289999999994"/><data column="0" line="2" realPart="-158.39289999999994"/><data column="0" line="3" realPart="-68.69677999999999"/><data column="0" line="4" realPart="-68.69677999999999"/><data column="0" line="5" realPart="4.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="84.0"/><data column="0" line="1" realPart="104.57143300000001"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-20.0"/><data column="0" line="1" realPart="-40.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="210.0" y="200.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataType="REAL_MATRIX" id="-1f09110a:1315ad634dc:-7c8a" ordering="1" parent="-1f09110a:1315ad634dc:-7f3d" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><GroundBlock angle="180" dependsOnU="1" id="-1f09110a:1315ad634dc:-7f1f" interfaceFunctionName="Ground" ordering="10" parent="-1f09110a:1315ad634dc:-8000" simulationFunctionName="Ground" simulationFunctionType="DEFAULT" style="Ground;rotation=180;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Ground"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="130.0" y="60.0"/></GroundBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1f09110a:1315ad634dc:-7f1e" ordering="1" parent="-1f09110a:1315ad634dc:-7f1f" style="ImplicitInputPort;align=center;verticalAlign=bottom;spacing=10;rotation=270;flip=false;mirror=false"><Orientation as="orientation" value="NORTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitInputPort><SplitBlock id="-1f09110a:1315ad634dc:-7f1a" ordering="11" parent="-1f09110a:1315ad634dc:-8000" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="147.0" y="147.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-1f09110a:1315ad634dc:-7f17" ordering="2" parent="-1f09110a:1315ad634dc:-7f1a" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-1f09110a:1315ad634dc:-7f19" ordering="1" parent="-1f09110a:1315ad634dc:-7f1a" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-1f09110a:1315ad634dc:-7f18" ordering="1" parent="-1f09110a:1315ad634dc:-7f1a" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="-1f09110a:1315ad634dc:-7f15" parent="-1f09110a:1315ad634dc:-8000" source="-1f09110a:1315ad634dc:-7f18" target="-1f09110a:1315ad634dc:-7f6f"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-1f09110a:1315ad634dc:-7f1b" parent="-1f09110a:1315ad634dc:-8000" source="-1f09110a:1315ad634dc:-7f17" target="-1f09110a:1315ad634dc:-7f1e"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="150.0" y="104.0"/><mxPoint as="targetPoint" x="150.0" y="150.0"/></mxGeometry></ImplicitLink><ImplicitLink id="-1f09110a:1315ad634dc:-7f14" parent="-1f09110a:1315ad634dc:-8000" source="-1f09110a:1315ad634dc:-7f19" target="-1f09110a:1315ad634dc:-7f39"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="210.0" y="150.0"/><mxPoint x="240.0" y="150.0"/></Array></mxGeometry></ImplicitLink><ExplicitLink id="-1f09110a:1315ad634dc:-7efb" parent="-1f09110a:1315ad634dc:-8000" source="-1f09110a:1315ad634dc:-7c8a" target="-1f09110a:1315ad634dc:-7f38"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="244.0" y="220.0"/><mxPoint as="targetPoint" x="260.0" y="170.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="260.0" y="220.0"/><mxPoint x="260.0" y="170.0"/></Array></mxGeometry></ExplicitLink><SplitBlock id="-1f09110a:1315ad634dc:-7ec6" ordering="12" parent="-1f09110a:1315ad634dc:-8000" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="337.0" y="157.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-1f09110a:1315ad634dc:-7ec3" ordering="2" parent="-1f09110a:1315ad634dc:-7ec6" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-1f09110a:1315ad634dc:-7ec5" ordering="1" parent="-1f09110a:1315ad634dc:-7ec6" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-1f09110a:1315ad634dc:-7ec4" ordering="1" parent="-1f09110a:1315ad634dc:-7ec6" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="-1f09110a:1315ad634dc:-7ec2" parent="-1f09110a:1315ad634dc:-8000" source="-1f09110a:1315ad634dc:-7f37" target="-1f09110a:1315ad634dc:-7ec5"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-1f09110a:1315ad634dc:-7ec7" parent="-1f09110a:1315ad634dc:-8000" source="-1f09110a:1315ad634dc:-7ec3" target="-1f09110a:1315ad634dc:-7fc1"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="356.0" y="270.0"/><mxPoint as="targetPoint" x="336.734693877551" y="163.26530612244898"/><Array as="points" scilabClass="ScilabList"><mxPoint x="340.0" y="270.0"/></Array></mxGeometry></ImplicitLink><TextBlock id="-1f09110a:1315ad634dc:-7e0c" parent="-1f09110a:1315ad634dc:-8000" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;flip=false;mirror=false" value="Ea"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="Ea"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="Ea"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="90.0" y="210.0"/></TextBlock><TextBlock id="-1f09110a:1315ad634dc:-7e08" parent="-1f09110a:1315ad634dc:-8000" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;flip=false;mirror=false" value="j0.09"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="j0.09"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="j0.09"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="80.0" y="340.0"/></TextBlock><TextBlock id="-1f09110a:1315ad634dc:-7e05" parent="-1f09110a:1315ad634dc:-8000" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;flip=false;mirror=false" value="j0.075"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="j0.075"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="j0.075"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="670.0" y="270.0"/></TextBlock><TextBlock id="-1f09110a:1315ad634dc:-7e01" parent="-1f09110a:1315ad634dc:-8000" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;fontColor=#D31B1B;flip=false;mirror=false" value="Measure of positive<br>sequence voltage<br>&amp; sequence Currents"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="Measure of positive<br>sequence voltage<br>&amp; sequence Currents"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="Measure of positive<br>sequence voltage<br>&amp; sequence Currents"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="510.0" y="320.0"/></TextBlock><TextBlock id="-1f09110a:1315ad634dc:-7dff" parent="-1f09110a:1315ad634dc:-8000" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;fontColor=#D31B1B;flip=false;mirror=false" value="Fault Initiation"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="Fault Initiation"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="Fault Initiation"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="240.0" y="240.0"/></TextBlock><TextBlock id="-1f09110a:1315ad634dc:-7dfd" parent="-1f09110a:1315ad634dc:-8000" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;fontColor=#D31B1B;flip=false;mirror=false" value="Switch1"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="Switch1"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="Switch1"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="270.0" y="100.0"/></TextBlock><BasicBlock angle="90" dependsOnU="1" id="-1f09110a:1315ad634dc:-7fde" interfaceFunctionName="SineVoltage" ordering="13" parent="-1f09110a:1315ad634dc:-8000" simulationFunctionName="SineVoltage" simulationFunctionType="DEFAULT" style="SineVoltage;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="5" width="1"><data column="0" line="0" value="1.414"/><data column="0" line="1" value="0"/><data column="0" line="2" value="50"/><data column="0" line="3" value="0"/><data column="0" line="4" value="0"/></ScilabString><ScilabDouble as="realParameters" height="5" width="1"><data column="0" line="0" realPart="1.414"/><data column="0" line="1" realPart="0.0"/><data column="0" line="2" realPart="50.0"/><data column="0" line="3" realPart="0.0"/><data column="0" line="4" realPart="0.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="SineVoltage"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="5" width="1"><data column="0" line="0" value="V"/><data column="0" line="1" value="phase"/><data column="0" line="2" value="freqHz"/><data column="0" line="3" value="offset"/><data column="0" line="4" value="startTime"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.414"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="50.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="60.0" width="50.0" x="130.0" y="200.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1f09110a:1315ad634dc:-7f6e" ordering="1" parent="-1f09110a:1315ad634dc:-7fde" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="60.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1f09110a:1315ad634dc:-7f6f" ordering="1" parent="-1f09110a:1315ad634dc:-7fde" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock angle="270" dependsOnU="1" id="-1f09110a:1315ad634dc:-7d8e" interfaceFunctionName="Inductor" ordering="14" parent="-1f09110a:1315ad634dc:-8000" simulationFunctionName="Inductor" simulationFunctionType="DEFAULT" style="Inductor;rotation=270;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="0.00031830988"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="3.1830988E-4"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Inductor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="L"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="3.1830988E-4"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="830.0" y="270.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1f09110a:1315ad634dc:-7d70" ordering="1" parent="-1f09110a:1315ad634dc:-7d8e" style="ImplicitInputPort;align=center;verticalAlign=bottom;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1f09110a:1315ad634dc:-7d6f" ordering="1" parent="-1f09110a:1315ad634dc:-7d8e" style="ImplicitOutputPort;align=center;verticalAlign=top;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitOutputPort><SplitBlock id="-1f09110a:1315ad634dc:-7d7e" ordering="15" parent="-1f09110a:1315ad634dc:-8000" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="617.0" y="157.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-1f09110a:1315ad634dc:-7d7c" ordering="1" parent="-1f09110a:1315ad634dc:-7d7e" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-1f09110a:1315ad634dc:-7d7b" ordering="2" parent="-1f09110a:1315ad634dc:-7d7e" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-1f09110a:1315ad634dc:-7d7d" ordering="1" parent="-1f09110a:1315ad634dc:-7d7e" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-1f09110a:1315ad634dc:-7d7a" parent="-1f09110a:1315ad634dc:-8000" source="-1f09110a:1315ad634dc:-7f66" target="-1f09110a:1315ad634dc:-7d7d"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="640.0" y="160.0"/><mxPoint x="640.0" y="160.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-1f09110a:1315ad634dc:-7d79" parent="-1f09110a:1315ad634dc:-8000" source="-1f09110a:1315ad634dc:-7ec4" target="-1f09110a:1315ad634dc:-7d7c"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-1f09110a:1315ad634dc:-7d7f" parent="-1f09110a:1315ad634dc:-8000" source="-1f09110a:1315ad634dc:-7d6f" target="-1f09110a:1315ad634dc:-7d7b"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="850.0" y="266.0"/><mxPoint as="targetPoint" x="620.0" y="160.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="850.0" y="120.0"/><mxPoint x="620.0" y="120.0"/></Array></mxGeometry></ImplicitLink><BasicBlock angle="90" dependsOnU="1" id="-1f09110a:1315ad634dc:-7d64" interfaceFunctionName="CurrentSensor" ordering="16" parent="-1f09110a:1315ad634dc:-8000" simulationFunctionName="CurrentSensor" simulationFunctionType="DEFAULT" style="CurrentSensor;rotation=90;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CurrentSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="i"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="620.0" y="370.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1f09110a:1315ad634dc:-7d62" ordering="2" parent="-1f09110a:1315ad634dc:-7d64" style="ExplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="26.0" y="40.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1f09110a:1315ad634dc:-7d61" ordering="1" parent="-1f09110a:1315ad634dc:-7d64" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1f09110a:1315ad634dc:-7d63" ordering="1" parent="-1f09110a:1315ad634dc:-7d64" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="6.0" y="40.0"/></ImplicitOutputPort><ImplicitLink id="-1f09110a:1315ad634dc:-7d53" parent="-1f09110a:1315ad634dc:-8000" source="-1f09110a:1315ad634dc:-7f67" target="-1f09110a:1315ad634dc:-7d61"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="640.0" y="314.0"/><mxPoint as="targetPoint" x="640.0" y="370.0"/></mxGeometry></ImplicitLink><BasicBlock angle="90" dependsOnU="1" id="-1f09110a:1315ad634dc:-7d46" interfaceFunctionName="CurrentSensor" ordering="17" parent="-1f09110a:1315ad634dc:-8000" simulationFunctionName="CurrentSensor" simulationFunctionType="DEFAULT" style="CurrentSensor;rotation=90;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CurrentSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="i"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="830.0" y="370.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1f09110a:1315ad634dc:-7d44" ordering="2" parent="-1f09110a:1315ad634dc:-7d46" style="ExplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="26.0" y="40.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1f09110a:1315ad634dc:-7d43" ordering="1" parent="-1f09110a:1315ad634dc:-7d46" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1f09110a:1315ad634dc:-7d45" ordering="1" parent="-1f09110a:1315ad634dc:-7d46" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="6.0" y="40.0"/></ImplicitOutputPort><ImplicitLink id="-1f09110a:1315ad634dc:-7d2d" parent="-1f09110a:1315ad634dc:-8000" source="-1f09110a:1315ad634dc:-7d70" target="-1f09110a:1315ad634dc:-7d43"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="850.0" y="314.0"/><mxPoint as="targetPoint" x="850.0" y="370.0"/></mxGeometry></ImplicitLink><SplitBlock id="-1f09110a:1315ad634dc:-7d2b" ordering="18" parent="-1f09110a:1315ad634dc:-8000" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="607.0" y="447.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-1f09110a:1315ad634dc:-7d29" ordering="1" parent="-1f09110a:1315ad634dc:-7d2b" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-1f09110a:1315ad634dc:-7d28" ordering="2" parent="-1f09110a:1315ad634dc:-7d2b" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-1f09110a:1315ad634dc:-7d2a" ordering="1" parent="-1f09110a:1315ad634dc:-7d2b" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-1f09110a:1315ad634dc:-7d27" parent="-1f09110a:1315ad634dc:-8000" source="-1f09110a:1315ad634dc:-7d63" target="-1f09110a:1315ad634dc:-7d2a"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="630.0" y="450.0"/><mxPoint x="630.0" y="450.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-1f09110a:1315ad634dc:-7d26" parent="-1f09110a:1315ad634dc:-8000" source="-1f09110a:1315ad634dc:-7fa9" target="-1f09110a:1315ad634dc:-7d29"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-1f09110a:1315ad634dc:-7d2c" parent="-1f09110a:1315ad634dc:-8000" source="-1f09110a:1315ad634dc:-7d45" target="-1f09110a:1315ad634dc:-7d28"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="840.0" y="414.0"/><mxPoint as="targetPoint" x="610.0" y="450.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="840.0" y="480.0"/><mxPoint x="610.0" y="480.0"/></Array></mxGeometry></ImplicitLink><BasicBlock angle="270" dependsOnU="1" id="-1f09110a:1315ad634dc:-7d1b" interfaceFunctionName="MUX" ordering="19" parent="-1f09110a:1315ad634dc:-8000" simulationFunctionName="multiplex" simulationFunctionType="C_OR_FORTRAN" style="MUX;rotation=270;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="3"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="80.0" width="80.0" x="500.0" y="510.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataType="REAL_MATRIX" id="-1f09110a:1315ad634dc:-7d12" ordering="1" parent="-1f09110a:1315ad634dc:-7d1b" style="ExplicitInputPort;align=center;verticalAlign=bottom;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="6.0" y="80.0"/></ExplicitInputPort><ExplicitInputPort dataColumns="1" dataLines="-2" dataType="REAL_MATRIX" id="-1f09110a:1315ad634dc:-7d11" ordering="2" parent="-1f09110a:1315ad634dc:-7d1b" style="ExplicitInputPort;align=center;verticalAlign=bottom;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="36.0" y="80.0"/></ExplicitInputPort><ExplicitInputPort dataColumns="1" dataLines="-3" dataType="REAL_MATRIX" id="-1f09110a:1315ad634dc:-7d10" ordering="3" parent="-1f09110a:1315ad634dc:-7d1b" style="ExplicitInputPort;align=center;verticalAlign=bottom;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="66.0" y="80.0"/></ExplicitInputPort><ExplicitOutputPort dataColumns="1" dataLines="0" dataType="REAL_MATRIX" id="-1f09110a:1315ad634dc:-7d0f" ordering="1" parent="-1f09110a:1315ad634dc:-7d1b" style="ExplicitOutputPort;align=center;verticalAlign=top;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="36.0" y="-8.0"/></ExplicitOutputPort><ExplicitLink id="-1f09110a:1315ad634dc:-7cfe" parent="-1f09110a:1315ad634dc:-8000" source="-1f09110a:1315ad634dc:-7fa8" target="-1f09110a:1315ad634dc:-7d12"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="424.0" y="470.0"/><mxPoint as="targetPoint" x="510.0" y="600.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="440.0" y="470.0"/><mxPoint x="440.0" y="630.0"/><mxPoint x="510.0" y="630.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="-1f09110a:1315ad634dc:-7cfc" parent="-1f09110a:1315ad634dc:-8000" source="-1f09110a:1315ad634dc:-7d62" target="-1f09110a:1315ad634dc:-7d11"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="540.0" y="594.0"/><mxPoint as="targetPoint" x="650.0" y="420.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="650.0" y="630.0"/><mxPoint x="540.0" y="630.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="-1f09110a:1315ad634dc:-7cfb" parent="-1f09110a:1315ad634dc:-8000" source="-1f09110a:1315ad634dc:-7d44" target="-1f09110a:1315ad634dc:-7d10"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="860.0" y="414.0"/><mxPoint as="targetPoint" x="570.0" y="590.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="860.0" y="620.0"/><mxPoint x="570.0" y="620.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="-1f09110a:1315ad634dc:-7cfa" parent="-1f09110a:1315ad634dc:-8000" source="-1f09110a:1315ad634dc:-7d0f" target="-75109587:131bf421888:-7f53"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="540.0" y="506.0"/><mxPoint as="targetPoint" x="470.0" y="290.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="540.0" y="410.0"/><mxPoint x="420.0" y="410.0"/><mxPoint x="420.0" y="290.0"/></Array></mxGeometry></ExplicitLink><BasicBlock angle="90" dependsOnU="1" id="-1f09110a:1315ad634dc:-7fd4" interfaceFunctionName="Inductor" ordering="1" parent="-1f09110a:1315ad634dc:-8000" simulationFunctionName="Inductor" simulationFunctionType="DEFAULT" style="Inductor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="0.00028647889"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="2.8647889E-4"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Inductor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="L"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="2.8647889E-4"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="130.0" y="340.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1f09110a:1315ad634dc:-7f6a" ordering="1" parent="-1f09110a:1315ad634dc:-7fd4" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-1f09110a:1315ad634dc:-7f6b" ordering="1" parent="-1f09110a:1315ad634dc:-7fd4" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort></root></mxGraphModel><mxCell as="defaultParent" id="-1f09110a:1315ad634dc:-8000" parent="-1f09110a:1315ad634dc:-7fff"/></XcosDiagram>
\ No newline at end of file diff --git a/Working_Examples/83/CH11/EX11.5/result_example_11_5.txt b/Working_Examples/83/CH11/EX11.5/result_example_11_5.txt new file mode 100755 index 0000000..8c8e61c --- /dev/null +++ b/Working_Examples/83/CH11/EX11.5/result_example_11_5.txt @@ -0,0 +1,10 @@ + +Ia1=-j7.527 + Ia2=j4.301 + Ia0=j3.226 + + Ia=0.000 + j-0.000 + Ib=-10.243 + j4.839 + Ic=10.243 + j4.839 + + Voltage of the healthy phase Va=3Va1=0.968 diff --git a/Working_Examples/83/CH11/EX11.5/scilab-log-16140.txt b/Working_Examples/83/CH11/EX11.5/scilab-log-16140.txt new file mode 100644 index 0000000..40e7d63 --- /dev/null +++ b/Working_Examples/83/CH11/EX11.5/scilab-log-16140.txt @@ -0,0 +1,30006 @@ +16140 || Initialization 83 +2 16140 || 83 | 112 | 118 || 0.000000 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.000000 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.000000 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.000000 -0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.000100 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.000100 -0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.000100 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.000100 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.000200 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.000200 -0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.000200 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.000200 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.000300 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.000300 -0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.000300 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.000300 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.000400 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.000400 -0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.000400 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.000400 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.000500 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.000500 -0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.000500 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.000500 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.000600 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.000600 -0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.000600 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.000600 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.000700 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.000700 -0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.000700 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.000700 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.000800 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.000800 -0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.000800 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.000800 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.000900 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.000900 -0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.000900 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.000900 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.001000 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.001000 -0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.001000 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.001000 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.001100 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.001100 -0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.001100 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.001100 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.001200 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.001200 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.001200 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.001200 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.001300 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.001300 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.001300 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.001300 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.001400 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.001400 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.001400 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.001400 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.001500 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.001500 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.001500 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.001500 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.001600 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.001600 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.001600 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.001600 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.001700 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.001700 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.001700 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.001700 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.001800 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.001800 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.001800 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.001800 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.001900 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.001900 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.001900 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.001900 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.002000 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.002000 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.002000 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.002000 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.002100 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.002100 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.002100 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.002100 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.002200 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.002200 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.002200 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.002200 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.002300 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.002300 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.002300 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.002300 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.002400 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.002400 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.002400 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.002400 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.002500 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.002500 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.002500 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.002500 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.002600 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.002600 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.002600 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.002600 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.002700 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.002700 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.002700 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.002700 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.002800 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.002800 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.002800 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.002800 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.002900 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.002900 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.002900 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.002900 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.003000 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.003000 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.003000 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.003000 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.003100 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.003100 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.003100 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.003100 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.003200 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.003200 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.003200 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.003200 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.003300 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.003300 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.003300 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.003300 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.003400 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.003400 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.003400 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.003400 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.003500 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.003500 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.003500 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.003500 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.003600 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.003600 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.003600 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.003600 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.003700 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.003700 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.003700 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.003700 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.003800 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.003800 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.003800 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.003800 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.003900 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.003900 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.003900 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.003900 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.004000 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.004000 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.004000 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.004000 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.004100 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.004100 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.004100 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.004100 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.004200 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.004200 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.004200 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.004200 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.004300 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.004300 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.004300 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.004300 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.004400 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.004400 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.004400 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.004400 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.004500 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.004500 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.004500 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.004500 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.004600 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.004600 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.004600 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.004600 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.004700 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.004700 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.004700 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.004700 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.004800 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.004800 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.004800 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.004800 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.004900 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.004900 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.004900 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.004900 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.005000 1.414000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.005000 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.005000 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.005000 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.005100 0.455903 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.005100 -0.334305 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.005100 0.191032 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.005100 0.143274 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.005200 0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.005200 -0.668278 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.005200 0.381873 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.005200 0.286405 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.005300 0.454102 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.005300 -1.001591 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.005300 0.572338 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.005300 0.429253 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.005400 0.452531 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.005400 -1.333915 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.005400 0.762237 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.005400 0.571678 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.005500 0.450512 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.005500 -1.664924 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.005500 0.951385 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.005500 0.713539 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.005600 0.448049 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.005600 -1.994290 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.005600 1.139594 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.005600 0.854696 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.005700 0.445144 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.005700 -2.321686 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.005700 1.326678 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.005700 0.995008 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.005800 0.441801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.005800 -2.646791 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.005800 1.512452 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.005800 1.134339 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.005900 0.438014 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.005900 -2.969284 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.005900 1.696734 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.005900 1.272550 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.006000 0.433800 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.006000 -3.288845 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.006000 1.879340 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.006000 1.409505 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.006100 0.429161 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.006100 -3.605161 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.006100 2.060092 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.006100 1.545069 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.006200 0.424092 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.006200 -3.917918 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.006200 2.238810 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.006200 1.679108 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.006300 0.418611 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.006300 -4.226809 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.006300 2.415319 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.006300 1.811489 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.006400 0.412713 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.006400 -4.531528 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.006400 2.589444 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.006400 1.942083 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.006500 0.406409 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.006500 -4.831775 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.006500 2.761014 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.006500 2.070761 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.006600 0.399708 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.006600 -5.127255 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.006600 2.929860 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.006600 2.197395 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.006700 0.392610 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.006700 -5.417675 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.006700 3.095815 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.006700 2.321861 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.006800 0.385125 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.006800 -5.702749 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.006800 3.258713 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.006800 2.444035 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.006900 0.377251 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.006900 -5.982194 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.006900 3.418396 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.006900 2.563797 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.007000 0.369011 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.007000 -6.255735 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.007000 3.574706 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.007000 2.681029 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.007100 0.360408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.007100 -6.523102 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.007100 3.727487 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.007100 2.795615 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.007200 0.351451 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.007200 -6.784031 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.007200 3.876589 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.007200 2.907442 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.007300 0.342142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.007300 -7.038265 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.007300 4.021865 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.007300 3.016399 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.007400 0.332498 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.007400 -7.285552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.007400 4.163173 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.007400 3.122380 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.007500 0.322526 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.007500 -7.525650 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.007500 4.300371 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.007500 3.225278 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.007600 0.312237 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.007600 -7.758320 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.007600 4.433326 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.007600 3.324994 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.007700 0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.007700 -7.983333 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.007700 4.561904 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.007700 3.421428 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.007800 0.290742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.007800 -8.200467 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.007800 4.685981 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.007800 3.514486 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.007900 0.279557 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.007900 -8.409509 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.007900 4.805434 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.007900 3.604075 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.008000 0.268113 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.008000 -8.610251 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.008000 4.920144 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.008000 3.690108 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.008100 0.256386 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.008100 -8.802497 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.008100 5.029998 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.008100 3.772499 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.008200 0.244405 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.008200 -8.986056 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.008200 5.134889 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.008200 3.851167 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.008300 0.232185 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.008300 -9.160747 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.008300 5.234712 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.008300 3.926034 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.008400 0.219738 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.008400 -9.326397 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.008400 5.329370 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.008400 3.997027 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.008500 0.207073 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.008500 -9.482843 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.008500 5.418768 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.008500 4.064076 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.008600 0.194205 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.008600 -9.629931 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.008600 5.502818 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.008600 4.127113 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.008700 0.181147 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.008700 -9.767514 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.008700 5.581437 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.008700 4.186078 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.008800 0.167908 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.008800 -9.895458 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.008800 5.654548 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.008800 4.240911 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.008900 0.154502 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.008900 -10.013637 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.008900 5.722078 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.008900 4.291559 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.009000 0.140947 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.009000 -10.121933 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.009000 5.783962 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.009000 4.337971 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.009100 0.127252 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.009100 -10.220239 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.009100 5.840137 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.009100 4.380102 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.009200 0.113436 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.009200 -10.308459 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.009200 5.890548 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.009200 4.417911 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.009300 0.099497 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.009300 -10.386507 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.009300 5.935147 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.009300 4.451360 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.009400 0.085467 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.009400 -10.454304 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.009400 5.973888 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.009400 4.480416 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.009500 0.071350 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.009500 -10.511785 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.009500 6.006734 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.009500 4.505051 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.009600 0.057165 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.009600 -10.558891 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.009600 6.033652 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.009600 4.525239 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.009700 0.042923 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.009700 -10.595577 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.009700 6.054615 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.009700 4.540961 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.009800 0.028637 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.009800 -10.621806 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.009800 6.069603 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.009800 4.552203 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.009900 0.014324 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.009900 -10.637553 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.009900 6.078602 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.009900 4.558951 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.010000 -0.000003 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.010000 -10.642802 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.010000 6.081601 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.010000 4.561201 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.010100 -0.014331 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.010100 -10.637548 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.010100 6.078599 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.010100 4.558949 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.010200 -0.028644 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.010200 -10.621796 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.010200 6.069598 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.010200 4.552198 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.010300 -0.042929 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.010300 -10.595562 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.010300 6.054607 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.010300 4.540955 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.010400 -0.057171 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.010400 -10.558870 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.010400 6.033640 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.010400 4.525230 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.010500 -0.071358 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.010500 -10.511759 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.010500 6.006720 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.010500 4.505040 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.010600 -0.085474 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.010600 -10.454275 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.010600 5.973871 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.010600 4.480403 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.010700 -0.099504 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.010700 -10.386472 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.010700 5.935127 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.010700 4.451345 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.010800 -0.113438 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.010800 -10.308420 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.010800 5.890526 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.010800 4.417894 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.010900 -0.127258 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.010900 -10.220194 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.010900 5.840111 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.010900 4.380083 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.011000 -0.140960 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.011000 -10.121883 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.011000 5.783933 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.011000 4.337950 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.011100 -0.154511 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.011100 -10.013583 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.011100 5.722047 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.011100 4.291535 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.011200 -0.167914 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.011200 -9.895400 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.011200 5.654514 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.011200 4.240886 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.011300 -0.181150 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.011300 -9.767451 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.011300 5.581401 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.011300 4.186051 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.011400 -0.194212 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.011400 -9.629863 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.011400 5.502779 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.011400 4.127084 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.011500 -0.207080 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.011500 -9.482772 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.011500 5.418727 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.011500 4.064045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.011600 -0.219742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.011600 -9.326321 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.011600 5.329326 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.011600 3.996995 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.011700 -0.232189 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.011700 -9.160667 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.011700 5.234667 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.011700 3.926000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.011800 -0.244408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.011800 -8.985971 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.011800 5.134841 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.011800 3.851131 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.011900 -0.256384 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.011900 -8.802408 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.011900 5.029947 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.011900 3.772460 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.012000 -0.268110 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.012000 -8.610158 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.012000 4.920090 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.012000 3.690068 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.012100 -0.279574 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.012100 -8.409411 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.012100 4.805378 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.012100 3.604033 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.012200 -0.290760 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.012200 -8.200365 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.012200 4.685923 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.012200 3.514442 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.012300 -0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.012300 -7.983227 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.012300 4.561844 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.012300 3.421383 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.012400 -0.312242 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.012400 -7.758210 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.012400 4.433263 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.012400 3.324947 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.012500 -0.322534 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.012500 -7.525537 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.012500 4.300307 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.012500 3.225230 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.012600 -0.332503 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.012600 -7.285437 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.012600 4.163107 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.012600 3.122330 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.012700 -0.342146 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.012700 -7.038146 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.012700 4.021798 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.012700 3.016348 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.012800 -0.351452 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.012800 -6.783909 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.012800 3.876519 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.012800 2.907390 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.012900 -0.360411 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.012900 -6.522977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.012900 3.727415 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.012900 2.795561 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.013000 -0.369018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.013000 -6.255607 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.013000 3.574633 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.013000 2.680975 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.013100 -0.377255 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.013100 -5.982064 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.013100 3.418322 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.013100 2.563742 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.013200 -0.385122 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.013200 -5.702616 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.013200 3.258638 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.013200 2.443978 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.013300 -0.392609 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.013300 -5.417540 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.013300 3.095737 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.013300 2.321803 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.013400 -0.399715 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.013400 -5.127118 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.013400 2.929782 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.013400 2.197336 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.013500 -0.406418 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.013500 -4.831635 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.013500 2.760935 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.013500 2.070701 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.013600 -0.412720 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.013600 -4.531384 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.013600 2.589362 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.013600 1.942022 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.013700 -0.418612 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.013700 -4.226663 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.013700 2.415236 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.013700 1.811427 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.013800 -0.424096 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.013800 -3.917771 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.013800 2.238726 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.013800 1.679045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.013900 -0.429162 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.013900 -3.605011 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.013900 2.060007 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.013900 1.545005 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.014000 -0.433801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.014000 -3.288695 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.014000 1.879254 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.014000 1.409441 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.014100 -0.438018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.014100 -2.969132 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.014100 1.696647 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.014100 1.272485 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.014200 -0.441797 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.014200 -2.646639 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.014200 1.512365 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.014200 1.134274 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.014300 -0.445142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.014300 -2.321533 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.014300 1.326590 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.014300 0.994943 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.014400 -0.448054 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.014400 -1.994136 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.014400 1.139506 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.014400 0.854630 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.014500 -0.450515 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.014500 -1.664770 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.014500 0.951297 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.014500 0.713473 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.014600 -0.452532 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.014600 -1.333761 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.014600 0.762149 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.014600 0.571612 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.014700 -0.454104 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.014700 -1.001435 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.014700 0.572248 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.014700 0.429186 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.014800 -0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.014800 -0.668120 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.014800 0.381783 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.014800 0.286337 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.014900 -0.455901 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.014900 -0.334147 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.014900 0.190941 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.014900 0.143206 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.015000 -0.456129 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.015000 0.000156 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.015000 -0.000089 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.015000 -0.000067 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.015100 -0.455903 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.015100 0.334460 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.015100 -0.191120 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.015100 -0.143340 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.015200 -0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.015200 0.668433 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.015200 -0.381962 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.015200 -0.286471 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.015300 -0.454102 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.015300 1.001746 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.015300 -0.572426 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.015300 -0.429320 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.015400 -0.452531 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.015400 1.334070 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.015400 -0.762326 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.015400 -0.571744 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.015500 -0.450512 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.015500 1.665079 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.015500 -0.951474 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.015500 -0.713605 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.015600 -0.448049 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.015600 1.994444 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.015600 -1.139682 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.015600 -0.854762 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.015700 -0.445144 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.015700 2.321841 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.015700 -1.326766 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.015700 -0.995075 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.015800 -0.441801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.015800 2.646946 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.015800 -1.512541 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.015800 -1.134405 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.015900 -0.438014 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.015900 2.969439 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.015900 -1.696822 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.015900 -1.272617 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.016000 -0.433800 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.016000 3.289000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.016000 -1.879429 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.016000 -1.409572 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.016100 -0.429161 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.016100 3.605315 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.016100 -2.060180 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.016100 -1.545135 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.016200 -0.424092 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.016200 3.918073 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.016200 -2.238899 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.016200 -1.679174 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.016300 -0.418611 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.016300 4.226963 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.016300 -2.415408 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.016300 -1.811556 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.016400 -0.412713 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.016400 4.531683 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.016400 -2.589533 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.016400 -1.942150 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.016500 -0.406409 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.016500 4.831930 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.016500 -2.761103 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.016500 -2.070827 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.016600 -0.399708 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.016600 5.127410 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.016600 -2.929949 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.016600 -2.197461 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.016700 -0.392610 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.016700 5.417830 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.016700 -3.095903 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.016700 -2.321927 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.016800 -0.385125 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.016800 5.702903 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.016800 -3.258802 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.016800 -2.444101 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.016900 -0.377251 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.016900 5.982348 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.016900 -3.418485 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.016900 -2.563864 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.017000 -0.369011 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.017000 6.255889 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.017000 -3.574794 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.017000 -2.681095 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.017100 -0.360408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.017100 6.523256 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.017100 -3.727575 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.017100 -2.795681 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.017200 -0.351451 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.017200 6.784185 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.017200 -3.876677 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.017200 -2.907508 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.017300 -0.342142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.017300 7.038419 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.017300 -4.021954 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.017300 -3.016465 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.017400 -0.332498 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.017400 7.285707 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.017400 -4.163261 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.017400 -3.122446 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.017500 -0.322526 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.017500 7.525805 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.017500 -4.300460 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.017500 -3.225345 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.017600 -0.312237 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.017600 7.758475 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.017600 -4.433414 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.017600 -3.325061 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.017700 -0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.017700 7.983487 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.017700 -4.561993 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.017700 -3.421495 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.017800 -0.290742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.017800 8.200622 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.017800 -4.686070 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.017800 -3.514552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.017900 -0.279557 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.017900 8.409664 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.017900 -4.805522 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.017900 -3.604142 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.018000 -0.268113 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.018000 8.610406 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.018000 -4.920232 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.018000 -3.690174 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.018100 -0.256386 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.018100 8.802651 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.018100 -5.030087 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.018100 -3.772565 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.018200 -0.244405 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.018200 8.986210 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.018200 -5.134977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.018200 -3.851233 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.018300 -0.232185 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.018300 9.160902 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.018300 -5.234801 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.018300 -3.926101 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.018400 -0.219738 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.018400 9.326552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.018400 -5.329458 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.018400 -3.997094 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.018500 -0.207073 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.018500 9.482998 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.018500 -5.418856 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.018500 -4.064142 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.018600 -0.194205 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.018600 9.630086 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.018600 -5.502906 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.018600 -4.127180 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.018700 -0.181147 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.018700 9.767669 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.018700 -5.581525 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.018700 -4.186144 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.018800 -0.167908 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.018800 9.895613 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.018800 -5.654636 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.018800 -4.240977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.018900 -0.154502 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.018900 10.013792 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.018900 -5.722167 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.018900 -4.291625 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.019000 -0.140947 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.019000 10.122088 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.019000 -5.784050 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.019000 -4.338038 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.019100 -0.127252 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.019100 10.220394 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.019100 -5.840225 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.019100 -4.380169 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.019200 -0.113436 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.019200 10.308614 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.019200 -5.890636 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.019200 -4.417977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.019300 -0.099497 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.019300 10.386662 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.019300 -5.935235 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.019300 -4.451426 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.019400 -0.085467 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.019400 10.454459 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.019400 -5.973977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.019400 -4.480483 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.019500 -0.071350 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.019500 10.511939 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.019500 -6.006823 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.019500 -4.505117 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.019600 -0.057165 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.019600 10.559045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.019600 -6.033740 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.019600 -4.525305 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.019700 -0.042923 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.019700 10.595731 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.019700 -6.054704 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.019700 -4.541028 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.019800 -0.028637 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.019800 10.621961 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.019800 -6.069692 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.019800 -4.552269 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.019900 -0.014324 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.019900 10.637708 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.019900 -6.078690 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.019900 -4.559018 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.020000 0.000003 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.020000 10.642957 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.020000 -6.081690 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.020000 -4.561267 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.020100 0.014331 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.020100 10.637703 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.020100 -6.078687 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.020100 -4.559015 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.020200 0.028644 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.020200 10.621951 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.020200 -6.069686 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.020200 -4.552265 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.020300 0.042929 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.020300 10.595716 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.020300 -6.054695 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.020300 -4.541021 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.020400 0.057171 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.020400 10.559025 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.020400 -6.033729 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.020400 -4.525297 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.020500 0.071358 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.020500 10.511914 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.020500 -6.006808 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.020500 -4.505106 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.020600 0.085474 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.020600 10.454429 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.020600 -5.973960 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.020600 -4.480470 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.020700 0.099504 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.020700 10.386627 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.020700 -5.935215 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.020700 -4.451412 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.020800 0.113438 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.020800 10.308575 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.020800 -5.890614 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.020800 -4.417961 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.020900 0.127258 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.020900 10.220348 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.020900 -5.840199 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.020900 -4.380149 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.021000 0.140960 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.021000 10.122038 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.021000 -5.784022 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.021000 -4.338016 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.021100 0.154511 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.021100 10.013738 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.021100 -5.722136 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.021100 -4.291602 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.021200 0.167914 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.021200 9.895555 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.021200 -5.654603 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.021200 -4.240952 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.021300 0.181150 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.021300 9.767606 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.021300 -5.581489 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.021300 -4.186117 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.021400 0.194212 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.021400 9.630018 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.021400 -5.502867 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.021400 -4.127151 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.021500 0.207080 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.021500 9.482927 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.021500 -5.418815 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.021500 -4.064111 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.021600 0.219742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.021600 9.326476 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.021600 -5.329415 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.021600 -3.997061 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.021700 0.232189 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.021700 9.160821 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.021700 -5.234755 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.021700 -3.926066 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.021800 0.244408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.021800 8.986126 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.021800 -5.134929 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.021800 -3.851197 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.021900 0.256384 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.021900 8.802562 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.021900 -5.030036 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.021900 -3.772527 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.022000 0.268110 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.022000 8.610312 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.022000 -4.920178 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.022000 -3.690134 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.022100 0.279574 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.022100 8.409566 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.022100 -4.805466 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.022100 -3.604100 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.022200 0.290760 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.022200 8.200520 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.022200 -4.686012 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.022200 -3.514509 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.022300 0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.022300 7.983382 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.022300 -4.561932 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.022300 -3.421449 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.022400 0.312242 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.022400 7.758365 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.022400 -4.433351 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.022400 -3.325014 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.022500 0.322534 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.022500 7.525692 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.022500 -4.300395 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.022500 -3.225297 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.022600 0.332503 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.022600 7.285592 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.022600 -4.163195 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.022600 -3.122396 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.022700 0.342146 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.022700 7.038301 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.022700 -4.021886 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.022700 -3.016415 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.022800 0.351452 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.022800 6.784064 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.022800 -3.876608 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.022800 -2.907456 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.022900 0.360411 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.022900 6.523131 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.022900 -3.727504 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.022900 -2.795628 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.023000 0.369018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.023000 6.255762 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.023000 -3.574721 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.023000 -2.681041 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.023100 0.377255 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.023100 5.982218 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.023100 -3.418411 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.023100 -2.563808 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.023200 0.385122 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.023200 5.702771 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.023200 -3.258726 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.023200 -2.444045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.023300 0.392609 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.023300 5.417695 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.023300 -3.095826 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.023300 -2.321869 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.023400 0.399715 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.023400 5.127273 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.023400 -2.929870 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.023400 -2.197403 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.023500 0.406418 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.023500 4.831790 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.023500 -2.761023 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.023500 -2.070767 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.023600 0.412720 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.023600 4.531539 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.023600 -2.589451 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.023600 -1.942088 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.023700 0.418612 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.023700 4.226818 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.023700 -2.415325 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.023700 -1.811493 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.023800 0.424096 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.023800 3.917925 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.023800 -2.238814 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.023800 -1.679111 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.023900 0.429162 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.023900 3.605166 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.023900 -2.060095 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.023900 -1.545071 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.024000 0.433801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.024000 3.288849 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.024000 -1.879343 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.024000 -1.409507 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.024100 0.438018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.024100 2.969287 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.024100 -1.696735 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.024100 -1.272552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.024200 0.441797 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.024200 2.646794 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.024200 -1.512454 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.024200 -1.134340 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.024300 0.445142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.024300 2.321688 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.024300 -1.326679 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.024300 -0.995009 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.024400 0.448054 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.024400 1.994291 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.024400 -1.139595 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.024400 -0.854696 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.024500 0.450515 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.024500 1.664925 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.024500 -0.951386 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.024500 -0.713539 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.024600 0.452532 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.024600 1.333915 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.024600 -0.762237 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.024600 -0.571678 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.024700 0.454104 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.024700 1.001589 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.024700 -0.572337 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.024700 -0.429253 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.024800 0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.024800 0.668274 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.024800 -0.381871 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.024800 -0.286403 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.024900 0.455901 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.024900 0.334302 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.024900 -0.191030 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.024900 -0.143272 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.025000 0.456129 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.025000 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.025000 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.025000 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.025100 0.455903 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.025100 -0.334305 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.025100 0.191032 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.025100 0.143274 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.025200 0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.025200 -0.668278 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.025200 0.381873 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.025200 0.286405 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.025300 0.454102 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.025300 -1.001591 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.025300 0.572338 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.025300 0.429253 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.025400 0.452531 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.025400 -1.333915 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.025400 0.762237 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.025400 0.571678 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.025500 0.450512 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.025500 -1.664924 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.025500 0.951385 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.025500 0.713539 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.025600 0.448049 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.025600 -1.994290 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.025600 1.139594 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.025600 0.854696 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.025700 0.445144 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.025700 -2.321686 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.025700 1.326678 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.025700 0.995008 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.025800 0.441801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.025800 -2.646791 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.025800 1.512452 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.025800 1.134339 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.025900 0.438014 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.025900 -2.969284 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.025900 1.696734 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.025900 1.272550 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.026000 0.433800 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.026000 -3.288845 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.026000 1.879340 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.026000 1.409505 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.026100 0.429161 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.026100 -3.605161 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.026100 2.060092 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.026100 1.545069 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.026200 0.424092 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.026200 -3.917918 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.026200 2.238810 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.026200 1.679108 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.026300 0.418611 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.026300 -4.226809 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.026300 2.415319 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.026300 1.811489 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.026400 0.412713 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.026400 -4.531528 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.026400 2.589444 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.026400 1.942083 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.026500 0.406409 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.026500 -4.831775 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.026500 2.761014 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.026500 2.070761 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.026600 0.399708 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.026600 -5.127255 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.026600 2.929860 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.026600 2.197395 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.026700 0.392610 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.026700 -5.417675 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.026700 3.095815 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.026700 2.321861 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.026800 0.385125 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.026800 -5.702749 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.026800 3.258713 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.026800 2.444035 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.026900 0.377251 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.026900 -5.982194 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.026900 3.418396 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.026900 2.563797 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.027000 0.369011 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.027000 -6.255735 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.027000 3.574706 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.027000 2.681029 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.027100 0.360408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.027100 -6.523102 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.027100 3.727487 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.027100 2.795615 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.027200 0.351451 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.027200 -6.784031 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.027200 3.876589 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.027200 2.907442 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.027300 0.342142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.027300 -7.038265 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.027300 4.021865 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.027300 3.016399 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.027400 0.332498 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.027400 -7.285552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.027400 4.163173 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.027400 3.122380 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.027500 0.322526 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.027500 -7.525650 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.027500 4.300371 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.027500 3.225278 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.027600 0.312237 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.027600 -7.758320 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.027600 4.433326 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.027600 3.324994 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.027700 0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.027700 -7.983333 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.027700 4.561904 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.027700 3.421428 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.027800 0.290742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.027800 -8.200467 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.027800 4.685981 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.027800 3.514486 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.027900 0.279557 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.027900 -8.409509 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.027900 4.805434 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.027900 3.604075 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.028000 0.268113 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.028000 -8.610251 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.028000 4.920144 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.028000 3.690108 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.028100 0.256386 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.028100 -8.802497 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.028100 5.029998 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.028100 3.772499 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.028200 0.244405 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.028200 -8.986056 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.028200 5.134889 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.028200 3.851167 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.028300 0.232185 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.028300 -9.160747 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.028300 5.234712 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.028300 3.926034 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.028400 0.219738 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.028400 -9.326397 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.028400 5.329370 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.028400 3.997027 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.028500 0.207073 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.028500 -9.482843 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.028500 5.418768 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.028500 4.064076 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.028600 0.194205 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.028600 -9.629931 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.028600 5.502818 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.028600 4.127113 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.028700 0.181147 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.028700 -9.767514 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.028700 5.581437 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.028700 4.186078 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.028800 0.167908 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.028800 -9.895458 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.028800 5.654548 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.028800 4.240911 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.028900 0.154502 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.028900 -10.013637 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.028900 5.722078 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.028900 4.291559 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.029000 0.140947 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.029000 -10.121933 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.029000 5.783962 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.029000 4.337971 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.029100 0.127252 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.029100 -10.220239 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.029100 5.840137 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.029100 4.380102 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.029200 0.113436 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.029200 -10.308459 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.029200 5.890548 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.029200 4.417911 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.029300 0.099497 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.029300 -10.386507 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.029300 5.935147 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.029300 4.451360 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.029400 0.085467 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.029400 -10.454304 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.029400 5.973888 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.029400 4.480416 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.029500 0.071350 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.029500 -10.511785 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.029500 6.006734 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.029500 4.505051 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.029600 0.057165 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.029600 -10.558891 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.029600 6.033652 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.029600 4.525239 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.029700 0.042923 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.029700 -10.595577 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.029700 6.054615 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.029700 4.540961 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.029800 0.028637 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.029800 -10.621806 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.029800 6.069603 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.029800 4.552203 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.029900 0.014324 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.029900 -10.637553 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.029900 6.078602 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.029900 4.558951 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.030000 -0.000003 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.030000 -10.642802 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.030000 6.081601 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.030000 4.561201 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.030100 -0.014331 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.030100 -10.637548 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.030100 6.078599 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.030100 4.558949 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.030200 -0.028644 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.030200 -10.621796 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.030200 6.069598 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.030200 4.552198 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.030300 -0.042929 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.030300 -10.595562 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.030300 6.054607 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.030300 4.540955 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.030400 -0.057171 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.030400 -10.558870 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.030400 6.033640 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.030400 4.525230 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.030500 -0.071358 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.030500 -10.511759 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.030500 6.006720 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.030500 4.505040 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.030600 -0.085474 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.030600 -10.454275 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.030600 5.973871 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.030600 4.480403 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.030700 -0.099504 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.030700 -10.386472 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.030700 5.935127 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.030700 4.451345 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.030800 -0.113438 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.030800 -10.308420 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.030800 5.890526 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.030800 4.417894 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.030900 -0.127258 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.030900 -10.220194 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.030900 5.840111 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.030900 4.380083 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.031000 -0.140960 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.031000 -10.121883 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.031000 5.783933 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.031000 4.337950 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.031100 -0.154511 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.031100 -10.013583 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.031100 5.722047 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.031100 4.291535 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.031200 -0.167914 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.031200 -9.895400 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.031200 5.654514 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.031200 4.240886 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.031300 -0.181150 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.031300 -9.767451 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.031300 5.581401 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.031300 4.186051 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.031400 -0.194212 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.031400 -9.629863 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.031400 5.502779 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.031400 4.127084 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.031500 -0.207080 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.031500 -9.482772 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.031500 5.418727 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.031500 4.064045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.031600 -0.219742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.031600 -9.326321 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.031600 5.329326 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.031600 3.996995 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.031700 -0.232189 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.031700 -9.160667 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.031700 5.234667 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.031700 3.926000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.031800 -0.244408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.031800 -8.985971 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.031800 5.134841 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.031800 3.851131 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.031900 -0.256384 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.031900 -8.802408 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.031900 5.029947 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.031900 3.772460 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.032000 -0.268110 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.032000 -8.610158 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.032000 4.920090 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.032000 3.690068 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.032100 -0.279574 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.032100 -8.409411 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.032100 4.805378 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.032100 3.604033 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.032200 -0.290760 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.032200 -8.200365 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.032200 4.685923 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.032200 3.514442 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.032300 -0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.032300 -7.983227 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.032300 4.561844 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.032300 3.421383 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.032400 -0.312242 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.032400 -7.758210 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.032400 4.433263 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.032400 3.324947 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.032500 -0.322534 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.032500 -7.525537 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.032500 4.300307 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.032500 3.225230 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.032600 -0.332503 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.032600 -7.285437 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.032600 4.163107 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.032600 3.122330 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.032700 -0.342146 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.032700 -7.038146 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.032700 4.021798 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.032700 3.016348 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.032800 -0.351452 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.032800 -6.783909 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.032800 3.876519 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.032800 2.907390 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.032900 -0.360411 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.032900 -6.522977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.032900 3.727415 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.032900 2.795561 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.033000 -0.369018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.033000 -6.255607 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.033000 3.574633 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.033000 2.680975 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.033100 -0.377255 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.033100 -5.982064 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.033100 3.418322 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.033100 2.563742 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.033200 -0.385122 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.033200 -5.702616 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.033200 3.258638 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.033200 2.443978 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.033300 -0.392609 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.033300 -5.417540 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.033300 3.095737 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.033300 2.321803 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.033400 -0.399715 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.033400 -5.127118 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.033400 2.929782 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.033400 2.197336 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.033500 -0.406418 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.033500 -4.831635 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.033500 2.760935 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.033500 2.070701 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.033600 -0.412720 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.033600 -4.531384 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.033600 2.589362 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.033600 1.942022 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.033700 -0.418612 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.033700 -4.226663 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.033700 2.415236 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.033700 1.811427 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.033800 -0.424096 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.033800 -3.917771 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.033800 2.238726 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.033800 1.679045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.033900 -0.429162 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.033900 -3.605011 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.033900 2.060007 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.033900 1.545005 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.034000 -0.433801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.034000 -3.288695 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.034000 1.879254 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.034000 1.409441 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.034100 -0.438018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.034100 -2.969132 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.034100 1.696647 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.034100 1.272485 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.034200 -0.441797 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.034200 -2.646639 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.034200 1.512365 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.034200 1.134274 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.034300 -0.445142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.034300 -2.321533 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.034300 1.326590 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.034300 0.994943 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.034400 -0.448054 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.034400 -1.994136 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.034400 1.139506 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.034400 0.854630 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.034500 -0.450515 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.034500 -1.664770 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.034500 0.951297 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.034500 0.713473 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.034600 -0.452532 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.034600 -1.333761 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.034600 0.762149 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.034600 0.571612 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.034700 -0.454104 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.034700 -1.001435 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.034700 0.572248 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.034700 0.429186 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.034800 -0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.034800 -0.668120 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.034800 0.381783 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.034800 0.286337 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.034900 -0.455901 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.034900 -0.334147 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.034900 0.190941 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.034900 0.143206 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.035000 -0.456129 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.035000 0.000156 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.035000 -0.000089 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.035000 -0.000067 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.035100 -0.455903 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.035100 0.334460 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.035100 -0.191120 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.035100 -0.143340 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.035200 -0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.035200 0.668433 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.035200 -0.381962 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.035200 -0.286471 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.035300 -0.454102 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.035300 1.001746 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.035300 -0.572426 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.035300 -0.429320 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.035400 -0.452531 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.035400 1.334070 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.035400 -0.762326 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.035400 -0.571744 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.035500 -0.450512 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.035500 1.665079 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.035500 -0.951474 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.035500 -0.713605 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.035600 -0.448049 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.035600 1.994444 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.035600 -1.139682 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.035600 -0.854762 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.035700 -0.445144 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.035700 2.321841 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.035700 -1.326766 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.035700 -0.995075 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.035800 -0.441801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.035800 2.646946 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.035800 -1.512541 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.035800 -1.134405 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.035900 -0.438014 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.035900 2.969439 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.035900 -1.696822 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.035900 -1.272617 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.036000 -0.433800 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.036000 3.289000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.036000 -1.879429 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.036000 -1.409572 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.036100 -0.429161 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.036100 3.605315 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.036100 -2.060180 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.036100 -1.545135 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.036200 -0.424092 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.036200 3.918073 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.036200 -2.238899 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.036200 -1.679174 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.036300 -0.418611 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.036300 4.226963 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.036300 -2.415408 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.036300 -1.811556 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.036400 -0.412713 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.036400 4.531683 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.036400 -2.589533 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.036400 -1.942150 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.036500 -0.406409 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.036500 4.831930 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.036500 -2.761103 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.036500 -2.070827 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.036600 -0.399708 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.036600 5.127410 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.036600 -2.929949 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.036600 -2.197461 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.036700 -0.392610 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.036700 5.417830 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.036700 -3.095903 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.036700 -2.321927 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.036800 -0.385125 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.036800 5.702903 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.036800 -3.258802 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.036800 -2.444101 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.036900 -0.377251 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.036900 5.982348 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.036900 -3.418485 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.036900 -2.563864 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.037000 -0.369011 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.037000 6.255889 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.037000 -3.574794 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.037000 -2.681095 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.037100 -0.360408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.037100 6.523256 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.037100 -3.727575 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.037100 -2.795681 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.037200 -0.351451 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.037200 6.784185 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.037200 -3.876677 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.037200 -2.907508 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.037300 -0.342142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.037300 7.038419 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.037300 -4.021954 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.037300 -3.016465 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.037400 -0.332498 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.037400 7.285707 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.037400 -4.163261 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.037400 -3.122446 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.037500 -0.322526 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.037500 7.525805 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.037500 -4.300460 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.037500 -3.225345 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.037600 -0.312237 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.037600 7.758475 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.037600 -4.433414 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.037600 -3.325061 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.037700 -0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.037700 7.983487 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.037700 -4.561993 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.037700 -3.421495 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.037800 -0.290742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.037800 8.200622 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.037800 -4.686070 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.037800 -3.514552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.037900 -0.279557 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.037900 8.409664 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.037900 -4.805522 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.037900 -3.604142 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.038000 -0.268113 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.038000 8.610406 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.038000 -4.920232 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.038000 -3.690174 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.038100 -0.256386 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.038100 8.802651 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.038100 -5.030087 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.038100 -3.772565 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.038200 -0.244405 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.038200 8.986210 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.038200 -5.134977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.038200 -3.851233 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.038300 -0.232185 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.038300 9.160902 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.038300 -5.234801 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.038300 -3.926101 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.038400 -0.219738 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.038400 9.326552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.038400 -5.329458 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.038400 -3.997094 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.038500 -0.207073 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.038500 9.482998 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.038500 -5.418856 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.038500 -4.064142 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.038600 -0.194205 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.038600 9.630086 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.038600 -5.502906 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.038600 -4.127180 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.038700 -0.181147 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.038700 9.767669 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.038700 -5.581525 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.038700 -4.186144 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.038800 -0.167908 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.038800 9.895613 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.038800 -5.654636 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.038800 -4.240977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.038900 -0.154502 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.038900 10.013792 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.038900 -5.722167 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.038900 -4.291625 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.039000 -0.140947 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.039000 10.122088 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.039000 -5.784050 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.039000 -4.338038 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.039100 -0.127252 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.039100 10.220394 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.039100 -5.840225 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.039100 -4.380169 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.039200 -0.113436 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.039200 10.308614 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.039200 -5.890636 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.039200 -4.417977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.039300 -0.099497 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.039300 10.386662 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.039300 -5.935235 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.039300 -4.451426 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.039400 -0.085467 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.039400 10.454459 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.039400 -5.973977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.039400 -4.480483 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.039500 -0.071350 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.039500 10.511939 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.039500 -6.006823 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.039500 -4.505117 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.039600 -0.057165 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.039600 10.559045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.039600 -6.033740 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.039600 -4.525305 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.039700 -0.042923 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.039700 10.595731 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.039700 -6.054704 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.039700 -4.541028 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.039800 -0.028637 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.039800 10.621961 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.039800 -6.069692 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.039800 -4.552269 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.039900 -0.014324 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.039900 10.637708 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.039900 -6.078690 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.039900 -4.559018 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.040000 0.000003 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.040000 10.642957 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.040000 -6.081690 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.040000 -4.561267 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.040100 0.014331 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.040100 10.637703 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.040100 -6.078687 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.040100 -4.559015 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.040200 0.028644 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.040200 10.621951 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.040200 -6.069686 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.040200 -4.552265 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.040300 0.042929 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.040300 10.595716 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.040300 -6.054695 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.040300 -4.541021 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.040400 0.057171 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.040400 10.559025 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.040400 -6.033729 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.040400 -4.525297 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.040500 0.071358 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.040500 10.511914 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.040500 -6.006808 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.040500 -4.505106 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.040600 0.085474 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.040600 10.454429 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.040600 -5.973960 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.040600 -4.480470 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.040700 0.099504 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.040700 10.386627 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.040700 -5.935215 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.040700 -4.451412 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.040800 0.113438 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.040800 10.308575 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.040800 -5.890614 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.040800 -4.417961 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.040900 0.127258 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.040900 10.220348 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.040900 -5.840199 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.040900 -4.380149 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.041000 0.140960 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.041000 10.122038 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.041000 -5.784022 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.041000 -4.338016 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.041100 0.154511 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.041100 10.013738 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.041100 -5.722136 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.041100 -4.291602 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.041200 0.167914 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.041200 9.895555 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.041200 -5.654603 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.041200 -4.240952 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.041300 0.181150 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.041300 9.767606 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.041300 -5.581489 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.041300 -4.186117 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.041400 0.194212 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.041400 9.630018 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.041400 -5.502867 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.041400 -4.127151 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.041500 0.207080 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.041500 9.482927 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.041500 -5.418815 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.041500 -4.064111 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.041600 0.219742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.041600 9.326476 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.041600 -5.329415 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.041600 -3.997061 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.041700 0.232189 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.041700 9.160821 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.041700 -5.234755 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.041700 -3.926066 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.041800 0.244408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.041800 8.986126 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.041800 -5.134929 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.041800 -3.851197 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.041900 0.256384 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.041900 8.802562 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.041900 -5.030036 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.041900 -3.772527 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.042000 0.268110 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.042000 8.610312 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.042000 -4.920178 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.042000 -3.690134 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.042100 0.279574 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.042100 8.409566 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.042100 -4.805466 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.042100 -3.604100 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.042200 0.290760 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.042200 8.200520 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.042200 -4.686012 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.042200 -3.514509 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.042300 0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.042300 7.983382 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.042300 -4.561932 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.042300 -3.421449 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.042400 0.312242 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.042400 7.758365 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.042400 -4.433351 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.042400 -3.325014 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.042500 0.322534 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.042500 7.525692 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.042500 -4.300395 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.042500 -3.225297 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.042600 0.332503 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.042600 7.285592 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.042600 -4.163195 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.042600 -3.122396 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.042700 0.342146 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.042700 7.038301 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.042700 -4.021886 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.042700 -3.016415 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.042800 0.351452 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.042800 6.784064 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.042800 -3.876608 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.042800 -2.907456 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.042900 0.360411 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.042900 6.523131 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.042900 -3.727504 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.042900 -2.795628 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.043000 0.369018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.043000 6.255762 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.043000 -3.574721 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.043000 -2.681041 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.043100 0.377255 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.043100 5.982218 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.043100 -3.418411 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.043100 -2.563808 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.043200 0.385122 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.043200 5.702771 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.043200 -3.258726 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.043200 -2.444045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.043300 0.392609 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.043300 5.417695 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.043300 -3.095826 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.043300 -2.321869 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.043400 0.399715 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.043400 5.127273 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.043400 -2.929870 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.043400 -2.197403 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.043500 0.406418 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.043500 4.831790 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.043500 -2.761023 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.043500 -2.070767 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.043600 0.412720 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.043600 4.531539 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.043600 -2.589451 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.043600 -1.942088 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.043700 0.418612 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.043700 4.226818 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.043700 -2.415325 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.043700 -1.811493 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.043800 0.424096 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.043800 3.917925 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.043800 -2.238814 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.043800 -1.679111 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.043900 0.429162 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.043900 3.605166 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.043900 -2.060095 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.043900 -1.545071 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.044000 0.433801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.044000 3.288849 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.044000 -1.879343 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.044000 -1.409507 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.044100 0.438018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.044100 2.969287 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.044100 -1.696735 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.044100 -1.272552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.044200 0.441797 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.044200 2.646794 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.044200 -1.512454 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.044200 -1.134340 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.044300 0.445142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.044300 2.321688 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.044300 -1.326679 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.044300 -0.995009 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.044400 0.448054 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.044400 1.994291 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.044400 -1.139595 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.044400 -0.854696 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.044500 0.450515 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.044500 1.664925 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.044500 -0.951386 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.044500 -0.713539 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.044600 0.452532 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.044600 1.333915 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.044600 -0.762237 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.044600 -0.571678 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.044700 0.454104 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.044700 1.001589 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.044700 -0.572337 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.044700 -0.429253 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.044800 0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.044800 0.668274 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.044800 -0.381871 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.044800 -0.286403 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.044900 0.455901 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.044900 0.334302 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.044900 -0.191030 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.044900 -0.143272 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.045000 0.456129 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.045000 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.045000 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.045000 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.045100 0.455903 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.045100 -0.334305 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.045100 0.191032 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.045100 0.143274 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.045200 0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.045200 -0.668278 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.045200 0.381873 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.045200 0.286405 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.045300 0.454102 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.045300 -1.001591 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.045300 0.572338 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.045300 0.429253 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.045400 0.452531 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.045400 -1.333915 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.045400 0.762237 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.045400 0.571678 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.045500 0.450512 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.045500 -1.664924 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.045500 0.951385 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.045500 0.713539 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.045600 0.448049 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.045600 -1.994290 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.045600 1.139594 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.045600 0.854696 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.045700 0.445144 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.045700 -2.321686 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.045700 1.326678 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.045700 0.995008 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.045800 0.441801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.045800 -2.646791 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.045800 1.512452 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.045800 1.134339 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.045900 0.438014 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.045900 -2.969284 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.045900 1.696734 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.045900 1.272550 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.046000 0.433800 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.046000 -3.288845 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.046000 1.879340 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.046000 1.409505 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.046100 0.429161 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.046100 -3.605161 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.046100 2.060092 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.046100 1.545069 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.046200 0.424092 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.046200 -3.917918 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.046200 2.238810 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.046200 1.679108 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.046300 0.418611 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.046300 -4.226809 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.046300 2.415319 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.046300 1.811489 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.046400 0.412713 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.046400 -4.531528 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.046400 2.589444 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.046400 1.942083 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.046500 0.406409 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.046500 -4.831775 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.046500 2.761014 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.046500 2.070761 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.046600 0.399708 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.046600 -5.127255 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.046600 2.929860 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.046600 2.197395 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.046700 0.392610 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.046700 -5.417675 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.046700 3.095815 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.046700 2.321861 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.046800 0.385125 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.046800 -5.702749 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.046800 3.258713 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.046800 2.444035 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.046900 0.377251 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.046900 -5.982194 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.046900 3.418396 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.046900 2.563797 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.047000 0.369011 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.047000 -6.255735 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.047000 3.574706 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.047000 2.681029 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.047100 0.360408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.047100 -6.523102 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.047100 3.727487 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.047100 2.795615 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.047200 0.351451 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.047200 -6.784031 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.047200 3.876589 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.047200 2.907442 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.047300 0.342142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.047300 -7.038265 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.047300 4.021865 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.047300 3.016399 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.047400 0.332498 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.047400 -7.285552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.047400 4.163173 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.047400 3.122380 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.047500 0.322526 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.047500 -7.525650 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.047500 4.300371 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.047500 3.225278 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.047600 0.312237 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.047600 -7.758320 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.047600 4.433326 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.047600 3.324994 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.047700 0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.047700 -7.983333 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.047700 4.561904 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.047700 3.421428 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.047800 0.290742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.047800 -8.200467 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.047800 4.685981 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.047800 3.514486 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.047900 0.279557 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.047900 -8.409509 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.047900 4.805434 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.047900 3.604075 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.048000 0.268113 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.048000 -8.610251 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.048000 4.920144 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.048000 3.690108 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.048100 0.256386 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.048100 -8.802497 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.048100 5.029998 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.048100 3.772499 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.048200 0.244405 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.048200 -8.986056 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.048200 5.134889 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.048200 3.851167 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.048300 0.232185 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.048300 -9.160747 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.048300 5.234712 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.048300 3.926034 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.048400 0.219738 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.048400 -9.326397 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.048400 5.329370 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.048400 3.997027 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.048500 0.207073 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.048500 -9.482843 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.048500 5.418768 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.048500 4.064076 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.048600 0.194205 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.048600 -9.629931 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.048600 5.502818 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.048600 4.127113 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.048700 0.181147 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.048700 -9.767514 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.048700 5.581437 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.048700 4.186078 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.048800 0.167908 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.048800 -9.895458 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.048800 5.654548 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.048800 4.240911 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.048900 0.154502 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.048900 -10.013637 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.048900 5.722078 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.048900 4.291559 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.049000 0.140947 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.049000 -10.121933 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.049000 5.783962 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.049000 4.337971 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.049100 0.127252 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.049100 -10.220239 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.049100 5.840137 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.049100 4.380102 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.049200 0.113436 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.049200 -10.308459 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.049200 5.890548 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.049200 4.417911 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.049300 0.099497 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.049300 -10.386507 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.049300 5.935147 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.049300 4.451360 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.049400 0.085467 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.049400 -10.454304 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.049400 5.973888 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.049400 4.480416 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.049500 0.071350 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.049500 -10.511785 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.049500 6.006734 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.049500 4.505051 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.049600 0.057165 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.049600 -10.558891 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.049600 6.033652 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.049600 4.525239 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.049700 0.042923 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.049700 -10.595577 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.049700 6.054615 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.049700 4.540961 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.049800 0.028637 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.049800 -10.621806 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.049800 6.069603 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.049800 4.552203 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.049900 0.014324 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.049900 -10.637553 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.049900 6.078602 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.049900 4.558951 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.050000 -0.000003 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.050000 -10.642802 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.050000 6.081601 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.050000 4.561201 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.050100 -0.014331 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.050100 -10.637548 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.050100 6.078599 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.050100 4.558949 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.050200 -0.028644 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.050200 -10.621796 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.050200 6.069598 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.050200 4.552198 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.050300 -0.042929 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.050300 -10.595562 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.050300 6.054607 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.050300 4.540955 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.050400 -0.057171 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.050400 -10.558870 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.050400 6.033640 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.050400 4.525230 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.050500 -0.071358 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.050500 -10.511759 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.050500 6.006720 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.050500 4.505040 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.050600 -0.085474 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.050600 -10.454275 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.050600 5.973871 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.050600 4.480403 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.050700 -0.099504 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.050700 -10.386472 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.050700 5.935127 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.050700 4.451345 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.050800 -0.113438 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.050800 -10.308420 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.050800 5.890526 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.050800 4.417894 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.050900 -0.127258 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.050900 -10.220194 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.050900 5.840111 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.050900 4.380083 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.051000 -0.140960 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.051000 -10.121883 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.051000 5.783933 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.051000 4.337950 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.051100 -0.154511 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.051100 -10.013583 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.051100 5.722047 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.051100 4.291535 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.051200 -0.167914 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.051200 -9.895400 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.051200 5.654514 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.051200 4.240886 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.051300 -0.181150 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.051300 -9.767451 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.051300 5.581401 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.051300 4.186051 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.051400 -0.194212 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.051400 -9.629863 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.051400 5.502779 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.051400 4.127084 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.051500 -0.207080 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.051500 -9.482772 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.051500 5.418727 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.051500 4.064045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.051600 -0.219742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.051600 -9.326321 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.051600 5.329326 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.051600 3.996995 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.051700 -0.232189 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.051700 -9.160667 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.051700 5.234667 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.051700 3.926000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.051800 -0.244408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.051800 -8.985971 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.051800 5.134841 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.051800 3.851131 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.051900 -0.256384 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.051900 -8.802408 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.051900 5.029947 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.051900 3.772460 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.052000 -0.268110 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.052000 -8.610158 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.052000 4.920090 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.052000 3.690068 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.052100 -0.279574 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.052100 -8.409411 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.052100 4.805378 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.052100 3.604033 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.052200 -0.290760 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.052200 -8.200365 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.052200 4.685923 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.052200 3.514442 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.052300 -0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.052300 -7.983227 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.052300 4.561844 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.052300 3.421383 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.052400 -0.312242 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.052400 -7.758210 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.052400 4.433263 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.052400 3.324947 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.052500 -0.322534 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.052500 -7.525537 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.052500 4.300307 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.052500 3.225230 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.052600 -0.332503 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.052600 -7.285437 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.052600 4.163107 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.052600 3.122330 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.052700 -0.342146 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.052700 -7.038146 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.052700 4.021798 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.052700 3.016348 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.052800 -0.351452 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.052800 -6.783909 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.052800 3.876519 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.052800 2.907390 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.052900 -0.360411 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.052900 -6.522977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.052900 3.727415 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.052900 2.795561 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.053000 -0.369018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.053000 -6.255607 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.053000 3.574633 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.053000 2.680975 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.053100 -0.377255 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.053100 -5.982064 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.053100 3.418322 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.053100 2.563742 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.053200 -0.385122 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.053200 -5.702616 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.053200 3.258638 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.053200 2.443978 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.053300 -0.392609 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.053300 -5.417540 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.053300 3.095737 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.053300 2.321803 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.053400 -0.399715 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.053400 -5.127118 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.053400 2.929782 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.053400 2.197336 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.053500 -0.406418 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.053500 -4.831635 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.053500 2.760935 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.053500 2.070701 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.053600 -0.412720 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.053600 -4.531384 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.053600 2.589362 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.053600 1.942022 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.053700 -0.418612 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.053700 -4.226663 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.053700 2.415236 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.053700 1.811427 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.053800 -0.424096 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.053800 -3.917771 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.053800 2.238726 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.053800 1.679045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.053900 -0.429162 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.053900 -3.605011 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.053900 2.060007 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.053900 1.545005 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.054000 -0.433801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.054000 -3.288695 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.054000 1.879254 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.054000 1.409441 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.054100 -0.438018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.054100 -2.969132 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.054100 1.696647 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.054100 1.272485 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.054200 -0.441797 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.054200 -2.646639 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.054200 1.512365 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.054200 1.134274 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.054300 -0.445142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.054300 -2.321533 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.054300 1.326590 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.054300 0.994943 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.054400 -0.448054 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.054400 -1.994136 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.054400 1.139506 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.054400 0.854630 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.054500 -0.450515 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.054500 -1.664770 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.054500 0.951297 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.054500 0.713473 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.054600 -0.452532 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.054600 -1.333761 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.054600 0.762149 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.054600 0.571612 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.054700 -0.454104 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.054700 -1.001435 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.054700 0.572248 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.054700 0.429186 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.054800 -0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.054800 -0.668120 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.054800 0.381783 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.054800 0.286337 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.054900 -0.455901 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.054900 -0.334147 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.054900 0.190941 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.054900 0.143206 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.055000 -0.456129 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.055000 0.000156 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.055000 -0.000089 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.055000 -0.000067 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.055100 -0.455903 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.055100 0.334460 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.055100 -0.191120 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.055100 -0.143340 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.055200 -0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.055200 0.668433 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.055200 -0.381962 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.055200 -0.286471 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.055300 -0.454102 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.055300 1.001746 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.055300 -0.572426 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.055300 -0.429320 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.055400 -0.452531 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.055400 1.334070 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.055400 -0.762326 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.055400 -0.571744 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.055500 -0.450512 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.055500 1.665079 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.055500 -0.951474 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.055500 -0.713605 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.055600 -0.448049 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.055600 1.994444 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.055600 -1.139682 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.055600 -0.854762 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.055700 -0.445144 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.055700 2.321841 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.055700 -1.326766 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.055700 -0.995075 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.055800 -0.441801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.055800 2.646946 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.055800 -1.512541 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.055800 -1.134405 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.055900 -0.438014 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.055900 2.969439 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.055900 -1.696822 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.055900 -1.272617 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.056000 -0.433800 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.056000 3.289000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.056000 -1.879429 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.056000 -1.409572 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.056100 -0.429161 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.056100 3.605315 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.056100 -2.060180 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.056100 -1.545135 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.056200 -0.424092 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.056200 3.918073 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.056200 -2.238899 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.056200 -1.679174 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.056300 -0.418611 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.056300 4.226963 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.056300 -2.415408 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.056300 -1.811556 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.056400 -0.412713 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.056400 4.531683 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.056400 -2.589533 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.056400 -1.942150 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.056500 -0.406409 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.056500 4.831930 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.056500 -2.761103 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.056500 -2.070827 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.056600 -0.399708 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.056600 5.127410 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.056600 -2.929949 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.056600 -2.197461 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.056700 -0.392610 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.056700 5.417830 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.056700 -3.095903 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.056700 -2.321927 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.056800 -0.385125 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.056800 5.702903 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.056800 -3.258802 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.056800 -2.444101 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.056900 -0.377251 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.056900 5.982348 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.056900 -3.418485 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.056900 -2.563864 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.057000 -0.369011 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.057000 6.255889 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.057000 -3.574794 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.057000 -2.681095 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.057100 -0.360408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.057100 6.523256 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.057100 -3.727575 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.057100 -2.795681 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.057200 -0.351451 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.057200 6.784185 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.057200 -3.876677 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.057200 -2.907508 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.057300 -0.342142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.057300 7.038419 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.057300 -4.021954 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.057300 -3.016465 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.057400 -0.332498 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.057400 7.285707 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.057400 -4.163261 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.057400 -3.122446 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.057500 -0.322526 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.057500 7.525805 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.057500 -4.300460 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.057500 -3.225345 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.057600 -0.312237 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.057600 7.758475 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.057600 -4.433414 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.057600 -3.325061 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.057700 -0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.057700 7.983487 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.057700 -4.561993 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.057700 -3.421495 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.057800 -0.290742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.057800 8.200622 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.057800 -4.686070 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.057800 -3.514552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.057900 -0.279557 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.057900 8.409664 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.057900 -4.805522 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.057900 -3.604142 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.058000 -0.268113 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.058000 8.610406 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.058000 -4.920232 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.058000 -3.690174 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.058100 -0.256386 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.058100 8.802651 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.058100 -5.030087 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.058100 -3.772565 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.058200 -0.244405 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.058200 8.986210 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.058200 -5.134977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.058200 -3.851233 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.058300 -0.232185 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.058300 9.160902 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.058300 -5.234801 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.058300 -3.926101 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.058400 -0.219738 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.058400 9.326552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.058400 -5.329458 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.058400 -3.997094 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.058500 -0.207073 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.058500 9.482998 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.058500 -5.418856 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.058500 -4.064142 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.058600 -0.194205 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.058600 9.630086 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.058600 -5.502906 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.058600 -4.127180 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.058700 -0.181147 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.058700 9.767669 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.058700 -5.581525 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.058700 -4.186144 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.058800 -0.167908 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.058800 9.895613 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.058800 -5.654636 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.058800 -4.240977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.058900 -0.154502 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.058900 10.013792 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.058900 -5.722167 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.058900 -4.291625 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.059000 -0.140947 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.059000 10.122088 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.059000 -5.784050 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.059000 -4.338038 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.059100 -0.127252 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.059100 10.220394 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.059100 -5.840225 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.059100 -4.380169 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.059200 -0.113436 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.059200 10.308614 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.059200 -5.890636 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.059200 -4.417977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.059300 -0.099497 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.059300 10.386662 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.059300 -5.935235 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.059300 -4.451426 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.059400 -0.085467 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.059400 10.454459 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.059400 -5.973977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.059400 -4.480483 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.059500 -0.071350 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.059500 10.511939 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.059500 -6.006823 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.059500 -4.505117 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.059600 -0.057165 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.059600 10.559045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.059600 -6.033740 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.059600 -4.525305 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.059700 -0.042923 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.059700 10.595731 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.059700 -6.054704 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.059700 -4.541028 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.059800 -0.028637 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.059800 10.621961 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.059800 -6.069692 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.059800 -4.552269 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.059900 -0.014324 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.059900 10.637708 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.059900 -6.078690 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.059900 -4.559018 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.060000 0.000003 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.060000 10.642957 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.060000 -6.081690 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.060000 -4.561267 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.060100 0.014331 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.060100 10.637703 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.060100 -6.078687 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.060100 -4.559015 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.060200 0.028644 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.060200 10.621951 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.060200 -6.069686 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.060200 -4.552265 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.060300 0.042929 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.060300 10.595716 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.060300 -6.054695 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.060300 -4.541021 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.060400 0.057171 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.060400 10.559025 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.060400 -6.033729 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.060400 -4.525297 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.060500 0.071358 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.060500 10.511914 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.060500 -6.006808 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.060500 -4.505106 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.060600 0.085474 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.060600 10.454429 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.060600 -5.973960 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.060600 -4.480470 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.060700 0.099504 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.060700 10.386627 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.060700 -5.935215 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.060700 -4.451412 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.060800 0.113438 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.060800 10.308575 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.060800 -5.890614 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.060800 -4.417961 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.060900 0.127258 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.060900 10.220348 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.060900 -5.840199 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.060900 -4.380149 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.061000 0.140960 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.061000 10.122038 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.061000 -5.784022 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.061000 -4.338016 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.061100 0.154511 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.061100 10.013738 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.061100 -5.722136 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.061100 -4.291602 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.061200 0.167914 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.061200 9.895555 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.061200 -5.654603 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.061200 -4.240952 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.061300 0.181150 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.061300 9.767606 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.061300 -5.581489 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.061300 -4.186117 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.061400 0.194212 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.061400 9.630018 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.061400 -5.502867 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.061400 -4.127151 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.061500 0.207080 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.061500 9.482927 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.061500 -5.418815 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.061500 -4.064111 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.061600 0.219742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.061600 9.326476 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.061600 -5.329415 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.061600 -3.997061 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.061700 0.232189 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.061700 9.160821 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.061700 -5.234755 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.061700 -3.926066 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.061800 0.244408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.061800 8.986126 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.061800 -5.134929 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.061800 -3.851197 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.061900 0.256384 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.061900 8.802562 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.061900 -5.030036 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.061900 -3.772527 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.062000 0.268110 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.062000 8.610312 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.062000 -4.920178 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.062000 -3.690134 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.062100 0.279574 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.062100 8.409566 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.062100 -4.805466 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.062100 -3.604100 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.062200 0.290760 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.062200 8.200520 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.062200 -4.686012 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.062200 -3.514509 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.062300 0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.062300 7.983382 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.062300 -4.561932 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.062300 -3.421449 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.062400 0.312242 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.062400 7.758365 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.062400 -4.433351 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.062400 -3.325014 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.062500 0.322534 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.062500 7.525692 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.062500 -4.300395 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.062500 -3.225297 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.062600 0.332503 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.062600 7.285592 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.062600 -4.163195 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.062600 -3.122396 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.062700 0.342146 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.062700 7.038301 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.062700 -4.021886 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.062700 -3.016415 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.062800 0.351452 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.062800 6.784064 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.062800 -3.876608 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.062800 -2.907456 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.062900 0.360411 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.062900 6.523131 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.062900 -3.727504 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.062900 -2.795628 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.063000 0.369018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.063000 6.255762 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.063000 -3.574721 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.063000 -2.681041 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.063100 0.377255 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.063100 5.982218 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.063100 -3.418411 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.063100 -2.563808 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.063200 0.385122 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.063200 5.702771 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.063200 -3.258726 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.063200 -2.444045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.063300 0.392609 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.063300 5.417695 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.063300 -3.095826 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.063300 -2.321869 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.063400 0.399715 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.063400 5.127273 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.063400 -2.929870 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.063400 -2.197403 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.063500 0.406418 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.063500 4.831790 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.063500 -2.761023 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.063500 -2.070767 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.063600 0.412720 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.063600 4.531539 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.063600 -2.589451 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.063600 -1.942088 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.063700 0.418612 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.063700 4.226818 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.063700 -2.415325 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.063700 -1.811493 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.063800 0.424096 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.063800 3.917925 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.063800 -2.238814 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.063800 -1.679111 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.063900 0.429162 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.063900 3.605166 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.063900 -2.060095 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.063900 -1.545071 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.064000 0.433801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.064000 3.288849 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.064000 -1.879343 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.064000 -1.409507 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.064100 0.438018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.064100 2.969287 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.064100 -1.696735 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.064100 -1.272552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.064200 0.441797 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.064200 2.646794 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.064200 -1.512454 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.064200 -1.134340 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.064300 0.445142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.064300 2.321688 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.064300 -1.326679 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.064300 -0.995009 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.064400 0.448054 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.064400 1.994291 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.064400 -1.139595 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.064400 -0.854696 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.064500 0.450515 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.064500 1.664925 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.064500 -0.951386 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.064500 -0.713539 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.064600 0.452532 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.064600 1.333915 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.064600 -0.762237 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.064600 -0.571678 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.064700 0.454104 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.064700 1.001589 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.064700 -0.572337 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.064700 -0.429253 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.064800 0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.064800 0.668274 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.064800 -0.381871 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.064800 -0.286403 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.064900 0.455901 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.064900 0.334302 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.064900 -0.191030 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.064900 -0.143272 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.065000 0.456129 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.065000 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.065000 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.065000 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.065100 0.455903 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.065100 -0.334305 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.065100 0.191032 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.065100 0.143274 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.065200 0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.065200 -0.668278 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.065200 0.381873 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.065200 0.286405 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.065300 0.454102 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.065300 -1.001591 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.065300 0.572338 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.065300 0.429253 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.065400 0.452531 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.065400 -1.333915 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.065400 0.762237 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.065400 0.571678 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.065500 0.450512 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.065500 -1.664924 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.065500 0.951385 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.065500 0.713539 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.065600 0.448049 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.065600 -1.994290 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.065600 1.139594 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.065600 0.854696 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.065700 0.445144 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.065700 -2.321686 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.065700 1.326678 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.065700 0.995008 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.065800 0.441801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.065800 -2.646791 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.065800 1.512452 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.065800 1.134339 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.065900 0.438014 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.065900 -2.969284 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.065900 1.696734 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.065900 1.272550 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.066000 0.433800 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.066000 -3.288845 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.066000 1.879340 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.066000 1.409505 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.066100 0.429161 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.066100 -3.605161 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.066100 2.060092 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.066100 1.545069 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.066200 0.424092 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.066200 -3.917918 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.066200 2.238810 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.066200 1.679108 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.066300 0.418611 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.066300 -4.226809 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.066300 2.415319 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.066300 1.811489 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.066400 0.412713 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.066400 -4.531528 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.066400 2.589444 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.066400 1.942083 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.066500 0.406409 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.066500 -4.831775 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.066500 2.761014 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.066500 2.070761 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.066600 0.399708 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.066600 -5.127255 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.066600 2.929860 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.066600 2.197395 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.066700 0.392610 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.066700 -5.417675 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.066700 3.095815 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.066700 2.321861 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.066800 0.385125 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.066800 -5.702749 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.066800 3.258713 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.066800 2.444035 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.066900 0.377251 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.066900 -5.982194 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.066900 3.418396 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.066900 2.563797 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.067000 0.369011 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.067000 -6.255735 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.067000 3.574706 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.067000 2.681029 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.067100 0.360408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.067100 -6.523102 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.067100 3.727487 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.067100 2.795615 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.067200 0.351451 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.067200 -6.784031 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.067200 3.876589 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.067200 2.907442 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.067300 0.342142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.067300 -7.038265 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.067300 4.021865 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.067300 3.016399 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.067400 0.332498 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.067400 -7.285552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.067400 4.163173 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.067400 3.122380 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.067500 0.322526 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.067500 -7.525650 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.067500 4.300371 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.067500 3.225278 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.067600 0.312237 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.067600 -7.758320 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.067600 4.433326 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.067600 3.324994 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.067700 0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.067700 -7.983333 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.067700 4.561904 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.067700 3.421428 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.067800 0.290742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.067800 -8.200467 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.067800 4.685981 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.067800 3.514486 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.067900 0.279557 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.067900 -8.409509 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.067900 4.805434 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.067900 3.604075 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.068000 0.268113 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.068000 -8.610251 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.068000 4.920144 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.068000 3.690108 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.068100 0.256386 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.068100 -8.802497 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.068100 5.029998 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.068100 3.772499 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.068200 0.244405 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.068200 -8.986056 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.068200 5.134889 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.068200 3.851167 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.068300 0.232185 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.068300 -9.160747 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.068300 5.234712 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.068300 3.926034 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.068400 0.219738 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.068400 -9.326397 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.068400 5.329370 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.068400 3.997027 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.068500 0.207073 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.068500 -9.482843 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.068500 5.418768 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.068500 4.064076 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.068600 0.194205 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.068600 -9.629931 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.068600 5.502818 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.068600 4.127113 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.068700 0.181147 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.068700 -9.767514 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.068700 5.581437 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.068700 4.186078 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.068800 0.167908 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.068800 -9.895458 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.068800 5.654548 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.068800 4.240911 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.068900 0.154502 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.068900 -10.013637 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.068900 5.722078 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.068900 4.291559 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.069000 0.140947 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.069000 -10.121933 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.069000 5.783962 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.069000 4.337971 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.069100 0.127252 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.069100 -10.220239 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.069100 5.840137 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.069100 4.380102 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.069200 0.113436 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.069200 -10.308459 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.069200 5.890548 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.069200 4.417911 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.069300 0.099497 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.069300 -10.386507 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.069300 5.935147 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.069300 4.451360 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.069400 0.085467 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.069400 -10.454304 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.069400 5.973888 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.069400 4.480416 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.069500 0.071350 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.069500 -10.511785 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.069500 6.006734 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.069500 4.505051 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.069600 0.057165 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.069600 -10.558891 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.069600 6.033652 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.069600 4.525239 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.069700 0.042923 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.069700 -10.595577 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.069700 6.054615 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.069700 4.540961 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.069800 0.028637 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.069800 -10.621806 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.069800 6.069603 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.069800 4.552203 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.069900 0.014324 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.069900 -10.637553 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.069900 6.078602 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.069900 4.558951 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.070000 -0.000003 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.070000 -10.642802 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.070000 6.081601 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.070000 4.561201 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.070100 -0.014331 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.070100 -10.637548 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.070100 6.078599 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.070100 4.558949 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.070200 -0.028644 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.070200 -10.621796 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.070200 6.069598 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.070200 4.552198 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.070300 -0.042929 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.070300 -10.595562 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.070300 6.054607 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.070300 4.540955 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.070400 -0.057171 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.070400 -10.558870 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.070400 6.033640 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.070400 4.525230 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.070500 -0.071358 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.070500 -10.511759 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.070500 6.006720 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.070500 4.505040 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.070600 -0.085474 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.070600 -10.454275 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.070600 5.973871 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.070600 4.480403 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.070700 -0.099504 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.070700 -10.386472 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.070700 5.935127 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.070700 4.451345 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.070800 -0.113438 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.070800 -10.308420 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.070800 5.890526 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.070800 4.417894 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.070900 -0.127258 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.070900 -10.220194 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.070900 5.840111 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.070900 4.380083 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.071000 -0.140960 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.071000 -10.121883 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.071000 5.783933 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.071000 4.337950 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.071100 -0.154511 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.071100 -10.013583 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.071100 5.722047 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.071100 4.291535 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.071200 -0.167914 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.071200 -9.895400 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.071200 5.654514 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.071200 4.240886 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.071300 -0.181150 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.071300 -9.767451 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.071300 5.581401 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.071300 4.186051 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.071400 -0.194212 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.071400 -9.629863 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.071400 5.502779 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.071400 4.127084 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.071500 -0.207080 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.071500 -9.482772 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.071500 5.418727 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.071500 4.064045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.071600 -0.219742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.071600 -9.326321 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.071600 5.329326 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.071600 3.996995 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.071700 -0.232189 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.071700 -9.160667 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.071700 5.234667 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.071700 3.926000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.071800 -0.244408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.071800 -8.985971 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.071800 5.134841 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.071800 3.851131 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.071900 -0.256384 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.071900 -8.802408 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.071900 5.029947 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.071900 3.772460 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.072000 -0.268110 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.072000 -8.610158 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.072000 4.920090 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.072000 3.690068 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.072100 -0.279574 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.072100 -8.409411 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.072100 4.805378 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.072100 3.604033 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.072200 -0.290760 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.072200 -8.200365 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.072200 4.685923 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.072200 3.514442 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.072300 -0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.072300 -7.983227 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.072300 4.561844 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.072300 3.421383 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.072400 -0.312242 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.072400 -7.758210 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.072400 4.433263 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.072400 3.324947 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.072500 -0.322534 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.072500 -7.525537 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.072500 4.300307 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.072500 3.225230 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.072600 -0.332503 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.072600 -7.285437 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.072600 4.163107 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.072600 3.122330 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.072700 -0.342146 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.072700 -7.038146 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.072700 4.021798 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.072700 3.016348 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.072800 -0.351452 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.072800 -6.783909 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.072800 3.876519 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.072800 2.907390 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.072900 -0.360411 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.072900 -6.522977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.072900 3.727415 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.072900 2.795561 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.073000 -0.369018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.073000 -6.255607 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.073000 3.574633 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.073000 2.680975 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.073100 -0.377255 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.073100 -5.982064 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.073100 3.418322 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.073100 2.563742 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.073200 -0.385122 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.073200 -5.702616 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.073200 3.258638 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.073200 2.443978 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.073300 -0.392609 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.073300 -5.417540 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.073300 3.095737 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.073300 2.321803 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.073400 -0.399715 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.073400 -5.127118 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.073400 2.929782 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.073400 2.197336 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.073500 -0.406418 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.073500 -4.831635 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.073500 2.760935 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.073500 2.070701 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.073600 -0.412720 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.073600 -4.531384 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.073600 2.589362 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.073600 1.942022 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.073700 -0.418612 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.073700 -4.226663 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.073700 2.415236 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.073700 1.811427 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.073800 -0.424096 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.073800 -3.917771 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.073800 2.238726 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.073800 1.679045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.073900 -0.429162 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.073900 -3.605011 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.073900 2.060007 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.073900 1.545005 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.074000 -0.433801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.074000 -3.288695 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.074000 1.879254 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.074000 1.409441 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.074100 -0.438018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.074100 -2.969132 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.074100 1.696647 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.074100 1.272485 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.074200 -0.441797 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.074200 -2.646639 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.074200 1.512365 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.074200 1.134274 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.074300 -0.445142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.074300 -2.321533 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.074300 1.326590 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.074300 0.994943 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.074400 -0.448054 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.074400 -1.994136 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.074400 1.139506 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.074400 0.854630 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.074500 -0.450515 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.074500 -1.664770 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.074500 0.951297 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.074500 0.713473 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.074600 -0.452532 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.074600 -1.333761 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.074600 0.762149 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.074600 0.571612 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.074700 -0.454104 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.074700 -1.001435 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.074700 0.572248 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.074700 0.429186 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.074800 -0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.074800 -0.668120 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.074800 0.381783 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.074800 0.286337 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.074900 -0.455901 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.074900 -0.334147 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.074900 0.190941 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.074900 0.143206 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.075000 -0.456129 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.075000 0.000156 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.075000 -0.000089 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.075000 -0.000067 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.075100 -0.455903 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.075100 0.334460 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.075100 -0.191120 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.075100 -0.143340 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.075200 -0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.075200 0.668433 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.075200 -0.381962 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.075200 -0.286471 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.075300 -0.454102 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.075300 1.001746 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.075300 -0.572426 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.075300 -0.429320 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.075400 -0.452531 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.075400 1.334070 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.075400 -0.762326 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.075400 -0.571744 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.075500 -0.450512 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.075500 1.665079 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.075500 -0.951474 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.075500 -0.713605 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.075600 -0.448049 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.075600 1.994444 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.075600 -1.139682 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.075600 -0.854762 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.075700 -0.445144 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.075700 2.321841 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.075700 -1.326766 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.075700 -0.995075 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.075800 -0.441801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.075800 2.646946 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.075800 -1.512541 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.075800 -1.134405 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.075900 -0.438014 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.075900 2.969439 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.075900 -1.696822 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.075900 -1.272617 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.076000 -0.433800 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.076000 3.289000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.076000 -1.879429 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.076000 -1.409572 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.076100 -0.429161 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.076100 3.605315 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.076100 -2.060180 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.076100 -1.545135 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.076200 -0.424092 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.076200 3.918073 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.076200 -2.238899 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.076200 -1.679174 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.076300 -0.418611 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.076300 4.226963 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.076300 -2.415408 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.076300 -1.811556 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.076400 -0.412713 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.076400 4.531683 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.076400 -2.589533 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.076400 -1.942150 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.076500 -0.406409 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.076500 4.831930 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.076500 -2.761103 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.076500 -2.070827 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.076600 -0.399708 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.076600 5.127410 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.076600 -2.929949 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.076600 -2.197461 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.076700 -0.392610 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.076700 5.417830 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.076700 -3.095903 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.076700 -2.321927 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.076800 -0.385125 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.076800 5.702903 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.076800 -3.258802 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.076800 -2.444101 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.076900 -0.377251 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.076900 5.982348 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.076900 -3.418485 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.076900 -2.563864 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.077000 -0.369011 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.077000 6.255889 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.077000 -3.574794 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.077000 -2.681095 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.077100 -0.360408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.077100 6.523256 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.077100 -3.727575 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.077100 -2.795681 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.077200 -0.351451 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.077200 6.784185 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.077200 -3.876677 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.077200 -2.907508 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.077300 -0.342142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.077300 7.038419 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.077300 -4.021954 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.077300 -3.016465 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.077400 -0.332498 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.077400 7.285707 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.077400 -4.163261 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.077400 -3.122446 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.077500 -0.322526 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.077500 7.525805 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.077500 -4.300460 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.077500 -3.225345 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.077600 -0.312237 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.077600 7.758475 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.077600 -4.433414 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.077600 -3.325061 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.077700 -0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.077700 7.983487 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.077700 -4.561993 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.077700 -3.421495 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.077800 -0.290742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.077800 8.200622 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.077800 -4.686070 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.077800 -3.514552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.077900 -0.279557 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.077900 8.409664 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.077900 -4.805522 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.077900 -3.604142 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.078000 -0.268113 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.078000 8.610406 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.078000 -4.920232 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.078000 -3.690174 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.078100 -0.256386 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.078100 8.802651 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.078100 -5.030087 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.078100 -3.772565 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.078200 -0.244405 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.078200 8.986210 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.078200 -5.134977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.078200 -3.851233 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.078300 -0.232185 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.078300 9.160902 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.078300 -5.234801 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.078300 -3.926101 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.078400 -0.219738 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.078400 9.326552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.078400 -5.329458 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.078400 -3.997094 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.078500 -0.207073 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.078500 9.482998 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.078500 -5.418856 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.078500 -4.064142 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.078600 -0.194205 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.078600 9.630086 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.078600 -5.502906 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.078600 -4.127180 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.078700 -0.181147 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.078700 9.767669 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.078700 -5.581525 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.078700 -4.186144 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.078800 -0.167908 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.078800 9.895613 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.078800 -5.654636 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.078800 -4.240977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.078900 -0.154502 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.078900 10.013792 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.078900 -5.722167 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.078900 -4.291625 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.079000 -0.140947 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.079000 10.122088 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.079000 -5.784050 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.079000 -4.338038 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.079100 -0.127252 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.079100 10.220394 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.079100 -5.840225 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.079100 -4.380169 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.079200 -0.113436 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.079200 10.308614 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.079200 -5.890636 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.079200 -4.417977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.079300 -0.099497 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.079300 10.386662 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.079300 -5.935235 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.079300 -4.451426 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.079400 -0.085467 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.079400 10.454459 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.079400 -5.973977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.079400 -4.480483 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.079500 -0.071350 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.079500 10.511939 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.079500 -6.006823 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.079500 -4.505117 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.079600 -0.057165 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.079600 10.559045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.079600 -6.033740 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.079600 -4.525305 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.079700 -0.042923 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.079700 10.595731 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.079700 -6.054704 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.079700 -4.541028 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.079800 -0.028637 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.079800 10.621961 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.079800 -6.069692 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.079800 -4.552269 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.079900 -0.014324 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.079900 10.637708 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.079900 -6.078690 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.079900 -4.559018 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.080000 0.000003 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.080000 10.642957 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.080000 -6.081690 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.080000 -4.561267 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.080100 0.014331 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.080100 10.637703 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.080100 -6.078687 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.080100 -4.559015 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.080200 0.028644 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.080200 10.621951 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.080200 -6.069686 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.080200 -4.552265 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.080300 0.042929 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.080300 10.595716 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.080300 -6.054695 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.080300 -4.541021 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.080400 0.057171 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.080400 10.559025 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.080400 -6.033729 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.080400 -4.525297 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.080500 0.071358 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.080500 10.511914 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.080500 -6.006808 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.080500 -4.505106 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.080600 0.085474 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.080600 10.454429 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.080600 -5.973960 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.080600 -4.480470 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.080700 0.099504 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.080700 10.386627 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.080700 -5.935215 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.080700 -4.451412 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.080800 0.113438 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.080800 10.308575 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.080800 -5.890614 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.080800 -4.417961 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.080900 0.127258 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.080900 10.220348 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.080900 -5.840199 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.080900 -4.380149 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.081000 0.140960 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.081000 10.122038 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.081000 -5.784022 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.081000 -4.338016 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.081100 0.154511 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.081100 10.013738 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.081100 -5.722136 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.081100 -4.291602 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.081200 0.167914 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.081200 9.895555 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.081200 -5.654603 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.081200 -4.240952 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.081300 0.181150 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.081300 9.767606 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.081300 -5.581489 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.081300 -4.186117 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.081400 0.194212 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.081400 9.630018 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.081400 -5.502867 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.081400 -4.127151 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.081500 0.207080 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.081500 9.482926 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.081500 -5.418815 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.081500 -4.064111 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.081600 0.219742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.081600 9.326476 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.081600 -5.329415 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.081600 -3.997061 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.081700 0.232189 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.081700 9.160821 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.081700 -5.234755 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.081700 -3.926066 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.081800 0.244408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.081800 8.986126 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.081800 -5.134929 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.081800 -3.851197 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.081900 0.256384 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.081900 8.802562 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.081900 -5.030036 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.081900 -3.772527 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.082000 0.268110 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.082000 8.610312 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.082000 -4.920178 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.082000 -3.690134 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.082100 0.279574 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.082100 8.409566 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.082100 -4.805466 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.082100 -3.604100 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.082200 0.290760 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.082200 8.200520 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.082200 -4.686012 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.082200 -3.514509 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.082300 0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.082300 7.983382 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.082300 -4.561932 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.082300 -3.421449 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.082400 0.312242 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.082400 7.758365 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.082400 -4.433351 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.082400 -3.325014 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.082500 0.322534 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.082500 7.525692 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.082500 -4.300395 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.082500 -3.225297 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.082600 0.332503 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.082600 7.285592 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.082600 -4.163195 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.082600 -3.122396 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.082700 0.342146 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.082700 7.038301 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.082700 -4.021886 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.082700 -3.016415 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.082800 0.351452 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.082800 6.784064 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.082800 -3.876608 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.082800 -2.907456 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.082900 0.360411 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.082900 6.523131 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.082900 -3.727504 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.082900 -2.795628 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.083000 0.369018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.083000 6.255762 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.083000 -3.574721 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.083000 -2.681041 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.083100 0.377255 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.083100 5.982218 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.083100 -3.418410 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.083100 -2.563808 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.083200 0.385122 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.083200 5.702771 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.083200 -3.258726 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.083200 -2.444045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.083300 0.392609 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.083300 5.417695 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.083300 -3.095826 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.083300 -2.321869 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.083400 0.399715 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.083400 5.127273 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.083400 -2.929870 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.083400 -2.197403 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.083500 0.406418 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.083500 4.831790 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.083500 -2.761023 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.083500 -2.070767 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.083600 0.412720 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.083600 4.531539 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.083600 -2.589451 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.083600 -1.942088 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.083700 0.418612 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.083700 4.226818 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.083700 -2.415325 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.083700 -1.811493 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.083800 0.424096 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.083800 3.917925 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.083800 -2.238814 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.083800 -1.679111 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.083900 0.429162 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.083900 3.605166 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.083900 -2.060095 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.083900 -1.545071 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.084000 0.433801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.084000 3.288849 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.084000 -1.879343 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.084000 -1.409507 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.084100 0.438018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.084100 2.969287 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.084100 -1.696735 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.084100 -1.272552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.084200 0.441797 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.084200 2.646794 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.084200 -1.512454 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.084200 -1.134340 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.084300 0.445142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.084300 2.321688 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.084300 -1.326679 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.084300 -0.995009 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.084400 0.448054 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.084400 1.994291 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.084400 -1.139595 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.084400 -0.854696 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.084500 0.450515 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.084500 1.664925 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.084500 -0.951386 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.084500 -0.713539 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.084600 0.452532 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.084600 1.333915 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.084600 -0.762237 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.084600 -0.571678 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.084700 0.454104 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.084700 1.001589 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.084700 -0.572337 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.084700 -0.429253 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.084800 0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.084800 0.668274 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.084800 -0.381871 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.084800 -0.286403 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.084900 0.455901 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.084900 0.334302 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.084900 -0.191030 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.084900 -0.143272 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.085000 0.456129 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.085000 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.085000 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.085000 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.085100 0.455903 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.085100 -0.334305 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.085100 0.191032 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.085100 0.143274 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.085200 0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.085200 -0.668278 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.085200 0.381873 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.085200 0.286405 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.085300 0.454102 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.085300 -1.001591 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.085300 0.572338 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.085300 0.429253 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.085400 0.452531 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.085400 -1.333915 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.085400 0.762237 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.085400 0.571678 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.085500 0.450512 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.085500 -1.664924 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.085500 0.951385 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.085500 0.713539 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.085600 0.448049 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.085600 -1.994290 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.085600 1.139594 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.085600 0.854696 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.085700 0.445144 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.085700 -2.321686 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.085700 1.326678 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.085700 0.995008 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.085800 0.441801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.085800 -2.646791 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.085800 1.512452 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.085800 1.134339 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.085900 0.438014 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.085900 -2.969284 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.085900 1.696734 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.085900 1.272550 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.086000 0.433800 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.086000 -3.288845 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.086000 1.879340 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.086000 1.409505 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.086100 0.429161 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.086100 -3.605161 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.086100 2.060092 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.086100 1.545069 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.086200 0.424092 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.086200 -3.917918 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.086200 2.238810 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.086200 1.679108 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.086300 0.418611 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.086300 -4.226809 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.086300 2.415319 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.086300 1.811489 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.086400 0.412713 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.086400 -4.531528 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.086400 2.589444 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.086400 1.942083 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.086500 0.406409 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.086500 -4.831775 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.086500 2.761014 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.086500 2.070761 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.086600 0.399708 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.086600 -5.127255 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.086600 2.929860 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.086600 2.197395 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.086700 0.392610 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.086700 -5.417675 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.086700 3.095815 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.086700 2.321861 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.086800 0.385125 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.086800 -5.702749 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.086800 3.258713 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.086800 2.444035 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.086900 0.377251 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.086900 -5.982194 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.086900 3.418396 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.086900 2.563797 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.087000 0.369011 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.087000 -6.255735 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.087000 3.574706 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.087000 2.681029 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.087100 0.360408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.087100 -6.523102 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.087100 3.727487 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.087100 2.795615 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.087200 0.351451 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.087200 -6.784031 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.087200 3.876589 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.087200 2.907442 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.087300 0.342142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.087300 -7.038265 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.087300 4.021865 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.087300 3.016399 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.087400 0.332498 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.087400 -7.285552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.087400 4.163173 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.087400 3.122380 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.087500 0.322526 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.087500 -7.525650 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.087500 4.300371 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.087500 3.225278 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.087600 0.312237 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.087600 -7.758320 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.087600 4.433326 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.087600 3.324994 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.087700 0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.087700 -7.983333 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.087700 4.561904 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.087700 3.421428 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.087800 0.290742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.087800 -8.200467 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.087800 4.685981 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.087800 3.514486 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.087900 0.279557 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.087900 -8.409509 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.087900 4.805434 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.087900 3.604075 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.088000 0.268113 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.088000 -8.610251 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.088000 4.920144 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.088000 3.690108 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.088100 0.256386 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.088100 -8.802497 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.088100 5.029998 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.088100 3.772499 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.088200 0.244405 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.088200 -8.986056 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.088200 5.134889 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.088200 3.851167 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.088300 0.232185 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.088300 -9.160747 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.088300 5.234712 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.088300 3.926034 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.088400 0.219738 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.088400 -9.326397 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.088400 5.329370 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.088400 3.997027 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.088500 0.207073 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.088500 -9.482843 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.088500 5.418768 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.088500 4.064076 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.088600 0.194205 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.088600 -9.629931 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.088600 5.502818 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.088600 4.127113 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.088700 0.181147 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.088700 -9.767514 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.088700 5.581437 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.088700 4.186078 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.088800 0.167908 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.088800 -9.895458 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.088800 5.654548 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.088800 4.240911 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.088900 0.154502 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.088900 -10.013637 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.088900 5.722078 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.088900 4.291559 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.089000 0.140947 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.089000 -10.121933 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.089000 5.783962 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.089000 4.337971 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.089100 0.127252 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.089100 -10.220239 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.089100 5.840137 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.089100 4.380102 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.089200 0.113436 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.089200 -10.308459 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.089200 5.890548 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.089200 4.417911 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.089300 0.099497 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.089300 -10.386507 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.089300 5.935147 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.089300 4.451360 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.089400 0.085467 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.089400 -10.454304 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.089400 5.973888 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.089400 4.480416 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.089500 0.071350 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.089500 -10.511785 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.089500 6.006734 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.089500 4.505051 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.089600 0.057165 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.089600 -10.558891 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.089600 6.033652 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.089600 4.525239 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.089700 0.042923 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.089700 -10.595577 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.089700 6.054615 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.089700 4.540961 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.089800 0.028637 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.089800 -10.621806 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.089800 6.069603 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.089800 4.552203 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.089900 0.014324 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.089900 -10.637553 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.089900 6.078602 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.089900 4.558951 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.090000 -0.000003 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.090000 -10.642802 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.090000 6.081601 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.090000 4.561201 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.090100 -0.014331 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.090100 -10.637548 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.090100 6.078599 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.090100 4.558949 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.090200 -0.028644 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.090200 -10.621796 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.090200 6.069598 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.090200 4.552198 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.090300 -0.042929 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.090300 -10.595562 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.090300 6.054607 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.090300 4.540955 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.090400 -0.057171 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.090400 -10.558871 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.090400 6.033640 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.090400 4.525230 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.090500 -0.071358 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.090500 -10.511759 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.090500 6.006720 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.090500 4.505040 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.090600 -0.085474 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.090600 -10.454275 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.090600 5.973871 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.090600 4.480403 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.090700 -0.099504 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.090700 -10.386472 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.090700 5.935127 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.090700 4.451345 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.090800 -0.113438 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.090800 -10.308420 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.090800 5.890526 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.090800 4.417894 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.090900 -0.127258 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.090900 -10.220194 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.090900 5.840111 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.090900 4.380083 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.091000 -0.140960 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.091000 -10.121883 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.091000 5.783933 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.091000 4.337950 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.091100 -0.154511 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.091100 -10.013583 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.091100 5.722047 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.091100 4.291535 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.091200 -0.167914 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.091200 -9.895400 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.091200 5.654514 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.091200 4.240886 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.091300 -0.181150 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.091300 -9.767451 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.091300 5.581401 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.091300 4.186051 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.091400 -0.194212 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.091400 -9.629863 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.091400 5.502779 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.091400 4.127084 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.091500 -0.207080 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.091500 -9.482772 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.091500 5.418727 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.091500 4.064045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.091600 -0.219742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.091600 -9.326321 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.091600 5.329326 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.091600 3.996995 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.091700 -0.232189 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.091700 -9.160667 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.091700 5.234667 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.091700 3.926000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.091800 -0.244408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.091800 -8.985971 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.091800 5.134841 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.091800 3.851131 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.091900 -0.256384 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.091900 -8.802408 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.091900 5.029947 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.091900 3.772460 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.092000 -0.268110 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.092000 -8.610158 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.092000 4.920090 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.092000 3.690068 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.092100 -0.279574 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.092100 -8.409411 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.092100 4.805378 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.092100 3.604033 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.092200 -0.290760 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.092200 -8.200365 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.092200 4.685923 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.092200 3.514442 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.092300 -0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.092300 -7.983227 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.092300 4.561844 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.092300 3.421383 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.092400 -0.312242 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.092400 -7.758210 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.092400 4.433263 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.092400 3.324947 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.092500 -0.322534 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.092500 -7.525537 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.092500 4.300307 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.092500 3.225230 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.092600 -0.332503 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.092600 -7.285437 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.092600 4.163107 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.092600 3.122330 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.092700 -0.342146 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.092700 -7.038146 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.092700 4.021798 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.092700 3.016348 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.092800 -0.351452 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.092800 -6.783909 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.092800 3.876519 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.092800 2.907390 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.092900 -0.360411 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.092900 -6.522977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.092900 3.727415 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.092900 2.795561 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.093000 -0.369018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.093000 -6.255607 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.093000 3.574633 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.093000 2.680975 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.093100 -0.377255 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.093100 -5.982064 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.093100 3.418322 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.093100 2.563742 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.093200 -0.385122 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.093200 -5.702616 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.093200 3.258638 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.093200 2.443978 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.093300 -0.392609 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.093300 -5.417540 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.093300 3.095737 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.093300 2.321803 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.093400 -0.399715 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.093400 -5.127118 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.093400 2.929782 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.093400 2.197336 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.093500 -0.406418 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.093500 -4.831635 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.093500 2.760935 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.093500 2.070701 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.093600 -0.412720 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.093600 -4.531384 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.093600 2.589362 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.093600 1.942022 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.093700 -0.418612 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.093700 -4.226663 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.093700 2.415236 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.093700 1.811427 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.093800 -0.424096 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.093800 -3.917771 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.093800 2.238726 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.093800 1.679045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.093900 -0.429162 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.093900 -3.605011 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.093900 2.060007 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.093900 1.545005 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.094000 -0.433801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.094000 -3.288695 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.094000 1.879254 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.094000 1.409441 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.094100 -0.438018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.094100 -2.969132 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.094100 1.696647 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.094100 1.272485 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.094200 -0.441797 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.094200 -2.646639 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.094200 1.512365 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.094200 1.134274 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.094300 -0.445142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.094300 -2.321533 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.094300 1.326590 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.094300 0.994943 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.094400 -0.448054 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.094400 -1.994136 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.094400 1.139506 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.094400 0.854630 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.094500 -0.450515 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.094500 -1.664770 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.094500 0.951297 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.094500 0.713473 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.094600 -0.452532 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.094600 -1.333761 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.094600 0.762149 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.094600 0.571612 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.094700 -0.454104 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.094700 -1.001435 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.094700 0.572248 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.094700 0.429186 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.094800 -0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.094800 -0.668120 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.094800 0.381783 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.094800 0.286337 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.094900 -0.455901 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.094900 -0.334147 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.094900 0.190941 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.094900 0.143206 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.095000 -0.456129 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.095000 0.000156 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.095000 -0.000089 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.095000 -0.000067 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.095100 -0.455903 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.095100 0.334460 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.095100 -0.191120 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.095100 -0.143340 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.095200 -0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.095200 0.668433 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.095200 -0.381962 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.095200 -0.286471 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.095300 -0.454102 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.095300 1.001746 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.095300 -0.572426 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.095300 -0.429320 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.095400 -0.452531 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.095400 1.334070 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.095400 -0.762326 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.095400 -0.571744 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.095500 -0.450512 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.095500 1.665079 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.095500 -0.951474 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.095500 -0.713605 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.095600 -0.448049 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.095600 1.994444 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.095600 -1.139682 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.095600 -0.854762 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.095700 -0.445144 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.095700 2.321841 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.095700 -1.326766 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.095700 -0.995075 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.095800 -0.441801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.095800 2.646946 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.095800 -1.512541 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.095800 -1.134405 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.095900 -0.438014 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.095900 2.969439 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.095900 -1.696822 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.095900 -1.272617 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.096000 -0.433800 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.096000 3.289000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.096000 -1.879429 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.096000 -1.409572 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.096100 -0.429161 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.096100 3.605315 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.096100 -2.060180 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.096100 -1.545135 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.096200 -0.424092 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.096200 3.918073 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.096200 -2.238899 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.096200 -1.679174 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.096300 -0.418611 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.096300 4.226963 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.096300 -2.415408 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.096300 -1.811556 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.096400 -0.412713 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.096400 4.531683 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.096400 -2.589533 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.096400 -1.942150 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.096500 -0.406409 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.096500 4.831930 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.096500 -2.761103 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.096500 -2.070827 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.096600 -0.399708 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.096600 5.127410 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.096600 -2.929949 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.096600 -2.197461 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.096700 -0.392610 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.096700 5.417830 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.096700 -3.095903 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.096700 -2.321927 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.096800 -0.385125 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.096800 5.702903 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.096800 -3.258802 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.096800 -2.444101 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.096900 -0.377251 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.096900 5.982348 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.096900 -3.418485 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.096900 -2.563864 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.097000 -0.369011 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.097000 6.255889 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.097000 -3.574794 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.097000 -2.681095 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.097100 -0.360408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.097100 6.523256 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.097100 -3.727575 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.097100 -2.795681 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.097200 -0.351451 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.097200 6.784185 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.097200 -3.876677 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.097200 -2.907508 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.097300 -0.342142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.097300 7.038419 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.097300 -4.021954 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.097300 -3.016465 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.097400 -0.332498 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.097400 7.285707 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.097400 -4.163261 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.097400 -3.122446 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.097500 -0.322526 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.097500 7.525805 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.097500 -4.300460 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.097500 -3.225345 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.097600 -0.312237 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.097600 7.758475 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.097600 -4.433414 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.097600 -3.325061 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.097700 -0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.097700 7.983487 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.097700 -4.561993 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.097700 -3.421495 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.097800 -0.290742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.097800 8.200622 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.097800 -4.686070 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.097800 -3.514552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.097900 -0.279557 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.097900 8.409664 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.097900 -4.805522 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.097900 -3.604142 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.098000 -0.268113 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.098000 8.610406 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.098000 -4.920232 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.098000 -3.690174 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.098100 -0.256386 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.098100 8.802651 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.098100 -5.030087 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.098100 -3.772565 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.098200 -0.244405 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.098200 8.986210 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.098200 -5.134977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.098200 -3.851233 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.098300 -0.232185 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.098300 9.160902 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.098300 -5.234801 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.098300 -3.926101 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.098400 -0.219738 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.098400 9.326552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.098400 -5.329458 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.098400 -3.997094 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.098500 -0.207073 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.098500 9.482998 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.098500 -5.418856 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.098500 -4.064142 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.098600 -0.194205 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.098600 9.630086 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.098600 -5.502906 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.098600 -4.127180 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.098700 -0.181147 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.098700 9.767669 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.098700 -5.581525 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.098700 -4.186144 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.098800 -0.167908 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.098800 9.895613 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.098800 -5.654636 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.098800 -4.240977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.098900 -0.154502 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.098900 10.013792 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.098900 -5.722167 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.098900 -4.291625 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.099000 -0.140947 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.099000 10.122088 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.099000 -5.784050 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.099000 -4.338038 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.099100 -0.127252 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.099100 10.220394 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.099100 -5.840225 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.099100 -4.380169 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.099200 -0.113436 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.099200 10.308614 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.099200 -5.890636 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.099200 -4.417977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.099300 -0.099497 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.099300 10.386662 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.099300 -5.935235 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.099300 -4.451426 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.099400 -0.085467 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.099400 10.454459 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.099400 -5.973977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.099400 -4.480483 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.099500 -0.071350 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.099500 10.511939 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.099500 -6.006823 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.099500 -4.505117 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.099600 -0.057165 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.099600 10.559045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.099600 -6.033740 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.099600 -4.525305 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.099700 -0.042923 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.099700 10.595731 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.099700 -6.054704 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.099700 -4.541028 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.099800 -0.028637 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.099800 10.621961 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.099800 -6.069692 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.099800 -4.552269 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.099900 -0.014324 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.099900 10.637708 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.099900 -6.078690 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.099900 -4.559018 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.100000 0.000003 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.100000 10.642957 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.100000 -6.081690 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.100000 -4.561267 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.100100 0.014331 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.100100 10.637703 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.100100 -6.078687 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.100100 -4.559015 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.100200 0.028644 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.100200 10.621951 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.100200 -6.069686 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.100200 -4.552265 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.100300 0.042929 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.100300 10.595716 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.100300 -6.054695 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.100300 -4.541021 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.100400 0.057171 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.100400 10.559025 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.100400 -6.033729 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.100400 -4.525297 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.100500 0.071358 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.100500 10.511914 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.100500 -6.006808 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.100500 -4.505106 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.100600 0.085474 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.100600 10.454429 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.100600 -5.973960 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.100600 -4.480470 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.100700 0.099504 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.100700 10.386627 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.100700 -5.935215 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.100700 -4.451412 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.100800 0.113438 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.100800 10.308575 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.100800 -5.890614 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.100800 -4.417961 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.100900 0.127258 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.100900 10.220348 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.100900 -5.840199 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.100900 -4.380149 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.101000 0.140960 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.101000 10.122038 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.101000 -5.784022 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.101000 -4.338016 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.101100 0.154511 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.101100 10.013738 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.101100 -5.722136 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.101100 -4.291602 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.101200 0.167914 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.101200 9.895555 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.101200 -5.654603 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.101200 -4.240952 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.101300 0.181150 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.101300 9.767606 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.101300 -5.581489 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.101300 -4.186117 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.101400 0.194212 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.101400 9.630018 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.101400 -5.502867 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.101400 -4.127151 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.101500 0.207080 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.101500 9.482926 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.101500 -5.418815 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.101500 -4.064111 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.101600 0.219742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.101600 9.326476 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.101600 -5.329415 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.101600 -3.997061 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.101700 0.232189 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.101700 9.160821 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.101700 -5.234755 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.101700 -3.926066 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.101800 0.244408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.101800 8.986126 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.101800 -5.134929 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.101800 -3.851197 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.101900 0.256384 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.101900 8.802562 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.101900 -5.030036 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.101900 -3.772527 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.102000 0.268110 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.102000 8.610312 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.102000 -4.920178 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.102000 -3.690134 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.102100 0.279574 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.102100 8.409566 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.102100 -4.805466 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.102100 -3.604100 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.102200 0.290760 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.102200 8.200520 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.102200 -4.686012 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.102200 -3.514509 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.102300 0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.102300 7.983382 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.102300 -4.561932 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.102300 -3.421449 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.102400 0.312242 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.102400 7.758365 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.102400 -4.433351 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.102400 -3.325014 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.102500 0.322534 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.102500 7.525692 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.102500 -4.300395 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.102500 -3.225297 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.102600 0.332503 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.102600 7.285592 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.102600 -4.163195 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.102600 -3.122396 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.102700 0.342146 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.102700 7.038301 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.102700 -4.021886 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.102700 -3.016415 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.102800 0.351452 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.102800 6.784064 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.102800 -3.876608 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.102800 -2.907456 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.102900 0.360411 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.102900 6.523131 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.102900 -3.727504 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.102900 -2.795628 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.103000 0.369018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.103000 6.255762 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.103000 -3.574721 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.103000 -2.681041 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.103100 0.377255 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.103100 5.982218 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.103100 -3.418410 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.103100 -2.563808 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.103200 0.385122 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.103200 5.702771 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.103200 -3.258726 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.103200 -2.444045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.103300 0.392609 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.103300 5.417695 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.103300 -3.095826 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.103300 -2.321869 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.103400 0.399715 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.103400 5.127273 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.103400 -2.929870 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.103400 -2.197403 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.103500 0.406418 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.103500 4.831790 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.103500 -2.761023 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.103500 -2.070767 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.103600 0.412720 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.103600 4.531539 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.103600 -2.589451 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.103600 -1.942088 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.103700 0.418612 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.103700 4.226818 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.103700 -2.415324 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.103700 -1.811493 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.103800 0.424096 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.103800 3.917925 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.103800 -2.238814 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.103800 -1.679111 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.103900 0.429162 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.103900 3.605166 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.103900 -2.060095 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.103900 -1.545071 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.104000 0.433801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.104000 3.288849 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.104000 -1.879343 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.104000 -1.409507 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.104100 0.438018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.104100 2.969287 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.104100 -1.696735 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.104100 -1.272552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.104200 0.441797 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.104200 2.646794 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.104200 -1.512453 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.104200 -1.134340 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.104300 0.445142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.104300 2.321688 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.104300 -1.326679 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.104300 -0.995009 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.104400 0.448054 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.104400 1.994291 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.104400 -1.139595 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.104400 -0.854696 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.104500 0.450515 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.104500 1.664925 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.104500 -0.951386 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.104500 -0.713539 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.104600 0.452532 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.104600 1.333915 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.104600 -0.762237 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.104600 -0.571678 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.104700 0.454104 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.104700 1.001589 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.104700 -0.572337 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.104700 -0.429253 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.104800 0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.104800 0.668274 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.104800 -0.381871 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.104800 -0.286403 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.104900 0.455901 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.104900 0.334302 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.104900 -0.191029 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.104900 -0.143272 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.105000 0.456129 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.105000 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.105000 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.105000 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.105100 0.455903 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.105100 -0.334305 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.105100 0.191032 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.105100 0.143274 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.105200 0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.105200 -0.668278 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.105200 0.381873 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.105200 0.286405 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.105300 0.454102 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.105300 -1.001591 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.105300 0.572338 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.105300 0.429253 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.105400 0.452531 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.105400 -1.333915 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.105400 0.762237 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.105400 0.571678 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.105500 0.450512 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.105500 -1.664924 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.105500 0.951385 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.105500 0.713539 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.105600 0.448049 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.105600 -1.994290 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.105600 1.139594 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.105600 0.854696 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.105700 0.445144 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.105700 -2.321686 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.105700 1.326678 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.105700 0.995008 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.105800 0.441801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.105800 -2.646791 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.105800 1.512452 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.105800 1.134339 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.105900 0.438014 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.105900 -2.969284 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.105900 1.696734 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.105900 1.272550 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.106000 0.433800 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.106000 -3.288845 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.106000 1.879340 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.106000 1.409505 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.106100 0.429161 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.106100 -3.605161 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.106100 2.060092 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.106100 1.545069 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.106200 0.424092 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.106200 -3.917918 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.106200 2.238810 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.106200 1.679108 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.106300 0.418611 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.106300 -4.226809 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.106300 2.415319 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.106300 1.811489 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.106400 0.412713 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.106400 -4.531528 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.106400 2.589444 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.106400 1.942083 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.106500 0.406409 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.106500 -4.831775 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.106500 2.761014 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.106500 2.070761 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.106600 0.399708 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.106600 -5.127255 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.106600 2.929860 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.106600 2.197395 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.106700 0.392610 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.106700 -5.417675 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.106700 3.095815 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.106700 2.321861 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.106800 0.385125 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.106800 -5.702749 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.106800 3.258713 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.106800 2.444035 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.106900 0.377251 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.106900 -5.982194 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.106900 3.418396 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.106900 2.563797 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.107000 0.369011 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.107000 -6.255735 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.107000 3.574706 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.107000 2.681029 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.107100 0.360408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.107100 -6.523102 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.107100 3.727487 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.107100 2.795615 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.107200 0.351451 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.107200 -6.784031 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.107200 3.876589 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.107200 2.907442 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.107300 0.342142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.107300 -7.038265 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.107300 4.021865 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.107300 3.016399 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.107400 0.332498 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.107400 -7.285552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.107400 4.163173 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.107400 3.122380 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.107500 0.322526 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.107500 -7.525650 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.107500 4.300371 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.107500 3.225278 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.107600 0.312237 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.107600 -7.758320 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.107600 4.433326 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.107600 3.324994 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.107700 0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.107700 -7.983333 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.107700 4.561904 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.107700 3.421428 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.107800 0.290742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.107800 -8.200467 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.107800 4.685981 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.107800 3.514486 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.107900 0.279557 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.107900 -8.409509 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.107900 4.805434 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.107900 3.604075 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.108000 0.268113 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.108000 -8.610251 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.108000 4.920144 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.108000 3.690108 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.108100 0.256386 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.108100 -8.802497 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.108100 5.029998 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.108100 3.772499 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.108200 0.244405 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.108200 -8.986056 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.108200 5.134889 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.108200 3.851167 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.108300 0.232185 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.108300 -9.160747 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.108300 5.234712 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.108300 3.926034 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.108400 0.219738 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.108400 -9.326397 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.108400 5.329370 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.108400 3.997027 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.108500 0.207073 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.108500 -9.482843 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.108500 5.418768 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.108500 4.064076 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.108600 0.194205 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.108600 -9.629931 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.108600 5.502818 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.108600 4.127113 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.108700 0.181147 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.108700 -9.767514 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.108700 5.581437 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.108700 4.186078 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.108800 0.167908 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.108800 -9.895458 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.108800 5.654548 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.108800 4.240911 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.108900 0.154502 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.108900 -10.013637 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.108900 5.722078 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.108900 4.291559 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.109000 0.140947 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.109000 -10.121933 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.109000 5.783962 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.109000 4.337971 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.109100 0.127252 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.109100 -10.220239 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.109100 5.840137 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.109100 4.380102 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.109200 0.113436 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.109200 -10.308459 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.109200 5.890548 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.109200 4.417911 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.109300 0.099497 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.109300 -10.386507 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.109300 5.935147 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.109300 4.451360 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.109400 0.085467 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.109400 -10.454304 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.109400 5.973888 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.109400 4.480416 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.109500 0.071350 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.109500 -10.511785 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.109500 6.006734 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.109500 4.505051 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.109600 0.057165 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.109600 -10.558891 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.109600 6.033652 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.109600 4.525239 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.109700 0.042923 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.109700 -10.595577 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.109700 6.054615 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.109700 4.540961 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.109800 0.028637 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.109800 -10.621806 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.109800 6.069603 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.109800 4.552203 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.109900 0.014324 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.109900 -10.637553 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.109900 6.078602 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.109900 4.558951 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.110000 -0.000003 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.110000 -10.642802 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.110000 6.081601 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.110000 4.561201 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.110100 -0.014331 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.110100 -10.637548 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.110100 6.078599 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.110100 4.558949 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.110200 -0.028644 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.110200 -10.621796 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.110200 6.069598 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.110200 4.552198 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.110300 -0.042929 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.110300 -10.595562 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.110300 6.054607 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.110300 4.540955 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.110400 -0.057171 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.110400 -10.558871 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.110400 6.033640 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.110400 4.525230 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.110500 -0.071358 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.110500 -10.511759 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.110500 6.006720 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.110500 4.505040 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.110600 -0.085474 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.110600 -10.454275 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.110600 5.973871 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.110600 4.480403 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.110700 -0.099504 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.110700 -10.386472 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.110700 5.935127 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.110700 4.451345 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.110800 -0.113438 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.110800 -10.308420 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.110800 5.890526 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.110800 4.417894 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.110900 -0.127258 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.110900 -10.220194 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.110900 5.840111 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.110900 4.380083 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.111000 -0.140960 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.111000 -10.121883 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.111000 5.783933 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.111000 4.337950 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.111100 -0.154511 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.111100 -10.013583 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.111100 5.722047 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.111100 4.291535 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.111200 -0.167914 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.111200 -9.895400 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.111200 5.654514 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.111200 4.240886 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.111300 -0.181150 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.111300 -9.767451 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.111300 5.581401 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.111300 4.186051 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.111400 -0.194212 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.111400 -9.629863 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.111400 5.502779 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.111400 4.127084 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.111500 -0.207080 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.111500 -9.482772 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.111500 5.418727 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.111500 4.064045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.111600 -0.219742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.111600 -9.326321 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.111600 5.329326 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.111600 3.996995 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.111700 -0.232189 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.111700 -9.160667 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.111700 5.234667 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.111700 3.926000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.111800 -0.244408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.111800 -8.985971 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.111800 5.134841 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.111800 3.851131 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.111900 -0.256384 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.111900 -8.802408 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.111900 5.029947 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.111900 3.772460 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.112000 -0.268110 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.112000 -8.610158 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.112000 4.920090 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.112000 3.690068 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.112100 -0.279574 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.112100 -8.409411 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.112100 4.805378 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.112100 3.604033 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.112200 -0.290760 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.112200 -8.200365 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.112200 4.685923 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.112200 3.514442 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.112300 -0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.112300 -7.983227 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.112300 4.561844 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.112300 3.421383 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.112400 -0.312242 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.112400 -7.758210 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.112400 4.433263 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.112400 3.324947 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.112500 -0.322534 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.112500 -7.525537 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.112500 4.300307 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.112500 3.225230 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.112600 -0.332503 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.112600 -7.285437 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.112600 4.163107 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.112600 3.122330 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.112700 -0.342146 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.112700 -7.038146 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.112700 4.021798 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.112700 3.016348 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.112800 -0.351452 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.112800 -6.783909 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.112800 3.876519 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.112800 2.907390 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.112900 -0.360411 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.112900 -6.522977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.112900 3.727415 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.112900 2.795561 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.113000 -0.369018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.113000 -6.255607 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.113000 3.574633 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.113000 2.680975 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.113100 -0.377255 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.113100 -5.982064 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.113100 3.418322 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.113100 2.563742 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.113200 -0.385122 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.113200 -5.702616 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.113200 3.258638 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.113200 2.443978 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.113300 -0.392609 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.113300 -5.417540 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.113300 3.095737 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.113300 2.321803 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.113400 -0.399715 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.113400 -5.127118 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.113400 2.929782 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.113400 2.197336 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.113500 -0.406418 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.113500 -4.831635 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.113500 2.760935 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.113500 2.070701 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.113600 -0.412720 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.113600 -4.531384 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.113600 2.589362 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.113600 1.942022 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.113700 -0.418612 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.113700 -4.226663 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.113700 2.415236 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.113700 1.811427 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.113800 -0.424096 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.113800 -3.917771 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.113800 2.238726 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.113800 1.679045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.113900 -0.429162 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.113900 -3.605011 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.113900 2.060007 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.113900 1.545005 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.114000 -0.433801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.114000 -3.288695 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.114000 1.879254 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.114000 1.409441 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.114100 -0.438018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.114100 -2.969132 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.114100 1.696647 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.114100 1.272485 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.114200 -0.441797 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.114200 -2.646639 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.114200 1.512365 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.114200 1.134274 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.114300 -0.445142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.114300 -2.321533 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.114300 1.326590 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.114300 0.994943 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.114400 -0.448054 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.114400 -1.994136 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.114400 1.139506 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.114400 0.854630 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.114500 -0.450515 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.114500 -1.664770 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.114500 0.951297 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.114500 0.713473 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.114600 -0.452532 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.114600 -1.333761 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.114600 0.762149 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.114600 0.571612 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.114700 -0.454104 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.114700 -1.001435 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.114700 0.572248 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.114700 0.429186 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.114800 -0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.114800 -0.668120 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.114800 0.381783 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.114800 0.286337 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.114900 -0.455901 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.114900 -0.334147 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.114900 0.190941 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.114900 0.143206 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.115000 -0.456129 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.115000 0.000156 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.115000 -0.000089 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.115000 -0.000067 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.115100 -0.455903 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.115100 0.334460 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.115100 -0.191120 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.115100 -0.143340 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.115200 -0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.115200 0.668433 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.115200 -0.381962 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.115200 -0.286471 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.115300 -0.454102 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.115300 1.001746 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.115300 -0.572426 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.115300 -0.429320 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.115400 -0.452531 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.115400 1.334070 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.115400 -0.762326 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.115400 -0.571744 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.115500 -0.450512 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.115500 1.665079 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.115500 -0.951474 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.115500 -0.713605 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.115600 -0.448049 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.115600 1.994444 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.115600 -1.139682 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.115600 -0.854762 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.115700 -0.445144 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.115700 2.321841 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.115700 -1.326766 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.115700 -0.995075 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.115800 -0.441801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.115800 2.646946 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.115800 -1.512541 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.115800 -1.134405 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.115900 -0.438014 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.115900 2.969438 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.115900 -1.696822 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.115900 -1.272616 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.116000 -0.433800 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.116000 3.289000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.116000 -1.879429 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.116000 -1.409572 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.116100 -0.429161 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.116100 3.605315 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.116100 -2.060180 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.116100 -1.545135 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.116200 -0.424092 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.116200 3.918073 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.116200 -2.238899 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.116200 -1.679174 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.116300 -0.418611 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.116300 4.226963 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.116300 -2.415408 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.116300 -1.811556 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.116400 -0.412713 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.116400 4.531683 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.116400 -2.589533 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.116400 -1.942150 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.116500 -0.406409 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.116500 4.831930 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.116500 -2.761103 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.116500 -2.070827 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.116600 -0.399708 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.116600 5.127410 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.116600 -2.929949 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.116600 -2.197461 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.116700 -0.392610 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.116700 5.417830 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.116700 -3.095903 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.116700 -2.321927 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.116800 -0.385125 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.116800 5.702903 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.116800 -3.258802 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.116800 -2.444101 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.116900 -0.377251 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.116900 5.982348 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.116900 -3.418485 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.116900 -2.563864 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.117000 -0.369011 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.117000 6.255889 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.117000 -3.574794 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.117000 -2.681095 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.117100 -0.360408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.117100 6.523256 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.117100 -3.727575 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.117100 -2.795681 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.117200 -0.351451 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.117200 6.784185 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.117200 -3.876677 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.117200 -2.907508 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.117300 -0.342142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.117300 7.038419 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.117300 -4.021954 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.117300 -3.016465 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.117400 -0.332498 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.117400 7.285707 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.117400 -4.163261 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.117400 -3.122446 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.117500 -0.322526 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.117500 7.525805 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.117500 -4.300460 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.117500 -3.225345 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.117600 -0.312237 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.117600 7.758475 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.117600 -4.433414 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.117600 -3.325061 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.117700 -0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.117700 7.983487 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.117700 -4.561993 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.117700 -3.421495 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.117800 -0.290742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.117800 8.200622 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.117800 -4.686070 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.117800 -3.514552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.117900 -0.279557 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.117900 8.409664 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.117900 -4.805522 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.117900 -3.604142 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.118000 -0.268113 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.118000 8.610406 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.118000 -4.920232 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.118000 -3.690174 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.118100 -0.256386 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.118100 8.802651 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.118100 -5.030087 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.118100 -3.772565 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.118200 -0.244405 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.118200 8.986210 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.118200 -5.134977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.118200 -3.851233 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.118300 -0.232185 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.118300 9.160902 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.118300 -5.234801 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.118300 -3.926101 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.118400 -0.219738 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.118400 9.326552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.118400 -5.329458 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.118400 -3.997094 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.118500 -0.207073 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.118500 9.482998 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.118500 -5.418856 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.118500 -4.064142 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.118600 -0.194205 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.118600 9.630086 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.118600 -5.502906 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.118600 -4.127180 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.118700 -0.181147 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.118700 9.767669 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.118700 -5.581525 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.118700 -4.186144 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.118800 -0.167908 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.118800 9.895613 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.118800 -5.654636 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.118800 -4.240977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.118900 -0.154502 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.118900 10.013792 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.118900 -5.722167 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.118900 -4.291625 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.119000 -0.140947 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.119000 10.122088 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.119000 -5.784050 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.119000 -4.338038 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.119100 -0.127252 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.119100 10.220394 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.119100 -5.840225 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.119100 -4.380169 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.119200 -0.113436 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.119200 10.308614 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.119200 -5.890636 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.119200 -4.417977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.119300 -0.099497 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.119300 10.386662 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.119300 -5.935235 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.119300 -4.451426 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.119400 -0.085467 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.119400 10.454459 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.119400 -5.973977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.119400 -4.480482 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.119500 -0.071350 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.119500 10.511939 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.119500 -6.006823 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.119500 -4.505117 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.119600 -0.057165 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.119600 10.559045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.119600 -6.033740 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.119600 -4.525305 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.119700 -0.042923 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.119700 10.595731 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.119700 -6.054704 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.119700 -4.541028 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.119800 -0.028637 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.119800 10.621961 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.119800 -6.069692 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.119800 -4.552269 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.119900 -0.014324 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.119900 10.637708 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.119900 -6.078690 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.119900 -4.559018 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.120000 0.000003 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.120000 10.642957 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.120000 -6.081690 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.120000 -4.561267 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.120100 0.014331 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.120100 10.637703 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.120100 -6.078687 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.120100 -4.559015 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.120200 0.028644 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.120200 10.621951 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.120200 -6.069686 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.120200 -4.552265 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.120300 0.042929 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.120300 10.595716 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.120300 -6.054695 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.120300 -4.541021 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.120400 0.057171 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.120400 10.559025 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.120400 -6.033729 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.120400 -4.525297 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.120500 0.071358 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.120500 10.511914 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.120500 -6.006808 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.120500 -4.505106 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.120600 0.085474 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.120600 10.454429 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.120600 -5.973960 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.120600 -4.480470 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.120700 0.099504 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.120700 10.386627 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.120700 -5.935215 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.120700 -4.451412 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.120800 0.113438 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.120800 10.308575 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.120800 -5.890614 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.120800 -4.417961 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.120900 0.127258 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.120900 10.220348 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.120900 -5.840199 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.120900 -4.380149 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.121000 0.140960 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.121000 10.122038 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.121000 -5.784022 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.121000 -4.338016 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.121100 0.154511 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.121100 10.013738 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.121100 -5.722136 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.121100 -4.291602 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.121200 0.167914 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.121200 9.895555 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.121200 -5.654603 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.121200 -4.240952 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.121300 0.181150 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.121300 9.767606 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.121300 -5.581489 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.121300 -4.186117 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.121400 0.194212 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.121400 9.630018 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.121400 -5.502867 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.121400 -4.127151 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.121500 0.207080 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.121500 9.482926 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.121500 -5.418815 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.121500 -4.064111 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.121600 0.219742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.121600 9.326476 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.121600 -5.329415 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.121600 -3.997061 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.121700 0.232189 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.121700 9.160821 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.121700 -5.234755 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.121700 -3.926066 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.121800 0.244408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.121800 8.986126 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.121800 -5.134929 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.121800 -3.851197 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.121900 0.256384 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.121900 8.802562 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.121900 -5.030036 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.121900 -3.772527 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.122000 0.268110 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.122000 8.610312 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.122000 -4.920178 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.122000 -3.690134 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.122100 0.279574 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.122100 8.409566 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.122100 -4.805466 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.122100 -3.604100 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.122200 0.290760 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.122200 8.200520 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.122200 -4.686012 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.122200 -3.514509 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.122300 0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.122300 7.983382 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.122300 -4.561932 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.122300 -3.421449 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.122400 0.312242 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.122400 7.758365 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.122400 -4.433351 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.122400 -3.325014 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.122500 0.322534 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.122500 7.525692 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.122500 -4.300395 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.122500 -3.225297 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.122600 0.332503 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.122600 7.285592 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.122600 -4.163195 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.122600 -3.122396 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.122700 0.342146 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.122700 7.038301 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.122700 -4.021886 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.122700 -3.016415 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.122800 0.351452 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.122800 6.784064 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.122800 -3.876608 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.122800 -2.907456 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.122900 0.360411 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.122900 6.523131 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.122900 -3.727504 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.122900 -2.795628 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.123000 0.369018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.123000 6.255762 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.123000 -3.574721 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.123000 -2.681041 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.123100 0.377255 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.123100 5.982218 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.123100 -3.418410 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.123100 -2.563808 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.123200 0.385122 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.123200 5.702771 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.123200 -3.258726 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.123200 -2.444045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.123300 0.392609 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.123300 5.417695 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.123300 -3.095826 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.123300 -2.321869 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.123400 0.399715 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.123400 5.127273 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.123400 -2.929870 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.123400 -2.197403 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.123500 0.406418 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.123500 4.831790 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.123500 -2.761023 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.123500 -2.070767 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.123600 0.412720 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.123600 4.531539 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.123600 -2.589451 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.123600 -1.942088 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.123700 0.418612 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.123700 4.226818 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.123700 -2.415324 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.123700 -1.811493 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.123800 0.424096 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.123800 3.917925 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.123800 -2.238814 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.123800 -1.679111 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.123900 0.429162 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.123900 3.605166 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.123900 -2.060095 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.123900 -1.545071 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.124000 0.433801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.124000 3.288849 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.124000 -1.879343 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.124000 -1.409507 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.124100 0.438018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.124100 2.969287 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.124100 -1.696735 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.124100 -1.272552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.124200 0.441797 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.124200 2.646794 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.124200 -1.512453 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.124200 -1.134340 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.124300 0.445142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.124300 2.321688 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.124300 -1.326679 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.124300 -0.995009 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.124400 0.448054 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.124400 1.994291 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.124400 -1.139595 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.124400 -0.854696 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.124500 0.450515 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.124500 1.664925 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.124500 -0.951386 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.124500 -0.713539 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.124600 0.452532 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.124600 1.333915 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.124600 -0.762237 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.124600 -0.571678 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.124700 0.454104 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.124700 1.001589 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.124700 -0.572337 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.124700 -0.429253 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.124800 0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.124800 0.668274 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.124800 -0.381871 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.124800 -0.286403 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.124900 0.455901 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.124900 0.334302 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.124900 -0.191029 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.124900 -0.143272 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.125000 0.456129 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.125000 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.125000 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.125000 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.125100 0.455903 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.125100 -0.334305 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.125100 0.191032 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.125100 0.143274 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.125200 0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.125200 -0.668278 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.125200 0.381873 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.125200 0.286405 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.125300 0.454102 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.125300 -1.001591 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.125300 0.572338 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.125300 0.429253 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.125400 0.452531 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.125400 -1.333915 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.125400 0.762237 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.125400 0.571678 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.125500 0.450512 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.125500 -1.664924 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.125500 0.951385 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.125500 0.713539 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.125600 0.448049 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.125600 -1.994290 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.125600 1.139594 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.125600 0.854696 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.125700 0.445144 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.125700 -2.321686 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.125700 1.326678 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.125700 0.995008 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.125800 0.441801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.125800 -2.646791 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.125800 1.512452 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.125800 1.134339 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.125900 0.438014 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.125900 -2.969284 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.125900 1.696734 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.125900 1.272550 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.126000 0.433800 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.126000 -3.288845 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.126000 1.879340 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.126000 1.409505 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.126100 0.429161 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.126100 -3.605161 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.126100 2.060092 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.126100 1.545069 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.126200 0.424092 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.126200 -3.917918 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.126200 2.238810 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.126200 1.679108 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.126300 0.418611 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.126300 -4.226809 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.126300 2.415319 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.126300 1.811489 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.126400 0.412713 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.126400 -4.531528 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.126400 2.589444 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.126400 1.942083 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.126500 0.406409 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.126500 -4.831775 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.126500 2.761014 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.126500 2.070761 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.126600 0.399708 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.126600 -5.127255 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.126600 2.929860 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.126600 2.197395 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.126700 0.392610 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.126700 -5.417675 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.126700 3.095815 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.126700 2.321861 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.126800 0.385125 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.126800 -5.702749 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.126800 3.258713 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.126800 2.444035 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.126900 0.377251 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.126900 -5.982194 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.126900 3.418396 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.126900 2.563797 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.127000 0.369011 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.127000 -6.255735 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.127000 3.574706 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.127000 2.681029 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.127100 0.360408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.127100 -6.523102 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.127100 3.727487 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.127100 2.795615 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.127200 0.351451 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.127200 -6.784031 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.127200 3.876589 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.127200 2.907442 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.127300 0.342142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.127300 -7.038265 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.127300 4.021865 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.127300 3.016399 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.127400 0.332498 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.127400 -7.285552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.127400 4.163173 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.127400 3.122380 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.127500 0.322526 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.127500 -7.525650 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.127500 4.300371 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.127500 3.225278 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.127600 0.312237 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.127600 -7.758320 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.127600 4.433326 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.127600 3.324994 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.127700 0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.127700 -7.983333 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.127700 4.561904 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.127700 3.421428 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.127800 0.290742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.127800 -8.200467 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.127800 4.685981 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.127800 3.514486 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.127900 0.279557 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.127900 -8.409509 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.127900 4.805434 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.127900 3.604075 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.128000 0.268113 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.128000 -8.610251 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.128000 4.920144 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.128000 3.690108 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.128100 0.256386 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.128100 -8.802497 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.128100 5.029998 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.128100 3.772499 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.128200 0.244405 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.128200 -8.986056 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.128200 5.134889 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.128200 3.851167 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.128300 0.232185 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.128300 -9.160747 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.128300 5.234712 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.128300 3.926034 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.128400 0.219738 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.128400 -9.326397 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.128400 5.329370 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.128400 3.997027 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.128500 0.207073 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.128500 -9.482843 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.128500 5.418768 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.128500 4.064076 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.128600 0.194205 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.128600 -9.629931 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.128600 5.502818 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.128600 4.127113 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.128700 0.181147 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.128700 -9.767514 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.128700 5.581437 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.128700 4.186078 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.128800 0.167908 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.128800 -9.895458 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.128800 5.654548 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.128800 4.240911 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.128900 0.154502 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.128900 -10.013637 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.128900 5.722078 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.128900 4.291559 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.129000 0.140947 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.129000 -10.121933 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.129000 5.783962 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.129000 4.337971 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.129100 0.127252 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.129100 -10.220239 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.129100 5.840137 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.129100 4.380102 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.129200 0.113436 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.129200 -10.308459 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.129200 5.890548 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.129200 4.417911 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.129300 0.099497 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.129300 -10.386507 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.129300 5.935147 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.129300 4.451360 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.129400 0.085467 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.129400 -10.454304 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.129400 5.973888 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.129400 4.480416 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.129500 0.071350 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.129500 -10.511785 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.129500 6.006734 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.129500 4.505051 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.129600 0.057165 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.129600 -10.558891 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.129600 6.033652 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.129600 4.525239 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.129700 0.042923 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.129700 -10.595577 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.129700 6.054615 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.129700 4.540961 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.129800 0.028637 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.129800 -10.621806 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.129800 6.069603 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.129800 4.552203 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.129900 0.014324 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.129900 -10.637553 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.129900 6.078602 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.129900 4.558951 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.130000 -0.000003 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.130000 -10.642802 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.130000 6.081601 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.130000 4.561201 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.130100 -0.014331 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.130100 -10.637548 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.130100 6.078599 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.130100 4.558949 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.130200 -0.028644 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.130200 -10.621796 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.130200 6.069598 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.130200 4.552198 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.130300 -0.042929 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.130300 -10.595562 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.130300 6.054607 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.130300 4.540955 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.130400 -0.057171 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.130400 -10.558871 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.130400 6.033640 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.130400 4.525230 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.130500 -0.071358 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.130500 -10.511759 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.130500 6.006720 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.130500 4.505040 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.130600 -0.085474 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.130600 -10.454275 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.130600 5.973871 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.130600 4.480403 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.130700 -0.099504 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.130700 -10.386472 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.130700 5.935127 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.130700 4.451345 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.130800 -0.113438 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.130800 -10.308420 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.130800 5.890526 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.130800 4.417894 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.130900 -0.127258 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.130900 -10.220194 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.130900 5.840111 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.130900 4.380083 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.131000 -0.140960 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.131000 -10.121883 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.131000 5.783933 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.131000 4.337950 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.131100 -0.154511 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.131100 -10.013583 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.131100 5.722047 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.131100 4.291535 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.131200 -0.167914 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.131200 -9.895400 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.131200 5.654514 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.131200 4.240886 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.131300 -0.181150 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.131300 -9.767451 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.131300 5.581401 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.131300 4.186051 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.131400 -0.194212 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.131400 -9.629863 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.131400 5.502779 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.131400 4.127084 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.131500 -0.207080 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.131500 -9.482772 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.131500 5.418727 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.131500 4.064045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.131600 -0.219742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.131600 -9.326321 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.131600 5.329326 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.131600 3.996995 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.131700 -0.232189 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.131700 -9.160667 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.131700 5.234667 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.131700 3.926000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.131800 -0.244408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.131800 -8.985971 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.131800 5.134841 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.131800 3.851131 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.131900 -0.256384 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.131900 -8.802408 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.131900 5.029947 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.131900 3.772460 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.132000 -0.268110 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.132000 -8.610158 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.132000 4.920090 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.132000 3.690068 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.132100 -0.279574 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.132100 -8.409411 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.132100 4.805378 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.132100 3.604033 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.132200 -0.290760 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.132200 -8.200365 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.132200 4.685923 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.132200 3.514442 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.132300 -0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.132300 -7.983227 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.132300 4.561844 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.132300 3.421383 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.132400 -0.312242 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.132400 -7.758210 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.132400 4.433263 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.132400 3.324947 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.132500 -0.322534 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.132500 -7.525537 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.132500 4.300307 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.132500 3.225230 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.132600 -0.332503 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.132600 -7.285437 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.132600 4.163107 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.132600 3.122330 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.132700 -0.342146 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.132700 -7.038146 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.132700 4.021798 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.132700 3.016348 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.132800 -0.351452 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.132800 -6.783909 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.132800 3.876519 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.132800 2.907390 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.132900 -0.360411 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.132900 -6.522977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.132900 3.727415 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.132900 2.795561 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.133000 -0.369018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.133000 -6.255607 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.133000 3.574633 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.133000 2.680975 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.133100 -0.377255 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.133100 -5.982064 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.133100 3.418322 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.133100 2.563742 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.133200 -0.385122 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.133200 -5.702616 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.133200 3.258638 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.133200 2.443978 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.133300 -0.392609 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.133300 -5.417540 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.133300 3.095737 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.133300 2.321803 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.133400 -0.399715 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.133400 -5.127118 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.133400 2.929782 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.133400 2.197336 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.133500 -0.406418 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.133500 -4.831636 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.133500 2.760935 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.133500 2.070701 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.133600 -0.412720 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.133600 -4.531384 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.133600 2.589362 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.133600 1.942022 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.133700 -0.418612 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.133700 -4.226663 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.133700 2.415236 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.133700 1.811427 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.133800 -0.424096 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.133800 -3.917771 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.133800 2.238726 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.133800 1.679045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.133900 -0.429162 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.133900 -3.605011 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.133900 2.060007 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.133900 1.545005 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.134000 -0.433801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.134000 -3.288695 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.134000 1.879254 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.134000 1.409441 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.134100 -0.438018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.134100 -2.969132 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.134100 1.696647 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.134100 1.272485 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.134200 -0.441797 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.134200 -2.646639 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.134200 1.512365 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.134200 1.134274 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.134300 -0.445142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.134300 -2.321533 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.134300 1.326590 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.134300 0.994943 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.134400 -0.448054 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.134400 -1.994136 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.134400 1.139506 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.134400 0.854630 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.134500 -0.450515 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.134500 -1.664770 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.134500 0.951297 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.134500 0.713473 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.134600 -0.452532 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.134600 -1.333761 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.134600 0.762149 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.134600 0.571612 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.134700 -0.454104 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.134700 -1.001435 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.134700 0.572248 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.134700 0.429186 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.134800 -0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.134800 -0.668120 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.134800 0.381783 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.134800 0.286337 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.134900 -0.455901 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.134900 -0.334147 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.134900 0.190941 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.134900 0.143206 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.135000 -0.456129 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.135000 0.000156 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.135000 -0.000089 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.135000 -0.000067 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.135100 -0.455903 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.135100 0.334460 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.135100 -0.191120 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.135100 -0.143340 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.135200 -0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.135200 0.668433 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.135200 -0.381962 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.135200 -0.286471 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.135300 -0.454102 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.135300 1.001746 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.135300 -0.572426 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.135300 -0.429320 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.135400 -0.452531 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.135400 1.334070 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.135400 -0.762326 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.135400 -0.571744 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.135500 -0.450512 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.135500 1.665079 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.135500 -0.951474 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.135500 -0.713605 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.135600 -0.448049 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.135600 1.994444 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.135600 -1.139682 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.135600 -0.854762 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.135700 -0.445144 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.135700 2.321841 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.135700 -1.326766 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.135700 -0.995075 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.135800 -0.441801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.135800 2.646946 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.135800 -1.512541 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.135800 -1.134405 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.135900 -0.438014 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.135900 2.969438 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.135900 -1.696822 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.135900 -1.272616 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.136000 -0.433800 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.136000 3.289000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.136000 -1.879429 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.136000 -1.409572 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.136100 -0.429161 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.136100 3.605315 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.136100 -2.060180 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.136100 -1.545135 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.136200 -0.424092 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.136200 3.918073 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.136200 -2.238899 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.136200 -1.679174 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.136300 -0.418611 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.136300 4.226963 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.136300 -2.415408 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.136300 -1.811556 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.136400 -0.412713 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.136400 4.531683 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.136400 -2.589533 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.136400 -1.942150 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.136500 -0.406409 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.136500 4.831930 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.136500 -2.761103 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.136500 -2.070827 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.136600 -0.399708 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.136600 5.127410 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.136600 -2.929949 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.136600 -2.197461 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.136700 -0.392610 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.136700 5.417830 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.136700 -3.095903 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.136700 -2.321927 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.136800 -0.385125 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.136800 5.702903 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.136800 -3.258802 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.136800 -2.444101 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.136900 -0.377251 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.136900 5.982348 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.136900 -3.418485 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.136900 -2.563864 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.137000 -0.369011 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.137000 6.255889 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.137000 -3.574794 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.137000 -2.681095 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.137100 -0.360408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.137100 6.523256 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.137100 -3.727575 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.137100 -2.795681 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.137200 -0.351451 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.137200 6.784185 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.137200 -3.876677 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.137200 -2.907508 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.137300 -0.342142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.137300 7.038419 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.137300 -4.021954 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.137300 -3.016465 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.137400 -0.332498 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.137400 7.285707 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.137400 -4.163261 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.137400 -3.122446 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.137500 -0.322526 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.137500 7.525805 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.137500 -4.300460 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.137500 -3.225345 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.137600 -0.312237 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.137600 7.758475 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.137600 -4.433414 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.137600 -3.325061 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.137700 -0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.137700 7.983487 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.137700 -4.561993 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.137700 -3.421495 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.137800 -0.290742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.137800 8.200622 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.137800 -4.686070 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.137800 -3.514552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.137900 -0.279557 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.137900 8.409664 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.137900 -4.805522 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.137900 -3.604142 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.138000 -0.268113 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.138000 8.610406 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.138000 -4.920232 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.138000 -3.690174 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.138100 -0.256386 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.138100 8.802651 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.138100 -5.030087 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.138100 -3.772565 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.138200 -0.244405 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.138200 8.986210 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.138200 -5.134977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.138200 -3.851233 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.138300 -0.232185 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.138300 9.160902 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.138300 -5.234801 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.138300 -3.926101 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.138400 -0.219738 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.138400 9.326552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.138400 -5.329458 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.138400 -3.997094 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.138500 -0.207073 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.138500 9.482998 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.138500 -5.418856 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.138500 -4.064142 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.138600 -0.194205 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.138600 9.630086 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.138600 -5.502906 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.138600 -4.127180 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.138700 -0.181147 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.138700 9.767669 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.138700 -5.581525 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.138700 -4.186144 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.138800 -0.167908 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.138800 9.895613 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.138800 -5.654636 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.138800 -4.240977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.138900 -0.154502 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.138900 10.013792 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.138900 -5.722167 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.138900 -4.291625 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.139000 -0.140947 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.139000 10.122088 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.139000 -5.784050 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.139000 -4.338038 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.139100 -0.127252 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.139100 10.220394 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.139100 -5.840225 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.139100 -4.380169 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.139200 -0.113436 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.139200 10.308614 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.139200 -5.890636 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.139200 -4.417977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.139300 -0.099497 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.139300 10.386662 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.139300 -5.935235 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.139300 -4.451426 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.139400 -0.085467 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.139400 10.454459 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.139400 -5.973977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.139400 -4.480482 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.139500 -0.071350 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.139500 10.511939 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.139500 -6.006823 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.139500 -4.505117 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.139600 -0.057165 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.139600 10.559045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.139600 -6.033740 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.139600 -4.525305 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.139700 -0.042923 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.139700 10.595731 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.139700 -6.054704 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.139700 -4.541028 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.139800 -0.028637 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.139800 10.621961 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.139800 -6.069692 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.139800 -4.552269 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.139900 -0.014324 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.139900 10.637708 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.139900 -6.078690 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.139900 -4.559018 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.140000 0.000003 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.140000 10.642957 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.140000 -6.081690 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.140000 -4.561267 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.140100 0.014331 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.140100 10.637703 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.140100 -6.078687 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.140100 -4.559015 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.140200 0.028644 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.140200 10.621951 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.140200 -6.069686 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.140200 -4.552265 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.140300 0.042929 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.140300 10.595716 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.140300 -6.054695 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.140300 -4.541021 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.140400 0.057171 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.140400 10.559025 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.140400 -6.033729 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.140400 -4.525297 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.140500 0.071358 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.140500 10.511914 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.140500 -6.006808 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.140500 -4.505106 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.140600 0.085474 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.140600 10.454429 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.140600 -5.973960 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.140600 -4.480470 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.140700 0.099504 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.140700 10.386627 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.140700 -5.935215 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.140700 -4.451412 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.140800 0.113438 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.140800 10.308575 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.140800 -5.890614 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.140800 -4.417961 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.140900 0.127258 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.140900 10.220348 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.140900 -5.840199 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.140900 -4.380149 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.141000 0.140960 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.141000 10.122038 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.141000 -5.784022 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.141000 -4.338016 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.141100 0.154511 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.141100 10.013738 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.141100 -5.722136 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.141100 -4.291602 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.141200 0.167914 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.141200 9.895555 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.141200 -5.654603 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.141200 -4.240952 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.141300 0.181150 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.141300 9.767606 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.141300 -5.581489 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.141300 -4.186117 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.141400 0.194212 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.141400 9.630018 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.141400 -5.502867 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.141400 -4.127151 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.141500 0.207080 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.141500 9.482926 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.141500 -5.418815 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.141500 -4.064111 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.141600 0.219742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.141600 9.326476 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.141600 -5.329415 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.141600 -3.997061 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.141700 0.232189 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.141700 9.160821 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.141700 -5.234755 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.141700 -3.926066 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.141800 0.244408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.141800 8.986126 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.141800 -5.134929 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.141800 -3.851197 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.141900 0.256384 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.141900 8.802562 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.141900 -5.030036 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.141900 -3.772527 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.142000 0.268110 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.142000 8.610312 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.142000 -4.920178 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.142000 -3.690134 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.142100 0.279574 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.142100 8.409566 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.142100 -4.805466 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.142100 -3.604100 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.142200 0.290760 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.142200 8.200520 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.142200 -4.686012 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.142200 -3.514509 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.142300 0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.142300 7.983382 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.142300 -4.561932 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.142300 -3.421449 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.142400 0.312242 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.142400 7.758365 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.142400 -4.433351 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.142400 -3.325014 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.142500 0.322534 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.142500 7.525692 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.142500 -4.300395 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.142500 -3.225297 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.142600 0.332503 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.142600 7.285592 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.142600 -4.163195 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.142600 -3.122396 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.142700 0.342146 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.142700 7.038301 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.142700 -4.021886 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.142700 -3.016415 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.142800 0.351452 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.142800 6.784064 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.142800 -3.876608 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.142800 -2.907456 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.142900 0.360411 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.142900 6.523131 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.142900 -3.727504 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.142900 -2.795628 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.143000 0.369018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.143000 6.255762 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.143000 -3.574721 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.143000 -2.681041 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.143100 0.377255 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.143100 5.982218 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.143100 -3.418410 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.143100 -2.563808 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.143200 0.385122 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.143200 5.702771 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.143200 -3.258726 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.143200 -2.444045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.143300 0.392609 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.143300 5.417695 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.143300 -3.095826 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.143300 -2.321869 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.143400 0.399715 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.143400 5.127273 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.143400 -2.929870 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.143400 -2.197403 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.143500 0.406418 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.143500 4.831790 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.143500 -2.761023 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.143500 -2.070767 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.143600 0.412720 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.143600 4.531539 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.143600 -2.589451 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.143600 -1.942088 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.143700 0.418612 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.143700 4.226818 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.143700 -2.415324 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.143700 -1.811493 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.143800 0.424096 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.143800 3.917925 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.143800 -2.238814 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.143800 -1.679111 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.143900 0.429162 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.143900 3.605166 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.143900 -2.060095 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.143900 -1.545071 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.144000 0.433801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.144000 3.288849 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.144000 -1.879343 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.144000 -1.409507 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.144100 0.438018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.144100 2.969287 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.144100 -1.696735 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.144100 -1.272552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.144200 0.441797 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.144200 2.646794 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.144200 -1.512453 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.144200 -1.134340 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.144300 0.445142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.144300 2.321688 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.144300 -1.326679 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.144300 -0.995009 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.144400 0.448054 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.144400 1.994291 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.144400 -1.139595 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.144400 -0.854696 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.144500 0.450515 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.144500 1.664925 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.144500 -0.951386 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.144500 -0.713539 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.144600 0.452532 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.144600 1.333915 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.144600 -0.762237 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.144600 -0.571678 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.144700 0.454104 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.144700 1.001589 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.144700 -0.572337 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.144700 -0.429253 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.144800 0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.144800 0.668274 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.144800 -0.381871 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.144800 -0.286403 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.144900 0.455901 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.144900 0.334302 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.144900 -0.191029 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.144900 -0.143272 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.145000 0.456129 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.145000 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.145000 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.145000 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.145100 0.455903 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.145100 -0.334305 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.145100 0.191032 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.145100 0.143274 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.145200 0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.145200 -0.668278 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.145200 0.381873 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.145200 0.286405 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.145300 0.454102 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.145300 -1.001591 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.145300 0.572338 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.145300 0.429253 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.145400 0.452531 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.145400 -1.333915 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.145400 0.762237 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.145400 0.571678 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.145500 0.450512 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.145500 -1.664924 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.145500 0.951385 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.145500 0.713539 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.145600 0.448049 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.145600 -1.994290 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.145600 1.139594 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.145600 0.854696 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.145700 0.445144 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.145700 -2.321686 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.145700 1.326678 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.145700 0.995008 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.145800 0.441801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.145800 -2.646791 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.145800 1.512452 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.145800 1.134339 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.145900 0.438014 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.145900 -2.969284 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.145900 1.696734 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.145900 1.272550 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.146000 0.433800 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.146000 -3.288845 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.146000 1.879340 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.146000 1.409505 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.146100 0.429161 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.146100 -3.605161 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.146100 2.060092 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.146100 1.545069 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.146200 0.424092 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.146200 -3.917918 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.146200 2.238810 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.146200 1.679108 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.146300 0.418611 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.146300 -4.226809 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.146300 2.415319 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.146300 1.811489 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.146400 0.412713 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.146400 -4.531528 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.146400 2.589444 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.146400 1.942083 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.146500 0.406409 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.146500 -4.831775 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.146500 2.761014 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.146500 2.070761 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.146600 0.399708 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.146600 -5.127255 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.146600 2.929860 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.146600 2.197395 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.146700 0.392610 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.146700 -5.417675 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.146700 3.095815 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.146700 2.321861 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.146800 0.385125 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.146800 -5.702749 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.146800 3.258713 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.146800 2.444035 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.146900 0.377251 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.146900 -5.982194 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.146900 3.418396 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.146900 2.563797 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.147000 0.369011 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.147000 -6.255735 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.147000 3.574706 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.147000 2.681029 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.147100 0.360408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.147100 -6.523102 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.147100 3.727487 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.147100 2.795615 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.147200 0.351451 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.147200 -6.784031 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.147200 3.876589 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.147200 2.907442 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.147300 0.342142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.147300 -7.038265 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.147300 4.021865 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.147300 3.016399 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.147400 0.332498 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.147400 -7.285552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.147400 4.163173 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.147400 3.122380 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.147500 0.322526 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.147500 -7.525650 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.147500 4.300371 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.147500 3.225278 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.147600 0.312237 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.147600 -7.758320 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.147600 4.433326 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.147600 3.324994 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.147700 0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.147700 -7.983333 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.147700 4.561904 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.147700 3.421428 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.147800 0.290742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.147800 -8.200467 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.147800 4.685981 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.147800 3.514486 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.147900 0.279557 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.147900 -8.409509 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.147900 4.805434 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.147900 3.604075 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.148000 0.268113 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.148000 -8.610251 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.148000 4.920144 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.148000 3.690108 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.148100 0.256386 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.148100 -8.802497 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.148100 5.029998 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.148100 3.772499 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.148200 0.244405 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.148200 -8.986056 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.148200 5.134889 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.148200 3.851167 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.148300 0.232185 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.148300 -9.160747 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.148300 5.234712 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.148300 3.926034 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.148400 0.219738 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.148400 -9.326397 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.148400 5.329370 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.148400 3.997027 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.148500 0.207073 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.148500 -9.482843 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.148500 5.418768 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.148500 4.064076 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.148600 0.194205 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.148600 -9.629931 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.148600 5.502818 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.148600 4.127113 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.148700 0.181147 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.148700 -9.767514 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.148700 5.581437 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.148700 4.186078 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.148800 0.167908 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.148800 -9.895458 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.148800 5.654548 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.148800 4.240911 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.148900 0.154502 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.148900 -10.013637 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.148900 5.722078 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.148900 4.291559 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.149000 0.140947 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.149000 -10.121933 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.149000 5.783962 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.149000 4.337971 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.149100 0.127252 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.149100 -10.220239 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.149100 5.840137 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.149100 4.380102 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.149200 0.113436 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.149200 -10.308459 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.149200 5.890548 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.149200 4.417911 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.149300 0.099497 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.149300 -10.386507 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.149300 5.935147 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.149300 4.451360 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.149400 0.085467 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.149400 -10.454304 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.149400 5.973888 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.149400 4.480416 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.149500 0.071350 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.149500 -10.511785 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.149500 6.006734 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.149500 4.505051 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.149600 0.057165 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.149600 -10.558891 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.149600 6.033652 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.149600 4.525239 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.149700 0.042923 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.149700 -10.595577 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.149700 6.054615 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.149700 4.540961 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.149800 0.028637 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.149800 -10.621806 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.149800 6.069603 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.149800 4.552203 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.149900 0.014324 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.149900 -10.637553 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.149900 6.078602 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.149900 4.558951 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.150000 -0.000003 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.150000 -10.642802 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.150000 6.081601 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.150000 4.561201 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.150100 -0.014331 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.150100 -10.637548 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.150100 6.078599 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.150100 4.558949 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.150200 -0.028644 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.150200 -10.621796 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.150200 6.069598 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.150200 4.552198 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.150300 -0.042929 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.150300 -10.595562 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.150300 6.054607 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.150300 4.540955 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.150400 -0.057171 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.150400 -10.558871 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.150400 6.033640 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.150400 4.525230 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.150500 -0.071358 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.150500 -10.511759 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.150500 6.006720 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.150500 4.505040 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.150600 -0.085474 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.150600 -10.454275 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.150600 5.973871 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.150600 4.480403 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.150700 -0.099504 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.150700 -10.386472 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.150700 5.935127 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.150700 4.451345 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.150800 -0.113438 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.150800 -10.308420 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.150800 5.890526 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.150800 4.417894 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.150900 -0.127258 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.150900 -10.220194 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.150900 5.840111 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.150900 4.380083 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.151000 -0.140960 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.151000 -10.121883 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.151000 5.783933 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.151000 4.337950 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.151100 -0.154511 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.151100 -10.013583 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.151100 5.722047 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.151100 4.291535 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.151200 -0.167914 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.151200 -9.895400 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.151200 5.654514 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.151200 4.240886 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.151300 -0.181150 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.151300 -9.767451 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.151300 5.581401 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.151300 4.186051 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.151400 -0.194212 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.151400 -9.629863 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.151400 5.502779 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.151400 4.127084 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.151500 -0.207080 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.151500 -9.482772 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.151500 5.418727 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.151500 4.064045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.151600 -0.219742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.151600 -9.326321 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.151600 5.329326 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.151600 3.996995 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.151700 -0.232189 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.151700 -9.160667 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.151700 5.234667 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.151700 3.926000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.151800 -0.244408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.151800 -8.985971 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.151800 5.134841 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.151800 3.851131 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.151900 -0.256384 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.151900 -8.802408 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.151900 5.029947 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.151900 3.772460 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.152000 -0.268110 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.152000 -8.610158 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.152000 4.920090 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.152000 3.690068 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.152100 -0.279574 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.152100 -8.409411 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.152100 4.805378 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.152100 3.604033 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.152200 -0.290760 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.152200 -8.200365 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.152200 4.685923 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.152200 3.514442 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.152300 -0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.152300 -7.983227 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.152300 4.561844 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.152300 3.421383 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.152400 -0.312242 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.152400 -7.758210 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.152400 4.433263 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.152400 3.324947 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.152500 -0.322534 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.152500 -7.525537 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.152500 4.300307 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.152500 3.225230 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.152600 -0.332503 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.152600 -7.285437 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.152600 4.163107 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.152600 3.122330 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.152700 -0.342146 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.152700 -7.038146 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.152700 4.021798 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.152700 3.016348 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.152800 -0.351452 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.152800 -6.783909 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.152800 3.876519 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.152800 2.907390 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.152900 -0.360411 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.152900 -6.522977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.152900 3.727415 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.152900 2.795561 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.153000 -0.369018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.153000 -6.255607 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.153000 3.574633 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.153000 2.680975 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.153100 -0.377255 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.153100 -5.982064 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.153100 3.418322 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.153100 2.563742 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.153200 -0.385122 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.153200 -5.702616 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.153200 3.258638 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.153200 2.443978 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.153300 -0.392609 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.153300 -5.417540 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.153300 3.095737 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.153300 2.321803 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.153400 -0.399715 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.153400 -5.127118 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.153400 2.929782 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.153400 2.197336 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.153500 -0.406418 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.153500 -4.831636 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.153500 2.760935 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.153500 2.070701 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.153600 -0.412720 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.153600 -4.531384 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.153600 2.589362 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.153600 1.942022 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.153700 -0.418612 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.153700 -4.226663 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.153700 2.415236 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.153700 1.811427 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.153800 -0.424096 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.153800 -3.917771 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.153800 2.238726 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.153800 1.679045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.153900 -0.429162 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.153900 -3.605011 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.153900 2.060007 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.153900 1.545005 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.154000 -0.433801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.154000 -3.288695 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.154000 1.879254 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.154000 1.409441 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.154100 -0.438018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.154100 -2.969132 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.154100 1.696647 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.154100 1.272485 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.154200 -0.441797 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.154200 -2.646639 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.154200 1.512365 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.154200 1.134274 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.154300 -0.445142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.154300 -2.321533 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.154300 1.326590 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.154300 0.994943 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.154400 -0.448054 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.154400 -1.994136 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.154400 1.139506 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.154400 0.854630 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.154500 -0.450515 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.154500 -1.664770 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.154500 0.951297 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.154500 0.713473 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.154600 -0.452532 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.154600 -1.333761 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.154600 0.762149 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.154600 0.571612 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.154700 -0.454104 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.154700 -1.001435 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.154700 0.572248 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.154700 0.429186 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.154800 -0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.154800 -0.668120 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.154800 0.381783 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.154800 0.286337 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.154900 -0.455901 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.154900 -0.334147 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.154900 0.190941 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.154900 0.143206 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.155000 -0.456129 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.155000 0.000156 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.155000 -0.000089 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.155000 -0.000067 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.155100 -0.455903 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.155100 0.334460 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.155100 -0.191120 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.155100 -0.143340 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.155200 -0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.155200 0.668433 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.155200 -0.381962 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.155200 -0.286471 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.155300 -0.454102 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.155300 1.001746 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.155300 -0.572426 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.155300 -0.429320 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.155400 -0.452531 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.155400 1.334070 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.155400 -0.762326 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.155400 -0.571744 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.155500 -0.450512 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.155500 1.665079 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.155500 -0.951474 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.155500 -0.713605 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.155600 -0.448049 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.155600 1.994444 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.155600 -1.139682 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.155600 -0.854762 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.155700 -0.445144 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.155700 2.321841 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.155700 -1.326766 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.155700 -0.995075 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.155800 -0.441801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.155800 2.646946 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.155800 -1.512541 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.155800 -1.134405 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.155900 -0.438014 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.155900 2.969438 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.155900 -1.696822 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.155900 -1.272616 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.156000 -0.433800 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.156000 3.289000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.156000 -1.879429 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.156000 -1.409572 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.156100 -0.429161 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.156100 3.605315 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.156100 -2.060180 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.156100 -1.545135 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.156200 -0.424092 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.156200 3.918073 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.156200 -2.238899 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.156200 -1.679174 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.156300 -0.418611 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.156300 4.226963 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.156300 -2.415408 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.156300 -1.811556 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.156400 -0.412713 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.156400 4.531683 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.156400 -2.589533 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.156400 -1.942150 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.156500 -0.406409 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.156500 4.831930 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.156500 -2.761103 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.156500 -2.070827 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.156600 -0.399708 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.156600 5.127410 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.156600 -2.929949 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.156600 -2.197461 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.156700 -0.392610 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.156700 5.417830 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.156700 -3.095903 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.156700 -2.321927 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.156800 -0.385125 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.156800 5.702903 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.156800 -3.258802 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.156800 -2.444101 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.156900 -0.377251 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.156900 5.982348 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.156900 -3.418485 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.156900 -2.563864 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.157000 -0.369011 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.157000 6.255889 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.157000 -3.574794 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.157000 -2.681095 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.157100 -0.360408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.157100 6.523256 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.157100 -3.727575 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.157100 -2.795681 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.157200 -0.351451 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.157200 6.784185 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.157200 -3.876677 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.157200 -2.907508 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.157300 -0.342142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.157300 7.038419 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.157300 -4.021954 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.157300 -3.016465 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.157400 -0.332498 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.157400 7.285707 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.157400 -4.163261 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.157400 -3.122446 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.157500 -0.322526 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.157500 7.525805 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.157500 -4.300460 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.157500 -3.225345 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.157600 -0.312237 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.157600 7.758475 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.157600 -4.433414 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.157600 -3.325061 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.157700 -0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.157700 7.983487 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.157700 -4.561993 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.157700 -3.421495 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.157800 -0.290742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.157800 8.200622 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.157800 -4.686070 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.157800 -3.514552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.157900 -0.279557 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.157900 8.409664 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.157900 -4.805522 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.157900 -3.604142 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.158000 -0.268113 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.158000 8.610406 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.158000 -4.920232 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.158000 -3.690174 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.158100 -0.256386 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.158100 8.802651 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.158100 -5.030087 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.158100 -3.772565 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.158200 -0.244405 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.158200 8.986210 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.158200 -5.134977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.158200 -3.851233 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.158300 -0.232185 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.158300 9.160902 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.158300 -5.234801 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.158300 -3.926101 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.158400 -0.219738 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.158400 9.326552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.158400 -5.329458 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.158400 -3.997094 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.158500 -0.207073 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.158500 9.482998 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.158500 -5.418856 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.158500 -4.064142 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.158600 -0.194205 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.158600 9.630086 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.158600 -5.502906 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.158600 -4.127180 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.158700 -0.181147 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.158700 9.767669 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.158700 -5.581525 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.158700 -4.186144 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.158800 -0.167908 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.158800 9.895613 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.158800 -5.654636 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.158800 -4.240977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.158900 -0.154502 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.158900 10.013792 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.158900 -5.722167 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.158900 -4.291625 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.159000 -0.140947 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.159000 10.122088 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.159000 -5.784050 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.159000 -4.338038 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.159100 -0.127252 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.159100 10.220394 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.159100 -5.840225 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.159100 -4.380169 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.159200 -0.113436 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.159200 10.308614 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.159200 -5.890636 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.159200 -4.417977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.159300 -0.099497 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.159300 10.386662 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.159300 -5.935235 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.159300 -4.451426 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.159400 -0.085467 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.159400 10.454459 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.159400 -5.973977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.159400 -4.480482 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.159500 -0.071350 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.159500 10.511939 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.159500 -6.006823 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.159500 -4.505117 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.159600 -0.057165 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.159600 10.559045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.159600 -6.033740 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.159600 -4.525305 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.159700 -0.042923 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.159700 10.595731 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.159700 -6.054704 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.159700 -4.541028 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.159800 -0.028637 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.159800 10.621961 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.159800 -6.069692 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.159800 -4.552269 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.159900 -0.014324 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.159900 10.637708 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.159900 -6.078690 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.159900 -4.559018 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.160000 0.000003 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.160000 10.642957 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.160000 -6.081690 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.160000 -4.561267 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.160100 0.014331 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.160100 10.637703 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.160100 -6.078687 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.160100 -4.559015 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.160200 0.028644 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.160200 10.621951 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.160200 -6.069686 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.160200 -4.552265 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.160300 0.042929 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.160300 10.595716 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.160300 -6.054695 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.160300 -4.541021 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.160400 0.057171 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.160400 10.559025 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.160400 -6.033729 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.160400 -4.525297 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.160500 0.071358 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.160500 10.511914 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.160500 -6.006808 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.160500 -4.505106 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.160600 0.085474 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.160600 10.454429 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.160600 -5.973960 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.160600 -4.480470 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.160700 0.099504 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.160700 10.386627 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.160700 -5.935215 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.160700 -4.451412 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.160800 0.113438 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.160800 10.308575 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.160800 -5.890614 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.160800 -4.417961 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.160900 0.127258 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.160900 10.220348 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.160900 -5.840199 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.160900 -4.380149 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.161000 0.140960 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.161000 10.122038 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.161000 -5.784022 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.161000 -4.338016 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.161100 0.154511 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.161100 10.013738 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.161100 -5.722136 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.161100 -4.291602 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.161200 0.167914 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.161200 9.895555 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.161200 -5.654603 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.161200 -4.240952 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.161300 0.181150 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.161300 9.767606 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.161300 -5.581489 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.161300 -4.186117 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.161400 0.194212 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.161400 9.630018 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.161400 -5.502867 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.161400 -4.127151 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.161500 0.207080 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.161500 9.482926 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.161500 -5.418815 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.161500 -4.064111 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.161600 0.219742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.161600 9.326476 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.161600 -5.329415 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.161600 -3.997061 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.161700 0.232189 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.161700 9.160821 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.161700 -5.234755 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.161700 -3.926066 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.161800 0.244408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.161800 8.986126 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.161800 -5.134929 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.161800 -3.851197 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.161900 0.256384 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.161900 8.802562 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.161900 -5.030036 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.161900 -3.772527 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.162000 0.268110 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.162000 8.610312 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.162000 -4.920178 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.162000 -3.690134 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.162100 0.279574 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.162100 8.409566 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.162100 -4.805466 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.162100 -3.604100 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.162200 0.290760 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.162200 8.200520 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.162200 -4.686011 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.162200 -3.514509 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.162300 0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.162300 7.983382 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.162300 -4.561932 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.162300 -3.421449 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.162400 0.312242 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.162400 7.758365 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.162400 -4.433351 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.162400 -3.325014 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.162500 0.322534 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.162500 7.525692 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.162500 -4.300395 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.162500 -3.225297 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.162600 0.332503 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.162600 7.285592 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.162600 -4.163195 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.162600 -3.122396 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.162700 0.342146 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.162700 7.038301 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.162700 -4.021886 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.162700 -3.016415 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.162800 0.351452 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.162800 6.784064 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.162800 -3.876608 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.162800 -2.907456 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.162900 0.360411 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.162900 6.523131 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.162900 -3.727504 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.162900 -2.795628 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.163000 0.369018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.163000 6.255762 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.163000 -3.574721 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.163000 -2.681041 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.163100 0.377255 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.163100 5.982218 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.163100 -3.418410 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.163100 -2.563808 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.163200 0.385122 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.163200 5.702771 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.163200 -3.258726 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.163200 -2.444045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.163300 0.392609 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.163300 5.417695 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.163300 -3.095826 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.163300 -2.321869 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.163400 0.399715 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.163400 5.127273 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.163400 -2.929870 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.163400 -2.197403 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.163500 0.406418 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.163500 4.831790 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.163500 -2.761023 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.163500 -2.070767 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.163600 0.412720 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.163600 4.531539 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.163600 -2.589451 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.163600 -1.942088 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.163700 0.418612 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.163700 4.226818 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.163700 -2.415324 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.163700 -1.811493 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.163800 0.424096 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.163800 3.917925 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.163800 -2.238814 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.163800 -1.679111 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.163900 0.429162 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.163900 3.605166 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.163900 -2.060095 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.163900 -1.545071 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.164000 0.433801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.164000 3.288849 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.164000 -1.879343 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.164000 -1.409507 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.164100 0.438018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.164100 2.969287 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.164100 -1.696735 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.164100 -1.272552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.164200 0.441797 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.164200 2.646794 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.164200 -1.512453 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.164200 -1.134340 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.164300 0.445142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.164300 2.321688 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.164300 -1.326679 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.164300 -0.995009 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.164400 0.448054 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.164400 1.994291 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.164400 -1.139595 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.164400 -0.854696 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.164500 0.450515 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.164500 1.664925 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.164500 -0.951386 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.164500 -0.713539 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.164600 0.452532 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.164600 1.333915 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.164600 -0.762237 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.164600 -0.571678 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.164700 0.454104 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.164700 1.001589 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.164700 -0.572337 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.164700 -0.429253 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.164800 0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.164800 0.668274 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.164800 -0.381871 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.164800 -0.286403 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.164900 0.455901 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.164900 0.334302 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.164900 -0.191029 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.164900 -0.143272 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.165000 0.456129 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.165000 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.165000 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.165000 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.165100 0.455903 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.165100 -0.334305 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.165100 0.191032 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.165100 0.143274 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.165200 0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.165200 -0.668278 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.165200 0.381873 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.165200 0.286405 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.165300 0.454102 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.165300 -1.001591 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.165300 0.572338 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.165300 0.429253 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.165400 0.452531 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.165400 -1.333915 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.165400 0.762237 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.165400 0.571678 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.165500 0.450512 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.165500 -1.664924 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.165500 0.951385 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.165500 0.713539 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.165600 0.448049 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.165600 -1.994290 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.165600 1.139594 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.165600 0.854696 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.165700 0.445144 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.165700 -2.321686 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.165700 1.326678 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.165700 0.995008 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.165800 0.441801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.165800 -2.646791 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.165800 1.512452 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.165800 1.134339 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.165900 0.438014 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.165900 -2.969284 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.165900 1.696734 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.165900 1.272550 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.166000 0.433800 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.166000 -3.288845 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.166000 1.879340 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.166000 1.409505 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.166100 0.429161 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.166100 -3.605161 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.166100 2.060092 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.166100 1.545069 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.166200 0.424092 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.166200 -3.917918 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.166200 2.238810 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.166200 1.679108 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.166300 0.418611 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.166300 -4.226809 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.166300 2.415319 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.166300 1.811489 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.166400 0.412713 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.166400 -4.531528 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.166400 2.589444 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.166400 1.942083 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.166500 0.406409 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.166500 -4.831775 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.166500 2.761014 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.166500 2.070761 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.166600 0.399708 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.166600 -5.127255 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.166600 2.929860 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.166600 2.197395 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.166700 0.392610 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.166700 -5.417675 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.166700 3.095815 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.166700 2.321861 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.166800 0.385125 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.166800 -5.702749 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.166800 3.258713 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.166800 2.444035 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.166900 0.377251 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.166900 -5.982194 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.166900 3.418396 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.166900 2.563797 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.167000 0.369011 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.167000 -6.255735 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.167000 3.574706 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.167000 2.681029 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.167100 0.360408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.167100 -6.523102 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.167100 3.727487 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.167100 2.795615 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.167200 0.351451 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.167200 -6.784031 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.167200 3.876589 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.167200 2.907442 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.167300 0.342142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.167300 -7.038265 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.167300 4.021865 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.167300 3.016399 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.167400 0.332498 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.167400 -7.285552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.167400 4.163173 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.167400 3.122380 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.167500 0.322526 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.167500 -7.525650 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.167500 4.300371 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.167500 3.225278 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.167600 0.312237 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.167600 -7.758320 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.167600 4.433326 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.167600 3.324994 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.167700 0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.167700 -7.983333 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.167700 4.561904 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.167700 3.421428 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.167800 0.290742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.167800 -8.200467 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.167800 4.685981 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.167800 3.514486 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.167900 0.279557 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.167900 -8.409509 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.167900 4.805434 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.167900 3.604075 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.168000 0.268113 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.168000 -8.610251 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.168000 4.920144 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.168000 3.690108 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.168100 0.256386 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.168100 -8.802497 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.168100 5.029998 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.168100 3.772499 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.168200 0.244405 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.168200 -8.986056 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.168200 5.134889 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.168200 3.851167 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.168300 0.232185 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.168300 -9.160747 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.168300 5.234712 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.168300 3.926034 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.168400 0.219738 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.168400 -9.326397 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.168400 5.329370 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.168400 3.997027 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.168500 0.207073 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.168500 -9.482843 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.168500 5.418768 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.168500 4.064076 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.168600 0.194205 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.168600 -9.629931 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.168600 5.502818 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.168600 4.127113 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.168700 0.181147 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.168700 -9.767514 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.168700 5.581437 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.168700 4.186078 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.168800 0.167908 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.168800 -9.895458 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.168800 5.654548 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.168800 4.240911 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.168900 0.154502 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.168900 -10.013637 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.168900 5.722078 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.168900 4.291559 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.169000 0.140947 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.169000 -10.121933 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.169000 5.783962 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.169000 4.337971 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.169100 0.127252 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.169100 -10.220239 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.169100 5.840137 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.169100 4.380102 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.169200 0.113436 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.169200 -10.308459 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.169200 5.890548 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.169200 4.417911 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.169300 0.099497 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.169300 -10.386507 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.169300 5.935147 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.169300 4.451360 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.169400 0.085467 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.169400 -10.454304 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.169400 5.973888 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.169400 4.480416 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.169500 0.071350 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.169500 -10.511785 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.169500 6.006734 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.169500 4.505051 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.169600 0.057165 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.169600 -10.558891 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.169600 6.033652 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.169600 4.525239 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.169700 0.042923 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.169700 -10.595577 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.169700 6.054615 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.169700 4.540961 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.169800 0.028637 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.169800 -10.621806 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.169800 6.069603 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.169800 4.552203 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.169900 0.014324 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.169900 -10.637553 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.169900 6.078602 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.169900 4.558951 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.170000 -0.000003 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.170000 -10.642802 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.170000 6.081601 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.170000 4.561201 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.170100 -0.014331 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.170100 -10.637548 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.170100 6.078599 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.170100 4.558949 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.170200 -0.028644 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.170200 -10.621796 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.170200 6.069598 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.170200 4.552198 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.170300 -0.042929 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.170300 -10.595562 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.170300 6.054607 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.170300 4.540955 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.170400 -0.057171 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.170400 -10.558871 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.170400 6.033640 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.170400 4.525230 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.170500 -0.071358 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.170500 -10.511759 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.170500 6.006720 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.170500 4.505040 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.170600 -0.085474 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.170600 -10.454275 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.170600 5.973871 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.170600 4.480403 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.170700 -0.099504 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.170700 -10.386472 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.170700 5.935127 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.170700 4.451345 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.170800 -0.113438 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.170800 -10.308420 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.170800 5.890526 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.170800 4.417894 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.170900 -0.127258 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.170900 -10.220194 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.170900 5.840111 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.170900 4.380083 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.171000 -0.140960 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.171000 -10.121883 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.171000 5.783933 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.171000 4.337950 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.171100 -0.154511 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.171100 -10.013583 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.171100 5.722047 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.171100 4.291535 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.171200 -0.167914 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.171200 -9.895400 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.171200 5.654514 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.171200 4.240886 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.171300 -0.181150 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.171300 -9.767451 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.171300 5.581401 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.171300 4.186051 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.171400 -0.194212 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.171400 -9.629863 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.171400 5.502779 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.171400 4.127084 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.171500 -0.207080 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.171500 -9.482772 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.171500 5.418727 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.171500 4.064045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.171600 -0.219742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.171600 -9.326321 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.171600 5.329326 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.171600 3.996995 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.171700 -0.232189 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.171700 -9.160667 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.171700 5.234667 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.171700 3.926000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.171800 -0.244408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.171800 -8.985971 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.171800 5.134841 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.171800 3.851131 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.171900 -0.256384 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.171900 -8.802408 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.171900 5.029947 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.171900 3.772460 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.172000 -0.268110 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.172000 -8.610158 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.172000 4.920090 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.172000 3.690068 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.172100 -0.279574 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.172100 -8.409411 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.172100 4.805378 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.172100 3.604033 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.172200 -0.290760 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.172200 -8.200365 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.172200 4.685923 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.172200 3.514442 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.172300 -0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.172300 -7.983227 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.172300 4.561844 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.172300 3.421383 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.172400 -0.312242 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.172400 -7.758210 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.172400 4.433263 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.172400 3.324947 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.172500 -0.322534 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.172500 -7.525537 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.172500 4.300307 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.172500 3.225230 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.172600 -0.332503 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.172600 -7.285437 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.172600 4.163107 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.172600 3.122330 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.172700 -0.342146 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.172700 -7.038146 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.172700 4.021798 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.172700 3.016348 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.172800 -0.351452 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.172800 -6.783909 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.172800 3.876519 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.172800 2.907390 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.172900 -0.360411 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.172900 -6.522977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.172900 3.727415 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.172900 2.795561 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.173000 -0.369018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.173000 -6.255607 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.173000 3.574633 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.173000 2.680975 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.173100 -0.377255 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.173100 -5.982064 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.173100 3.418322 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.173100 2.563742 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.173200 -0.385122 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.173200 -5.702616 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.173200 3.258638 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.173200 2.443978 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.173300 -0.392609 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.173300 -5.417540 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.173300 3.095737 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.173300 2.321803 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.173400 -0.399715 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.173400 -5.127118 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.173400 2.929782 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.173400 2.197336 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.173500 -0.406418 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.173500 -4.831636 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.173500 2.760935 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.173500 2.070701 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.173600 -0.412720 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.173600 -4.531384 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.173600 2.589362 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.173600 1.942022 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.173700 -0.418612 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.173700 -4.226663 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.173700 2.415236 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.173700 1.811427 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.173800 -0.424096 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.173800 -3.917771 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.173800 2.238726 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.173800 1.679045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.173900 -0.429162 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.173900 -3.605011 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.173900 2.060007 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.173900 1.545005 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.174000 -0.433801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.174000 -3.288695 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.174000 1.879254 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.174000 1.409441 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.174100 -0.438018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.174100 -2.969132 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.174100 1.696647 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.174100 1.272485 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.174200 -0.441797 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.174200 -2.646639 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.174200 1.512365 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.174200 1.134274 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.174300 -0.445142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.174300 -2.321533 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.174300 1.326590 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.174300 0.994943 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.174400 -0.448054 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.174400 -1.994136 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.174400 1.139506 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.174400 0.854630 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.174500 -0.450515 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.174500 -1.664770 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.174500 0.951297 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.174500 0.713473 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.174600 -0.452532 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.174600 -1.333761 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.174600 0.762149 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.174600 0.571612 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.174700 -0.454104 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.174700 -1.001435 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.174700 0.572248 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.174700 0.429186 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.174800 -0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.174800 -0.668120 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.174800 0.381783 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.174800 0.286337 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.174900 -0.455901 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.174900 -0.334147 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.174900 0.190941 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.174900 0.143206 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.175000 -0.456129 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.175000 0.000156 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.175000 -0.000089 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.175000 -0.000067 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.175100 -0.455903 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.175100 0.334460 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.175100 -0.191120 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.175100 -0.143340 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.175200 -0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.175200 0.668433 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.175200 -0.381962 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.175200 -0.286471 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.175300 -0.454102 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.175300 1.001746 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.175300 -0.572426 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.175300 -0.429320 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.175400 -0.452531 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.175400 1.334070 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.175400 -0.762326 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.175400 -0.571744 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.175500 -0.450512 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.175500 1.665079 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.175500 -0.951474 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.175500 -0.713605 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.175600 -0.448049 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.175600 1.994444 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.175600 -1.139682 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.175600 -0.854762 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.175700 -0.445144 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.175700 2.321841 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.175700 -1.326766 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.175700 -0.995075 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.175800 -0.441801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.175800 2.646946 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.175800 -1.512541 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.175800 -1.134405 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.175900 -0.438014 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.175900 2.969438 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.175900 -1.696822 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.175900 -1.272616 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.176000 -0.433800 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.176000 3.289000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.176000 -1.879429 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.176000 -1.409572 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.176100 -0.429161 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.176100 3.605315 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.176100 -2.060180 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.176100 -1.545135 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.176200 -0.424092 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.176200 3.918073 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.176200 -2.238899 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.176200 -1.679174 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.176300 -0.418611 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.176300 4.226963 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.176300 -2.415408 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.176300 -1.811556 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.176400 -0.412713 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.176400 4.531683 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.176400 -2.589533 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.176400 -1.942150 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.176500 -0.406409 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.176500 4.831930 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.176500 -2.761103 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.176500 -2.070827 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.176600 -0.399708 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.176600 5.127410 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.176600 -2.929949 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.176600 -2.197461 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.176700 -0.392610 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.176700 5.417830 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.176700 -3.095903 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.176700 -2.321927 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.176800 -0.385125 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.176800 5.702903 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.176800 -3.258802 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.176800 -2.444101 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.176900 -0.377251 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.176900 5.982348 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.176900 -3.418485 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.176900 -2.563864 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.177000 -0.369011 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.177000 6.255889 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.177000 -3.574794 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.177000 -2.681095 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.177100 -0.360408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.177100 6.523256 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.177100 -3.727575 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.177100 -2.795681 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.177200 -0.351451 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.177200 6.784185 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.177200 -3.876677 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.177200 -2.907508 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.177300 -0.342142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.177300 7.038419 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.177300 -4.021954 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.177300 -3.016465 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.177400 -0.332498 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.177400 7.285707 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.177400 -4.163261 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.177400 -3.122446 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.177500 -0.322526 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.177500 7.525805 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.177500 -4.300460 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.177500 -3.225345 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.177600 -0.312237 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.177600 7.758475 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.177600 -4.433414 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.177600 -3.325061 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.177700 -0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.177700 7.983487 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.177700 -4.561993 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.177700 -3.421495 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.177800 -0.290742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.177800 8.200622 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.177800 -4.686070 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.177800 -3.514552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.177900 -0.279557 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.177900 8.409664 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.177900 -4.805522 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.177900 -3.604142 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.178000 -0.268113 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.178000 8.610406 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.178000 -4.920232 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.178000 -3.690174 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.178100 -0.256386 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.178100 8.802651 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.178100 -5.030087 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.178100 -3.772565 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.178200 -0.244405 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.178200 8.986210 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.178200 -5.134977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.178200 -3.851233 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.178300 -0.232185 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.178300 9.160902 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.178300 -5.234801 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.178300 -3.926101 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.178400 -0.219738 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.178400 9.326552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.178400 -5.329458 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.178400 -3.997094 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.178500 -0.207073 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.178500 9.482998 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.178500 -5.418856 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.178500 -4.064142 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.178600 -0.194205 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.178600 9.630086 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.178600 -5.502906 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.178600 -4.127180 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.178700 -0.181147 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.178700 9.767669 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.178700 -5.581525 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.178700 -4.186144 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.178800 -0.167908 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.178800 9.895613 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.178800 -5.654636 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.178800 -4.240977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.178900 -0.154502 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.178900 10.013792 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.178900 -5.722167 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.178900 -4.291625 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.179000 -0.140947 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.179000 10.122088 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.179000 -5.784050 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.179000 -4.338038 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.179100 -0.127252 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.179100 10.220394 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.179100 -5.840225 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.179100 -4.380169 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.179200 -0.113436 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.179200 10.308614 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.179200 -5.890636 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.179200 -4.417977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.179300 -0.099497 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.179300 10.386662 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.179300 -5.935235 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.179300 -4.451426 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.179400 -0.085467 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.179400 10.454459 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.179400 -5.973977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.179400 -4.480482 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.179500 -0.071350 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.179500 10.511939 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.179500 -6.006823 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.179500 -4.505117 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.179600 -0.057165 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.179600 10.559045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.179600 -6.033740 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.179600 -4.525305 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.179700 -0.042923 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.179700 10.595731 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.179700 -6.054704 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.179700 -4.541028 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.179800 -0.028637 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.179800 10.621961 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.179800 -6.069692 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.179800 -4.552269 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.179900 -0.014324 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.179900 10.637708 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.179900 -6.078690 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.179900 -4.559018 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.180000 0.000003 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.180000 10.642957 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.180000 -6.081690 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.180000 -4.561267 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.180100 0.014331 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.180100 10.637703 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.180100 -6.078687 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.180100 -4.559015 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.180200 0.028644 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.180200 10.621951 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.180200 -6.069686 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.180200 -4.552265 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.180300 0.042929 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.180300 10.595716 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.180300 -6.054695 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.180300 -4.541021 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.180400 0.057171 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.180400 10.559025 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.180400 -6.033729 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.180400 -4.525297 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.180500 0.071358 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.180500 10.511914 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.180500 -6.006808 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.180500 -4.505106 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.180600 0.085474 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.180600 10.454429 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.180600 -5.973960 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.180600 -4.480470 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.180700 0.099504 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.180700 10.386627 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.180700 -5.935215 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.180700 -4.451412 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.180800 0.113438 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.180800 10.308575 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.180800 -5.890614 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.180800 -4.417961 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.180900 0.127258 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.180900 10.220348 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.180900 -5.840199 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.180900 -4.380149 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.181000 0.140960 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.181000 10.122038 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.181000 -5.784022 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.181000 -4.338016 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.181100 0.154511 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.181100 10.013738 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.181100 -5.722136 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.181100 -4.291602 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.181200 0.167914 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.181200 9.895555 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.181200 -5.654603 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.181200 -4.240952 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.181300 0.181150 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.181300 9.767606 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.181300 -5.581489 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.181300 -4.186117 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.181400 0.194212 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.181400 9.630018 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.181400 -5.502867 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.181400 -4.127151 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.181500 0.207080 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.181500 9.482926 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.181500 -5.418815 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.181500 -4.064111 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.181600 0.219742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.181600 9.326476 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.181600 -5.329415 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.181600 -3.997061 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.181700 0.232189 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.181700 9.160821 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.181700 -5.234755 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.181700 -3.926066 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.181800 0.244408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.181800 8.986126 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.181800 -5.134929 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.181800 -3.851197 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.181900 0.256384 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.181900 8.802562 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.181900 -5.030036 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.181900 -3.772527 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.182000 0.268110 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.182000 8.610312 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.182000 -4.920178 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.182000 -3.690134 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.182100 0.279574 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.182100 8.409566 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.182100 -4.805466 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.182100 -3.604100 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.182200 0.290760 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.182200 8.200520 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.182200 -4.686011 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.182200 -3.514509 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.182300 0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.182300 7.983382 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.182300 -4.561932 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.182300 -3.421449 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.182400 0.312242 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.182400 7.758365 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.182400 -4.433351 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.182400 -3.325014 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.182500 0.322534 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.182500 7.525692 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.182500 -4.300395 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.182500 -3.225297 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.182600 0.332503 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.182600 7.285592 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.182600 -4.163195 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.182600 -3.122396 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.182700 0.342146 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.182700 7.038301 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.182700 -4.021886 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.182700 -3.016415 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.182800 0.351452 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.182800 6.784064 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.182800 -3.876608 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.182800 -2.907456 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.182900 0.360411 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.182900 6.523131 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.182900 -3.727504 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.182900 -2.795628 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.183000 0.369018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.183000 6.255762 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.183000 -3.574721 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.183000 -2.681041 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.183100 0.377255 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.183100 5.982218 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.183100 -3.418410 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.183100 -2.563808 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.183200 0.385122 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.183200 5.702771 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.183200 -3.258726 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.183200 -2.444045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.183300 0.392609 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.183300 5.417695 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.183300 -3.095826 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.183300 -2.321869 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.183400 0.399715 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.183400 5.127273 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.183400 -2.929870 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.183400 -2.197403 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.183500 0.406418 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.183500 4.831790 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.183500 -2.761023 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.183500 -2.070767 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.183600 0.412720 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.183600 4.531539 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.183600 -2.589451 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.183600 -1.942088 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.183700 0.418612 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.183700 4.226818 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.183700 -2.415324 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.183700 -1.811493 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.183800 0.424096 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.183800 3.917925 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.183800 -2.238814 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.183800 -1.679111 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.183900 0.429162 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.183900 3.605166 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.183900 -2.060095 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.183900 -1.545071 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.184000 0.433801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.184000 3.288849 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.184000 -1.879342 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.184000 -1.409507 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.184100 0.438018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.184100 2.969287 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.184100 -1.696735 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.184100 -1.272552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.184200 0.441797 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.184200 2.646794 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.184200 -1.512453 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.184200 -1.134340 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.184300 0.445142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.184300 2.321688 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.184300 -1.326679 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.184300 -0.995009 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.184400 0.448054 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.184400 1.994291 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.184400 -1.139595 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.184400 -0.854696 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.184500 0.450515 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.184500 1.664925 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.184500 -0.951386 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.184500 -0.713539 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.184600 0.452532 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.184600 1.333915 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.184600 -0.762237 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.184600 -0.571678 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.184700 0.454104 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.184700 1.001589 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.184700 -0.572337 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.184700 -0.429253 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.184800 0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.184800 0.668274 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.184800 -0.381871 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.184800 -0.286403 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.184900 0.455901 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.184900 0.334302 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.184900 -0.191029 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.184900 -0.143272 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.185000 0.456129 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.185000 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.185000 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.185000 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.185100 0.455903 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.185100 -0.334305 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.185100 0.191032 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.185100 0.143274 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.185200 0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.185200 -0.668278 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.185200 0.381873 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.185200 0.286405 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.185300 0.454102 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.185300 -1.001591 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.185300 0.572338 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.185300 0.429253 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.185400 0.452531 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.185400 -1.333915 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.185400 0.762237 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.185400 0.571678 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.185500 0.450512 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.185500 -1.664924 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.185500 0.951385 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.185500 0.713539 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.185600 0.448049 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.185600 -1.994290 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.185600 1.139594 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.185600 0.854696 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.185700 0.445144 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.185700 -2.321686 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.185700 1.326678 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.185700 0.995008 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.185800 0.441801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.185800 -2.646791 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.185800 1.512452 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.185800 1.134339 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.185900 0.438014 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.185900 -2.969284 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.185900 1.696734 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.185900 1.272550 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.186000 0.433800 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.186000 -3.288845 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.186000 1.879340 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.186000 1.409505 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.186100 0.429161 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.186100 -3.605161 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.186100 2.060092 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.186100 1.545069 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.186200 0.424092 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.186200 -3.917918 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.186200 2.238810 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.186200 1.679108 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.186300 0.418611 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.186300 -4.226809 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.186300 2.415319 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.186300 1.811489 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.186400 0.412713 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.186400 -4.531528 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.186400 2.589444 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.186400 1.942083 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.186500 0.406409 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.186500 -4.831775 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.186500 2.761014 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.186500 2.070761 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.186600 0.399708 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.186600 -5.127255 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.186600 2.929860 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.186600 2.197395 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.186700 0.392610 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.186700 -5.417675 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.186700 3.095815 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.186700 2.321861 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.186800 0.385125 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.186800 -5.702749 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.186800 3.258713 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.186800 2.444035 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.186900 0.377251 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.186900 -5.982194 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.186900 3.418396 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.186900 2.563797 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.187000 0.369011 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.187000 -6.255735 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.187000 3.574706 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.187000 2.681029 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.187100 0.360408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.187100 -6.523102 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.187100 3.727487 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.187100 2.795615 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.187200 0.351451 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.187200 -6.784031 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.187200 3.876589 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.187200 2.907442 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.187300 0.342142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.187300 -7.038265 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.187300 4.021865 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.187300 3.016399 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.187400 0.332498 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.187400 -7.285552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.187400 4.163173 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.187400 3.122380 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.187500 0.322526 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.187500 -7.525650 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.187500 4.300371 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.187500 3.225279 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.187600 0.312237 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.187600 -7.758320 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.187600 4.433326 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.187600 3.324994 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.187700 0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.187700 -7.983333 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.187700 4.561904 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.187700 3.421428 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.187800 0.290742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.187800 -8.200467 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.187800 4.685981 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.187800 3.514486 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.187900 0.279557 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.187900 -8.409509 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.187900 4.805434 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.187900 3.604075 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.188000 0.268113 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.188000 -8.610251 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.188000 4.920144 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.188000 3.690108 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.188100 0.256386 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.188100 -8.802497 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.188100 5.029998 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.188100 3.772499 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.188200 0.244405 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.188200 -8.986056 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.188200 5.134889 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.188200 3.851167 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.188300 0.232185 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.188300 -9.160747 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.188300 5.234712 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.188300 3.926034 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.188400 0.219738 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.188400 -9.326397 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.188400 5.329370 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.188400 3.997027 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.188500 0.207073 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.188500 -9.482843 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.188500 5.418768 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.188500 4.064076 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.188600 0.194205 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.188600 -9.629931 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.188600 5.502818 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.188600 4.127113 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.188700 0.181147 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.188700 -9.767514 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.188700 5.581437 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.188700 4.186078 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.188800 0.167908 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.188800 -9.895458 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.188800 5.654548 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.188800 4.240911 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.188900 0.154502 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.188900 -10.013637 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.188900 5.722078 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.188900 4.291559 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.189000 0.140947 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.189000 -10.121933 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.189000 5.783962 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.189000 4.337971 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.189100 0.127252 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.189100 -10.220239 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.189100 5.840137 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.189100 4.380102 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.189200 0.113436 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.189200 -10.308459 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.189200 5.890548 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.189200 4.417911 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.189300 0.099497 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.189300 -10.386507 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.189300 5.935147 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.189300 4.451360 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.189400 0.085467 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.189400 -10.454304 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.189400 5.973888 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.189400 4.480416 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.189500 0.071350 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.189500 -10.511785 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.189500 6.006734 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.189500 4.505051 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.189600 0.057165 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.189600 -10.558891 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.189600 6.033652 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.189600 4.525239 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.189700 0.042923 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.189700 -10.595577 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.189700 6.054615 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.189700 4.540961 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.189800 0.028637 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.189800 -10.621806 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.189800 6.069603 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.189800 4.552203 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.189900 0.014324 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.189900 -10.637553 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.189900 6.078602 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.189900 4.558951 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.190000 -0.000003 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.190000 -10.642802 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.190000 6.081601 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.190000 4.561201 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.190100 -0.014331 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.190100 -10.637548 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.190100 6.078599 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.190100 4.558949 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.190200 -0.028644 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.190200 -10.621796 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.190200 6.069598 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.190200 4.552198 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.190300 -0.042929 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.190300 -10.595562 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.190300 6.054607 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.190300 4.540955 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.190400 -0.057171 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.190400 -10.558871 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.190400 6.033640 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.190400 4.525230 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.190500 -0.071358 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.190500 -10.511759 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.190500 6.006720 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.190500 4.505040 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.190600 -0.085474 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.190600 -10.454275 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.190600 5.973871 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.190600 4.480403 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.190700 -0.099504 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.190700 -10.386472 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.190700 5.935127 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.190700 4.451345 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.190800 -0.113438 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.190800 -10.308420 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.190800 5.890526 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.190800 4.417894 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.190900 -0.127258 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.190900 -10.220194 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.190900 5.840111 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.190900 4.380083 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.191000 -0.140960 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.191000 -10.121883 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.191000 5.783933 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.191000 4.337950 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.191100 -0.154511 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.191100 -10.013583 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.191100 5.722047 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.191100 4.291535 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.191200 -0.167914 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.191200 -9.895400 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.191200 5.654514 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.191200 4.240886 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.191300 -0.181150 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.191300 -9.767451 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.191300 5.581401 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.191300 4.186051 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.191400 -0.194212 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.191400 -9.629863 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.191400 5.502779 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.191400 4.127084 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.191500 -0.207080 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.191500 -9.482772 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.191500 5.418727 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.191500 4.064045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.191600 -0.219742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.191600 -9.326321 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.191600 5.329326 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.191600 3.996995 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.191700 -0.232189 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.191700 -9.160667 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.191700 5.234667 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.191700 3.926000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.191800 -0.244408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.191800 -8.985971 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.191800 5.134841 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.191800 3.851131 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.191900 -0.256384 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.191900 -8.802408 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.191900 5.029947 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.191900 3.772460 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.192000 -0.268110 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.192000 -8.610158 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.192000 4.920090 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.192000 3.690068 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.192100 -0.279574 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.192100 -8.409411 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.192100 4.805378 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.192100 3.604033 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.192200 -0.290760 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.192200 -8.200365 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.192200 4.685923 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.192200 3.514442 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.192300 -0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.192300 -7.983227 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.192300 4.561844 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.192300 3.421383 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.192400 -0.312242 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.192400 -7.758210 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.192400 4.433263 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.192400 3.324947 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.192500 -0.322534 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.192500 -7.525537 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.192500 4.300307 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.192500 3.225230 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.192600 -0.332503 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.192600 -7.285437 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.192600 4.163107 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.192600 3.122330 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.192700 -0.342146 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.192700 -7.038146 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.192700 4.021798 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.192700 3.016348 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.192800 -0.351452 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.192800 -6.783909 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.192800 3.876519 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.192800 2.907390 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.192900 -0.360411 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.192900 -6.522977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.192900 3.727415 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.192900 2.795561 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.193000 -0.369018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.193000 -6.255607 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.193000 3.574633 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.193000 2.680975 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.193100 -0.377255 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.193100 -5.982064 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.193100 3.418322 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.193100 2.563742 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.193200 -0.385122 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.193200 -5.702616 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.193200 3.258638 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.193200 2.443978 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.193300 -0.392609 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.193300 -5.417540 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.193300 3.095737 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.193300 2.321803 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.193400 -0.399715 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.193400 -5.127118 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.193400 2.929782 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.193400 2.197336 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.193500 -0.406418 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.193500 -4.831636 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.193500 2.760935 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.193500 2.070701 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.193600 -0.412720 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.193600 -4.531384 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.193600 2.589362 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.193600 1.942022 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.193700 -0.418612 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.193700 -4.226663 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.193700 2.415236 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.193700 1.811427 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.193800 -0.424096 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.193800 -3.917771 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.193800 2.238726 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.193800 1.679045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.193900 -0.429162 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.193900 -3.605011 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.193900 2.060007 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.193900 1.545005 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.194000 -0.433801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.194000 -3.288695 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.194000 1.879254 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.194000 1.409441 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.194100 -0.438018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.194100 -2.969132 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.194100 1.696647 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.194100 1.272485 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.194200 -0.441797 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.194200 -2.646639 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.194200 1.512365 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.194200 1.134274 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.194300 -0.445142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.194300 -2.321533 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.194300 1.326590 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.194300 0.994943 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.194400 -0.448054 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.194400 -1.994136 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.194400 1.139506 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.194400 0.854630 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.194500 -0.450515 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.194500 -1.664770 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.194500 0.951297 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.194500 0.713473 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.194600 -0.452532 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.194600 -1.333761 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.194600 0.762149 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.194600 0.571612 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.194700 -0.454104 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.194700 -1.001435 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.194700 0.572248 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.194700 0.429186 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.194800 -0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.194800 -0.668120 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.194800 0.381783 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.194800 0.286337 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.194900 -0.455901 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.194900 -0.334147 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.194900 0.190941 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.194900 0.143206 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.195000 -0.456129 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.195000 0.000156 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.195000 -0.000089 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.195000 -0.000067 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.195100 -0.455903 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.195100 0.334460 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.195100 -0.191120 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.195100 -0.143340 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.195200 -0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.195200 0.668433 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.195200 -0.381962 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.195200 -0.286471 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.195300 -0.454102 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.195300 1.001746 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.195300 -0.572426 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.195300 -0.429320 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.195400 -0.452531 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.195400 1.334070 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.195400 -0.762326 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.195400 -0.571744 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.195500 -0.450512 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.195500 1.665079 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.195500 -0.951474 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.195500 -0.713605 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.195600 -0.448049 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.195600 1.994444 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.195600 -1.139682 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.195600 -0.854762 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.195700 -0.445144 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.195700 2.321841 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.195700 -1.326766 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.195700 -0.995075 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.195800 -0.441801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.195800 2.646946 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.195800 -1.512541 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.195800 -1.134405 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.195900 -0.438014 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.195900 2.969438 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.195900 -1.696822 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.195900 -1.272616 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.196000 -0.433800 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.196000 3.289000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.196000 -1.879429 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.196000 -1.409571 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.196100 -0.429161 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.196100 3.605315 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.196100 -2.060180 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.196100 -1.545135 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.196200 -0.424092 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.196200 3.918073 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.196200 -2.238899 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.196200 -1.679174 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.196300 -0.418611 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.196300 4.226963 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.196300 -2.415408 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.196300 -1.811556 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.196400 -0.412713 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.196400 4.531683 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.196400 -2.589533 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.196400 -1.942150 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.196500 -0.406409 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.196500 4.831930 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.196500 -2.761103 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.196500 -2.070827 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.196600 -0.399708 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.196600 5.127410 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.196600 -2.929949 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.196600 -2.197461 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.196700 -0.392610 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.196700 5.417830 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.196700 -3.095903 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.196700 -2.321927 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.196800 -0.385125 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.196800 5.702903 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.196800 -3.258802 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.196800 -2.444101 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.196900 -0.377251 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.196900 5.982348 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.196900 -3.418485 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.196900 -2.563864 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.197000 -0.369011 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.197000 6.255889 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.197000 -3.574794 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.197000 -2.681095 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.197100 -0.360408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.197100 6.523256 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.197100 -3.727575 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.197100 -2.795681 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.197200 -0.351451 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.197200 6.784185 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.197200 -3.876677 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.197200 -2.907508 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.197300 -0.342142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.197300 7.038419 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.197300 -4.021954 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.197300 -3.016465 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.197400 -0.332498 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.197400 7.285707 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.197400 -4.163261 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.197400 -3.122446 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.197500 -0.322526 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.197500 7.525805 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.197500 -4.300460 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.197500 -3.225345 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.197600 -0.312237 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.197600 7.758475 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.197600 -4.433414 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.197600 -3.325061 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.197700 -0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.197700 7.983487 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.197700 -4.561993 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.197700 -3.421495 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.197800 -0.290742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.197800 8.200622 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.197800 -4.686070 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.197800 -3.514552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.197900 -0.279557 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.197900 8.409664 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.197900 -4.805522 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.197900 -3.604142 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.198000 -0.268113 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.198000 8.610406 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.198000 -4.920232 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.198000 -3.690174 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.198100 -0.256386 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.198100 8.802651 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.198100 -5.030087 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.198100 -3.772565 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.198200 -0.244405 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.198200 8.986210 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.198200 -5.134977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.198200 -3.851233 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.198300 -0.232185 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.198300 9.160902 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.198300 -5.234801 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.198300 -3.926101 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.198400 -0.219738 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.198400 9.326552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.198400 -5.329458 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.198400 -3.997094 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.198500 -0.207073 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.198500 9.482998 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.198500 -5.418856 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.198500 -4.064142 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.198600 -0.194205 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.198600 9.630086 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.198600 -5.502906 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.198600 -4.127180 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.198700 -0.181147 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.198700 9.767669 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.198700 -5.581525 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.198700 -4.186144 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.198800 -0.167908 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.198800 9.895613 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.198800 -5.654636 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.198800 -4.240977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.198900 -0.154502 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.198900 10.013792 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.198900 -5.722167 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.198900 -4.291625 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.199000 -0.140947 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.199000 10.122088 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.199000 -5.784050 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.199000 -4.338038 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.199100 -0.127252 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.199100 10.220394 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.199100 -5.840225 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.199100 -4.380169 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.199200 -0.113436 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.199200 10.308614 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.199200 -5.890636 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.199200 -4.417977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.199300 -0.099497 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.199300 10.386662 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.199300 -5.935235 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.199300 -4.451426 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.199400 -0.085467 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.199400 10.454459 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.199400 -5.973977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.199400 -4.480482 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.199500 -0.071350 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.199500 10.511939 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.199500 -6.006823 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.199500 -4.505117 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.199600 -0.057165 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.199600 10.559045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.199600 -6.033740 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.199600 -4.525305 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.199700 -0.042923 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.199700 10.595731 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.199700 -6.054704 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.199700 -4.541028 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.199800 -0.028637 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.199800 10.621961 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.199800 -6.069692 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.199800 -4.552269 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.199900 -0.014324 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.199900 10.637708 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.199900 -6.078690 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.199900 -4.559018 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.200000 0.000003 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.200000 10.642957 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.200000 -6.081690 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.200000 -4.561267 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.200100 0.014331 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.200100 10.637703 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.200100 -6.078687 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.200100 -4.559015 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.200200 0.028644 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.200200 10.621951 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.200200 -6.069686 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.200200 -4.552265 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.200300 0.042929 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.200300 10.595716 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.200300 -6.054695 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.200300 -4.541021 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.200400 0.057171 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.200400 10.559025 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.200400 -6.033729 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.200400 -4.525297 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.200500 0.071358 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.200500 10.511914 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.200500 -6.006808 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.200500 -4.505106 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.200600 0.085474 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.200600 10.454429 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.200600 -5.973960 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.200600 -4.480470 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.200700 0.099504 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.200700 10.386627 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.200700 -5.935215 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.200700 -4.451412 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.200800 0.113438 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.200800 10.308575 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.200800 -5.890614 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.200800 -4.417961 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.200900 0.127258 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.200900 10.220348 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.200900 -5.840199 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.200900 -4.380149 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.201000 0.140960 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.201000 10.122038 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.201000 -5.784022 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.201000 -4.338016 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.201100 0.154511 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.201100 10.013738 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.201100 -5.722136 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.201100 -4.291602 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.201200 0.167914 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.201200 9.895555 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.201200 -5.654603 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.201200 -4.240952 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.201300 0.181150 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.201300 9.767606 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.201300 -5.581489 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.201300 -4.186117 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.201400 0.194212 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.201400 9.630018 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.201400 -5.502867 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.201400 -4.127151 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.201500 0.207080 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.201500 9.482926 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.201500 -5.418815 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.201500 -4.064111 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.201600 0.219742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.201600 9.326476 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.201600 -5.329415 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.201600 -3.997061 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.201700 0.232189 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.201700 9.160821 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.201700 -5.234755 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.201700 -3.926066 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.201800 0.244408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.201800 8.986126 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.201800 -5.134929 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.201800 -3.851197 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.201900 0.256384 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.201900 8.802562 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.201900 -5.030036 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.201900 -3.772527 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.202000 0.268110 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.202000 8.610312 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.202000 -4.920178 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.202000 -3.690134 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.202100 0.279574 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.202100 8.409566 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.202100 -4.805466 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.202100 -3.604100 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.202200 0.290760 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.202200 8.200520 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.202200 -4.686011 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.202200 -3.514509 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.202300 0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.202300 7.983382 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.202300 -4.561932 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.202300 -3.421449 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.202400 0.312242 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.202400 7.758365 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.202400 -4.433351 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.202400 -3.325014 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.202500 0.322534 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.202500 7.525692 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.202500 -4.300395 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.202500 -3.225297 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.202600 0.332503 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.202600 7.285592 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.202600 -4.163195 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.202600 -3.122396 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.202700 0.342146 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.202700 7.038301 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.202700 -4.021886 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.202700 -3.016415 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.202800 0.351452 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.202800 6.784064 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.202800 -3.876608 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.202800 -2.907456 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.202900 0.360411 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.202900 6.523131 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.202900 -3.727504 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.202900 -2.795628 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.203000 0.369018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.203000 6.255762 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.203000 -3.574721 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.203000 -2.681041 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.203100 0.377255 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.203100 5.982218 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.203100 -3.418410 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.203100 -2.563808 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.203200 0.385122 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.203200 5.702771 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.203200 -3.258726 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.203200 -2.444045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.203300 0.392609 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.203300 5.417695 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.203300 -3.095826 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.203300 -2.321869 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.203400 0.399715 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.203400 5.127273 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.203400 -2.929870 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.203400 -2.197403 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.203500 0.406418 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.203500 4.831790 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.203500 -2.761023 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.203500 -2.070767 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.203600 0.412720 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.203600 4.531539 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.203600 -2.589451 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.203600 -1.942088 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.203700 0.418612 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.203700 4.226818 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.203700 -2.415324 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.203700 -1.811493 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.203800 0.424096 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.203800 3.917925 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.203800 -2.238814 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.203800 -1.679111 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.203900 0.429162 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.203900 3.605166 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.203900 -2.060095 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.203900 -1.545071 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.204000 0.433801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.204000 3.288849 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.204000 -1.879342 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.204000 -1.409507 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.204100 0.438018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.204100 2.969287 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.204100 -1.696735 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.204100 -1.272552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.204200 0.441797 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.204200 2.646794 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.204200 -1.512453 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.204200 -1.134340 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.204300 0.445142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.204300 2.321688 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.204300 -1.326679 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.204300 -0.995009 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.204400 0.448054 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.204400 1.994291 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.204400 -1.139595 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.204400 -0.854696 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.204500 0.450515 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.204500 1.664925 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.204500 -0.951386 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.204500 -0.713539 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.204600 0.452532 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.204600 1.333915 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.204600 -0.762237 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.204600 -0.571678 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.204700 0.454104 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.204700 1.001589 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.204700 -0.572337 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.204700 -0.429253 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.204800 0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.204800 0.668274 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.204800 -0.381871 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.204800 -0.286403 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.204900 0.455901 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.204900 0.334302 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.204900 -0.191029 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.204900 -0.143272 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.205000 0.456129 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.205000 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.205000 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.205000 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.205100 0.455903 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.205100 -0.334305 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.205100 0.191032 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.205100 0.143274 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.205200 0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.205200 -0.668278 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.205200 0.381873 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.205200 0.286405 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.205300 0.454102 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.205300 -1.001591 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.205300 0.572338 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.205300 0.429253 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.205400 0.452531 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.205400 -1.333915 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.205400 0.762237 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.205400 0.571678 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.205500 0.450512 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.205500 -1.664924 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.205500 0.951385 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.205500 0.713539 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.205600 0.448049 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.205600 -1.994290 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.205600 1.139594 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.205600 0.854696 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.205700 0.445144 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.205700 -2.321686 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.205700 1.326678 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.205700 0.995008 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.205800 0.441801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.205800 -2.646791 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.205800 1.512452 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.205800 1.134339 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.205900 0.438014 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.205900 -2.969284 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.205900 1.696734 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.205900 1.272550 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.206000 0.433800 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.206000 -3.288845 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.206000 1.879340 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.206000 1.409505 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.206100 0.429161 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.206100 -3.605161 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.206100 2.060092 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.206100 1.545069 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.206200 0.424092 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.206200 -3.917918 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.206200 2.238810 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.206200 1.679108 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.206300 0.418611 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.206300 -4.226809 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.206300 2.415319 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.206300 1.811489 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.206400 0.412713 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.206400 -4.531528 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.206400 2.589444 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.206400 1.942083 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.206500 0.406409 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.206500 -4.831775 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.206500 2.761014 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.206500 2.070761 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.206600 0.399708 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.206600 -5.127255 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.206600 2.929860 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.206600 2.197395 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.206700 0.392610 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.206700 -5.417675 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.206700 3.095815 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.206700 2.321861 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.206800 0.385125 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.206800 -5.702749 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.206800 3.258713 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.206800 2.444035 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.206900 0.377251 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.206900 -5.982194 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.206900 3.418396 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.206900 2.563797 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.207000 0.369011 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.207000 -6.255735 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.207000 3.574706 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.207000 2.681029 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.207100 0.360408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.207100 -6.523102 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.207100 3.727487 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.207100 2.795615 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.207200 0.351451 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.207200 -6.784031 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.207200 3.876589 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.207200 2.907442 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.207300 0.342142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.207300 -7.038265 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.207300 4.021865 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.207300 3.016399 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.207400 0.332498 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.207400 -7.285552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.207400 4.163173 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.207400 3.122380 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.207500 0.322526 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.207500 -7.525650 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.207500 4.300371 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.207500 3.225279 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.207600 0.312237 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.207600 -7.758320 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.207600 4.433326 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.207600 3.324994 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.207700 0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.207700 -7.983333 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.207700 4.561904 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.207700 3.421428 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.207800 0.290742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.207800 -8.200467 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.207800 4.685981 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.207800 3.514486 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.207900 0.279557 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.207900 -8.409509 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.207900 4.805434 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.207900 3.604075 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.208000 0.268113 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.208000 -8.610251 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.208000 4.920144 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.208000 3.690108 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.208100 0.256386 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.208100 -8.802497 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.208100 5.029998 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.208100 3.772499 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.208200 0.244405 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.208200 -8.986056 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.208200 5.134889 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.208200 3.851167 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.208300 0.232185 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.208300 -9.160747 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.208300 5.234712 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.208300 3.926034 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.208400 0.219738 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.208400 -9.326397 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.208400 5.329370 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.208400 3.997027 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.208500 0.207073 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.208500 -9.482843 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.208500 5.418768 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.208500 4.064076 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.208600 0.194205 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.208600 -9.629931 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.208600 5.502818 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.208600 4.127113 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.208700 0.181147 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.208700 -9.767514 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.208700 5.581437 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.208700 4.186078 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.208800 0.167908 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.208800 -9.895458 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.208800 5.654548 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.208800 4.240911 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.208900 0.154502 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.208900 -10.013637 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.208900 5.722078 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.208900 4.291559 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.209000 0.140947 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.209000 -10.121933 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.209000 5.783962 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.209000 4.337971 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.209100 0.127252 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.209100 -10.220239 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.209100 5.840137 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.209100 4.380102 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.209200 0.113436 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.209200 -10.308459 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.209200 5.890548 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.209200 4.417911 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.209300 0.099497 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.209300 -10.386507 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.209300 5.935147 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.209300 4.451360 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.209400 0.085467 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.209400 -10.454304 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.209400 5.973888 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.209400 4.480416 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.209500 0.071350 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.209500 -10.511785 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.209500 6.006734 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.209500 4.505051 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.209600 0.057165 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.209600 -10.558891 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.209600 6.033652 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.209600 4.525239 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.209700 0.042923 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.209700 -10.595577 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.209700 6.054615 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.209700 4.540961 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.209800 0.028637 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.209800 -10.621806 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.209800 6.069603 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.209800 4.552203 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.209900 0.014324 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.209900 -10.637553 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.209900 6.078602 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.209900 4.558951 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.210000 -0.000003 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.210000 -10.642802 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.210000 6.081601 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.210000 4.561201 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.210100 -0.014331 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.210100 -10.637548 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.210100 6.078599 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.210100 4.558949 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.210200 -0.028644 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.210200 -10.621796 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.210200 6.069598 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.210200 4.552198 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.210300 -0.042929 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.210300 -10.595562 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.210300 6.054607 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.210300 4.540955 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.210400 -0.057171 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.210400 -10.558871 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.210400 6.033640 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.210400 4.525230 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.210500 -0.071358 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.210500 -10.511759 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.210500 6.006720 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.210500 4.505040 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.210600 -0.085474 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.210600 -10.454275 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.210600 5.973871 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.210600 4.480403 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.210700 -0.099504 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.210700 -10.386472 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.210700 5.935127 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.210700 4.451345 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.210800 -0.113438 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.210800 -10.308420 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.210800 5.890526 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.210800 4.417894 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.210900 -0.127258 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.210900 -10.220194 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.210900 5.840111 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.210900 4.380083 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.211000 -0.140960 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.211000 -10.121883 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.211000 5.783933 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.211000 4.337950 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.211100 -0.154511 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.211100 -10.013583 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.211100 5.722047 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.211100 4.291535 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.211200 -0.167914 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.211200 -9.895400 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.211200 5.654514 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.211200 4.240886 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.211300 -0.181150 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.211300 -9.767451 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.211300 5.581401 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.211300 4.186051 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.211400 -0.194212 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.211400 -9.629863 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.211400 5.502779 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.211400 4.127084 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.211500 -0.207080 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.211500 -9.482772 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.211500 5.418727 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.211500 4.064045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.211600 -0.219742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.211600 -9.326321 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.211600 5.329326 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.211600 3.996995 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.211700 -0.232189 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.211700 -9.160667 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.211700 5.234667 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.211700 3.926000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.211800 -0.244408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.211800 -8.985971 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.211800 5.134841 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.211800 3.851131 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.211900 -0.256384 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.211900 -8.802408 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.211900 5.029947 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.211900 3.772460 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.212000 -0.268110 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.212000 -8.610158 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.212000 4.920090 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.212000 3.690068 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.212100 -0.279574 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.212100 -8.409411 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.212100 4.805378 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.212100 3.604033 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.212200 -0.290760 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.212200 -8.200365 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.212200 4.685923 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.212200 3.514442 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.212300 -0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.212300 -7.983227 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.212300 4.561844 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.212300 3.421383 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.212400 -0.312242 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.212400 -7.758210 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.212400 4.433263 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.212400 3.324947 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.212500 -0.322534 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.212500 -7.525537 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.212500 4.300307 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.212500 3.225230 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.212600 -0.332503 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.212600 -7.285437 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.212600 4.163107 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.212600 3.122330 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.212700 -0.342146 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.212700 -7.038146 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.212700 4.021798 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.212700 3.016348 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.212800 -0.351452 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.212800 -6.783909 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.212800 3.876519 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.212800 2.907390 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.212900 -0.360411 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.212900 -6.522977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.212900 3.727415 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.212900 2.795561 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.213000 -0.369018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.213000 -6.255607 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.213000 3.574633 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.213000 2.680975 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.213100 -0.377255 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.213100 -5.982064 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.213100 3.418322 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.213100 2.563742 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.213200 -0.385122 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.213200 -5.702616 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.213200 3.258638 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.213200 2.443978 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.213300 -0.392609 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.213300 -5.417540 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.213300 3.095737 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.213300 2.321803 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.213400 -0.399715 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.213400 -5.127118 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.213400 2.929782 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.213400 2.197336 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.213500 -0.406418 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.213500 -4.831636 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.213500 2.760935 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.213500 2.070701 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.213600 -0.412720 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.213600 -4.531384 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.213600 2.589362 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.213600 1.942022 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.213700 -0.418612 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.213700 -4.226663 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.213700 2.415236 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.213700 1.811427 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.213800 -0.424096 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.213800 -3.917771 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.213800 2.238726 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.213800 1.679045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.213900 -0.429162 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.213900 -3.605011 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.213900 2.060007 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.213900 1.545005 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.214000 -0.433801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.214000 -3.288695 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.214000 1.879254 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.214000 1.409441 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.214100 -0.438018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.214100 -2.969132 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.214100 1.696647 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.214100 1.272485 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.214200 -0.441797 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.214200 -2.646639 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.214200 1.512365 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.214200 1.134274 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.214300 -0.445142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.214300 -2.321533 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.214300 1.326590 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.214300 0.994943 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.214400 -0.448054 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.214400 -1.994136 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.214400 1.139506 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.214400 0.854630 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.214500 -0.450515 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.214500 -1.664770 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.214500 0.951297 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.214500 0.713473 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.214600 -0.452532 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.214600 -1.333761 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.214600 0.762149 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.214600 0.571612 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.214700 -0.454104 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.214700 -1.001435 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.214700 0.572248 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.214700 0.429186 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.214800 -0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.214800 -0.668120 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.214800 0.381783 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.214800 0.286337 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.214900 -0.455901 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.214900 -0.334147 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.214900 0.190941 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.214900 0.143206 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.215000 -0.456129 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.215000 0.000156 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.215000 -0.000089 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.215000 -0.000067 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.215100 -0.455903 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.215100 0.334460 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.215100 -0.191120 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.215100 -0.143340 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.215200 -0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.215200 0.668433 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.215200 -0.381962 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.215200 -0.286471 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.215300 -0.454102 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.215300 1.001746 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.215300 -0.572426 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.215300 -0.429320 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.215400 -0.452531 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.215400 1.334070 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.215400 -0.762326 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.215400 -0.571744 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.215500 -0.450512 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.215500 1.665079 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.215500 -0.951474 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.215500 -0.713605 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.215600 -0.448049 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.215600 1.994444 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.215600 -1.139682 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.215600 -0.854762 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.215700 -0.445144 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.215700 2.321841 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.215700 -1.326766 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.215700 -0.995075 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.215800 -0.441801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.215800 2.646946 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.215800 -1.512541 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.215800 -1.134405 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.215900 -0.438014 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.215900 2.969438 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.215900 -1.696822 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.215900 -1.272616 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.216000 -0.433800 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.216000 3.289000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.216000 -1.879429 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.216000 -1.409571 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.216100 -0.429161 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.216100 3.605315 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.216100 -2.060180 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.216100 -1.545135 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.216200 -0.424092 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.216200 3.918073 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.216200 -2.238899 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.216200 -1.679174 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.216300 -0.418611 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.216300 4.226963 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.216300 -2.415408 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.216300 -1.811556 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.216400 -0.412713 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.216400 4.531683 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.216400 -2.589533 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.216400 -1.942150 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.216500 -0.406409 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.216500 4.831930 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.216500 -2.761103 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.216500 -2.070827 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.216600 -0.399708 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.216600 5.127410 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.216600 -2.929949 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.216600 -2.197461 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.216700 -0.392610 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.216700 5.417830 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.216700 -3.095903 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.216700 -2.321927 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.216800 -0.385125 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.216800 5.702903 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.216800 -3.258802 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.216800 -2.444101 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.216900 -0.377251 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.216900 5.982348 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.216900 -3.418485 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.216900 -2.563864 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.217000 -0.369011 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.217000 6.255889 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.217000 -3.574794 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.217000 -2.681095 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.217100 -0.360408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.217100 6.523256 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.217100 -3.727575 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.217100 -2.795681 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.217200 -0.351451 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.217200 6.784185 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.217200 -3.876677 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.217200 -2.907508 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.217300 -0.342142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.217300 7.038419 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.217300 -4.021954 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.217300 -3.016465 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.217400 -0.332498 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.217400 7.285707 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.217400 -4.163261 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.217400 -3.122446 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.217500 -0.322526 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.217500 7.525805 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.217500 -4.300460 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.217500 -3.225345 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.217600 -0.312237 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.217600 7.758475 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.217600 -4.433414 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.217600 -3.325061 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.217700 -0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.217700 7.983487 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.217700 -4.561993 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.217700 -3.421495 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.217800 -0.290742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.217800 8.200622 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.217800 -4.686070 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.217800 -3.514552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.217900 -0.279557 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.217900 8.409664 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.217900 -4.805522 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.217900 -3.604142 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.218000 -0.268113 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.218000 8.610406 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.218000 -4.920232 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.218000 -3.690174 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.218100 -0.256386 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.218100 8.802651 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.218100 -5.030087 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.218100 -3.772565 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.218200 -0.244405 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.218200 8.986210 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.218200 -5.134977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.218200 -3.851233 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.218300 -0.232185 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.218300 9.160902 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.218300 -5.234801 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.218300 -3.926101 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.218400 -0.219738 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.218400 9.326552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.218400 -5.329458 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.218400 -3.997094 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.218500 -0.207073 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.218500 9.482998 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.218500 -5.418856 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.218500 -4.064142 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.218600 -0.194205 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.218600 9.630086 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.218600 -5.502906 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.218600 -4.127180 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.218700 -0.181147 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.218700 9.767669 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.218700 -5.581525 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.218700 -4.186144 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.218800 -0.167908 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.218800 9.895613 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.218800 -5.654636 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.218800 -4.240977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.218900 -0.154502 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.218900 10.013792 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.218900 -5.722167 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.218900 -4.291625 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.219000 -0.140947 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.219000 10.122088 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.219000 -5.784050 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.219000 -4.338038 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.219100 -0.127252 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.219100 10.220394 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.219100 -5.840225 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.219100 -4.380169 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.219200 -0.113436 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.219200 10.308614 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.219200 -5.890636 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.219200 -4.417977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.219300 -0.099497 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.219300 10.386662 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.219300 -5.935235 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.219300 -4.451426 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.219400 -0.085467 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.219400 10.454459 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.219400 -5.973977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.219400 -4.480482 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.219500 -0.071350 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.219500 10.511939 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.219500 -6.006823 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.219500 -4.505117 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.219600 -0.057165 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.219600 10.559045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.219600 -6.033740 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.219600 -4.525305 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.219700 -0.042923 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.219700 10.595731 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.219700 -6.054704 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.219700 -4.541028 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.219800 -0.028637 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.219800 10.621961 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.219800 -6.069692 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.219800 -4.552269 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.219900 -0.014324 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.219900 10.637708 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.219900 -6.078690 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.219900 -4.559018 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.220000 0.000003 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.220000 10.642957 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.220000 -6.081690 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.220000 -4.561267 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.220100 0.014331 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.220100 10.637703 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.220100 -6.078687 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.220100 -4.559015 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.220200 0.028644 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.220200 10.621951 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.220200 -6.069686 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.220200 -4.552265 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.220300 0.042929 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.220300 10.595716 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.220300 -6.054695 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.220300 -4.541021 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.220400 0.057171 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.220400 10.559025 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.220400 -6.033729 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.220400 -4.525297 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.220500 0.071358 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.220500 10.511914 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.220500 -6.006808 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.220500 -4.505106 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.220600 0.085474 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.220600 10.454429 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.220600 -5.973960 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.220600 -4.480470 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.220700 0.099504 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.220700 10.386627 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.220700 -5.935215 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.220700 -4.451412 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.220800 0.113438 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.220800 10.308575 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.220800 -5.890614 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.220800 -4.417961 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.220900 0.127258 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.220900 10.220348 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.220900 -5.840199 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.220900 -4.380149 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.221000 0.140960 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.221000 10.122038 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.221000 -5.784022 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.221000 -4.338016 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.221100 0.154511 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.221100 10.013738 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.221100 -5.722136 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.221100 -4.291602 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.221200 0.167914 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.221200 9.895555 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.221200 -5.654603 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.221200 -4.240952 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.221300 0.181150 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.221300 9.767606 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.221300 -5.581489 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.221300 -4.186117 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.221400 0.194212 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.221400 9.630018 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.221400 -5.502867 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.221400 -4.127151 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.221500 0.207080 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.221500 9.482926 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.221500 -5.418815 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.221500 -4.064111 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.221600 0.219742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.221600 9.326476 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.221600 -5.329415 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.221600 -3.997061 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.221700 0.232189 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.221700 9.160821 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.221700 -5.234755 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.221700 -3.926066 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.221800 0.244408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.221800 8.986126 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.221800 -5.134929 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.221800 -3.851197 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.221900 0.256384 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.221900 8.802562 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.221900 -5.030036 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.221900 -3.772527 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.222000 0.268110 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.222000 8.610312 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.222000 -4.920178 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.222000 -3.690134 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.222100 0.279574 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.222100 8.409566 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.222100 -4.805466 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.222100 -3.604100 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.222200 0.290760 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.222200 8.200520 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.222200 -4.686011 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.222200 -3.514509 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.222300 0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.222300 7.983382 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.222300 -4.561932 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.222300 -3.421449 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.222400 0.312242 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.222400 7.758365 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.222400 -4.433351 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.222400 -3.325014 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.222500 0.322534 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.222500 7.525692 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.222500 -4.300395 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.222500 -3.225297 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.222600 0.332503 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.222600 7.285592 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.222600 -4.163195 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.222600 -3.122396 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.222700 0.342146 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.222700 7.038301 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.222700 -4.021886 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.222700 -3.016415 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.222800 0.351452 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.222800 6.784064 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.222800 -3.876608 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.222800 -2.907456 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.222900 0.360411 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.222900 6.523131 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.222900 -3.727504 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.222900 -2.795628 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.223000 0.369018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.223000 6.255762 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.223000 -3.574721 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.223000 -2.681041 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.223100 0.377255 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.223100 5.982218 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.223100 -3.418410 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.223100 -2.563808 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.223200 0.385122 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.223200 5.702771 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.223200 -3.258726 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.223200 -2.444045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.223300 0.392609 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.223300 5.417695 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.223300 -3.095826 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.223300 -2.321869 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.223400 0.399715 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.223400 5.127273 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.223400 -2.929870 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.223400 -2.197403 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.223500 0.406418 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.223500 4.831790 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.223500 -2.761023 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.223500 -2.070767 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.223600 0.412720 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.223600 4.531539 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.223600 -2.589451 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.223600 -1.942088 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.223700 0.418612 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.223700 4.226818 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.223700 -2.415324 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.223700 -1.811493 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.223800 0.424096 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.223800 3.917925 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.223800 -2.238814 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.223800 -1.679111 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.223900 0.429162 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.223900 3.605166 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.223900 -2.060095 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.223900 -1.545071 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.224000 0.433801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.224000 3.288849 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.224000 -1.879342 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.224000 -1.409507 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.224100 0.438018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.224100 2.969287 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.224100 -1.696735 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.224100 -1.272552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.224200 0.441797 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.224200 2.646794 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.224200 -1.512453 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.224200 -1.134340 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.224300 0.445142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.224300 2.321688 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.224300 -1.326679 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.224300 -0.995009 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.224400 0.448054 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.224400 1.994291 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.224400 -1.139595 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.224400 -0.854696 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.224500 0.450515 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.224500 1.664925 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.224500 -0.951386 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.224500 -0.713539 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.224600 0.452532 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.224600 1.333915 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.224600 -0.762237 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.224600 -0.571678 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.224700 0.454104 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.224700 1.001589 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.224700 -0.572337 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.224700 -0.429253 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.224800 0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.224800 0.668274 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.224800 -0.381871 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.224800 -0.286403 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.224900 0.455901 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.224900 0.334302 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.224900 -0.191029 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.224900 -0.143272 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.225000 0.456129 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.225000 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.225000 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.225000 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.225100 0.455903 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.225100 -0.334305 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.225100 0.191032 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.225100 0.143274 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.225200 0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.225200 -0.668278 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.225200 0.381873 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.225200 0.286405 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.225300 0.454102 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.225300 -1.001591 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.225300 0.572338 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.225300 0.429253 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.225400 0.452531 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.225400 -1.333915 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.225400 0.762237 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.225400 0.571678 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.225500 0.450512 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.225500 -1.664924 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.225500 0.951385 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.225500 0.713539 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.225600 0.448049 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.225600 -1.994290 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.225600 1.139594 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.225600 0.854696 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.225700 0.445144 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.225700 -2.321686 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.225700 1.326678 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.225700 0.995008 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.225800 0.441801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.225800 -2.646791 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.225800 1.512452 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.225800 1.134339 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.225900 0.438014 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.225900 -2.969284 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.225900 1.696734 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.225900 1.272550 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.226000 0.433800 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.226000 -3.288845 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.226000 1.879340 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.226000 1.409505 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.226100 0.429161 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.226100 -3.605161 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.226100 2.060092 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.226100 1.545069 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.226200 0.424092 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.226200 -3.917918 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.226200 2.238810 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.226200 1.679108 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.226300 0.418611 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.226300 -4.226809 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.226300 2.415319 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.226300 1.811489 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.226400 0.412713 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.226400 -4.531528 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.226400 2.589444 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.226400 1.942083 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.226500 0.406409 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.226500 -4.831775 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.226500 2.761014 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.226500 2.070761 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.226600 0.399708 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.226600 -5.127255 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.226600 2.929860 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.226600 2.197395 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.226700 0.392610 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.226700 -5.417675 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.226700 3.095815 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.226700 2.321861 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.226800 0.385125 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.226800 -5.702749 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.226800 3.258713 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.226800 2.444035 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.226900 0.377251 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.226900 -5.982194 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.226900 3.418396 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.226900 2.563797 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.227000 0.369011 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.227000 -6.255735 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.227000 3.574706 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.227000 2.681029 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.227100 0.360408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.227100 -6.523102 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.227100 3.727487 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.227100 2.795615 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.227200 0.351451 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.227200 -6.784031 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.227200 3.876589 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.227200 2.907442 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.227300 0.342142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.227300 -7.038265 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.227300 4.021865 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.227300 3.016399 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.227400 0.332498 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.227400 -7.285552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.227400 4.163173 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.227400 3.122380 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.227500 0.322526 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.227500 -7.525650 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.227500 4.300371 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.227500 3.225279 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.227600 0.312237 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.227600 -7.758320 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.227600 4.433326 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.227600 3.324994 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.227700 0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.227700 -7.983333 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.227700 4.561904 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.227700 3.421428 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.227800 0.290742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.227800 -8.200467 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.227800 4.685981 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.227800 3.514486 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.227900 0.279557 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.227900 -8.409509 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.227900 4.805434 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.227900 3.604075 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.228000 0.268113 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.228000 -8.610251 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.228000 4.920144 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.228000 3.690108 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.228100 0.256386 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.228100 -8.802497 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.228100 5.029998 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.228100 3.772499 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.228200 0.244405 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.228200 -8.986056 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.228200 5.134889 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.228200 3.851167 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.228300 0.232185 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.228300 -9.160747 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.228300 5.234712 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.228300 3.926034 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.228400 0.219738 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.228400 -9.326397 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.228400 5.329370 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.228400 3.997027 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.228500 0.207073 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.228500 -9.482843 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.228500 5.418768 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.228500 4.064076 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.228600 0.194205 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.228600 -9.629931 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.228600 5.502818 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.228600 4.127113 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.228700 0.181147 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.228700 -9.767514 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.228700 5.581437 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.228700 4.186078 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.228800 0.167908 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.228800 -9.895458 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.228800 5.654548 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.228800 4.240911 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.228900 0.154502 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.228900 -10.013637 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.228900 5.722078 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.228900 4.291559 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.229000 0.140947 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.229000 -10.121933 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.229000 5.783962 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.229000 4.337971 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.229100 0.127252 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.229100 -10.220239 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.229100 5.840137 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.229100 4.380102 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.229200 0.113436 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.229200 -10.308459 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.229200 5.890548 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.229200 4.417911 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.229300 0.099497 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.229300 -10.386507 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.229300 5.935147 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.229300 4.451360 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.229400 0.085467 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.229400 -10.454304 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.229400 5.973888 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.229400 4.480416 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.229500 0.071350 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.229500 -10.511785 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.229500 6.006734 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.229500 4.505051 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.229600 0.057165 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.229600 -10.558891 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.229600 6.033652 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.229600 4.525239 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.229700 0.042923 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.229700 -10.595577 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.229700 6.054615 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.229700 4.540961 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.229800 0.028637 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.229800 -10.621806 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.229800 6.069603 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.229800 4.552203 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.229900 0.014324 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.229900 -10.637553 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.229900 6.078602 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.229900 4.558951 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.230000 -0.000003 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.230000 -10.642802 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.230000 6.081601 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.230000 4.561201 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.230100 -0.014331 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.230100 -10.637548 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.230100 6.078599 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.230100 4.558949 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.230200 -0.028644 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.230200 -10.621796 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.230200 6.069598 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.230200 4.552198 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.230300 -0.042929 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.230300 -10.595562 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.230300 6.054607 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.230300 4.540955 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.230400 -0.057171 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.230400 -10.558871 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.230400 6.033640 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.230400 4.525230 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.230500 -0.071358 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.230500 -10.511759 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.230500 6.006720 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.230500 4.505040 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.230600 -0.085474 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.230600 -10.454275 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.230600 5.973871 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.230600 4.480403 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.230700 -0.099504 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.230700 -10.386472 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.230700 5.935127 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.230700 4.451345 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.230800 -0.113438 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.230800 -10.308420 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.230800 5.890526 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.230800 4.417894 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.230900 -0.127258 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.230900 -10.220194 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.230900 5.840111 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.230900 4.380083 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.231000 -0.140960 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.231000 -10.121883 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.231000 5.783933 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.231000 4.337950 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.231100 -0.154511 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.231100 -10.013583 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.231100 5.722047 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.231100 4.291535 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.231200 -0.167914 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.231200 -9.895400 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.231200 5.654514 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.231200 4.240886 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.231300 -0.181150 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.231300 -9.767451 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.231300 5.581401 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.231300 4.186051 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.231400 -0.194212 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.231400 -9.629863 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.231400 5.502779 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.231400 4.127084 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.231500 -0.207080 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.231500 -9.482772 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.231500 5.418727 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.231500 4.064045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.231600 -0.219742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.231600 -9.326321 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.231600 5.329326 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.231600 3.996995 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.231700 -0.232189 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.231700 -9.160667 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.231700 5.234667 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.231700 3.926000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.231800 -0.244408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.231800 -8.985971 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.231800 5.134841 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.231800 3.851131 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.231900 -0.256384 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.231900 -8.802408 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.231900 5.029947 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.231900 3.772460 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.232000 -0.268110 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.232000 -8.610158 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.232000 4.920090 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.232000 3.690068 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.232100 -0.279574 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.232100 -8.409411 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.232100 4.805378 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.232100 3.604033 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.232200 -0.290760 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.232200 -8.200365 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.232200 4.685923 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.232200 3.514442 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.232300 -0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.232300 -7.983227 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.232300 4.561844 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.232300 3.421383 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.232400 -0.312242 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.232400 -7.758210 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.232400 4.433263 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.232400 3.324947 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.232500 -0.322534 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.232500 -7.525537 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.232500 4.300307 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.232500 3.225230 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.232600 -0.332503 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.232600 -7.285437 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.232600 4.163107 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.232600 3.122330 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.232700 -0.342146 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.232700 -7.038146 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.232700 4.021798 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.232700 3.016348 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.232800 -0.351452 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.232800 -6.783909 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.232800 3.876519 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.232800 2.907390 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.232900 -0.360411 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.232900 -6.522977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.232900 3.727415 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.232900 2.795561 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.233000 -0.369018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.233000 -6.255607 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.233000 3.574633 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.233000 2.680975 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.233100 -0.377255 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.233100 -5.982064 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.233100 3.418322 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.233100 2.563742 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.233200 -0.385122 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.233200 -5.702616 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.233200 3.258638 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.233200 2.443978 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.233300 -0.392609 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.233300 -5.417540 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.233300 3.095737 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.233300 2.321803 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.233400 -0.399715 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.233400 -5.127118 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.233400 2.929782 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.233400 2.197336 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.233500 -0.406418 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.233500 -4.831636 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.233500 2.760935 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.233500 2.070701 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.233600 -0.412720 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.233600 -4.531384 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.233600 2.589362 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.233600 1.942022 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.233700 -0.418612 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.233700 -4.226663 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.233700 2.415236 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.233700 1.811427 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.233800 -0.424096 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.233800 -3.917771 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.233800 2.238726 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.233800 1.679045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.233900 -0.429162 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.233900 -3.605011 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.233900 2.060007 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.233900 1.545005 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.234000 -0.433801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.234000 -3.288695 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.234000 1.879254 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.234000 1.409441 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.234100 -0.438018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.234100 -2.969132 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.234100 1.696647 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.234100 1.272485 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.234200 -0.441797 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.234200 -2.646639 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.234200 1.512365 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.234200 1.134274 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.234300 -0.445142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.234300 -2.321533 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.234300 1.326590 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.234300 0.994943 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.234400 -0.448054 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.234400 -1.994136 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.234400 1.139506 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.234400 0.854630 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.234500 -0.450515 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.234500 -1.664770 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.234500 0.951297 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.234500 0.713473 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.234600 -0.452532 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.234600 -1.333761 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.234600 0.762149 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.234600 0.571612 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.234700 -0.454104 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.234700 -1.001435 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.234700 0.572248 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.234700 0.429186 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.234800 -0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.234800 -0.668120 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.234800 0.381783 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.234800 0.286337 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.234900 -0.455901 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.234900 -0.334147 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.234900 0.190941 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.234900 0.143206 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.235000 -0.456129 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.235000 0.000156 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.235000 -0.000089 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.235000 -0.000067 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.235100 -0.455903 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.235100 0.334460 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.235100 -0.191120 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.235100 -0.143340 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.235200 -0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.235200 0.668433 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.235200 -0.381962 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.235200 -0.286471 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.235300 -0.454102 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.235300 1.001746 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.235300 -0.572426 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.235300 -0.429320 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.235400 -0.452531 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.235400 1.334070 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.235400 -0.762326 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.235400 -0.571744 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.235500 -0.450512 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.235500 1.665079 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.235500 -0.951474 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.235500 -0.713605 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.235600 -0.448049 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.235600 1.994444 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.235600 -1.139682 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.235600 -0.854762 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.235700 -0.445144 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.235700 2.321841 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.235700 -1.326766 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.235700 -0.995075 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.235800 -0.441801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.235800 2.646946 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.235800 -1.512541 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.235800 -1.134405 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.235900 -0.438014 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.235900 2.969438 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.235900 -1.696822 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.235900 -1.272616 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.236000 -0.433800 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.236000 3.289000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.236000 -1.879429 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.236000 -1.409571 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.236100 -0.429161 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.236100 3.605315 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.236100 -2.060180 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.236100 -1.545135 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.236200 -0.424092 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.236200 3.918073 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.236200 -2.238899 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.236200 -1.679174 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.236300 -0.418611 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.236300 4.226963 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.236300 -2.415408 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.236300 -1.811556 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.236400 -0.412713 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.236400 4.531683 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.236400 -2.589533 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.236400 -1.942150 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.236500 -0.406409 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.236500 4.831930 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.236500 -2.761103 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.236500 -2.070827 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.236600 -0.399708 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.236600 5.127410 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.236600 -2.929949 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.236600 -2.197461 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.236700 -0.392610 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.236700 5.417830 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.236700 -3.095903 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.236700 -2.321927 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.236800 -0.385125 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.236800 5.702903 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.236800 -3.258802 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.236800 -2.444101 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.236900 -0.377251 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.236900 5.982348 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.236900 -3.418485 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.236900 -2.563864 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.237000 -0.369011 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.237000 6.255889 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.237000 -3.574794 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.237000 -2.681095 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.237100 -0.360408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.237100 6.523256 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.237100 -3.727575 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.237100 -2.795681 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.237200 -0.351451 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.237200 6.784185 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.237200 -3.876677 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.237200 -2.907508 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.237300 -0.342142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.237300 7.038419 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.237300 -4.021954 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.237300 -3.016465 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.237400 -0.332498 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.237400 7.285707 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.237400 -4.163261 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.237400 -3.122446 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.237500 -0.322526 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.237500 7.525805 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.237500 -4.300460 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.237500 -3.225345 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.237600 -0.312237 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.237600 7.758475 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.237600 -4.433414 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.237600 -3.325061 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.237700 -0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.237700 7.983487 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.237700 -4.561993 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.237700 -3.421495 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.237800 -0.290742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.237800 8.200622 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.237800 -4.686070 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.237800 -3.514552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.237900 -0.279557 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.237900 8.409664 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.237900 -4.805522 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.237900 -3.604142 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.238000 -0.268113 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.238000 8.610406 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.238000 -4.920232 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.238000 -3.690174 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.238100 -0.256386 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.238100 8.802651 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.238100 -5.030087 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.238100 -3.772565 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.238200 -0.244405 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.238200 8.986210 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.238200 -5.134977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.238200 -3.851233 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.238300 -0.232185 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.238300 9.160902 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.238300 -5.234801 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.238300 -3.926101 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.238400 -0.219738 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.238400 9.326552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.238400 -5.329458 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.238400 -3.997094 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.238500 -0.207073 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.238500 9.482998 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.238500 -5.418856 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.238500 -4.064142 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.238600 -0.194205 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.238600 9.630086 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.238600 -5.502906 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.238600 -4.127180 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.238700 -0.181147 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.238700 9.767669 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.238700 -5.581525 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.238700 -4.186144 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.238800 -0.167908 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.238800 9.895613 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.238800 -5.654636 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.238800 -4.240977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.238900 -0.154502 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.238900 10.013792 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.238900 -5.722167 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.238900 -4.291625 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.239000 -0.140947 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.239000 10.122087 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.239000 -5.784050 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.239000 -4.338037 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.239100 -0.127252 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.239100 10.220394 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.239100 -5.840225 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.239100 -4.380169 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.239200 -0.113436 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.239200 10.308614 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.239200 -5.890636 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.239200 -4.417977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.239300 -0.099497 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.239300 10.386662 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.239300 -5.935235 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.239300 -4.451426 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.239400 -0.085467 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.239400 10.454459 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.239400 -5.973977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.239400 -4.480482 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.239500 -0.071350 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.239500 10.511939 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.239500 -6.006823 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.239500 -4.505117 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.239600 -0.057165 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.239600 10.559045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.239600 -6.033740 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.239600 -4.525305 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.239700 -0.042923 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.239700 10.595731 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.239700 -6.054704 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.239700 -4.541028 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.239800 -0.028637 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.239800 10.621961 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.239800 -6.069692 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.239800 -4.552269 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.239900 -0.014324 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.239900 10.637708 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.239900 -6.078690 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.239900 -4.559018 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.240000 0.000003 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.240000 10.642957 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.240000 -6.081690 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.240000 -4.561267 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.240100 0.014331 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.240100 10.637703 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.240100 -6.078687 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.240100 -4.559015 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.240200 0.028644 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.240200 10.621951 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.240200 -6.069686 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.240200 -4.552265 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.240300 0.042929 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.240300 10.595716 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.240300 -6.054695 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.240300 -4.541021 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.240400 0.057171 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.240400 10.559025 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.240400 -6.033729 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.240400 -4.525297 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.240500 0.071358 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.240500 10.511914 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.240500 -6.006808 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.240500 -4.505106 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.240600 0.085474 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.240600 10.454429 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.240600 -5.973960 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.240600 -4.480470 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.240700 0.099504 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.240700 10.386627 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.240700 -5.935215 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.240700 -4.451412 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.240800 0.113438 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.240800 10.308575 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.240800 -5.890614 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.240800 -4.417961 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.240900 0.127258 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.240900 10.220348 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.240900 -5.840199 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.240900 -4.380149 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.241000 0.140960 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.241000 10.122038 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.241000 -5.784022 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.241000 -4.338016 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.241100 0.154511 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.241100 10.013738 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.241100 -5.722136 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.241100 -4.291602 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.241200 0.167914 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.241200 9.895555 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.241200 -5.654603 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.241200 -4.240952 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.241300 0.181150 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.241300 9.767606 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.241300 -5.581489 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.241300 -4.186117 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.241400 0.194212 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.241400 9.630018 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.241400 -5.502867 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.241400 -4.127151 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.241500 0.207080 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.241500 9.482926 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.241500 -5.418815 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.241500 -4.064111 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.241600 0.219742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.241600 9.326476 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.241600 -5.329415 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.241600 -3.997061 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.241700 0.232189 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.241700 9.160821 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.241700 -5.234755 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.241700 -3.926066 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.241800 0.244408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.241800 8.986126 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.241800 -5.134929 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.241800 -3.851197 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.241900 0.256384 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.241900 8.802562 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.241900 -5.030036 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.241900 -3.772527 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.242000 0.268110 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.242000 8.610312 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.242000 -4.920178 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.242000 -3.690134 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.242100 0.279574 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.242100 8.409565 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.242100 -4.805466 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.242100 -3.604099 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.242200 0.290760 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.242200 8.200520 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.242200 -4.686011 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.242200 -3.514509 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.242300 0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.242300 7.983382 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.242300 -4.561932 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.242300 -3.421449 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.242400 0.312242 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.242400 7.758365 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.242400 -4.433351 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.242400 -3.325014 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.242500 0.322534 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.242500 7.525692 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.242500 -4.300395 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.242500 -3.225297 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.242600 0.332503 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.242600 7.285592 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.242600 -4.163195 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.242600 -3.122396 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.242700 0.342146 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.242700 7.038301 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.242700 -4.021886 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.242700 -3.016415 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.242800 0.351452 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.242800 6.784064 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.242800 -3.876608 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.242800 -2.907456 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.242900 0.360411 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.242900 6.523131 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.242900 -3.727504 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.242900 -2.795628 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.243000 0.369018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.243000 6.255762 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.243000 -3.574721 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.243000 -2.681041 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.243100 0.377255 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.243100 5.982218 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.243100 -3.418410 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.243100 -2.563808 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.243200 0.385122 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.243200 5.702771 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.243200 -3.258726 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.243200 -2.444045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.243300 0.392609 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.243300 5.417695 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.243300 -3.095826 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.243300 -2.321869 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.243400 0.399715 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.243400 5.127273 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.243400 -2.929870 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.243400 -2.197403 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.243500 0.406418 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.243500 4.831790 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.243500 -2.761023 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.243500 -2.070767 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.243600 0.412720 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.243600 4.531539 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.243600 -2.589451 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.243600 -1.942088 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.243700 0.418612 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.243700 4.226818 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.243700 -2.415324 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.243700 -1.811493 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.243800 0.424096 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.243800 3.917925 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.243800 -2.238814 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.243800 -1.679111 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.243900 0.429162 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.243900 3.605166 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.243900 -2.060095 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.243900 -1.545071 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.244000 0.433801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.244000 3.288849 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.244000 -1.879342 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.244000 -1.409507 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.244100 0.438018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.244100 2.969287 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.244100 -1.696735 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.244100 -1.272552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.244200 0.441797 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.244200 2.646794 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.244200 -1.512453 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.244200 -1.134340 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.244300 0.445142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.244300 2.321688 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.244300 -1.326679 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.244300 -0.995009 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.244400 0.448054 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.244400 1.994291 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.244400 -1.139595 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.244400 -0.854696 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.244500 0.450515 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.244500 1.664925 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.244500 -0.951386 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.244500 -0.713539 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.244600 0.452532 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.244600 1.333915 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.244600 -0.762237 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.244600 -0.571678 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.244700 0.454104 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.244700 1.001589 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.244700 -0.572337 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.244700 -0.429253 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.244800 0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.244800 0.668274 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.244800 -0.381871 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.244800 -0.286403 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.244900 0.455901 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.244900 0.334302 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.244900 -0.191029 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.244900 -0.143272 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.245000 0.456129 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.245000 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.245000 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.245000 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.245100 0.455903 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.245100 -0.334305 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.245100 0.191032 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.245100 0.143274 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.245200 0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.245200 -0.668278 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.245200 0.381873 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.245200 0.286405 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.245300 0.454102 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.245300 -1.001591 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.245300 0.572338 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.245300 0.429253 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.245400 0.452531 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.245400 -1.333915 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.245400 0.762237 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.245400 0.571678 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.245500 0.450512 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.245500 -1.664924 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.245500 0.951385 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.245500 0.713539 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.245600 0.448049 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.245600 -1.994290 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.245600 1.139594 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.245600 0.854696 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.245700 0.445144 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.245700 -2.321686 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.245700 1.326678 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.245700 0.995008 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.245800 0.441801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.245800 -2.646791 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.245800 1.512452 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.245800 1.134339 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.245900 0.438014 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.245900 -2.969284 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.245900 1.696734 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.245900 1.272550 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.246000 0.433800 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.246000 -3.288845 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.246000 1.879340 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.246000 1.409505 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.246100 0.429161 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.246100 -3.605161 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.246100 2.060092 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.246100 1.545069 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.246200 0.424092 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.246200 -3.917918 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.246200 2.238810 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.246200 1.679108 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.246300 0.418611 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.246300 -4.226809 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.246300 2.415319 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.246300 1.811489 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.246400 0.412713 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.246400 -4.531528 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.246400 2.589444 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.246400 1.942083 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.246500 0.406409 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.246500 -4.831775 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.246500 2.761014 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.246500 2.070761 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.246600 0.399708 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.246600 -5.127255 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.246600 2.929860 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.246600 2.197395 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.246700 0.392610 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.246700 -5.417675 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.246700 3.095815 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.246700 2.321861 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.246800 0.385125 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.246800 -5.702749 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.246800 3.258713 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.246800 2.444035 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.246900 0.377251 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.246900 -5.982194 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.246900 3.418396 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.246900 2.563797 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.247000 0.369011 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.247000 -6.255735 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.247000 3.574706 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.247000 2.681029 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.247100 0.360408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.247100 -6.523102 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.247100 3.727487 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.247100 2.795615 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.247200 0.351451 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.247200 -6.784031 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.247200 3.876589 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.247200 2.907442 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.247300 0.342142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.247300 -7.038265 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.247300 4.021865 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.247300 3.016399 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.247400 0.332498 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.247400 -7.285552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.247400 4.163173 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.247400 3.122380 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.247500 0.322526 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.247500 -7.525650 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.247500 4.300371 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.247500 3.225279 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.247600 0.312237 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.247600 -7.758320 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.247600 4.433326 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.247600 3.324994 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.247700 0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.247700 -7.983333 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.247700 4.561904 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.247700 3.421428 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.247800 0.290742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.247800 -8.200467 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.247800 4.685981 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.247800 3.514486 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.247900 0.279557 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.247900 -8.409509 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.247900 4.805434 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.247900 3.604075 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.248000 0.268113 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.248000 -8.610251 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.248000 4.920144 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.248000 3.690108 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.248100 0.256386 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.248100 -8.802497 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.248100 5.029998 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.248100 3.772499 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.248200 0.244405 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.248200 -8.986056 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.248200 5.134889 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.248200 3.851167 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.248300 0.232185 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.248300 -9.160747 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.248300 5.234712 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.248300 3.926034 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.248400 0.219738 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.248400 -9.326397 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.248400 5.329370 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.248400 3.997027 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.248500 0.207073 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.248500 -9.482843 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.248500 5.418768 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.248500 4.064076 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.248600 0.194205 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.248600 -9.629931 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.248600 5.502818 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.248600 4.127113 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.248700 0.181147 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.248700 -9.767514 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.248700 5.581437 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.248700 4.186078 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.248800 0.167908 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.248800 -9.895458 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.248800 5.654548 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.248800 4.240911 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.248900 0.154502 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.248900 -10.013637 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.248900 5.722078 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.248900 4.291559 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.249000 0.140947 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.249000 -10.121933 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.249000 5.783962 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.249000 4.337971 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.249100 0.127252 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.249100 -10.220239 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.249100 5.840137 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.249100 4.380102 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.249200 0.113436 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.249200 -10.308459 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.249200 5.890548 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.249200 4.417911 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.249300 0.099497 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.249300 -10.386507 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.249300 5.935147 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.249300 4.451360 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.249400 0.085467 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.249400 -10.454304 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.249400 5.973888 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.249400 4.480416 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.249500 0.071350 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.249500 -10.511785 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.249500 6.006734 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.249500 4.505051 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.249600 0.057165 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.249600 -10.558891 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.249600 6.033652 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.249600 4.525239 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.249700 0.042923 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.249700 -10.595577 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.249700 6.054615 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.249700 4.540961 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.249800 0.028637 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.249800 -10.621806 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.249800 6.069603 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.249800 4.552203 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 112 | 118 || 0.249900 0.014324 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 127 || 0.249900 -10.637553 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 128 || 0.249900 6.078602 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 83 | 119 | 129 || 0.249900 4.558951 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +16140 || Ending 83 +16140 || Initialization 130 +2 16140 || 130 | 159 | 165 || 0.000000 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.000000 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.000000 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.000000 -0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.000100 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.000100 -0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.000100 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.000100 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.000200 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.000200 -0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.000200 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.000200 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.000300 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.000300 -0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.000300 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.000300 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.000400 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.000400 -0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.000400 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.000400 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.000500 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.000500 -0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.000500 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.000500 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.000600 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.000600 -0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.000600 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.000600 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.000700 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.000700 -0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.000700 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.000700 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.000800 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.000800 -0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.000800 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.000800 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.000900 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.000900 -0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.000900 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.000900 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.001000 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.001000 -0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.001000 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.001000 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.001100 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.001100 -0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.001100 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.001100 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.001200 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.001200 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.001200 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.001200 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.001300 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.001300 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.001300 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.001300 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.001400 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.001400 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.001400 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.001400 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.001500 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.001500 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.001500 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.001500 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.001600 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.001600 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.001600 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.001600 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.001700 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.001700 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.001700 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.001700 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.001800 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.001800 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.001800 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.001800 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.001900 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.001900 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.001900 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.001900 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.002000 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.002000 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.002000 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.002000 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.002100 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.002100 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.002100 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.002100 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.002200 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.002200 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.002200 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.002200 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.002300 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.002300 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.002300 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.002300 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.002400 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.002400 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.002400 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.002400 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.002500 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.002500 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.002500 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.002500 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.002600 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.002600 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.002600 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.002600 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.002700 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.002700 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.002700 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.002700 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.002800 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.002800 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.002800 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.002800 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.002900 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.002900 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.002900 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.002900 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.003000 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.003000 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.003000 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.003000 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.003100 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.003100 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.003100 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.003100 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.003200 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.003200 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.003200 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.003200 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.003300 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.003300 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.003300 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.003300 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.003400 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.003400 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.003400 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.003400 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.003500 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.003500 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.003500 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.003500 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.003600 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.003600 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.003600 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.003600 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.003700 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.003700 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.003700 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.003700 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.003800 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.003800 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.003800 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.003800 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.003900 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.003900 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.003900 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.003900 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.004000 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.004000 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.004000 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.004000 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.004100 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.004100 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.004100 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.004100 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.004200 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.004200 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.004200 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.004200 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.004300 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.004300 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.004300 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.004300 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.004400 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.004400 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.004400 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.004400 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.004500 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.004500 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.004500 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.004500 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.004600 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.004600 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.004600 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.004600 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.004700 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.004700 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.004700 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.004700 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.004800 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.004800 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.004800 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.004800 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.004900 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.004900 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.004900 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.004900 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.005000 1.414000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.005000 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.005000 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.005000 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.005100 0.455903 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.005100 -0.334305 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.005100 0.191032 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.005100 0.143274 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.005200 0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.005200 -0.668278 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.005200 0.381873 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.005200 0.286405 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.005300 0.454102 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.005300 -1.001591 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.005300 0.572338 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.005300 0.429253 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.005400 0.452531 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.005400 -1.333915 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.005400 0.762237 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.005400 0.571678 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.005500 0.450512 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.005500 -1.664924 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.005500 0.951385 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.005500 0.713539 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.005600 0.448049 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.005600 -1.994290 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.005600 1.139594 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.005600 0.854696 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.005700 0.445144 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.005700 -2.321686 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.005700 1.326678 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.005700 0.995008 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.005800 0.441801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.005800 -2.646791 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.005800 1.512452 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.005800 1.134339 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.005900 0.438014 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.005900 -2.969284 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.005900 1.696734 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.005900 1.272550 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.006000 0.433800 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.006000 -3.288845 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.006000 1.879340 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.006000 1.409505 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.006100 0.429161 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.006100 -3.605161 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.006100 2.060092 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.006100 1.545069 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.006200 0.424092 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.006200 -3.917918 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.006200 2.238810 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.006200 1.679108 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.006300 0.418611 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.006300 -4.226809 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.006300 2.415319 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.006300 1.811489 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.006400 0.412713 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.006400 -4.531528 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.006400 2.589444 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.006400 1.942083 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.006500 0.406409 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.006500 -4.831775 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.006500 2.761014 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.006500 2.070761 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.006600 0.399708 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.006600 -5.127255 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.006600 2.929860 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.006600 2.197395 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.006700 0.392610 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.006700 -5.417675 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.006700 3.095815 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.006700 2.321861 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.006800 0.385125 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.006800 -5.702749 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.006800 3.258713 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.006800 2.444035 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.006900 0.377251 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.006900 -5.982194 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.006900 3.418396 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.006900 2.563797 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.007000 0.369011 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.007000 -6.255735 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.007000 3.574706 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.007000 2.681029 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.007100 0.360408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.007100 -6.523102 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.007100 3.727487 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.007100 2.795615 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.007200 0.351451 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.007200 -6.784031 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.007200 3.876589 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.007200 2.907442 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.007300 0.342142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.007300 -7.038265 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.007300 4.021865 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.007300 3.016399 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.007400 0.332498 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.007400 -7.285552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.007400 4.163173 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.007400 3.122380 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.007500 0.322526 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.007500 -7.525650 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.007500 4.300371 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.007500 3.225278 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.007600 0.312237 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.007600 -7.758320 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.007600 4.433326 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.007600 3.324994 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.007700 0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.007700 -7.983333 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.007700 4.561904 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.007700 3.421428 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.007800 0.290742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.007800 -8.200467 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.007800 4.685981 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.007800 3.514486 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.007900 0.279557 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.007900 -8.409509 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.007900 4.805434 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.007900 3.604075 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.008000 0.268113 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.008000 -8.610251 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.008000 4.920144 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.008000 3.690108 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.008100 0.256386 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.008100 -8.802497 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.008100 5.029998 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.008100 3.772499 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.008200 0.244405 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.008200 -8.986056 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.008200 5.134889 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.008200 3.851167 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.008300 0.232185 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.008300 -9.160747 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.008300 5.234712 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.008300 3.926034 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.008400 0.219738 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.008400 -9.326397 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.008400 5.329370 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.008400 3.997027 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.008500 0.207073 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.008500 -9.482843 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.008500 5.418768 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.008500 4.064076 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.008600 0.194205 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.008600 -9.629931 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.008600 5.502818 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.008600 4.127113 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.008700 0.181147 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.008700 -9.767514 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.008700 5.581437 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.008700 4.186078 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.008800 0.167908 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.008800 -9.895458 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.008800 5.654548 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.008800 4.240911 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.008900 0.154502 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.008900 -10.013637 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.008900 5.722078 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.008900 4.291559 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.009000 0.140947 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.009000 -10.121933 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.009000 5.783962 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.009000 4.337971 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.009100 0.127252 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.009100 -10.220239 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.009100 5.840137 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.009100 4.380102 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.009200 0.113436 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.009200 -10.308459 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.009200 5.890548 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.009200 4.417911 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.009300 0.099497 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.009300 -10.386507 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.009300 5.935147 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.009300 4.451360 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.009400 0.085467 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.009400 -10.454304 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.009400 5.973888 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.009400 4.480416 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.009500 0.071350 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.009500 -10.511785 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.009500 6.006734 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.009500 4.505051 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.009600 0.057165 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.009600 -10.558891 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.009600 6.033652 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.009600 4.525239 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.009700 0.042923 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.009700 -10.595577 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.009700 6.054615 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.009700 4.540961 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.009800 0.028637 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.009800 -10.621806 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.009800 6.069603 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.009800 4.552203 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.009900 0.014324 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.009900 -10.637553 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.009900 6.078602 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.009900 4.558951 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.010000 -0.000003 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.010000 -10.642802 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.010000 6.081601 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.010000 4.561201 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.010100 -0.014331 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.010100 -10.637548 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.010100 6.078599 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.010100 4.558949 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.010200 -0.028644 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.010200 -10.621796 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.010200 6.069598 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.010200 4.552198 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.010300 -0.042929 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.010300 -10.595562 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.010300 6.054607 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.010300 4.540955 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.010400 -0.057171 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.010400 -10.558870 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.010400 6.033640 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.010400 4.525230 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.010500 -0.071358 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.010500 -10.511759 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.010500 6.006720 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.010500 4.505040 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.010600 -0.085474 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.010600 -10.454275 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.010600 5.973871 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.010600 4.480403 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.010700 -0.099504 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.010700 -10.386472 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.010700 5.935127 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.010700 4.451345 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.010800 -0.113438 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.010800 -10.308420 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.010800 5.890526 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.010800 4.417894 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.010900 -0.127258 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.010900 -10.220194 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.010900 5.840111 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.010900 4.380083 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.011000 -0.140960 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.011000 -10.121883 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.011000 5.783933 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.011000 4.337950 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.011100 -0.154511 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.011100 -10.013583 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.011100 5.722047 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.011100 4.291535 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.011200 -0.167914 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.011200 -9.895400 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.011200 5.654514 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.011200 4.240886 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.011300 -0.181150 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.011300 -9.767451 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.011300 5.581401 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.011300 4.186051 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.011400 -0.194212 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.011400 -9.629863 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.011400 5.502779 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.011400 4.127084 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.011500 -0.207080 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.011500 -9.482772 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.011500 5.418727 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.011500 4.064045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.011600 -0.219742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.011600 -9.326321 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.011600 5.329326 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.011600 3.996995 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.011700 -0.232189 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.011700 -9.160667 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.011700 5.234667 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.011700 3.926000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.011800 -0.244408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.011800 -8.985971 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.011800 5.134841 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.011800 3.851131 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.011900 -0.256384 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.011900 -8.802408 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.011900 5.029947 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.011900 3.772460 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.012000 -0.268110 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.012000 -8.610158 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.012000 4.920090 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.012000 3.690068 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.012100 -0.279574 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.012100 -8.409411 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.012100 4.805378 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.012100 3.604033 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.012200 -0.290760 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.012200 -8.200365 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.012200 4.685923 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.012200 3.514442 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.012300 -0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.012300 -7.983227 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.012300 4.561844 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.012300 3.421383 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.012400 -0.312242 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.012400 -7.758210 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.012400 4.433263 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.012400 3.324947 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.012500 -0.322534 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.012500 -7.525537 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.012500 4.300307 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.012500 3.225230 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.012600 -0.332503 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.012600 -7.285437 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.012600 4.163107 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.012600 3.122330 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.012700 -0.342146 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.012700 -7.038146 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.012700 4.021798 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.012700 3.016348 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.012800 -0.351452 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.012800 -6.783909 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.012800 3.876519 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.012800 2.907390 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.012900 -0.360411 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.012900 -6.522977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.012900 3.727415 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.012900 2.795561 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.013000 -0.369018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.013000 -6.255607 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.013000 3.574633 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.013000 2.680975 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.013100 -0.377255 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.013100 -5.982064 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.013100 3.418322 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.013100 2.563742 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.013200 -0.385122 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.013200 -5.702616 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.013200 3.258638 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.013200 2.443978 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.013300 -0.392609 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.013300 -5.417540 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.013300 3.095737 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.013300 2.321803 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.013400 -0.399715 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.013400 -5.127118 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.013400 2.929782 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.013400 2.197336 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.013500 -0.406418 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.013500 -4.831635 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.013500 2.760935 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.013500 2.070701 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.013600 -0.412720 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.013600 -4.531384 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.013600 2.589362 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.013600 1.942022 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.013700 -0.418612 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.013700 -4.226663 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.013700 2.415236 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.013700 1.811427 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.013800 -0.424096 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.013800 -3.917771 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.013800 2.238726 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.013800 1.679045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.013900 -0.429162 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.013900 -3.605011 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.013900 2.060007 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.013900 1.545005 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.014000 -0.433801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.014000 -3.288695 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.014000 1.879254 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.014000 1.409441 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.014100 -0.438018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.014100 -2.969132 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.014100 1.696647 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.014100 1.272485 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.014200 -0.441797 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.014200 -2.646639 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.014200 1.512365 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.014200 1.134274 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.014300 -0.445142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.014300 -2.321533 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.014300 1.326590 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.014300 0.994943 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.014400 -0.448054 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.014400 -1.994136 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.014400 1.139506 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.014400 0.854630 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.014500 -0.450515 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.014500 -1.664770 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.014500 0.951297 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.014500 0.713473 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.014600 -0.452532 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.014600 -1.333761 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.014600 0.762149 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.014600 0.571612 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.014700 -0.454104 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.014700 -1.001435 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.014700 0.572248 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.014700 0.429186 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.014800 -0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.014800 -0.668120 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.014800 0.381783 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.014800 0.286337 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.014900 -0.455901 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.014900 -0.334147 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.014900 0.190941 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.014900 0.143206 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.015000 -0.456129 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.015000 0.000156 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.015000 -0.000089 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.015000 -0.000067 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.015100 -0.455903 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.015100 0.334460 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.015100 -0.191120 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.015100 -0.143340 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.015200 -0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.015200 0.668433 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.015200 -0.381962 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.015200 -0.286471 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.015300 -0.454102 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.015300 1.001746 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.015300 -0.572426 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.015300 -0.429320 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.015400 -0.452531 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.015400 1.334070 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.015400 -0.762326 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.015400 -0.571744 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.015500 -0.450512 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.015500 1.665079 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.015500 -0.951474 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.015500 -0.713605 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.015600 -0.448049 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.015600 1.994444 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.015600 -1.139682 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.015600 -0.854762 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.015700 -0.445144 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.015700 2.321841 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.015700 -1.326766 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.015700 -0.995075 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.015800 -0.441801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.015800 2.646946 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.015800 -1.512541 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.015800 -1.134405 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.015900 -0.438014 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.015900 2.969439 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.015900 -1.696822 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.015900 -1.272617 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.016000 -0.433800 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.016000 3.289000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.016000 -1.879429 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.016000 -1.409572 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.016100 -0.429161 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.016100 3.605315 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.016100 -2.060180 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.016100 -1.545135 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.016200 -0.424092 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.016200 3.918073 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.016200 -2.238899 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.016200 -1.679174 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.016300 -0.418611 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.016300 4.226963 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.016300 -2.415408 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.016300 -1.811556 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.016400 -0.412713 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.016400 4.531683 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.016400 -2.589533 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.016400 -1.942150 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.016500 -0.406409 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.016500 4.831930 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.016500 -2.761103 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.016500 -2.070827 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.016600 -0.399708 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.016600 5.127410 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.016600 -2.929949 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.016600 -2.197461 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.016700 -0.392610 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.016700 5.417830 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.016700 -3.095903 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.016700 -2.321927 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.016800 -0.385125 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.016800 5.702903 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.016800 -3.258802 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.016800 -2.444101 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.016900 -0.377251 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.016900 5.982348 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.016900 -3.418485 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.016900 -2.563864 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.017000 -0.369011 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.017000 6.255889 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.017000 -3.574794 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.017000 -2.681095 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.017100 -0.360408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.017100 6.523256 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.017100 -3.727575 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.017100 -2.795681 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.017200 -0.351451 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.017200 6.784185 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.017200 -3.876677 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.017200 -2.907508 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.017300 -0.342142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.017300 7.038419 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.017300 -4.021954 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.017300 -3.016465 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.017400 -0.332498 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.017400 7.285707 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.017400 -4.163261 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.017400 -3.122446 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.017500 -0.322526 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.017500 7.525805 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.017500 -4.300460 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.017500 -3.225345 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.017600 -0.312237 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.017600 7.758475 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.017600 -4.433414 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.017600 -3.325061 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.017700 -0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.017700 7.983487 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.017700 -4.561993 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.017700 -3.421495 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.017800 -0.290742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.017800 8.200622 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.017800 -4.686070 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.017800 -3.514552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.017900 -0.279557 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.017900 8.409664 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.017900 -4.805522 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.017900 -3.604142 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.018000 -0.268113 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.018000 8.610406 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.018000 -4.920232 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.018000 -3.690174 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.018100 -0.256386 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.018100 8.802651 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.018100 -5.030087 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.018100 -3.772565 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.018200 -0.244405 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.018200 8.986210 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.018200 -5.134977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.018200 -3.851233 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.018300 -0.232185 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.018300 9.160902 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.018300 -5.234801 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.018300 -3.926101 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.018400 -0.219738 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.018400 9.326552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.018400 -5.329458 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.018400 -3.997094 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.018500 -0.207073 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.018500 9.482998 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.018500 -5.418856 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.018500 -4.064142 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.018600 -0.194205 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.018600 9.630086 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.018600 -5.502906 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.018600 -4.127180 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.018700 -0.181147 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.018700 9.767669 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.018700 -5.581525 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.018700 -4.186144 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.018800 -0.167908 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.018800 9.895613 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.018800 -5.654636 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.018800 -4.240977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.018900 -0.154502 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.018900 10.013792 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.018900 -5.722167 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.018900 -4.291625 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.019000 -0.140947 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.019000 10.122088 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.019000 -5.784050 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.019000 -4.338038 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.019100 -0.127252 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.019100 10.220394 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.019100 -5.840225 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.019100 -4.380169 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.019200 -0.113436 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.019200 10.308614 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.019200 -5.890636 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.019200 -4.417977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.019300 -0.099497 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.019300 10.386662 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.019300 -5.935235 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.019300 -4.451426 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.019400 -0.085467 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.019400 10.454459 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.019400 -5.973977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.019400 -4.480483 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.019500 -0.071350 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.019500 10.511939 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.019500 -6.006823 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.019500 -4.505117 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.019600 -0.057165 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.019600 10.559045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.019600 -6.033740 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.019600 -4.525305 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.019700 -0.042923 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.019700 10.595731 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.019700 -6.054704 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.019700 -4.541028 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.019800 -0.028637 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.019800 10.621961 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.019800 -6.069692 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.019800 -4.552269 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.019900 -0.014324 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.019900 10.637708 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.019900 -6.078690 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.019900 -4.559018 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.020000 0.000003 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.020000 10.642957 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.020000 -6.081690 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.020000 -4.561267 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.020100 0.014331 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.020100 10.637703 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.020100 -6.078687 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.020100 -4.559015 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.020200 0.028644 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.020200 10.621951 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.020200 -6.069686 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.020200 -4.552265 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.020300 0.042929 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.020300 10.595716 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.020300 -6.054695 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.020300 -4.541021 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.020400 0.057171 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.020400 10.559025 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.020400 -6.033729 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.020400 -4.525297 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.020500 0.071358 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.020500 10.511914 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.020500 -6.006808 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.020500 -4.505106 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.020600 0.085474 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.020600 10.454429 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.020600 -5.973960 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.020600 -4.480470 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.020700 0.099504 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.020700 10.386627 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.020700 -5.935215 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.020700 -4.451412 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.020800 0.113438 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.020800 10.308575 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.020800 -5.890614 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.020800 -4.417961 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.020900 0.127258 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.020900 10.220348 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.020900 -5.840199 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.020900 -4.380149 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.021000 0.140960 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.021000 10.122038 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.021000 -5.784022 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.021000 -4.338016 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.021100 0.154511 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.021100 10.013738 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.021100 -5.722136 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.021100 -4.291602 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.021200 0.167914 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.021200 9.895555 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.021200 -5.654603 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.021200 -4.240952 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.021300 0.181150 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.021300 9.767606 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.021300 -5.581489 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.021300 -4.186117 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.021400 0.194212 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.021400 9.630018 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.021400 -5.502867 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.021400 -4.127151 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.021500 0.207080 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.021500 9.482927 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.021500 -5.418815 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.021500 -4.064111 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.021600 0.219742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.021600 9.326476 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.021600 -5.329415 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.021600 -3.997061 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.021700 0.232189 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.021700 9.160821 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.021700 -5.234755 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.021700 -3.926066 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.021800 0.244408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.021800 8.986126 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.021800 -5.134929 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.021800 -3.851197 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.021900 0.256384 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.021900 8.802562 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.021900 -5.030036 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.021900 -3.772527 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.022000 0.268110 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.022000 8.610312 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.022000 -4.920178 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.022000 -3.690134 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.022100 0.279574 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.022100 8.409566 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.022100 -4.805466 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.022100 -3.604100 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.022200 0.290760 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.022200 8.200520 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.022200 -4.686012 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.022200 -3.514509 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.022300 0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.022300 7.983382 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.022300 -4.561932 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.022300 -3.421449 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.022400 0.312242 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.022400 7.758365 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.022400 -4.433351 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.022400 -3.325014 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.022500 0.322534 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.022500 7.525692 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.022500 -4.300395 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.022500 -3.225297 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.022600 0.332503 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.022600 7.285592 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.022600 -4.163195 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.022600 -3.122396 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.022700 0.342146 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.022700 7.038301 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.022700 -4.021886 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.022700 -3.016415 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.022800 0.351452 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.022800 6.784064 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.022800 -3.876608 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.022800 -2.907456 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.022900 0.360411 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.022900 6.523131 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.022900 -3.727504 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.022900 -2.795628 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.023000 0.369018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.023000 6.255762 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.023000 -3.574721 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.023000 -2.681041 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.023100 0.377255 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.023100 5.982218 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.023100 -3.418411 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.023100 -2.563808 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.023200 0.385122 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.023200 5.702771 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.023200 -3.258726 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.023200 -2.444045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.023300 0.392609 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.023300 5.417695 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.023300 -3.095826 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.023300 -2.321869 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.023400 0.399715 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.023400 5.127273 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.023400 -2.929870 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.023400 -2.197403 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.023500 0.406418 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.023500 4.831790 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.023500 -2.761023 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.023500 -2.070767 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.023600 0.412720 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.023600 4.531539 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.023600 -2.589451 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.023600 -1.942088 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.023700 0.418612 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.023700 4.226818 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.023700 -2.415325 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.023700 -1.811493 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.023800 0.424096 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.023800 3.917925 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.023800 -2.238814 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.023800 -1.679111 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.023900 0.429162 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.023900 3.605166 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.023900 -2.060095 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.023900 -1.545071 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.024000 0.433801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.024000 3.288849 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.024000 -1.879343 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.024000 -1.409507 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.024100 0.438018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.024100 2.969287 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.024100 -1.696735 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.024100 -1.272552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.024200 0.441797 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.024200 2.646794 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.024200 -1.512454 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.024200 -1.134340 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.024300 0.445142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.024300 2.321688 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.024300 -1.326679 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.024300 -0.995009 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.024400 0.448054 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.024400 1.994291 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.024400 -1.139595 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.024400 -0.854696 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.024500 0.450515 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.024500 1.664925 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.024500 -0.951386 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.024500 -0.713539 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.024600 0.452532 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.024600 1.333915 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.024600 -0.762237 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.024600 -0.571678 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.024700 0.454104 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.024700 1.001589 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.024700 -0.572337 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.024700 -0.429253 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.024800 0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.024800 0.668274 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.024800 -0.381871 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.024800 -0.286403 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.024900 0.455901 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.024900 0.334302 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.024900 -0.191030 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.024900 -0.143272 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.025000 0.456129 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.025000 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.025000 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.025000 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.025100 0.455903 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.025100 -0.334305 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.025100 0.191032 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.025100 0.143274 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.025200 0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.025200 -0.668278 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.025200 0.381873 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.025200 0.286405 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.025300 0.454102 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.025300 -1.001591 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.025300 0.572338 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.025300 0.429253 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.025400 0.452531 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.025400 -1.333915 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.025400 0.762237 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.025400 0.571678 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.025500 0.450512 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.025500 -1.664924 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.025500 0.951385 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.025500 0.713539 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.025600 0.448049 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.025600 -1.994290 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.025600 1.139594 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.025600 0.854696 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.025700 0.445144 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.025700 -2.321686 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.025700 1.326678 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.025700 0.995008 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.025800 0.441801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.025800 -2.646791 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.025800 1.512452 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.025800 1.134339 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.025900 0.438014 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.025900 -2.969284 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.025900 1.696734 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.025900 1.272550 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.026000 0.433800 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.026000 -3.288845 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.026000 1.879340 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.026000 1.409505 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.026100 0.429161 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.026100 -3.605161 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.026100 2.060092 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.026100 1.545069 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.026200 0.424092 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.026200 -3.917918 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.026200 2.238810 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.026200 1.679108 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.026300 0.418611 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.026300 -4.226809 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.026300 2.415319 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.026300 1.811489 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.026400 0.412713 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.026400 -4.531528 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.026400 2.589444 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.026400 1.942083 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.026500 0.406409 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.026500 -4.831775 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.026500 2.761014 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.026500 2.070761 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.026600 0.399708 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.026600 -5.127255 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.026600 2.929860 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.026600 2.197395 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.026700 0.392610 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.026700 -5.417675 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.026700 3.095815 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.026700 2.321861 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.026800 0.385125 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.026800 -5.702749 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.026800 3.258713 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.026800 2.444035 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.026900 0.377251 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.026900 -5.982194 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.026900 3.418396 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.026900 2.563797 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.027000 0.369011 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.027000 -6.255735 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.027000 3.574706 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.027000 2.681029 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.027100 0.360408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.027100 -6.523102 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.027100 3.727487 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.027100 2.795615 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.027200 0.351451 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.027200 -6.784031 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.027200 3.876589 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.027200 2.907442 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.027300 0.342142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.027300 -7.038265 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.027300 4.021865 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.027300 3.016399 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.027400 0.332498 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.027400 -7.285552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.027400 4.163173 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.027400 3.122380 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.027500 0.322526 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.027500 -7.525650 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.027500 4.300371 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.027500 3.225278 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.027600 0.312237 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.027600 -7.758320 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.027600 4.433326 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.027600 3.324994 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.027700 0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.027700 -7.983333 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.027700 4.561904 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.027700 3.421428 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.027800 0.290742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.027800 -8.200467 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.027800 4.685981 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.027800 3.514486 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.027900 0.279557 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.027900 -8.409509 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.027900 4.805434 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.027900 3.604075 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.028000 0.268113 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.028000 -8.610251 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.028000 4.920144 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.028000 3.690108 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.028100 0.256386 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.028100 -8.802497 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.028100 5.029998 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.028100 3.772499 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.028200 0.244405 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.028200 -8.986056 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.028200 5.134889 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.028200 3.851167 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.028300 0.232185 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.028300 -9.160747 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.028300 5.234712 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.028300 3.926034 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.028400 0.219738 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.028400 -9.326397 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.028400 5.329370 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.028400 3.997027 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.028500 0.207073 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.028500 -9.482843 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.028500 5.418768 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.028500 4.064076 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.028600 0.194205 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.028600 -9.629931 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.028600 5.502818 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.028600 4.127113 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.028700 0.181147 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.028700 -9.767514 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.028700 5.581437 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.028700 4.186078 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.028800 0.167908 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.028800 -9.895458 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.028800 5.654548 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.028800 4.240911 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.028900 0.154502 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.028900 -10.013637 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.028900 5.722078 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.028900 4.291559 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.029000 0.140947 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.029000 -10.121933 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.029000 5.783962 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.029000 4.337971 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.029100 0.127252 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.029100 -10.220239 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.029100 5.840137 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.029100 4.380102 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.029200 0.113436 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.029200 -10.308459 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.029200 5.890548 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.029200 4.417911 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.029300 0.099497 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.029300 -10.386507 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.029300 5.935147 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.029300 4.451360 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.029400 0.085467 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.029400 -10.454304 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.029400 5.973888 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.029400 4.480416 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.029500 0.071350 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.029500 -10.511785 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.029500 6.006734 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.029500 4.505051 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.029600 0.057165 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.029600 -10.558891 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.029600 6.033652 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.029600 4.525239 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.029700 0.042923 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.029700 -10.595577 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.029700 6.054615 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.029700 4.540961 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.029800 0.028637 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.029800 -10.621806 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.029800 6.069603 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.029800 4.552203 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.029900 0.014324 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.029900 -10.637553 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.029900 6.078602 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.029900 4.558951 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.030000 -0.000003 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.030000 -10.642802 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.030000 6.081601 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.030000 4.561201 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.030100 -0.014331 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.030100 -10.637548 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.030100 6.078599 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.030100 4.558949 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.030200 -0.028644 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.030200 -10.621796 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.030200 6.069598 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.030200 4.552198 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.030300 -0.042929 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.030300 -10.595562 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.030300 6.054607 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.030300 4.540955 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.030400 -0.057171 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.030400 -10.558870 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.030400 6.033640 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.030400 4.525230 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.030500 -0.071358 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.030500 -10.511759 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.030500 6.006720 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.030500 4.505040 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.030600 -0.085474 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.030600 -10.454275 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.030600 5.973871 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.030600 4.480403 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.030700 -0.099504 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.030700 -10.386472 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.030700 5.935127 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.030700 4.451345 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.030800 -0.113438 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.030800 -10.308420 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.030800 5.890526 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.030800 4.417894 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.030900 -0.127258 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.030900 -10.220194 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.030900 5.840111 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.030900 4.380083 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.031000 -0.140960 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.031000 -10.121883 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.031000 5.783933 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.031000 4.337950 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.031100 -0.154511 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.031100 -10.013583 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.031100 5.722047 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.031100 4.291535 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.031200 -0.167914 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.031200 -9.895400 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.031200 5.654514 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.031200 4.240886 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.031300 -0.181150 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.031300 -9.767451 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.031300 5.581401 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.031300 4.186051 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.031400 -0.194212 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.031400 -9.629863 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.031400 5.502779 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.031400 4.127084 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.031500 -0.207080 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.031500 -9.482772 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.031500 5.418727 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.031500 4.064045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.031600 -0.219742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.031600 -9.326321 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.031600 5.329326 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.031600 3.996995 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.031700 -0.232189 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.031700 -9.160667 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.031700 5.234667 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.031700 3.926000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.031800 -0.244408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.031800 -8.985971 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.031800 5.134841 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.031800 3.851131 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.031900 -0.256384 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.031900 -8.802408 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.031900 5.029947 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.031900 3.772460 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.032000 -0.268110 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.032000 -8.610158 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.032000 4.920090 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.032000 3.690068 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.032100 -0.279574 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.032100 -8.409411 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.032100 4.805378 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.032100 3.604033 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.032200 -0.290760 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.032200 -8.200365 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.032200 4.685923 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.032200 3.514442 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.032300 -0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.032300 -7.983227 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.032300 4.561844 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.032300 3.421383 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.032400 -0.312242 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.032400 -7.758210 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.032400 4.433263 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.032400 3.324947 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.032500 -0.322534 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.032500 -7.525537 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.032500 4.300307 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.032500 3.225230 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.032600 -0.332503 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.032600 -7.285437 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.032600 4.163107 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.032600 3.122330 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.032700 -0.342146 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.032700 -7.038146 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.032700 4.021798 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.032700 3.016348 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.032800 -0.351452 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.032800 -6.783909 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.032800 3.876519 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.032800 2.907390 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.032900 -0.360411 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.032900 -6.522977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.032900 3.727415 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.032900 2.795561 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.033000 -0.369018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.033000 -6.255607 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.033000 3.574633 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.033000 2.680975 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.033100 -0.377255 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.033100 -5.982064 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.033100 3.418322 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.033100 2.563742 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.033200 -0.385122 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.033200 -5.702616 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.033200 3.258638 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.033200 2.443978 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.033300 -0.392609 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.033300 -5.417540 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.033300 3.095737 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.033300 2.321803 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.033400 -0.399715 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.033400 -5.127118 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.033400 2.929782 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.033400 2.197336 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.033500 -0.406418 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.033500 -4.831635 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.033500 2.760935 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.033500 2.070701 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.033600 -0.412720 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.033600 -4.531384 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.033600 2.589362 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.033600 1.942022 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.033700 -0.418612 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.033700 -4.226663 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.033700 2.415236 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.033700 1.811427 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.033800 -0.424096 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.033800 -3.917771 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.033800 2.238726 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.033800 1.679045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.033900 -0.429162 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.033900 -3.605011 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.033900 2.060007 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.033900 1.545005 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.034000 -0.433801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.034000 -3.288695 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.034000 1.879254 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.034000 1.409441 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.034100 -0.438018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.034100 -2.969132 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.034100 1.696647 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.034100 1.272485 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.034200 -0.441797 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.034200 -2.646639 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.034200 1.512365 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.034200 1.134274 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.034300 -0.445142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.034300 -2.321533 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.034300 1.326590 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.034300 0.994943 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.034400 -0.448054 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.034400 -1.994136 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.034400 1.139506 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.034400 0.854630 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.034500 -0.450515 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.034500 -1.664770 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.034500 0.951297 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.034500 0.713473 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.034600 -0.452532 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.034600 -1.333761 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.034600 0.762149 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.034600 0.571612 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.034700 -0.454104 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.034700 -1.001435 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.034700 0.572248 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.034700 0.429186 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.034800 -0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.034800 -0.668120 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.034800 0.381783 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.034800 0.286337 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.034900 -0.455901 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.034900 -0.334147 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.034900 0.190941 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.034900 0.143206 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.035000 -0.456129 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.035000 0.000156 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.035000 -0.000089 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.035000 -0.000067 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.035100 -0.455903 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.035100 0.334460 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.035100 -0.191120 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.035100 -0.143340 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.035200 -0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.035200 0.668433 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.035200 -0.381962 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.035200 -0.286471 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.035300 -0.454102 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.035300 1.001746 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.035300 -0.572426 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.035300 -0.429320 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.035400 -0.452531 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.035400 1.334070 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.035400 -0.762326 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.035400 -0.571744 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.035500 -0.450512 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.035500 1.665079 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.035500 -0.951474 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.035500 -0.713605 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.035600 -0.448049 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.035600 1.994444 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.035600 -1.139682 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.035600 -0.854762 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.035700 -0.445144 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.035700 2.321841 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.035700 -1.326766 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.035700 -0.995075 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.035800 -0.441801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.035800 2.646946 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.035800 -1.512541 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.035800 -1.134405 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.035900 -0.438014 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.035900 2.969439 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.035900 -1.696822 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.035900 -1.272617 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.036000 -0.433800 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.036000 3.289000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.036000 -1.879429 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.036000 -1.409572 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.036100 -0.429161 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.036100 3.605315 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.036100 -2.060180 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.036100 -1.545135 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.036200 -0.424092 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.036200 3.918073 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.036200 -2.238899 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.036200 -1.679174 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.036300 -0.418611 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.036300 4.226963 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.036300 -2.415408 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.036300 -1.811556 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.036400 -0.412713 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.036400 4.531683 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.036400 -2.589533 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.036400 -1.942150 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.036500 -0.406409 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.036500 4.831930 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.036500 -2.761103 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.036500 -2.070827 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.036600 -0.399708 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.036600 5.127410 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.036600 -2.929949 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.036600 -2.197461 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.036700 -0.392610 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.036700 5.417830 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.036700 -3.095903 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.036700 -2.321927 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.036800 -0.385125 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.036800 5.702903 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.036800 -3.258802 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.036800 -2.444101 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.036900 -0.377251 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.036900 5.982348 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.036900 -3.418485 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.036900 -2.563864 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.037000 -0.369011 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.037000 6.255889 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.037000 -3.574794 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.037000 -2.681095 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.037100 -0.360408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.037100 6.523256 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.037100 -3.727575 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.037100 -2.795681 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.037200 -0.351451 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.037200 6.784185 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.037200 -3.876677 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.037200 -2.907508 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.037300 -0.342142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.037300 7.038419 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.037300 -4.021954 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.037300 -3.016465 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.037400 -0.332498 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.037400 7.285707 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.037400 -4.163261 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.037400 -3.122446 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.037500 -0.322526 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.037500 7.525805 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.037500 -4.300460 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.037500 -3.225345 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.037600 -0.312237 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.037600 7.758475 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.037600 -4.433414 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.037600 -3.325061 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.037700 -0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.037700 7.983487 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.037700 -4.561993 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.037700 -3.421495 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.037800 -0.290742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.037800 8.200622 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.037800 -4.686070 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.037800 -3.514552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.037900 -0.279557 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.037900 8.409664 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.037900 -4.805522 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.037900 -3.604142 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.038000 -0.268113 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.038000 8.610406 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.038000 -4.920232 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.038000 -3.690174 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.038100 -0.256386 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.038100 8.802651 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.038100 -5.030087 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.038100 -3.772565 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.038200 -0.244405 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.038200 8.986210 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.038200 -5.134977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.038200 -3.851233 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.038300 -0.232185 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.038300 9.160902 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.038300 -5.234801 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.038300 -3.926101 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.038400 -0.219738 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.038400 9.326552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.038400 -5.329458 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.038400 -3.997094 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.038500 -0.207073 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.038500 9.482998 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.038500 -5.418856 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.038500 -4.064142 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.038600 -0.194205 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.038600 9.630086 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.038600 -5.502906 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.038600 -4.127180 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.038700 -0.181147 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.038700 9.767669 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.038700 -5.581525 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.038700 -4.186144 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.038800 -0.167908 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.038800 9.895613 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.038800 -5.654636 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.038800 -4.240977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.038900 -0.154502 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.038900 10.013792 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.038900 -5.722167 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.038900 -4.291625 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.039000 -0.140947 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.039000 10.122088 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.039000 -5.784050 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.039000 -4.338038 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.039100 -0.127252 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.039100 10.220394 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.039100 -5.840225 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.039100 -4.380169 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.039200 -0.113436 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.039200 10.308614 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.039200 -5.890636 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.039200 -4.417977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.039300 -0.099497 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.039300 10.386662 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.039300 -5.935235 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.039300 -4.451426 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.039400 -0.085467 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.039400 10.454459 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.039400 -5.973977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.039400 -4.480483 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.039500 -0.071350 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.039500 10.511939 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.039500 -6.006823 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.039500 -4.505117 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.039600 -0.057165 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.039600 10.559045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.039600 -6.033740 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.039600 -4.525305 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.039700 -0.042923 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.039700 10.595731 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.039700 -6.054704 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.039700 -4.541028 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.039800 -0.028637 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.039800 10.621961 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.039800 -6.069692 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.039800 -4.552269 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.039900 -0.014324 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.039900 10.637708 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.039900 -6.078690 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.039900 -4.559018 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.040000 0.000003 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.040000 10.642957 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.040000 -6.081690 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.040000 -4.561267 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.040100 0.014331 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.040100 10.637703 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.040100 -6.078687 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.040100 -4.559015 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.040200 0.028644 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.040200 10.621951 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.040200 -6.069686 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.040200 -4.552265 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.040300 0.042929 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.040300 10.595716 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.040300 -6.054695 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.040300 -4.541021 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.040400 0.057171 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.040400 10.559025 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.040400 -6.033729 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.040400 -4.525297 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.040500 0.071358 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.040500 10.511914 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.040500 -6.006808 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.040500 -4.505106 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.040600 0.085474 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.040600 10.454429 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.040600 -5.973960 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.040600 -4.480470 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.040700 0.099504 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.040700 10.386627 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.040700 -5.935215 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.040700 -4.451412 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.040800 0.113438 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.040800 10.308575 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.040800 -5.890614 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.040800 -4.417961 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.040900 0.127258 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.040900 10.220348 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.040900 -5.840199 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.040900 -4.380149 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.041000 0.140960 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.041000 10.122038 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.041000 -5.784022 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.041000 -4.338016 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.041100 0.154511 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.041100 10.013738 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.041100 -5.722136 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.041100 -4.291602 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.041200 0.167914 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.041200 9.895555 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.041200 -5.654603 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.041200 -4.240952 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.041300 0.181150 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.041300 9.767606 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.041300 -5.581489 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.041300 -4.186117 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.041400 0.194212 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.041400 9.630018 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.041400 -5.502867 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.041400 -4.127151 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.041500 0.207080 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.041500 9.482927 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.041500 -5.418815 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.041500 -4.064111 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.041600 0.219742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.041600 9.326476 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.041600 -5.329415 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.041600 -3.997061 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.041700 0.232189 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.041700 9.160821 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.041700 -5.234755 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.041700 -3.926066 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.041800 0.244408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.041800 8.986126 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.041800 -5.134929 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.041800 -3.851197 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.041900 0.256384 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.041900 8.802562 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.041900 -5.030036 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.041900 -3.772527 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.042000 0.268110 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.042000 8.610312 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.042000 -4.920178 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.042000 -3.690134 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.042100 0.279574 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.042100 8.409566 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.042100 -4.805466 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.042100 -3.604100 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.042200 0.290760 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.042200 8.200520 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.042200 -4.686012 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.042200 -3.514509 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.042300 0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.042300 7.983382 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.042300 -4.561932 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.042300 -3.421449 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.042400 0.312242 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.042400 7.758365 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.042400 -4.433351 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.042400 -3.325014 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.042500 0.322534 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.042500 7.525692 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.042500 -4.300395 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.042500 -3.225297 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.042600 0.332503 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.042600 7.285592 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.042600 -4.163195 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.042600 -3.122396 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.042700 0.342146 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.042700 7.038301 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.042700 -4.021886 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.042700 -3.016415 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.042800 0.351452 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.042800 6.784064 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.042800 -3.876608 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.042800 -2.907456 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.042900 0.360411 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.042900 6.523131 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.042900 -3.727504 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.042900 -2.795628 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.043000 0.369018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.043000 6.255762 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.043000 -3.574721 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.043000 -2.681041 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.043100 0.377255 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.043100 5.982218 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.043100 -3.418411 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.043100 -2.563808 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.043200 0.385122 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.043200 5.702771 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.043200 -3.258726 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.043200 -2.444045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.043300 0.392609 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.043300 5.417695 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.043300 -3.095826 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.043300 -2.321869 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.043400 0.399715 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.043400 5.127273 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.043400 -2.929870 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.043400 -2.197403 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.043500 0.406418 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.043500 4.831790 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.043500 -2.761023 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.043500 -2.070767 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.043600 0.412720 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.043600 4.531539 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.043600 -2.589451 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.043600 -1.942088 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.043700 0.418612 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.043700 4.226818 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.043700 -2.415325 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.043700 -1.811493 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.043800 0.424096 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.043800 3.917925 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.043800 -2.238814 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.043800 -1.679111 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.043900 0.429162 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.043900 3.605166 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.043900 -2.060095 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.043900 -1.545071 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.044000 0.433801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.044000 3.288849 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.044000 -1.879343 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.044000 -1.409507 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.044100 0.438018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.044100 2.969287 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.044100 -1.696735 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.044100 -1.272552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.044200 0.441797 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.044200 2.646794 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.044200 -1.512454 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.044200 -1.134340 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.044300 0.445142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.044300 2.321688 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.044300 -1.326679 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.044300 -0.995009 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.044400 0.448054 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.044400 1.994291 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.044400 -1.139595 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.044400 -0.854696 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.044500 0.450515 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.044500 1.664925 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.044500 -0.951386 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.044500 -0.713539 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.044600 0.452532 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.044600 1.333915 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.044600 -0.762237 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.044600 -0.571678 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.044700 0.454104 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.044700 1.001589 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.044700 -0.572337 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.044700 -0.429253 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.044800 0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.044800 0.668274 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.044800 -0.381871 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.044800 -0.286403 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.044900 0.455901 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.044900 0.334302 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.044900 -0.191030 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.044900 -0.143272 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.045000 0.456129 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.045000 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.045000 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.045000 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.045100 0.455903 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.045100 -0.334305 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.045100 0.191032 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.045100 0.143274 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.045200 0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.045200 -0.668278 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.045200 0.381873 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.045200 0.286405 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.045300 0.454102 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.045300 -1.001591 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.045300 0.572338 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.045300 0.429253 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.045400 0.452531 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.045400 -1.333915 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.045400 0.762237 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.045400 0.571678 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.045500 0.450512 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.045500 -1.664924 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.045500 0.951385 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.045500 0.713539 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.045600 0.448049 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.045600 -1.994290 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.045600 1.139594 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.045600 0.854696 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.045700 0.445144 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.045700 -2.321686 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.045700 1.326678 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.045700 0.995008 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.045800 0.441801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.045800 -2.646791 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.045800 1.512452 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.045800 1.134339 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.045900 0.438014 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.045900 -2.969284 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.045900 1.696734 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.045900 1.272550 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.046000 0.433800 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.046000 -3.288845 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.046000 1.879340 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.046000 1.409505 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.046100 0.429161 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.046100 -3.605161 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.046100 2.060092 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.046100 1.545069 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.046200 0.424092 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.046200 -3.917918 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.046200 2.238810 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.046200 1.679108 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.046300 0.418611 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.046300 -4.226809 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.046300 2.415319 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.046300 1.811489 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.046400 0.412713 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.046400 -4.531528 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.046400 2.589444 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.046400 1.942083 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.046500 0.406409 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.046500 -4.831775 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.046500 2.761014 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.046500 2.070761 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.046600 0.399708 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.046600 -5.127255 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.046600 2.929860 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.046600 2.197395 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.046700 0.392610 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.046700 -5.417675 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.046700 3.095815 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.046700 2.321861 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.046800 0.385125 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.046800 -5.702749 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.046800 3.258713 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.046800 2.444035 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.046900 0.377251 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.046900 -5.982194 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.046900 3.418396 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.046900 2.563797 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.047000 0.369011 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.047000 -6.255735 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.047000 3.574706 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.047000 2.681029 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.047100 0.360408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.047100 -6.523102 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.047100 3.727487 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.047100 2.795615 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.047200 0.351451 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.047200 -6.784031 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.047200 3.876589 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.047200 2.907442 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.047300 0.342142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.047300 -7.038265 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.047300 4.021865 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.047300 3.016399 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.047400 0.332498 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.047400 -7.285552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.047400 4.163173 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.047400 3.122380 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.047500 0.322526 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.047500 -7.525650 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.047500 4.300371 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.047500 3.225278 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.047600 0.312237 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.047600 -7.758320 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.047600 4.433326 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.047600 3.324994 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.047700 0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.047700 -7.983333 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.047700 4.561904 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.047700 3.421428 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.047800 0.290742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.047800 -8.200467 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.047800 4.685981 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.047800 3.514486 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.047900 0.279557 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.047900 -8.409509 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.047900 4.805434 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.047900 3.604075 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.048000 0.268113 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.048000 -8.610251 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.048000 4.920144 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.048000 3.690108 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.048100 0.256386 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.048100 -8.802497 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.048100 5.029998 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.048100 3.772499 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.048200 0.244405 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.048200 -8.986056 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.048200 5.134889 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.048200 3.851167 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.048300 0.232185 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.048300 -9.160747 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.048300 5.234712 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.048300 3.926034 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.048400 0.219738 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.048400 -9.326397 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.048400 5.329370 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.048400 3.997027 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.048500 0.207073 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.048500 -9.482843 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.048500 5.418768 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.048500 4.064076 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.048600 0.194205 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.048600 -9.629931 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.048600 5.502818 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.048600 4.127113 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.048700 0.181147 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.048700 -9.767514 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.048700 5.581437 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.048700 4.186078 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.048800 0.167908 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.048800 -9.895458 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.048800 5.654548 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.048800 4.240911 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.048900 0.154502 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.048900 -10.013637 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.048900 5.722078 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.048900 4.291559 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.049000 0.140947 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.049000 -10.121933 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.049000 5.783962 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.049000 4.337971 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.049100 0.127252 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.049100 -10.220239 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.049100 5.840137 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.049100 4.380102 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.049200 0.113436 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.049200 -10.308459 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.049200 5.890548 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.049200 4.417911 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.049300 0.099497 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.049300 -10.386507 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.049300 5.935147 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.049300 4.451360 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.049400 0.085467 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.049400 -10.454304 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.049400 5.973888 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.049400 4.480416 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.049500 0.071350 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.049500 -10.511785 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.049500 6.006734 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.049500 4.505051 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.049600 0.057165 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.049600 -10.558891 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.049600 6.033652 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.049600 4.525239 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.049700 0.042923 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.049700 -10.595577 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.049700 6.054615 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.049700 4.540961 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.049800 0.028637 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.049800 -10.621806 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.049800 6.069603 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.049800 4.552203 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.049900 0.014324 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.049900 -10.637553 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.049900 6.078602 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.049900 4.558951 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.050000 -0.000003 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.050000 -10.642802 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.050000 6.081601 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.050000 4.561201 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.050100 -0.014331 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.050100 -10.637548 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.050100 6.078599 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.050100 4.558949 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.050200 -0.028644 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.050200 -10.621796 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.050200 6.069598 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.050200 4.552198 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.050300 -0.042929 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.050300 -10.595562 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.050300 6.054607 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.050300 4.540955 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.050400 -0.057171 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.050400 -10.558870 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.050400 6.033640 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.050400 4.525230 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.050500 -0.071358 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.050500 -10.511759 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.050500 6.006720 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.050500 4.505040 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.050600 -0.085474 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.050600 -10.454275 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.050600 5.973871 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.050600 4.480403 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.050700 -0.099504 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.050700 -10.386472 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.050700 5.935127 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.050700 4.451345 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.050800 -0.113438 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.050800 -10.308420 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.050800 5.890526 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.050800 4.417894 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.050900 -0.127258 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.050900 -10.220194 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.050900 5.840111 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.050900 4.380083 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.051000 -0.140960 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.051000 -10.121883 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.051000 5.783933 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.051000 4.337950 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.051100 -0.154511 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.051100 -10.013583 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.051100 5.722047 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.051100 4.291535 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.051200 -0.167914 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.051200 -9.895400 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.051200 5.654514 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.051200 4.240886 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.051300 -0.181150 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.051300 -9.767451 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.051300 5.581401 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.051300 4.186051 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.051400 -0.194212 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.051400 -9.629863 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.051400 5.502779 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.051400 4.127084 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.051500 -0.207080 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.051500 -9.482772 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.051500 5.418727 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.051500 4.064045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.051600 -0.219742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.051600 -9.326321 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.051600 5.329326 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.051600 3.996995 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.051700 -0.232189 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.051700 -9.160667 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.051700 5.234667 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.051700 3.926000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.051800 -0.244408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.051800 -8.985971 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.051800 5.134841 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.051800 3.851131 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.051900 -0.256384 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.051900 -8.802408 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.051900 5.029947 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.051900 3.772460 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.052000 -0.268110 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.052000 -8.610158 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.052000 4.920090 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.052000 3.690068 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.052100 -0.279574 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.052100 -8.409411 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.052100 4.805378 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.052100 3.604033 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.052200 -0.290760 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.052200 -8.200365 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.052200 4.685923 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.052200 3.514442 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.052300 -0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.052300 -7.983227 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.052300 4.561844 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.052300 3.421383 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.052400 -0.312242 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.052400 -7.758210 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.052400 4.433263 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.052400 3.324947 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.052500 -0.322534 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.052500 -7.525537 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.052500 4.300307 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.052500 3.225230 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.052600 -0.332503 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.052600 -7.285437 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.052600 4.163107 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.052600 3.122330 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.052700 -0.342146 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.052700 -7.038146 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.052700 4.021798 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.052700 3.016348 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.052800 -0.351452 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.052800 -6.783909 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.052800 3.876519 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.052800 2.907390 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.052900 -0.360411 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.052900 -6.522977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.052900 3.727415 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.052900 2.795561 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.053000 -0.369018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.053000 -6.255607 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.053000 3.574633 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.053000 2.680975 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.053100 -0.377255 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.053100 -5.982064 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.053100 3.418322 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.053100 2.563742 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.053200 -0.385122 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.053200 -5.702616 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.053200 3.258638 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.053200 2.443978 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.053300 -0.392609 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.053300 -5.417540 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.053300 3.095737 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.053300 2.321803 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.053400 -0.399715 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.053400 -5.127118 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.053400 2.929782 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.053400 2.197336 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.053500 -0.406418 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.053500 -4.831635 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.053500 2.760935 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.053500 2.070701 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.053600 -0.412720 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.053600 -4.531384 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.053600 2.589362 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.053600 1.942022 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.053700 -0.418612 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.053700 -4.226663 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.053700 2.415236 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.053700 1.811427 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.053800 -0.424096 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.053800 -3.917771 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.053800 2.238726 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.053800 1.679045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.053900 -0.429162 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.053900 -3.605011 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.053900 2.060007 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.053900 1.545005 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.054000 -0.433801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.054000 -3.288695 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.054000 1.879254 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.054000 1.409441 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.054100 -0.438018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.054100 -2.969132 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.054100 1.696647 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.054100 1.272485 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.054200 -0.441797 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.054200 -2.646639 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.054200 1.512365 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.054200 1.134274 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.054300 -0.445142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.054300 -2.321533 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.054300 1.326590 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.054300 0.994943 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.054400 -0.448054 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.054400 -1.994136 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.054400 1.139506 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.054400 0.854630 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.054500 -0.450515 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.054500 -1.664770 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.054500 0.951297 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.054500 0.713473 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.054600 -0.452532 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.054600 -1.333761 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.054600 0.762149 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.054600 0.571612 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.054700 -0.454104 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.054700 -1.001435 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.054700 0.572248 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.054700 0.429186 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.054800 -0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.054800 -0.668120 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.054800 0.381783 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.054800 0.286337 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.054900 -0.455901 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.054900 -0.334147 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.054900 0.190941 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.054900 0.143206 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.055000 -0.456129 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.055000 0.000156 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.055000 -0.000089 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.055000 -0.000067 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.055100 -0.455903 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.055100 0.334460 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.055100 -0.191120 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.055100 -0.143340 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.055200 -0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.055200 0.668433 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.055200 -0.381962 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.055200 -0.286471 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.055300 -0.454102 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.055300 1.001746 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.055300 -0.572426 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.055300 -0.429320 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.055400 -0.452531 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.055400 1.334070 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.055400 -0.762326 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.055400 -0.571744 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.055500 -0.450512 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.055500 1.665079 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.055500 -0.951474 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.055500 -0.713605 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.055600 -0.448049 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.055600 1.994444 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.055600 -1.139682 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.055600 -0.854762 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.055700 -0.445144 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.055700 2.321841 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.055700 -1.326766 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.055700 -0.995075 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.055800 -0.441801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.055800 2.646946 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.055800 -1.512541 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.055800 -1.134405 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.055900 -0.438014 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.055900 2.969439 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.055900 -1.696822 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.055900 -1.272617 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.056000 -0.433800 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.056000 3.289000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.056000 -1.879429 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.056000 -1.409572 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.056100 -0.429161 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.056100 3.605315 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.056100 -2.060180 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.056100 -1.545135 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.056200 -0.424092 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.056200 3.918073 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.056200 -2.238899 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.056200 -1.679174 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.056300 -0.418611 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.056300 4.226963 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.056300 -2.415408 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.056300 -1.811556 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.056400 -0.412713 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.056400 4.531683 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.056400 -2.589533 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.056400 -1.942150 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.056500 -0.406409 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.056500 4.831930 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.056500 -2.761103 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.056500 -2.070827 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.056600 -0.399708 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.056600 5.127410 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.056600 -2.929949 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.056600 -2.197461 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.056700 -0.392610 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.056700 5.417830 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.056700 -3.095903 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.056700 -2.321927 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.056800 -0.385125 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.056800 5.702903 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.056800 -3.258802 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.056800 -2.444101 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.056900 -0.377251 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.056900 5.982348 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.056900 -3.418485 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.056900 -2.563864 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.057000 -0.369011 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.057000 6.255889 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.057000 -3.574794 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.057000 -2.681095 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.057100 -0.360408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.057100 6.523256 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.057100 -3.727575 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.057100 -2.795681 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.057200 -0.351451 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.057200 6.784185 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.057200 -3.876677 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.057200 -2.907508 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.057300 -0.342142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.057300 7.038419 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.057300 -4.021954 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.057300 -3.016465 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.057400 -0.332498 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.057400 7.285707 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.057400 -4.163261 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.057400 -3.122446 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.057500 -0.322526 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.057500 7.525805 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.057500 -4.300460 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.057500 -3.225345 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.057600 -0.312237 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.057600 7.758475 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.057600 -4.433414 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.057600 -3.325061 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.057700 -0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.057700 7.983487 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.057700 -4.561993 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.057700 -3.421495 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.057800 -0.290742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.057800 8.200622 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.057800 -4.686070 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.057800 -3.514552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.057900 -0.279557 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.057900 8.409664 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.057900 -4.805522 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.057900 -3.604142 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.058000 -0.268113 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.058000 8.610406 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.058000 -4.920232 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.058000 -3.690174 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.058100 -0.256386 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.058100 8.802651 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.058100 -5.030087 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.058100 -3.772565 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.058200 -0.244405 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.058200 8.986210 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.058200 -5.134977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.058200 -3.851233 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.058300 -0.232185 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.058300 9.160902 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.058300 -5.234801 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.058300 -3.926101 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.058400 -0.219738 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.058400 9.326552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.058400 -5.329458 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.058400 -3.997094 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.058500 -0.207073 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.058500 9.482998 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.058500 -5.418856 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.058500 -4.064142 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.058600 -0.194205 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.058600 9.630086 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.058600 -5.502906 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.058600 -4.127180 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.058700 -0.181147 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.058700 9.767669 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.058700 -5.581525 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.058700 -4.186144 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.058800 -0.167908 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.058800 9.895613 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.058800 -5.654636 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.058800 -4.240977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.058900 -0.154502 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.058900 10.013792 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.058900 -5.722167 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.058900 -4.291625 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.059000 -0.140947 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.059000 10.122088 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.059000 -5.784050 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.059000 -4.338038 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.059100 -0.127252 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.059100 10.220394 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.059100 -5.840225 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.059100 -4.380169 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.059200 -0.113436 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.059200 10.308614 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.059200 -5.890636 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.059200 -4.417977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.059300 -0.099497 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.059300 10.386662 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.059300 -5.935235 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.059300 -4.451426 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.059400 -0.085467 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.059400 10.454459 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.059400 -5.973977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.059400 -4.480483 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.059500 -0.071350 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.059500 10.511939 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.059500 -6.006823 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.059500 -4.505117 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.059600 -0.057165 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.059600 10.559045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.059600 -6.033740 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.059600 -4.525305 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.059700 -0.042923 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.059700 10.595731 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.059700 -6.054704 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.059700 -4.541028 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.059800 -0.028637 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.059800 10.621961 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.059800 -6.069692 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.059800 -4.552269 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.059900 -0.014324 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.059900 10.637708 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.059900 -6.078690 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.059900 -4.559018 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.060000 0.000003 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.060000 10.642957 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.060000 -6.081690 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.060000 -4.561267 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.060100 0.014331 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.060100 10.637703 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.060100 -6.078687 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.060100 -4.559015 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.060200 0.028644 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.060200 10.621951 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.060200 -6.069686 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.060200 -4.552265 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.060300 0.042929 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.060300 10.595716 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.060300 -6.054695 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.060300 -4.541021 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.060400 0.057171 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.060400 10.559025 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.060400 -6.033729 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.060400 -4.525297 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.060500 0.071358 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.060500 10.511914 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.060500 -6.006808 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.060500 -4.505106 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.060600 0.085474 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.060600 10.454429 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.060600 -5.973960 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.060600 -4.480470 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.060700 0.099504 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.060700 10.386627 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.060700 -5.935215 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.060700 -4.451412 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.060800 0.113438 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.060800 10.308575 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.060800 -5.890614 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.060800 -4.417961 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.060900 0.127258 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.060900 10.220348 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.060900 -5.840199 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.060900 -4.380149 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.061000 0.140960 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.061000 10.122038 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.061000 -5.784022 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.061000 -4.338016 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.061100 0.154511 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.061100 10.013738 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.061100 -5.722136 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.061100 -4.291602 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.061200 0.167914 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.061200 9.895555 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.061200 -5.654603 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.061200 -4.240952 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.061300 0.181150 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.061300 9.767606 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.061300 -5.581489 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.061300 -4.186117 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.061400 0.194212 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.061400 9.630018 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.061400 -5.502867 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.061400 -4.127151 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.061500 0.207080 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.061500 9.482927 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.061500 -5.418815 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.061500 -4.064111 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.061600 0.219742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.061600 9.326476 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.061600 -5.329415 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.061600 -3.997061 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.061700 0.232189 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.061700 9.160821 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.061700 -5.234755 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.061700 -3.926066 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.061800 0.244408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.061800 8.986126 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.061800 -5.134929 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.061800 -3.851197 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.061900 0.256384 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.061900 8.802562 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.061900 -5.030036 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.061900 -3.772527 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.062000 0.268110 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.062000 8.610312 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.062000 -4.920178 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.062000 -3.690134 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.062100 0.279574 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.062100 8.409566 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.062100 -4.805466 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.062100 -3.604100 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.062200 0.290760 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.062200 8.200520 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.062200 -4.686012 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.062200 -3.514509 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.062300 0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.062300 7.983382 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.062300 -4.561932 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.062300 -3.421449 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.062400 0.312242 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.062400 7.758365 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.062400 -4.433351 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.062400 -3.325014 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.062500 0.322534 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.062500 7.525692 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.062500 -4.300395 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.062500 -3.225297 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.062600 0.332503 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.062600 7.285592 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.062600 -4.163195 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.062600 -3.122396 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.062700 0.342146 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.062700 7.038301 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.062700 -4.021886 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.062700 -3.016415 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.062800 0.351452 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.062800 6.784064 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.062800 -3.876608 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.062800 -2.907456 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.062900 0.360411 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.062900 6.523131 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.062900 -3.727504 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.062900 -2.795628 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.063000 0.369018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.063000 6.255762 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.063000 -3.574721 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.063000 -2.681041 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.063100 0.377255 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.063100 5.982218 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.063100 -3.418411 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.063100 -2.563808 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.063200 0.385122 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.063200 5.702771 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.063200 -3.258726 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.063200 -2.444045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.063300 0.392609 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.063300 5.417695 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.063300 -3.095826 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.063300 -2.321869 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.063400 0.399715 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.063400 5.127273 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.063400 -2.929870 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.063400 -2.197403 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.063500 0.406418 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.063500 4.831790 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.063500 -2.761023 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.063500 -2.070767 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.063600 0.412720 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.063600 4.531539 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.063600 -2.589451 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.063600 -1.942088 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.063700 0.418612 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.063700 4.226818 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.063700 -2.415325 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.063700 -1.811493 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.063800 0.424096 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.063800 3.917925 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.063800 -2.238814 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.063800 -1.679111 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.063900 0.429162 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.063900 3.605166 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.063900 -2.060095 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.063900 -1.545071 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.064000 0.433801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.064000 3.288849 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.064000 -1.879343 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.064000 -1.409507 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.064100 0.438018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.064100 2.969287 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.064100 -1.696735 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.064100 -1.272552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.064200 0.441797 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.064200 2.646794 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.064200 -1.512454 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.064200 -1.134340 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.064300 0.445142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.064300 2.321688 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.064300 -1.326679 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.064300 -0.995009 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.064400 0.448054 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.064400 1.994291 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.064400 -1.139595 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.064400 -0.854696 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.064500 0.450515 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.064500 1.664925 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.064500 -0.951386 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.064500 -0.713539 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.064600 0.452532 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.064600 1.333915 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.064600 -0.762237 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.064600 -0.571678 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.064700 0.454104 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.064700 1.001589 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.064700 -0.572337 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.064700 -0.429253 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.064800 0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.064800 0.668274 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.064800 -0.381871 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.064800 -0.286403 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.064900 0.455901 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.064900 0.334302 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.064900 -0.191030 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.064900 -0.143272 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.065000 0.456129 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.065000 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.065000 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.065000 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.065100 0.455903 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.065100 -0.334305 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.065100 0.191032 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.065100 0.143274 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.065200 0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.065200 -0.668278 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.065200 0.381873 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.065200 0.286405 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.065300 0.454102 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.065300 -1.001591 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.065300 0.572338 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.065300 0.429253 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.065400 0.452531 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.065400 -1.333915 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.065400 0.762237 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.065400 0.571678 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.065500 0.450512 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.065500 -1.664924 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.065500 0.951385 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.065500 0.713539 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.065600 0.448049 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.065600 -1.994290 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.065600 1.139594 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.065600 0.854696 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.065700 0.445144 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.065700 -2.321686 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.065700 1.326678 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.065700 0.995008 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.065800 0.441801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.065800 -2.646791 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.065800 1.512452 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.065800 1.134339 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.065900 0.438014 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.065900 -2.969284 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.065900 1.696734 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.065900 1.272550 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.066000 0.433800 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.066000 -3.288845 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.066000 1.879340 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.066000 1.409505 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.066100 0.429161 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.066100 -3.605161 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.066100 2.060092 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.066100 1.545069 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.066200 0.424092 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.066200 -3.917918 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.066200 2.238810 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.066200 1.679108 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.066300 0.418611 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.066300 -4.226809 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.066300 2.415319 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.066300 1.811489 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.066400 0.412713 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.066400 -4.531528 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.066400 2.589444 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.066400 1.942083 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.066500 0.406409 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.066500 -4.831775 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.066500 2.761014 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.066500 2.070761 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.066600 0.399708 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.066600 -5.127255 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.066600 2.929860 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.066600 2.197395 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.066700 0.392610 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.066700 -5.417675 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.066700 3.095815 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.066700 2.321861 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.066800 0.385125 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.066800 -5.702749 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.066800 3.258713 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.066800 2.444035 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.066900 0.377251 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.066900 -5.982194 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.066900 3.418396 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.066900 2.563797 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.067000 0.369011 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.067000 -6.255735 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.067000 3.574706 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.067000 2.681029 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.067100 0.360408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.067100 -6.523102 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.067100 3.727487 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.067100 2.795615 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.067200 0.351451 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.067200 -6.784031 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.067200 3.876589 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.067200 2.907442 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.067300 0.342142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.067300 -7.038265 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.067300 4.021865 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.067300 3.016399 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.067400 0.332498 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.067400 -7.285552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.067400 4.163173 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.067400 3.122380 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.067500 0.322526 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.067500 -7.525650 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.067500 4.300371 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.067500 3.225278 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.067600 0.312237 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.067600 -7.758320 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.067600 4.433326 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.067600 3.324994 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.067700 0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.067700 -7.983333 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.067700 4.561904 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.067700 3.421428 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.067800 0.290742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.067800 -8.200467 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.067800 4.685981 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.067800 3.514486 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.067900 0.279557 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.067900 -8.409509 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.067900 4.805434 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.067900 3.604075 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.068000 0.268113 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.068000 -8.610251 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.068000 4.920144 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.068000 3.690108 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.068100 0.256386 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.068100 -8.802497 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.068100 5.029998 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.068100 3.772499 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.068200 0.244405 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.068200 -8.986056 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.068200 5.134889 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.068200 3.851167 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.068300 0.232185 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.068300 -9.160747 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.068300 5.234712 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.068300 3.926034 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.068400 0.219738 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.068400 -9.326397 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.068400 5.329370 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.068400 3.997027 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.068500 0.207073 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.068500 -9.482843 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.068500 5.418768 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.068500 4.064076 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.068600 0.194205 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.068600 -9.629931 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.068600 5.502818 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.068600 4.127113 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.068700 0.181147 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.068700 -9.767514 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.068700 5.581437 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.068700 4.186078 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.068800 0.167908 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.068800 -9.895458 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.068800 5.654548 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.068800 4.240911 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.068900 0.154502 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.068900 -10.013637 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.068900 5.722078 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.068900 4.291559 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.069000 0.140947 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.069000 -10.121933 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.069000 5.783962 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.069000 4.337971 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.069100 0.127252 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.069100 -10.220239 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.069100 5.840137 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.069100 4.380102 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.069200 0.113436 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.069200 -10.308459 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.069200 5.890548 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.069200 4.417911 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.069300 0.099497 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.069300 -10.386507 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.069300 5.935147 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.069300 4.451360 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.069400 0.085467 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.069400 -10.454304 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.069400 5.973888 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.069400 4.480416 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.069500 0.071350 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.069500 -10.511785 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.069500 6.006734 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.069500 4.505051 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.069600 0.057165 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.069600 -10.558891 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.069600 6.033652 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.069600 4.525239 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.069700 0.042923 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.069700 -10.595577 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.069700 6.054615 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.069700 4.540961 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.069800 0.028637 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.069800 -10.621806 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.069800 6.069603 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.069800 4.552203 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.069900 0.014324 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.069900 -10.637553 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.069900 6.078602 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.069900 4.558951 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.070000 -0.000003 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.070000 -10.642802 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.070000 6.081601 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.070000 4.561201 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.070100 -0.014331 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.070100 -10.637548 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.070100 6.078599 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.070100 4.558949 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.070200 -0.028644 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.070200 -10.621796 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.070200 6.069598 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.070200 4.552198 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.070300 -0.042929 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.070300 -10.595562 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.070300 6.054607 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.070300 4.540955 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.070400 -0.057171 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.070400 -10.558870 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.070400 6.033640 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.070400 4.525230 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.070500 -0.071358 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.070500 -10.511759 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.070500 6.006720 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.070500 4.505040 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.070600 -0.085474 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.070600 -10.454275 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.070600 5.973871 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.070600 4.480403 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.070700 -0.099504 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.070700 -10.386472 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.070700 5.935127 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.070700 4.451345 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.070800 -0.113438 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.070800 -10.308420 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.070800 5.890526 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.070800 4.417894 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.070900 -0.127258 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.070900 -10.220194 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.070900 5.840111 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.070900 4.380083 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.071000 -0.140960 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.071000 -10.121883 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.071000 5.783933 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.071000 4.337950 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.071100 -0.154511 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.071100 -10.013583 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.071100 5.722047 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.071100 4.291535 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.071200 -0.167914 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.071200 -9.895400 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.071200 5.654514 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.071200 4.240886 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.071300 -0.181150 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.071300 -9.767451 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.071300 5.581401 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.071300 4.186051 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.071400 -0.194212 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.071400 -9.629863 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.071400 5.502779 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.071400 4.127084 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.071500 -0.207080 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.071500 -9.482772 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.071500 5.418727 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.071500 4.064045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.071600 -0.219742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.071600 -9.326321 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.071600 5.329326 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.071600 3.996995 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.071700 -0.232189 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.071700 -9.160667 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.071700 5.234667 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.071700 3.926000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.071800 -0.244408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.071800 -8.985971 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.071800 5.134841 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.071800 3.851131 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.071900 -0.256384 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.071900 -8.802408 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.071900 5.029947 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.071900 3.772460 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.072000 -0.268110 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.072000 -8.610158 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.072000 4.920090 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.072000 3.690068 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.072100 -0.279574 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.072100 -8.409411 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.072100 4.805378 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.072100 3.604033 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.072200 -0.290760 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.072200 -8.200365 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.072200 4.685923 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.072200 3.514442 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.072300 -0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.072300 -7.983227 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.072300 4.561844 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.072300 3.421383 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.072400 -0.312242 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.072400 -7.758210 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.072400 4.433263 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.072400 3.324947 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.072500 -0.322534 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.072500 -7.525537 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.072500 4.300307 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.072500 3.225230 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.072600 -0.332503 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.072600 -7.285437 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.072600 4.163107 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.072600 3.122330 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.072700 -0.342146 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.072700 -7.038146 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.072700 4.021798 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.072700 3.016348 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.072800 -0.351452 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.072800 -6.783909 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.072800 3.876519 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.072800 2.907390 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.072900 -0.360411 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.072900 -6.522977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.072900 3.727415 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.072900 2.795561 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.073000 -0.369018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.073000 -6.255607 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.073000 3.574633 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.073000 2.680975 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.073100 -0.377255 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.073100 -5.982064 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.073100 3.418322 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.073100 2.563742 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.073200 -0.385122 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.073200 -5.702616 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.073200 3.258638 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.073200 2.443978 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.073300 -0.392609 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.073300 -5.417540 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.073300 3.095737 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.073300 2.321803 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.073400 -0.399715 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.073400 -5.127118 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.073400 2.929782 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.073400 2.197336 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.073500 -0.406418 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.073500 -4.831635 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.073500 2.760935 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.073500 2.070701 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.073600 -0.412720 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.073600 -4.531384 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.073600 2.589362 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.073600 1.942022 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.073700 -0.418612 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.073700 -4.226663 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.073700 2.415236 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.073700 1.811427 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.073800 -0.424096 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.073800 -3.917771 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.073800 2.238726 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.073800 1.679045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.073900 -0.429162 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.073900 -3.605011 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.073900 2.060007 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.073900 1.545005 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.074000 -0.433801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.074000 -3.288695 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.074000 1.879254 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.074000 1.409441 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.074100 -0.438018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.074100 -2.969132 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.074100 1.696647 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.074100 1.272485 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.074200 -0.441797 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.074200 -2.646639 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.074200 1.512365 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.074200 1.134274 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.074300 -0.445142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.074300 -2.321533 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.074300 1.326590 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.074300 0.994943 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.074400 -0.448054 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.074400 -1.994136 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.074400 1.139506 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.074400 0.854630 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.074500 -0.450515 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.074500 -1.664770 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.074500 0.951297 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.074500 0.713473 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.074600 -0.452532 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.074600 -1.333761 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.074600 0.762149 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.074600 0.571612 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.074700 -0.454104 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.074700 -1.001435 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.074700 0.572248 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.074700 0.429186 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.074800 -0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.074800 -0.668120 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.074800 0.381783 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.074800 0.286337 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.074900 -0.455901 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.074900 -0.334147 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.074900 0.190941 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.074900 0.143206 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.075000 -0.456129 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.075000 0.000156 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.075000 -0.000089 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.075000 -0.000067 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.075100 -0.455903 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.075100 0.334460 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.075100 -0.191120 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.075100 -0.143340 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.075200 -0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.075200 0.668433 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.075200 -0.381962 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.075200 -0.286471 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.075300 -0.454102 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.075300 1.001746 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.075300 -0.572426 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.075300 -0.429320 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.075400 -0.452531 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.075400 1.334070 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.075400 -0.762326 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.075400 -0.571744 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.075500 -0.450512 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.075500 1.665079 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.075500 -0.951474 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.075500 -0.713605 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.075600 -0.448049 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.075600 1.994444 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.075600 -1.139682 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.075600 -0.854762 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.075700 -0.445144 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.075700 2.321841 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.075700 -1.326766 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.075700 -0.995075 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.075800 -0.441801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.075800 2.646946 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.075800 -1.512541 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.075800 -1.134405 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.075900 -0.438014 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.075900 2.969439 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.075900 -1.696822 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.075900 -1.272617 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.076000 -0.433800 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.076000 3.289000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.076000 -1.879429 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.076000 -1.409572 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.076100 -0.429161 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.076100 3.605315 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.076100 -2.060180 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.076100 -1.545135 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.076200 -0.424092 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.076200 3.918073 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.076200 -2.238899 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.076200 -1.679174 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.076300 -0.418611 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.076300 4.226963 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.076300 -2.415408 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.076300 -1.811556 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.076400 -0.412713 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.076400 4.531683 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.076400 -2.589533 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.076400 -1.942150 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.076500 -0.406409 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.076500 4.831930 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.076500 -2.761103 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.076500 -2.070827 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.076600 -0.399708 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.076600 5.127410 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.076600 -2.929949 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.076600 -2.197461 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.076700 -0.392610 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.076700 5.417830 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.076700 -3.095903 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.076700 -2.321927 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.076800 -0.385125 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.076800 5.702903 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.076800 -3.258802 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.076800 -2.444101 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.076900 -0.377251 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.076900 5.982348 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.076900 -3.418485 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.076900 -2.563864 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.077000 -0.369011 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.077000 6.255889 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.077000 -3.574794 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.077000 -2.681095 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.077100 -0.360408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.077100 6.523256 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.077100 -3.727575 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.077100 -2.795681 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.077200 -0.351451 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.077200 6.784185 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.077200 -3.876677 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.077200 -2.907508 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.077300 -0.342142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.077300 7.038419 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.077300 -4.021954 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.077300 -3.016465 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.077400 -0.332498 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.077400 7.285707 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.077400 -4.163261 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.077400 -3.122446 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.077500 -0.322526 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.077500 7.525805 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.077500 -4.300460 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.077500 -3.225345 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.077600 -0.312237 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.077600 7.758475 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.077600 -4.433414 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.077600 -3.325061 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.077700 -0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.077700 7.983487 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.077700 -4.561993 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.077700 -3.421495 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.077800 -0.290742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.077800 8.200622 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.077800 -4.686070 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.077800 -3.514552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.077900 -0.279557 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.077900 8.409664 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.077900 -4.805522 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.077900 -3.604142 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.078000 -0.268113 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.078000 8.610406 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.078000 -4.920232 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.078000 -3.690174 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.078100 -0.256386 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.078100 8.802651 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.078100 -5.030087 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.078100 -3.772565 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.078200 -0.244405 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.078200 8.986210 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.078200 -5.134977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.078200 -3.851233 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.078300 -0.232185 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.078300 9.160902 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.078300 -5.234801 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.078300 -3.926101 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.078400 -0.219738 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.078400 9.326552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.078400 -5.329458 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.078400 -3.997094 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.078500 -0.207073 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.078500 9.482998 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.078500 -5.418856 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.078500 -4.064142 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.078600 -0.194205 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.078600 9.630086 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.078600 -5.502906 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.078600 -4.127180 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.078700 -0.181147 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.078700 9.767669 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.078700 -5.581525 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.078700 -4.186144 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.078800 -0.167908 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.078800 9.895613 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.078800 -5.654636 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.078800 -4.240977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.078900 -0.154502 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.078900 10.013792 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.078900 -5.722167 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.078900 -4.291625 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.079000 -0.140947 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.079000 10.122088 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.079000 -5.784050 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.079000 -4.338038 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.079100 -0.127252 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.079100 10.220394 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.079100 -5.840225 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.079100 -4.380169 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.079200 -0.113436 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.079200 10.308614 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.079200 -5.890636 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.079200 -4.417977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.079300 -0.099497 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.079300 10.386662 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.079300 -5.935235 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.079300 -4.451426 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.079400 -0.085467 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.079400 10.454459 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.079400 -5.973977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.079400 -4.480483 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.079500 -0.071350 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.079500 10.511939 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.079500 -6.006823 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.079500 -4.505117 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.079600 -0.057165 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.079600 10.559045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.079600 -6.033740 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.079600 -4.525305 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.079700 -0.042923 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.079700 10.595731 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.079700 -6.054704 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.079700 -4.541028 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.079800 -0.028637 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.079800 10.621961 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.079800 -6.069692 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.079800 -4.552269 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.079900 -0.014324 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.079900 10.637708 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.079900 -6.078690 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.079900 -4.559018 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.080000 0.000003 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.080000 10.642957 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.080000 -6.081690 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.080000 -4.561267 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.080100 0.014331 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.080100 10.637703 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.080100 -6.078687 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.080100 -4.559015 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.080200 0.028644 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.080200 10.621951 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.080200 -6.069686 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.080200 -4.552265 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.080300 0.042929 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.080300 10.595716 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.080300 -6.054695 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.080300 -4.541021 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.080400 0.057171 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.080400 10.559025 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.080400 -6.033729 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.080400 -4.525297 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.080500 0.071358 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.080500 10.511914 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.080500 -6.006808 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.080500 -4.505106 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.080600 0.085474 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.080600 10.454429 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.080600 -5.973960 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.080600 -4.480470 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.080700 0.099504 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.080700 10.386627 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.080700 -5.935215 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.080700 -4.451412 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.080800 0.113438 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.080800 10.308575 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.080800 -5.890614 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.080800 -4.417961 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.080900 0.127258 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.080900 10.220348 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.080900 -5.840199 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.080900 -4.380149 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.081000 0.140960 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.081000 10.122038 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.081000 -5.784022 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.081000 -4.338016 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.081100 0.154511 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.081100 10.013738 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.081100 -5.722136 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.081100 -4.291602 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.081200 0.167914 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.081200 9.895555 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.081200 -5.654603 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.081200 -4.240952 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.081300 0.181150 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.081300 9.767606 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.081300 -5.581489 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.081300 -4.186117 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.081400 0.194212 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.081400 9.630018 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.081400 -5.502867 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.081400 -4.127151 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.081500 0.207080 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.081500 9.482926 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.081500 -5.418815 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.081500 -4.064111 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.081600 0.219742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.081600 9.326476 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.081600 -5.329415 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.081600 -3.997061 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.081700 0.232189 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.081700 9.160821 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.081700 -5.234755 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.081700 -3.926066 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.081800 0.244408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.081800 8.986126 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.081800 -5.134929 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.081800 -3.851197 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.081900 0.256384 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.081900 8.802562 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.081900 -5.030036 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.081900 -3.772527 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.082000 0.268110 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.082000 8.610312 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.082000 -4.920178 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.082000 -3.690134 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.082100 0.279574 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.082100 8.409566 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.082100 -4.805466 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.082100 -3.604100 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.082200 0.290760 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.082200 8.200520 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.082200 -4.686012 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.082200 -3.514509 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.082300 0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.082300 7.983382 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.082300 -4.561932 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.082300 -3.421449 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.082400 0.312242 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.082400 7.758365 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.082400 -4.433351 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.082400 -3.325014 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.082500 0.322534 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.082500 7.525692 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.082500 -4.300395 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.082500 -3.225297 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.082600 0.332503 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.082600 7.285592 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.082600 -4.163195 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.082600 -3.122396 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.082700 0.342146 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.082700 7.038301 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.082700 -4.021886 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.082700 -3.016415 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.082800 0.351452 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.082800 6.784064 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.082800 -3.876608 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.082800 -2.907456 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.082900 0.360411 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.082900 6.523131 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.082900 -3.727504 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.082900 -2.795628 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.083000 0.369018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.083000 6.255762 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.083000 -3.574721 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.083000 -2.681041 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.083100 0.377255 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.083100 5.982218 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.083100 -3.418410 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.083100 -2.563808 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.083200 0.385122 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.083200 5.702771 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.083200 -3.258726 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.083200 -2.444045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.083300 0.392609 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.083300 5.417695 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.083300 -3.095826 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.083300 -2.321869 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.083400 0.399715 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.083400 5.127273 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.083400 -2.929870 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.083400 -2.197403 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.083500 0.406418 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.083500 4.831790 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.083500 -2.761023 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.083500 -2.070767 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.083600 0.412720 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.083600 4.531539 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.083600 -2.589451 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.083600 -1.942088 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.083700 0.418612 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.083700 4.226818 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.083700 -2.415325 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.083700 -1.811493 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.083800 0.424096 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.083800 3.917925 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.083800 -2.238814 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.083800 -1.679111 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.083900 0.429162 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.083900 3.605166 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.083900 -2.060095 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.083900 -1.545071 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.084000 0.433801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.084000 3.288849 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.084000 -1.879343 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.084000 -1.409507 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.084100 0.438018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.084100 2.969287 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.084100 -1.696735 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.084100 -1.272552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.084200 0.441797 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.084200 2.646794 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.084200 -1.512454 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.084200 -1.134340 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.084300 0.445142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.084300 2.321688 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.084300 -1.326679 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.084300 -0.995009 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.084400 0.448054 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.084400 1.994291 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.084400 -1.139595 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.084400 -0.854696 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.084500 0.450515 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.084500 1.664925 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.084500 -0.951386 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.084500 -0.713539 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.084600 0.452532 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.084600 1.333915 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.084600 -0.762237 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.084600 -0.571678 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.084700 0.454104 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.084700 1.001589 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.084700 -0.572337 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.084700 -0.429253 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.084800 0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.084800 0.668274 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.084800 -0.381871 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.084800 -0.286403 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.084900 0.455901 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.084900 0.334302 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.084900 -0.191030 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.084900 -0.143272 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.085000 0.456129 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.085000 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.085000 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.085000 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.085100 0.455903 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.085100 -0.334305 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.085100 0.191032 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.085100 0.143274 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.085200 0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.085200 -0.668278 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.085200 0.381873 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.085200 0.286405 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.085300 0.454102 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.085300 -1.001591 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.085300 0.572338 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.085300 0.429253 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.085400 0.452531 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.085400 -1.333915 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.085400 0.762237 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.085400 0.571678 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.085500 0.450512 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.085500 -1.664924 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.085500 0.951385 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.085500 0.713539 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.085600 0.448049 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.085600 -1.994290 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.085600 1.139594 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.085600 0.854696 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.085700 0.445144 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.085700 -2.321686 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.085700 1.326678 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.085700 0.995008 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.085800 0.441801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.085800 -2.646791 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.085800 1.512452 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.085800 1.134339 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.085900 0.438014 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.085900 -2.969284 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.085900 1.696734 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.085900 1.272550 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.086000 0.433800 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.086000 -3.288845 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.086000 1.879340 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.086000 1.409505 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.086100 0.429161 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.086100 -3.605161 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.086100 2.060092 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.086100 1.545069 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.086200 0.424092 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.086200 -3.917918 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.086200 2.238810 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.086200 1.679108 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.086300 0.418611 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.086300 -4.226809 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.086300 2.415319 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.086300 1.811489 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.086400 0.412713 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.086400 -4.531528 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.086400 2.589444 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.086400 1.942083 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.086500 0.406409 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.086500 -4.831775 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.086500 2.761014 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.086500 2.070761 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.086600 0.399708 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.086600 -5.127255 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.086600 2.929860 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.086600 2.197395 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.086700 0.392610 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.086700 -5.417675 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.086700 3.095815 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.086700 2.321861 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.086800 0.385125 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.086800 -5.702749 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.086800 3.258713 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.086800 2.444035 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.086900 0.377251 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.086900 -5.982194 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.086900 3.418396 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.086900 2.563797 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.087000 0.369011 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.087000 -6.255735 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.087000 3.574706 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.087000 2.681029 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.087100 0.360408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.087100 -6.523102 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.087100 3.727487 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.087100 2.795615 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.087200 0.351451 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.087200 -6.784031 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.087200 3.876589 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.087200 2.907442 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.087300 0.342142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.087300 -7.038265 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.087300 4.021865 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.087300 3.016399 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.087400 0.332498 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.087400 -7.285552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.087400 4.163173 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.087400 3.122380 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.087500 0.322526 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.087500 -7.525650 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.087500 4.300371 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.087500 3.225278 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.087600 0.312237 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.087600 -7.758320 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.087600 4.433326 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.087600 3.324994 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.087700 0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.087700 -7.983333 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.087700 4.561904 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.087700 3.421428 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.087800 0.290742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.087800 -8.200467 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.087800 4.685981 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.087800 3.514486 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.087900 0.279557 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.087900 -8.409509 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.087900 4.805434 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.087900 3.604075 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.088000 0.268113 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.088000 -8.610251 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.088000 4.920144 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.088000 3.690108 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.088100 0.256386 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.088100 -8.802497 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.088100 5.029998 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.088100 3.772499 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.088200 0.244405 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.088200 -8.986056 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.088200 5.134889 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.088200 3.851167 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.088300 0.232185 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.088300 -9.160747 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.088300 5.234712 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.088300 3.926034 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.088400 0.219738 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.088400 -9.326397 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.088400 5.329370 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.088400 3.997027 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.088500 0.207073 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.088500 -9.482843 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.088500 5.418768 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.088500 4.064076 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.088600 0.194205 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.088600 -9.629931 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.088600 5.502818 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.088600 4.127113 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.088700 0.181147 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.088700 -9.767514 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.088700 5.581437 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.088700 4.186078 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.088800 0.167908 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.088800 -9.895458 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.088800 5.654548 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.088800 4.240911 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.088900 0.154502 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.088900 -10.013637 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.088900 5.722078 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.088900 4.291559 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.089000 0.140947 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.089000 -10.121933 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.089000 5.783962 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.089000 4.337971 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.089100 0.127252 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.089100 -10.220239 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.089100 5.840137 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.089100 4.380102 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.089200 0.113436 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.089200 -10.308459 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.089200 5.890548 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.089200 4.417911 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.089300 0.099497 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.089300 -10.386507 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.089300 5.935147 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.089300 4.451360 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.089400 0.085467 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.089400 -10.454304 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.089400 5.973888 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.089400 4.480416 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.089500 0.071350 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.089500 -10.511785 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.089500 6.006734 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.089500 4.505051 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.089600 0.057165 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.089600 -10.558891 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.089600 6.033652 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.089600 4.525239 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.089700 0.042923 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.089700 -10.595577 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.089700 6.054615 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.089700 4.540961 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.089800 0.028637 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.089800 -10.621806 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.089800 6.069603 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.089800 4.552203 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.089900 0.014324 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.089900 -10.637553 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.089900 6.078602 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.089900 4.558951 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.090000 -0.000003 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.090000 -10.642802 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.090000 6.081601 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.090000 4.561201 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.090100 -0.014331 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.090100 -10.637548 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.090100 6.078599 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.090100 4.558949 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.090200 -0.028644 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.090200 -10.621796 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.090200 6.069598 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.090200 4.552198 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.090300 -0.042929 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.090300 -10.595562 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.090300 6.054607 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.090300 4.540955 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.090400 -0.057171 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.090400 -10.558871 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.090400 6.033640 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.090400 4.525230 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.090500 -0.071358 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.090500 -10.511759 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.090500 6.006720 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.090500 4.505040 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.090600 -0.085474 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.090600 -10.454275 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.090600 5.973871 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.090600 4.480403 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.090700 -0.099504 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.090700 -10.386472 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.090700 5.935127 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.090700 4.451345 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.090800 -0.113438 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.090800 -10.308420 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.090800 5.890526 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.090800 4.417894 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.090900 -0.127258 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.090900 -10.220194 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.090900 5.840111 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.090900 4.380083 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.091000 -0.140960 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.091000 -10.121883 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.091000 5.783933 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.091000 4.337950 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.091100 -0.154511 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.091100 -10.013583 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.091100 5.722047 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.091100 4.291535 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.091200 -0.167914 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.091200 -9.895400 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.091200 5.654514 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.091200 4.240886 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.091300 -0.181150 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.091300 -9.767451 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.091300 5.581401 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.091300 4.186051 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.091400 -0.194212 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.091400 -9.629863 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.091400 5.502779 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.091400 4.127084 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.091500 -0.207080 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.091500 -9.482772 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.091500 5.418727 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.091500 4.064045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.091600 -0.219742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.091600 -9.326321 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.091600 5.329326 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.091600 3.996995 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.091700 -0.232189 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.091700 -9.160667 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.091700 5.234667 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.091700 3.926000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.091800 -0.244408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.091800 -8.985971 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.091800 5.134841 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.091800 3.851131 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.091900 -0.256384 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.091900 -8.802408 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.091900 5.029947 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.091900 3.772460 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.092000 -0.268110 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.092000 -8.610158 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.092000 4.920090 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.092000 3.690068 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.092100 -0.279574 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.092100 -8.409411 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.092100 4.805378 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.092100 3.604033 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.092200 -0.290760 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.092200 -8.200365 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.092200 4.685923 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.092200 3.514442 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.092300 -0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.092300 -7.983227 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.092300 4.561844 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.092300 3.421383 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.092400 -0.312242 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.092400 -7.758210 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.092400 4.433263 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.092400 3.324947 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.092500 -0.322534 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.092500 -7.525537 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.092500 4.300307 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.092500 3.225230 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.092600 -0.332503 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.092600 -7.285437 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.092600 4.163107 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.092600 3.122330 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.092700 -0.342146 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.092700 -7.038146 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.092700 4.021798 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.092700 3.016348 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.092800 -0.351452 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.092800 -6.783909 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.092800 3.876519 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.092800 2.907390 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.092900 -0.360411 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.092900 -6.522977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.092900 3.727415 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.092900 2.795561 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.093000 -0.369018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.093000 -6.255607 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.093000 3.574633 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.093000 2.680975 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.093100 -0.377255 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.093100 -5.982064 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.093100 3.418322 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.093100 2.563742 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.093200 -0.385122 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.093200 -5.702616 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.093200 3.258638 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.093200 2.443978 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.093300 -0.392609 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.093300 -5.417540 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.093300 3.095737 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.093300 2.321803 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.093400 -0.399715 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.093400 -5.127118 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.093400 2.929782 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.093400 2.197336 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.093500 -0.406418 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.093500 -4.831635 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.093500 2.760935 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.093500 2.070701 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.093600 -0.412720 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.093600 -4.531384 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.093600 2.589362 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.093600 1.942022 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.093700 -0.418612 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.093700 -4.226663 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.093700 2.415236 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.093700 1.811427 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.093800 -0.424096 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.093800 -3.917771 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.093800 2.238726 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.093800 1.679045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.093900 -0.429162 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.093900 -3.605011 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.093900 2.060007 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.093900 1.545005 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.094000 -0.433801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.094000 -3.288695 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.094000 1.879254 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.094000 1.409441 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.094100 -0.438018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.094100 -2.969132 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.094100 1.696647 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.094100 1.272485 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.094200 -0.441797 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.094200 -2.646639 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.094200 1.512365 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.094200 1.134274 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.094300 -0.445142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.094300 -2.321533 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.094300 1.326590 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.094300 0.994943 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.094400 -0.448054 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.094400 -1.994136 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.094400 1.139506 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.094400 0.854630 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.094500 -0.450515 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.094500 -1.664770 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.094500 0.951297 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.094500 0.713473 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.094600 -0.452532 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.094600 -1.333761 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.094600 0.762149 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.094600 0.571612 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.094700 -0.454104 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.094700 -1.001435 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.094700 0.572248 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.094700 0.429186 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.094800 -0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.094800 -0.668120 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.094800 0.381783 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.094800 0.286337 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.094900 -0.455901 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.094900 -0.334147 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.094900 0.190941 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.094900 0.143206 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.095000 -0.456129 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.095000 0.000156 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.095000 -0.000089 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.095000 -0.000067 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.095100 -0.455903 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.095100 0.334460 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.095100 -0.191120 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.095100 -0.143340 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.095200 -0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.095200 0.668433 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.095200 -0.381962 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.095200 -0.286471 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.095300 -0.454102 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.095300 1.001746 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.095300 -0.572426 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.095300 -0.429320 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.095400 -0.452531 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.095400 1.334070 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.095400 -0.762326 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.095400 -0.571744 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.095500 -0.450512 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.095500 1.665079 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.095500 -0.951474 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.095500 -0.713605 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.095600 -0.448049 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.095600 1.994444 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.095600 -1.139682 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.095600 -0.854762 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.095700 -0.445144 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.095700 2.321841 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.095700 -1.326766 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.095700 -0.995075 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.095800 -0.441801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.095800 2.646946 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.095800 -1.512541 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.095800 -1.134405 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.095900 -0.438014 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.095900 2.969439 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.095900 -1.696822 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.095900 -1.272617 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.096000 -0.433800 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.096000 3.289000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.096000 -1.879429 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.096000 -1.409572 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.096100 -0.429161 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.096100 3.605315 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.096100 -2.060180 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.096100 -1.545135 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.096200 -0.424092 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.096200 3.918073 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.096200 -2.238899 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.096200 -1.679174 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.096300 -0.418611 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.096300 4.226963 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.096300 -2.415408 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.096300 -1.811556 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.096400 -0.412713 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.096400 4.531683 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.096400 -2.589533 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.096400 -1.942150 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.096500 -0.406409 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.096500 4.831930 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.096500 -2.761103 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.096500 -2.070827 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.096600 -0.399708 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.096600 5.127410 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.096600 -2.929949 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.096600 -2.197461 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.096700 -0.392610 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.096700 5.417830 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.096700 -3.095903 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.096700 -2.321927 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.096800 -0.385125 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.096800 5.702903 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.096800 -3.258802 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.096800 -2.444101 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.096900 -0.377251 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.096900 5.982348 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.096900 -3.418485 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.096900 -2.563864 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.097000 -0.369011 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.097000 6.255889 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.097000 -3.574794 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.097000 -2.681095 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.097100 -0.360408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.097100 6.523256 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.097100 -3.727575 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.097100 -2.795681 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.097200 -0.351451 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.097200 6.784185 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.097200 -3.876677 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.097200 -2.907508 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.097300 -0.342142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.097300 7.038419 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.097300 -4.021954 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.097300 -3.016465 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.097400 -0.332498 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.097400 7.285707 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.097400 -4.163261 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.097400 -3.122446 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.097500 -0.322526 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.097500 7.525805 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.097500 -4.300460 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.097500 -3.225345 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.097600 -0.312237 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.097600 7.758475 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.097600 -4.433414 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.097600 -3.325061 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.097700 -0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.097700 7.983487 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.097700 -4.561993 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.097700 -3.421495 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.097800 -0.290742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.097800 8.200622 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.097800 -4.686070 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.097800 -3.514552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.097900 -0.279557 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.097900 8.409664 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.097900 -4.805522 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.097900 -3.604142 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.098000 -0.268113 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.098000 8.610406 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.098000 -4.920232 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.098000 -3.690174 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.098100 -0.256386 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.098100 8.802651 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.098100 -5.030087 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.098100 -3.772565 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.098200 -0.244405 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.098200 8.986210 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.098200 -5.134977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.098200 -3.851233 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.098300 -0.232185 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.098300 9.160902 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.098300 -5.234801 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.098300 -3.926101 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.098400 -0.219738 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.098400 9.326552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.098400 -5.329458 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.098400 -3.997094 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.098500 -0.207073 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.098500 9.482998 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.098500 -5.418856 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.098500 -4.064142 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.098600 -0.194205 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.098600 9.630086 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.098600 -5.502906 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.098600 -4.127180 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.098700 -0.181147 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.098700 9.767669 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.098700 -5.581525 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.098700 -4.186144 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.098800 -0.167908 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.098800 9.895613 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.098800 -5.654636 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.098800 -4.240977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.098900 -0.154502 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.098900 10.013792 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.098900 -5.722167 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.098900 -4.291625 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.099000 -0.140947 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.099000 10.122088 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.099000 -5.784050 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.099000 -4.338038 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.099100 -0.127252 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.099100 10.220394 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.099100 -5.840225 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.099100 -4.380169 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.099200 -0.113436 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.099200 10.308614 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.099200 -5.890636 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.099200 -4.417977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.099300 -0.099497 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.099300 10.386662 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.099300 -5.935235 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.099300 -4.451426 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.099400 -0.085467 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.099400 10.454459 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.099400 -5.973977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.099400 -4.480483 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.099500 -0.071350 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.099500 10.511939 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.099500 -6.006823 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.099500 -4.505117 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.099600 -0.057165 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.099600 10.559045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.099600 -6.033740 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.099600 -4.525305 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.099700 -0.042923 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.099700 10.595731 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.099700 -6.054704 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.099700 -4.541028 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.099800 -0.028637 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.099800 10.621961 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.099800 -6.069692 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.099800 -4.552269 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.099900 -0.014324 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.099900 10.637708 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.099900 -6.078690 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.099900 -4.559018 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.100000 0.000003 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.100000 10.642957 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.100000 -6.081690 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.100000 -4.561267 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.100100 0.014331 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.100100 10.637703 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.100100 -6.078687 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.100100 -4.559015 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.100200 0.028644 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.100200 10.621951 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.100200 -6.069686 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.100200 -4.552265 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.100300 0.042929 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.100300 10.595716 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.100300 -6.054695 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.100300 -4.541021 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.100400 0.057171 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.100400 10.559025 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.100400 -6.033729 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.100400 -4.525297 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.100500 0.071358 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.100500 10.511914 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.100500 -6.006808 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.100500 -4.505106 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.100600 0.085474 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.100600 10.454429 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.100600 -5.973960 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.100600 -4.480470 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.100700 0.099504 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.100700 10.386627 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.100700 -5.935215 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.100700 -4.451412 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.100800 0.113438 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.100800 10.308575 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.100800 -5.890614 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.100800 -4.417961 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.100900 0.127258 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.100900 10.220348 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.100900 -5.840199 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.100900 -4.380149 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.101000 0.140960 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.101000 10.122038 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.101000 -5.784022 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.101000 -4.338016 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.101100 0.154511 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.101100 10.013738 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.101100 -5.722136 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.101100 -4.291602 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.101200 0.167914 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.101200 9.895555 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.101200 -5.654603 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.101200 -4.240952 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.101300 0.181150 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.101300 9.767606 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.101300 -5.581489 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.101300 -4.186117 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.101400 0.194212 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.101400 9.630018 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.101400 -5.502867 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.101400 -4.127151 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.101500 0.207080 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.101500 9.482926 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.101500 -5.418815 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.101500 -4.064111 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.101600 0.219742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.101600 9.326476 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.101600 -5.329415 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.101600 -3.997061 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.101700 0.232189 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.101700 9.160821 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.101700 -5.234755 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.101700 -3.926066 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.101800 0.244408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.101800 8.986126 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.101800 -5.134929 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.101800 -3.851197 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.101900 0.256384 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.101900 8.802562 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.101900 -5.030036 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.101900 -3.772527 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.102000 0.268110 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.102000 8.610312 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.102000 -4.920178 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.102000 -3.690134 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.102100 0.279574 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.102100 8.409566 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.102100 -4.805466 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.102100 -3.604100 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.102200 0.290760 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.102200 8.200520 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.102200 -4.686012 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.102200 -3.514509 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.102300 0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.102300 7.983382 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.102300 -4.561932 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.102300 -3.421449 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.102400 0.312242 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.102400 7.758365 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.102400 -4.433351 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.102400 -3.325014 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.102500 0.322534 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.102500 7.525692 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.102500 -4.300395 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.102500 -3.225297 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.102600 0.332503 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.102600 7.285592 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.102600 -4.163195 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.102600 -3.122396 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.102700 0.342146 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.102700 7.038301 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.102700 -4.021886 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.102700 -3.016415 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.102800 0.351452 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.102800 6.784064 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.102800 -3.876608 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.102800 -2.907456 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.102900 0.360411 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.102900 6.523131 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.102900 -3.727504 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.102900 -2.795628 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.103000 0.369018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.103000 6.255762 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.103000 -3.574721 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.103000 -2.681041 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.103100 0.377255 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.103100 5.982218 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.103100 -3.418410 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.103100 -2.563808 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.103200 0.385122 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.103200 5.702771 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.103200 -3.258726 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.103200 -2.444045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.103300 0.392609 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.103300 5.417695 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.103300 -3.095826 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.103300 -2.321869 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.103400 0.399715 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.103400 5.127273 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.103400 -2.929870 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.103400 -2.197403 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.103500 0.406418 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.103500 4.831790 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.103500 -2.761023 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.103500 -2.070767 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.103600 0.412720 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.103600 4.531539 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.103600 -2.589451 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.103600 -1.942088 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.103700 0.418612 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.103700 4.226818 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.103700 -2.415324 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.103700 -1.811493 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.103800 0.424096 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.103800 3.917925 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.103800 -2.238814 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.103800 -1.679111 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.103900 0.429162 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.103900 3.605166 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.103900 -2.060095 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.103900 -1.545071 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.104000 0.433801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.104000 3.288849 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.104000 -1.879343 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.104000 -1.409507 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.104100 0.438018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.104100 2.969287 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.104100 -1.696735 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.104100 -1.272552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.104200 0.441797 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.104200 2.646794 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.104200 -1.512453 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.104200 -1.134340 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.104300 0.445142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.104300 2.321688 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.104300 -1.326679 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.104300 -0.995009 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.104400 0.448054 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.104400 1.994291 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.104400 -1.139595 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.104400 -0.854696 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.104500 0.450515 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.104500 1.664925 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.104500 -0.951386 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.104500 -0.713539 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.104600 0.452532 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.104600 1.333915 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.104600 -0.762237 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.104600 -0.571678 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.104700 0.454104 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.104700 1.001589 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.104700 -0.572337 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.104700 -0.429253 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.104800 0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.104800 0.668274 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.104800 -0.381871 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.104800 -0.286403 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.104900 0.455901 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.104900 0.334302 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.104900 -0.191029 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.104900 -0.143272 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.105000 0.456129 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.105000 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.105000 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.105000 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.105100 0.455903 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.105100 -0.334305 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.105100 0.191032 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.105100 0.143274 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.105200 0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.105200 -0.668278 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.105200 0.381873 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.105200 0.286405 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.105300 0.454102 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.105300 -1.001591 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.105300 0.572338 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.105300 0.429253 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.105400 0.452531 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.105400 -1.333915 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.105400 0.762237 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.105400 0.571678 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.105500 0.450512 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.105500 -1.664924 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.105500 0.951385 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.105500 0.713539 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.105600 0.448049 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.105600 -1.994290 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.105600 1.139594 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.105600 0.854696 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.105700 0.445144 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.105700 -2.321686 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.105700 1.326678 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.105700 0.995008 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.105800 0.441801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.105800 -2.646791 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.105800 1.512452 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.105800 1.134339 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.105900 0.438014 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.105900 -2.969284 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.105900 1.696734 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.105900 1.272550 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.106000 0.433800 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.106000 -3.288845 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.106000 1.879340 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.106000 1.409505 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.106100 0.429161 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.106100 -3.605161 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.106100 2.060092 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.106100 1.545069 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.106200 0.424092 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.106200 -3.917918 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.106200 2.238810 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.106200 1.679108 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.106300 0.418611 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.106300 -4.226809 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.106300 2.415319 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.106300 1.811489 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.106400 0.412713 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.106400 -4.531528 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.106400 2.589444 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.106400 1.942083 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.106500 0.406409 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.106500 -4.831775 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.106500 2.761014 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.106500 2.070761 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.106600 0.399708 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.106600 -5.127255 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.106600 2.929860 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.106600 2.197395 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.106700 0.392610 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.106700 -5.417675 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.106700 3.095815 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.106700 2.321861 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.106800 0.385125 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.106800 -5.702749 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.106800 3.258713 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.106800 2.444035 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.106900 0.377251 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.106900 -5.982194 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.106900 3.418396 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.106900 2.563797 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.107000 0.369011 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.107000 -6.255735 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.107000 3.574706 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.107000 2.681029 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.107100 0.360408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.107100 -6.523102 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.107100 3.727487 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.107100 2.795615 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.107200 0.351451 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.107200 -6.784031 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.107200 3.876589 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.107200 2.907442 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.107300 0.342142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.107300 -7.038265 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.107300 4.021865 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.107300 3.016399 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.107400 0.332498 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.107400 -7.285552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.107400 4.163173 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.107400 3.122380 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.107500 0.322526 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.107500 -7.525650 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.107500 4.300371 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.107500 3.225278 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.107600 0.312237 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.107600 -7.758320 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.107600 4.433326 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.107600 3.324994 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.107700 0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.107700 -7.983333 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.107700 4.561904 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.107700 3.421428 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.107800 0.290742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.107800 -8.200467 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.107800 4.685981 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.107800 3.514486 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.107900 0.279557 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.107900 -8.409509 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.107900 4.805434 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.107900 3.604075 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.108000 0.268113 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.108000 -8.610251 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.108000 4.920144 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.108000 3.690108 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.108100 0.256386 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.108100 -8.802497 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.108100 5.029998 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.108100 3.772499 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.108200 0.244405 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.108200 -8.986056 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.108200 5.134889 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.108200 3.851167 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.108300 0.232185 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.108300 -9.160747 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.108300 5.234712 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.108300 3.926034 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.108400 0.219738 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.108400 -9.326397 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.108400 5.329370 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.108400 3.997027 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.108500 0.207073 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.108500 -9.482843 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.108500 5.418768 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.108500 4.064076 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.108600 0.194205 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.108600 -9.629931 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.108600 5.502818 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.108600 4.127113 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.108700 0.181147 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.108700 -9.767514 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.108700 5.581437 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.108700 4.186078 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.108800 0.167908 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.108800 -9.895458 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.108800 5.654548 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.108800 4.240911 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.108900 0.154502 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.108900 -10.013637 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.108900 5.722078 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.108900 4.291559 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.109000 0.140947 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.109000 -10.121933 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.109000 5.783962 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.109000 4.337971 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.109100 0.127252 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.109100 -10.220239 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.109100 5.840137 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.109100 4.380102 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.109200 0.113436 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.109200 -10.308459 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.109200 5.890548 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.109200 4.417911 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.109300 0.099497 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.109300 -10.386507 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.109300 5.935147 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.109300 4.451360 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.109400 0.085467 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.109400 -10.454304 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.109400 5.973888 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.109400 4.480416 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.109500 0.071350 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.109500 -10.511785 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.109500 6.006734 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.109500 4.505051 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.109600 0.057165 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.109600 -10.558891 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.109600 6.033652 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.109600 4.525239 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.109700 0.042923 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.109700 -10.595577 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.109700 6.054615 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.109700 4.540961 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.109800 0.028637 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.109800 -10.621806 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.109800 6.069603 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.109800 4.552203 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.109900 0.014324 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.109900 -10.637553 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.109900 6.078602 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.109900 4.558951 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.110000 -0.000003 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.110000 -10.642802 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.110000 6.081601 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.110000 4.561201 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.110100 -0.014331 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.110100 -10.637548 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.110100 6.078599 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.110100 4.558949 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.110200 -0.028644 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.110200 -10.621796 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.110200 6.069598 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.110200 4.552198 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.110300 -0.042929 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.110300 -10.595562 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.110300 6.054607 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.110300 4.540955 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.110400 -0.057171 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.110400 -10.558871 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.110400 6.033640 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.110400 4.525230 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.110500 -0.071358 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.110500 -10.511759 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.110500 6.006720 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.110500 4.505040 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.110600 -0.085474 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.110600 -10.454275 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.110600 5.973871 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.110600 4.480403 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.110700 -0.099504 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.110700 -10.386472 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.110700 5.935127 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.110700 4.451345 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.110800 -0.113438 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.110800 -10.308420 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.110800 5.890526 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.110800 4.417894 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.110900 -0.127258 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.110900 -10.220194 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.110900 5.840111 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.110900 4.380083 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.111000 -0.140960 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.111000 -10.121883 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.111000 5.783933 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.111000 4.337950 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.111100 -0.154511 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.111100 -10.013583 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.111100 5.722047 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.111100 4.291535 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.111200 -0.167914 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.111200 -9.895400 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.111200 5.654514 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.111200 4.240886 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.111300 -0.181150 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.111300 -9.767451 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.111300 5.581401 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.111300 4.186051 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.111400 -0.194212 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.111400 -9.629863 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.111400 5.502779 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.111400 4.127084 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.111500 -0.207080 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.111500 -9.482772 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.111500 5.418727 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.111500 4.064045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.111600 -0.219742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.111600 -9.326321 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.111600 5.329326 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.111600 3.996995 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.111700 -0.232189 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.111700 -9.160667 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.111700 5.234667 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.111700 3.926000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.111800 -0.244408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.111800 -8.985971 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.111800 5.134841 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.111800 3.851131 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.111900 -0.256384 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.111900 -8.802408 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.111900 5.029947 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.111900 3.772460 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.112000 -0.268110 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.112000 -8.610158 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.112000 4.920090 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.112000 3.690068 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.112100 -0.279574 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.112100 -8.409411 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.112100 4.805378 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.112100 3.604033 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.112200 -0.290760 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.112200 -8.200365 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.112200 4.685923 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.112200 3.514442 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.112300 -0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.112300 -7.983227 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.112300 4.561844 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.112300 3.421383 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.112400 -0.312242 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.112400 -7.758210 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.112400 4.433263 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.112400 3.324947 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.112500 -0.322534 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.112500 -7.525537 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.112500 4.300307 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.112500 3.225230 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.112600 -0.332503 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.112600 -7.285437 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.112600 4.163107 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.112600 3.122330 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.112700 -0.342146 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.112700 -7.038146 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.112700 4.021798 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.112700 3.016348 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.112800 -0.351452 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.112800 -6.783909 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.112800 3.876519 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.112800 2.907390 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.112900 -0.360411 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.112900 -6.522977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.112900 3.727415 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.112900 2.795561 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.113000 -0.369018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.113000 -6.255607 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.113000 3.574633 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.113000 2.680975 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.113100 -0.377255 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.113100 -5.982064 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.113100 3.418322 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.113100 2.563742 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.113200 -0.385122 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.113200 -5.702616 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.113200 3.258638 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.113200 2.443978 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.113300 -0.392609 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.113300 -5.417540 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.113300 3.095737 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.113300 2.321803 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.113400 -0.399715 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.113400 -5.127118 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.113400 2.929782 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.113400 2.197336 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.113500 -0.406418 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.113500 -4.831635 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.113500 2.760935 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.113500 2.070701 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.113600 -0.412720 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.113600 -4.531384 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.113600 2.589362 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.113600 1.942022 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.113700 -0.418612 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.113700 -4.226663 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.113700 2.415236 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.113700 1.811427 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.113800 -0.424096 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.113800 -3.917771 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.113800 2.238726 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.113800 1.679045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.113900 -0.429162 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.113900 -3.605011 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.113900 2.060007 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.113900 1.545005 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.114000 -0.433801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.114000 -3.288695 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.114000 1.879254 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.114000 1.409441 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.114100 -0.438018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.114100 -2.969132 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.114100 1.696647 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.114100 1.272485 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.114200 -0.441797 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.114200 -2.646639 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.114200 1.512365 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.114200 1.134274 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.114300 -0.445142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.114300 -2.321533 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.114300 1.326590 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.114300 0.994943 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.114400 -0.448054 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.114400 -1.994136 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.114400 1.139506 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.114400 0.854630 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.114500 -0.450515 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.114500 -1.664770 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.114500 0.951297 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.114500 0.713473 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.114600 -0.452532 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.114600 -1.333761 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.114600 0.762149 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.114600 0.571612 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.114700 -0.454104 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.114700 -1.001435 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.114700 0.572248 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.114700 0.429186 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.114800 -0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.114800 -0.668120 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.114800 0.381783 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.114800 0.286337 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.114900 -0.455901 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.114900 -0.334147 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.114900 0.190941 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.114900 0.143206 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.115000 -0.456129 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.115000 0.000156 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.115000 -0.000089 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.115000 -0.000067 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.115100 -0.455903 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.115100 0.334460 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.115100 -0.191120 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.115100 -0.143340 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.115200 -0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.115200 0.668433 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.115200 -0.381962 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.115200 -0.286471 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.115300 -0.454102 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.115300 1.001746 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.115300 -0.572426 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.115300 -0.429320 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.115400 -0.452531 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.115400 1.334070 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.115400 -0.762326 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.115400 -0.571744 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.115500 -0.450512 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.115500 1.665079 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.115500 -0.951474 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.115500 -0.713605 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.115600 -0.448049 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.115600 1.994444 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.115600 -1.139682 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.115600 -0.854762 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.115700 -0.445144 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.115700 2.321841 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.115700 -1.326766 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.115700 -0.995075 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.115800 -0.441801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.115800 2.646946 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.115800 -1.512541 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.115800 -1.134405 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.115900 -0.438014 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.115900 2.969438 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.115900 -1.696822 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.115900 -1.272616 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.116000 -0.433800 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.116000 3.289000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.116000 -1.879429 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.116000 -1.409572 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.116100 -0.429161 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.116100 3.605315 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.116100 -2.060180 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.116100 -1.545135 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.116200 -0.424092 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.116200 3.918073 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.116200 -2.238899 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.116200 -1.679174 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.116300 -0.418611 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.116300 4.226963 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.116300 -2.415408 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.116300 -1.811556 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.116400 -0.412713 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.116400 4.531683 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.116400 -2.589533 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.116400 -1.942150 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.116500 -0.406409 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.116500 4.831930 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.116500 -2.761103 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.116500 -2.070827 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.116600 -0.399708 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.116600 5.127410 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.116600 -2.929949 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.116600 -2.197461 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.116700 -0.392610 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.116700 5.417830 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.116700 -3.095903 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.116700 -2.321927 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.116800 -0.385125 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.116800 5.702903 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.116800 -3.258802 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.116800 -2.444101 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.116900 -0.377251 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.116900 5.982348 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.116900 -3.418485 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.116900 -2.563864 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.117000 -0.369011 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.117000 6.255889 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.117000 -3.574794 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.117000 -2.681095 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.117100 -0.360408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.117100 6.523256 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.117100 -3.727575 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.117100 -2.795681 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.117200 -0.351451 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.117200 6.784185 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.117200 -3.876677 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.117200 -2.907508 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.117300 -0.342142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.117300 7.038419 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.117300 -4.021954 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.117300 -3.016465 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.117400 -0.332498 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.117400 7.285707 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.117400 -4.163261 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.117400 -3.122446 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.117500 -0.322526 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.117500 7.525805 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.117500 -4.300460 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.117500 -3.225345 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.117600 -0.312237 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.117600 7.758475 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.117600 -4.433414 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.117600 -3.325061 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.117700 -0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.117700 7.983487 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.117700 -4.561993 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.117700 -3.421495 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.117800 -0.290742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.117800 8.200622 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.117800 -4.686070 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.117800 -3.514552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.117900 -0.279557 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.117900 8.409664 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.117900 -4.805522 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.117900 -3.604142 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.118000 -0.268113 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.118000 8.610406 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.118000 -4.920232 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.118000 -3.690174 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.118100 -0.256386 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.118100 8.802651 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.118100 -5.030087 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.118100 -3.772565 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.118200 -0.244405 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.118200 8.986210 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.118200 -5.134977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.118200 -3.851233 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.118300 -0.232185 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.118300 9.160902 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.118300 -5.234801 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.118300 -3.926101 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.118400 -0.219738 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.118400 9.326552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.118400 -5.329458 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.118400 -3.997094 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.118500 -0.207073 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.118500 9.482998 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.118500 -5.418856 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.118500 -4.064142 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.118600 -0.194205 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.118600 9.630086 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.118600 -5.502906 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.118600 -4.127180 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.118700 -0.181147 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.118700 9.767669 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.118700 -5.581525 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.118700 -4.186144 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.118800 -0.167908 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.118800 9.895613 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.118800 -5.654636 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.118800 -4.240977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.118900 -0.154502 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.118900 10.013792 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.118900 -5.722167 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.118900 -4.291625 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.119000 -0.140947 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.119000 10.122088 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.119000 -5.784050 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.119000 -4.338038 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.119100 -0.127252 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.119100 10.220394 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.119100 -5.840225 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.119100 -4.380169 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.119200 -0.113436 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.119200 10.308614 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.119200 -5.890636 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.119200 -4.417977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.119300 -0.099497 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.119300 10.386662 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.119300 -5.935235 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.119300 -4.451426 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.119400 -0.085467 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.119400 10.454459 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.119400 -5.973977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.119400 -4.480482 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.119500 -0.071350 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.119500 10.511939 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.119500 -6.006823 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.119500 -4.505117 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.119600 -0.057165 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.119600 10.559045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.119600 -6.033740 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.119600 -4.525305 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.119700 -0.042923 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.119700 10.595731 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.119700 -6.054704 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.119700 -4.541028 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.119800 -0.028637 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.119800 10.621961 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.119800 -6.069692 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.119800 -4.552269 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.119900 -0.014324 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.119900 10.637708 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.119900 -6.078690 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.119900 -4.559018 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.120000 0.000003 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.120000 10.642957 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.120000 -6.081690 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.120000 -4.561267 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.120100 0.014331 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.120100 10.637703 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.120100 -6.078687 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.120100 -4.559015 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.120200 0.028644 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.120200 10.621951 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.120200 -6.069686 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.120200 -4.552265 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.120300 0.042929 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.120300 10.595716 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.120300 -6.054695 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.120300 -4.541021 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.120400 0.057171 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.120400 10.559025 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.120400 -6.033729 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.120400 -4.525297 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.120500 0.071358 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.120500 10.511914 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.120500 -6.006808 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.120500 -4.505106 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.120600 0.085474 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.120600 10.454429 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.120600 -5.973960 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.120600 -4.480470 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.120700 0.099504 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.120700 10.386627 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.120700 -5.935215 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.120700 -4.451412 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.120800 0.113438 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.120800 10.308575 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.120800 -5.890614 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.120800 -4.417961 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.120900 0.127258 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.120900 10.220348 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.120900 -5.840199 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.120900 -4.380149 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.121000 0.140960 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.121000 10.122038 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.121000 -5.784022 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.121000 -4.338016 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.121100 0.154511 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.121100 10.013738 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.121100 -5.722136 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.121100 -4.291602 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.121200 0.167914 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.121200 9.895555 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.121200 -5.654603 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.121200 -4.240952 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.121300 0.181150 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.121300 9.767606 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.121300 -5.581489 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.121300 -4.186117 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.121400 0.194212 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.121400 9.630018 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.121400 -5.502867 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.121400 -4.127151 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.121500 0.207080 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.121500 9.482926 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.121500 -5.418815 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.121500 -4.064111 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.121600 0.219742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.121600 9.326476 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.121600 -5.329415 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.121600 -3.997061 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.121700 0.232189 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.121700 9.160821 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.121700 -5.234755 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.121700 -3.926066 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.121800 0.244408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.121800 8.986126 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.121800 -5.134929 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.121800 -3.851197 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.121900 0.256384 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.121900 8.802562 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.121900 -5.030036 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.121900 -3.772527 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.122000 0.268110 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.122000 8.610312 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.122000 -4.920178 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.122000 -3.690134 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.122100 0.279574 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.122100 8.409566 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.122100 -4.805466 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.122100 -3.604100 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.122200 0.290760 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.122200 8.200520 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.122200 -4.686012 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.122200 -3.514509 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.122300 0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.122300 7.983382 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.122300 -4.561932 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.122300 -3.421449 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.122400 0.312242 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.122400 7.758365 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.122400 -4.433351 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.122400 -3.325014 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.122500 0.322534 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.122500 7.525692 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.122500 -4.300395 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.122500 -3.225297 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.122600 0.332503 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.122600 7.285592 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.122600 -4.163195 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.122600 -3.122396 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.122700 0.342146 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.122700 7.038301 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.122700 -4.021886 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.122700 -3.016415 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.122800 0.351452 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.122800 6.784064 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.122800 -3.876608 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.122800 -2.907456 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.122900 0.360411 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.122900 6.523131 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.122900 -3.727504 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.122900 -2.795628 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.123000 0.369018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.123000 6.255762 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.123000 -3.574721 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.123000 -2.681041 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.123100 0.377255 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.123100 5.982218 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.123100 -3.418410 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.123100 -2.563808 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.123200 0.385122 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.123200 5.702771 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.123200 -3.258726 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.123200 -2.444045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.123300 0.392609 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.123300 5.417695 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.123300 -3.095826 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.123300 -2.321869 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.123400 0.399715 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.123400 5.127273 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.123400 -2.929870 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.123400 -2.197403 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.123500 0.406418 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.123500 4.831790 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.123500 -2.761023 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.123500 -2.070767 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.123600 0.412720 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.123600 4.531539 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.123600 -2.589451 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.123600 -1.942088 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.123700 0.418612 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.123700 4.226818 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.123700 -2.415324 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.123700 -1.811493 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.123800 0.424096 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.123800 3.917925 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.123800 -2.238814 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.123800 -1.679111 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.123900 0.429162 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.123900 3.605166 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.123900 -2.060095 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.123900 -1.545071 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.124000 0.433801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.124000 3.288849 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.124000 -1.879343 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.124000 -1.409507 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.124100 0.438018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.124100 2.969287 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.124100 -1.696735 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.124100 -1.272552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.124200 0.441797 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.124200 2.646794 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.124200 -1.512453 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.124200 -1.134340 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.124300 0.445142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.124300 2.321688 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.124300 -1.326679 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.124300 -0.995009 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.124400 0.448054 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.124400 1.994291 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.124400 -1.139595 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.124400 -0.854696 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.124500 0.450515 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.124500 1.664925 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.124500 -0.951386 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.124500 -0.713539 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.124600 0.452532 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.124600 1.333915 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.124600 -0.762237 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.124600 -0.571678 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.124700 0.454104 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.124700 1.001589 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.124700 -0.572337 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.124700 -0.429253 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.124800 0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.124800 0.668274 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.124800 -0.381871 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.124800 -0.286403 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.124900 0.455901 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.124900 0.334302 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.124900 -0.191029 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.124900 -0.143272 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.125000 0.456129 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.125000 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.125000 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.125000 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.125100 0.455903 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.125100 -0.334305 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.125100 0.191032 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.125100 0.143274 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.125200 0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.125200 -0.668278 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.125200 0.381873 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.125200 0.286405 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.125300 0.454102 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.125300 -1.001591 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.125300 0.572338 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.125300 0.429253 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.125400 0.452531 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.125400 -1.333915 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.125400 0.762237 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.125400 0.571678 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.125500 0.450512 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.125500 -1.664924 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.125500 0.951385 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.125500 0.713539 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.125600 0.448049 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.125600 -1.994290 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.125600 1.139594 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.125600 0.854696 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.125700 0.445144 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.125700 -2.321686 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.125700 1.326678 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.125700 0.995008 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.125800 0.441801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.125800 -2.646791 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.125800 1.512452 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.125800 1.134339 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.125900 0.438014 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.125900 -2.969284 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.125900 1.696734 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.125900 1.272550 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.126000 0.433800 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.126000 -3.288845 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.126000 1.879340 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.126000 1.409505 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.126100 0.429161 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.126100 -3.605161 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.126100 2.060092 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.126100 1.545069 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.126200 0.424092 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.126200 -3.917918 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.126200 2.238810 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.126200 1.679108 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.126300 0.418611 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.126300 -4.226809 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.126300 2.415319 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.126300 1.811489 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.126400 0.412713 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.126400 -4.531528 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.126400 2.589444 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.126400 1.942083 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.126500 0.406409 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.126500 -4.831775 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.126500 2.761014 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.126500 2.070761 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.126600 0.399708 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.126600 -5.127255 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.126600 2.929860 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.126600 2.197395 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.126700 0.392610 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.126700 -5.417675 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.126700 3.095815 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.126700 2.321861 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.126800 0.385125 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.126800 -5.702749 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.126800 3.258713 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.126800 2.444035 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.126900 0.377251 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.126900 -5.982194 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.126900 3.418396 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.126900 2.563797 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.127000 0.369011 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.127000 -6.255735 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.127000 3.574706 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.127000 2.681029 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.127100 0.360408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.127100 -6.523102 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.127100 3.727487 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.127100 2.795615 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.127200 0.351451 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.127200 -6.784031 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.127200 3.876589 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.127200 2.907442 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.127300 0.342142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.127300 -7.038265 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.127300 4.021865 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.127300 3.016399 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.127400 0.332498 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.127400 -7.285552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.127400 4.163173 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.127400 3.122380 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.127500 0.322526 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.127500 -7.525650 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.127500 4.300371 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.127500 3.225278 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.127600 0.312237 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.127600 -7.758320 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.127600 4.433326 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.127600 3.324994 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.127700 0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.127700 -7.983333 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.127700 4.561904 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.127700 3.421428 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.127800 0.290742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.127800 -8.200467 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.127800 4.685981 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.127800 3.514486 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.127900 0.279557 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.127900 -8.409509 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.127900 4.805434 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.127900 3.604075 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.128000 0.268113 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.128000 -8.610251 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.128000 4.920144 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.128000 3.690108 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.128100 0.256386 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.128100 -8.802497 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.128100 5.029998 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.128100 3.772499 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.128200 0.244405 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.128200 -8.986056 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.128200 5.134889 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.128200 3.851167 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.128300 0.232185 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.128300 -9.160747 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.128300 5.234712 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.128300 3.926034 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.128400 0.219738 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.128400 -9.326397 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.128400 5.329370 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.128400 3.997027 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.128500 0.207073 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.128500 -9.482843 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.128500 5.418768 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.128500 4.064076 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.128600 0.194205 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.128600 -9.629931 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.128600 5.502818 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.128600 4.127113 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.128700 0.181147 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.128700 -9.767514 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.128700 5.581437 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.128700 4.186078 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.128800 0.167908 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.128800 -9.895458 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.128800 5.654548 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.128800 4.240911 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.128900 0.154502 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.128900 -10.013637 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.128900 5.722078 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.128900 4.291559 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.129000 0.140947 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.129000 -10.121933 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.129000 5.783962 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.129000 4.337971 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.129100 0.127252 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.129100 -10.220239 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.129100 5.840137 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.129100 4.380102 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.129200 0.113436 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.129200 -10.308459 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.129200 5.890548 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.129200 4.417911 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.129300 0.099497 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.129300 -10.386507 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.129300 5.935147 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.129300 4.451360 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.129400 0.085467 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.129400 -10.454304 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.129400 5.973888 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.129400 4.480416 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.129500 0.071350 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.129500 -10.511785 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.129500 6.006734 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.129500 4.505051 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.129600 0.057165 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.129600 -10.558891 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.129600 6.033652 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.129600 4.525239 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.129700 0.042923 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.129700 -10.595577 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.129700 6.054615 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.129700 4.540961 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.129800 0.028637 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.129800 -10.621806 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.129800 6.069603 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.129800 4.552203 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.129900 0.014324 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.129900 -10.637553 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.129900 6.078602 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.129900 4.558951 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.130000 -0.000003 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.130000 -10.642802 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.130000 6.081601 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.130000 4.561201 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.130100 -0.014331 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.130100 -10.637548 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.130100 6.078599 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.130100 4.558949 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.130200 -0.028644 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.130200 -10.621796 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.130200 6.069598 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.130200 4.552198 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.130300 -0.042929 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.130300 -10.595562 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.130300 6.054607 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.130300 4.540955 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.130400 -0.057171 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.130400 -10.558871 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.130400 6.033640 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.130400 4.525230 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.130500 -0.071358 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.130500 -10.511759 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.130500 6.006720 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.130500 4.505040 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.130600 -0.085474 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.130600 -10.454275 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.130600 5.973871 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.130600 4.480403 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.130700 -0.099504 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.130700 -10.386472 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.130700 5.935127 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.130700 4.451345 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.130800 -0.113438 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.130800 -10.308420 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.130800 5.890526 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.130800 4.417894 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.130900 -0.127258 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.130900 -10.220194 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.130900 5.840111 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.130900 4.380083 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.131000 -0.140960 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.131000 -10.121883 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.131000 5.783933 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.131000 4.337950 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.131100 -0.154511 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.131100 -10.013583 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.131100 5.722047 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.131100 4.291535 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.131200 -0.167914 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.131200 -9.895400 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.131200 5.654514 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.131200 4.240886 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.131300 -0.181150 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.131300 -9.767451 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.131300 5.581401 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.131300 4.186051 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.131400 -0.194212 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.131400 -9.629863 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.131400 5.502779 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.131400 4.127084 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.131500 -0.207080 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.131500 -9.482772 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.131500 5.418727 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.131500 4.064045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.131600 -0.219742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.131600 -9.326321 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.131600 5.329326 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.131600 3.996995 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.131700 -0.232189 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.131700 -9.160667 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.131700 5.234667 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.131700 3.926000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.131800 -0.244408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.131800 -8.985971 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.131800 5.134841 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.131800 3.851131 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.131900 -0.256384 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.131900 -8.802408 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.131900 5.029947 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.131900 3.772460 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.132000 -0.268110 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.132000 -8.610158 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.132000 4.920090 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.132000 3.690068 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.132100 -0.279574 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.132100 -8.409411 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.132100 4.805378 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.132100 3.604033 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.132200 -0.290760 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.132200 -8.200365 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.132200 4.685923 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.132200 3.514442 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.132300 -0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.132300 -7.983227 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.132300 4.561844 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.132300 3.421383 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.132400 -0.312242 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.132400 -7.758210 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.132400 4.433263 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.132400 3.324947 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.132500 -0.322534 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.132500 -7.525537 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.132500 4.300307 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.132500 3.225230 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.132600 -0.332503 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.132600 -7.285437 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.132600 4.163107 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.132600 3.122330 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.132700 -0.342146 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.132700 -7.038146 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.132700 4.021798 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.132700 3.016348 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.132800 -0.351452 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.132800 -6.783909 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.132800 3.876519 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.132800 2.907390 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.132900 -0.360411 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.132900 -6.522977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.132900 3.727415 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.132900 2.795561 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.133000 -0.369018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.133000 -6.255607 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.133000 3.574633 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.133000 2.680975 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.133100 -0.377255 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.133100 -5.982064 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.133100 3.418322 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.133100 2.563742 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.133200 -0.385122 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.133200 -5.702616 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.133200 3.258638 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.133200 2.443978 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.133300 -0.392609 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.133300 -5.417540 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.133300 3.095737 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.133300 2.321803 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.133400 -0.399715 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.133400 -5.127118 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.133400 2.929782 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.133400 2.197336 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.133500 -0.406418 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.133500 -4.831636 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.133500 2.760935 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.133500 2.070701 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.133600 -0.412720 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.133600 -4.531384 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.133600 2.589362 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.133600 1.942022 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.133700 -0.418612 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.133700 -4.226663 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.133700 2.415236 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.133700 1.811427 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.133800 -0.424096 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.133800 -3.917771 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.133800 2.238726 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.133800 1.679045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.133900 -0.429162 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.133900 -3.605011 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.133900 2.060007 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.133900 1.545005 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.134000 -0.433801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.134000 -3.288695 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.134000 1.879254 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.134000 1.409441 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.134100 -0.438018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.134100 -2.969132 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.134100 1.696647 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.134100 1.272485 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.134200 -0.441797 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.134200 -2.646639 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.134200 1.512365 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.134200 1.134274 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.134300 -0.445142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.134300 -2.321533 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.134300 1.326590 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.134300 0.994943 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.134400 -0.448054 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.134400 -1.994136 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.134400 1.139506 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.134400 0.854630 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.134500 -0.450515 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.134500 -1.664770 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.134500 0.951297 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.134500 0.713473 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.134600 -0.452532 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.134600 -1.333761 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.134600 0.762149 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.134600 0.571612 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.134700 -0.454104 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.134700 -1.001435 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.134700 0.572248 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.134700 0.429186 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.134800 -0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.134800 -0.668120 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.134800 0.381783 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.134800 0.286337 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.134900 -0.455901 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.134900 -0.334147 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.134900 0.190941 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.134900 0.143206 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.135000 -0.456129 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.135000 0.000156 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.135000 -0.000089 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.135000 -0.000067 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.135100 -0.455903 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.135100 0.334460 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.135100 -0.191120 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.135100 -0.143340 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.135200 -0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.135200 0.668433 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.135200 -0.381962 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.135200 -0.286471 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.135300 -0.454102 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.135300 1.001746 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.135300 -0.572426 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.135300 -0.429320 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.135400 -0.452531 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.135400 1.334070 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.135400 -0.762326 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.135400 -0.571744 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.135500 -0.450512 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.135500 1.665079 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.135500 -0.951474 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.135500 -0.713605 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.135600 -0.448049 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.135600 1.994444 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.135600 -1.139682 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.135600 -0.854762 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.135700 -0.445144 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.135700 2.321841 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.135700 -1.326766 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.135700 -0.995075 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.135800 -0.441801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.135800 2.646946 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.135800 -1.512541 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.135800 -1.134405 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.135900 -0.438014 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.135900 2.969438 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.135900 -1.696822 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.135900 -1.272616 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.136000 -0.433800 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.136000 3.289000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.136000 -1.879429 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.136000 -1.409572 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.136100 -0.429161 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.136100 3.605315 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.136100 -2.060180 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.136100 -1.545135 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.136200 -0.424092 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.136200 3.918073 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.136200 -2.238899 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.136200 -1.679174 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.136300 -0.418611 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.136300 4.226963 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.136300 -2.415408 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.136300 -1.811556 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.136400 -0.412713 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.136400 4.531683 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.136400 -2.589533 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.136400 -1.942150 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.136500 -0.406409 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.136500 4.831930 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.136500 -2.761103 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.136500 -2.070827 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.136600 -0.399708 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.136600 5.127410 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.136600 -2.929949 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.136600 -2.197461 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.136700 -0.392610 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.136700 5.417830 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.136700 -3.095903 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.136700 -2.321927 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.136800 -0.385125 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.136800 5.702903 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.136800 -3.258802 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.136800 -2.444101 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.136900 -0.377251 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.136900 5.982348 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.136900 -3.418485 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.136900 -2.563864 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.137000 -0.369011 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.137000 6.255889 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.137000 -3.574794 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.137000 -2.681095 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.137100 -0.360408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.137100 6.523256 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.137100 -3.727575 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.137100 -2.795681 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.137200 -0.351451 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.137200 6.784185 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.137200 -3.876677 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.137200 -2.907508 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.137300 -0.342142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.137300 7.038419 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.137300 -4.021954 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.137300 -3.016465 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.137400 -0.332498 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.137400 7.285707 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.137400 -4.163261 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.137400 -3.122446 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.137500 -0.322526 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.137500 7.525805 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.137500 -4.300460 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.137500 -3.225345 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.137600 -0.312237 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.137600 7.758475 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.137600 -4.433414 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.137600 -3.325061 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.137700 -0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.137700 7.983487 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.137700 -4.561993 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.137700 -3.421495 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.137800 -0.290742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.137800 8.200622 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.137800 -4.686070 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.137800 -3.514552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.137900 -0.279557 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.137900 8.409664 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.137900 -4.805522 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.137900 -3.604142 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.138000 -0.268113 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.138000 8.610406 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.138000 -4.920232 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.138000 -3.690174 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.138100 -0.256386 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.138100 8.802651 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.138100 -5.030087 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.138100 -3.772565 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.138200 -0.244405 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.138200 8.986210 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.138200 -5.134977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.138200 -3.851233 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.138300 -0.232185 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.138300 9.160902 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.138300 -5.234801 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.138300 -3.926101 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.138400 -0.219738 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.138400 9.326552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.138400 -5.329458 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.138400 -3.997094 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.138500 -0.207073 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.138500 9.482998 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.138500 -5.418856 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.138500 -4.064142 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.138600 -0.194205 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.138600 9.630086 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.138600 -5.502906 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.138600 -4.127180 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.138700 -0.181147 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.138700 9.767669 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.138700 -5.581525 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.138700 -4.186144 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.138800 -0.167908 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.138800 9.895613 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.138800 -5.654636 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.138800 -4.240977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.138900 -0.154502 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.138900 10.013792 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.138900 -5.722167 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.138900 -4.291625 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.139000 -0.140947 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.139000 10.122088 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.139000 -5.784050 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.139000 -4.338038 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.139100 -0.127252 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.139100 10.220394 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.139100 -5.840225 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.139100 -4.380169 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.139200 -0.113436 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.139200 10.308614 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.139200 -5.890636 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.139200 -4.417977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.139300 -0.099497 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.139300 10.386662 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.139300 -5.935235 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.139300 -4.451426 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.139400 -0.085467 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.139400 10.454459 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.139400 -5.973977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.139400 -4.480482 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.139500 -0.071350 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.139500 10.511939 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.139500 -6.006823 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.139500 -4.505117 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.139600 -0.057165 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.139600 10.559045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.139600 -6.033740 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.139600 -4.525305 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.139700 -0.042923 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.139700 10.595731 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.139700 -6.054704 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.139700 -4.541028 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.139800 -0.028637 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.139800 10.621961 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.139800 -6.069692 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.139800 -4.552269 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.139900 -0.014324 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.139900 10.637708 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.139900 -6.078690 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.139900 -4.559018 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.140000 0.000003 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.140000 10.642957 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.140000 -6.081690 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.140000 -4.561267 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.140100 0.014331 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.140100 10.637703 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.140100 -6.078687 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.140100 -4.559015 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.140200 0.028644 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.140200 10.621951 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.140200 -6.069686 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.140200 -4.552265 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.140300 0.042929 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.140300 10.595716 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.140300 -6.054695 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.140300 -4.541021 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.140400 0.057171 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.140400 10.559025 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.140400 -6.033729 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.140400 -4.525297 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.140500 0.071358 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.140500 10.511914 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.140500 -6.006808 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.140500 -4.505106 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.140600 0.085474 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.140600 10.454429 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.140600 -5.973960 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.140600 -4.480470 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.140700 0.099504 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.140700 10.386627 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.140700 -5.935215 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.140700 -4.451412 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.140800 0.113438 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.140800 10.308575 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.140800 -5.890614 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.140800 -4.417961 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.140900 0.127258 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.140900 10.220348 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.140900 -5.840199 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.140900 -4.380149 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.141000 0.140960 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.141000 10.122038 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.141000 -5.784022 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.141000 -4.338016 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.141100 0.154511 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.141100 10.013738 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.141100 -5.722136 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.141100 -4.291602 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.141200 0.167914 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.141200 9.895555 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.141200 -5.654603 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.141200 -4.240952 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.141300 0.181150 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.141300 9.767606 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.141300 -5.581489 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.141300 -4.186117 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.141400 0.194212 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.141400 9.630018 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.141400 -5.502867 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.141400 -4.127151 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.141500 0.207080 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.141500 9.482926 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.141500 -5.418815 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.141500 -4.064111 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.141600 0.219742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.141600 9.326476 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.141600 -5.329415 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.141600 -3.997061 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.141700 0.232189 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.141700 9.160821 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.141700 -5.234755 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.141700 -3.926066 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.141800 0.244408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.141800 8.986126 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.141800 -5.134929 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.141800 -3.851197 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.141900 0.256384 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.141900 8.802562 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.141900 -5.030036 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.141900 -3.772527 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.142000 0.268110 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.142000 8.610312 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.142000 -4.920178 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.142000 -3.690134 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.142100 0.279574 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.142100 8.409566 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.142100 -4.805466 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.142100 -3.604100 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.142200 0.290760 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.142200 8.200520 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.142200 -4.686012 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.142200 -3.514509 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.142300 0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.142300 7.983382 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.142300 -4.561932 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.142300 -3.421449 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.142400 0.312242 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.142400 7.758365 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.142400 -4.433351 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.142400 -3.325014 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.142500 0.322534 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.142500 7.525692 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.142500 -4.300395 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.142500 -3.225297 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.142600 0.332503 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.142600 7.285592 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.142600 -4.163195 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.142600 -3.122396 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.142700 0.342146 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.142700 7.038301 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.142700 -4.021886 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.142700 -3.016415 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.142800 0.351452 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.142800 6.784064 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.142800 -3.876608 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.142800 -2.907456 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.142900 0.360411 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.142900 6.523131 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.142900 -3.727504 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.142900 -2.795628 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.143000 0.369018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.143000 6.255762 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.143000 -3.574721 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.143000 -2.681041 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.143100 0.377255 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.143100 5.982218 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.143100 -3.418410 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.143100 -2.563808 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.143200 0.385122 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.143200 5.702771 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.143200 -3.258726 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.143200 -2.444045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.143300 0.392609 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.143300 5.417695 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.143300 -3.095826 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.143300 -2.321869 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.143400 0.399715 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.143400 5.127273 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.143400 -2.929870 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.143400 -2.197403 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.143500 0.406418 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.143500 4.831790 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.143500 -2.761023 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.143500 -2.070767 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.143600 0.412720 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.143600 4.531539 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.143600 -2.589451 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.143600 -1.942088 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.143700 0.418612 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.143700 4.226818 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.143700 -2.415324 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.143700 -1.811493 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.143800 0.424096 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.143800 3.917925 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.143800 -2.238814 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.143800 -1.679111 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.143900 0.429162 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.143900 3.605166 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.143900 -2.060095 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.143900 -1.545071 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.144000 0.433801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.144000 3.288849 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.144000 -1.879343 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.144000 -1.409507 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.144100 0.438018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.144100 2.969287 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.144100 -1.696735 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.144100 -1.272552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.144200 0.441797 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.144200 2.646794 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.144200 -1.512453 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.144200 -1.134340 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.144300 0.445142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.144300 2.321688 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.144300 -1.326679 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.144300 -0.995009 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.144400 0.448054 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.144400 1.994291 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.144400 -1.139595 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.144400 -0.854696 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.144500 0.450515 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.144500 1.664925 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.144500 -0.951386 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.144500 -0.713539 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.144600 0.452532 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.144600 1.333915 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.144600 -0.762237 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.144600 -0.571678 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.144700 0.454104 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.144700 1.001589 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.144700 -0.572337 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.144700 -0.429253 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.144800 0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.144800 0.668274 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.144800 -0.381871 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.144800 -0.286403 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.144900 0.455901 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.144900 0.334302 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.144900 -0.191029 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.144900 -0.143272 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.145000 0.456129 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.145000 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.145000 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.145000 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.145100 0.455903 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.145100 -0.334305 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.145100 0.191032 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.145100 0.143274 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.145200 0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.145200 -0.668278 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.145200 0.381873 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.145200 0.286405 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.145300 0.454102 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.145300 -1.001591 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.145300 0.572338 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.145300 0.429253 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.145400 0.452531 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.145400 -1.333915 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.145400 0.762237 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.145400 0.571678 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.145500 0.450512 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.145500 -1.664924 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.145500 0.951385 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.145500 0.713539 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.145600 0.448049 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.145600 -1.994290 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.145600 1.139594 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.145600 0.854696 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.145700 0.445144 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.145700 -2.321686 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.145700 1.326678 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.145700 0.995008 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.145800 0.441801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.145800 -2.646791 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.145800 1.512452 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.145800 1.134339 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.145900 0.438014 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.145900 -2.969284 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.145900 1.696734 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.145900 1.272550 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.146000 0.433800 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.146000 -3.288845 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.146000 1.879340 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.146000 1.409505 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.146100 0.429161 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.146100 -3.605161 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.146100 2.060092 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.146100 1.545069 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.146200 0.424092 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.146200 -3.917918 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.146200 2.238810 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.146200 1.679108 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.146300 0.418611 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.146300 -4.226809 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.146300 2.415319 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.146300 1.811489 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.146400 0.412713 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.146400 -4.531528 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.146400 2.589444 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.146400 1.942083 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.146500 0.406409 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.146500 -4.831775 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.146500 2.761014 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.146500 2.070761 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.146600 0.399708 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.146600 -5.127255 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.146600 2.929860 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.146600 2.197395 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.146700 0.392610 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.146700 -5.417675 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.146700 3.095815 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.146700 2.321861 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.146800 0.385125 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.146800 -5.702749 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.146800 3.258713 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.146800 2.444035 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.146900 0.377251 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.146900 -5.982194 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.146900 3.418396 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.146900 2.563797 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.147000 0.369011 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.147000 -6.255735 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.147000 3.574706 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.147000 2.681029 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.147100 0.360408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.147100 -6.523102 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.147100 3.727487 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.147100 2.795615 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.147200 0.351451 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.147200 -6.784031 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.147200 3.876589 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.147200 2.907442 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.147300 0.342142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.147300 -7.038265 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.147300 4.021865 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.147300 3.016399 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.147400 0.332498 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.147400 -7.285552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.147400 4.163173 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.147400 3.122380 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.147500 0.322526 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.147500 -7.525650 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.147500 4.300371 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.147500 3.225278 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.147600 0.312237 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.147600 -7.758320 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.147600 4.433326 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.147600 3.324994 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.147700 0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.147700 -7.983333 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.147700 4.561904 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.147700 3.421428 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.147800 0.290742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.147800 -8.200467 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.147800 4.685981 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.147800 3.514486 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.147900 0.279557 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.147900 -8.409509 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.147900 4.805434 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.147900 3.604075 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.148000 0.268113 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.148000 -8.610251 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.148000 4.920144 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.148000 3.690108 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.148100 0.256386 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.148100 -8.802497 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.148100 5.029998 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.148100 3.772499 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.148200 0.244405 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.148200 -8.986056 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.148200 5.134889 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.148200 3.851167 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.148300 0.232185 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.148300 -9.160747 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.148300 5.234712 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.148300 3.926034 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.148400 0.219738 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.148400 -9.326397 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.148400 5.329370 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.148400 3.997027 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.148500 0.207073 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.148500 -9.482843 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.148500 5.418768 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.148500 4.064076 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.148600 0.194205 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.148600 -9.629931 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.148600 5.502818 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.148600 4.127113 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.148700 0.181147 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.148700 -9.767514 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.148700 5.581437 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.148700 4.186078 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.148800 0.167908 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.148800 -9.895458 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.148800 5.654548 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.148800 4.240911 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.148900 0.154502 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.148900 -10.013637 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.148900 5.722078 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.148900 4.291559 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.149000 0.140947 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.149000 -10.121933 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.149000 5.783962 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.149000 4.337971 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.149100 0.127252 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.149100 -10.220239 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.149100 5.840137 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.149100 4.380102 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.149200 0.113436 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.149200 -10.308459 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.149200 5.890548 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.149200 4.417911 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.149300 0.099497 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.149300 -10.386507 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.149300 5.935147 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.149300 4.451360 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.149400 0.085467 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.149400 -10.454304 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.149400 5.973888 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.149400 4.480416 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.149500 0.071350 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.149500 -10.511785 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.149500 6.006734 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.149500 4.505051 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.149600 0.057165 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.149600 -10.558891 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.149600 6.033652 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.149600 4.525239 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.149700 0.042923 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.149700 -10.595577 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.149700 6.054615 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.149700 4.540961 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.149800 0.028637 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.149800 -10.621806 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.149800 6.069603 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.149800 4.552203 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.149900 0.014324 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.149900 -10.637553 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.149900 6.078602 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.149900 4.558951 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.150000 -0.000003 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.150000 -10.642802 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.150000 6.081601 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.150000 4.561201 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.150100 -0.014331 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.150100 -10.637548 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.150100 6.078599 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.150100 4.558949 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.150200 -0.028644 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.150200 -10.621796 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.150200 6.069598 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.150200 4.552198 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.150300 -0.042929 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.150300 -10.595562 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.150300 6.054607 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.150300 4.540955 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.150400 -0.057171 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.150400 -10.558871 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.150400 6.033640 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.150400 4.525230 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.150500 -0.071358 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.150500 -10.511759 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.150500 6.006720 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.150500 4.505040 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.150600 -0.085474 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.150600 -10.454275 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.150600 5.973871 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.150600 4.480403 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.150700 -0.099504 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.150700 -10.386472 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.150700 5.935127 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.150700 4.451345 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.150800 -0.113438 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.150800 -10.308420 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.150800 5.890526 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.150800 4.417894 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.150900 -0.127258 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.150900 -10.220194 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.150900 5.840111 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.150900 4.380083 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.151000 -0.140960 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.151000 -10.121883 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.151000 5.783933 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.151000 4.337950 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.151100 -0.154511 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.151100 -10.013583 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.151100 5.722047 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.151100 4.291535 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.151200 -0.167914 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.151200 -9.895400 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.151200 5.654514 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.151200 4.240886 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.151300 -0.181150 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.151300 -9.767451 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.151300 5.581401 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.151300 4.186051 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.151400 -0.194212 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.151400 -9.629863 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.151400 5.502779 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.151400 4.127084 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.151500 -0.207080 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.151500 -9.482772 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.151500 5.418727 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.151500 4.064045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.151600 -0.219742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.151600 -9.326321 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.151600 5.329326 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.151600 3.996995 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.151700 -0.232189 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.151700 -9.160667 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.151700 5.234667 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.151700 3.926000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.151800 -0.244408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.151800 -8.985971 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.151800 5.134841 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.151800 3.851131 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.151900 -0.256384 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.151900 -8.802408 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.151900 5.029947 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.151900 3.772460 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.152000 -0.268110 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.152000 -8.610158 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.152000 4.920090 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.152000 3.690068 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.152100 -0.279574 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.152100 -8.409411 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.152100 4.805378 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.152100 3.604033 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.152200 -0.290760 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.152200 -8.200365 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.152200 4.685923 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.152200 3.514442 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.152300 -0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.152300 -7.983227 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.152300 4.561844 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.152300 3.421383 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.152400 -0.312242 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.152400 -7.758210 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.152400 4.433263 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.152400 3.324947 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.152500 -0.322534 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.152500 -7.525537 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.152500 4.300307 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.152500 3.225230 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.152600 -0.332503 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.152600 -7.285437 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.152600 4.163107 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.152600 3.122330 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.152700 -0.342146 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.152700 -7.038146 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.152700 4.021798 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.152700 3.016348 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.152800 -0.351452 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.152800 -6.783909 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.152800 3.876519 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.152800 2.907390 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.152900 -0.360411 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.152900 -6.522977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.152900 3.727415 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.152900 2.795561 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.153000 -0.369018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.153000 -6.255607 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.153000 3.574633 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.153000 2.680975 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.153100 -0.377255 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.153100 -5.982064 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.153100 3.418322 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.153100 2.563742 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.153200 -0.385122 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.153200 -5.702616 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.153200 3.258638 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.153200 2.443978 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.153300 -0.392609 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.153300 -5.417540 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.153300 3.095737 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.153300 2.321803 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.153400 -0.399715 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.153400 -5.127118 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.153400 2.929782 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.153400 2.197336 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.153500 -0.406418 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.153500 -4.831636 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.153500 2.760935 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.153500 2.070701 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.153600 -0.412720 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.153600 -4.531384 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.153600 2.589362 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.153600 1.942022 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.153700 -0.418612 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.153700 -4.226663 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.153700 2.415236 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.153700 1.811427 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.153800 -0.424096 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.153800 -3.917771 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.153800 2.238726 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.153800 1.679045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.153900 -0.429162 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.153900 -3.605011 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.153900 2.060007 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.153900 1.545005 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.154000 -0.433801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.154000 -3.288695 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.154000 1.879254 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.154000 1.409441 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.154100 -0.438018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.154100 -2.969132 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.154100 1.696647 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.154100 1.272485 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.154200 -0.441797 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.154200 -2.646639 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.154200 1.512365 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.154200 1.134274 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.154300 -0.445142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.154300 -2.321533 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.154300 1.326590 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.154300 0.994943 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.154400 -0.448054 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.154400 -1.994136 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.154400 1.139506 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.154400 0.854630 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.154500 -0.450515 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.154500 -1.664770 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.154500 0.951297 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.154500 0.713473 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.154600 -0.452532 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.154600 -1.333761 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.154600 0.762149 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.154600 0.571612 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.154700 -0.454104 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.154700 -1.001435 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.154700 0.572248 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.154700 0.429186 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.154800 -0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.154800 -0.668120 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.154800 0.381783 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.154800 0.286337 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.154900 -0.455901 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.154900 -0.334147 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.154900 0.190941 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.154900 0.143206 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.155000 -0.456129 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.155000 0.000156 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.155000 -0.000089 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.155000 -0.000067 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.155100 -0.455903 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.155100 0.334460 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.155100 -0.191120 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.155100 -0.143340 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.155200 -0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.155200 0.668433 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.155200 -0.381962 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.155200 -0.286471 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.155300 -0.454102 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.155300 1.001746 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.155300 -0.572426 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.155300 -0.429320 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.155400 -0.452531 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.155400 1.334070 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.155400 -0.762326 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.155400 -0.571744 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.155500 -0.450512 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.155500 1.665079 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.155500 -0.951474 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.155500 -0.713605 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.155600 -0.448049 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.155600 1.994444 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.155600 -1.139682 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.155600 -0.854762 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.155700 -0.445144 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.155700 2.321841 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.155700 -1.326766 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.155700 -0.995075 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.155800 -0.441801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.155800 2.646946 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.155800 -1.512541 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.155800 -1.134405 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.155900 -0.438014 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.155900 2.969438 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.155900 -1.696822 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.155900 -1.272616 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.156000 -0.433800 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.156000 3.289000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.156000 -1.879429 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.156000 -1.409572 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.156100 -0.429161 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.156100 3.605315 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.156100 -2.060180 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.156100 -1.545135 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.156200 -0.424092 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.156200 3.918073 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.156200 -2.238899 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.156200 -1.679174 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.156300 -0.418611 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.156300 4.226963 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.156300 -2.415408 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.156300 -1.811556 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.156400 -0.412713 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.156400 4.531683 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.156400 -2.589533 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.156400 -1.942150 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.156500 -0.406409 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.156500 4.831930 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.156500 -2.761103 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.156500 -2.070827 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.156600 -0.399708 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.156600 5.127410 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.156600 -2.929949 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.156600 -2.197461 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.156700 -0.392610 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.156700 5.417830 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.156700 -3.095903 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.156700 -2.321927 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.156800 -0.385125 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.156800 5.702903 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.156800 -3.258802 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.156800 -2.444101 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.156900 -0.377251 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.156900 5.982348 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.156900 -3.418485 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.156900 -2.563864 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.157000 -0.369011 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.157000 6.255889 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.157000 -3.574794 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.157000 -2.681095 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.157100 -0.360408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.157100 6.523256 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.157100 -3.727575 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.157100 -2.795681 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.157200 -0.351451 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.157200 6.784185 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.157200 -3.876677 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.157200 -2.907508 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.157300 -0.342142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.157300 7.038419 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.157300 -4.021954 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.157300 -3.016465 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.157400 -0.332498 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.157400 7.285707 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.157400 -4.163261 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.157400 -3.122446 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.157500 -0.322526 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.157500 7.525805 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.157500 -4.300460 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.157500 -3.225345 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.157600 -0.312237 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.157600 7.758475 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.157600 -4.433414 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.157600 -3.325061 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.157700 -0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.157700 7.983487 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.157700 -4.561993 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.157700 -3.421495 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.157800 -0.290742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.157800 8.200622 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.157800 -4.686070 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.157800 -3.514552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.157900 -0.279557 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.157900 8.409664 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.157900 -4.805522 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.157900 -3.604142 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.158000 -0.268113 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.158000 8.610406 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.158000 -4.920232 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.158000 -3.690174 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.158100 -0.256386 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.158100 8.802651 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.158100 -5.030087 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.158100 -3.772565 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.158200 -0.244405 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.158200 8.986210 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.158200 -5.134977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.158200 -3.851233 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.158300 -0.232185 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.158300 9.160902 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.158300 -5.234801 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.158300 -3.926101 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.158400 -0.219738 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.158400 9.326552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.158400 -5.329458 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.158400 -3.997094 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.158500 -0.207073 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.158500 9.482998 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.158500 -5.418856 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.158500 -4.064142 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.158600 -0.194205 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.158600 9.630086 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.158600 -5.502906 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.158600 -4.127180 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.158700 -0.181147 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.158700 9.767669 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.158700 -5.581525 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.158700 -4.186144 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.158800 -0.167908 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.158800 9.895613 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.158800 -5.654636 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.158800 -4.240977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.158900 -0.154502 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.158900 10.013792 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.158900 -5.722167 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.158900 -4.291625 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.159000 -0.140947 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.159000 10.122088 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.159000 -5.784050 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.159000 -4.338038 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.159100 -0.127252 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.159100 10.220394 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.159100 -5.840225 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.159100 -4.380169 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.159200 -0.113436 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.159200 10.308614 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.159200 -5.890636 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.159200 -4.417977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.159300 -0.099497 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.159300 10.386662 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.159300 -5.935235 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.159300 -4.451426 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.159400 -0.085467 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.159400 10.454459 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.159400 -5.973977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.159400 -4.480482 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.159500 -0.071350 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.159500 10.511939 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.159500 -6.006823 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.159500 -4.505117 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.159600 -0.057165 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.159600 10.559045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.159600 -6.033740 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.159600 -4.525305 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.159700 -0.042923 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.159700 10.595731 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.159700 -6.054704 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.159700 -4.541028 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.159800 -0.028637 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.159800 10.621961 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.159800 -6.069692 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.159800 -4.552269 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.159900 -0.014324 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.159900 10.637708 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.159900 -6.078690 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.159900 -4.559018 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.160000 0.000003 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.160000 10.642957 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.160000 -6.081690 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.160000 -4.561267 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.160100 0.014331 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.160100 10.637703 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.160100 -6.078687 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.160100 -4.559015 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.160200 0.028644 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.160200 10.621951 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.160200 -6.069686 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.160200 -4.552265 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.160300 0.042929 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.160300 10.595716 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.160300 -6.054695 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.160300 -4.541021 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.160400 0.057171 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.160400 10.559025 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.160400 -6.033729 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.160400 -4.525297 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.160500 0.071358 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.160500 10.511914 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.160500 -6.006808 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.160500 -4.505106 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.160600 0.085474 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.160600 10.454429 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.160600 -5.973960 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.160600 -4.480470 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.160700 0.099504 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.160700 10.386627 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.160700 -5.935215 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.160700 -4.451412 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.160800 0.113438 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.160800 10.308575 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.160800 -5.890614 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.160800 -4.417961 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.160900 0.127258 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.160900 10.220348 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.160900 -5.840199 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.160900 -4.380149 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.161000 0.140960 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.161000 10.122038 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.161000 -5.784022 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.161000 -4.338016 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.161100 0.154511 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.161100 10.013738 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.161100 -5.722136 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.161100 -4.291602 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.161200 0.167914 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.161200 9.895555 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.161200 -5.654603 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.161200 -4.240952 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.161300 0.181150 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.161300 9.767606 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.161300 -5.581489 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.161300 -4.186117 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.161400 0.194212 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.161400 9.630018 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.161400 -5.502867 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.161400 -4.127151 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.161500 0.207080 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.161500 9.482926 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.161500 -5.418815 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.161500 -4.064111 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.161600 0.219742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.161600 9.326476 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.161600 -5.329415 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.161600 -3.997061 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.161700 0.232189 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.161700 9.160821 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.161700 -5.234755 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.161700 -3.926066 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.161800 0.244408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.161800 8.986126 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.161800 -5.134929 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.161800 -3.851197 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.161900 0.256384 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.161900 8.802562 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.161900 -5.030036 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.161900 -3.772527 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.162000 0.268110 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.162000 8.610312 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.162000 -4.920178 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.162000 -3.690134 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.162100 0.279574 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.162100 8.409566 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.162100 -4.805466 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.162100 -3.604100 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.162200 0.290760 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.162200 8.200520 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.162200 -4.686011 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.162200 -3.514509 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.162300 0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.162300 7.983382 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.162300 -4.561932 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.162300 -3.421449 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.162400 0.312242 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.162400 7.758365 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.162400 -4.433351 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.162400 -3.325014 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.162500 0.322534 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.162500 7.525692 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.162500 -4.300395 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.162500 -3.225297 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.162600 0.332503 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.162600 7.285592 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.162600 -4.163195 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.162600 -3.122396 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.162700 0.342146 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.162700 7.038301 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.162700 -4.021886 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.162700 -3.016415 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.162800 0.351452 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.162800 6.784064 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.162800 -3.876608 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.162800 -2.907456 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.162900 0.360411 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.162900 6.523131 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.162900 -3.727504 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.162900 -2.795628 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.163000 0.369018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.163000 6.255762 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.163000 -3.574721 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.163000 -2.681041 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.163100 0.377255 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.163100 5.982218 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.163100 -3.418410 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.163100 -2.563808 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.163200 0.385122 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.163200 5.702771 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.163200 -3.258726 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.163200 -2.444045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.163300 0.392609 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.163300 5.417695 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.163300 -3.095826 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.163300 -2.321869 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.163400 0.399715 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.163400 5.127273 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.163400 -2.929870 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.163400 -2.197403 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.163500 0.406418 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.163500 4.831790 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.163500 -2.761023 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.163500 -2.070767 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.163600 0.412720 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.163600 4.531539 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.163600 -2.589451 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.163600 -1.942088 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.163700 0.418612 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.163700 4.226818 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.163700 -2.415324 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.163700 -1.811493 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.163800 0.424096 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.163800 3.917925 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.163800 -2.238814 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.163800 -1.679111 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.163900 0.429162 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.163900 3.605166 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.163900 -2.060095 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.163900 -1.545071 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.164000 0.433801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.164000 3.288849 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.164000 -1.879343 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.164000 -1.409507 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.164100 0.438018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.164100 2.969287 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.164100 -1.696735 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.164100 -1.272552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.164200 0.441797 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.164200 2.646794 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.164200 -1.512453 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.164200 -1.134340 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.164300 0.445142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.164300 2.321688 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.164300 -1.326679 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.164300 -0.995009 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.164400 0.448054 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.164400 1.994291 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.164400 -1.139595 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.164400 -0.854696 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.164500 0.450515 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.164500 1.664925 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.164500 -0.951386 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.164500 -0.713539 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.164600 0.452532 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.164600 1.333915 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.164600 -0.762237 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.164600 -0.571678 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.164700 0.454104 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.164700 1.001589 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.164700 -0.572337 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.164700 -0.429253 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.164800 0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.164800 0.668274 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.164800 -0.381871 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.164800 -0.286403 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.164900 0.455901 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.164900 0.334302 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.164900 -0.191029 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.164900 -0.143272 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.165000 0.456129 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.165000 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.165000 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.165000 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.165100 0.455903 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.165100 -0.334305 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.165100 0.191032 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.165100 0.143274 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.165200 0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.165200 -0.668278 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.165200 0.381873 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.165200 0.286405 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.165300 0.454102 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.165300 -1.001591 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.165300 0.572338 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.165300 0.429253 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.165400 0.452531 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.165400 -1.333915 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.165400 0.762237 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.165400 0.571678 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.165500 0.450512 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.165500 -1.664924 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.165500 0.951385 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.165500 0.713539 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.165600 0.448049 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.165600 -1.994290 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.165600 1.139594 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.165600 0.854696 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.165700 0.445144 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.165700 -2.321686 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.165700 1.326678 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.165700 0.995008 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.165800 0.441801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.165800 -2.646791 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.165800 1.512452 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.165800 1.134339 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.165900 0.438014 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.165900 -2.969284 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.165900 1.696734 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.165900 1.272550 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.166000 0.433800 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.166000 -3.288845 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.166000 1.879340 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.166000 1.409505 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.166100 0.429161 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.166100 -3.605161 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.166100 2.060092 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.166100 1.545069 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.166200 0.424092 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.166200 -3.917918 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.166200 2.238810 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.166200 1.679108 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.166300 0.418611 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.166300 -4.226809 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.166300 2.415319 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.166300 1.811489 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.166400 0.412713 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.166400 -4.531528 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.166400 2.589444 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.166400 1.942083 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.166500 0.406409 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.166500 -4.831775 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.166500 2.761014 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.166500 2.070761 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.166600 0.399708 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.166600 -5.127255 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.166600 2.929860 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.166600 2.197395 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.166700 0.392610 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.166700 -5.417675 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.166700 3.095815 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.166700 2.321861 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.166800 0.385125 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.166800 -5.702749 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.166800 3.258713 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.166800 2.444035 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.166900 0.377251 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.166900 -5.982194 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.166900 3.418396 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.166900 2.563797 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.167000 0.369011 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.167000 -6.255735 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.167000 3.574706 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.167000 2.681029 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.167100 0.360408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.167100 -6.523102 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.167100 3.727487 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.167100 2.795615 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.167200 0.351451 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.167200 -6.784031 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.167200 3.876589 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.167200 2.907442 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.167300 0.342142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.167300 -7.038265 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.167300 4.021865 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.167300 3.016399 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.167400 0.332498 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.167400 -7.285552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.167400 4.163173 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.167400 3.122380 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.167500 0.322526 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.167500 -7.525650 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.167500 4.300371 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.167500 3.225278 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.167600 0.312237 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.167600 -7.758320 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.167600 4.433326 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.167600 3.324994 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.167700 0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.167700 -7.983333 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.167700 4.561904 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.167700 3.421428 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.167800 0.290742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.167800 -8.200467 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.167800 4.685981 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.167800 3.514486 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.167900 0.279557 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.167900 -8.409509 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.167900 4.805434 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.167900 3.604075 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.168000 0.268113 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.168000 -8.610251 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.168000 4.920144 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.168000 3.690108 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.168100 0.256386 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.168100 -8.802497 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.168100 5.029998 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.168100 3.772499 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.168200 0.244405 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.168200 -8.986056 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.168200 5.134889 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.168200 3.851167 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.168300 0.232185 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.168300 -9.160747 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.168300 5.234712 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.168300 3.926034 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.168400 0.219738 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.168400 -9.326397 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.168400 5.329370 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.168400 3.997027 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.168500 0.207073 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.168500 -9.482843 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.168500 5.418768 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.168500 4.064076 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.168600 0.194205 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.168600 -9.629931 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.168600 5.502818 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.168600 4.127113 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.168700 0.181147 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.168700 -9.767514 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.168700 5.581437 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.168700 4.186078 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.168800 0.167908 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.168800 -9.895458 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.168800 5.654548 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.168800 4.240911 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.168900 0.154502 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.168900 -10.013637 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.168900 5.722078 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.168900 4.291559 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.169000 0.140947 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.169000 -10.121933 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.169000 5.783962 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.169000 4.337971 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.169100 0.127252 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.169100 -10.220239 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.169100 5.840137 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.169100 4.380102 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.169200 0.113436 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.169200 -10.308459 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.169200 5.890548 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.169200 4.417911 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.169300 0.099497 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.169300 -10.386507 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.169300 5.935147 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.169300 4.451360 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.169400 0.085467 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.169400 -10.454304 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.169400 5.973888 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.169400 4.480416 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.169500 0.071350 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.169500 -10.511785 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.169500 6.006734 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.169500 4.505051 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.169600 0.057165 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.169600 -10.558891 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.169600 6.033652 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.169600 4.525239 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.169700 0.042923 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.169700 -10.595577 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.169700 6.054615 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.169700 4.540961 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.169800 0.028637 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.169800 -10.621806 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.169800 6.069603 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.169800 4.552203 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.169900 0.014324 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.169900 -10.637553 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.169900 6.078602 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.169900 4.558951 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.170000 -0.000003 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.170000 -10.642802 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.170000 6.081601 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.170000 4.561201 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.170100 -0.014331 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.170100 -10.637548 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.170100 6.078599 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.170100 4.558949 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.170200 -0.028644 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.170200 -10.621796 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.170200 6.069598 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.170200 4.552198 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.170300 -0.042929 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.170300 -10.595562 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.170300 6.054607 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.170300 4.540955 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.170400 -0.057171 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.170400 -10.558871 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.170400 6.033640 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.170400 4.525230 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.170500 -0.071358 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.170500 -10.511759 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.170500 6.006720 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.170500 4.505040 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.170600 -0.085474 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.170600 -10.454275 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.170600 5.973871 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.170600 4.480403 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.170700 -0.099504 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.170700 -10.386472 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.170700 5.935127 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.170700 4.451345 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.170800 -0.113438 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.170800 -10.308420 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.170800 5.890526 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.170800 4.417894 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.170900 -0.127258 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.170900 -10.220194 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.170900 5.840111 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.170900 4.380083 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.171000 -0.140960 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.171000 -10.121883 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.171000 5.783933 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.171000 4.337950 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.171100 -0.154511 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.171100 -10.013583 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.171100 5.722047 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.171100 4.291535 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.171200 -0.167914 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.171200 -9.895400 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.171200 5.654514 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.171200 4.240886 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.171300 -0.181150 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.171300 -9.767451 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.171300 5.581401 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.171300 4.186051 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.171400 -0.194212 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.171400 -9.629863 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.171400 5.502779 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.171400 4.127084 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.171500 -0.207080 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.171500 -9.482772 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.171500 5.418727 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.171500 4.064045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.171600 -0.219742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.171600 -9.326321 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.171600 5.329326 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.171600 3.996995 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.171700 -0.232189 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.171700 -9.160667 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.171700 5.234667 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.171700 3.926000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.171800 -0.244408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.171800 -8.985971 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.171800 5.134841 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.171800 3.851131 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.171900 -0.256384 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.171900 -8.802408 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.171900 5.029947 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.171900 3.772460 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.172000 -0.268110 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.172000 -8.610158 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.172000 4.920090 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.172000 3.690068 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.172100 -0.279574 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.172100 -8.409411 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.172100 4.805378 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.172100 3.604033 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.172200 -0.290760 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.172200 -8.200365 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.172200 4.685923 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.172200 3.514442 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.172300 -0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.172300 -7.983227 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.172300 4.561844 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.172300 3.421383 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.172400 -0.312242 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.172400 -7.758210 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.172400 4.433263 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.172400 3.324947 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.172500 -0.322534 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.172500 -7.525537 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.172500 4.300307 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.172500 3.225230 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.172600 -0.332503 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.172600 -7.285437 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.172600 4.163107 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.172600 3.122330 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.172700 -0.342146 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.172700 -7.038146 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.172700 4.021798 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.172700 3.016348 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.172800 -0.351452 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.172800 -6.783909 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.172800 3.876519 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.172800 2.907390 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.172900 -0.360411 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.172900 -6.522977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.172900 3.727415 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.172900 2.795561 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.173000 -0.369018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.173000 -6.255607 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.173000 3.574633 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.173000 2.680975 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.173100 -0.377255 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.173100 -5.982064 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.173100 3.418322 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.173100 2.563742 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.173200 -0.385122 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.173200 -5.702616 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.173200 3.258638 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.173200 2.443978 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.173300 -0.392609 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.173300 -5.417540 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.173300 3.095737 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.173300 2.321803 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.173400 -0.399715 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.173400 -5.127118 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.173400 2.929782 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.173400 2.197336 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.173500 -0.406418 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.173500 -4.831636 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.173500 2.760935 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.173500 2.070701 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.173600 -0.412720 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.173600 -4.531384 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.173600 2.589362 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.173600 1.942022 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.173700 -0.418612 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.173700 -4.226663 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.173700 2.415236 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.173700 1.811427 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.173800 -0.424096 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.173800 -3.917771 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.173800 2.238726 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.173800 1.679045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.173900 -0.429162 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.173900 -3.605011 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.173900 2.060007 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.173900 1.545005 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.174000 -0.433801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.174000 -3.288695 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.174000 1.879254 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.174000 1.409441 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.174100 -0.438018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.174100 -2.969132 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.174100 1.696647 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.174100 1.272485 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.174200 -0.441797 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.174200 -2.646639 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.174200 1.512365 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.174200 1.134274 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.174300 -0.445142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.174300 -2.321533 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.174300 1.326590 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.174300 0.994943 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.174400 -0.448054 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.174400 -1.994136 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.174400 1.139506 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.174400 0.854630 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.174500 -0.450515 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.174500 -1.664770 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.174500 0.951297 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.174500 0.713473 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.174600 -0.452532 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.174600 -1.333761 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.174600 0.762149 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.174600 0.571612 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.174700 -0.454104 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.174700 -1.001435 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.174700 0.572248 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.174700 0.429186 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.174800 -0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.174800 -0.668120 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.174800 0.381783 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.174800 0.286337 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.174900 -0.455901 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.174900 -0.334147 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.174900 0.190941 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.174900 0.143206 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.175000 -0.456129 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.175000 0.000156 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.175000 -0.000089 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.175000 -0.000067 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.175100 -0.455903 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.175100 0.334460 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.175100 -0.191120 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.175100 -0.143340 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.175200 -0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.175200 0.668433 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.175200 -0.381962 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.175200 -0.286471 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.175300 -0.454102 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.175300 1.001746 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.175300 -0.572426 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.175300 -0.429320 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.175400 -0.452531 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.175400 1.334070 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.175400 -0.762326 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.175400 -0.571744 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.175500 -0.450512 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.175500 1.665079 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.175500 -0.951474 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.175500 -0.713605 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.175600 -0.448049 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.175600 1.994444 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.175600 -1.139682 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.175600 -0.854762 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.175700 -0.445144 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.175700 2.321841 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.175700 -1.326766 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.175700 -0.995075 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.175800 -0.441801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.175800 2.646946 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.175800 -1.512541 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.175800 -1.134405 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.175900 -0.438014 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.175900 2.969438 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.175900 -1.696822 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.175900 -1.272616 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.176000 -0.433800 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.176000 3.289000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.176000 -1.879429 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.176000 -1.409572 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.176100 -0.429161 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.176100 3.605315 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.176100 -2.060180 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.176100 -1.545135 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.176200 -0.424092 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.176200 3.918073 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.176200 -2.238899 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.176200 -1.679174 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.176300 -0.418611 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.176300 4.226963 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.176300 -2.415408 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.176300 -1.811556 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.176400 -0.412713 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.176400 4.531683 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.176400 -2.589533 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.176400 -1.942150 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.176500 -0.406409 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.176500 4.831930 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.176500 -2.761103 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.176500 -2.070827 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.176600 -0.399708 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.176600 5.127410 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.176600 -2.929949 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.176600 -2.197461 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.176700 -0.392610 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.176700 5.417830 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.176700 -3.095903 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.176700 -2.321927 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.176800 -0.385125 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.176800 5.702903 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.176800 -3.258802 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.176800 -2.444101 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.176900 -0.377251 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.176900 5.982348 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.176900 -3.418485 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.176900 -2.563864 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.177000 -0.369011 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.177000 6.255889 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.177000 -3.574794 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.177000 -2.681095 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.177100 -0.360408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.177100 6.523256 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.177100 -3.727575 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.177100 -2.795681 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.177200 -0.351451 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.177200 6.784185 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.177200 -3.876677 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.177200 -2.907508 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.177300 -0.342142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.177300 7.038419 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.177300 -4.021954 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.177300 -3.016465 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.177400 -0.332498 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.177400 7.285707 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.177400 -4.163261 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.177400 -3.122446 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.177500 -0.322526 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.177500 7.525805 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.177500 -4.300460 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.177500 -3.225345 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.177600 -0.312237 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.177600 7.758475 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.177600 -4.433414 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.177600 -3.325061 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.177700 -0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.177700 7.983487 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.177700 -4.561993 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.177700 -3.421495 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.177800 -0.290742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.177800 8.200622 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.177800 -4.686070 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.177800 -3.514552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.177900 -0.279557 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.177900 8.409664 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.177900 -4.805522 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.177900 -3.604142 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.178000 -0.268113 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.178000 8.610406 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.178000 -4.920232 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.178000 -3.690174 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.178100 -0.256386 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.178100 8.802651 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.178100 -5.030087 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.178100 -3.772565 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.178200 -0.244405 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.178200 8.986210 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.178200 -5.134977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.178200 -3.851233 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.178300 -0.232185 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.178300 9.160902 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.178300 -5.234801 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.178300 -3.926101 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.178400 -0.219738 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.178400 9.326552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.178400 -5.329458 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.178400 -3.997094 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.178500 -0.207073 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.178500 9.482998 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.178500 -5.418856 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.178500 -4.064142 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.178600 -0.194205 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.178600 9.630086 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.178600 -5.502906 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.178600 -4.127180 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.178700 -0.181147 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.178700 9.767669 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.178700 -5.581525 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.178700 -4.186144 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.178800 -0.167908 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.178800 9.895613 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.178800 -5.654636 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.178800 -4.240977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.178900 -0.154502 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.178900 10.013792 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.178900 -5.722167 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.178900 -4.291625 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.179000 -0.140947 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.179000 10.122088 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.179000 -5.784050 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.179000 -4.338038 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.179100 -0.127252 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.179100 10.220394 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.179100 -5.840225 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.179100 -4.380169 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.179200 -0.113436 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.179200 10.308614 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.179200 -5.890636 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.179200 -4.417977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.179300 -0.099497 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.179300 10.386662 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.179300 -5.935235 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.179300 -4.451426 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.179400 -0.085467 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.179400 10.454459 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.179400 -5.973977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.179400 -4.480482 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.179500 -0.071350 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.179500 10.511939 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.179500 -6.006823 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.179500 -4.505117 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.179600 -0.057165 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.179600 10.559045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.179600 -6.033740 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.179600 -4.525305 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.179700 -0.042923 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.179700 10.595731 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.179700 -6.054704 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.179700 -4.541028 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.179800 -0.028637 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.179800 10.621961 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.179800 -6.069692 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.179800 -4.552269 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.179900 -0.014324 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.179900 10.637708 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.179900 -6.078690 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.179900 -4.559018 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.180000 0.000003 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.180000 10.642957 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.180000 -6.081690 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.180000 -4.561267 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.180100 0.014331 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.180100 10.637703 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.180100 -6.078687 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.180100 -4.559015 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.180200 0.028644 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.180200 10.621951 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.180200 -6.069686 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.180200 -4.552265 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.180300 0.042929 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.180300 10.595716 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.180300 -6.054695 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.180300 -4.541021 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.180400 0.057171 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.180400 10.559025 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.180400 -6.033729 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.180400 -4.525297 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.180500 0.071358 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.180500 10.511914 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.180500 -6.006808 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.180500 -4.505106 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.180600 0.085474 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.180600 10.454429 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.180600 -5.973960 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.180600 -4.480470 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.180700 0.099504 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.180700 10.386627 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.180700 -5.935215 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.180700 -4.451412 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.180800 0.113438 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.180800 10.308575 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.180800 -5.890614 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.180800 -4.417961 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.180900 0.127258 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.180900 10.220348 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.180900 -5.840199 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.180900 -4.380149 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.181000 0.140960 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.181000 10.122038 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.181000 -5.784022 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.181000 -4.338016 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.181100 0.154511 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.181100 10.013738 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.181100 -5.722136 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.181100 -4.291602 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.181200 0.167914 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.181200 9.895555 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.181200 -5.654603 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.181200 -4.240952 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.181300 0.181150 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.181300 9.767606 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.181300 -5.581489 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.181300 -4.186117 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.181400 0.194212 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.181400 9.630018 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.181400 -5.502867 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.181400 -4.127151 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.181500 0.207080 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.181500 9.482926 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.181500 -5.418815 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.181500 -4.064111 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.181600 0.219742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.181600 9.326476 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.181600 -5.329415 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.181600 -3.997061 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.181700 0.232189 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.181700 9.160821 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.181700 -5.234755 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.181700 -3.926066 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.181800 0.244408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.181800 8.986126 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.181800 -5.134929 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.181800 -3.851197 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.181900 0.256384 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.181900 8.802562 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.181900 -5.030036 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.181900 -3.772527 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.182000 0.268110 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.182000 8.610312 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.182000 -4.920178 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.182000 -3.690134 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.182100 0.279574 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.182100 8.409566 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.182100 -4.805466 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.182100 -3.604100 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.182200 0.290760 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.182200 8.200520 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.182200 -4.686011 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.182200 -3.514509 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.182300 0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.182300 7.983382 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.182300 -4.561932 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.182300 -3.421449 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.182400 0.312242 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.182400 7.758365 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.182400 -4.433351 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.182400 -3.325014 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.182500 0.322534 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.182500 7.525692 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.182500 -4.300395 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.182500 -3.225297 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.182600 0.332503 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.182600 7.285592 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.182600 -4.163195 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.182600 -3.122396 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.182700 0.342146 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.182700 7.038301 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.182700 -4.021886 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.182700 -3.016415 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.182800 0.351452 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.182800 6.784064 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.182800 -3.876608 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.182800 -2.907456 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.182900 0.360411 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.182900 6.523131 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.182900 -3.727504 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.182900 -2.795628 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.183000 0.369018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.183000 6.255762 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.183000 -3.574721 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.183000 -2.681041 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.183100 0.377255 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.183100 5.982218 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.183100 -3.418410 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.183100 -2.563808 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.183200 0.385122 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.183200 5.702771 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.183200 -3.258726 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.183200 -2.444045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.183300 0.392609 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.183300 5.417695 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.183300 -3.095826 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.183300 -2.321869 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.183400 0.399715 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.183400 5.127273 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.183400 -2.929870 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.183400 -2.197403 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.183500 0.406418 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.183500 4.831790 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.183500 -2.761023 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.183500 -2.070767 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.183600 0.412720 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.183600 4.531539 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.183600 -2.589451 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.183600 -1.942088 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.183700 0.418612 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.183700 4.226818 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.183700 -2.415324 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.183700 -1.811493 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.183800 0.424096 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.183800 3.917925 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.183800 -2.238814 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.183800 -1.679111 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.183900 0.429162 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.183900 3.605166 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.183900 -2.060095 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.183900 -1.545071 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.184000 0.433801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.184000 3.288849 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.184000 -1.879342 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.184000 -1.409507 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.184100 0.438018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.184100 2.969287 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.184100 -1.696735 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.184100 -1.272552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.184200 0.441797 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.184200 2.646794 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.184200 -1.512453 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.184200 -1.134340 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.184300 0.445142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.184300 2.321688 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.184300 -1.326679 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.184300 -0.995009 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.184400 0.448054 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.184400 1.994291 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.184400 -1.139595 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.184400 -0.854696 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.184500 0.450515 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.184500 1.664925 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.184500 -0.951386 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.184500 -0.713539 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.184600 0.452532 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.184600 1.333915 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.184600 -0.762237 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.184600 -0.571678 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.184700 0.454104 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.184700 1.001589 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.184700 -0.572337 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.184700 -0.429253 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.184800 0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.184800 0.668274 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.184800 -0.381871 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.184800 -0.286403 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.184900 0.455901 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.184900 0.334302 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.184900 -0.191029 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.184900 -0.143272 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.185000 0.456129 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.185000 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.185000 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.185000 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.185100 0.455903 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.185100 -0.334305 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.185100 0.191032 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.185100 0.143274 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.185200 0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.185200 -0.668278 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.185200 0.381873 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.185200 0.286405 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.185300 0.454102 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.185300 -1.001591 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.185300 0.572338 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.185300 0.429253 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.185400 0.452531 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.185400 -1.333915 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.185400 0.762237 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.185400 0.571678 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.185500 0.450512 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.185500 -1.664924 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.185500 0.951385 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.185500 0.713539 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.185600 0.448049 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.185600 -1.994290 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.185600 1.139594 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.185600 0.854696 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.185700 0.445144 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.185700 -2.321686 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.185700 1.326678 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.185700 0.995008 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.185800 0.441801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.185800 -2.646791 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.185800 1.512452 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.185800 1.134339 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.185900 0.438014 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.185900 -2.969284 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.185900 1.696734 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.185900 1.272550 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.186000 0.433800 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.186000 -3.288845 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.186000 1.879340 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.186000 1.409505 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.186100 0.429161 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.186100 -3.605161 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.186100 2.060092 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.186100 1.545069 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.186200 0.424092 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.186200 -3.917918 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.186200 2.238810 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.186200 1.679108 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.186300 0.418611 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.186300 -4.226809 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.186300 2.415319 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.186300 1.811489 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.186400 0.412713 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.186400 -4.531528 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.186400 2.589444 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.186400 1.942083 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.186500 0.406409 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.186500 -4.831775 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.186500 2.761014 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.186500 2.070761 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.186600 0.399708 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.186600 -5.127255 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.186600 2.929860 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.186600 2.197395 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.186700 0.392610 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.186700 -5.417675 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.186700 3.095815 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.186700 2.321861 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.186800 0.385125 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.186800 -5.702749 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.186800 3.258713 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.186800 2.444035 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.186900 0.377251 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.186900 -5.982194 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.186900 3.418396 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.186900 2.563797 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.187000 0.369011 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.187000 -6.255735 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.187000 3.574706 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.187000 2.681029 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.187100 0.360408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.187100 -6.523102 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.187100 3.727487 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.187100 2.795615 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.187200 0.351451 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.187200 -6.784031 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.187200 3.876589 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.187200 2.907442 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.187300 0.342142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.187300 -7.038265 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.187300 4.021865 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.187300 3.016399 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.187400 0.332498 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.187400 -7.285552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.187400 4.163173 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.187400 3.122380 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.187500 0.322526 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.187500 -7.525650 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.187500 4.300371 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.187500 3.225279 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.187600 0.312237 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.187600 -7.758320 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.187600 4.433326 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.187600 3.324994 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.187700 0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.187700 -7.983333 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.187700 4.561904 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.187700 3.421428 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.187800 0.290742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.187800 -8.200467 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.187800 4.685981 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.187800 3.514486 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.187900 0.279557 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.187900 -8.409509 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.187900 4.805434 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.187900 3.604075 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.188000 0.268113 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.188000 -8.610251 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.188000 4.920144 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.188000 3.690108 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.188100 0.256386 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.188100 -8.802497 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.188100 5.029998 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.188100 3.772499 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.188200 0.244405 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.188200 -8.986056 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.188200 5.134889 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.188200 3.851167 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.188300 0.232185 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.188300 -9.160747 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.188300 5.234712 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.188300 3.926034 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.188400 0.219738 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.188400 -9.326397 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.188400 5.329370 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.188400 3.997027 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.188500 0.207073 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.188500 -9.482843 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.188500 5.418768 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.188500 4.064076 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.188600 0.194205 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.188600 -9.629931 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.188600 5.502818 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.188600 4.127113 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.188700 0.181147 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.188700 -9.767514 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.188700 5.581437 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.188700 4.186078 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.188800 0.167908 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.188800 -9.895458 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.188800 5.654548 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.188800 4.240911 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.188900 0.154502 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.188900 -10.013637 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.188900 5.722078 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.188900 4.291559 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.189000 0.140947 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.189000 -10.121933 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.189000 5.783962 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.189000 4.337971 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.189100 0.127252 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.189100 -10.220239 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.189100 5.840137 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.189100 4.380102 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.189200 0.113436 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.189200 -10.308459 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.189200 5.890548 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.189200 4.417911 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.189300 0.099497 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.189300 -10.386507 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.189300 5.935147 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.189300 4.451360 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.189400 0.085467 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.189400 -10.454304 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.189400 5.973888 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.189400 4.480416 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.189500 0.071350 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.189500 -10.511785 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.189500 6.006734 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.189500 4.505051 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.189600 0.057165 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.189600 -10.558891 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.189600 6.033652 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.189600 4.525239 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.189700 0.042923 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.189700 -10.595577 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.189700 6.054615 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.189700 4.540961 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.189800 0.028637 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.189800 -10.621806 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.189800 6.069603 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.189800 4.552203 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.189900 0.014324 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.189900 -10.637553 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.189900 6.078602 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.189900 4.558951 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.190000 -0.000003 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.190000 -10.642802 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.190000 6.081601 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.190000 4.561201 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.190100 -0.014331 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.190100 -10.637548 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.190100 6.078599 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.190100 4.558949 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.190200 -0.028644 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.190200 -10.621796 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.190200 6.069598 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.190200 4.552198 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.190300 -0.042929 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.190300 -10.595562 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.190300 6.054607 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.190300 4.540955 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.190400 -0.057171 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.190400 -10.558871 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.190400 6.033640 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.190400 4.525230 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.190500 -0.071358 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.190500 -10.511759 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.190500 6.006720 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.190500 4.505040 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.190600 -0.085474 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.190600 -10.454275 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.190600 5.973871 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.190600 4.480403 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.190700 -0.099504 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.190700 -10.386472 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.190700 5.935127 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.190700 4.451345 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.190800 -0.113438 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.190800 -10.308420 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.190800 5.890526 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.190800 4.417894 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.190900 -0.127258 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.190900 -10.220194 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.190900 5.840111 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.190900 4.380083 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.191000 -0.140960 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.191000 -10.121883 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.191000 5.783933 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.191000 4.337950 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.191100 -0.154511 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.191100 -10.013583 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.191100 5.722047 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.191100 4.291535 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.191200 -0.167914 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.191200 -9.895400 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.191200 5.654514 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.191200 4.240886 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.191300 -0.181150 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.191300 -9.767451 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.191300 5.581401 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.191300 4.186051 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.191400 -0.194212 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.191400 -9.629863 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.191400 5.502779 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.191400 4.127084 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.191500 -0.207080 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.191500 -9.482772 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.191500 5.418727 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.191500 4.064045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.191600 -0.219742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.191600 -9.326321 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.191600 5.329326 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.191600 3.996995 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.191700 -0.232189 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.191700 -9.160667 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.191700 5.234667 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.191700 3.926000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.191800 -0.244408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.191800 -8.985971 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.191800 5.134841 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.191800 3.851131 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.191900 -0.256384 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.191900 -8.802408 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.191900 5.029947 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.191900 3.772460 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.192000 -0.268110 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.192000 -8.610158 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.192000 4.920090 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.192000 3.690068 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.192100 -0.279574 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.192100 -8.409411 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.192100 4.805378 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.192100 3.604033 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.192200 -0.290760 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.192200 -8.200365 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.192200 4.685923 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.192200 3.514442 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.192300 -0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.192300 -7.983227 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.192300 4.561844 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.192300 3.421383 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.192400 -0.312242 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.192400 -7.758210 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.192400 4.433263 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.192400 3.324947 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.192500 -0.322534 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.192500 -7.525537 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.192500 4.300307 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.192500 3.225230 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.192600 -0.332503 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.192600 -7.285437 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.192600 4.163107 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.192600 3.122330 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.192700 -0.342146 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.192700 -7.038146 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.192700 4.021798 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.192700 3.016348 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.192800 -0.351452 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.192800 -6.783909 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.192800 3.876519 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.192800 2.907390 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.192900 -0.360411 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.192900 -6.522977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.192900 3.727415 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.192900 2.795561 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.193000 -0.369018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.193000 -6.255607 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.193000 3.574633 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.193000 2.680975 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.193100 -0.377255 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.193100 -5.982064 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.193100 3.418322 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.193100 2.563742 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.193200 -0.385122 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.193200 -5.702616 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.193200 3.258638 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.193200 2.443978 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.193300 -0.392609 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.193300 -5.417540 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.193300 3.095737 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.193300 2.321803 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.193400 -0.399715 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.193400 -5.127118 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.193400 2.929782 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.193400 2.197336 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.193500 -0.406418 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.193500 -4.831636 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.193500 2.760935 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.193500 2.070701 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.193600 -0.412720 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.193600 -4.531384 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.193600 2.589362 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.193600 1.942022 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.193700 -0.418612 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.193700 -4.226663 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.193700 2.415236 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.193700 1.811427 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.193800 -0.424096 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.193800 -3.917771 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.193800 2.238726 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.193800 1.679045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.193900 -0.429162 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.193900 -3.605011 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.193900 2.060007 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.193900 1.545005 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.194000 -0.433801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.194000 -3.288695 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.194000 1.879254 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.194000 1.409441 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.194100 -0.438018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.194100 -2.969132 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.194100 1.696647 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.194100 1.272485 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.194200 -0.441797 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.194200 -2.646639 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.194200 1.512365 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.194200 1.134274 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.194300 -0.445142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.194300 -2.321533 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.194300 1.326590 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.194300 0.994943 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.194400 -0.448054 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.194400 -1.994136 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.194400 1.139506 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.194400 0.854630 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.194500 -0.450515 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.194500 -1.664770 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.194500 0.951297 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.194500 0.713473 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.194600 -0.452532 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.194600 -1.333761 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.194600 0.762149 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.194600 0.571612 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.194700 -0.454104 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.194700 -1.001435 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.194700 0.572248 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.194700 0.429186 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.194800 -0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.194800 -0.668120 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.194800 0.381783 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.194800 0.286337 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.194900 -0.455901 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.194900 -0.334147 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.194900 0.190941 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.194900 0.143206 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.195000 -0.456129 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.195000 0.000156 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.195000 -0.000089 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.195000 -0.000067 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.195100 -0.455903 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.195100 0.334460 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.195100 -0.191120 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.195100 -0.143340 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.195200 -0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.195200 0.668433 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.195200 -0.381962 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.195200 -0.286471 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.195300 -0.454102 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.195300 1.001746 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.195300 -0.572426 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.195300 -0.429320 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.195400 -0.452531 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.195400 1.334070 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.195400 -0.762326 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.195400 -0.571744 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.195500 -0.450512 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.195500 1.665079 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.195500 -0.951474 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.195500 -0.713605 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.195600 -0.448049 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.195600 1.994444 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.195600 -1.139682 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.195600 -0.854762 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.195700 -0.445144 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.195700 2.321841 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.195700 -1.326766 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.195700 -0.995075 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.195800 -0.441801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.195800 2.646946 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.195800 -1.512541 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.195800 -1.134405 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.195900 -0.438014 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.195900 2.969438 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.195900 -1.696822 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.195900 -1.272616 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.196000 -0.433800 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.196000 3.289000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.196000 -1.879429 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.196000 -1.409571 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.196100 -0.429161 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.196100 3.605315 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.196100 -2.060180 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.196100 -1.545135 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.196200 -0.424092 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.196200 3.918073 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.196200 -2.238899 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.196200 -1.679174 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.196300 -0.418611 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.196300 4.226963 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.196300 -2.415408 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.196300 -1.811556 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.196400 -0.412713 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.196400 4.531683 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.196400 -2.589533 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.196400 -1.942150 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.196500 -0.406409 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.196500 4.831930 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.196500 -2.761103 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.196500 -2.070827 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.196600 -0.399708 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.196600 5.127410 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.196600 -2.929949 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.196600 -2.197461 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.196700 -0.392610 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.196700 5.417830 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.196700 -3.095903 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.196700 -2.321927 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.196800 -0.385125 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.196800 5.702903 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.196800 -3.258802 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.196800 -2.444101 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.196900 -0.377251 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.196900 5.982348 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.196900 -3.418485 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.196900 -2.563864 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.197000 -0.369011 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.197000 6.255889 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.197000 -3.574794 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.197000 -2.681095 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.197100 -0.360408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.197100 6.523256 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.197100 -3.727575 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.197100 -2.795681 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.197200 -0.351451 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.197200 6.784185 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.197200 -3.876677 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.197200 -2.907508 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.197300 -0.342142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.197300 7.038419 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.197300 -4.021954 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.197300 -3.016465 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.197400 -0.332498 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.197400 7.285707 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.197400 -4.163261 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.197400 -3.122446 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.197500 -0.322526 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.197500 7.525805 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.197500 -4.300460 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.197500 -3.225345 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.197600 -0.312237 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.197600 7.758475 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.197600 -4.433414 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.197600 -3.325061 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.197700 -0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.197700 7.983487 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.197700 -4.561993 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.197700 -3.421495 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.197800 -0.290742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.197800 8.200622 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.197800 -4.686070 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.197800 -3.514552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.197900 -0.279557 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.197900 8.409664 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.197900 -4.805522 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.197900 -3.604142 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.198000 -0.268113 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.198000 8.610406 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.198000 -4.920232 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.198000 -3.690174 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.198100 -0.256386 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.198100 8.802651 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.198100 -5.030087 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.198100 -3.772565 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.198200 -0.244405 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.198200 8.986210 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.198200 -5.134977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.198200 -3.851233 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.198300 -0.232185 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.198300 9.160902 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.198300 -5.234801 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.198300 -3.926101 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.198400 -0.219738 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.198400 9.326552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.198400 -5.329458 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.198400 -3.997094 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.198500 -0.207073 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.198500 9.482998 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.198500 -5.418856 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.198500 -4.064142 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.198600 -0.194205 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.198600 9.630086 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.198600 -5.502906 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.198600 -4.127180 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.198700 -0.181147 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.198700 9.767669 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.198700 -5.581525 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.198700 -4.186144 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.198800 -0.167908 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.198800 9.895613 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.198800 -5.654636 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.198800 -4.240977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.198900 -0.154502 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.198900 10.013792 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.198900 -5.722167 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.198900 -4.291625 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.199000 -0.140947 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.199000 10.122088 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.199000 -5.784050 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.199000 -4.338038 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.199100 -0.127252 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.199100 10.220394 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.199100 -5.840225 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.199100 -4.380169 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.199200 -0.113436 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.199200 10.308614 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.199200 -5.890636 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.199200 -4.417977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.199300 -0.099497 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.199300 10.386662 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.199300 -5.935235 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.199300 -4.451426 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.199400 -0.085467 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.199400 10.454459 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.199400 -5.973977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.199400 -4.480482 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.199500 -0.071350 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.199500 10.511939 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.199500 -6.006823 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.199500 -4.505117 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.199600 -0.057165 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.199600 10.559045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.199600 -6.033740 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.199600 -4.525305 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.199700 -0.042923 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.199700 10.595731 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.199700 -6.054704 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.199700 -4.541028 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.199800 -0.028637 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.199800 10.621961 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.199800 -6.069692 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.199800 -4.552269 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.199900 -0.014324 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.199900 10.637708 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.199900 -6.078690 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.199900 -4.559018 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.200000 0.000003 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.200000 10.642957 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.200000 -6.081690 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.200000 -4.561267 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.200100 0.014331 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.200100 10.637703 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.200100 -6.078687 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.200100 -4.559015 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.200200 0.028644 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.200200 10.621951 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.200200 -6.069686 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.200200 -4.552265 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.200300 0.042929 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.200300 10.595716 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.200300 -6.054695 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.200300 -4.541021 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.200400 0.057171 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.200400 10.559025 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.200400 -6.033729 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.200400 -4.525297 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.200500 0.071358 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.200500 10.511914 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.200500 -6.006808 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.200500 -4.505106 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.200600 0.085474 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.200600 10.454429 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.200600 -5.973960 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.200600 -4.480470 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.200700 0.099504 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.200700 10.386627 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.200700 -5.935215 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.200700 -4.451412 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.200800 0.113438 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.200800 10.308575 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.200800 -5.890614 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.200800 -4.417961 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.200900 0.127258 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.200900 10.220348 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.200900 -5.840199 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.200900 -4.380149 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.201000 0.140960 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.201000 10.122038 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.201000 -5.784022 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.201000 -4.338016 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.201100 0.154511 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.201100 10.013738 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.201100 -5.722136 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.201100 -4.291602 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.201200 0.167914 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.201200 9.895555 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.201200 -5.654603 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.201200 -4.240952 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.201300 0.181150 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.201300 9.767606 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.201300 -5.581489 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.201300 -4.186117 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.201400 0.194212 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.201400 9.630018 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.201400 -5.502867 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.201400 -4.127151 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.201500 0.207080 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.201500 9.482926 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.201500 -5.418815 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.201500 -4.064111 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.201600 0.219742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.201600 9.326476 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.201600 -5.329415 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.201600 -3.997061 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.201700 0.232189 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.201700 9.160821 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.201700 -5.234755 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.201700 -3.926066 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.201800 0.244408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.201800 8.986126 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.201800 -5.134929 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.201800 -3.851197 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.201900 0.256384 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.201900 8.802562 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.201900 -5.030036 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.201900 -3.772527 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.202000 0.268110 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.202000 8.610312 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.202000 -4.920178 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.202000 -3.690134 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.202100 0.279574 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.202100 8.409566 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.202100 -4.805466 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.202100 -3.604100 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.202200 0.290760 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.202200 8.200520 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.202200 -4.686011 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.202200 -3.514509 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.202300 0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.202300 7.983382 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.202300 -4.561932 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.202300 -3.421449 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.202400 0.312242 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.202400 7.758365 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.202400 -4.433351 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.202400 -3.325014 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.202500 0.322534 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.202500 7.525692 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.202500 -4.300395 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.202500 -3.225297 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.202600 0.332503 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.202600 7.285592 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.202600 -4.163195 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.202600 -3.122396 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.202700 0.342146 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.202700 7.038301 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.202700 -4.021886 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.202700 -3.016415 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.202800 0.351452 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.202800 6.784064 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.202800 -3.876608 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.202800 -2.907456 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.202900 0.360411 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.202900 6.523131 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.202900 -3.727504 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.202900 -2.795628 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.203000 0.369018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.203000 6.255762 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.203000 -3.574721 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.203000 -2.681041 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.203100 0.377255 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.203100 5.982218 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.203100 -3.418410 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.203100 -2.563808 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.203200 0.385122 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.203200 5.702771 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.203200 -3.258726 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.203200 -2.444045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.203300 0.392609 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.203300 5.417695 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.203300 -3.095826 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.203300 -2.321869 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.203400 0.399715 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.203400 5.127273 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.203400 -2.929870 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.203400 -2.197403 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.203500 0.406418 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.203500 4.831790 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.203500 -2.761023 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.203500 -2.070767 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.203600 0.412720 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.203600 4.531539 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.203600 -2.589451 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.203600 -1.942088 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.203700 0.418612 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.203700 4.226818 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.203700 -2.415324 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.203700 -1.811493 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.203800 0.424096 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.203800 3.917925 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.203800 -2.238814 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.203800 -1.679111 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.203900 0.429162 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.203900 3.605166 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.203900 -2.060095 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.203900 -1.545071 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.204000 0.433801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.204000 3.288849 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.204000 -1.879342 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.204000 -1.409507 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.204100 0.438018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.204100 2.969287 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.204100 -1.696735 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.204100 -1.272552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.204200 0.441797 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.204200 2.646794 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.204200 -1.512453 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.204200 -1.134340 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.204300 0.445142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.204300 2.321688 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.204300 -1.326679 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.204300 -0.995009 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.204400 0.448054 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.204400 1.994291 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.204400 -1.139595 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.204400 -0.854696 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.204500 0.450515 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.204500 1.664925 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.204500 -0.951386 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.204500 -0.713539 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.204600 0.452532 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.204600 1.333915 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.204600 -0.762237 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.204600 -0.571678 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.204700 0.454104 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.204700 1.001589 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.204700 -0.572337 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.204700 -0.429253 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.204800 0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.204800 0.668274 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.204800 -0.381871 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.204800 -0.286403 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.204900 0.455901 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.204900 0.334302 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.204900 -0.191029 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.204900 -0.143272 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.205000 0.456129 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.205000 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.205000 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.205000 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.205100 0.455903 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.205100 -0.334305 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.205100 0.191032 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.205100 0.143274 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.205200 0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.205200 -0.668278 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.205200 0.381873 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.205200 0.286405 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.205300 0.454102 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.205300 -1.001591 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.205300 0.572338 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.205300 0.429253 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.205400 0.452531 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.205400 -1.333915 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.205400 0.762237 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.205400 0.571678 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.205500 0.450512 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.205500 -1.664924 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.205500 0.951385 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.205500 0.713539 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.205600 0.448049 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.205600 -1.994290 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.205600 1.139594 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.205600 0.854696 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.205700 0.445144 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.205700 -2.321686 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.205700 1.326678 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.205700 0.995008 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.205800 0.441801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.205800 -2.646791 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.205800 1.512452 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.205800 1.134339 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.205900 0.438014 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.205900 -2.969284 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.205900 1.696734 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.205900 1.272550 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.206000 0.433800 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.206000 -3.288845 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.206000 1.879340 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.206000 1.409505 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.206100 0.429161 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.206100 -3.605161 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.206100 2.060092 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.206100 1.545069 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.206200 0.424092 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.206200 -3.917918 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.206200 2.238810 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.206200 1.679108 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.206300 0.418611 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.206300 -4.226809 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.206300 2.415319 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.206300 1.811489 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.206400 0.412713 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.206400 -4.531528 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.206400 2.589444 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.206400 1.942083 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.206500 0.406409 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.206500 -4.831775 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.206500 2.761014 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.206500 2.070761 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.206600 0.399708 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.206600 -5.127255 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.206600 2.929860 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.206600 2.197395 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.206700 0.392610 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.206700 -5.417675 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.206700 3.095815 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.206700 2.321861 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.206800 0.385125 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.206800 -5.702749 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.206800 3.258713 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.206800 2.444035 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.206900 0.377251 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.206900 -5.982194 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.206900 3.418396 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.206900 2.563797 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.207000 0.369011 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.207000 -6.255735 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.207000 3.574706 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.207000 2.681029 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.207100 0.360408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.207100 -6.523102 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.207100 3.727487 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.207100 2.795615 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.207200 0.351451 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.207200 -6.784031 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.207200 3.876589 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.207200 2.907442 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.207300 0.342142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.207300 -7.038265 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.207300 4.021865 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.207300 3.016399 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.207400 0.332498 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.207400 -7.285552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.207400 4.163173 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.207400 3.122380 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.207500 0.322526 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.207500 -7.525650 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.207500 4.300371 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.207500 3.225279 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.207600 0.312237 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.207600 -7.758320 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.207600 4.433326 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.207600 3.324994 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.207700 0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.207700 -7.983333 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.207700 4.561904 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.207700 3.421428 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.207800 0.290742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.207800 -8.200467 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.207800 4.685981 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.207800 3.514486 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.207900 0.279557 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.207900 -8.409509 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.207900 4.805434 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.207900 3.604075 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.208000 0.268113 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.208000 -8.610251 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.208000 4.920144 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.208000 3.690108 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.208100 0.256386 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.208100 -8.802497 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.208100 5.029998 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.208100 3.772499 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.208200 0.244405 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.208200 -8.986056 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.208200 5.134889 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.208200 3.851167 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.208300 0.232185 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.208300 -9.160747 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.208300 5.234712 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.208300 3.926034 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.208400 0.219738 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.208400 -9.326397 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.208400 5.329370 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.208400 3.997027 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.208500 0.207073 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.208500 -9.482843 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.208500 5.418768 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.208500 4.064076 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.208600 0.194205 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.208600 -9.629931 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.208600 5.502818 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.208600 4.127113 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.208700 0.181147 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.208700 -9.767514 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.208700 5.581437 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.208700 4.186078 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.208800 0.167908 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.208800 -9.895458 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.208800 5.654548 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.208800 4.240911 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.208900 0.154502 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.208900 -10.013637 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.208900 5.722078 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.208900 4.291559 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.209000 0.140947 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.209000 -10.121933 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.209000 5.783962 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.209000 4.337971 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.209100 0.127252 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.209100 -10.220239 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.209100 5.840137 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.209100 4.380102 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.209200 0.113436 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.209200 -10.308459 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.209200 5.890548 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.209200 4.417911 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.209300 0.099497 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.209300 -10.386507 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.209300 5.935147 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.209300 4.451360 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.209400 0.085467 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.209400 -10.454304 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.209400 5.973888 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.209400 4.480416 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.209500 0.071350 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.209500 -10.511785 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.209500 6.006734 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.209500 4.505051 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.209600 0.057165 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.209600 -10.558891 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.209600 6.033652 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.209600 4.525239 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.209700 0.042923 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.209700 -10.595577 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.209700 6.054615 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.209700 4.540961 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.209800 0.028637 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.209800 -10.621806 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.209800 6.069603 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.209800 4.552203 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.209900 0.014324 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.209900 -10.637553 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.209900 6.078602 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.209900 4.558951 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.210000 -0.000003 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.210000 -10.642802 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.210000 6.081601 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.210000 4.561201 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.210100 -0.014331 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.210100 -10.637548 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.210100 6.078599 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.210100 4.558949 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.210200 -0.028644 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.210200 -10.621796 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.210200 6.069598 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.210200 4.552198 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.210300 -0.042929 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.210300 -10.595562 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.210300 6.054607 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.210300 4.540955 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.210400 -0.057171 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.210400 -10.558871 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.210400 6.033640 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.210400 4.525230 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.210500 -0.071358 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.210500 -10.511759 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.210500 6.006720 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.210500 4.505040 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.210600 -0.085474 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.210600 -10.454275 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.210600 5.973871 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.210600 4.480403 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.210700 -0.099504 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.210700 -10.386472 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.210700 5.935127 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.210700 4.451345 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.210800 -0.113438 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.210800 -10.308420 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.210800 5.890526 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.210800 4.417894 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.210900 -0.127258 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.210900 -10.220194 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.210900 5.840111 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.210900 4.380083 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.211000 -0.140960 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.211000 -10.121883 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.211000 5.783933 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.211000 4.337950 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.211100 -0.154511 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.211100 -10.013583 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.211100 5.722047 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.211100 4.291535 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.211200 -0.167914 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.211200 -9.895400 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.211200 5.654514 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.211200 4.240886 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.211300 -0.181150 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.211300 -9.767451 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.211300 5.581401 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.211300 4.186051 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.211400 -0.194212 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.211400 -9.629863 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.211400 5.502779 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.211400 4.127084 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.211500 -0.207080 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.211500 -9.482772 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.211500 5.418727 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.211500 4.064045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.211600 -0.219742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.211600 -9.326321 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.211600 5.329326 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.211600 3.996995 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.211700 -0.232189 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.211700 -9.160667 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.211700 5.234667 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.211700 3.926000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.211800 -0.244408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.211800 -8.985971 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.211800 5.134841 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.211800 3.851131 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.211900 -0.256384 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.211900 -8.802408 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.211900 5.029947 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.211900 3.772460 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.212000 -0.268110 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.212000 -8.610158 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.212000 4.920090 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.212000 3.690068 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.212100 -0.279574 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.212100 -8.409411 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.212100 4.805378 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.212100 3.604033 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.212200 -0.290760 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.212200 -8.200365 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.212200 4.685923 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.212200 3.514442 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.212300 -0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.212300 -7.983227 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.212300 4.561844 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.212300 3.421383 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.212400 -0.312242 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.212400 -7.758210 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.212400 4.433263 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.212400 3.324947 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.212500 -0.322534 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.212500 -7.525537 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.212500 4.300307 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.212500 3.225230 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.212600 -0.332503 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.212600 -7.285437 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.212600 4.163107 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.212600 3.122330 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.212700 -0.342146 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.212700 -7.038146 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.212700 4.021798 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.212700 3.016348 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.212800 -0.351452 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.212800 -6.783909 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.212800 3.876519 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.212800 2.907390 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.212900 -0.360411 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.212900 -6.522977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.212900 3.727415 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.212900 2.795561 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.213000 -0.369018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.213000 -6.255607 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.213000 3.574633 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.213000 2.680975 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.213100 -0.377255 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.213100 -5.982064 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.213100 3.418322 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.213100 2.563742 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.213200 -0.385122 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.213200 -5.702616 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.213200 3.258638 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.213200 2.443978 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.213300 -0.392609 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.213300 -5.417540 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.213300 3.095737 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.213300 2.321803 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.213400 -0.399715 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.213400 -5.127118 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.213400 2.929782 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.213400 2.197336 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.213500 -0.406418 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.213500 -4.831636 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.213500 2.760935 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.213500 2.070701 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.213600 -0.412720 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.213600 -4.531384 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.213600 2.589362 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.213600 1.942022 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.213700 -0.418612 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.213700 -4.226663 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.213700 2.415236 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.213700 1.811427 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.213800 -0.424096 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.213800 -3.917771 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.213800 2.238726 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.213800 1.679045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.213900 -0.429162 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.213900 -3.605011 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.213900 2.060007 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.213900 1.545005 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.214000 -0.433801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.214000 -3.288695 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.214000 1.879254 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.214000 1.409441 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.214100 -0.438018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.214100 -2.969132 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.214100 1.696647 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.214100 1.272485 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.214200 -0.441797 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.214200 -2.646639 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.214200 1.512365 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.214200 1.134274 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.214300 -0.445142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.214300 -2.321533 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.214300 1.326590 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.214300 0.994943 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.214400 -0.448054 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.214400 -1.994136 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.214400 1.139506 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.214400 0.854630 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.214500 -0.450515 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.214500 -1.664770 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.214500 0.951297 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.214500 0.713473 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.214600 -0.452532 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.214600 -1.333761 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.214600 0.762149 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.214600 0.571612 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.214700 -0.454104 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.214700 -1.001435 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.214700 0.572248 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.214700 0.429186 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.214800 -0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.214800 -0.668120 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.214800 0.381783 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.214800 0.286337 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.214900 -0.455901 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.214900 -0.334147 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.214900 0.190941 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.214900 0.143206 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.215000 -0.456129 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.215000 0.000156 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.215000 -0.000089 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.215000 -0.000067 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.215100 -0.455903 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.215100 0.334460 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.215100 -0.191120 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.215100 -0.143340 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.215200 -0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.215200 0.668433 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.215200 -0.381962 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.215200 -0.286471 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.215300 -0.454102 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.215300 1.001746 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.215300 -0.572426 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.215300 -0.429320 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.215400 -0.452531 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.215400 1.334070 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.215400 -0.762326 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.215400 -0.571744 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.215500 -0.450512 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.215500 1.665079 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.215500 -0.951474 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.215500 -0.713605 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.215600 -0.448049 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.215600 1.994444 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.215600 -1.139682 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.215600 -0.854762 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.215700 -0.445144 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.215700 2.321841 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.215700 -1.326766 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.215700 -0.995075 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.215800 -0.441801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.215800 2.646946 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.215800 -1.512541 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.215800 -1.134405 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.215900 -0.438014 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.215900 2.969438 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.215900 -1.696822 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.215900 -1.272616 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.216000 -0.433800 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.216000 3.289000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.216000 -1.879429 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.216000 -1.409571 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.216100 -0.429161 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.216100 3.605315 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.216100 -2.060180 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.216100 -1.545135 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.216200 -0.424092 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.216200 3.918073 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.216200 -2.238899 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.216200 -1.679174 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.216300 -0.418611 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.216300 4.226963 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.216300 -2.415408 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.216300 -1.811556 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.216400 -0.412713 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.216400 4.531683 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.216400 -2.589533 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.216400 -1.942150 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.216500 -0.406409 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.216500 4.831930 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.216500 -2.761103 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.216500 -2.070827 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.216600 -0.399708 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.216600 5.127410 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.216600 -2.929949 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.216600 -2.197461 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.216700 -0.392610 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.216700 5.417830 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.216700 -3.095903 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.216700 -2.321927 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.216800 -0.385125 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.216800 5.702903 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.216800 -3.258802 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.216800 -2.444101 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.216900 -0.377251 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.216900 5.982348 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.216900 -3.418485 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.216900 -2.563864 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.217000 -0.369011 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.217000 6.255889 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.217000 -3.574794 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.217000 -2.681095 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.217100 -0.360408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.217100 6.523256 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.217100 -3.727575 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.217100 -2.795681 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.217200 -0.351451 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.217200 6.784185 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.217200 -3.876677 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.217200 -2.907508 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.217300 -0.342142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.217300 7.038419 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.217300 -4.021954 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.217300 -3.016465 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.217400 -0.332498 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.217400 7.285707 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.217400 -4.163261 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.217400 -3.122446 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.217500 -0.322526 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.217500 7.525805 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.217500 -4.300460 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.217500 -3.225345 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.217600 -0.312237 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.217600 7.758475 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.217600 -4.433414 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.217600 -3.325061 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.217700 -0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.217700 7.983487 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.217700 -4.561993 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.217700 -3.421495 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.217800 -0.290742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.217800 8.200622 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.217800 -4.686070 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.217800 -3.514552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.217900 -0.279557 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.217900 8.409664 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.217900 -4.805522 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.217900 -3.604142 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.218000 -0.268113 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.218000 8.610406 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.218000 -4.920232 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.218000 -3.690174 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.218100 -0.256386 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.218100 8.802651 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.218100 -5.030087 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.218100 -3.772565 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.218200 -0.244405 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.218200 8.986210 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.218200 -5.134977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.218200 -3.851233 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.218300 -0.232185 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.218300 9.160902 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.218300 -5.234801 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.218300 -3.926101 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.218400 -0.219738 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.218400 9.326552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.218400 -5.329458 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.218400 -3.997094 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.218500 -0.207073 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.218500 9.482998 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.218500 -5.418856 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.218500 -4.064142 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.218600 -0.194205 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.218600 9.630086 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.218600 -5.502906 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.218600 -4.127180 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.218700 -0.181147 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.218700 9.767669 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.218700 -5.581525 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.218700 -4.186144 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.218800 -0.167908 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.218800 9.895613 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.218800 -5.654636 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.218800 -4.240977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.218900 -0.154502 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.218900 10.013792 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.218900 -5.722167 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.218900 -4.291625 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.219000 -0.140947 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.219000 10.122088 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.219000 -5.784050 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.219000 -4.338038 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.219100 -0.127252 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.219100 10.220394 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.219100 -5.840225 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.219100 -4.380169 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.219200 -0.113436 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.219200 10.308614 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.219200 -5.890636 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.219200 -4.417977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.219300 -0.099497 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.219300 10.386662 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.219300 -5.935235 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.219300 -4.451426 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.219400 -0.085467 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.219400 10.454459 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.219400 -5.973977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.219400 -4.480482 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.219500 -0.071350 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.219500 10.511939 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.219500 -6.006823 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.219500 -4.505117 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.219600 -0.057165 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.219600 10.559045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.219600 -6.033740 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.219600 -4.525305 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.219700 -0.042923 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.219700 10.595731 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.219700 -6.054704 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.219700 -4.541028 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.219800 -0.028637 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.219800 10.621961 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.219800 -6.069692 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.219800 -4.552269 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.219900 -0.014324 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.219900 10.637708 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.219900 -6.078690 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.219900 -4.559018 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.220000 0.000003 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.220000 10.642957 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.220000 -6.081690 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.220000 -4.561267 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.220100 0.014331 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.220100 10.637703 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.220100 -6.078687 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.220100 -4.559015 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.220200 0.028644 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.220200 10.621951 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.220200 -6.069686 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.220200 -4.552265 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.220300 0.042929 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.220300 10.595716 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.220300 -6.054695 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.220300 -4.541021 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.220400 0.057171 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.220400 10.559025 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.220400 -6.033729 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.220400 -4.525297 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.220500 0.071358 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.220500 10.511914 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.220500 -6.006808 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.220500 -4.505106 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.220600 0.085474 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.220600 10.454429 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.220600 -5.973960 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.220600 -4.480470 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.220700 0.099504 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.220700 10.386627 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.220700 -5.935215 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.220700 -4.451412 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.220800 0.113438 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.220800 10.308575 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.220800 -5.890614 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.220800 -4.417961 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.220900 0.127258 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.220900 10.220348 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.220900 -5.840199 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.220900 -4.380149 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.221000 0.140960 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.221000 10.122038 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.221000 -5.784022 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.221000 -4.338016 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.221100 0.154511 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.221100 10.013738 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.221100 -5.722136 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.221100 -4.291602 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.221200 0.167914 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.221200 9.895555 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.221200 -5.654603 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.221200 -4.240952 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.221300 0.181150 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.221300 9.767606 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.221300 -5.581489 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.221300 -4.186117 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.221400 0.194212 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.221400 9.630018 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.221400 -5.502867 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.221400 -4.127151 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.221500 0.207080 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.221500 9.482926 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.221500 -5.418815 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.221500 -4.064111 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.221600 0.219742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.221600 9.326476 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.221600 -5.329415 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.221600 -3.997061 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.221700 0.232189 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.221700 9.160821 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.221700 -5.234755 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.221700 -3.926066 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.221800 0.244408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.221800 8.986126 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.221800 -5.134929 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.221800 -3.851197 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.221900 0.256384 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.221900 8.802562 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.221900 -5.030036 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.221900 -3.772527 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.222000 0.268110 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.222000 8.610312 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.222000 -4.920178 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.222000 -3.690134 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.222100 0.279574 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.222100 8.409566 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.222100 -4.805466 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.222100 -3.604100 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.222200 0.290760 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.222200 8.200520 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.222200 -4.686011 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.222200 -3.514509 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.222300 0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.222300 7.983382 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.222300 -4.561932 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.222300 -3.421449 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.222400 0.312242 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.222400 7.758365 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.222400 -4.433351 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.222400 -3.325014 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.222500 0.322534 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.222500 7.525692 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.222500 -4.300395 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.222500 -3.225297 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.222600 0.332503 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.222600 7.285592 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.222600 -4.163195 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.222600 -3.122396 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.222700 0.342146 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.222700 7.038301 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.222700 -4.021886 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.222700 -3.016415 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.222800 0.351452 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.222800 6.784064 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.222800 -3.876608 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.222800 -2.907456 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.222900 0.360411 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.222900 6.523131 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.222900 -3.727504 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.222900 -2.795628 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.223000 0.369018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.223000 6.255762 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.223000 -3.574721 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.223000 -2.681041 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.223100 0.377255 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.223100 5.982218 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.223100 -3.418410 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.223100 -2.563808 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.223200 0.385122 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.223200 5.702771 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.223200 -3.258726 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.223200 -2.444045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.223300 0.392609 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.223300 5.417695 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.223300 -3.095826 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.223300 -2.321869 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.223400 0.399715 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.223400 5.127273 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.223400 -2.929870 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.223400 -2.197403 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.223500 0.406418 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.223500 4.831790 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.223500 -2.761023 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.223500 -2.070767 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.223600 0.412720 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.223600 4.531539 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.223600 -2.589451 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.223600 -1.942088 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.223700 0.418612 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.223700 4.226818 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.223700 -2.415324 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.223700 -1.811493 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.223800 0.424096 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.223800 3.917925 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.223800 -2.238814 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.223800 -1.679111 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.223900 0.429162 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.223900 3.605166 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.223900 -2.060095 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.223900 -1.545071 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.224000 0.433801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.224000 3.288849 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.224000 -1.879342 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.224000 -1.409507 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.224100 0.438018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.224100 2.969287 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.224100 -1.696735 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.224100 -1.272552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.224200 0.441797 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.224200 2.646794 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.224200 -1.512453 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.224200 -1.134340 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.224300 0.445142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.224300 2.321688 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.224300 -1.326679 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.224300 -0.995009 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.224400 0.448054 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.224400 1.994291 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.224400 -1.139595 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.224400 -0.854696 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.224500 0.450515 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.224500 1.664925 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.224500 -0.951386 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.224500 -0.713539 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.224600 0.452532 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.224600 1.333915 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.224600 -0.762237 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.224600 -0.571678 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.224700 0.454104 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.224700 1.001589 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.224700 -0.572337 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.224700 -0.429253 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.224800 0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.224800 0.668274 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.224800 -0.381871 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.224800 -0.286403 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.224900 0.455901 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.224900 0.334302 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.224900 -0.191029 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.224900 -0.143272 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.225000 0.456129 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.225000 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.225000 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.225000 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.225100 0.455903 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.225100 -0.334305 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.225100 0.191032 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.225100 0.143274 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.225200 0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.225200 -0.668278 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.225200 0.381873 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.225200 0.286405 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.225300 0.454102 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.225300 -1.001591 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.225300 0.572338 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.225300 0.429253 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.225400 0.452531 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.225400 -1.333915 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.225400 0.762237 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.225400 0.571678 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.225500 0.450512 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.225500 -1.664924 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.225500 0.951385 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.225500 0.713539 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.225600 0.448049 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.225600 -1.994290 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.225600 1.139594 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.225600 0.854696 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.225700 0.445144 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.225700 -2.321686 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.225700 1.326678 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.225700 0.995008 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.225800 0.441801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.225800 -2.646791 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.225800 1.512452 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.225800 1.134339 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.225900 0.438014 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.225900 -2.969284 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.225900 1.696734 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.225900 1.272550 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.226000 0.433800 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.226000 -3.288845 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.226000 1.879340 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.226000 1.409505 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.226100 0.429161 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.226100 -3.605161 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.226100 2.060092 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.226100 1.545069 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.226200 0.424092 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.226200 -3.917918 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.226200 2.238810 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.226200 1.679108 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.226300 0.418611 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.226300 -4.226809 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.226300 2.415319 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.226300 1.811489 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.226400 0.412713 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.226400 -4.531528 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.226400 2.589444 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.226400 1.942083 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.226500 0.406409 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.226500 -4.831775 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.226500 2.761014 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.226500 2.070761 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.226600 0.399708 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.226600 -5.127255 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.226600 2.929860 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.226600 2.197395 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.226700 0.392610 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.226700 -5.417675 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.226700 3.095815 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.226700 2.321861 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.226800 0.385125 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.226800 -5.702749 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.226800 3.258713 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.226800 2.444035 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.226900 0.377251 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.226900 -5.982194 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.226900 3.418396 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.226900 2.563797 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.227000 0.369011 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.227000 -6.255735 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.227000 3.574706 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.227000 2.681029 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.227100 0.360408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.227100 -6.523102 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.227100 3.727487 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.227100 2.795615 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.227200 0.351451 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.227200 -6.784031 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.227200 3.876589 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.227200 2.907442 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.227300 0.342142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.227300 -7.038265 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.227300 4.021865 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.227300 3.016399 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.227400 0.332498 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.227400 -7.285552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.227400 4.163173 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.227400 3.122380 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.227500 0.322526 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.227500 -7.525650 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.227500 4.300371 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.227500 3.225279 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.227600 0.312237 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.227600 -7.758320 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.227600 4.433326 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.227600 3.324994 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.227700 0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.227700 -7.983333 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.227700 4.561904 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.227700 3.421428 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.227800 0.290742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.227800 -8.200467 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.227800 4.685981 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.227800 3.514486 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.227900 0.279557 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.227900 -8.409509 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.227900 4.805434 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.227900 3.604075 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.228000 0.268113 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.228000 -8.610251 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.228000 4.920144 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.228000 3.690108 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.228100 0.256386 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.228100 -8.802497 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.228100 5.029998 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.228100 3.772499 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.228200 0.244405 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.228200 -8.986056 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.228200 5.134889 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.228200 3.851167 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.228300 0.232185 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.228300 -9.160747 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.228300 5.234712 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.228300 3.926034 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.228400 0.219738 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.228400 -9.326397 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.228400 5.329370 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.228400 3.997027 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.228500 0.207073 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.228500 -9.482843 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.228500 5.418768 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.228500 4.064076 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.228600 0.194205 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.228600 -9.629931 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.228600 5.502818 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.228600 4.127113 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.228700 0.181147 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.228700 -9.767514 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.228700 5.581437 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.228700 4.186078 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.228800 0.167908 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.228800 -9.895458 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.228800 5.654548 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.228800 4.240911 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.228900 0.154502 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.228900 -10.013637 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.228900 5.722078 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.228900 4.291559 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.229000 0.140947 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.229000 -10.121933 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.229000 5.783962 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.229000 4.337971 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.229100 0.127252 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.229100 -10.220239 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.229100 5.840137 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.229100 4.380102 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.229200 0.113436 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.229200 -10.308459 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.229200 5.890548 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.229200 4.417911 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.229300 0.099497 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.229300 -10.386507 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.229300 5.935147 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.229300 4.451360 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.229400 0.085467 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.229400 -10.454304 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.229400 5.973888 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.229400 4.480416 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.229500 0.071350 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.229500 -10.511785 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.229500 6.006734 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.229500 4.505051 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.229600 0.057165 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.229600 -10.558891 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.229600 6.033652 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.229600 4.525239 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.229700 0.042923 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.229700 -10.595577 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.229700 6.054615 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.229700 4.540961 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.229800 0.028637 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.229800 -10.621806 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.229800 6.069603 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.229800 4.552203 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.229900 0.014324 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.229900 -10.637553 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.229900 6.078602 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.229900 4.558951 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.230000 -0.000003 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.230000 -10.642802 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.230000 6.081601 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.230000 4.561201 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.230100 -0.014331 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.230100 -10.637548 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.230100 6.078599 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.230100 4.558949 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.230200 -0.028644 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.230200 -10.621796 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.230200 6.069598 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.230200 4.552198 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.230300 -0.042929 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.230300 -10.595562 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.230300 6.054607 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.230300 4.540955 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.230400 -0.057171 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.230400 -10.558871 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.230400 6.033640 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.230400 4.525230 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.230500 -0.071358 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.230500 -10.511759 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.230500 6.006720 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.230500 4.505040 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.230600 -0.085474 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.230600 -10.454275 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.230600 5.973871 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.230600 4.480403 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.230700 -0.099504 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.230700 -10.386472 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.230700 5.935127 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.230700 4.451345 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.230800 -0.113438 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.230800 -10.308420 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.230800 5.890526 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.230800 4.417894 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.230900 -0.127258 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.230900 -10.220194 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.230900 5.840111 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.230900 4.380083 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.231000 -0.140960 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.231000 -10.121883 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.231000 5.783933 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.231000 4.337950 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.231100 -0.154511 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.231100 -10.013583 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.231100 5.722047 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.231100 4.291535 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.231200 -0.167914 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.231200 -9.895400 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.231200 5.654514 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.231200 4.240886 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.231300 -0.181150 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.231300 -9.767451 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.231300 5.581401 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.231300 4.186051 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.231400 -0.194212 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.231400 -9.629863 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.231400 5.502779 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.231400 4.127084 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.231500 -0.207080 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.231500 -9.482772 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.231500 5.418727 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.231500 4.064045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.231600 -0.219742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.231600 -9.326321 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.231600 5.329326 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.231600 3.996995 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.231700 -0.232189 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.231700 -9.160667 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.231700 5.234667 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.231700 3.926000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.231800 -0.244408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.231800 -8.985971 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.231800 5.134841 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.231800 3.851131 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.231900 -0.256384 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.231900 -8.802408 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.231900 5.029947 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.231900 3.772460 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.232000 -0.268110 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.232000 -8.610158 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.232000 4.920090 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.232000 3.690068 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.232100 -0.279574 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.232100 -8.409411 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.232100 4.805378 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.232100 3.604033 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.232200 -0.290760 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.232200 -8.200365 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.232200 4.685923 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.232200 3.514442 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.232300 -0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.232300 -7.983227 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.232300 4.561844 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.232300 3.421383 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.232400 -0.312242 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.232400 -7.758210 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.232400 4.433263 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.232400 3.324947 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.232500 -0.322534 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.232500 -7.525537 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.232500 4.300307 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.232500 3.225230 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.232600 -0.332503 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.232600 -7.285437 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.232600 4.163107 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.232600 3.122330 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.232700 -0.342146 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.232700 -7.038146 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.232700 4.021798 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.232700 3.016348 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.232800 -0.351452 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.232800 -6.783909 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.232800 3.876519 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.232800 2.907390 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.232900 -0.360411 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.232900 -6.522977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.232900 3.727415 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.232900 2.795561 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.233000 -0.369018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.233000 -6.255607 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.233000 3.574633 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.233000 2.680975 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.233100 -0.377255 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.233100 -5.982064 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.233100 3.418322 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.233100 2.563742 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.233200 -0.385122 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.233200 -5.702616 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.233200 3.258638 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.233200 2.443978 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.233300 -0.392609 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.233300 -5.417540 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.233300 3.095737 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.233300 2.321803 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.233400 -0.399715 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.233400 -5.127118 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.233400 2.929782 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.233400 2.197336 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.233500 -0.406418 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.233500 -4.831636 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.233500 2.760935 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.233500 2.070701 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.233600 -0.412720 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.233600 -4.531384 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.233600 2.589362 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.233600 1.942022 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.233700 -0.418612 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.233700 -4.226663 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.233700 2.415236 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.233700 1.811427 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.233800 -0.424096 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.233800 -3.917771 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.233800 2.238726 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.233800 1.679045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.233900 -0.429162 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.233900 -3.605011 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.233900 2.060007 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.233900 1.545005 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.234000 -0.433801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.234000 -3.288695 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.234000 1.879254 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.234000 1.409441 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.234100 -0.438018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.234100 -2.969132 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.234100 1.696647 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.234100 1.272485 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.234200 -0.441797 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.234200 -2.646639 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.234200 1.512365 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.234200 1.134274 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.234300 -0.445142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.234300 -2.321533 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.234300 1.326590 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.234300 0.994943 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.234400 -0.448054 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.234400 -1.994136 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.234400 1.139506 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.234400 0.854630 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.234500 -0.450515 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.234500 -1.664770 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.234500 0.951297 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.234500 0.713473 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.234600 -0.452532 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.234600 -1.333761 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.234600 0.762149 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.234600 0.571612 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.234700 -0.454104 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.234700 -1.001435 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.234700 0.572248 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.234700 0.429186 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.234800 -0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.234800 -0.668120 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.234800 0.381783 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.234800 0.286337 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.234900 -0.455901 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.234900 -0.334147 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.234900 0.190941 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.234900 0.143206 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.235000 -0.456129 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.235000 0.000156 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.235000 -0.000089 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.235000 -0.000067 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.235100 -0.455903 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.235100 0.334460 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.235100 -0.191120 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.235100 -0.143340 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.235200 -0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.235200 0.668433 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.235200 -0.381962 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.235200 -0.286471 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.235300 -0.454102 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.235300 1.001746 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.235300 -0.572426 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.235300 -0.429320 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.235400 -0.452531 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.235400 1.334070 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.235400 -0.762326 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.235400 -0.571744 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.235500 -0.450512 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.235500 1.665079 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.235500 -0.951474 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.235500 -0.713605 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.235600 -0.448049 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.235600 1.994444 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.235600 -1.139682 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.235600 -0.854762 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.235700 -0.445144 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.235700 2.321841 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.235700 -1.326766 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.235700 -0.995075 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.235800 -0.441801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.235800 2.646946 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.235800 -1.512541 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.235800 -1.134405 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.235900 -0.438014 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.235900 2.969438 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.235900 -1.696822 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.235900 -1.272616 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.236000 -0.433800 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.236000 3.289000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.236000 -1.879429 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.236000 -1.409571 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.236100 -0.429161 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.236100 3.605315 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.236100 -2.060180 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.236100 -1.545135 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.236200 -0.424092 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.236200 3.918073 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.236200 -2.238899 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.236200 -1.679174 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.236300 -0.418611 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.236300 4.226963 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.236300 -2.415408 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.236300 -1.811556 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.236400 -0.412713 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.236400 4.531683 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.236400 -2.589533 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.236400 -1.942150 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.236500 -0.406409 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.236500 4.831930 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.236500 -2.761103 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.236500 -2.070827 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.236600 -0.399708 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.236600 5.127410 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.236600 -2.929949 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.236600 -2.197461 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.236700 -0.392610 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.236700 5.417830 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.236700 -3.095903 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.236700 -2.321927 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.236800 -0.385125 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.236800 5.702903 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.236800 -3.258802 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.236800 -2.444101 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.236900 -0.377251 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.236900 5.982348 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.236900 -3.418485 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.236900 -2.563864 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.237000 -0.369011 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.237000 6.255889 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.237000 -3.574794 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.237000 -2.681095 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.237100 -0.360408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.237100 6.523256 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.237100 -3.727575 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.237100 -2.795681 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.237200 -0.351451 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.237200 6.784185 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.237200 -3.876677 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.237200 -2.907508 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.237300 -0.342142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.237300 7.038419 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.237300 -4.021954 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.237300 -3.016465 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.237400 -0.332498 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.237400 7.285707 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.237400 -4.163261 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.237400 -3.122446 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.237500 -0.322526 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.237500 7.525805 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.237500 -4.300460 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.237500 -3.225345 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.237600 -0.312237 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.237600 7.758475 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.237600 -4.433414 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.237600 -3.325061 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.237700 -0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.237700 7.983487 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.237700 -4.561993 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.237700 -3.421495 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.237800 -0.290742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.237800 8.200622 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.237800 -4.686070 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.237800 -3.514552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.237900 -0.279557 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.237900 8.409664 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.237900 -4.805522 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.237900 -3.604142 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.238000 -0.268113 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.238000 8.610406 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.238000 -4.920232 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.238000 -3.690174 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.238100 -0.256386 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.238100 8.802651 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.238100 -5.030087 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.238100 -3.772565 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.238200 -0.244405 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.238200 8.986210 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.238200 -5.134977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.238200 -3.851233 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.238300 -0.232185 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.238300 9.160902 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.238300 -5.234801 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.238300 -3.926101 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.238400 -0.219738 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.238400 9.326552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.238400 -5.329458 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.238400 -3.997094 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.238500 -0.207073 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.238500 9.482998 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.238500 -5.418856 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.238500 -4.064142 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.238600 -0.194205 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.238600 9.630086 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.238600 -5.502906 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.238600 -4.127180 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.238700 -0.181147 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.238700 9.767669 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.238700 -5.581525 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.238700 -4.186144 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.238800 -0.167908 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.238800 9.895613 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.238800 -5.654636 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.238800 -4.240977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.238900 -0.154502 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.238900 10.013792 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.238900 -5.722167 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.238900 -4.291625 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.239000 -0.140947 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.239000 10.122087 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.239000 -5.784050 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.239000 -4.338037 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.239100 -0.127252 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.239100 10.220394 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.239100 -5.840225 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.239100 -4.380169 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.239200 -0.113436 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.239200 10.308614 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.239200 -5.890636 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.239200 -4.417977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.239300 -0.099497 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.239300 10.386662 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.239300 -5.935235 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.239300 -4.451426 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.239400 -0.085467 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.239400 10.454459 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.239400 -5.973977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.239400 -4.480482 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.239500 -0.071350 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.239500 10.511939 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.239500 -6.006823 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.239500 -4.505117 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.239600 -0.057165 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.239600 10.559045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.239600 -6.033740 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.239600 -4.525305 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.239700 -0.042923 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.239700 10.595731 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.239700 -6.054704 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.239700 -4.541028 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.239800 -0.028637 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.239800 10.621961 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.239800 -6.069692 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.239800 -4.552269 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.239900 -0.014324 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.239900 10.637708 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.239900 -6.078690 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.239900 -4.559018 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.240000 0.000003 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.240000 10.642957 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.240000 -6.081690 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.240000 -4.561267 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.240100 0.014331 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.240100 10.637703 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.240100 -6.078687 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.240100 -4.559015 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.240200 0.028644 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.240200 10.621951 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.240200 -6.069686 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.240200 -4.552265 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.240300 0.042929 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.240300 10.595716 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.240300 -6.054695 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.240300 -4.541021 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.240400 0.057171 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.240400 10.559025 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.240400 -6.033729 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.240400 -4.525297 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.240500 0.071358 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.240500 10.511914 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.240500 -6.006808 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.240500 -4.505106 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.240600 0.085474 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.240600 10.454429 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.240600 -5.973960 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.240600 -4.480470 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.240700 0.099504 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.240700 10.386627 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.240700 -5.935215 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.240700 -4.451412 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.240800 0.113438 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.240800 10.308575 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.240800 -5.890614 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.240800 -4.417961 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.240900 0.127258 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.240900 10.220348 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.240900 -5.840199 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.240900 -4.380149 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.241000 0.140960 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.241000 10.122038 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.241000 -5.784022 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.241000 -4.338016 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.241100 0.154511 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.241100 10.013738 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.241100 -5.722136 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.241100 -4.291602 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.241200 0.167914 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.241200 9.895555 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.241200 -5.654603 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.241200 -4.240952 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.241300 0.181150 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.241300 9.767606 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.241300 -5.581489 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.241300 -4.186117 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.241400 0.194212 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.241400 9.630018 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.241400 -5.502867 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.241400 -4.127151 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.241500 0.207080 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.241500 9.482926 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.241500 -5.418815 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.241500 -4.064111 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.241600 0.219742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.241600 9.326476 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.241600 -5.329415 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.241600 -3.997061 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.241700 0.232189 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.241700 9.160821 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.241700 -5.234755 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.241700 -3.926066 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.241800 0.244408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.241800 8.986126 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.241800 -5.134929 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.241800 -3.851197 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.241900 0.256384 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.241900 8.802562 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.241900 -5.030036 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.241900 -3.772527 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.242000 0.268110 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.242000 8.610312 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.242000 -4.920178 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.242000 -3.690134 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.242100 0.279574 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.242100 8.409565 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.242100 -4.805466 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.242100 -3.604099 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.242200 0.290760 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.242200 8.200520 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.242200 -4.686011 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.242200 -3.514509 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.242300 0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.242300 7.983382 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.242300 -4.561932 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.242300 -3.421449 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.242400 0.312242 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.242400 7.758365 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.242400 -4.433351 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.242400 -3.325014 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.242500 0.322534 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.242500 7.525692 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.242500 -4.300395 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.242500 -3.225297 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.242600 0.332503 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.242600 7.285592 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.242600 -4.163195 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.242600 -3.122396 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.242700 0.342146 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.242700 7.038301 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.242700 -4.021886 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.242700 -3.016415 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.242800 0.351452 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.242800 6.784064 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.242800 -3.876608 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.242800 -2.907456 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.242900 0.360411 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.242900 6.523131 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.242900 -3.727504 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.242900 -2.795628 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.243000 0.369018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.243000 6.255762 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.243000 -3.574721 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.243000 -2.681041 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.243100 0.377255 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.243100 5.982218 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.243100 -3.418410 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.243100 -2.563808 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.243200 0.385122 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.243200 5.702771 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.243200 -3.258726 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.243200 -2.444045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.243300 0.392609 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.243300 5.417695 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.243300 -3.095826 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.243300 -2.321869 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.243400 0.399715 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.243400 5.127273 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.243400 -2.929870 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.243400 -2.197403 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.243500 0.406418 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.243500 4.831790 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.243500 -2.761023 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.243500 -2.070767 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.243600 0.412720 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.243600 4.531539 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.243600 -2.589451 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.243600 -1.942088 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.243700 0.418612 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.243700 4.226818 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.243700 -2.415324 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.243700 -1.811493 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.243800 0.424096 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.243800 3.917925 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.243800 -2.238814 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.243800 -1.679111 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.243900 0.429162 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.243900 3.605166 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.243900 -2.060095 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.243900 -1.545071 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.244000 0.433801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.244000 3.288849 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.244000 -1.879342 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.244000 -1.409507 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.244100 0.438018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.244100 2.969287 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.244100 -1.696735 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.244100 -1.272552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.244200 0.441797 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.244200 2.646794 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.244200 -1.512453 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.244200 -1.134340 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.244300 0.445142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.244300 2.321688 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.244300 -1.326679 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.244300 -0.995009 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.244400 0.448054 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.244400 1.994291 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.244400 -1.139595 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.244400 -0.854696 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.244500 0.450515 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.244500 1.664925 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.244500 -0.951386 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.244500 -0.713539 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.244600 0.452532 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.244600 1.333915 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.244600 -0.762237 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.244600 -0.571678 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.244700 0.454104 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.244700 1.001589 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.244700 -0.572337 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.244700 -0.429253 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.244800 0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.244800 0.668274 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.244800 -0.381871 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.244800 -0.286403 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.244900 0.455901 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.244900 0.334302 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.244900 -0.191029 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.244900 -0.143272 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.245000 0.456129 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.245000 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.245000 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.245000 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.245100 0.455903 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.245100 -0.334305 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.245100 0.191032 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.245100 0.143274 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.245200 0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.245200 -0.668278 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.245200 0.381873 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.245200 0.286405 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.245300 0.454102 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.245300 -1.001591 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.245300 0.572338 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.245300 0.429253 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.245400 0.452531 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.245400 -1.333915 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.245400 0.762237 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.245400 0.571678 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.245500 0.450512 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.245500 -1.664924 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.245500 0.951385 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.245500 0.713539 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.245600 0.448049 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.245600 -1.994290 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.245600 1.139594 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.245600 0.854696 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.245700 0.445144 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.245700 -2.321686 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.245700 1.326678 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.245700 0.995008 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.245800 0.441801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.245800 -2.646791 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.245800 1.512452 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.245800 1.134339 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.245900 0.438014 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.245900 -2.969284 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.245900 1.696734 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.245900 1.272550 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.246000 0.433800 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.246000 -3.288845 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.246000 1.879340 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.246000 1.409505 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.246100 0.429161 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.246100 -3.605161 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.246100 2.060092 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.246100 1.545069 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.246200 0.424092 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.246200 -3.917918 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.246200 2.238810 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.246200 1.679108 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.246300 0.418611 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.246300 -4.226809 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.246300 2.415319 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.246300 1.811489 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.246400 0.412713 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.246400 -4.531528 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.246400 2.589444 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.246400 1.942083 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.246500 0.406409 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.246500 -4.831775 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.246500 2.761014 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.246500 2.070761 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.246600 0.399708 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.246600 -5.127255 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.246600 2.929860 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.246600 2.197395 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.246700 0.392610 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.246700 -5.417675 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.246700 3.095815 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.246700 2.321861 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.246800 0.385125 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.246800 -5.702749 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.246800 3.258713 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.246800 2.444035 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.246900 0.377251 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.246900 -5.982194 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.246900 3.418396 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.246900 2.563797 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.247000 0.369011 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.247000 -6.255735 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.247000 3.574706 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.247000 2.681029 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.247100 0.360408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.247100 -6.523102 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.247100 3.727487 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.247100 2.795615 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.247200 0.351451 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.247200 -6.784031 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.247200 3.876589 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.247200 2.907442 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.247300 0.342142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.247300 -7.038265 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.247300 4.021865 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.247300 3.016399 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.247400 0.332498 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.247400 -7.285552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.247400 4.163173 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.247400 3.122380 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.247500 0.322526 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.247500 -7.525650 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.247500 4.300371 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.247500 3.225279 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.247600 0.312237 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.247600 -7.758320 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.247600 4.433326 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.247600 3.324994 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.247700 0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.247700 -7.983333 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.247700 4.561904 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.247700 3.421428 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.247800 0.290742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.247800 -8.200467 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.247800 4.685981 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.247800 3.514486 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.247900 0.279557 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.247900 -8.409509 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.247900 4.805434 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.247900 3.604075 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.248000 0.268113 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.248000 -8.610251 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.248000 4.920144 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.248000 3.690108 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.248100 0.256386 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.248100 -8.802497 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.248100 5.029998 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.248100 3.772499 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.248200 0.244405 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.248200 -8.986056 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.248200 5.134889 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.248200 3.851167 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.248300 0.232185 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.248300 -9.160747 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.248300 5.234712 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.248300 3.926034 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.248400 0.219738 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.248400 -9.326397 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.248400 5.329370 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.248400 3.997027 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.248500 0.207073 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.248500 -9.482843 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.248500 5.418768 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.248500 4.064076 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.248600 0.194205 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.248600 -9.629931 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.248600 5.502818 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.248600 4.127113 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.248700 0.181147 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.248700 -9.767514 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.248700 5.581437 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.248700 4.186078 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.248800 0.167908 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.248800 -9.895458 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.248800 5.654548 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.248800 4.240911 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.248900 0.154502 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.248900 -10.013637 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.248900 5.722078 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.248900 4.291559 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.249000 0.140947 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.249000 -10.121933 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.249000 5.783962 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.249000 4.337971 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.249100 0.127252 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.249100 -10.220239 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.249100 5.840137 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.249100 4.380102 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.249200 0.113436 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.249200 -10.308459 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.249200 5.890548 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.249200 4.417911 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.249300 0.099497 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.249300 -10.386507 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.249300 5.935147 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.249300 4.451360 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.249400 0.085467 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.249400 -10.454304 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.249400 5.973888 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.249400 4.480416 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.249500 0.071350 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.249500 -10.511785 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.249500 6.006734 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.249500 4.505051 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.249600 0.057165 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.249600 -10.558891 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.249600 6.033652 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.249600 4.525239 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.249700 0.042923 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.249700 -10.595577 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.249700 6.054615 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.249700 4.540961 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.249800 0.028637 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.249800 -10.621806 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.249800 6.069603 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.249800 4.552203 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 159 | 165 || 0.249900 0.014324 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 174 || 0.249900 -10.637553 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 175 || 0.249900 6.078602 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 16140 || 130 | 166 | 176 || 0.249900 4.558951 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +16140 || Ending 130 +16140 || Initialization 177 +2 16140 || 177 | 206 | 212 || 0.000000 -0.000000 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.000000 0.000000 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.000000 -0.000000 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.000000 -0.000000 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.000100 0.000000 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.000100 -0.000000 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.000100 0.000000 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.000100 0.000000 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.000200 0.000000 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.000200 -0.000000 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.000200 0.000000 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.000200 0.000000 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.000300 0.000000 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.000300 -0.000000 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.000300 0.000000 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.000300 0.000000 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.000400 0.000000 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.000400 -0.000000 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.000400 0.000000 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.000400 0.000000 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.000500 0.000000 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.000500 -0.000000 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.000500 0.000000 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.000500 0.000000 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.000600 0.000000 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.000600 -0.000000 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.000600 0.000000 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.000600 0.000000 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.000700 0.000000 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.000700 -0.000000 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.000700 0.000000 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.000700 0.000000 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.000800 0.000000 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.000800 -0.000000 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.000800 0.000000 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.000800 0.000000 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.000900 0.000000 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.000900 -0.000000 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.000900 0.000000 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.000900 0.000000 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.001000 0.000000 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.001000 -0.000000 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.001000 0.000000 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.001000 0.000000 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.001100 0.000000 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.001100 -0.000000 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.001100 0.000000 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.001100 0.000000 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.001200 0.000000 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.001200 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.001200 0.000000 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.001200 0.000000 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.001300 0.000000 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.001300 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.001300 0.000000 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.001300 0.000000 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.001400 0.000000 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.001400 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.001400 0.000000 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.001400 0.000000 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.001500 0.000000 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.001500 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.001500 0.000000 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.001500 0.000000 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.001600 0.000000 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.001600 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.001600 0.000000 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.001600 0.000000 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.001700 0.000000 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.001700 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.001700 0.000000 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.001700 0.000000 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.001800 0.000000 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.001800 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.001800 0.000000 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.001800 0.000000 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.001900 0.000000 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.001900 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.001900 0.000000 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.001900 0.000000 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.002000 0.000000 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.002000 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.002000 0.000000 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.002000 0.000000 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.002100 0.000000 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.002100 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.002100 0.000000 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.002100 0.000000 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.002200 0.000000 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.002200 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.002200 0.000001 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.002200 0.000000 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.002300 0.000000 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.002300 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.002300 0.000001 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.002300 0.000000 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.002400 0.000000 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.002400 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.002400 0.000001 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.002400 0.000000 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.002500 0.000000 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.002500 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.002500 0.000001 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.002500 0.000000 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.002600 0.000000 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.002600 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.002600 0.000001 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.002600 0.000000 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.002700 0.000000 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.002700 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.002700 0.000001 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.002700 0.000000 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.002800 0.000000 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.002800 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.002800 0.000001 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.002800 0.000000 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.002900 0.000000 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.002900 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.002900 0.000001 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.002900 0.000000 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.003000 0.000000 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.003000 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.003000 0.000001 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.003000 0.000000 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.003100 0.000000 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.003100 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.003100 0.000001 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.003100 0.000001 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.003200 0.000000 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.003200 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.003200 0.000001 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.003200 0.000001 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.003300 0.000000 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.003300 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.003300 0.000001 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.003300 0.000001 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.003400 0.000000 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.003400 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.003400 0.000001 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.003400 0.000001 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.003500 0.000000 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.003500 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.003500 0.000001 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.003500 0.000001 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.003600 0.000000 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.003600 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.003600 0.000001 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.003600 0.000001 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.003700 0.000000 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.003700 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.003700 0.000001 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.003700 0.000001 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.003800 0.000000 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.003800 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.003800 0.000001 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.003800 0.000001 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.003900 0.000000 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.003900 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.003900 0.000001 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.003900 0.000001 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.004000 0.000000 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.004000 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.004000 0.000001 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.004000 0.000001 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.004100 0.000000 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.004100 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.004100 0.000001 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.004100 0.000001 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.004200 0.000000 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.004200 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.004200 0.000001 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.004200 0.000001 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.004300 0.000000 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.004300 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.004300 0.000001 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.004300 0.000001 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.004400 0.000000 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.004400 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.004400 0.000001 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.004400 0.000001 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.004500 0.000000 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.004500 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.004500 0.000001 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.004500 0.000001 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.004600 0.000000 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.004600 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.004600 0.000001 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.004600 0.000001 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.004700 0.000000 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.004700 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.004700 0.000001 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.004700 0.000001 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.004800 0.000000 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.004800 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.004800 0.000001 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.004800 0.000001 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.004900 0.000000 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.004900 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.004900 0.000001 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.004900 0.000001 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.005000 -0.000000 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.005000 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.005000 0.000001 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.005000 0.000001 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.005100 0.455902 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.005100 -0.334303 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.005100 0.191031 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.005100 0.143273 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.005200 0.455229 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.005200 -0.668275 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.005200 0.381872 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.005200 0.286404 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.005300 0.454105 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.005300 -1.001590 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.005300 0.572337 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.005300 0.429253 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.005400 0.452532 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.005400 -1.333915 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.005400 0.762237 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.005400 0.571678 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.005500 0.450513 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.005500 -1.664923 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.005500 0.951385 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.005500 0.713539 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.005600 0.448048 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.005600 -1.994288 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.005600 1.139593 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.005600 0.854695 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.005700 0.445141 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.005700 -2.321684 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.005700 1.326677 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.005700 0.995007 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.005800 0.441799 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.005800 -2.646788 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.005800 1.512451 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.005800 1.134338 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.005900 0.438018 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.005900 -2.969280 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.005900 1.696732 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.005900 1.272549 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.006000 0.433804 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.006000 -3.288841 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.006000 1.879338 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.006000 1.409503 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.006100 0.429165 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.006100 -3.605156 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.006100 2.060089 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.006100 1.545067 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.006200 0.424097 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.006200 -3.917913 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.006200 2.238808 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.006200 1.679106 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.006300 0.418615 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.006300 -4.226804 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.006300 2.415317 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.006300 1.811487 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.006400 0.412718 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.006400 -4.531523 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.006400 2.589442 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.006400 1.942081 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.006500 0.406412 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.006500 -4.831772 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.006500 2.761013 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.006500 2.070759 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.006600 0.399706 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.006600 -5.127252 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.006600 2.929858 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.006600 2.197394 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.006700 0.392605 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.006700 -5.417672 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.006700 3.095813 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.006700 2.321859 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.006800 0.385122 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.006800 -5.702745 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.006800 3.258711 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.006800 2.444034 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.006900 0.377255 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.006900 -5.982190 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.006900 3.418394 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.006900 2.563796 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.007000 0.369015 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.007000 -6.255731 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.007000 3.574703 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.007000 2.681027 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.007100 0.360411 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.007100 -6.523097 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.007100 3.727484 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.007100 2.795613 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.007200 0.351453 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.007200 -6.784026 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.007200 3.876586 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.007200 2.907440 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.007300 0.342147 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.007300 -7.038260 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.007300 4.021863 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.007300 3.016397 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.007400 0.332503 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.007400 -7.285547 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.007400 4.163170 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.007400 3.122377 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.007500 0.322531 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.007500 -7.525644 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.007500 4.300368 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.007500 3.225276 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.007600 0.312240 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.007600 -7.758314 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.007600 4.433322 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.007600 3.324992 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.007700 0.301642 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.007700 -7.983327 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.007700 4.561901 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.007700 3.421426 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.007800 0.290747 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.007800 -8.200461 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.007800 4.685978 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.007800 3.514483 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.007900 0.279564 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.007900 -8.409503 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.007900 4.805430 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.007900 3.604073 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.008000 0.268100 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.008000 -8.610246 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.008000 4.920140 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.008000 3.690105 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.008100 0.256379 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.008100 -8.802492 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.008100 5.029995 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.008100 3.772496 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.008200 0.244403 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.008200 -8.986051 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.008200 5.134886 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.008200 3.851165 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.008300 0.232186 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.008300 -9.160742 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.008300 5.234709 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.008300 3.926032 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.008400 0.219740 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.008400 -9.326392 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.008400 5.329367 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.008400 3.997025 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.008500 0.207076 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.008500 -9.482838 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.008500 5.418765 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.008500 4.064073 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.008600 0.194208 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.008600 -9.629925 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.008600 5.502815 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.008600 4.127111 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.008700 0.181148 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.008700 -9.767509 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.008700 5.581434 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.008700 4.186075 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.008800 0.167910 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.008800 -9.895453 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.008800 5.654544 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.008800 4.240908 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.008900 0.154506 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.008900 -10.013631 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.008900 5.722075 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.008900 4.291556 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.009000 0.140949 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.009000 -10.121927 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.009000 5.783958 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.009000 4.337969 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.009100 0.127252 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.009100 -10.220233 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.009100 5.840133 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.009100 4.380100 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.009200 0.113430 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.009200 -10.308453 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.009200 5.890545 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.009200 4.417908 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.009300 0.099499 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.009300 -10.386501 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.009300 5.935143 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.009300 4.451358 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.009400 0.085467 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.009400 -10.454298 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.009400 5.973885 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.009400 4.480414 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.009500 0.071351 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.009500 -10.511779 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.009500 6.006731 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.009500 4.505048 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.009600 0.057164 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.009600 -10.558884 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.009600 6.033648 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.009600 4.525236 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.009700 0.042922 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.009700 -10.595570 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.009700 6.054612 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.009700 4.540959 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.009800 0.028637 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.009800 -10.621800 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.009800 6.069600 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.009800 4.552200 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.009900 0.014324 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.009900 -10.637547 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.009900 6.078598 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.009900 4.558949 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.010000 -0.000003 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.010000 -10.642796 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.010000 6.081598 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.010000 4.561198 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.010100 -0.014331 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.010100 -10.637542 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.010100 6.078595 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.010100 4.558946 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.010200 -0.028644 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.010200 -10.621790 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.010200 6.069594 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.010200 4.552196 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.010300 -0.042929 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.010300 -10.595555 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.010300 6.054603 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.010300 4.540952 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.010400 -0.057172 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.010400 -10.558864 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.010400 6.033637 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.010400 4.525228 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.010500 -0.071357 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.010500 -10.511753 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.010500 6.006716 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.010500 4.505037 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.010600 -0.085473 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.010600 -10.454268 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.010600 5.973868 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.010600 4.480401 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.010700 -0.099505 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.010700 -10.386466 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.010700 5.935124 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.010700 4.451343 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.010800 -0.113438 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.010800 -10.308414 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.010800 5.890522 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.010800 4.417892 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.010900 -0.127260 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.010900 -10.220188 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.010900 5.840107 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.010900 4.380080 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.011000 -0.140953 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.011000 -10.121877 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.011000 5.783930 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.011000 4.337947 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.011100 -0.154511 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.011100 -10.013577 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.011100 5.722044 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.011100 4.291533 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.011200 -0.167916 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.011200 -9.895394 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.011200 5.654511 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.011200 4.240883 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.011300 -0.181155 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.011300 -9.767446 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.011300 5.581398 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.011300 4.186048 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.011400 -0.194214 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.011400 -9.629858 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.011400 5.502776 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.011400 4.127082 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.011500 -0.207081 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.011500 -9.482766 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.011500 5.418724 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.011500 4.064043 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.011600 -0.219746 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.011600 -9.326316 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.011600 5.329323 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.011600 3.996993 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.011700 -0.232193 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.011700 -9.160662 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.011700 5.234664 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.011700 3.925998 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.011800 -0.244410 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.011800 -8.985966 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.011800 5.134838 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.011800 3.851128 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.011900 -0.256386 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.011900 -8.802403 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.011900 5.029944 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.011900 3.772458 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.012000 -0.268109 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.012000 -8.610152 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.012000 4.920087 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.012000 3.690065 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.012100 -0.279567 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.012100 -8.409405 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.012100 4.805374 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.012100 3.604031 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.012200 -0.290746 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.012200 -8.200359 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.012200 4.685919 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.012200 3.514440 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.012300 -0.301645 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.012300 -7.983221 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.012300 4.561840 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.012300 3.421380 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.012400 -0.312246 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.012400 -7.758204 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.012400 4.433259 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.012400 3.324944 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.012500 -0.322535 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.012500 -7.525531 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.012500 4.300303 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.012500 3.225227 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.012600 -0.332506 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.012600 -7.285431 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.012600 4.163103 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.012600 3.122327 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.012700 -0.342151 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.012700 -7.038140 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.012700 4.021794 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.012700 3.016346 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.012800 -0.351458 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.012800 -6.783904 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.012800 3.876516 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.012800 2.907387 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.012900 -0.360416 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.012900 -6.522972 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.012900 3.727412 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.012900 2.795559 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.013000 -0.369020 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.013000 -6.255602 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.013000 3.574630 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.013000 2.680972 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.013100 -0.377257 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.013100 -5.982059 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.013100 3.418319 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.013100 2.563740 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.013200 -0.385125 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.013200 -5.702612 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.013200 3.258635 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.013200 2.443976 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.013300 -0.392613 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.013300 -5.417536 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.013300 3.095735 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.013300 2.321801 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.013400 -0.399712 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.013400 -5.127114 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.013400 2.929779 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.013400 2.197335 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.013500 -0.406413 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.013500 -4.831632 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.013500 2.760932 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.013500 2.070699 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.013600 -0.412718 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.013600 -4.531381 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.013600 2.589361 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.013600 1.942020 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.013700 -0.418615 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.013700 -4.226658 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.013700 2.415233 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.013700 1.811425 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.013800 -0.424099 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.013800 -3.917763 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.013800 2.238722 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.013800 1.679041 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.013900 -0.429166 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.013900 -3.605004 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.013900 2.060002 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.013900 1.545002 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.014000 -0.433806 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.014000 -3.288687 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.014000 1.879250 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.014000 1.409437 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.014100 -0.438022 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.014100 -2.969125 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.014100 1.696643 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.014100 1.272482 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.014200 -0.441800 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.014200 -2.646632 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.014200 1.512361 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.014200 1.134271 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.014300 -0.445146 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.014300 -2.321527 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.014300 1.326587 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.014300 0.994940 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.014400 -0.448052 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.014400 -1.994130 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.014400 1.139503 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.014400 0.854627 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.014500 -0.450511 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.014500 -1.664766 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.014500 0.951295 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.014500 0.713471 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.014600 -0.452532 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.014600 -1.333757 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.014600 0.762147 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.014600 0.571610 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.014700 -0.454105 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.014700 -1.001432 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.014700 0.572247 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.014700 0.429185 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.014800 -0.455229 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.014800 -0.668117 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.014800 0.381781 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.014800 0.286336 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.014900 -0.455904 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.014900 -0.334143 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.014900 0.190939 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.014900 0.143204 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.015000 -0.456129 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.015000 0.000159 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.015000 -0.000091 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.015000 -0.000068 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.015100 -0.455902 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.015100 0.334461 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.015100 -0.191121 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.015100 -0.143340 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.015200 -0.455229 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.015200 0.668433 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.015200 -0.381962 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.015200 -0.286471 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.015300 -0.454105 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.015300 1.001747 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.015300 -0.572427 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.015300 -0.429320 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.015400 -0.452532 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.015400 1.334072 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.015400 -0.762327 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.015400 -0.571745 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.015500 -0.450513 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.015500 1.665081 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.015500 -0.951475 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.015500 -0.713606 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.015600 -0.448048 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.015600 1.994445 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.015600 -1.139683 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.015600 -0.854762 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.015700 -0.445141 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.015700 2.321841 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.015700 -1.326766 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.015700 -0.995075 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.015800 -0.441799 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.015800 2.646946 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.015800 -1.512540 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.015800 -1.134405 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.015900 -0.438018 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.015900 2.969438 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.015900 -1.696822 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.015900 -1.272616 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.016000 -0.433804 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.016000 3.288999 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.016000 -1.879428 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.016000 -1.409571 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.016100 -0.429165 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.016100 3.605314 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.016100 -2.060179 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.016100 -1.545134 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.016200 -0.424097 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.016200 3.918071 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.016200 -2.238898 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.016200 -1.679173 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.016300 -0.418615 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.016300 4.226961 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.016300 -2.415407 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.016300 -1.811555 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.016400 -0.412718 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.016400 4.531681 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.016400 -2.589532 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.016400 -1.942149 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.016500 -0.406412 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.016500 4.831929 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.016500 -2.761103 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.016500 -2.070827 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.016600 -0.399706 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.016600 5.127410 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.016600 -2.929948 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.016600 -2.197461 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.016700 -0.392605 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.016700 5.417829 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.016700 -3.095902 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.016700 -2.321927 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.016800 -0.385122 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.016800 5.702902 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.016800 -3.258801 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.016800 -2.444101 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.016900 -0.377255 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.016900 5.982347 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.016900 -3.418484 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.016900 -2.563863 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.017000 -0.369015 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.017000 6.255888 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.017000 -3.574793 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.017000 -2.681095 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.017100 -0.360411 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.017100 6.523254 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.017100 -3.727574 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.017100 -2.795680 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.017200 -0.351453 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.017200 6.784183 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.017200 -3.876676 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.017200 -2.907507 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.017300 -0.342147 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.017300 7.038417 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.017300 -4.021953 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.017300 -3.016465 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.017400 -0.332503 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.017400 7.285705 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.017400 -4.163260 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.017400 -3.122445 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.017500 -0.322531 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.017500 7.525802 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.017500 -4.300458 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.017500 -3.225344 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.017600 -0.312240 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.017600 7.758471 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.017600 -4.433412 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.017600 -3.325059 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.017700 -0.301642 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.017700 7.983484 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.017700 -4.561991 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.017700 -3.421493 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.017800 -0.290747 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.017800 8.200619 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.017800 -4.686068 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.017800 -3.514551 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.017900 -0.279564 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.017900 8.409660 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.017900 -4.805520 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.017900 -3.604140 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.018000 -0.268100 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.018000 8.610403 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.018000 -4.920230 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.018000 -3.690173 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.018100 -0.256379 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.018100 8.802649 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.018100 -5.030085 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.018100 -3.772564 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.018200 -0.244403 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.018200 8.986208 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.018200 -5.134976 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.018200 -3.851232 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.018300 -0.232186 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.018300 9.160899 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.018300 -5.234799 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.018300 -3.926100 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.018400 -0.219740 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.018400 9.326549 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.018400 -5.329457 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.018400 -3.997093 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.018500 -0.207076 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.018500 9.482996 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.018500 -5.418855 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.018500 -4.064141 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.018600 -0.194208 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.018600 9.630083 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.018600 -5.502905 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.018600 -4.127178 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.018700 -0.181148 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.018700 9.767666 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.018700 -5.581524 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.018700 -4.186143 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.018800 -0.167910 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.018800 9.895610 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.018800 -5.654634 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.018800 -4.240976 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.018900 -0.154506 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.018900 10.013788 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.018900 -5.722165 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.018900 -4.291624 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.019000 -0.140949 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.019000 10.122084 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.019000 -5.784048 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.019000 -4.338036 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.019100 -0.127252 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.019100 10.220390 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.019100 -5.840223 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.019100 -4.380167 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.019200 -0.113430 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.019200 10.308610 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.019200 -5.890635 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.019200 -4.417976 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.019300 -0.099499 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.019300 10.386658 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.019300 -5.935233 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.019300 -4.451425 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.019400 -0.085467 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.019400 10.454456 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.019400 -5.973975 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.019400 -4.480481 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.019500 -0.071351 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.019500 10.511936 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.019500 -6.006821 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.019500 -4.505115 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.019600 -0.057164 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.019600 10.559042 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.019600 -6.033738 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.019600 -4.525304 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.019700 -0.042922 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.019700 10.595728 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.019700 -6.054702 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.019700 -4.541026 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.019800 -0.028637 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.019800 10.621957 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.019800 -6.069690 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.019800 -4.552267 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.019900 -0.014324 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.019900 10.637704 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.019900 -6.078688 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.019900 -4.559016 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.020000 0.000003 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.020000 10.642953 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.020000 -6.081688 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.020000 -4.561266 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.020100 0.014331 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.020100 10.637699 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.020100 -6.078685 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.020100 -4.559014 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.020200 0.028644 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.020200 10.621947 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.020200 -6.069684 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.020200 -4.552263 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.020300 0.042929 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.020300 10.595713 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.020300 -6.054693 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.020300 -4.541020 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.020400 0.057172 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.020400 10.559022 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.020400 -6.033727 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.020400 -4.525295 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.020500 0.071357 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.020500 10.511910 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.020500 -6.006806 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.020500 -4.505104 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.020600 0.085473 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.020600 10.454426 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.020600 -5.973958 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.020600 -4.480468 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.020700 0.099505 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.020700 10.386624 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.020700 -5.935213 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.020700 -4.451410 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.020800 0.113438 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.020800 10.308571 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.020800 -5.890612 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.020800 -4.417959 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.020900 0.127260 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.020900 10.220345 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.020900 -5.840197 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.020900 -4.380148 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.021000 0.140953 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.021000 10.122034 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.021000 -5.784020 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.021000 -4.338015 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.021100 0.154511 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.021100 10.013734 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.021100 -5.722134 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.021100 -4.291600 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.021200 0.167916 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.021200 9.895552 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.021200 -5.654601 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.021200 -4.240951 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.021300 0.181155 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.021300 9.767603 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.021300 -5.581487 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.021300 -4.186116 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.021400 0.194214 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.021400 9.630015 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.021400 -5.502866 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.021400 -4.127149 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.021500 0.207081 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.021500 9.482924 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.021500 -5.418814 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.021500 -4.064110 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.021600 0.219746 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.021600 9.326474 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.021600 -5.329413 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.021600 -3.997060 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.021700 0.232193 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.021700 9.160819 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.021700 -5.234754 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.021700 -3.926065 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.021800 0.244410 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.021800 8.986124 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.021800 -5.134928 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.021800 -3.851196 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.021900 0.256386 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.021900 8.802560 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.021900 -5.030034 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.021900 -3.772526 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.022000 0.268109 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.022000 8.610309 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.022000 -4.920177 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.022000 -3.690133 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.022100 0.279567 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.022100 8.409562 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.022100 -4.805464 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.022100 -3.604098 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.022200 0.290746 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.022200 8.200516 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.022200 -4.686009 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.022200 -3.514507 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.022300 0.301645 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.022300 7.983378 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.022300 -4.561930 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.022300 -3.421448 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.022400 0.312247 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.022400 7.758361 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.022400 -4.433349 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.022400 -3.325012 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.022500 0.322535 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.022500 7.525688 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.022500 -4.300393 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.022500 -3.225295 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.022600 0.332506 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.022600 7.285588 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.022600 -4.163193 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.022600 -3.122395 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.022700 0.342151 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.022700 7.038298 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.022700 -4.021884 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.022700 -3.016413 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.022800 0.351458 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.022800 6.784061 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.022800 -3.876606 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.022800 -2.907455 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.022900 0.360416 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.022900 6.523129 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.022900 -3.727502 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.022900 -2.795627 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.023000 0.369020 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.023000 6.255759 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.023000 -3.574720 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.023000 -2.681040 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.023100 0.377257 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.023100 5.982216 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.023100 -3.418409 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.023100 -2.563807 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.023200 0.385125 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.023200 5.702769 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.023200 -3.258725 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.023200 -2.444044 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.023300 0.392613 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.023300 5.417694 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.023300 -3.095825 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.023300 -2.321869 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.023400 0.399712 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.023400 5.127271 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.023400 -2.929869 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.023400 -2.197402 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.023500 0.406413 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.023500 4.831789 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.023500 -2.761022 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.023500 -2.070767 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.023600 0.412718 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.023600 4.531538 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.023600 -2.589451 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.023600 -1.942088 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.023700 0.418615 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.023700 4.226815 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.023700 -2.415323 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.023700 -1.811492 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.023800 0.424099 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.023800 3.917921 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.023800 -2.238812 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.023800 -1.679109 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.023900 0.429166 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.023900 3.605161 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.023900 -2.060092 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.023900 -1.545069 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.024000 0.433806 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.024000 3.288845 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.024000 -1.879340 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.024000 -1.409505 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.024100 0.438022 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.024100 2.969282 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.024100 -1.696733 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.024100 -1.272550 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.024200 0.441800 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.024200 2.646790 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.024200 -1.512451 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.024200 -1.134339 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.024300 0.445146 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.024300 2.321685 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.024300 -1.326677 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.024300 -0.995008 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.024400 0.448052 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.024400 1.994288 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.024400 -1.139593 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.024400 -0.854695 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.024500 0.450511 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.024500 1.664923 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.024500 -0.951385 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.024500 -0.713538 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.024600 0.452532 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.024600 1.333914 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.024600 -0.762237 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.024600 -0.571678 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.024700 0.454105 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.024700 1.001589 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.024700 -0.572337 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.024700 -0.429252 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.024800 0.455229 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.024800 0.668275 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.024800 -0.381871 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.024800 -0.286403 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.024900 0.455904 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.024900 0.334301 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.024900 -0.191029 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.024900 -0.143272 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.025000 0.456129 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.025000 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.025000 0.000001 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.025000 0.000001 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.025100 0.455902 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.025100 -0.334303 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.025100 0.191031 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.025100 0.143273 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.025200 0.455229 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.025200 -0.668275 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.025200 0.381872 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.025200 0.286404 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.025300 0.454105 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.025300 -1.001590 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.025300 0.572337 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.025300 0.429253 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.025400 0.452532 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.025400 -1.333915 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.025400 0.762237 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.025400 0.571678 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.025500 0.450513 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.025500 -1.664923 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.025500 0.951385 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.025500 0.713539 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.025600 0.448048 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.025600 -1.994288 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.025600 1.139593 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.025600 0.854695 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.025700 0.445141 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.025700 -2.321684 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.025700 1.326677 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.025700 0.995007 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.025800 0.441799 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.025800 -2.646788 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.025800 1.512451 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.025800 1.134338 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.025900 0.438018 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.025900 -2.969280 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.025900 1.696732 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.025900 1.272549 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.026000 0.433804 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.026000 -3.288841 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.026000 1.879338 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.026000 1.409503 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.026100 0.429165 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.026100 -3.605156 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.026100 2.060089 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.026100 1.545067 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.026200 0.424097 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.026200 -3.917913 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.026200 2.238808 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.026200 1.679106 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.026300 0.418615 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.026300 -4.226804 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.026300 2.415317 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.026300 1.811487 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.026400 0.412718 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.026400 -4.531523 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.026400 2.589442 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.026400 1.942081 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.026500 0.406412 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.026500 -4.831772 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.026500 2.761013 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.026500 2.070759 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.026600 0.399706 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.026600 -5.127252 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.026600 2.929858 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.026600 2.197394 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.026700 0.392605 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.026700 -5.417672 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.026700 3.095813 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.026700 2.321859 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.026800 0.385122 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.026800 -5.702745 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.026800 3.258711 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.026800 2.444034 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.026900 0.377255 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.026900 -5.982190 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.026900 3.418394 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.026900 2.563796 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.027000 0.369015 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.027000 -6.255731 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.027000 3.574703 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.027000 2.681027 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.027100 0.360411 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.027100 -6.523097 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.027100 3.727484 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.027100 2.795613 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.027200 0.351453 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.027200 -6.784026 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.027200 3.876586 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.027200 2.907440 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.027300 0.342147 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.027300 -7.038260 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.027300 4.021863 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.027300 3.016397 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.027400 0.332503 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.027400 -7.285547 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.027400 4.163170 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.027400 3.122377 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.027500 0.322531 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.027500 -7.525644 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.027500 4.300368 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.027500 3.225276 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.027600 0.312240 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.027600 -7.758314 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.027600 4.433322 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.027600 3.324992 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.027700 0.301642 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.027700 -7.983327 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.027700 4.561901 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.027700 3.421426 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.027800 0.290747 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.027800 -8.200461 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.027800 4.685978 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.027800 3.514483 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.027900 0.279564 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.027900 -8.409503 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.027900 4.805430 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.027900 3.604073 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.028000 0.268100 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.028000 -8.610246 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.028000 4.920140 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.028000 3.690105 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.028100 0.256379 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.028100 -8.802492 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.028100 5.029995 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.028100 3.772496 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.028200 0.244403 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.028200 -8.986051 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.028200 5.134886 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.028200 3.851165 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.028300 0.232186 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.028300 -9.160742 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.028300 5.234709 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.028300 3.926032 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.028400 0.219740 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.028400 -9.326392 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.028400 5.329367 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.028400 3.997025 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.028500 0.207076 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.028500 -9.482838 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.028500 5.418765 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.028500 4.064074 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.028600 0.194208 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.028600 -9.629925 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.028600 5.502815 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.028600 4.127111 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.028700 0.181148 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.028700 -9.767509 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.028700 5.581434 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.028700 4.186075 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.028800 0.167910 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.028800 -9.895453 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.028800 5.654544 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.028800 4.240908 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.028900 0.154506 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.028900 -10.013631 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.028900 5.722075 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.028900 4.291556 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.029000 0.140949 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.029000 -10.121927 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.029000 5.783958 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.029000 4.337969 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.029100 0.127252 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.029100 -10.220233 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.029100 5.840133 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.029100 4.380100 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.029200 0.113430 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.029200 -10.308453 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.029200 5.890545 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.029200 4.417908 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.029300 0.099499 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.029300 -10.386501 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.029300 5.935143 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.029300 4.451358 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.029400 0.085467 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.029400 -10.454298 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.029400 5.973885 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.029400 4.480414 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.029500 0.071351 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.029500 -10.511779 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.029500 6.006731 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.029500 4.505048 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.029600 0.057164 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.029600 -10.558884 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.029600 6.033648 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.029600 4.525236 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.029700 0.042922 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.029700 -10.595570 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.029700 6.054612 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.029700 4.540959 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.029800 0.028637 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.029800 -10.621800 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.029800 6.069600 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.029800 4.552200 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.029900 0.014324 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.029900 -10.637547 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.029900 6.078598 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.029900 4.558949 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.030000 -0.000003 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.030000 -10.642796 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.030000 6.081598 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.030000 4.561198 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.030100 -0.014331 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.030100 -10.637542 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.030100 6.078595 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.030100 4.558946 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.030200 -0.028644 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.030200 -10.621790 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.030200 6.069594 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.030200 4.552196 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.030300 -0.042929 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.030300 -10.595555 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.030300 6.054603 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.030300 4.540952 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.030400 -0.057172 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.030400 -10.558864 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.030400 6.033637 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.030400 4.525228 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.030500 -0.071357 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.030500 -10.511753 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.030500 6.006716 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.030500 4.505037 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.030600 -0.085473 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.030600 -10.454268 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.030600 5.973868 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.030600 4.480401 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.030700 -0.099505 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.030700 -10.386466 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.030700 5.935124 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.030700 4.451343 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.030800 -0.113438 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.030800 -10.308414 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.030800 5.890522 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.030800 4.417892 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.030900 -0.127260 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.030900 -10.220188 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.030900 5.840107 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.030900 4.380080 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.031000 -0.140953 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.031000 -10.121877 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.031000 5.783930 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.031000 4.337947 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.031100 -0.154511 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.031100 -10.013577 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.031100 5.722044 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.031100 4.291533 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.031200 -0.167916 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.031200 -9.895394 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.031200 5.654511 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.031200 4.240883 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.031300 -0.181155 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.031300 -9.767446 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.031300 5.581398 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.031300 4.186048 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.031400 -0.194214 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.031400 -9.629858 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.031400 5.502776 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.031400 4.127082 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.031500 -0.207081 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.031500 -9.482766 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.031500 5.418724 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.031500 4.064043 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.031600 -0.219746 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.031600 -9.326316 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.031600 5.329323 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.031600 3.996993 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.031700 -0.232193 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.031700 -9.160662 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.031700 5.234664 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.031700 3.925998 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.031800 -0.244410 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.031800 -8.985966 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.031800 5.134838 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.031800 3.851128 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.031900 -0.256386 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.031900 -8.802403 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.031900 5.029944 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.031900 3.772458 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.032000 -0.268109 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.032000 -8.610152 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.032000 4.920087 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.032000 3.690065 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.032100 -0.279567 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.032100 -8.409405 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.032100 4.805374 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.032100 3.604031 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.032200 -0.290746 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.032200 -8.200359 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.032200 4.685919 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.032200 3.514440 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.032300 -0.301645 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.032300 -7.983221 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.032300 4.561840 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.032300 3.421380 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.032400 -0.312246 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.032400 -7.758204 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.032400 4.433259 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.032400 3.324944 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.032500 -0.322535 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.032500 -7.525531 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.032500 4.300303 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.032500 3.225227 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.032600 -0.332506 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.032600 -7.285431 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.032600 4.163103 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.032600 3.122327 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.032700 -0.342151 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.032700 -7.038140 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.032700 4.021794 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.032700 3.016346 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.032800 -0.351458 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.032800 -6.783904 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.032800 3.876516 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.032800 2.907387 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.032900 -0.360416 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.032900 -6.522972 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.032900 3.727412 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.032900 2.795559 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.033000 -0.369020 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.033000 -6.255602 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.033000 3.574630 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.033000 2.680972 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.033100 -0.377257 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.033100 -5.982059 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.033100 3.418319 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.033100 2.563740 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.033200 -0.385125 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.033200 -5.702612 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.033200 3.258635 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.033200 2.443976 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.033300 -0.392613 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.033300 -5.417536 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.033300 3.095735 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.033300 2.321801 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.033400 -0.399712 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.033400 -5.127114 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.033400 2.929779 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.033400 2.197335 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.033500 -0.406413 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.033500 -4.831632 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.033500 2.760932 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.033500 2.070699 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.033600 -0.412718 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.033600 -4.531381 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.033600 2.589361 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.033600 1.942020 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.033700 -0.418615 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.033700 -4.226658 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.033700 2.415233 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.033700 1.811425 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.033800 -0.424099 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.033800 -3.917763 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.033800 2.238722 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.033800 1.679041 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.033900 -0.429166 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.033900 -3.605004 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.033900 2.060002 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.033900 1.545002 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.034000 -0.433806 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.034000 -3.288687 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.034000 1.879250 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.034000 1.409437 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.034100 -0.438022 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.034100 -2.969125 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.034100 1.696643 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.034100 1.272482 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.034200 -0.441800 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.034200 -2.646632 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.034200 1.512361 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.034200 1.134271 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.034300 -0.445146 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.034300 -2.321527 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.034300 1.326587 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.034300 0.994940 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.034400 -0.448052 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.034400 -1.994130 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.034400 1.139503 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.034400 0.854627 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.034500 -0.450511 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.034500 -1.664766 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.034500 0.951295 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.034500 0.713471 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.034600 -0.452532 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.034600 -1.333757 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.034600 0.762147 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.034600 0.571610 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.034700 -0.454105 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.034700 -1.001432 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.034700 0.572247 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.034700 0.429185 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.034800 -0.455229 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.034800 -0.668117 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.034800 0.381781 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.034800 0.286336 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.034900 -0.455904 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.034900 -0.334143 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.034900 0.190939 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.034900 0.143204 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.035000 -0.456129 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.035000 0.000159 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.035000 -0.000091 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.035000 -0.000068 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.035100 -0.455902 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.035100 0.334461 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.035100 -0.191121 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.035100 -0.143340 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.035200 -0.455229 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.035200 0.668433 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.035200 -0.381962 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.035200 -0.286471 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.035300 -0.454105 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.035300 1.001747 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.035300 -0.572427 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.035300 -0.429320 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.035400 -0.452532 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.035400 1.334072 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.035400 -0.762327 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.035400 -0.571745 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.035500 -0.450513 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.035500 1.665081 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.035500 -0.951475 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.035500 -0.713606 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.035600 -0.448048 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.035600 1.994445 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.035600 -1.139683 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.035600 -0.854762 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.035700 -0.445141 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.035700 2.321841 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.035700 -1.326766 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.035700 -0.995075 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.035800 -0.441799 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.035800 2.646946 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.035800 -1.512540 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.035800 -1.134405 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.035900 -0.438018 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.035900 2.969438 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.035900 -1.696822 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.035900 -1.272616 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.036000 -0.433804 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.036000 3.288999 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.036000 -1.879428 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.036000 -1.409571 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.036100 -0.429165 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.036100 3.605314 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.036100 -2.060179 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.036100 -1.545134 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.036200 -0.424097 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.036200 3.918071 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.036200 -2.238898 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.036200 -1.679173 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.036300 -0.418615 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.036300 4.226961 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.036300 -2.415407 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.036300 -1.811555 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.036400 -0.412718 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.036400 4.531681 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.036400 -2.589532 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.036400 -1.942149 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.036500 -0.406412 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.036500 4.831929 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.036500 -2.761103 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.036500 -2.070827 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.036600 -0.399706 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.036600 5.127410 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.036600 -2.929948 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.036600 -2.197461 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.036700 -0.392605 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.036700 5.417829 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.036700 -3.095902 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.036700 -2.321927 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.036800 -0.385122 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.036800 5.702902 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.036800 -3.258801 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.036800 -2.444101 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.036900 -0.377255 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.036900 5.982347 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.036900 -3.418484 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.036900 -2.563863 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.037000 -0.369015 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.037000 6.255888 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.037000 -3.574793 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.037000 -2.681095 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.037100 -0.360411 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.037100 6.523254 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.037100 -3.727574 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.037100 -2.795680 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.037200 -0.351453 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.037200 6.784183 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.037200 -3.876676 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.037200 -2.907507 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.037300 -0.342147 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.037300 7.038417 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.037300 -4.021953 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.037300 -3.016465 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.037400 -0.332503 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.037400 7.285705 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.037400 -4.163260 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.037400 -3.122445 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.037500 -0.322531 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.037500 7.525802 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.037500 -4.300458 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.037500 -3.225344 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.037600 -0.312240 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.037600 7.758471 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.037600 -4.433412 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.037600 -3.325059 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.037700 -0.301642 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.037700 7.983484 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.037700 -4.561991 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.037700 -3.421493 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.037800 -0.290747 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.037800 8.200619 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.037800 -4.686068 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.037800 -3.514551 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.037900 -0.279564 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.037900 8.409660 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.037900 -4.805520 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.037900 -3.604140 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.038000 -0.268100 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.038000 8.610403 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.038000 -4.920230 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.038000 -3.690173 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.038100 -0.256379 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.038100 8.802649 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.038100 -5.030085 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.038100 -3.772564 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.038200 -0.244403 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.038200 8.986208 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.038200 -5.134976 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.038200 -3.851232 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.038300 -0.232186 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.038300 9.160899 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.038300 -5.234799 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.038300 -3.926100 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.038400 -0.219740 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.038400 9.326549 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.038400 -5.329457 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.038400 -3.997093 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.038500 -0.207076 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.038500 9.482996 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.038500 -5.418855 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.038500 -4.064141 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.038600 -0.194208 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.038600 9.630083 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.038600 -5.502905 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.038600 -4.127178 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.038700 -0.181148 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.038700 9.767666 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.038700 -5.581524 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.038700 -4.186143 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.038800 -0.167910 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.038800 9.895610 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.038800 -5.654634 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.038800 -4.240976 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.038900 -0.154506 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.038900 10.013788 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.038900 -5.722165 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.038900 -4.291624 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.039000 -0.140949 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.039000 10.122084 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.039000 -5.784048 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.039000 -4.338036 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.039100 -0.127252 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.039100 10.220390 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.039100 -5.840223 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.039100 -4.380167 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.039200 -0.113430 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.039200 10.308610 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.039200 -5.890635 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.039200 -4.417976 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.039300 -0.099499 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.039300 10.386658 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.039300 -5.935233 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.039300 -4.451425 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.039400 -0.085467 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.039400 10.454456 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.039400 -5.973975 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.039400 -4.480481 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.039500 -0.071351 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.039500 10.511936 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.039500 -6.006821 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.039500 -4.505115 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.039600 -0.057164 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.039600 10.559042 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.039600 -6.033738 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.039600 -4.525304 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.039700 -0.042922 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.039700 10.595728 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.039700 -6.054702 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.039700 -4.541026 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.039800 -0.028637 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.039800 10.621957 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.039800 -6.069690 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.039800 -4.552267 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.039900 -0.014324 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.039900 10.637704 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.039900 -6.078688 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.039900 -4.559016 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.040000 0.000003 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.040000 10.642953 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.040000 -6.081688 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.040000 -4.561266 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.040100 0.014331 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.040100 10.637699 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.040100 -6.078685 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.040100 -4.559014 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.040200 0.028644 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.040200 10.621947 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.040200 -6.069684 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.040200 -4.552263 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.040300 0.042929 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.040300 10.595713 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.040300 -6.054693 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.040300 -4.541020 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.040400 0.057172 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.040400 10.559022 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.040400 -6.033727 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.040400 -4.525295 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.040500 0.071357 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.040500 10.511910 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.040500 -6.006806 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.040500 -4.505104 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.040600 0.085473 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.040600 10.454426 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.040600 -5.973958 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.040600 -4.480468 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.040700 0.099505 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.040700 10.386624 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.040700 -5.935213 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.040700 -4.451410 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.040800 0.113438 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.040800 10.308571 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.040800 -5.890612 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.040800 -4.417959 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.040900 0.127260 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.040900 10.220345 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.040900 -5.840197 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.040900 -4.380148 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.041000 0.140953 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.041000 10.122034 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.041000 -5.784020 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.041000 -4.338015 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.041100 0.154511 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.041100 10.013734 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.041100 -5.722134 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.041100 -4.291600 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.041200 0.167916 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.041200 9.895552 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.041200 -5.654601 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.041200 -4.240951 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.041300 0.181155 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.041300 9.767603 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.041300 -5.581487 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.041300 -4.186116 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.041400 0.194214 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.041400 9.630015 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.041400 -5.502866 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.041400 -4.127149 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.041500 0.207081 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.041500 9.482924 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.041500 -5.418814 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.041500 -4.064110 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.041600 0.219746 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.041600 9.326474 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.041600 -5.329413 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.041600 -3.997060 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.041700 0.232193 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.041700 9.160819 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.041700 -5.234754 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.041700 -3.926065 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.041800 0.244410 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.041800 8.986124 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.041800 -5.134928 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.041800 -3.851196 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.041900 0.256386 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.041900 8.802560 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.041900 -5.030034 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.041900 -3.772526 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.042000 0.268109 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.042000 8.610309 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.042000 -4.920177 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.042000 -3.690133 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.042100 0.279567 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.042100 8.409562 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.042100 -4.805464 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.042100 -3.604098 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.042200 0.290746 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.042200 8.200516 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.042200 -4.686009 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.042200 -3.514507 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.042300 0.301645 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.042300 7.983378 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.042300 -4.561930 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.042300 -3.421448 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.042400 0.312247 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.042400 7.758361 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.042400 -4.433349 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.042400 -3.325012 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.042500 0.322535 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.042500 7.525688 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.042500 -4.300393 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.042500 -3.225295 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.042600 0.332506 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.042600 7.285588 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.042600 -4.163193 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.042600 -3.122395 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.042700 0.342151 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.042700 7.038298 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.042700 -4.021884 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.042700 -3.016413 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.042800 0.351458 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.042800 6.784061 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.042800 -3.876606 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.042800 -2.907455 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.042900 0.360416 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.042900 6.523129 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.042900 -3.727502 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.042900 -2.795627 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.043000 0.369020 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.043000 6.255759 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.043000 -3.574720 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.043000 -2.681040 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.043100 0.377257 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.043100 5.982216 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.043100 -3.418409 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.043100 -2.563807 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.043200 0.385125 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.043200 5.702769 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.043200 -3.258725 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.043200 -2.444044 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.043300 0.392613 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.043300 5.417694 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.043300 -3.095825 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.043300 -2.321869 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.043400 0.399712 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.043400 5.127271 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.043400 -2.929869 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.043400 -2.197402 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.043500 0.406413 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.043500 4.831789 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.043500 -2.761022 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.043500 -2.070767 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.043600 0.412718 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.043600 4.531538 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.043600 -2.589451 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.043600 -1.942088 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.043700 0.418615 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.043700 4.226815 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.043700 -2.415323 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.043700 -1.811492 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.043800 0.424099 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.043800 3.917921 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.043800 -2.238812 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.043800 -1.679109 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.043900 0.429166 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.043900 3.605161 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.043900 -2.060092 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.043900 -1.545069 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.044000 0.433806 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.044000 3.288845 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.044000 -1.879340 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.044000 -1.409505 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.044100 0.438022 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.044100 2.969282 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.044100 -1.696733 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.044100 -1.272550 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.044200 0.441800 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.044200 2.646790 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.044200 -1.512451 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.044200 -1.134339 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.044300 0.445146 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.044300 2.321685 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.044300 -1.326677 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.044300 -0.995008 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.044400 0.448052 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.044400 1.994288 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.044400 -1.139593 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.044400 -0.854695 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.044500 0.450511 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.044500 1.664923 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.044500 -0.951385 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.044500 -0.713538 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.044600 0.452532 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.044600 1.333914 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.044600 -0.762237 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.044600 -0.571678 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.044700 0.454105 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.044700 1.001589 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.044700 -0.572337 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.044700 -0.429252 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.044800 0.455229 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.044800 0.668275 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.044800 -0.381871 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.044800 -0.286403 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.044900 0.455904 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.044900 0.334301 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.044900 -0.191029 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.044900 -0.143272 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.045000 0.456129 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.045000 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.045000 0.000001 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.045000 0.000001 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.045100 0.455902 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.045100 -0.334303 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.045100 0.191031 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.045100 0.143273 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.045200 0.455229 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.045200 -0.668275 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.045200 0.381872 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.045200 0.286404 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.045300 0.454105 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.045300 -1.001590 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.045300 0.572337 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.045300 0.429253 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.045400 0.452532 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.045400 -1.333915 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.045400 0.762237 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.045400 0.571678 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.045500 0.450513 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.045500 -1.664923 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.045500 0.951385 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.045500 0.713539 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.045600 0.448048 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.045600 -1.994288 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.045600 1.139593 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.045600 0.854695 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.045700 0.445141 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.045700 -2.321684 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.045700 1.326677 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.045700 0.995007 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.045800 0.441799 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.045800 -2.646788 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.045800 1.512451 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.045800 1.134338 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.045900 0.438018 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.045900 -2.969280 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.045900 1.696732 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.045900 1.272549 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.046000 0.433804 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.046000 -3.288841 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.046000 1.879338 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.046000 1.409503 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.046100 0.429165 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.046100 -3.605156 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.046100 2.060089 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.046100 1.545067 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.046200 0.424097 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.046200 -3.917913 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.046200 2.238808 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.046200 1.679106 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.046300 0.418615 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.046300 -4.226804 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.046300 2.415317 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.046300 1.811487 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.046400 0.412718 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.046400 -4.531523 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.046400 2.589442 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.046400 1.942081 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.046500 0.406412 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.046500 -4.831772 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.046500 2.761013 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.046500 2.070759 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.046600 0.399706 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.046600 -5.127252 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.046600 2.929858 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.046600 2.197394 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.046700 0.392605 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.046700 -5.417672 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.046700 3.095813 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.046700 2.321859 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.046800 0.385122 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.046800 -5.702745 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.046800 3.258711 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.046800 2.444034 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.046900 0.377255 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.046900 -5.982190 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.046900 3.418394 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.046900 2.563796 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.047000 0.369015 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.047000 -6.255731 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.047000 3.574703 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.047000 2.681027 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.047100 0.360411 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.047100 -6.523097 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.047100 3.727484 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.047100 2.795613 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.047200 0.351453 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.047200 -6.784026 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.047200 3.876586 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.047200 2.907440 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.047300 0.342147 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.047300 -7.038260 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.047300 4.021863 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.047300 3.016397 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.047400 0.332503 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.047400 -7.285547 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.047400 4.163170 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.047400 3.122377 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.047500 0.322531 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.047500 -7.525644 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.047500 4.300368 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.047500 3.225276 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.047600 0.312240 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.047600 -7.758314 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.047600 4.433322 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.047600 3.324992 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.047700 0.301642 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.047700 -7.983327 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.047700 4.561901 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.047700 3.421426 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.047800 0.290747 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.047800 -8.200461 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.047800 4.685978 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.047800 3.514483 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.047900 0.279564 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.047900 -8.409503 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.047900 4.805430 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.047900 3.604073 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.048000 0.268100 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.048000 -8.610246 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.048000 4.920140 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.048000 3.690105 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.048100 0.256379 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.048100 -8.802492 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.048100 5.029995 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.048100 3.772496 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.048200 0.244403 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.048200 -8.986051 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.048200 5.134886 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.048200 3.851165 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.048300 0.232186 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.048300 -9.160742 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.048300 5.234710 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.048300 3.926032 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.048400 0.219740 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.048400 -9.326392 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.048400 5.329367 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.048400 3.997025 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.048500 0.207076 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.048500 -9.482838 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.048500 5.418765 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.048500 4.064074 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.048600 0.194208 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.048600 -9.629925 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.048600 5.502815 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.048600 4.127111 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.048700 0.181148 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.048700 -9.767509 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.048700 5.581434 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.048700 4.186075 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.048800 0.167910 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.048800 -9.895453 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.048800 5.654544 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.048800 4.240908 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.048900 0.154506 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.048900 -10.013631 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.048900 5.722075 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.048900 4.291556 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.049000 0.140949 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.049000 -10.121927 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.049000 5.783958 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.049000 4.337969 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.049100 0.127252 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.049100 -10.220233 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.049100 5.840133 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.049100 4.380100 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.049200 0.113430 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.049200 -10.308453 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.049200 5.890545 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.049200 4.417908 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.049300 0.099499 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.049300 -10.386501 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.049300 5.935143 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.049300 4.451358 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.049400 0.085467 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.049400 -10.454298 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.049400 5.973885 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.049400 4.480414 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.049500 0.071351 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.049500 -10.511779 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.049500 6.006731 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.049500 4.505048 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.049600 0.057164 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.049600 -10.558884 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.049600 6.033648 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.049600 4.525236 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.049700 0.042922 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.049700 -10.595570 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.049700 6.054612 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.049700 4.540959 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.049800 0.028637 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.049800 -10.621800 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.049800 6.069600 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.049800 4.552200 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.049900 0.014324 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.049900 -10.637547 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.049900 6.078598 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.049900 4.558949 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.050000 -0.000003 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.050000 -10.642796 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.050000 6.081598 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.050000 4.561198 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.050100 -0.014331 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.050100 -10.637542 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.050100 6.078595 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.050100 4.558946 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.050200 -0.028644 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.050200 -10.621790 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.050200 6.069594 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.050200 4.552196 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.050300 -0.042929 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.050300 -10.595555 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.050300 6.054603 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.050300 4.540952 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.050400 -0.057172 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.050400 -10.558864 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.050400 6.033637 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.050400 4.525228 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.050500 -0.071357 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.050500 -10.511753 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.050500 6.006716 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.050500 4.505037 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.050600 -0.085473 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.050600 -10.454268 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.050600 5.973868 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.050600 4.480401 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.050700 -0.099505 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.050700 -10.386466 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.050700 5.935124 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.050700 4.451343 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.050800 -0.113438 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.050800 -10.308414 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.050800 5.890522 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.050800 4.417892 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.050900 -0.127260 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.050900 -10.220188 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.050900 5.840107 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.050900 4.380080 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.051000 -0.140953 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.051000 -10.121877 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.051000 5.783930 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.051000 4.337947 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.051100 -0.154511 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.051100 -10.013577 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.051100 5.722044 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.051100 4.291533 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.051200 -0.167916 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.051200 -9.895394 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.051200 5.654511 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.051200 4.240883 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.051300 -0.181155 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.051300 -9.767446 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.051300 5.581398 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.051300 4.186048 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.051400 -0.194214 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.051400 -9.629858 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.051400 5.502776 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.051400 4.127082 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.051500 -0.207081 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.051500 -9.482766 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.051500 5.418724 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.051500 4.064043 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.051600 -0.219746 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.051600 -9.326316 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.051600 5.329323 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.051600 3.996993 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.051700 -0.232193 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.051700 -9.160662 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.051700 5.234664 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.051700 3.925998 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.051800 -0.244410 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.051800 -8.985966 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.051800 5.134838 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.051800 3.851128 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.051900 -0.256386 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.051900 -8.802403 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.051900 5.029944 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.051900 3.772458 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.052000 -0.268109 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.052000 -8.610152 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.052000 4.920087 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.052000 3.690065 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.052100 -0.279567 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.052100 -8.409405 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.052100 4.805374 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.052100 3.604031 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.052200 -0.290746 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.052200 -8.200359 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.052200 4.685919 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.052200 3.514440 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.052300 -0.301645 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.052300 -7.983221 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.052300 4.561840 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.052300 3.421380 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.052400 -0.312246 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.052400 -7.758204 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.052400 4.433259 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.052400 3.324944 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.052500 -0.322535 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.052500 -7.525531 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.052500 4.300303 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.052500 3.225227 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.052600 -0.332506 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.052600 -7.285431 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.052600 4.163103 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.052600 3.122327 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.052700 -0.342151 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.052700 -7.038140 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.052700 4.021794 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.052700 3.016346 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.052800 -0.351458 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.052800 -6.783904 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.052800 3.876516 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.052800 2.907387 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.052900 -0.360416 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.052900 -6.522972 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.052900 3.727412 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.052900 2.795559 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.053000 -0.369020 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.053000 -6.255602 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.053000 3.574630 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.053000 2.680972 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.053100 -0.377257 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.053100 -5.982059 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.053100 3.418319 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.053100 2.563740 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.053200 -0.385125 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.053200 -5.702612 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.053200 3.258635 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.053200 2.443976 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.053300 -0.392613 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.053300 -5.417536 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.053300 3.095735 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.053300 2.321801 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.053400 -0.399712 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.053400 -5.127114 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.053400 2.929779 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.053400 2.197335 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.053500 -0.406413 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.053500 -4.831632 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.053500 2.760932 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.053500 2.070699 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.053600 -0.412718 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.053600 -4.531381 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.053600 2.589361 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.053600 1.942020 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.053700 -0.418615 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.053700 -4.226658 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.053700 2.415233 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.053700 1.811425 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.053800 -0.424099 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.053800 -3.917763 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.053800 2.238722 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.053800 1.679041 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.053900 -0.429166 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.053900 -3.605004 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.053900 2.060002 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.053900 1.545002 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.054000 -0.433806 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.054000 -3.288687 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.054000 1.879250 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.054000 1.409437 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.054100 -0.438022 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.054100 -2.969125 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.054100 1.696643 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.054100 1.272482 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.054200 -0.441800 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.054200 -2.646632 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.054200 1.512361 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.054200 1.134271 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.054300 -0.445146 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.054300 -2.321527 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.054300 1.326587 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.054300 0.994940 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.054400 -0.448052 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.054400 -1.994130 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.054400 1.139503 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.054400 0.854627 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.054500 -0.450511 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.054500 -1.664766 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.054500 0.951295 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.054500 0.713471 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.054600 -0.452532 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.054600 -1.333757 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.054600 0.762147 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.054600 0.571610 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.054700 -0.454105 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.054700 -1.001432 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.054700 0.572247 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.054700 0.429185 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.054800 -0.455229 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.054800 -0.668117 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.054800 0.381781 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.054800 0.286336 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.054900 -0.455904 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.054900 -0.334143 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.054900 0.190939 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.054900 0.143204 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.055000 -0.456129 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.055000 0.000159 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.055000 -0.000091 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.055000 -0.000068 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.055100 -0.455902 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.055100 0.334461 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.055100 -0.191121 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.055100 -0.143340 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.055200 -0.455229 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.055200 0.668433 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.055200 -0.381962 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.055200 -0.286471 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.055300 -0.454105 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.055300 1.001747 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.055300 -0.572427 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.055300 -0.429320 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.055400 -0.452532 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.055400 1.334072 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.055400 -0.762327 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.055400 -0.571745 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.055500 -0.450513 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.055500 1.665081 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.055500 -0.951475 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.055500 -0.713606 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.055600 -0.448048 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.055600 1.994445 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.055600 -1.139683 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.055600 -0.854762 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.055700 -0.445141 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.055700 2.321841 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.055700 -1.326766 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.055700 -0.995075 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.055800 -0.441799 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.055800 2.646946 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.055800 -1.512540 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.055800 -1.134405 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.055900 -0.438018 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.055900 2.969438 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.055900 -1.696822 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.055900 -1.272616 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.056000 -0.433804 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.056000 3.288998 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.056000 -1.879428 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.056000 -1.409571 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.056100 -0.429165 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.056100 3.605314 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.056100 -2.060179 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.056100 -1.545134 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.056200 -0.424097 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.056200 3.918071 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.056200 -2.238898 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.056200 -1.679173 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.056300 -0.418615 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.056300 4.226961 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.056300 -2.415407 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.056300 -1.811555 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.056400 -0.412718 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.056400 4.531681 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.056400 -2.589532 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.056400 -1.942149 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.056500 -0.406412 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.056500 4.831929 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.056500 -2.761103 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.056500 -2.070827 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.056600 -0.399706 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.056600 5.127410 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.056600 -2.929948 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.056600 -2.197461 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.056700 -0.392605 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.056700 5.417829 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.056700 -3.095902 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.056700 -2.321927 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.056800 -0.385122 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.056800 5.702902 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.056800 -3.258801 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.056800 -2.444101 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.056900 -0.377255 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.056900 5.982347 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.056900 -3.418484 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.056900 -2.563863 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.057000 -0.369015 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.057000 6.255888 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.057000 -3.574793 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.057000 -2.681095 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.057100 -0.360411 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.057100 6.523254 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.057100 -3.727574 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.057100 -2.795680 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.057200 -0.351453 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.057200 6.784183 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.057200 -3.876676 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.057200 -2.907507 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.057300 -0.342147 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.057300 7.038417 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.057300 -4.021953 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.057300 -3.016465 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.057400 -0.332503 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.057400 7.285705 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.057400 -4.163260 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.057400 -3.122445 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.057500 -0.322531 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.057500 7.525802 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.057500 -4.300458 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.057500 -3.225344 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.057600 -0.312240 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.057600 7.758471 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.057600 -4.433412 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.057600 -3.325059 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.057700 -0.301642 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.057700 7.983484 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.057700 -4.561991 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.057700 -3.421493 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.057800 -0.290747 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.057800 8.200619 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.057800 -4.686068 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.057800 -3.514551 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.057900 -0.279564 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.057900 8.409660 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.057900 -4.805520 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.057900 -3.604140 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.058000 -0.268100 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.058000 8.610403 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.058000 -4.920230 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.058000 -3.690173 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.058100 -0.256379 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.058100 8.802649 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.058100 -5.030085 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.058100 -3.772564 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.058200 -0.244403 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.058200 8.986208 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.058200 -5.134976 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.058200 -3.851232 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.058300 -0.232186 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.058300 9.160899 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.058300 -5.234799 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.058300 -3.926100 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.058400 -0.219740 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.058400 9.326549 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.058400 -5.329457 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.058400 -3.997093 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.058500 -0.207076 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.058500 9.482996 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.058500 -5.418855 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.058500 -4.064141 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.058600 -0.194208 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.058600 9.630083 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.058600 -5.502905 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.058600 -4.127178 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.058700 -0.181148 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.058700 9.767666 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.058700 -5.581524 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.058700 -4.186143 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.058800 -0.167910 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.058800 9.895610 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.058800 -5.654634 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.058800 -4.240976 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.058900 -0.154506 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.058900 10.013788 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.058900 -5.722165 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.058900 -4.291624 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.059000 -0.140949 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.059000 10.122084 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.059000 -5.784048 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.059000 -4.338036 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.059100 -0.127252 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.059100 10.220390 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.059100 -5.840223 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.059100 -4.380167 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.059200 -0.113430 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.059200 10.308610 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.059200 -5.890635 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.059200 -4.417976 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.059300 -0.099499 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.059300 10.386658 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.059300 -5.935233 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.059300 -4.451425 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.059400 -0.085467 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.059400 10.454456 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.059400 -5.973975 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.059400 -4.480481 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.059500 -0.071351 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.059500 10.511936 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.059500 -6.006821 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.059500 -4.505115 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.059600 -0.057164 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.059600 10.559042 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.059600 -6.033738 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.059600 -4.525304 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.059700 -0.042922 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.059700 10.595728 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.059700 -6.054702 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.059700 -4.541026 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.059800 -0.028637 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.059800 10.621957 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.059800 -6.069690 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.059800 -4.552267 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.059900 -0.014324 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.059900 10.637704 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.059900 -6.078688 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.059900 -4.559016 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.060000 0.000003 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.060000 10.642953 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.060000 -6.081688 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.060000 -4.561266 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.060100 0.014331 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.060100 10.637699 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.060100 -6.078685 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.060100 -4.559014 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.060200 0.028644 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.060200 10.621947 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.060200 -6.069684 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.060200 -4.552263 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.060300 0.042929 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.060300 10.595713 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.060300 -6.054693 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.060300 -4.541020 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.060400 0.057172 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.060400 10.559022 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.060400 -6.033727 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.060400 -4.525295 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.060500 0.071357 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.060500 10.511910 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.060500 -6.006806 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.060500 -4.505104 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.060600 0.085473 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.060600 10.454426 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.060600 -5.973958 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.060600 -4.480468 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.060700 0.099505 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.060700 10.386624 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.060700 -5.935213 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.060700 -4.451410 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.060800 0.113438 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.060800 10.308571 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.060800 -5.890612 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.060800 -4.417959 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.060900 0.127260 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.060900 10.220345 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.060900 -5.840197 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.060900 -4.380148 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.061000 0.140953 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.061000 10.122034 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.061000 -5.784020 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.061000 -4.338015 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.061100 0.154511 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.061100 10.013734 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.061100 -5.722134 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.061100 -4.291600 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.061200 0.167916 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.061200 9.895552 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.061200 -5.654601 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.061200 -4.240951 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.061300 0.181155 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.061300 9.767603 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.061300 -5.581487 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.061300 -4.186116 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.061400 0.194214 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.061400 9.630015 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.061400 -5.502866 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.061400 -4.127149 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.061500 0.207081 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.061500 9.482924 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.061500 -5.418814 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.061500 -4.064110 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.061600 0.219746 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.061600 9.326474 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.061600 -5.329413 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.061600 -3.997060 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.061700 0.232193 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.061700 9.160819 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.061700 -5.234754 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.061700 -3.926065 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.061800 0.244410 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.061800 8.986124 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.061800 -5.134928 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.061800 -3.851196 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.061900 0.256386 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.061900 8.802560 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.061900 -5.030034 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.061900 -3.772526 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.062000 0.268109 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.062000 8.610309 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.062000 -4.920177 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.062000 -3.690133 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.062100 0.279567 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.062100 8.409562 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.062100 -4.805464 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.062100 -3.604098 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.062200 0.290746 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.062200 8.200516 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.062200 -4.686009 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.062200 -3.514507 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.062300 0.301645 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.062300 7.983378 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.062300 -4.561930 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.062300 -3.421448 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.062400 0.312247 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.062400 7.758361 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.062400 -4.433349 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.062400 -3.325012 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.062500 0.322535 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.062500 7.525688 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.062500 -4.300393 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.062500 -3.225295 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.062600 0.332506 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.062600 7.285588 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.062600 -4.163193 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.062600 -3.122395 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.062700 0.342151 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.062700 7.038298 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.062700 -4.021884 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.062700 -3.016413 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.062800 0.351458 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.062800 6.784061 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.062800 -3.876606 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.062800 -2.907455 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.062900 0.360416 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.062900 6.523129 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.062900 -3.727502 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.062900 -2.795627 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.063000 0.369020 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.063000 6.255759 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.063000 -3.574720 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.063000 -2.681040 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.063100 0.377257 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.063100 5.982216 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.063100 -3.418409 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.063100 -2.563807 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.063200 0.385125 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.063200 5.702769 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.063200 -3.258725 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.063200 -2.444044 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.063300 0.392613 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.063300 5.417694 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.063300 -3.095825 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.063300 -2.321869 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.063400 0.399712 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.063400 5.127271 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.063400 -2.929869 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.063400 -2.197402 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.063500 0.406413 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.063500 4.831789 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.063500 -2.761022 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.063500 -2.070767 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.063600 0.412718 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.063600 4.531538 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.063600 -2.589451 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.063600 -1.942088 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.063700 0.418615 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.063700 4.226815 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.063700 -2.415323 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.063700 -1.811492 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.063800 0.424099 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.063800 3.917920 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.063800 -2.238812 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.063800 -1.679109 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.063900 0.429166 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.063900 3.605161 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.063900 -2.060092 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.063900 -1.545069 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.064000 0.433806 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.064000 3.288845 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.064000 -1.879340 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.064000 -1.409505 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.064100 0.438022 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.064100 2.969282 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.064100 -1.696733 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.064100 -1.272550 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.064200 0.441800 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.064200 2.646790 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.064200 -1.512451 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.064200 -1.134339 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.064300 0.445146 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.064300 2.321685 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.064300 -1.326677 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.064300 -0.995008 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.064400 0.448052 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.064400 1.994288 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.064400 -1.139593 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.064400 -0.854695 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.064500 0.450511 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.064500 1.664923 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.064500 -0.951385 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.064500 -0.713538 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.064600 0.452532 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.064600 1.333914 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.064600 -0.762237 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.064600 -0.571678 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.064700 0.454105 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.064700 1.001589 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.064700 -0.572337 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.064700 -0.429252 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.064800 0.455229 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.064800 0.668275 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.064800 -0.381871 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.064800 -0.286403 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.064900 0.455904 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.064900 0.334301 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.064900 -0.191029 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.064900 -0.143272 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.065000 0.456129 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.065000 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.065000 0.000001 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.065000 0.000001 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.065100 0.455902 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.065100 -0.334303 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.065100 0.191031 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.065100 0.143273 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.065200 0.455229 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.065200 -0.668275 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.065200 0.381872 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.065200 0.286404 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.065300 0.454105 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.065300 -1.001590 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.065300 0.572337 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.065300 0.429253 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.065400 0.452532 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.065400 -1.333915 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.065400 0.762237 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.065400 0.571678 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.065500 0.450513 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.065500 -1.664923 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.065500 0.951385 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.065500 0.713539 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.065600 0.448048 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.065600 -1.994288 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.065600 1.139593 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.065600 0.854695 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.065700 0.445141 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.065700 -2.321684 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.065700 1.326677 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.065700 0.995007 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.065800 0.441799 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.065800 -2.646788 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.065800 1.512451 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.065800 1.134338 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.065900 0.438018 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.065900 -2.969280 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.065900 1.696732 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.065900 1.272549 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.066000 0.433804 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.066000 -3.288841 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.066000 1.879338 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.066000 1.409503 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.066100 0.429165 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.066100 -3.605156 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.066100 2.060089 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.066100 1.545067 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.066200 0.424097 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.066200 -3.917913 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.066200 2.238808 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.066200 1.679106 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.066300 0.418615 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.066300 -4.226804 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.066300 2.415317 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.066300 1.811487 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.066400 0.412718 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.066400 -4.531523 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.066400 2.589442 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.066400 1.942081 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.066500 0.406412 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.066500 -4.831772 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.066500 2.761013 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.066500 2.070759 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.066600 0.399706 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.066600 -5.127252 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.066600 2.929858 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.066600 2.197394 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.066700 0.392605 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.066700 -5.417672 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.066700 3.095813 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.066700 2.321859 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.066800 0.385122 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.066800 -5.702745 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.066800 3.258711 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.066800 2.444034 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.066900 0.377255 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.066900 -5.982190 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.066900 3.418394 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.066900 2.563796 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.067000 0.369015 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.067000 -6.255731 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.067000 3.574703 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.067000 2.681027 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.067100 0.360411 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.067100 -6.523097 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.067100 3.727484 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.067100 2.795613 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.067200 0.351453 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.067200 -6.784026 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.067200 3.876586 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.067200 2.907440 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.067300 0.342147 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.067300 -7.038260 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.067300 4.021863 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.067300 3.016397 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.067400 0.332503 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.067400 -7.285547 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.067400 4.163170 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.067400 3.122377 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.067500 0.322531 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.067500 -7.525644 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.067500 4.300368 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.067500 3.225276 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.067600 0.312240 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.067600 -7.758314 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.067600 4.433322 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.067600 3.324992 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.067700 0.301642 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.067700 -7.983327 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.067700 4.561901 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.067700 3.421426 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.067800 0.290747 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.067800 -8.200461 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.067800 4.685978 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.067800 3.514483 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.067900 0.279564 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.067900 -8.409503 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.067900 4.805430 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.067900 3.604073 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.068000 0.268100 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.068000 -8.610246 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.068000 4.920140 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.068000 3.690105 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.068100 0.256379 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.068100 -8.802492 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.068100 5.029995 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.068100 3.772496 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.068200 0.244403 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.068200 -8.986051 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.068200 5.134886 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.068200 3.851165 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.068300 0.232186 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.068300 -9.160742 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.068300 5.234710 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.068300 3.926032 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.068400 0.219740 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.068400 -9.326392 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.068400 5.329367 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.068400 3.997025 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.068500 0.207076 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.068500 -9.482838 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.068500 5.418765 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.068500 4.064074 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.068600 0.194208 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.068600 -9.629926 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.068600 5.502815 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.068600 4.127111 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.068700 0.181148 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.068700 -9.767509 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.068700 5.581434 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.068700 4.186075 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.068800 0.167910 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.068800 -9.895453 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.068800 5.654544 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.068800 4.240908 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.068900 0.154506 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.068900 -10.013631 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.068900 5.722075 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.068900 4.291556 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.069000 0.140949 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.069000 -10.121927 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.069000 5.783958 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.069000 4.337969 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.069100 0.127252 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.069100 -10.220233 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.069100 5.840133 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.069100 4.380100 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.069200 0.113430 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.069200 -10.308453 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.069200 5.890545 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.069200 4.417908 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.069300 0.099499 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.069300 -10.386501 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.069300 5.935143 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.069300 4.451358 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.069400 0.085467 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.069400 -10.454298 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.069400 5.973885 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.069400 4.480414 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.069500 0.071351 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.069500 -10.511779 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.069500 6.006731 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.069500 4.505048 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.069600 0.057164 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.069600 -10.558884 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.069600 6.033648 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.069600 4.525236 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.069700 0.042922 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.069700 -10.595570 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.069700 6.054612 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.069700 4.540959 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.069800 0.028637 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.069800 -10.621800 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.069800 6.069600 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.069800 4.552200 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.069900 0.014324 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.069900 -10.637547 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.069900 6.078598 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.069900 4.558949 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.070000 -0.000003 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.070000 -10.642796 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.070000 6.081598 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.070000 4.561198 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.070100 -0.014331 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.070100 -10.637542 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.070100 6.078595 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.070100 4.558946 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.070200 -0.028644 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.070200 -10.621790 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.070200 6.069594 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.070200 4.552196 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.070300 -0.042929 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.070300 -10.595555 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.070300 6.054603 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.070300 4.540952 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.070400 -0.057172 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.070400 -10.558864 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.070400 6.033637 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.070400 4.525228 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.070500 -0.071357 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.070500 -10.511753 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.070500 6.006716 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.070500 4.505037 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.070600 -0.085473 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.070600 -10.454268 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.070600 5.973868 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.070600 4.480401 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.070700 -0.099505 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.070700 -10.386466 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.070700 5.935124 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.070700 4.451343 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.070800 -0.113438 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.070800 -10.308414 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.070800 5.890522 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.070800 4.417892 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.070900 -0.127260 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.070900 -10.220188 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.070900 5.840107 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.070900 4.380080 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.071000 -0.140953 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.071000 -10.121877 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.071000 5.783930 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.071000 4.337947 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.071100 -0.154511 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.071100 -10.013577 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.071100 5.722044 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.071100 4.291533 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.071200 -0.167916 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.071200 -9.895394 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.071200 5.654511 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.071200 4.240883 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.071300 -0.181155 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.071300 -9.767446 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.071300 5.581398 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.071300 4.186048 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.071400 -0.194214 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.071400 -9.629858 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.071400 5.502776 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.071400 4.127082 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.071500 -0.207081 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.071500 -9.482766 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.071500 5.418724 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.071500 4.064043 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.071600 -0.219746 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.071600 -9.326316 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.071600 5.329323 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.071600 3.996993 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.071700 -0.232193 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.071700 -9.160662 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.071700 5.234664 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.071700 3.925998 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.071800 -0.244410 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.071800 -8.985966 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.071800 5.134838 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.071800 3.851128 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.071900 -0.256386 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.071900 -8.802403 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.071900 5.029944 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.071900 3.772458 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.072000 -0.268109 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.072000 -8.610152 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.072000 4.920087 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.072000 3.690065 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.072100 -0.279567 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.072100 -8.409405 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.072100 4.805374 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.072100 3.604031 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.072200 -0.290746 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.072200 -8.200359 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.072200 4.685919 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.072200 3.514440 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.072300 -0.301645 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.072300 -7.983221 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.072300 4.561840 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.072300 3.421380 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.072400 -0.312246 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.072400 -7.758204 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.072400 4.433259 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.072400 3.324944 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.072500 -0.322535 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.072500 -7.525531 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.072500 4.300303 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.072500 3.225227 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.072600 -0.332506 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.072600 -7.285431 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.072600 4.163103 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.072600 3.122327 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.072700 -0.342151 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.072700 -7.038140 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.072700 4.021794 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.072700 3.016346 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.072800 -0.351458 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.072800 -6.783904 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.072800 3.876516 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.072800 2.907387 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.072900 -0.360416 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.072900 -6.522972 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.072900 3.727412 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.072900 2.795559 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.073000 -0.369020 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.073000 -6.255602 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.073000 3.574630 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.073000 2.680972 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.073100 -0.377257 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.073100 -5.982059 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.073100 3.418319 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.073100 2.563740 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.073200 -0.385125 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.073200 -5.702612 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.073200 3.258635 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.073200 2.443976 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.073300 -0.392613 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.073300 -5.417536 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.073300 3.095735 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.073300 2.321801 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.073400 -0.399712 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.073400 -5.127114 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.073400 2.929779 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.073400 2.197335 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.073500 -0.406413 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.073500 -4.831632 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.073500 2.760932 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.073500 2.070699 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.073600 -0.412718 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.073600 -4.531381 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.073600 2.589361 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.073600 1.942020 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.073700 -0.418615 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.073700 -4.226658 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.073700 2.415233 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.073700 1.811425 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.073800 -0.424099 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.073800 -3.917763 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.073800 2.238722 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.073800 1.679041 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.073900 -0.429166 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.073900 -3.605004 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.073900 2.060002 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.073900 1.545002 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.074000 -0.433806 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.074000 -3.288687 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.074000 1.879250 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.074000 1.409437 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.074100 -0.438022 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.074100 -2.969125 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.074100 1.696643 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.074100 1.272482 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.074200 -0.441800 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.074200 -2.646632 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.074200 1.512361 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.074200 1.134271 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.074300 -0.445146 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.074300 -2.321527 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.074300 1.326587 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.074300 0.994940 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.074400 -0.448052 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.074400 -1.994131 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.074400 1.139503 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.074400 0.854627 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.074500 -0.450511 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.074500 -1.664766 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.074500 0.951295 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.074500 0.713471 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.074600 -0.452532 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.074600 -1.333757 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.074600 0.762147 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.074600 0.571610 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.074700 -0.454105 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.074700 -1.001432 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.074700 0.572247 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.074700 0.429185 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.074800 -0.455229 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.074800 -0.668117 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.074800 0.381781 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.074800 0.286336 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.074900 -0.455904 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.074900 -0.334143 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.074900 0.190939 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.074900 0.143204 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.075000 -0.456129 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.075000 0.000159 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.075000 -0.000091 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.075000 -0.000068 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.075100 -0.455902 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.075100 0.334461 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.075100 -0.191120 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.075100 -0.143340 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.075200 -0.455229 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.075200 0.668433 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.075200 -0.381962 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.075200 -0.286471 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.075300 -0.454105 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.075300 1.001747 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.075300 -0.572427 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.075300 -0.429320 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.075400 -0.452532 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.075400 1.334072 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.075400 -0.762327 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.075400 -0.571745 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.075500 -0.450513 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.075500 1.665081 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.075500 -0.951475 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.075500 -0.713606 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.075600 -0.448048 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.075600 1.994445 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.075600 -1.139683 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.075600 -0.854762 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.075700 -0.445141 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.075700 2.321841 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.075700 -1.326766 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.075700 -0.995075 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.075800 -0.441799 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.075800 2.646946 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.075800 -1.512540 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.075800 -1.134405 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.075900 -0.438018 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.075900 2.969438 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.075900 -1.696822 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.075900 -1.272616 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.076000 -0.433804 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.076000 3.288998 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.076000 -1.879428 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.076000 -1.409571 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.076100 -0.429165 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.076100 3.605314 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.076100 -2.060179 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.076100 -1.545134 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.076200 -0.424097 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.076200 3.918071 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.076200 -2.238898 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.076200 -1.679173 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.076300 -0.418615 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.076300 4.226961 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.076300 -2.415407 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.076300 -1.811555 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.076400 -0.412718 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.076400 4.531681 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.076400 -2.589532 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.076400 -1.942149 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.076500 -0.406412 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.076500 4.831929 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.076500 -2.761103 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.076500 -2.070827 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.076600 -0.399706 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.076600 5.127410 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.076600 -2.929948 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.076600 -2.197461 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.076700 -0.392605 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.076700 5.417829 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.076700 -3.095902 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.076700 -2.321927 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.076800 -0.385122 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.076800 5.702902 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.076800 -3.258801 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.076800 -2.444101 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.076900 -0.377255 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.076900 5.982347 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.076900 -3.418484 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.076900 -2.563863 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.077000 -0.369015 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.077000 6.255888 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.077000 -3.574793 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.077000 -2.681095 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.077100 -0.360411 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.077100 6.523254 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.077100 -3.727574 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.077100 -2.795680 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.077200 -0.351453 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.077200 6.784183 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.077200 -3.876676 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.077200 -2.907507 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.077300 -0.342147 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.077300 7.038417 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.077300 -4.021953 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.077300 -3.016465 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.077400 -0.332503 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.077400 7.285705 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.077400 -4.163260 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.077400 -3.122445 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.077500 -0.322531 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.077500 7.525802 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.077500 -4.300458 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.077500 -3.225344 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.077600 -0.312240 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.077600 7.758471 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.077600 -4.433412 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.077600 -3.325059 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.077700 -0.301642 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.077700 7.983484 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.077700 -4.561991 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.077700 -3.421493 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.077800 -0.290747 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.077800 8.200619 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.077800 -4.686068 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.077800 -3.514551 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.077900 -0.279564 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.077900 8.409660 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.077900 -4.805520 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.077900 -3.604140 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.078000 -0.268100 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.078000 8.610403 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.078000 -4.920230 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.078000 -3.690173 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.078100 -0.256379 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.078100 8.802649 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.078100 -5.030085 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.078100 -3.772564 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.078200 -0.244403 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.078200 8.986208 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.078200 -5.134976 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.078200 -3.851232 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.078300 -0.232186 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.078300 9.160899 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.078300 -5.234799 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.078300 -3.926100 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.078400 -0.219740 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.078400 9.326549 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.078400 -5.329457 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.078400 -3.997093 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.078500 -0.207076 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.078500 9.482996 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.078500 -5.418855 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.078500 -4.064141 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.078600 -0.194208 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.078600 9.630083 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.078600 -5.502905 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.078600 -4.127178 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.078700 -0.181148 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.078700 9.767666 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.078700 -5.581524 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.078700 -4.186143 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.078800 -0.167910 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.078800 9.895610 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.078800 -5.654634 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.078800 -4.240976 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.078900 -0.154506 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.078900 10.013788 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.078900 -5.722165 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.078900 -4.291624 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.079000 -0.140949 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.079000 10.122084 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.079000 -5.784048 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.079000 -4.338036 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.079100 -0.127252 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.079100 10.220390 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.079100 -5.840223 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.079100 -4.380167 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.079200 -0.113430 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.079200 10.308610 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.079200 -5.890635 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.079200 -4.417976 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.079300 -0.099499 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.079300 10.386658 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.079300 -5.935233 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.079300 -4.451425 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.079400 -0.085467 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.079400 10.454456 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.079400 -5.973975 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.079400 -4.480481 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.079500 -0.071351 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.079500 10.511936 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.079500 -6.006821 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.079500 -4.505115 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.079600 -0.057164 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.079600 10.559042 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.079600 -6.033738 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.079600 -4.525304 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.079700 -0.042922 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.079700 10.595728 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.079700 -6.054702 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.079700 -4.541026 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.079800 -0.028637 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.079800 10.621957 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.079800 -6.069690 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.079800 -4.552267 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.079900 -0.014324 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.079900 10.637704 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.079900 -6.078688 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.079900 -4.559016 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.080000 0.000003 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.080000 10.642953 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.080000 -6.081688 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.080000 -4.561266 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.080100 0.014331 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.080100 10.637699 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.080100 -6.078685 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.080100 -4.559014 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.080200 0.028644 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.080200 10.621947 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.080200 -6.069684 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.080200 -4.552263 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.080300 0.042929 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.080300 10.595713 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.080300 -6.054693 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.080300 -4.541020 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.080400 0.057172 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.080400 10.559022 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.080400 -6.033727 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.080400 -4.525295 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.080500 0.071357 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.080500 10.511910 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.080500 -6.006806 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.080500 -4.505104 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.080600 0.085473 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.080600 10.454426 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.080600 -5.973958 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.080600 -4.480468 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.080700 0.099505 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.080700 10.386624 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.080700 -5.935213 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.080700 -4.451410 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.080800 0.113438 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.080800 10.308571 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.080800 -5.890612 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.080800 -4.417959 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.080900 0.127260 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.080900 10.220345 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.080900 -5.840197 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.080900 -4.380148 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.081000 0.140953 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.081000 10.122034 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.081000 -5.784020 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.081000 -4.338015 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.081100 0.154511 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.081100 10.013734 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.081100 -5.722134 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.081100 -4.291600 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.081200 0.167916 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.081200 9.895552 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.081200 -5.654601 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.081200 -4.240951 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.081300 0.181155 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.081300 9.767603 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.081300 -5.581487 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.081300 -4.186116 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.081400 0.194214 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.081400 9.630015 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.081400 -5.502866 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.081400 -4.127149 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.081500 0.207081 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.081500 9.482924 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.081500 -5.418814 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.081500 -4.064110 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.081600 0.219746 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.081600 9.326473 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.081600 -5.329413 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.081600 -3.997060 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.081700 0.232193 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.081700 9.160819 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.081700 -5.234754 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.081700 -3.926065 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.081800 0.244410 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.081800 8.986124 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.081800 -5.134928 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.081800 -3.851196 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.081900 0.256386 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.081900 8.802560 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.081900 -5.030034 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.081900 -3.772526 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.082000 0.268109 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.082000 8.610309 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.082000 -4.920177 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.082000 -3.690133 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.082100 0.279567 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.082100 8.409562 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.082100 -4.805464 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.082100 -3.604098 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.082200 0.290746 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.082200 8.200516 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.082200 -4.686009 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.082200 -3.514507 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.082300 0.301645 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.082300 7.983378 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.082300 -4.561930 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.082300 -3.421448 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.082400 0.312247 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.082400 7.758361 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.082400 -4.433349 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.082400 -3.325012 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.082500 0.322535 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.082500 7.525688 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.082500 -4.300393 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.082500 -3.225295 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.082600 0.332506 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.082600 7.285588 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.082600 -4.163193 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.082600 -3.122395 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.082700 0.342151 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.082700 7.038298 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.082700 -4.021884 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.082700 -3.016413 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.082800 0.351458 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.082800 6.784061 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.082800 -3.876606 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.082800 -2.907455 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.082900 0.360416 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.082900 6.523129 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.082900 -3.727502 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.082900 -2.795627 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.083000 0.369020 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.083000 6.255759 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.083000 -3.574720 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.083000 -2.681040 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.083100 0.377257 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.083100 5.982216 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.083100 -3.418409 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.083100 -2.563807 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.083200 0.385125 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.083200 5.702769 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.083200 -3.258725 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.083200 -2.444044 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.083300 0.392613 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.083300 5.417694 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.083300 -3.095825 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.083300 -2.321869 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.083400 0.399712 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.083400 5.127271 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.083400 -2.929869 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.083400 -2.197402 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.083500 0.406413 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.083500 4.831789 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.083500 -2.761022 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.083500 -2.070767 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.083600 0.412718 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.083600 4.531538 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.083600 -2.589451 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.083600 -1.942088 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.083700 0.418615 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.083700 4.226815 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.083700 -2.415323 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.083700 -1.811492 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.083800 0.424099 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.083800 3.917920 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.083800 -2.238812 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.083800 -1.679109 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.083900 0.429166 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.083900 3.605161 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.083900 -2.060092 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.083900 -1.545069 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.084000 0.433806 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.084000 3.288845 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.084000 -1.879340 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.084000 -1.409505 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.084100 0.438022 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.084100 2.969282 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.084100 -1.696733 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.084100 -1.272550 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.084200 0.441800 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.084200 2.646790 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.084200 -1.512451 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.084200 -1.134339 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.084300 0.445146 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.084300 2.321685 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.084300 -1.326677 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.084300 -0.995008 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.084400 0.448052 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.084400 1.994288 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.084400 -1.139593 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.084400 -0.854695 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.084500 0.450511 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.084500 1.664923 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.084500 -0.951385 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.084500 -0.713538 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.084600 0.452532 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.084600 1.333914 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.084600 -0.762237 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.084600 -0.571678 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.084700 0.454105 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.084700 1.001589 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.084700 -0.572337 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.084700 -0.429252 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.084800 0.455229 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.084800 0.668275 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.084800 -0.381871 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.084800 -0.286403 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.084900 0.455904 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.084900 0.334301 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.084900 -0.191029 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.084900 -0.143272 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.085000 0.456129 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.085000 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.085000 0.000001 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.085000 0.000001 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.085100 0.455902 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.085100 -0.334303 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.085100 0.191031 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.085100 0.143273 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.085200 0.455229 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.085200 -0.668275 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.085200 0.381872 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.085200 0.286404 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.085300 0.454105 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.085300 -1.001590 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.085300 0.572337 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.085300 0.429253 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.085400 0.452532 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.085400 -1.333915 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.085400 0.762237 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.085400 0.571678 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.085500 0.450513 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.085500 -1.664923 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.085500 0.951385 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.085500 0.713539 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.085600 0.448048 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.085600 -1.994288 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.085600 1.139593 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.085600 0.854695 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.085700 0.445141 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.085700 -2.321684 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.085700 1.326677 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.085700 0.995007 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.085800 0.441799 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.085800 -2.646788 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.085800 1.512451 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.085800 1.134338 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.085900 0.438018 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.085900 -2.969280 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.085900 1.696732 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.085900 1.272549 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.086000 0.433804 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.086000 -3.288841 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.086000 1.879338 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.086000 1.409503 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.086100 0.429165 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.086100 -3.605156 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.086100 2.060089 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.086100 1.545067 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.086200 0.424097 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.086200 -3.917913 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.086200 2.238808 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.086200 1.679106 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.086300 0.418615 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.086300 -4.226804 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.086300 2.415317 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.086300 1.811487 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.086400 0.412718 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.086400 -4.531523 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.086400 2.589442 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.086400 1.942081 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.086500 0.406412 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.086500 -4.831772 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.086500 2.761013 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.086500 2.070759 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.086600 0.399706 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.086600 -5.127252 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.086600 2.929858 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.086600 2.197394 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.086700 0.392605 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.086700 -5.417672 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.086700 3.095813 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.086700 2.321859 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.086800 0.385122 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.086800 -5.702745 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.086800 3.258711 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.086800 2.444034 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.086900 0.377255 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.086900 -5.982190 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.086900 3.418394 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.086900 2.563796 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.087000 0.369015 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.087000 -6.255731 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.087000 3.574703 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.087000 2.681027 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.087100 0.360411 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.087100 -6.523097 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.087100 3.727484 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.087100 2.795613 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.087200 0.351453 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.087200 -6.784026 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.087200 3.876586 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.087200 2.907440 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.087300 0.342147 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.087300 -7.038260 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.087300 4.021863 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.087300 3.016397 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.087400 0.332503 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.087400 -7.285547 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.087400 4.163170 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.087400 3.122377 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.087500 0.322531 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.087500 -7.525644 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.087500 4.300368 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.087500 3.225276 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.087600 0.312240 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.087600 -7.758314 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.087600 4.433322 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.087600 3.324992 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.087700 0.301642 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.087700 -7.983327 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.087700 4.561901 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.087700 3.421426 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.087800 0.290747 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.087800 -8.200461 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.087800 4.685978 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.087800 3.514483 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.087900 0.279564 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.087900 -8.409503 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.087900 4.805430 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.087900 3.604073 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.088000 0.268100 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.088000 -8.610246 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.088000 4.920140 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.088000 3.690105 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.088100 0.256379 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.088100 -8.802492 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.088100 5.029995 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.088100 3.772496 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.088200 0.244403 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.088200 -8.986051 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.088200 5.134886 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.088200 3.851165 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.088300 0.232186 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.088300 -9.160742 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.088300 5.234710 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.088300 3.926032 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.088400 0.219740 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.088400 -9.326392 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.088400 5.329367 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.088400 3.997025 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.088500 0.207076 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.088500 -9.482838 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.088500 5.418765 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.088500 4.064074 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.088600 0.194208 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.088600 -9.629926 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.088600 5.502815 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.088600 4.127111 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.088700 0.181148 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.088700 -9.767509 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.088700 5.581434 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.088700 4.186075 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.088800 0.167910 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.088800 -9.895453 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.088800 5.654544 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.088800 4.240908 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.088900 0.154506 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.088900 -10.013631 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.088900 5.722075 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.088900 4.291556 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.089000 0.140949 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.089000 -10.121927 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.089000 5.783958 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.089000 4.337969 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.089100 0.127252 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.089100 -10.220233 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.089100 5.840133 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.089100 4.380100 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.089200 0.113430 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.089200 -10.308453 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.089200 5.890545 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.089200 4.417908 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.089300 0.099499 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.089300 -10.386501 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.089300 5.935143 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.089300 4.451358 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.089400 0.085467 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.089400 -10.454298 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.089400 5.973885 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.089400 4.480414 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.089500 0.071351 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.089500 -10.511779 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.089500 6.006731 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.089500 4.505048 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.089600 0.057164 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.089600 -10.558884 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.089600 6.033648 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.089600 4.525236 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.089700 0.042922 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.089700 -10.595570 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.089700 6.054612 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.089700 4.540959 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.089800 0.028637 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.089800 -10.621800 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.089800 6.069600 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.089800 4.552200 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.089900 0.014324 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.089900 -10.637547 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.089900 6.078598 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.089900 4.558949 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.090000 -0.000003 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.090000 -10.642796 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.090000 6.081598 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.090000 4.561198 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.090100 -0.014331 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.090100 -10.637542 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.090100 6.078595 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.090100 4.558946 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.090200 -0.028644 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.090200 -10.621790 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.090200 6.069594 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.090200 4.552196 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.090300 -0.042929 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.090300 -10.595555 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.090300 6.054603 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.090300 4.540952 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.090400 -0.057172 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.090400 -10.558864 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.090400 6.033637 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.090400 4.525228 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.090500 -0.071357 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.090500 -10.511753 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.090500 6.006716 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.090500 4.505037 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.090600 -0.085473 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.090600 -10.454268 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.090600 5.973868 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.090600 4.480401 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.090700 -0.099505 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.090700 -10.386466 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.090700 5.935124 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.090700 4.451343 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.090800 -0.113438 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.090800 -10.308414 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.090800 5.890522 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.090800 4.417892 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.090900 -0.127260 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.090900 -10.220188 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.090900 5.840107 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.090900 4.380080 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.091000 -0.140953 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.091000 -10.121877 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.091000 5.783930 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.091000 4.337947 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.091100 -0.154511 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.091100 -10.013577 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.091100 5.722044 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.091100 4.291533 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.091200 -0.167916 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.091200 -9.895394 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.091200 5.654511 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.091200 4.240883 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.091300 -0.181155 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.091300 -9.767446 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.091300 5.581398 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.091300 4.186048 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.091400 -0.194214 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.091400 -9.629858 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.091400 5.502776 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.091400 4.127082 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.091500 -0.207081 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.091500 -9.482766 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.091500 5.418724 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.091500 4.064043 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.091600 -0.219746 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.091600 -9.326316 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.091600 5.329323 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.091600 3.996993 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.091700 -0.232193 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.091700 -9.160662 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.091700 5.234664 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.091700 3.925998 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.091800 -0.244410 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.091800 -8.985966 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.091800 5.134838 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.091800 3.851128 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.091900 -0.256386 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.091900 -8.802403 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.091900 5.029944 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.091900 3.772458 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.092000 -0.268109 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.092000 -8.610152 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.092000 4.920087 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.092000 3.690065 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.092100 -0.279567 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.092100 -8.409405 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.092100 4.805374 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.092100 3.604031 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.092200 -0.290746 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.092200 -8.200359 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.092200 4.685919 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.092200 3.514440 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.092300 -0.301645 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.092300 -7.983221 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.092300 4.561840 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.092300 3.421380 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.092400 -0.312246 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.092400 -7.758204 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.092400 4.433259 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.092400 3.324944 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.092500 -0.322535 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.092500 -7.525531 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.092500 4.300303 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.092500 3.225227 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.092600 -0.332506 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.092600 -7.285431 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.092600 4.163103 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.092600 3.122327 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.092700 -0.342151 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.092700 -7.038140 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.092700 4.021794 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.092700 3.016346 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.092800 -0.351458 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.092800 -6.783904 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.092800 3.876516 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.092800 2.907387 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.092900 -0.360416 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.092900 -6.522972 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.092900 3.727412 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.092900 2.795559 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.093000 -0.369020 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.093000 -6.255602 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.093000 3.574630 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.093000 2.680972 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.093100 -0.377257 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.093100 -5.982059 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.093100 3.418319 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.093100 2.563740 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.093200 -0.385125 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.093200 -5.702612 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.093200 3.258635 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.093200 2.443976 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.093300 -0.392613 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.093300 -5.417536 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.093300 3.095735 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.093300 2.321801 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.093400 -0.399712 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.093400 -5.127114 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.093400 2.929779 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.093400 2.197335 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.093500 -0.406413 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.093500 -4.831632 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.093500 2.760932 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.093500 2.070699 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.093600 -0.412718 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.093600 -4.531381 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.093600 2.589361 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.093600 1.942020 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.093700 -0.418615 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.093700 -4.226658 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.093700 2.415233 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.093700 1.811425 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.093800 -0.424099 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.093800 -3.917763 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.093800 2.238722 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.093800 1.679041 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.093900 -0.429166 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.093900 -3.605004 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.093900 2.060002 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.093900 1.545002 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.094000 -0.433806 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.094000 -3.288687 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.094000 1.879250 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.094000 1.409437 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.094100 -0.438022 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.094100 -2.969125 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.094100 1.696643 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.094100 1.272482 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.094200 -0.441800 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.094200 -2.646632 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.094200 1.512361 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.094200 1.134271 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.094300 -0.445146 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.094300 -2.321527 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.094300 1.326587 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.094300 0.994940 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.094400 -0.448052 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.094400 -1.994131 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.094400 1.139503 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.094400 0.854627 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.094500 -0.450511 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.094500 -1.664766 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.094500 0.951295 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.094500 0.713471 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.094600 -0.452532 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.094600 -1.333757 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.094600 0.762147 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.094600 0.571610 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.094700 -0.454105 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.094700 -1.001432 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.094700 0.572247 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.094700 0.429185 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.094800 -0.455229 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.094800 -0.668117 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.094800 0.381781 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.094800 0.286336 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.094900 -0.455904 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.094900 -0.334143 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.094900 0.190939 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.094900 0.143204 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.095000 -0.456129 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.095000 0.000159 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.095000 -0.000091 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.095000 -0.000068 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.095100 -0.455902 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.095100 0.334461 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.095100 -0.191120 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.095100 -0.143340 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.095200 -0.455229 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.095200 0.668433 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.095200 -0.381962 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.095200 -0.286471 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.095300 -0.454105 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.095300 1.001747 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.095300 -0.572427 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.095300 -0.429320 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.095400 -0.452532 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.095400 1.334072 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.095400 -0.762327 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.095400 -0.571745 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.095500 -0.450513 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.095500 1.665081 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.095500 -0.951475 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.095500 -0.713606 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.095600 -0.448048 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.095600 1.994445 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.095600 -1.139683 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.095600 -0.854762 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.095700 -0.445141 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.095700 2.321841 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.095700 -1.326766 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.095700 -0.995075 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.095800 -0.441799 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.095800 2.646946 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.095800 -1.512540 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.095800 -1.134405 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.095900 -0.438018 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.095900 2.969438 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.095900 -1.696822 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.095900 -1.272616 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.096000 -0.433804 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.096000 3.288998 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.096000 -1.879428 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.096000 -1.409571 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.096100 -0.429165 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.096100 3.605314 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.096100 -2.060179 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.096100 -1.545134 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.096200 -0.424097 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.096200 3.918071 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.096200 -2.238898 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.096200 -1.679173 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.096300 -0.418615 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.096300 4.226961 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.096300 -2.415407 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.096300 -1.811555 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.096400 -0.412718 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.096400 4.531681 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.096400 -2.589532 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.096400 -1.942149 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.096500 -0.406412 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.096500 4.831929 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.096500 -2.761103 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.096500 -2.070827 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.096600 -0.399706 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.096600 5.127410 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.096600 -2.929948 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.096600 -2.197461 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.096700 -0.392605 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.096700 5.417829 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.096700 -3.095902 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.096700 -2.321927 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.096800 -0.385122 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.096800 5.702902 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.096800 -3.258801 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.096800 -2.444101 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.096900 -0.377255 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.096900 5.982347 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.096900 -3.418484 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.096900 -2.563863 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.097000 -0.369015 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.097000 6.255888 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.097000 -3.574793 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.097000 -2.681095 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.097100 -0.360411 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.097100 6.523254 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.097100 -3.727574 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.097100 -2.795680 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.097200 -0.351453 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.097200 6.784183 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.097200 -3.876676 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.097200 -2.907507 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.097300 -0.342147 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.097300 7.038417 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.097300 -4.021953 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.097300 -3.016465 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.097400 -0.332503 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.097400 7.285705 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.097400 -4.163260 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.097400 -3.122445 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.097500 -0.322531 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.097500 7.525802 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.097500 -4.300458 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.097500 -3.225344 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.097600 -0.312240 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.097600 7.758471 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.097600 -4.433412 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.097600 -3.325059 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.097700 -0.301642 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.097700 7.983484 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.097700 -4.561991 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.097700 -3.421493 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.097800 -0.290747 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.097800 8.200619 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.097800 -4.686068 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.097800 -3.514551 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.097900 -0.279564 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.097900 8.409660 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.097900 -4.805520 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.097900 -3.604140 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.098000 -0.268100 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.098000 8.610403 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.098000 -4.920230 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.098000 -3.690173 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.098100 -0.256379 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.098100 8.802649 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.098100 -5.030085 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.098100 -3.772564 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.098200 -0.244403 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.098200 8.986208 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.098200 -5.134976 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.098200 -3.851232 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.098300 -0.232186 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.098300 9.160899 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.098300 -5.234799 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.098300 -3.926100 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.098400 -0.219740 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.098400 9.326549 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.098400 -5.329457 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.098400 -3.997093 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.098500 -0.207076 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.098500 9.482996 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.098500 -5.418855 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.098500 -4.064141 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.098600 -0.194208 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.098600 9.630083 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.098600 -5.502905 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.098600 -4.127178 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.098700 -0.181148 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.098700 9.767666 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.098700 -5.581524 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.098700 -4.186143 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.098800 -0.167910 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.098800 9.895610 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.098800 -5.654634 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.098800 -4.240976 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.098900 -0.154506 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.098900 10.013788 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.098900 -5.722165 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.098900 -4.291624 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.099000 -0.140949 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.099000 10.122084 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.099000 -5.784048 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.099000 -4.338036 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.099100 -0.127252 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.099100 10.220390 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.099100 -5.840223 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.099100 -4.380167 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.099200 -0.113430 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.099200 10.308610 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.099200 -5.890635 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.099200 -4.417976 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.099300 -0.099499 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.099300 10.386658 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.099300 -5.935233 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.099300 -4.451425 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.099400 -0.085467 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.099400 10.454456 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.099400 -5.973975 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.099400 -4.480481 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.099500 -0.071351 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.099500 10.511936 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.099500 -6.006821 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.099500 -4.505115 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.099600 -0.057164 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.099600 10.559042 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.099600 -6.033738 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.099600 -4.525304 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.099700 -0.042922 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.099700 10.595728 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.099700 -6.054702 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.099700 -4.541026 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.099800 -0.028637 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.099800 10.621957 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.099800 -6.069690 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.099800 -4.552267 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.099900 -0.014324 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.099900 10.637704 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.099900 -6.078688 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.099900 -4.559016 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.100000 0.000003 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.100000 10.642953 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.100000 -6.081688 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.100000 -4.561266 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.100100 0.014331 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.100100 10.637699 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.100100 -6.078685 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.100100 -4.559014 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.100200 0.028644 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.100200 10.621947 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.100200 -6.069684 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.100200 -4.552263 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.100300 0.042929 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.100300 10.595713 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.100300 -6.054693 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.100300 -4.541020 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.100400 0.057172 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.100400 10.559022 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.100400 -6.033727 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.100400 -4.525295 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.100500 0.071357 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.100500 10.511910 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.100500 -6.006806 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.100500 -4.505104 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.100600 0.085473 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.100600 10.454426 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.100600 -5.973958 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.100600 -4.480468 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.100700 0.099505 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.100700 10.386624 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.100700 -5.935213 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.100700 -4.451410 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.100800 0.113438 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.100800 10.308571 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.100800 -5.890612 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.100800 -4.417959 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.100900 0.127260 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.100900 10.220345 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.100900 -5.840197 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.100900 -4.380148 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.101000 0.140953 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.101000 10.122034 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.101000 -5.784020 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.101000 -4.338015 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.101100 0.154511 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.101100 10.013734 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.101100 -5.722134 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.101100 -4.291600 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.101200 0.167916 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.101200 9.895552 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.101200 -5.654601 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.101200 -4.240951 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.101300 0.181155 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.101300 9.767603 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.101300 -5.581487 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.101300 -4.186116 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.101400 0.194214 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.101400 9.630015 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.101400 -5.502866 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.101400 -4.127149 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.101500 0.207081 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.101500 9.482924 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.101500 -5.418814 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.101500 -4.064110 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.101600 0.219746 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.101600 9.326473 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.101600 -5.329413 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.101600 -3.997060 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.101700 0.232193 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.101700 9.160819 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.101700 -5.234754 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.101700 -3.926065 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.101800 0.244410 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.101800 8.986124 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.101800 -5.134928 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.101800 -3.851196 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.101900 0.256386 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.101900 8.802560 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.101900 -5.030034 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.101900 -3.772526 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.102000 0.268109 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.102000 8.610309 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.102000 -4.920177 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.102000 -3.690133 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.102100 0.279567 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.102100 8.409562 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.102100 -4.805464 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.102100 -3.604098 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.102200 0.290746 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.102200 8.200516 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.102200 -4.686009 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.102200 -3.514507 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.102300 0.301645 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.102300 7.983378 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.102300 -4.561930 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.102300 -3.421448 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.102400 0.312247 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.102400 7.758361 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.102400 -4.433349 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.102400 -3.325012 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.102500 0.322535 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.102500 7.525688 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.102500 -4.300393 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.102500 -3.225295 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.102600 0.332506 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.102600 7.285588 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.102600 -4.163193 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.102600 -3.122395 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.102700 0.342151 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.102700 7.038298 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.102700 -4.021884 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.102700 -3.016413 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.102800 0.351458 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.102800 6.784061 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.102800 -3.876606 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.102800 -2.907455 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.102900 0.360416 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.102900 6.523129 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.102900 -3.727502 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.102900 -2.795627 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.103000 0.369020 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.103000 6.255759 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.103000 -3.574720 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.103000 -2.681040 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.103100 0.377257 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.103100 5.982216 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.103100 -3.418409 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.103100 -2.563807 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.103200 0.385125 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.103200 5.702769 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.103200 -3.258725 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.103200 -2.444044 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.103300 0.392613 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.103300 5.417694 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.103300 -3.095825 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.103300 -2.321869 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.103400 0.399712 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.103400 5.127271 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.103400 -2.929869 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.103400 -2.197402 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.103500 0.406413 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.103500 4.831789 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.103500 -2.761022 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.103500 -2.070767 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.103600 0.412718 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.103600 4.531538 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.103600 -2.589451 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.103600 -1.942088 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.103700 0.418615 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.103700 4.226815 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.103700 -2.415323 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.103700 -1.811492 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.103800 0.424099 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.103800 3.917920 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.103800 -2.238812 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.103800 -1.679109 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.103900 0.429166 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.103900 3.605161 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.103900 -2.060092 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.103900 -1.545069 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.104000 0.433806 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.104000 3.288845 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.104000 -1.879340 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.104000 -1.409505 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.104100 0.438022 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.104100 2.969282 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.104100 -1.696733 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.104100 -1.272550 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.104200 0.441800 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.104200 2.646790 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.104200 -1.512451 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.104200 -1.134339 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.104300 0.445146 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.104300 2.321685 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.104300 -1.326677 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.104300 -0.995008 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.104400 0.448052 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.104400 1.994288 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.104400 -1.139593 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.104400 -0.854695 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.104500 0.450511 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.104500 1.664923 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.104500 -0.951385 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.104500 -0.713538 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.104600 0.452532 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.104600 1.333914 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.104600 -0.762237 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.104600 -0.571678 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.104700 0.454105 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.104700 1.001589 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.104700 -0.572337 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.104700 -0.429252 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.104800 0.455229 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.104800 0.668275 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.104800 -0.381871 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.104800 -0.286403 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.104900 0.455904 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.104900 0.334301 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.104900 -0.191029 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.104900 -0.143272 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.105000 0.456129 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.105000 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.105000 0.000001 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.105000 0.000001 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.105100 0.455902 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.105100 -0.334303 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.105100 0.191031 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.105100 0.143273 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.105200 0.455229 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.105200 -0.668275 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.105200 0.381872 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.105200 0.286404 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.105300 0.454105 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.105300 -1.001590 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.105300 0.572337 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.105300 0.429253 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.105400 0.452532 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.105400 -1.333915 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.105400 0.762237 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.105400 0.571678 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.105500 0.450513 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.105500 -1.664923 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.105500 0.951385 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.105500 0.713539 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.105600 0.448048 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.105600 -1.994288 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.105600 1.139593 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.105600 0.854695 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.105700 0.445141 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.105700 -2.321684 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.105700 1.326677 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.105700 0.995007 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.105800 0.441799 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.105800 -2.646788 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.105800 1.512451 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.105800 1.134338 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.105900 0.438018 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.105900 -2.969280 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.105900 1.696732 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.105900 1.272549 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.106000 0.433804 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.106000 -3.288841 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.106000 1.879338 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.106000 1.409503 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.106100 0.429165 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.106100 -3.605156 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.106100 2.060089 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.106100 1.545067 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.106200 0.424097 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.106200 -3.917913 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.106200 2.238808 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.106200 1.679106 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.106300 0.418615 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.106300 -4.226804 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.106300 2.415317 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.106300 1.811487 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.106400 0.412718 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.106400 -4.531523 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.106400 2.589442 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.106400 1.942081 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.106500 0.406412 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.106500 -4.831772 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.106500 2.761013 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.106500 2.070759 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.106600 0.399706 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.106600 -5.127252 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.106600 2.929858 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.106600 2.197394 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.106700 0.392605 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.106700 -5.417672 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.106700 3.095813 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.106700 2.321859 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.106800 0.385122 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.106800 -5.702745 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.106800 3.258711 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.106800 2.444034 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.106900 0.377255 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.106900 -5.982190 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.106900 3.418394 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.106900 2.563796 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.107000 0.369015 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.107000 -6.255731 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.107000 3.574703 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.107000 2.681027 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.107100 0.360411 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.107100 -6.523097 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.107100 3.727484 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.107100 2.795613 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.107200 0.351453 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.107200 -6.784026 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.107200 3.876586 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.107200 2.907440 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.107300 0.342147 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.107300 -7.038260 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.107300 4.021863 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.107300 3.016397 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.107400 0.332503 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.107400 -7.285547 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.107400 4.163170 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.107400 3.122377 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.107500 0.322531 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.107500 -7.525644 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.107500 4.300368 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.107500 3.225276 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.107600 0.312240 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.107600 -7.758314 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.107600 4.433322 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.107600 3.324992 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.107700 0.301642 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.107700 -7.983327 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.107700 4.561901 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.107700 3.421426 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.107800 0.290747 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.107800 -8.200461 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.107800 4.685978 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.107800 3.514483 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.107900 0.279564 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.107900 -8.409503 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.107900 4.805430 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.107900 3.604073 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.108000 0.268100 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.108000 -8.610246 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.108000 4.920140 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.108000 3.690105 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.108100 0.256379 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.108100 -8.802492 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.108100 5.029995 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.108100 3.772496 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.108200 0.244403 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.108200 -8.986051 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.108200 5.134886 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.108200 3.851165 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.108300 0.232186 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.108300 -9.160742 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.108300 5.234710 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.108300 3.926032 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.108400 0.219740 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.108400 -9.326392 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.108400 5.329367 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.108400 3.997025 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.108500 0.207076 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.108500 -9.482838 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.108500 5.418765 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.108500 4.064074 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.108600 0.194208 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.108600 -9.629926 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.108600 5.502815 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.108600 4.127111 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.108700 0.181148 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.108700 -9.767509 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.108700 5.581434 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.108700 4.186075 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.108800 0.167910 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.108800 -9.895453 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.108800 5.654544 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.108800 4.240908 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.108900 0.154506 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.108900 -10.013631 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.108900 5.722075 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.108900 4.291556 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.109000 0.140949 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.109000 -10.121927 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.109000 5.783958 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.109000 4.337969 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.109100 0.127252 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.109100 -10.220233 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.109100 5.840133 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.109100 4.380100 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.109200 0.113430 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.109200 -10.308453 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.109200 5.890545 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.109200 4.417908 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.109300 0.099499 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.109300 -10.386501 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.109300 5.935143 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.109300 4.451358 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.109400 0.085467 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.109400 -10.454298 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.109400 5.973885 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.109400 4.480414 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.109500 0.071351 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.109500 -10.511779 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.109500 6.006731 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.109500 4.505048 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.109600 0.057164 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.109600 -10.558884 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.109600 6.033648 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.109600 4.525236 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.109700 0.042922 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.109700 -10.595570 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.109700 6.054612 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.109700 4.540959 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.109800 0.028637 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.109800 -10.621800 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.109800 6.069600 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.109800 4.552200 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.109900 0.014324 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.109900 -10.637547 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.109900 6.078598 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.109900 4.558949 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.110000 -0.000003 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.110000 -10.642796 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.110000 6.081598 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.110000 4.561198 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.110100 -0.014331 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.110100 -10.637542 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.110100 6.078595 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.110100 4.558947 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.110200 -0.028644 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.110200 -10.621790 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.110200 6.069594 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.110200 4.552196 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.110300 -0.042929 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.110300 -10.595555 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.110300 6.054603 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.110300 4.540952 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.110400 -0.057172 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.110400 -10.558864 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.110400 6.033637 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.110400 4.525228 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.110500 -0.071357 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.110500 -10.511753 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.110500 6.006716 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.110500 4.505037 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.110600 -0.085473 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.110600 -10.454268 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.110600 5.973868 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.110600 4.480401 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.110700 -0.099505 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.110700 -10.386466 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.110700 5.935124 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.110700 4.451343 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.110800 -0.113438 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.110800 -10.308414 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.110800 5.890522 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.110800 4.417892 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.110900 -0.127260 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.110900 -10.220188 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.110900 5.840107 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.110900 4.380080 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.111000 -0.140953 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.111000 -10.121877 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.111000 5.783930 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.111000 4.337947 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.111100 -0.154511 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.111100 -10.013577 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.111100 5.722044 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.111100 4.291533 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.111200 -0.167916 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.111200 -9.895394 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.111200 5.654511 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.111200 4.240883 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.111300 -0.181155 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.111300 -9.767446 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.111300 5.581398 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.111300 4.186048 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.111400 -0.194214 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.111400 -9.629858 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.111400 5.502776 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.111400 4.127082 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.111500 -0.207081 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.111500 -9.482766 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.111500 5.418724 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.111500 4.064043 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.111600 -0.219746 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.111600 -9.326316 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.111600 5.329323 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.111600 3.996993 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.111700 -0.232193 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.111700 -9.160662 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.111700 5.234664 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.111700 3.925998 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.111800 -0.244410 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.111800 -8.985966 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.111800 5.134838 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.111800 3.851128 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.111900 -0.256386 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.111900 -8.802403 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.111900 5.029944 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.111900 3.772458 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.112000 -0.268109 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.112000 -8.610152 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.112000 4.920087 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.112000 3.690065 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.112100 -0.279567 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.112100 -8.409405 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.112100 4.805374 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.112100 3.604031 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.112200 -0.290746 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.112200 -8.200359 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.112200 4.685919 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.112200 3.514440 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.112300 -0.301645 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.112300 -7.983221 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.112300 4.561840 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.112300 3.421380 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.112400 -0.312246 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.112400 -7.758204 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.112400 4.433259 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.112400 3.324944 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.112500 -0.322535 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.112500 -7.525531 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.112500 4.300303 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.112500 3.225227 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.112600 -0.332506 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.112600 -7.285431 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.112600 4.163103 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.112600 3.122327 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.112700 -0.342151 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.112700 -7.038140 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.112700 4.021795 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.112700 3.016346 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.112800 -0.351458 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.112800 -6.783904 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.112800 3.876516 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.112800 2.907387 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.112900 -0.360416 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.112900 -6.522972 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.112900 3.727412 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.112900 2.795559 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.113000 -0.369020 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.113000 -6.255602 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.113000 3.574630 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.113000 2.680972 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.113100 -0.377257 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.113100 -5.982059 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.113100 3.418319 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.113100 2.563740 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.113200 -0.385125 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.113200 -5.702612 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.113200 3.258635 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.113200 2.443976 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.113300 -0.392613 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.113300 -5.417536 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.113300 3.095735 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.113300 2.321801 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.113400 -0.399712 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.113400 -5.127114 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.113400 2.929779 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.113400 2.197335 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.113500 -0.406413 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.113500 -4.831632 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.113500 2.760932 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.113500 2.070699 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.113600 -0.412718 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.113600 -4.531381 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.113600 2.589361 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.113600 1.942020 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.113700 -0.418615 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.113700 -4.226658 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.113700 2.415233 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.113700 1.811425 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.113800 -0.424099 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.113800 -3.917763 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.113800 2.238722 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.113800 1.679041 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.113900 -0.429166 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.113900 -3.605004 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.113900 2.060002 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.113900 1.545002 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.114000 -0.433806 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.114000 -3.288687 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.114000 1.879250 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.114000 1.409437 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.114100 -0.438022 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.114100 -2.969125 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.114100 1.696643 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.114100 1.272482 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.114200 -0.441800 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.114200 -2.646632 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.114200 1.512361 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.114200 1.134271 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.114300 -0.445146 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.114300 -2.321527 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.114300 1.326587 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.114300 0.994940 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.114400 -0.448052 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.114400 -1.994131 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.114400 1.139503 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.114400 0.854627 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.114500 -0.450511 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.114500 -1.664766 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.114500 0.951295 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.114500 0.713471 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.114600 -0.452532 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.114600 -1.333757 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.114600 0.762147 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.114600 0.571610 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.114700 -0.454105 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.114700 -1.001432 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.114700 0.572247 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.114700 0.429185 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.114800 -0.455229 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.114800 -0.668117 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.114800 0.381781 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.114800 0.286336 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.114900 -0.455904 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.114900 -0.334143 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.114900 0.190939 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.114900 0.143204 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.115000 -0.456129 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.115000 0.000159 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.115000 -0.000091 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.115000 -0.000068 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.115100 -0.455902 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.115100 0.334461 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.115100 -0.191120 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.115100 -0.143340 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.115200 -0.455229 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.115200 0.668433 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.115200 -0.381962 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.115200 -0.286471 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.115300 -0.454105 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.115300 1.001747 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.115300 -0.572427 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.115300 -0.429320 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.115400 -0.452532 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.115400 1.334072 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.115400 -0.762327 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.115400 -0.571745 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.115500 -0.450513 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.115500 1.665081 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.115500 -0.951475 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.115500 -0.713606 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.115600 -0.448048 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.115600 1.994445 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.115600 -1.139683 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.115600 -0.854762 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.115700 -0.445141 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.115700 2.321841 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.115700 -1.326766 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.115700 -0.995075 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.115800 -0.441799 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.115800 2.646946 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.115800 -1.512540 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.115800 -1.134405 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.115900 -0.438018 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.115900 2.969438 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.115900 -1.696822 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.115900 -1.272616 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.116000 -0.433804 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.116000 3.288998 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.116000 -1.879428 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.116000 -1.409571 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.116100 -0.429165 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.116100 3.605314 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.116100 -2.060179 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.116100 -1.545134 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.116200 -0.424097 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.116200 3.918071 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.116200 -2.238898 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.116200 -1.679173 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.116300 -0.418615 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.116300 4.226961 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.116300 -2.415407 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.116300 -1.811555 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.116400 -0.412718 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.116400 4.531681 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.116400 -2.589532 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.116400 -1.942149 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.116500 -0.406412 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.116500 4.831929 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.116500 -2.761103 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.116500 -2.070827 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.116600 -0.399706 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.116600 5.127410 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.116600 -2.929948 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.116600 -2.197461 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.116700 -0.392605 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.116700 5.417829 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.116700 -3.095902 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.116700 -2.321927 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.116800 -0.385122 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.116800 5.702902 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.116800 -3.258801 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.116800 -2.444101 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.116900 -0.377255 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.116900 5.982347 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.116900 -3.418484 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.116900 -2.563863 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.117000 -0.369015 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.117000 6.255888 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.117000 -3.574793 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.117000 -2.681095 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.117100 -0.360411 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.117100 6.523254 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.117100 -3.727574 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.117100 -2.795680 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.117200 -0.351453 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.117200 6.784183 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.117200 -3.876676 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.117200 -2.907507 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.117300 -0.342147 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.117300 7.038417 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.117300 -4.021953 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.117300 -3.016465 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.117400 -0.332503 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.117400 7.285705 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.117400 -4.163260 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.117400 -3.122445 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.117500 -0.322531 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.117500 7.525802 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.117500 -4.300458 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.117500 -3.225344 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.117600 -0.312240 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.117600 7.758471 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.117600 -4.433412 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.117600 -3.325059 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.117700 -0.301642 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.117700 7.983484 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.117700 -4.561991 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.117700 -3.421493 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.117800 -0.290747 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.117800 8.200619 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.117800 -4.686068 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.117800 -3.514551 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.117900 -0.279564 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.117900 8.409660 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.117900 -4.805520 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.117900 -3.604140 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.118000 -0.268100 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.118000 8.610403 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.118000 -4.920230 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.118000 -3.690173 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.118100 -0.256379 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.118100 8.802649 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.118100 -5.030085 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.118100 -3.772564 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.118200 -0.244403 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.118200 8.986208 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.118200 -5.134976 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.118200 -3.851232 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.118300 -0.232186 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.118300 9.160899 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.118300 -5.234799 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.118300 -3.926100 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.118400 -0.219740 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.118400 9.326549 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.118400 -5.329457 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.118400 -3.997093 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.118500 -0.207076 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.118500 9.482996 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.118500 -5.418855 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.118500 -4.064141 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.118600 -0.194208 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.118600 9.630083 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.118600 -5.502905 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.118600 -4.127178 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.118700 -0.181148 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.118700 9.767666 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.118700 -5.581524 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.118700 -4.186143 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.118800 -0.167910 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.118800 9.895610 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.118800 -5.654634 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.118800 -4.240976 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.118900 -0.154506 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.118900 10.013788 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.118900 -5.722165 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.118900 -4.291624 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.119000 -0.140949 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.119000 10.122084 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.119000 -5.784048 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.119000 -4.338036 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.119100 -0.127252 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.119100 10.220390 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.119100 -5.840223 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.119100 -4.380167 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.119200 -0.113430 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.119200 10.308610 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.119200 -5.890635 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.119200 -4.417976 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.119300 -0.099499 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.119300 10.386658 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.119300 -5.935233 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.119300 -4.451425 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.119400 -0.085467 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.119400 10.454456 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.119400 -5.973975 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.119400 -4.480481 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.119500 -0.071351 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.119500 10.511936 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.119500 -6.006821 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.119500 -4.505115 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.119600 -0.057164 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.119600 10.559042 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.119600 -6.033738 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.119600 -4.525304 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.119700 -0.042922 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.119700 10.595728 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.119700 -6.054702 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.119700 -4.541026 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.119800 -0.028637 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.119800 10.621957 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.119800 -6.069690 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.119800 -4.552267 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.119900 -0.014324 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.119900 10.637704 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.119900 -6.078688 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.119900 -4.559016 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.120000 0.000003 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.120000 10.642953 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.120000 -6.081688 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.120000 -4.561266 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.120100 0.014331 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.120100 10.637699 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.120100 -6.078685 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.120100 -4.559014 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.120200 0.028644 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.120200 10.621947 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.120200 -6.069684 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.120200 -4.552263 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.120300 0.042929 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.120300 10.595713 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.120300 -6.054693 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.120300 -4.541020 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.120400 0.057172 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.120400 10.559022 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.120400 -6.033727 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.120400 -4.525295 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.120500 0.071357 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.120500 10.511910 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.120500 -6.006806 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.120500 -4.505104 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.120600 0.085473 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.120600 10.454426 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.120600 -5.973958 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.120600 -4.480468 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.120700 0.099505 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.120700 10.386624 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.120700 -5.935213 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.120700 -4.451410 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.120800 0.113438 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.120800 10.308571 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.120800 -5.890612 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.120800 -4.417959 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.120900 0.127260 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.120900 10.220345 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.120900 -5.840197 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.120900 -4.380148 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.121000 0.140953 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.121000 10.122034 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.121000 -5.784019 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.121000 -4.338015 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.121100 0.154511 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.121100 10.013734 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.121100 -5.722134 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.121100 -4.291600 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.121200 0.167916 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.121200 9.895552 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.121200 -5.654601 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.121200 -4.240951 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.121300 0.181155 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.121300 9.767603 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.121300 -5.581487 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.121300 -4.186116 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.121400 0.194214 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.121400 9.630015 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.121400 -5.502866 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.121400 -4.127149 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.121500 0.207081 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.121500 9.482924 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.121500 -5.418814 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.121500 -4.064110 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.121600 0.219746 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.121600 9.326473 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.121600 -5.329413 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.121600 -3.997060 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.121700 0.232193 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.121700 9.160819 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.121700 -5.234754 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.121700 -3.926065 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.121800 0.244410 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.121800 8.986124 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.121800 -5.134928 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.121800 -3.851196 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.121900 0.256386 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.121900 8.802560 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.121900 -5.030034 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.121900 -3.772526 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.122000 0.268109 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.122000 8.610309 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.122000 -4.920177 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.122000 -3.690133 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.122100 0.279567 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.122100 8.409562 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.122100 -4.805464 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.122100 -3.604098 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.122200 0.290746 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.122200 8.200516 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.122200 -4.686009 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.122200 -3.514507 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.122300 0.301645 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.122300 7.983378 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.122300 -4.561930 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.122300 -3.421448 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.122400 0.312247 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.122400 7.758361 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.122400 -4.433349 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.122400 -3.325012 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.122500 0.322535 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.122500 7.525688 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.122500 -4.300393 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.122500 -3.225295 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.122600 0.332506 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.122600 7.285588 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.122600 -4.163193 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.122600 -3.122395 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.122700 0.342151 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.122700 7.038298 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.122700 -4.021884 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.122700 -3.016413 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.122800 0.351458 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.122800 6.784061 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.122800 -3.876606 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.122800 -2.907455 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.122900 0.360416 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.122900 6.523129 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.122900 -3.727502 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.122900 -2.795627 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.123000 0.369020 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.123000 6.255759 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.123000 -3.574720 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.123000 -2.681040 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.123100 0.377257 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.123100 5.982216 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.123100 -3.418409 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.123100 -2.563807 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.123200 0.385125 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.123200 5.702769 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.123200 -3.258725 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.123200 -2.444044 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.123300 0.392613 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.123300 5.417694 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.123300 -3.095825 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.123300 -2.321869 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.123400 0.399712 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.123400 5.127271 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.123400 -2.929869 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.123400 -2.197402 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.123500 0.406413 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.123500 4.831789 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.123500 -2.761022 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.123500 -2.070767 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.123600 0.412718 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.123600 4.531538 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.123600 -2.589451 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.123600 -1.942088 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.123700 0.418615 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.123700 4.226815 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.123700 -2.415323 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.123700 -1.811492 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.123800 0.424099 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.123800 3.917920 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.123800 -2.238812 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.123800 -1.679109 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.123900 0.429166 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.123900 3.605161 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.123900 -2.060092 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.123900 -1.545069 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.124000 0.433806 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.124000 3.288845 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.124000 -1.879340 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.124000 -1.409505 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.124100 0.438022 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.124100 2.969282 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.124100 -1.696733 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.124100 -1.272550 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.124200 0.441800 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.124200 2.646790 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.124200 -1.512451 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.124200 -1.134339 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.124300 0.445146 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.124300 2.321685 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.124300 -1.326677 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.124300 -0.995008 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.124400 0.448052 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.124400 1.994288 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.124400 -1.139593 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.124400 -0.854695 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.124500 0.450511 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.124500 1.664923 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.124500 -0.951385 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.124500 -0.713538 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.124600 0.452532 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.124600 1.333914 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.124600 -0.762237 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.124600 -0.571678 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.124700 0.454105 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.124700 1.001589 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.124700 -0.572337 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.124700 -0.429252 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.124800 0.455229 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.124800 0.668275 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.124800 -0.381871 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.124800 -0.286403 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.124900 0.455904 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.124900 0.334301 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.124900 -0.191029 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.124900 -0.143272 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.125000 0.456129 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.125000 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.125000 0.000001 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.125000 0.000001 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.125100 0.455902 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.125100 -0.334303 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.125100 0.191031 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.125100 0.143273 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.125200 0.455229 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.125200 -0.668275 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.125200 0.381872 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.125200 0.286404 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.125300 0.454105 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.125300 -1.001590 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.125300 0.572337 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.125300 0.429253 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.125400 0.452532 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.125400 -1.333915 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.125400 0.762237 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.125400 0.571678 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.125500 0.450513 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.125500 -1.664923 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.125500 0.951385 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.125500 0.713539 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.125600 0.448048 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.125600 -1.994288 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.125600 1.139593 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.125600 0.854695 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.125700 0.445141 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.125700 -2.321684 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.125700 1.326677 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.125700 0.995007 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.125800 0.441799 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.125800 -2.646788 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.125800 1.512451 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.125800 1.134338 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.125900 0.438018 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.125900 -2.969280 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.125900 1.696732 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.125900 1.272549 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.126000 0.433804 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.126000 -3.288841 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.126000 1.879338 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.126000 1.409503 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.126100 0.429165 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.126100 -3.605156 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.126100 2.060089 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.126100 1.545067 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.126200 0.424097 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.126200 -3.917913 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.126200 2.238808 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.126200 1.679106 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.126300 0.418615 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.126300 -4.226804 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.126300 2.415317 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.126300 1.811487 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.126400 0.412718 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.126400 -4.531523 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.126400 2.589442 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.126400 1.942081 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.126500 0.406412 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.126500 -4.831772 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.126500 2.761013 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.126500 2.070759 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.126600 0.399706 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.126600 -5.127252 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.126600 2.929858 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.126600 2.197394 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.126700 0.392605 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.126700 -5.417672 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.126700 3.095813 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.126700 2.321859 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.126800 0.385122 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.126800 -5.702745 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.126800 3.258711 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.126800 2.444034 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.126900 0.377255 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.126900 -5.982190 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.126900 3.418394 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.126900 2.563796 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.127000 0.369015 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.127000 -6.255731 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.127000 3.574703 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.127000 2.681027 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.127100 0.360411 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.127100 -6.523097 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.127100 3.727484 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.127100 2.795613 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.127200 0.351453 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.127200 -6.784026 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.127200 3.876586 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.127200 2.907440 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.127300 0.342147 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.127300 -7.038260 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.127300 4.021863 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.127300 3.016397 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.127400 0.332503 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.127400 -7.285547 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.127400 4.163170 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.127400 3.122377 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.127500 0.322531 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.127500 -7.525644 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.127500 4.300368 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.127500 3.225276 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.127600 0.312240 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.127600 -7.758314 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.127600 4.433322 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.127600 3.324992 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.127700 0.301642 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.127700 -7.983327 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.127700 4.561901 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.127700 3.421426 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.127800 0.290747 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.127800 -8.200461 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.127800 4.685978 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.127800 3.514483 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.127900 0.279564 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.127900 -8.409503 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.127900 4.805430 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.127900 3.604073 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.128000 0.268100 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.128000 -8.610246 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.128000 4.920140 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.128000 3.690105 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.128100 0.256379 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.128100 -8.802492 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.128100 5.029995 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.128100 3.772496 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.128200 0.244403 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.128200 -8.986051 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.128200 5.134886 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.128200 3.851165 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.128300 0.232186 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.128300 -9.160742 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.128300 5.234710 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.128300 3.926032 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.128400 0.219740 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.128400 -9.326392 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.128400 5.329367 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.128400 3.997025 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.128500 0.207076 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.128500 -9.482838 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.128500 5.418765 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.128500 4.064074 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.128600 0.194208 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.128600 -9.629926 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.128600 5.502815 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.128600 4.127111 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.128700 0.181148 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.128700 -9.767509 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.128700 5.581434 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.128700 4.186075 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.128800 0.167910 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.128800 -9.895453 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.128800 5.654544 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.128800 4.240908 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.128900 0.154506 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.128900 -10.013631 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.128900 5.722075 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.128900 4.291556 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.129000 0.140949 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.129000 -10.121927 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.129000 5.783958 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.129000 4.337969 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.129100 0.127252 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.129100 -10.220233 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.129100 5.840133 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.129100 4.380100 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.129200 0.113430 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.129200 -10.308453 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.129200 5.890545 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.129200 4.417908 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.129300 0.099499 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.129300 -10.386501 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.129300 5.935143 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.129300 4.451358 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.129400 0.085467 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.129400 -10.454298 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.129400 5.973885 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.129400 4.480414 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.129500 0.071351 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.129500 -10.511779 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.129500 6.006731 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.129500 4.505048 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.129600 0.057164 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.129600 -10.558884 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.129600 6.033648 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.129600 4.525236 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.129700 0.042922 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.129700 -10.595570 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.129700 6.054612 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.129700 4.540959 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.129800 0.028637 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.129800 -10.621800 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.129800 6.069600 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.129800 4.552200 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.129900 0.014324 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.129900 -10.637547 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.129900 6.078598 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.129900 4.558949 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.130000 -0.000003 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.130000 -10.642796 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.130000 6.081598 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.130000 4.561198 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.130100 -0.014331 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.130100 -10.637542 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.130100 6.078595 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.130100 4.558947 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.130200 -0.028644 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.130200 -10.621790 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.130200 6.069594 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.130200 4.552196 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.130300 -0.042929 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.130300 -10.595555 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.130300 6.054603 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.130300 4.540952 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.130400 -0.057172 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.130400 -10.558864 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.130400 6.033637 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.130400 4.525228 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.130500 -0.071357 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.130500 -10.511753 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.130500 6.006716 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.130500 4.505037 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.130600 -0.085473 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.130600 -10.454268 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.130600 5.973868 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.130600 4.480401 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.130700 -0.099505 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.130700 -10.386466 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.130700 5.935124 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.130700 4.451343 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.130800 -0.113438 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.130800 -10.308414 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.130800 5.890522 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.130800 4.417892 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.130900 -0.127260 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.130900 -10.220188 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.130900 5.840107 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.130900 4.380080 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.131000 -0.140953 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.131000 -10.121877 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.131000 5.783930 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.131000 4.337947 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.131100 -0.154511 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.131100 -10.013577 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.131100 5.722044 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.131100 4.291533 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.131200 -0.167916 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.131200 -9.895394 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.131200 5.654511 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.131200 4.240883 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.131300 -0.181155 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.131300 -9.767446 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.131300 5.581398 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.131300 4.186048 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.131400 -0.194214 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.131400 -9.629858 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.131400 5.502776 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.131400 4.127082 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.131500 -0.207081 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.131500 -9.482766 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.131500 5.418724 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.131500 4.064043 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.131600 -0.219746 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.131600 -9.326316 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.131600 5.329324 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.131600 3.996993 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.131700 -0.232193 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.131700 -9.160662 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.131700 5.234664 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.131700 3.925998 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.131800 -0.244410 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.131800 -8.985966 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.131800 5.134838 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.131800 3.851128 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.131900 -0.256386 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.131900 -8.802403 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.131900 5.029944 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.131900 3.772458 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.132000 -0.268109 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.132000 -8.610152 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.132000 4.920087 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.132000 3.690065 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.132100 -0.279567 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.132100 -8.409405 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.132100 4.805374 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.132100 3.604031 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.132200 -0.290746 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.132200 -8.200359 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.132200 4.685919 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.132200 3.514440 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.132300 -0.301645 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.132300 -7.983221 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.132300 4.561840 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.132300 3.421380 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.132400 -0.312246 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.132400 -7.758204 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.132400 4.433259 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.132400 3.324944 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.132500 -0.322535 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.132500 -7.525531 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.132500 4.300303 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.132500 3.225227 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.132600 -0.332506 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.132600 -7.285431 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.132600 4.163103 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.132600 3.122327 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.132700 -0.342151 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.132700 -7.038140 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.132700 4.021795 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.132700 3.016346 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.132800 -0.351458 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.132800 -6.783904 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.132800 3.876516 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.132800 2.907387 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.132900 -0.360416 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.132900 -6.522972 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.132900 3.727412 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.132900 2.795559 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.133000 -0.369020 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.133000 -6.255602 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.133000 3.574630 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.133000 2.680972 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.133100 -0.377257 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.133100 -5.982059 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.133100 3.418319 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.133100 2.563740 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.133200 -0.385125 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.133200 -5.702612 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.133200 3.258635 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.133200 2.443976 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.133300 -0.392613 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.133300 -5.417536 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.133300 3.095735 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.133300 2.321801 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.133400 -0.399712 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.133400 -5.127114 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.133400 2.929779 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.133400 2.197335 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.133500 -0.406413 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.133500 -4.831632 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.133500 2.760932 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.133500 2.070699 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.133600 -0.412718 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.133600 -4.531381 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.133600 2.589361 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.133600 1.942020 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.133700 -0.418615 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.133700 -4.226658 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.133700 2.415233 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.133700 1.811425 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.133800 -0.424099 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.133800 -3.917763 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.133800 2.238722 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.133800 1.679041 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.133900 -0.429166 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.133900 -3.605004 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.133900 2.060002 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.133900 1.545002 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.134000 -0.433806 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.134000 -3.288687 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.134000 1.879250 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.134000 1.409437 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.134100 -0.438022 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.134100 -2.969125 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.134100 1.696643 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.134100 1.272482 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.134200 -0.441800 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.134200 -2.646632 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.134200 1.512361 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.134200 1.134271 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.134300 -0.445146 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.134300 -2.321527 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.134300 1.326587 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.134300 0.994940 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.134400 -0.448052 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.134400 -1.994131 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.134400 1.139503 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.134400 0.854627 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.134500 -0.450511 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.134500 -1.664766 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.134500 0.951295 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.134500 0.713471 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.134600 -0.452532 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.134600 -1.333757 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.134600 0.762147 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.134600 0.571610 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.134700 -0.454105 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.134700 -1.001432 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.134700 0.572247 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.134700 0.429185 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.134800 -0.455229 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.134800 -0.668117 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.134800 0.381781 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.134800 0.286336 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.134900 -0.455904 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.134900 -0.334143 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.134900 0.190939 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.134900 0.143204 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.135000 -0.456129 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.135000 0.000159 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.135000 -0.000091 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.135000 -0.000068 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.135100 -0.455902 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.135100 0.334461 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.135100 -0.191120 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.135100 -0.143340 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.135200 -0.455229 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.135200 0.668433 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.135200 -0.381962 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.135200 -0.286471 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.135300 -0.454105 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.135300 1.001747 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.135300 -0.572427 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.135300 -0.429320 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.135400 -0.452532 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.135400 1.334072 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.135400 -0.762327 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.135400 -0.571745 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.135500 -0.450513 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.135500 1.665081 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.135500 -0.951475 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.135500 -0.713606 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.135600 -0.448048 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.135600 1.994445 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.135600 -1.139683 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.135600 -0.854762 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.135700 -0.445141 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.135700 2.321841 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.135700 -1.326766 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.135700 -0.995075 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.135800 -0.441799 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.135800 2.646946 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.135800 -1.512540 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.135800 -1.134405 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.135900 -0.438018 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.135900 2.969438 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.135900 -1.696821 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.135900 -1.272616 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.136000 -0.433804 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.136000 3.288998 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.136000 -1.879428 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.136000 -1.409571 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.136100 -0.429165 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.136100 3.605314 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.136100 -2.060179 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.136100 -1.545134 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.136200 -0.424097 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.136200 3.918071 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.136200 -2.238898 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.136200 -1.679173 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.136300 -0.418615 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.136300 4.226961 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.136300 -2.415407 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.136300 -1.811555 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.136400 -0.412718 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.136400 4.531681 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.136400 -2.589532 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.136400 -1.942149 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.136500 -0.406412 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.136500 4.831929 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.136500 -2.761103 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.136500 -2.070827 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.136600 -0.399706 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.136600 5.127410 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.136600 -2.929948 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.136600 -2.197461 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.136700 -0.392605 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.136700 5.417829 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.136700 -3.095902 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.136700 -2.321927 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.136800 -0.385122 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.136800 5.702902 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.136800 -3.258801 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.136800 -2.444101 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.136900 -0.377255 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.136900 5.982347 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.136900 -3.418484 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.136900 -2.563863 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.137000 -0.369015 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.137000 6.255888 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.137000 -3.574793 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.137000 -2.681095 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.137100 -0.360411 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.137100 6.523254 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.137100 -3.727574 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.137100 -2.795680 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.137200 -0.351453 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.137200 6.784183 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.137200 -3.876676 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.137200 -2.907507 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.137300 -0.342147 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.137300 7.038417 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.137300 -4.021953 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.137300 -3.016465 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.137400 -0.332503 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.137400 7.285705 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.137400 -4.163260 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.137400 -3.122445 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.137500 -0.322531 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.137500 7.525802 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.137500 -4.300458 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.137500 -3.225344 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.137600 -0.312240 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.137600 7.758471 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.137600 -4.433412 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.137600 -3.325059 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.137700 -0.301642 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.137700 7.983484 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.137700 -4.561991 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.137700 -3.421493 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.137800 -0.290747 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.137800 8.200619 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.137800 -4.686068 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.137800 -3.514551 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.137900 -0.279564 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.137900 8.409660 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.137900 -4.805520 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.137900 -3.604140 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.138000 -0.268100 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.138000 8.610403 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.138000 -4.920230 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.138000 -3.690173 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.138100 -0.256379 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.138100 8.802649 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.138100 -5.030085 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.138100 -3.772564 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.138200 -0.244403 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.138200 8.986208 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.138200 -5.134976 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.138200 -3.851232 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.138300 -0.232186 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.138300 9.160899 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.138300 -5.234799 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.138300 -3.926100 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.138400 -0.219740 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.138400 9.326549 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.138400 -5.329457 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.138400 -3.997093 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.138500 -0.207076 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.138500 9.482996 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.138500 -5.418855 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.138500 -4.064141 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.138600 -0.194208 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.138600 9.630083 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.138600 -5.502904 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.138600 -4.127178 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.138700 -0.181148 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.138700 9.767666 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.138700 -5.581523 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.138700 -4.186143 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.138800 -0.167910 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.138800 9.895610 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.138800 -5.654634 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.138800 -4.240976 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.138900 -0.154506 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.138900 10.013788 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.138900 -5.722165 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.138900 -4.291624 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.139000 -0.140949 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.139000 10.122084 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.139000 -5.784048 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.139000 -4.338036 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.139100 -0.127252 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.139100 10.220390 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.139100 -5.840223 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.139100 -4.380167 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.139200 -0.113430 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.139200 10.308610 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.139200 -5.890635 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.139200 -4.417976 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.139300 -0.099499 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.139300 10.386658 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.139300 -5.935233 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.139300 -4.451425 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.139400 -0.085467 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.139400 10.454456 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.139400 -5.973975 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.139400 -4.480481 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.139500 -0.071351 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.139500 10.511936 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.139500 -6.006821 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.139500 -4.505115 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.139600 -0.057164 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.139600 10.559042 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.139600 -6.033738 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.139600 -4.525304 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.139700 -0.042922 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.139700 10.595728 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.139700 -6.054702 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.139700 -4.541026 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.139800 -0.028637 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.139800 10.621957 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.139800 -6.069690 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.139800 -4.552267 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.139900 -0.014324 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.139900 10.637704 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.139900 -6.078688 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.139900 -4.559016 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.140000 0.000003 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.140000 10.642953 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.140000 -6.081688 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.140000 -4.561266 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.140100 0.014331 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.140100 10.637699 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.140100 -6.078685 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.140100 -4.559014 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.140200 0.028644 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.140200 10.621947 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.140200 -6.069684 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.140200 -4.552263 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.140300 0.042929 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.140300 10.595713 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.140300 -6.054693 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.140300 -4.541020 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.140400 0.057172 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.140400 10.559022 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.140400 -6.033727 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.140400 -4.525295 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.140500 0.071357 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.140500 10.511910 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.140500 -6.006806 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.140500 -4.505104 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.140600 0.085473 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.140600 10.454426 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.140600 -5.973958 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.140600 -4.480468 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.140700 0.099505 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.140700 10.386624 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.140700 -5.935213 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.140700 -4.451410 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.140800 0.113438 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.140800 10.308571 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.140800 -5.890612 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.140800 -4.417959 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.140900 0.127260 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.140900 10.220345 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.140900 -5.840197 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.140900 -4.380148 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.141000 0.140953 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.141000 10.122034 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.141000 -5.784019 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.141000 -4.338015 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.141100 0.154511 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.141100 10.013734 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.141100 -5.722134 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.141100 -4.291600 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.141200 0.167916 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.141200 9.895552 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.141200 -5.654601 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.141200 -4.240951 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.141300 0.181155 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.141300 9.767603 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.141300 -5.581487 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.141300 -4.186116 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.141400 0.194214 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.141400 9.630015 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.141400 -5.502866 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.141400 -4.127149 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.141500 0.207081 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.141500 9.482924 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.141500 -5.418814 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.141500 -4.064110 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.141600 0.219746 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.141600 9.326473 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.141600 -5.329413 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.141600 -3.997060 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.141700 0.232193 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.141700 9.160819 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.141700 -5.234754 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.141700 -3.926065 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.141800 0.244410 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.141800 8.986124 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.141800 -5.134928 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.141800 -3.851196 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.141900 0.256386 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.141900 8.802560 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.141900 -5.030034 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.141900 -3.772526 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.142000 0.268109 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.142000 8.610309 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.142000 -4.920177 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.142000 -3.690133 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.142100 0.279567 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.142100 8.409562 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.142100 -4.805464 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.142100 -3.604098 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.142200 0.290746 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.142200 8.200516 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.142200 -4.686009 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.142200 -3.514507 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.142300 0.301645 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.142300 7.983378 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.142300 -4.561930 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.142300 -3.421448 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.142400 0.312247 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.142400 7.758361 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.142400 -4.433349 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.142400 -3.325012 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.142500 0.322535 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.142500 7.525688 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.142500 -4.300393 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.142500 -3.225295 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.142600 0.332506 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.142600 7.285588 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.142600 -4.163193 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.142600 -3.122395 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.142700 0.342151 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.142700 7.038298 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.142700 -4.021884 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.142700 -3.016413 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.142800 0.351458 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.142800 6.784061 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.142800 -3.876606 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.142800 -2.907455 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.142900 0.360416 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.142900 6.523129 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.142900 -3.727502 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.142900 -2.795627 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.143000 0.369020 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.143000 6.255759 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.143000 -3.574720 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.143000 -2.681040 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.143100 0.377257 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.143100 5.982216 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.143100 -3.418409 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.143100 -2.563807 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.143200 0.385125 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.143200 5.702769 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.143200 -3.258725 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.143200 -2.444044 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.143300 0.392613 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.143300 5.417694 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.143300 -3.095825 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.143300 -2.321869 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.143400 0.399712 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.143400 5.127271 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.143400 -2.929869 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.143400 -2.197402 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.143500 0.406413 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.143500 4.831789 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.143500 -2.761022 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.143500 -2.070767 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.143600 0.412718 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.143600 4.531538 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.143600 -2.589451 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.143600 -1.942088 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.143700 0.418615 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.143700 4.226815 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.143700 -2.415323 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.143700 -1.811492 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.143800 0.424099 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.143800 3.917920 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.143800 -2.238812 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.143800 -1.679109 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.143900 0.429166 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.143900 3.605161 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.143900 -2.060092 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.143900 -1.545069 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.144000 0.433806 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.144000 3.288845 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.144000 -1.879340 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.144000 -1.409505 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.144100 0.438022 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.144100 2.969282 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.144100 -1.696733 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.144100 -1.272550 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.144200 0.441800 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.144200 2.646790 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.144200 -1.512451 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.144200 -1.134338 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.144300 0.445146 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.144300 2.321685 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.144300 -1.326677 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.144300 -0.995008 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.144400 0.448052 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.144400 1.994288 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.144400 -1.139593 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.144400 -0.854695 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.144500 0.450511 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.144500 1.664923 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.144500 -0.951385 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.144500 -0.713538 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.144600 0.452532 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.144600 1.333914 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.144600 -0.762237 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.144600 -0.571678 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.144700 0.454105 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.144700 1.001589 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.144700 -0.572337 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.144700 -0.429252 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.144800 0.455229 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.144800 0.668275 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.144800 -0.381871 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.144800 -0.286403 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.144900 0.455904 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.144900 0.334301 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.144900 -0.191029 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.144900 -0.143272 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.145000 0.456129 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.145000 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.145000 0.000001 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.145000 0.000001 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.145100 0.455902 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.145100 -0.334304 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.145100 0.191031 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.145100 0.143273 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.145200 0.455229 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.145200 -0.668275 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.145200 0.381872 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.145200 0.286404 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.145300 0.454105 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.145300 -1.001590 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.145300 0.572337 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.145300 0.429253 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.145400 0.452532 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.145400 -1.333915 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.145400 0.762237 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.145400 0.571678 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.145500 0.450513 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.145500 -1.664923 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.145500 0.951385 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.145500 0.713539 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.145600 0.448048 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.145600 -1.994288 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.145600 1.139593 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.145600 0.854695 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.145700 0.445141 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.145700 -2.321684 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.145700 1.326677 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.145700 0.995007 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.145800 0.441799 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.145800 -2.646788 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.145800 1.512451 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.145800 1.134338 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.145900 0.438018 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.145900 -2.969280 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.145900 1.696732 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.145900 1.272549 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.146000 0.433804 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.146000 -3.288841 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.146000 1.879338 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.146000 1.409503 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.146100 0.429165 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.146100 -3.605156 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.146100 2.060089 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.146100 1.545067 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.146200 0.424097 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.146200 -3.917913 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.146200 2.238808 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.146200 1.679106 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.146300 0.418615 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.146300 -4.226804 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.146300 2.415317 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.146300 1.811487 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.146400 0.412718 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.146400 -4.531523 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.146400 2.589442 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.146400 1.942081 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.146500 0.406412 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.146500 -4.831772 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.146500 2.761013 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.146500 2.070759 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.146600 0.399706 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.146600 -5.127252 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.146600 2.929858 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.146600 2.197394 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.146700 0.392605 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.146700 -5.417672 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.146700 3.095813 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.146700 2.321859 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.146800 0.385122 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.146800 -5.702745 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.146800 3.258711 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.146800 2.444034 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.146900 0.377255 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.146900 -5.982190 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.146900 3.418394 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.146900 2.563796 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.147000 0.369015 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.147000 -6.255731 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.147000 3.574703 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.147000 2.681027 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.147100 0.360411 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.147100 -6.523097 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.147100 3.727484 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.147100 2.795613 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.147200 0.351453 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.147200 -6.784026 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.147200 3.876586 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.147200 2.907440 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.147300 0.342147 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.147300 -7.038260 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.147300 4.021863 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.147300 3.016397 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.147400 0.332503 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.147400 -7.285547 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.147400 4.163170 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.147400 3.122377 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.147500 0.322531 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.147500 -7.525644 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.147500 4.300368 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.147500 3.225276 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.147600 0.312240 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.147600 -7.758314 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.147600 4.433322 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.147600 3.324992 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.147700 0.301642 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.147700 -7.983327 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.147700 4.561901 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.147700 3.421426 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.147800 0.290747 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.147800 -8.200461 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.147800 4.685978 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.147800 3.514483 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.147900 0.279564 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.147900 -8.409503 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.147900 4.805430 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.147900 3.604073 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.148000 0.268100 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.148000 -8.610246 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.148000 4.920140 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.148000 3.690105 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.148100 0.256379 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.148100 -8.802492 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.148100 5.029995 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.148100 3.772496 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.148200 0.244403 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.148200 -8.986051 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.148200 5.134886 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.148200 3.851165 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.148300 0.232186 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.148300 -9.160742 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.148300 5.234710 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.148300 3.926032 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.148400 0.219740 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.148400 -9.326392 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.148400 5.329367 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.148400 3.997025 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.148500 0.207076 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.148500 -9.482838 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.148500 5.418765 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.148500 4.064074 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.148600 0.194208 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.148600 -9.629926 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.148600 5.502815 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.148600 4.127111 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.148700 0.181148 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.148700 -9.767509 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.148700 5.581434 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.148700 4.186075 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.148800 0.167910 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.148800 -9.895453 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.148800 5.654544 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.148800 4.240908 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.148900 0.154506 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.148900 -10.013631 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.148900 5.722075 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.148900 4.291556 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.149000 0.140949 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.149000 -10.121927 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.149000 5.783958 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.149000 4.337969 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.149100 0.127252 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.149100 -10.220233 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.149100 5.840133 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.149100 4.380100 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.149200 0.113430 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.149200 -10.308453 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.149200 5.890545 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.149200 4.417908 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.149300 0.099499 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.149300 -10.386501 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.149300 5.935143 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.149300 4.451358 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.149400 0.085467 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.149400 -10.454298 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.149400 5.973885 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.149400 4.480414 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.149500 0.071351 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.149500 -10.511779 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.149500 6.006731 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.149500 4.505048 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.149600 0.057164 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.149600 -10.558884 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.149600 6.033648 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.149600 4.525236 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.149700 0.042922 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.149700 -10.595570 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.149700 6.054612 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.149700 4.540959 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.149800 0.028637 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.149800 -10.621800 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.149800 6.069600 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.149800 4.552200 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.149900 0.014324 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.149900 -10.637547 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.149900 6.078598 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.149900 4.558949 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.150000 -0.000003 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.150000 -10.642796 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.150000 6.081598 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.150000 4.561198 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.150100 -0.014331 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.150100 -10.637542 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.150100 6.078595 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.150100 4.558947 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.150200 -0.028644 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.150200 -10.621790 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.150200 6.069594 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.150200 4.552196 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.150300 -0.042929 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.150300 -10.595555 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.150300 6.054603 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.150300 4.540952 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.150400 -0.057172 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.150400 -10.558864 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.150400 6.033637 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.150400 4.525228 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.150500 -0.071357 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.150500 -10.511753 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.150500 6.006716 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.150500 4.505037 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.150600 -0.085473 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.150600 -10.454268 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.150600 5.973868 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.150600 4.480401 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.150700 -0.099505 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.150700 -10.386466 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.150700 5.935124 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.150700 4.451343 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.150800 -0.113438 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.150800 -10.308414 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.150800 5.890522 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.150800 4.417892 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.150900 -0.127260 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.150900 -10.220188 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.150900 5.840107 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.150900 4.380080 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.151000 -0.140953 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.151000 -10.121877 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.151000 5.783930 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.151000 4.337947 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.151100 -0.154511 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.151100 -10.013577 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.151100 5.722044 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.151100 4.291533 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.151200 -0.167916 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.151200 -9.895394 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.151200 5.654511 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.151200 4.240883 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.151300 -0.181155 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.151300 -9.767446 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.151300 5.581398 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.151300 4.186048 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.151400 -0.194214 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.151400 -9.629858 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.151400 5.502776 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.151400 4.127082 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.151500 -0.207081 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.151500 -9.482766 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.151500 5.418724 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.151500 4.064043 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.151600 -0.219746 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.151600 -9.326316 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.151600 5.329324 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.151600 3.996993 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.151700 -0.232193 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.151700 -9.160662 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.151700 5.234664 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.151700 3.925998 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.151800 -0.244410 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.151800 -8.985966 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.151800 5.134838 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.151800 3.851128 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.151900 -0.256386 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.151900 -8.802403 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.151900 5.029944 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.151900 3.772458 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.152000 -0.268109 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.152000 -8.610152 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.152000 4.920087 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.152000 3.690065 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.152100 -0.279567 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.152100 -8.409405 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.152100 4.805374 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.152100 3.604031 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.152200 -0.290746 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.152200 -8.200359 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.152200 4.685919 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.152200 3.514440 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.152300 -0.301645 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.152300 -7.983221 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.152300 4.561840 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.152300 3.421380 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.152400 -0.312246 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.152400 -7.758204 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.152400 4.433259 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.152400 3.324944 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.152500 -0.322535 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.152500 -7.525531 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.152500 4.300303 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.152500 3.225227 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.152600 -0.332506 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.152600 -7.285431 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.152600 4.163103 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.152600 3.122327 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.152700 -0.342151 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.152700 -7.038140 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.152700 4.021795 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.152700 3.016346 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.152800 -0.351458 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.152800 -6.783904 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.152800 3.876516 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.152800 2.907387 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.152900 -0.360416 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.152900 -6.522972 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.152900 3.727412 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.152900 2.795559 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.153000 -0.369020 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.153000 -6.255602 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.153000 3.574630 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.153000 2.680972 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.153100 -0.377257 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.153100 -5.982059 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.153100 3.418319 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.153100 2.563740 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.153200 -0.385125 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.153200 -5.702612 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.153200 3.258635 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.153200 2.443976 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.153300 -0.392613 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.153300 -5.417536 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.153300 3.095735 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.153300 2.321801 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.153400 -0.399712 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.153400 -5.127114 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.153400 2.929779 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.153400 2.197335 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.153500 -0.406413 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.153500 -4.831632 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.153500 2.760932 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.153500 2.070699 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.153600 -0.412718 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.153600 -4.531381 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.153600 2.589361 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.153600 1.942020 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.153700 -0.418615 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.153700 -4.226658 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.153700 2.415233 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.153700 1.811425 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.153800 -0.424099 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.153800 -3.917763 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.153800 2.238722 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.153800 1.679041 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.153900 -0.429166 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.153900 -3.605004 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.153900 2.060002 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.153900 1.545002 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.154000 -0.433806 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.154000 -3.288687 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.154000 1.879250 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.154000 1.409437 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.154100 -0.438022 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.154100 -2.969125 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.154100 1.696643 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.154100 1.272482 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.154200 -0.441800 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.154200 -2.646632 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.154200 1.512361 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.154200 1.134271 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.154300 -0.445146 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.154300 -2.321527 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.154300 1.326587 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.154300 0.994940 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.154400 -0.448052 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.154400 -1.994131 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.154400 1.139503 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.154400 0.854627 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.154500 -0.450511 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.154500 -1.664766 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.154500 0.951295 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.154500 0.713471 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.154600 -0.452532 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.154600 -1.333757 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.154600 0.762147 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.154600 0.571610 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.154700 -0.454105 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.154700 -1.001432 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.154700 0.572247 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.154700 0.429185 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.154800 -0.455229 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.154800 -0.668117 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.154800 0.381781 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.154800 0.286336 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.154900 -0.455904 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.154900 -0.334143 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.154900 0.190939 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.154900 0.143204 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.155000 -0.456129 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.155000 0.000159 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.155000 -0.000091 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.155000 -0.000068 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.155100 -0.455902 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.155100 0.334461 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.155100 -0.191120 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.155100 -0.143340 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.155200 -0.455229 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.155200 0.668433 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.155200 -0.381962 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.155200 -0.286471 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.155300 -0.454105 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.155300 1.001747 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.155300 -0.572427 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.155300 -0.429320 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.155400 -0.452532 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.155400 1.334072 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.155400 -0.762327 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.155400 -0.571745 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.155500 -0.450513 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.155500 1.665081 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.155500 -0.951475 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.155500 -0.713606 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.155600 -0.448048 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.155600 1.994445 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.155600 -1.139683 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.155600 -0.854762 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.155700 -0.445141 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.155700 2.321841 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.155700 -1.326766 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.155700 -0.995075 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.155800 -0.441799 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.155800 2.646946 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.155800 -1.512540 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.155800 -1.134405 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.155900 -0.438018 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.155900 2.969438 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.155900 -1.696821 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.155900 -1.272616 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.156000 -0.433804 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.156000 3.288998 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.156000 -1.879428 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.156000 -1.409571 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.156100 -0.429165 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.156100 3.605314 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.156100 -2.060179 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.156100 -1.545134 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.156200 -0.424097 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.156200 3.918071 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.156200 -2.238898 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.156200 -1.679173 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.156300 -0.418615 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.156300 4.226961 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.156300 -2.415407 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.156300 -1.811555 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.156400 -0.412718 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.156400 4.531681 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.156400 -2.589532 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.156400 -1.942149 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.156500 -0.406412 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.156500 4.831929 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.156500 -2.761103 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.156500 -2.070827 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.156600 -0.399706 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.156600 5.127410 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.156600 -2.929948 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.156600 -2.197461 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.156700 -0.392605 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.156700 5.417829 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.156700 -3.095902 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.156700 -2.321927 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.156800 -0.385122 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.156800 5.702902 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.156800 -3.258801 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.156800 -2.444101 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.156900 -0.377255 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.156900 5.982347 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.156900 -3.418484 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.156900 -2.563863 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.157000 -0.369015 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.157000 6.255888 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.157000 -3.574793 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.157000 -2.681095 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.157100 -0.360411 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.157100 6.523254 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.157100 -3.727574 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.157100 -2.795680 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.157200 -0.351453 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.157200 6.784183 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.157200 -3.876676 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.157200 -2.907507 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.157300 -0.342147 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.157300 7.038417 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.157300 -4.021953 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.157300 -3.016465 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.157400 -0.332503 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.157400 7.285705 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.157400 -4.163260 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.157400 -3.122445 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.157500 -0.322531 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.157500 7.525802 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.157500 -4.300458 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.157500 -3.225344 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.157600 -0.312240 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.157600 7.758471 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.157600 -4.433412 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.157600 -3.325059 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.157700 -0.301642 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.157700 7.983484 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.157700 -4.561991 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.157700 -3.421493 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.157800 -0.290747 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.157800 8.200619 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.157800 -4.686068 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.157800 -3.514551 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.157900 -0.279564 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.157900 8.409660 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.157900 -4.805520 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.157900 -3.604140 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.158000 -0.268100 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.158000 8.610403 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.158000 -4.920230 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.158000 -3.690173 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.158100 -0.256379 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.158100 8.802649 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.158100 -5.030085 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.158100 -3.772564 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.158200 -0.244403 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.158200 8.986208 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.158200 -5.134976 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.158200 -3.851232 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.158300 -0.232186 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.158300 9.160899 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.158300 -5.234799 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.158300 -3.926100 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.158400 -0.219740 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.158400 9.326549 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.158400 -5.329457 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.158400 -3.997093 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.158500 -0.207076 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.158500 9.482996 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.158500 -5.418855 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.158500 -4.064141 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.158600 -0.194208 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.158600 9.630083 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.158600 -5.502904 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.158600 -4.127178 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.158700 -0.181148 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.158700 9.767666 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.158700 -5.581523 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.158700 -4.186143 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.158800 -0.167910 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.158800 9.895610 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.158800 -5.654634 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.158800 -4.240976 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.158900 -0.154506 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.158900 10.013788 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.158900 -5.722165 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.158900 -4.291624 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.159000 -0.140949 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.159000 10.122084 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.159000 -5.784048 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.159000 -4.338036 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.159100 -0.127252 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.159100 10.220390 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.159100 -5.840223 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.159100 -4.380167 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.159200 -0.113430 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.159200 10.308610 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.159200 -5.890635 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.159200 -4.417976 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.159300 -0.099499 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.159300 10.386658 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.159300 -5.935233 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.159300 -4.451425 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.159400 -0.085467 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.159400 10.454456 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.159400 -5.973975 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.159400 -4.480481 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.159500 -0.071351 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.159500 10.511936 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.159500 -6.006821 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.159500 -4.505115 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.159600 -0.057164 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.159600 10.559042 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.159600 -6.033738 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.159600 -4.525304 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.159700 -0.042922 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.159700 10.595728 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.159700 -6.054702 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.159700 -4.541026 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.159800 -0.028637 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.159800 10.621957 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.159800 -6.069690 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.159800 -4.552267 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.159900 -0.014324 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.159900 10.637704 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.159900 -6.078688 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.159900 -4.559016 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.160000 0.000003 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.160000 10.642953 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.160000 -6.081688 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.160000 -4.561266 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.160100 0.014331 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.160100 10.637699 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.160100 -6.078685 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.160100 -4.559014 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.160200 0.028644 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.160200 10.621947 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.160200 -6.069684 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.160200 -4.552263 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.160300 0.042929 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.160300 10.595713 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.160300 -6.054693 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.160300 -4.541020 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.160400 0.057172 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.160400 10.559022 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.160400 -6.033727 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.160400 -4.525295 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.160500 0.071357 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.160500 10.511910 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.160500 -6.006806 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.160500 -4.505104 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.160600 0.085473 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.160600 10.454426 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.160600 -5.973958 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.160600 -4.480468 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.160700 0.099505 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.160700 10.386624 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.160700 -5.935213 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.160700 -4.451410 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.160800 0.113438 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.160800 10.308571 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.160800 -5.890612 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.160800 -4.417959 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.160900 0.127260 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.160900 10.220345 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.160900 -5.840197 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.160900 -4.380148 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.161000 0.140953 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.161000 10.122034 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.161000 -5.784019 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.161000 -4.338015 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.161100 0.154511 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.161100 10.013734 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.161100 -5.722134 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.161100 -4.291600 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.161200 0.167916 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.161200 9.895552 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.161200 -5.654601 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.161200 -4.240951 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.161300 0.181155 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.161300 9.767603 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.161300 -5.581487 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.161300 -4.186116 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.161400 0.194214 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.161400 9.630015 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.161400 -5.502866 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.161400 -4.127149 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.161500 0.207081 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.161500 9.482924 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.161500 -5.418814 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.161500 -4.064110 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.161600 0.219746 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.161600 9.326473 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.161600 -5.329413 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.161600 -3.997060 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.161700 0.232193 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.161700 9.160819 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.161700 -5.234754 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.161700 -3.926065 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.161800 0.244410 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.161800 8.986124 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.161800 -5.134928 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.161800 -3.851196 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.161900 0.256386 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.161900 8.802560 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.161900 -5.030034 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.161900 -3.772526 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.162000 0.268109 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.162000 8.610309 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.162000 -4.920177 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.162000 -3.690133 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.162100 0.279567 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.162100 8.409562 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.162100 -4.805464 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.162100 -3.604098 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.162200 0.290746 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.162200 8.200516 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.162200 -4.686009 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.162200 -3.514507 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.162300 0.301645 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.162300 7.983378 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.162300 -4.561930 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.162300 -3.421448 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.162400 0.312247 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.162400 7.758361 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.162400 -4.433349 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.162400 -3.325012 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.162500 0.322535 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.162500 7.525688 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.162500 -4.300393 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.162500 -3.225295 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.162600 0.332506 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.162600 7.285588 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.162600 -4.163193 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.162600 -3.122395 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.162700 0.342151 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.162700 7.038298 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.162700 -4.021884 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.162700 -3.016413 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.162800 0.351458 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.162800 6.784061 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.162800 -3.876606 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.162800 -2.907455 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.162900 0.360416 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.162900 6.523129 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.162900 -3.727502 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.162900 -2.795627 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.163000 0.369020 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.163000 6.255759 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.163000 -3.574720 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.163000 -2.681040 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.163100 0.377257 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.163100 5.982216 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.163100 -3.418409 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.163100 -2.563807 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.163200 0.385125 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.163200 5.702769 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.163200 -3.258725 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.163200 -2.444044 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.163300 0.392613 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.163300 5.417694 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.163300 -3.095825 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.163300 -2.321869 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.163400 0.399712 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.163400 5.127271 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.163400 -2.929869 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.163400 -2.197402 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.163500 0.406413 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.163500 4.831789 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.163500 -2.761022 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.163500 -2.070767 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.163600 0.412718 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.163600 4.531538 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.163600 -2.589451 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.163600 -1.942088 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.163700 0.418615 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.163700 4.226815 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.163700 -2.415323 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.163700 -1.811492 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.163800 0.424099 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.163800 3.917920 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.163800 -2.238812 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.163800 -1.679109 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.163900 0.429166 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.163900 3.605161 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.163900 -2.060092 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.163900 -1.545069 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.164000 0.433806 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.164000 3.288845 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.164000 -1.879340 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.164000 -1.409505 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.164100 0.438022 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.164100 2.969282 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.164100 -1.696733 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.164100 -1.272550 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.164200 0.441800 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.164200 2.646790 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.164200 -1.512451 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.164200 -1.134338 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.164300 0.445146 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.164300 2.321685 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.164300 -1.326677 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.164300 -0.995008 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.164400 0.448052 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.164400 1.994288 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.164400 -1.139593 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.164400 -0.854695 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.164500 0.450511 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.164500 1.664923 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.164500 -0.951385 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.164500 -0.713538 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.164600 0.452532 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.164600 1.333914 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.164600 -0.762237 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.164600 -0.571678 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.164700 0.454105 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.164700 1.001589 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.164700 -0.572337 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.164700 -0.429252 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.164800 0.455229 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.164800 0.668275 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.164800 -0.381871 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.164800 -0.286403 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.164900 0.455904 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.164900 0.334301 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.164900 -0.191029 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.164900 -0.143272 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.165000 0.456129 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.165000 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.165000 0.000001 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.165000 0.000001 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.165100 0.455902 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.165100 -0.334304 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.165100 0.191031 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.165100 0.143273 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.165200 0.455229 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.165200 -0.668275 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.165200 0.381872 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.165200 0.286404 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.165300 0.454105 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.165300 -1.001590 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.165300 0.572337 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.165300 0.429253 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.165400 0.452532 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.165400 -1.333915 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.165400 0.762237 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.165400 0.571678 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.165500 0.450513 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.165500 -1.664923 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.165500 0.951385 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.165500 0.713539 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.165600 0.448048 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.165600 -1.994288 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.165600 1.139593 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.165600 0.854695 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.165700 0.445141 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.165700 -2.321684 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.165700 1.326677 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.165700 0.995007 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.165800 0.441799 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.165800 -2.646788 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.165800 1.512451 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.165800 1.134338 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.165900 0.438018 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.165900 -2.969280 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.165900 1.696732 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.165900 1.272549 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.166000 0.433804 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.166000 -3.288841 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.166000 1.879338 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.166000 1.409503 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.166100 0.429165 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.166100 -3.605156 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.166100 2.060089 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.166100 1.545067 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.166200 0.424097 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.166200 -3.917913 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.166200 2.238808 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.166200 1.679106 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.166300 0.418615 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.166300 -4.226804 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.166300 2.415317 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.166300 1.811487 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.166400 0.412718 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.166400 -4.531523 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.166400 2.589442 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.166400 1.942081 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.166500 0.406412 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.166500 -4.831772 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.166500 2.761013 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.166500 2.070759 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.166600 0.399706 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.166600 -5.127252 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.166600 2.929858 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.166600 2.197394 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.166700 0.392605 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.166700 -5.417672 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.166700 3.095813 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.166700 2.321859 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.166800 0.385122 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.166800 -5.702745 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.166800 3.258711 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.166800 2.444034 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.166900 0.377255 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.166900 -5.982190 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.166900 3.418394 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.166900 2.563796 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.167000 0.369015 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.167000 -6.255731 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.167000 3.574703 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.167000 2.681027 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.167100 0.360411 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.167100 -6.523097 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.167100 3.727484 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.167100 2.795613 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.167200 0.351453 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.167200 -6.784026 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.167200 3.876586 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.167200 2.907440 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.167300 0.342147 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.167300 -7.038260 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.167300 4.021863 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.167300 3.016397 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.167400 0.332503 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.167400 -7.285547 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.167400 4.163170 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.167400 3.122377 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.167500 0.322531 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.167500 -7.525644 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.167500 4.300368 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.167500 3.225276 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.167600 0.312240 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.167600 -7.758314 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.167600 4.433322 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.167600 3.324992 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.167700 0.301642 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.167700 -7.983327 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.167700 4.561901 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.167700 3.421426 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.167800 0.290747 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.167800 -8.200461 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.167800 4.685978 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.167800 3.514483 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.167900 0.279564 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.167900 -8.409503 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.167900 4.805430 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.167900 3.604073 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.168000 0.268100 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.168000 -8.610246 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.168000 4.920140 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.168000 3.690105 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.168100 0.256379 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.168100 -8.802492 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.168100 5.029995 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.168100 3.772496 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.168200 0.244403 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.168200 -8.986051 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.168200 5.134886 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.168200 3.851165 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.168300 0.232186 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.168300 -9.160742 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.168300 5.234710 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.168300 3.926032 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.168400 0.219740 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.168400 -9.326392 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.168400 5.329367 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.168400 3.997025 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.168500 0.207076 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.168500 -9.482838 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.168500 5.418765 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.168500 4.064074 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.168600 0.194208 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.168600 -9.629926 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.168600 5.502815 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.168600 4.127111 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.168700 0.181148 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.168700 -9.767509 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.168700 5.581434 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.168700 4.186075 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.168800 0.167910 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.168800 -9.895453 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.168800 5.654544 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.168800 4.240908 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.168900 0.154506 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.168900 -10.013631 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.168900 5.722075 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.168900 4.291556 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.169000 0.140949 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.169000 -10.121927 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.169000 5.783958 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.169000 4.337969 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.169100 0.127252 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.169100 -10.220233 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.169100 5.840133 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.169100 4.380100 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.169200 0.113430 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.169200 -10.308453 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.169200 5.890545 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.169200 4.417908 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.169300 0.099499 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.169300 -10.386501 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.169300 5.935143 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.169300 4.451358 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.169400 0.085467 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.169400 -10.454298 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.169400 5.973885 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.169400 4.480414 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.169500 0.071351 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.169500 -10.511779 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.169500 6.006731 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.169500 4.505048 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.169600 0.057164 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.169600 -10.558885 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.169600 6.033648 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.169600 4.525236 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.169700 0.042922 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.169700 -10.595570 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.169700 6.054612 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.169700 4.540959 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.169800 0.028637 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.169800 -10.621800 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.169800 6.069600 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.169800 4.552200 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.169900 0.014324 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.169900 -10.637547 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.169900 6.078598 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.169900 4.558949 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.170000 -0.000003 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.170000 -10.642796 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.170000 6.081598 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.170000 4.561198 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.170100 -0.014331 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.170100 -10.637542 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.170100 6.078595 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.170100 4.558947 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.170200 -0.028644 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.170200 -10.621790 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.170200 6.069594 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.170200 4.552196 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.170300 -0.042929 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.170300 -10.595555 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.170300 6.054603 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.170300 4.540952 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.170400 -0.057172 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.170400 -10.558864 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.170400 6.033637 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.170400 4.525228 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.170500 -0.071357 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.170500 -10.511753 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.170500 6.006716 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.170500 4.505037 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.170600 -0.085473 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.170600 -10.454268 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.170600 5.973868 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.170600 4.480401 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.170700 -0.099505 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.170700 -10.386466 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.170700 5.935124 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.170700 4.451343 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.170800 -0.113438 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.170800 -10.308414 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.170800 5.890522 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.170800 4.417892 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.170900 -0.127260 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.170900 -10.220188 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.170900 5.840107 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.170900 4.380080 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.171000 -0.140953 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.171000 -10.121877 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.171000 5.783930 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.171000 4.337947 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.171100 -0.154511 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.171100 -10.013577 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.171100 5.722044 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.171100 4.291533 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.171200 -0.167916 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.171200 -9.895394 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.171200 5.654511 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.171200 4.240883 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.171300 -0.181155 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.171300 -9.767446 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.171300 5.581398 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.171300 4.186048 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.171400 -0.194214 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.171400 -9.629858 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.171400 5.502776 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.171400 4.127082 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.171500 -0.207081 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.171500 -9.482766 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.171500 5.418724 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.171500 4.064043 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.171600 -0.219746 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.171600 -9.326316 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.171600 5.329324 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.171600 3.996993 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.171700 -0.232193 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.171700 -9.160662 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.171700 5.234664 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.171700 3.925998 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.171800 -0.244410 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.171800 -8.985966 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.171800 5.134838 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.171800 3.851128 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.171900 -0.256386 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.171900 -8.802403 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.171900 5.029944 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.171900 3.772458 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.172000 -0.268109 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.172000 -8.610152 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.172000 4.920087 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.172000 3.690065 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.172100 -0.279567 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.172100 -8.409405 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.172100 4.805374 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.172100 3.604031 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.172200 -0.290746 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.172200 -8.200359 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.172200 4.685919 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.172200 3.514440 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.172300 -0.301645 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.172300 -7.983221 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.172300 4.561840 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.172300 3.421380 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.172400 -0.312246 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.172400 -7.758204 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.172400 4.433259 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.172400 3.324944 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.172500 -0.322535 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.172500 -7.525531 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.172500 4.300303 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.172500 3.225227 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.172600 -0.332506 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.172600 -7.285431 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.172600 4.163103 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.172600 3.122327 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.172700 -0.342151 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.172700 -7.038140 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.172700 4.021795 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.172700 3.016346 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.172800 -0.351458 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.172800 -6.783904 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.172800 3.876516 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.172800 2.907387 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.172900 -0.360416 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.172900 -6.522972 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.172900 3.727412 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.172900 2.795559 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.173000 -0.369020 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.173000 -6.255602 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.173000 3.574630 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.173000 2.680972 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.173100 -0.377257 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.173100 -5.982059 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.173100 3.418319 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.173100 2.563740 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.173200 -0.385125 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.173200 -5.702612 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.173200 3.258635 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.173200 2.443976 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.173300 -0.392613 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.173300 -5.417536 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.173300 3.095735 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.173300 2.321801 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.173400 -0.399712 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.173400 -5.127114 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.173400 2.929779 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.173400 2.197335 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.173500 -0.406413 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.173500 -4.831632 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.173500 2.760932 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.173500 2.070699 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.173600 -0.412718 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.173600 -4.531381 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.173600 2.589361 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.173600 1.942020 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.173700 -0.418615 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.173700 -4.226658 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.173700 2.415233 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.173700 1.811425 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.173800 -0.424099 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.173800 -3.917763 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.173800 2.238722 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.173800 1.679041 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.173900 -0.429166 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.173900 -3.605004 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.173900 2.060002 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.173900 1.545002 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.174000 -0.433806 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.174000 -3.288687 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.174000 1.879250 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.174000 1.409437 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.174100 -0.438022 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.174100 -2.969125 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.174100 1.696643 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.174100 1.272482 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.174200 -0.441800 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.174200 -2.646632 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.174200 1.512361 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.174200 1.134271 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.174300 -0.445146 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.174300 -2.321527 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.174300 1.326587 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.174300 0.994940 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.174400 -0.448052 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.174400 -1.994131 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.174400 1.139503 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.174400 0.854627 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.174500 -0.450511 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.174500 -1.664766 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.174500 0.951295 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.174500 0.713471 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.174600 -0.452532 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.174600 -1.333757 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.174600 0.762147 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.174600 0.571610 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.174700 -0.454105 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.174700 -1.001432 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.174700 0.572247 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.174700 0.429185 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.174800 -0.455229 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.174800 -0.668117 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.174800 0.381781 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.174800 0.286336 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.174900 -0.455904 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.174900 -0.334143 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.174900 0.190939 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.174900 0.143204 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.175000 -0.456129 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.175000 0.000159 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.175000 -0.000091 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.175000 -0.000068 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.175100 -0.455902 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.175100 0.334461 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.175100 -0.191120 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.175100 -0.143340 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.175200 -0.455229 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.175200 0.668433 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.175200 -0.381962 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.175200 -0.286471 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.175300 -0.454105 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.175300 1.001747 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.175300 -0.572427 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.175300 -0.429320 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.175400 -0.452532 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.175400 1.334072 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.175400 -0.762327 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.175400 -0.571745 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.175500 -0.450513 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.175500 1.665081 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.175500 -0.951475 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.175500 -0.713606 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.175600 -0.448048 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.175600 1.994445 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.175600 -1.139683 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.175600 -0.854762 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.175700 -0.445141 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.175700 2.321841 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.175700 -1.326766 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.175700 -0.995075 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.175800 -0.441799 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.175800 2.646946 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.175800 -1.512540 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.175800 -1.134405 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.175900 -0.438018 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.175900 2.969438 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.175900 -1.696821 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.175900 -1.272616 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.176000 -0.433804 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.176000 3.288998 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.176000 -1.879428 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.176000 -1.409571 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.176100 -0.429165 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.176100 3.605314 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.176100 -2.060179 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.176100 -1.545134 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.176200 -0.424097 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.176200 3.918071 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.176200 -2.238898 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.176200 -1.679173 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.176300 -0.418615 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.176300 4.226961 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.176300 -2.415407 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.176300 -1.811555 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.176400 -0.412718 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.176400 4.531681 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.176400 -2.589532 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.176400 -1.942149 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.176500 -0.406412 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.176500 4.831929 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.176500 -2.761103 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.176500 -2.070827 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.176600 -0.399706 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.176600 5.127410 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.176600 -2.929948 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.176600 -2.197461 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.176700 -0.392605 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.176700 5.417829 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.176700 -3.095902 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.176700 -2.321927 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.176800 -0.385122 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.176800 5.702902 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.176800 -3.258801 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.176800 -2.444101 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.176900 -0.377255 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.176900 5.982347 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.176900 -3.418484 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.176900 -2.563863 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.177000 -0.369015 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.177000 6.255888 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.177000 -3.574793 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.177000 -2.681095 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.177100 -0.360411 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.177100 6.523254 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.177100 -3.727574 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.177100 -2.795680 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.177200 -0.351453 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.177200 6.784183 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.177200 -3.876676 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.177200 -2.907507 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.177300 -0.342147 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.177300 7.038417 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.177300 -4.021953 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.177300 -3.016465 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.177400 -0.332503 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.177400 7.285705 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.177400 -4.163260 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.177400 -3.122445 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.177500 -0.322531 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.177500 7.525802 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.177500 -4.300458 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.177500 -3.225344 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.177600 -0.312240 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.177600 7.758471 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.177600 -4.433412 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.177600 -3.325059 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.177700 -0.301642 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.177700 7.983484 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.177700 -4.561991 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.177700 -3.421493 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.177800 -0.290747 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.177800 8.200619 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.177800 -4.686068 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.177800 -3.514551 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.177900 -0.279564 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.177900 8.409660 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.177900 -4.805520 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.177900 -3.604140 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.178000 -0.268100 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.178000 8.610403 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.178000 -4.920230 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.178000 -3.690173 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.178100 -0.256379 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.178100 8.802649 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.178100 -5.030085 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.178100 -3.772564 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.178200 -0.244403 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.178200 8.986208 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.178200 -5.134976 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.178200 -3.851232 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.178300 -0.232186 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.178300 9.160899 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.178300 -5.234799 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.178300 -3.926100 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.178400 -0.219740 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.178400 9.326549 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.178400 -5.329457 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.178400 -3.997093 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.178500 -0.207076 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.178500 9.482996 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.178500 -5.418855 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.178500 -4.064141 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.178600 -0.194208 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.178600 9.630083 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.178600 -5.502904 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.178600 -4.127178 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.178700 -0.181148 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.178700 9.767666 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.178700 -5.581523 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.178700 -4.186143 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.178800 -0.167910 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.178800 9.895610 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.178800 -5.654634 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.178800 -4.240976 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.178900 -0.154506 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.178900 10.013788 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.178900 -5.722165 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.178900 -4.291624 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.179000 -0.140949 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.179000 10.122084 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.179000 -5.784048 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.179000 -4.338036 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.179100 -0.127252 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.179100 10.220390 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.179100 -5.840223 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.179100 -4.380167 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.179200 -0.113430 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.179200 10.308610 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.179200 -5.890635 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.179200 -4.417976 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.179300 -0.099499 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.179300 10.386658 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.179300 -5.935233 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.179300 -4.451425 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.179400 -0.085467 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.179400 10.454456 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.179400 -5.973975 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.179400 -4.480481 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.179500 -0.071351 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.179500 10.511936 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.179500 -6.006821 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.179500 -4.505115 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.179600 -0.057164 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.179600 10.559042 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.179600 -6.033738 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.179600 -4.525304 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.179700 -0.042922 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.179700 10.595728 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.179700 -6.054702 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.179700 -4.541026 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.179800 -0.028637 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.179800 10.621957 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.179800 -6.069690 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.179800 -4.552267 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.179900 -0.014324 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.179900 10.637704 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.179900 -6.078688 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.179900 -4.559016 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.180000 0.000003 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.180000 10.642953 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.180000 -6.081688 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.180000 -4.561266 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.180100 0.014331 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.180100 10.637699 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.180100 -6.078685 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.180100 -4.559014 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.180200 0.028644 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.180200 10.621947 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.180200 -6.069684 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.180200 -4.552263 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.180300 0.042929 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.180300 10.595713 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.180300 -6.054693 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.180300 -4.541020 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.180400 0.057172 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.180400 10.559022 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.180400 -6.033727 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.180400 -4.525295 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.180500 0.071357 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.180500 10.511910 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.180500 -6.006806 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.180500 -4.505104 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.180600 0.085473 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.180600 10.454426 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.180600 -5.973958 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.180600 -4.480468 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.180700 0.099505 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.180700 10.386624 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.180700 -5.935213 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.180700 -4.451410 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.180800 0.113438 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.180800 10.308571 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.180800 -5.890612 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.180800 -4.417959 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.180900 0.127260 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.180900 10.220345 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.180900 -5.840197 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.180900 -4.380148 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.181000 0.140953 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.181000 10.122034 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.181000 -5.784019 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.181000 -4.338015 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.181100 0.154511 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.181100 10.013734 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.181100 -5.722134 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.181100 -4.291600 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.181200 0.167916 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.181200 9.895552 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.181200 -5.654601 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.181200 -4.240951 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.181300 0.181155 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.181300 9.767603 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.181300 -5.581487 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.181300 -4.186116 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.181400 0.194214 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.181400 9.630015 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.181400 -5.502866 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.181400 -4.127149 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.181500 0.207081 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.181500 9.482924 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.181500 -5.418814 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.181500 -4.064110 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.181600 0.219746 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.181600 9.326473 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.181600 -5.329413 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.181600 -3.997060 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.181700 0.232193 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.181700 9.160819 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.181700 -5.234754 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.181700 -3.926065 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.181800 0.244410 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.181800 8.986124 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.181800 -5.134928 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.181800 -3.851196 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.181900 0.256386 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.181900 8.802560 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.181900 -5.030034 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.181900 -3.772526 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.182000 0.268109 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.182000 8.610309 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.182000 -4.920177 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.182000 -3.690133 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.182100 0.279567 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.182100 8.409562 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.182100 -4.805464 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.182100 -3.604098 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.182200 0.290746 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.182200 8.200516 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.182200 -4.686009 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.182200 -3.514507 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.182300 0.301645 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.182300 7.983378 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.182300 -4.561930 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.182300 -3.421448 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.182400 0.312247 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.182400 7.758361 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.182400 -4.433349 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.182400 -3.325012 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.182500 0.322535 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.182500 7.525688 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.182500 -4.300393 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.182500 -3.225295 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.182600 0.332506 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.182600 7.285588 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.182600 -4.163193 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.182600 -3.122395 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.182700 0.342151 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.182700 7.038298 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.182700 -4.021884 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.182700 -3.016413 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.182800 0.351458 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.182800 6.784061 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.182800 -3.876606 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.182800 -2.907455 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.182900 0.360416 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.182900 6.523129 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.182900 -3.727502 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.182900 -2.795627 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.183000 0.369020 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.183000 6.255759 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.183000 -3.574720 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.183000 -2.681040 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.183100 0.377257 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.183100 5.982216 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.183100 -3.418409 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.183100 -2.563807 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.183200 0.385125 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.183200 5.702769 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.183200 -3.258725 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.183200 -2.444044 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.183300 0.392613 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.183300 5.417694 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.183300 -3.095825 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.183300 -2.321869 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.183400 0.399712 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.183400 5.127271 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.183400 -2.929869 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.183400 -2.197402 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.183500 0.406413 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.183500 4.831789 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.183500 -2.761022 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.183500 -2.070767 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.183600 0.412718 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.183600 4.531538 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.183600 -2.589451 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.183600 -1.942088 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.183700 0.418615 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.183700 4.226815 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.183700 -2.415323 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.183700 -1.811492 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.183800 0.424099 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.183800 3.917920 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.183800 -2.238812 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.183800 -1.679109 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.183900 0.429166 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.183900 3.605161 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.183900 -2.060092 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.183900 -1.545069 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.184000 0.433806 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.184000 3.288845 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.184000 -1.879340 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.184000 -1.409505 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.184100 0.438022 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.184100 2.969282 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.184100 -1.696733 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.184100 -1.272550 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.184200 0.441800 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.184200 2.646790 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.184200 -1.512451 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.184200 -1.134338 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.184300 0.445146 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.184300 2.321685 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.184300 -1.326677 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.184300 -0.995008 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.184400 0.448052 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.184400 1.994288 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.184400 -1.139593 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.184400 -0.854695 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.184500 0.450511 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.184500 1.664923 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.184500 -0.951385 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.184500 -0.713538 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.184600 0.452532 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.184600 1.333914 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.184600 -0.762237 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.184600 -0.571678 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.184700 0.454105 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.184700 1.001589 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.184700 -0.572337 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.184700 -0.429252 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.184800 0.455229 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.184800 0.668275 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.184800 -0.381871 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.184800 -0.286403 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.184900 0.455904 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.184900 0.334301 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.184900 -0.191029 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.184900 -0.143272 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.185000 0.456129 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.185000 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.185000 0.000001 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.185000 0.000001 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.185100 0.455902 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.185100 -0.334304 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.185100 0.191031 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.185100 0.143273 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.185200 0.455229 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.185200 -0.668275 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.185200 0.381872 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.185200 0.286404 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.185300 0.454105 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.185300 -1.001590 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.185300 0.572337 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.185300 0.429253 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.185400 0.452532 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.185400 -1.333915 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.185400 0.762237 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.185400 0.571678 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.185500 0.450513 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.185500 -1.664923 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.185500 0.951385 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.185500 0.713539 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.185600 0.448048 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.185600 -1.994288 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.185600 1.139593 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.185600 0.854695 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.185700 0.445141 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.185700 -2.321684 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.185700 1.326677 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.185700 0.995007 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.185800 0.441799 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.185800 -2.646788 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.185800 1.512451 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.185800 1.134338 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.185900 0.438018 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.185900 -2.969280 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.185900 1.696732 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.185900 1.272549 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.186000 0.433804 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.186000 -3.288841 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.186000 1.879338 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.186000 1.409503 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.186100 0.429165 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.186100 -3.605156 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.186100 2.060089 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.186100 1.545067 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.186200 0.424097 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.186200 -3.917913 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.186200 2.238808 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.186200 1.679106 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.186300 0.418615 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.186300 -4.226804 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.186300 2.415317 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.186300 1.811487 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.186400 0.412718 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.186400 -4.531523 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.186400 2.589442 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.186400 1.942081 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.186500 0.406412 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.186500 -4.831772 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.186500 2.761013 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.186500 2.070759 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.186600 0.399706 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.186600 -5.127252 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.186600 2.929858 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.186600 2.197394 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.186700 0.392605 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.186700 -5.417672 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.186700 3.095813 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.186700 2.321859 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.186800 0.385122 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.186800 -5.702745 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.186800 3.258711 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.186800 2.444034 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.186900 0.377255 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.186900 -5.982190 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.186900 3.418394 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.186900 2.563796 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.187000 0.369015 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.187000 -6.255731 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.187000 3.574703 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.187000 2.681027 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.187100 0.360411 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.187100 -6.523097 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.187100 3.727484 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.187100 2.795613 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.187200 0.351453 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.187200 -6.784026 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.187200 3.876586 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.187200 2.907440 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.187300 0.342147 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.187300 -7.038260 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.187300 4.021863 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.187300 3.016397 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.187400 0.332503 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.187400 -7.285547 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.187400 4.163170 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.187400 3.122377 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.187500 0.322531 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.187500 -7.525644 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.187500 4.300368 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.187500 3.225276 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.187600 0.312240 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.187600 -7.758314 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.187600 4.433322 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.187600 3.324992 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.187700 0.301642 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.187700 -7.983327 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.187700 4.561901 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.187700 3.421426 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.187800 0.290747 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.187800 -8.200461 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.187800 4.685978 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.187800 3.514483 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.187900 0.279564 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.187900 -8.409503 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.187900 4.805430 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.187900 3.604073 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.188000 0.268100 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.188000 -8.610246 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.188000 4.920140 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.188000 3.690105 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.188100 0.256379 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.188100 -8.802492 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.188100 5.029995 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.188100 3.772496 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.188200 0.244403 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.188200 -8.986051 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.188200 5.134886 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.188200 3.851165 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.188300 0.232186 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.188300 -9.160742 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.188300 5.234710 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.188300 3.926032 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.188400 0.219740 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.188400 -9.326392 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.188400 5.329367 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.188400 3.997025 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.188500 0.207076 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.188500 -9.482838 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.188500 5.418765 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.188500 4.064074 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.188600 0.194208 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.188600 -9.629926 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.188600 5.502815 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.188600 4.127111 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.188700 0.181148 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.188700 -9.767509 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.188700 5.581434 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.188700 4.186075 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.188800 0.167910 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.188800 -9.895453 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.188800 5.654544 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.188800 4.240908 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.188900 0.154506 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.188900 -10.013631 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.188900 5.722075 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.188900 4.291556 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.189000 0.140949 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.189000 -10.121927 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.189000 5.783958 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.189000 4.337969 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.189100 0.127252 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.189100 -10.220233 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.189100 5.840133 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.189100 4.380100 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.189200 0.113430 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.189200 -10.308453 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.189200 5.890545 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.189200 4.417908 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.189300 0.099499 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.189300 -10.386501 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.189300 5.935143 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.189300 4.451358 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.189400 0.085467 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.189400 -10.454298 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.189400 5.973885 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.189400 4.480414 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.189500 0.071351 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.189500 -10.511779 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.189500 6.006731 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.189500 4.505048 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.189600 0.057164 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.189600 -10.558885 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.189600 6.033648 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.189600 4.525236 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.189700 0.042922 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.189700 -10.595570 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.189700 6.054612 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.189700 4.540959 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.189800 0.028637 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.189800 -10.621800 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.189800 6.069600 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.189800 4.552200 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.189900 0.014324 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.189900 -10.637547 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.189900 6.078598 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.189900 4.558949 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.190000 -0.000003 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.190000 -10.642796 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.190000 6.081598 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.190000 4.561198 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.190100 -0.014331 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.190100 -10.637542 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.190100 6.078595 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.190100 4.558947 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.190200 -0.028644 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.190200 -10.621790 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.190200 6.069594 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.190200 4.552196 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.190300 -0.042929 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.190300 -10.595555 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.190300 6.054603 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.190300 4.540952 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.190400 -0.057172 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.190400 -10.558864 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.190400 6.033637 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.190400 4.525228 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.190500 -0.071357 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.190500 -10.511753 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.190500 6.006716 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.190500 4.505037 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.190600 -0.085473 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.190600 -10.454269 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.190600 5.973868 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.190600 4.480401 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.190700 -0.099505 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.190700 -10.386466 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.190700 5.935124 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.190700 4.451343 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.190800 -0.113438 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.190800 -10.308414 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.190800 5.890522 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.190800 4.417892 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.190900 -0.127260 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.190900 -10.220188 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.190900 5.840107 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.190900 4.380080 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.191000 -0.140953 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.191000 -10.121877 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.191000 5.783930 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.191000 4.337947 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.191100 -0.154511 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.191100 -10.013577 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.191100 5.722044 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.191100 4.291533 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.191200 -0.167916 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.191200 -9.895394 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.191200 5.654511 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.191200 4.240883 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.191300 -0.181155 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.191300 -9.767446 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.191300 5.581398 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.191300 4.186048 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.191400 -0.194214 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.191400 -9.629858 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.191400 5.502776 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.191400 4.127082 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.191500 -0.207081 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.191500 -9.482766 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.191500 5.418724 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.191500 4.064043 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.191600 -0.219746 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.191600 -9.326316 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.191600 5.329324 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.191600 3.996993 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.191700 -0.232193 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.191700 -9.160662 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.191700 5.234664 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.191700 3.925998 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.191800 -0.244410 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.191800 -8.985966 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.191800 5.134838 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.191800 3.851128 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.191900 -0.256386 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.191900 -8.802403 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.191900 5.029944 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.191900 3.772458 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.192000 -0.268109 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.192000 -8.610152 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.192000 4.920087 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.192000 3.690065 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.192100 -0.279567 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.192100 -8.409405 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.192100 4.805374 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.192100 3.604031 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.192200 -0.290746 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.192200 -8.200359 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.192200 4.685919 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.192200 3.514440 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.192300 -0.301645 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.192300 -7.983221 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.192300 4.561840 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.192300 3.421380 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.192400 -0.312246 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.192400 -7.758204 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.192400 4.433259 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.192400 3.324944 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.192500 -0.322535 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.192500 -7.525531 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.192500 4.300303 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.192500 3.225227 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.192600 -0.332506 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.192600 -7.285431 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.192600 4.163103 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.192600 3.122327 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.192700 -0.342151 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.192700 -7.038140 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.192700 4.021795 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.192700 3.016346 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.192800 -0.351458 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.192800 -6.783904 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.192800 3.876516 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.192800 2.907387 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.192900 -0.360416 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.192900 -6.522972 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.192900 3.727412 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.192900 2.795559 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.193000 -0.369020 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.193000 -6.255602 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.193000 3.574630 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.193000 2.680972 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.193100 -0.377257 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.193100 -5.982059 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.193100 3.418319 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.193100 2.563740 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.193200 -0.385125 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.193200 -5.702612 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.193200 3.258635 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.193200 2.443976 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.193300 -0.392613 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.193300 -5.417536 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.193300 3.095735 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.193300 2.321801 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.193400 -0.399712 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.193400 -5.127114 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.193400 2.929779 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.193400 2.197335 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.193500 -0.406413 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.193500 -4.831632 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.193500 2.760933 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.193500 2.070699 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.193600 -0.412718 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.193600 -4.531381 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.193600 2.589361 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.193600 1.942020 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.193700 -0.418615 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.193700 -4.226658 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.193700 2.415233 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.193700 1.811425 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.193800 -0.424099 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.193800 -3.917763 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.193800 2.238722 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.193800 1.679041 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.193900 -0.429166 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.193900 -3.605004 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.193900 2.060002 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.193900 1.545002 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.194000 -0.433806 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.194000 -3.288687 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.194000 1.879250 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.194000 1.409437 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.194100 -0.438022 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.194100 -2.969125 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.194100 1.696643 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.194100 1.272482 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.194200 -0.441800 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.194200 -2.646632 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.194200 1.512361 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.194200 1.134271 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.194300 -0.445146 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.194300 -2.321527 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.194300 1.326587 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.194300 0.994940 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.194400 -0.448052 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.194400 -1.994131 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.194400 1.139503 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.194400 0.854627 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.194500 -0.450511 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.194500 -1.664766 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.194500 0.951295 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.194500 0.713471 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.194600 -0.452532 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.194600 -1.333757 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.194600 0.762147 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.194600 0.571610 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.194700 -0.454105 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.194700 -1.001432 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.194700 0.572247 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.194700 0.429185 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.194800 -0.455229 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.194800 -0.668117 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.194800 0.381781 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.194800 0.286336 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.194900 -0.455904 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.194900 -0.334143 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.194900 0.190939 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.194900 0.143204 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.195000 -0.456129 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.195000 0.000159 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.195000 -0.000091 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.195000 -0.000068 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.195100 -0.455902 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.195100 0.334461 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.195100 -0.191120 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.195100 -0.143340 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.195200 -0.455229 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.195200 0.668433 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.195200 -0.381962 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.195200 -0.286471 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.195300 -0.454105 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.195300 1.001747 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.195300 -0.572427 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.195300 -0.429320 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.195400 -0.452532 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.195400 1.334072 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.195400 -0.762327 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.195400 -0.571745 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.195500 -0.450513 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.195500 1.665081 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.195500 -0.951475 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.195500 -0.713606 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.195600 -0.448048 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.195600 1.994445 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.195600 -1.139683 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.195600 -0.854762 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.195700 -0.445141 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.195700 2.321841 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.195700 -1.326766 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.195700 -0.995075 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.195800 -0.441799 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.195800 2.646946 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.195800 -1.512540 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.195800 -1.134405 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.195900 -0.438018 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.195900 2.969438 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.195900 -1.696821 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.195900 -1.272616 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.196000 -0.433804 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.196000 3.288998 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.196000 -1.879428 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.196000 -1.409571 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.196100 -0.429165 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.196100 3.605314 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.196100 -2.060179 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.196100 -1.545134 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.196200 -0.424097 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.196200 3.918071 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.196200 -2.238898 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.196200 -1.679173 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.196300 -0.418615 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.196300 4.226961 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.196300 -2.415407 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.196300 -1.811555 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.196400 -0.412718 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.196400 4.531681 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.196400 -2.589532 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.196400 -1.942149 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.196500 -0.406412 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.196500 4.831929 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.196500 -2.761103 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.196500 -2.070827 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.196600 -0.399706 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.196600 5.127410 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.196600 -2.929948 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.196600 -2.197461 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.196700 -0.392605 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.196700 5.417829 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.196700 -3.095902 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.196700 -2.321927 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.196800 -0.385122 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.196800 5.702902 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.196800 -3.258801 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.196800 -2.444101 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.196900 -0.377255 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.196900 5.982347 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.196900 -3.418484 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.196900 -2.563863 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.197000 -0.369015 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.197000 6.255888 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.197000 -3.574793 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.197000 -2.681095 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.197100 -0.360411 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.197100 6.523254 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.197100 -3.727574 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.197100 -2.795680 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.197200 -0.351453 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.197200 6.784183 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.197200 -3.876676 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.197200 -2.907507 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.197300 -0.342147 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.197300 7.038417 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.197300 -4.021953 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.197300 -3.016465 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.197400 -0.332503 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.197400 7.285705 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.197400 -4.163260 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.197400 -3.122445 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.197500 -0.322531 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.197500 7.525802 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.197500 -4.300458 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.197500 -3.225344 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.197600 -0.312240 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.197600 7.758471 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.197600 -4.433412 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.197600 -3.325059 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.197700 -0.301642 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.197700 7.983484 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.197700 -4.561991 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.197700 -3.421493 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.197800 -0.290747 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.197800 8.200619 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.197800 -4.686068 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.197800 -3.514551 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.197900 -0.279564 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.197900 8.409660 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.197900 -4.805520 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.197900 -3.604140 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.198000 -0.268100 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.198000 8.610403 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.198000 -4.920230 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.198000 -3.690173 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.198100 -0.256379 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.198100 8.802649 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.198100 -5.030085 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.198100 -3.772564 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.198200 -0.244403 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.198200 8.986208 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.198200 -5.134976 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.198200 -3.851232 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.198300 -0.232186 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.198300 9.160899 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.198300 -5.234799 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.198300 -3.926100 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.198400 -0.219740 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.198400 9.326549 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.198400 -5.329457 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.198400 -3.997093 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.198500 -0.207076 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.198500 9.482996 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.198500 -5.418855 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.198500 -4.064141 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.198600 -0.194208 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.198600 9.630083 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.198600 -5.502904 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.198600 -4.127178 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.198700 -0.181148 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.198700 9.767666 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.198700 -5.581523 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.198700 -4.186143 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.198800 -0.167910 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.198800 9.895610 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.198800 -5.654634 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.198800 -4.240976 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.198900 -0.154506 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.198900 10.013788 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.198900 -5.722165 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.198900 -4.291624 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.199000 -0.140949 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.199000 10.122084 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.199000 -5.784048 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.199000 -4.338036 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.199100 -0.127252 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.199100 10.220390 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.199100 -5.840223 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.199100 -4.380167 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.199200 -0.113430 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.199200 10.308610 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.199200 -5.890635 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.199200 -4.417976 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.199300 -0.099499 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.199300 10.386658 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.199300 -5.935233 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.199300 -4.451425 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.199400 -0.085467 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.199400 10.454456 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.199400 -5.973975 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.199400 -4.480481 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.199500 -0.071351 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.199500 10.511936 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.199500 -6.006821 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.199500 -4.505115 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.199600 -0.057164 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.199600 10.559042 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.199600 -6.033738 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.199600 -4.525304 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.199700 -0.042922 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.199700 10.595728 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.199700 -6.054702 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.199700 -4.541026 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.199800 -0.028637 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.199800 10.621957 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.199800 -6.069690 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.199800 -4.552267 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.199900 -0.014324 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.199900 10.637704 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.199900 -6.078688 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.199900 -4.559016 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.200000 0.000003 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.200000 10.642953 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.200000 -6.081688 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.200000 -4.561266 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.200100 0.014331 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.200100 10.637699 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.200100 -6.078685 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.200100 -4.559014 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.200200 0.028644 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.200200 10.621947 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.200200 -6.069684 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.200200 -4.552263 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.200300 0.042929 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.200300 10.595713 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.200300 -6.054693 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.200300 -4.541020 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.200400 0.057172 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.200400 10.559022 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.200400 -6.033727 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.200400 -4.525295 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.200500 0.071357 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.200500 10.511910 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.200500 -6.006806 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.200500 -4.505104 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.200600 0.085473 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.200600 10.454426 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.200600 -5.973958 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.200600 -4.480468 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.200700 0.099505 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.200700 10.386624 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.200700 -5.935213 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.200700 -4.451410 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.200800 0.113438 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.200800 10.308571 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.200800 -5.890612 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.200800 -4.417959 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.200900 0.127260 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.200900 10.220345 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.200900 -5.840197 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.200900 -4.380148 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.201000 0.140953 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.201000 10.122034 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.201000 -5.784019 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.201000 -4.338015 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.201100 0.154511 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.201100 10.013734 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.201100 -5.722134 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.201100 -4.291600 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.201200 0.167916 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.201200 9.895552 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.201200 -5.654601 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.201200 -4.240951 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.201300 0.181155 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.201300 9.767603 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.201300 -5.581487 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.201300 -4.186116 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.201400 0.194214 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.201400 9.630015 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.201400 -5.502866 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.201400 -4.127149 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.201500 0.207081 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.201500 9.482924 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.201500 -5.418814 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.201500 -4.064110 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.201600 0.219746 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.201600 9.326473 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.201600 -5.329413 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.201600 -3.997060 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.201700 0.232193 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.201700 9.160819 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.201700 -5.234754 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.201700 -3.926065 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.201800 0.244410 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.201800 8.986124 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.201800 -5.134928 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.201800 -3.851196 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.201900 0.256386 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.201900 8.802560 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.201900 -5.030034 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.201900 -3.772526 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.202000 0.268109 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.202000 8.610309 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.202000 -4.920177 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.202000 -3.690133 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.202100 0.279567 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.202100 8.409562 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.202100 -4.805464 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.202100 -3.604098 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.202200 0.290746 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.202200 8.200516 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.202200 -4.686009 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.202200 -3.514507 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.202300 0.301645 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.202300 7.983378 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.202300 -4.561930 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.202300 -3.421448 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.202400 0.312247 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.202400 7.758361 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.202400 -4.433349 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.202400 -3.325012 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.202500 0.322535 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.202500 7.525688 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.202500 -4.300393 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.202500 -3.225295 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.202600 0.332506 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.202600 7.285588 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.202600 -4.163193 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.202600 -3.122395 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.202700 0.342151 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.202700 7.038298 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.202700 -4.021884 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.202700 -3.016413 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.202800 0.351458 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.202800 6.784061 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.202800 -3.876606 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.202800 -2.907455 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.202900 0.360416 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.202900 6.523129 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.202900 -3.727502 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.202900 -2.795627 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.203000 0.369020 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.203000 6.255759 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.203000 -3.574720 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.203000 -2.681040 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.203100 0.377257 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.203100 5.982216 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.203100 -3.418409 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.203100 -2.563807 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.203200 0.385125 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.203200 5.702769 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.203200 -3.258725 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.203200 -2.444044 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.203300 0.392613 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.203300 5.417694 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.203300 -3.095825 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.203300 -2.321869 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.203400 0.399712 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.203400 5.127271 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.203400 -2.929869 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.203400 -2.197402 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.203500 0.406413 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.203500 4.831789 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.203500 -2.761022 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.203500 -2.070767 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.203600 0.412718 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.203600 4.531538 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.203600 -2.589451 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.203600 -1.942088 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.203700 0.418615 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.203700 4.226815 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.203700 -2.415323 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.203700 -1.811492 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.203800 0.424099 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.203800 3.917920 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.203800 -2.238812 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.203800 -1.679109 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.203900 0.429166 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.203900 3.605161 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.203900 -2.060092 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.203900 -1.545069 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.204000 0.433806 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.204000 3.288845 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.204000 -1.879340 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.204000 -1.409505 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.204100 0.438022 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.204100 2.969282 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.204100 -1.696733 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.204100 -1.272550 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.204200 0.441800 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.204200 2.646790 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.204200 -1.512451 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.204200 -1.134338 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.204300 0.445146 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.204300 2.321685 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.204300 -1.326677 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.204300 -0.995008 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.204400 0.448052 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.204400 1.994288 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.204400 -1.139593 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.204400 -0.854695 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.204500 0.450511 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.204500 1.664923 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.204500 -0.951385 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.204500 -0.713538 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.204600 0.452532 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.204600 1.333914 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.204600 -0.762237 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.204600 -0.571678 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.204700 0.454105 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.204700 1.001589 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.204700 -0.572337 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.204700 -0.429252 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.204800 0.455229 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.204800 0.668275 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.204800 -0.381871 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.204800 -0.286403 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.204900 0.455904 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.204900 0.334301 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.204900 -0.191029 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.204900 -0.143272 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.205000 0.456129 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.205000 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.205000 0.000001 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.205000 0.000001 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.205100 0.455902 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.205100 -0.334304 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.205100 0.191031 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.205100 0.143273 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.205200 0.455229 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.205200 -0.668275 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.205200 0.381872 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.205200 0.286404 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.205300 0.454105 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.205300 -1.001590 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.205300 0.572337 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.205300 0.429253 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.205400 0.452532 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.205400 -1.333915 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.205400 0.762237 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.205400 0.571678 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.205500 0.450513 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.205500 -1.664923 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.205500 0.951385 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.205500 0.713539 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.205600 0.448048 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.205600 -1.994288 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.205600 1.139593 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.205600 0.854695 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.205700 0.445141 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.205700 -2.321684 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.205700 1.326677 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.205700 0.995007 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.205800 0.441799 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.205800 -2.646788 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.205800 1.512451 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.205800 1.134338 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.205900 0.438018 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.205900 -2.969280 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.205900 1.696732 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.205900 1.272549 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.206000 0.433804 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.206000 -3.288841 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.206000 1.879338 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.206000 1.409503 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.206100 0.429165 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.206100 -3.605156 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.206100 2.060089 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.206100 1.545067 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.206200 0.424097 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.206200 -3.917913 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.206200 2.238808 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.206200 1.679106 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.206300 0.418615 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.206300 -4.226804 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.206300 2.415317 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.206300 1.811487 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.206400 0.412718 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.206400 -4.531523 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.206400 2.589442 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.206400 1.942081 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.206500 0.406412 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.206500 -4.831772 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.206500 2.761013 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.206500 2.070759 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.206600 0.399706 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.206600 -5.127252 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.206600 2.929858 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.206600 2.197394 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.206700 0.392605 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.206700 -5.417672 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.206700 3.095813 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.206700 2.321859 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.206800 0.385122 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.206800 -5.702745 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.206800 3.258711 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.206800 2.444034 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.206900 0.377255 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.206900 -5.982190 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.206900 3.418394 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.206900 2.563796 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.207000 0.369015 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.207000 -6.255731 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.207000 3.574703 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.207000 2.681027 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.207100 0.360411 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.207100 -6.523097 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.207100 3.727484 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.207100 2.795613 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.207200 0.351453 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.207200 -6.784026 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.207200 3.876586 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.207200 2.907440 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.207300 0.342147 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.207300 -7.038260 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.207300 4.021863 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.207300 3.016397 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.207400 0.332503 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.207400 -7.285547 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.207400 4.163170 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.207400 3.122377 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.207500 0.322531 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.207500 -7.525644 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.207500 4.300368 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.207500 3.225276 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.207600 0.312240 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.207600 -7.758314 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.207600 4.433322 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.207600 3.324992 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.207700 0.301642 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.207700 -7.983327 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.207700 4.561901 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.207700 3.421426 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.207800 0.290747 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.207800 -8.200462 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.207800 4.685978 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.207800 3.514484 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.207900 0.279564 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.207900 -8.409503 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.207900 4.805430 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.207900 3.604073 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.208000 0.268100 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.208000 -8.610246 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.208000 4.920140 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.208000 3.690105 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.208100 0.256379 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.208100 -8.802492 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.208100 5.029995 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.208100 3.772496 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.208200 0.244403 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.208200 -8.986051 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.208200 5.134886 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.208200 3.851165 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.208300 0.232186 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.208300 -9.160742 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.208300 5.234710 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.208300 3.926032 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.208400 0.219740 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.208400 -9.326392 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.208400 5.329367 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.208400 3.997025 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.208500 0.207076 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.208500 -9.482838 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.208500 5.418765 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.208500 4.064074 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.208600 0.194208 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.208600 -9.629926 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.208600 5.502815 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.208600 4.127111 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.208700 0.181148 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.208700 -9.767509 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.208700 5.581434 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.208700 4.186075 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.208800 0.167910 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.208800 -9.895453 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.208800 5.654544 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.208800 4.240908 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.208900 0.154506 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.208900 -10.013631 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.208900 5.722075 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.208900 4.291556 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.209000 0.140949 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.209000 -10.121927 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.209000 5.783958 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.209000 4.337969 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.209100 0.127252 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.209100 -10.220233 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.209100 5.840133 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.209100 4.380100 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.209200 0.113430 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.209200 -10.308453 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.209200 5.890545 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.209200 4.417908 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.209300 0.099499 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.209300 -10.386501 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.209300 5.935143 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.209300 4.451358 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.209400 0.085467 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.209400 -10.454298 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.209400 5.973885 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.209400 4.480414 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.209500 0.071351 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.209500 -10.511779 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.209500 6.006731 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.209500 4.505048 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.209600 0.057164 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.209600 -10.558885 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.209600 6.033648 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.209600 4.525236 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.209700 0.042922 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.209700 -10.595570 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.209700 6.054612 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.209700 4.540959 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.209800 0.028637 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.209800 -10.621800 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.209800 6.069600 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.209800 4.552200 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.209900 0.014324 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.209900 -10.637547 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.209900 6.078598 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.209900 4.558949 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.210000 -0.000003 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.210000 -10.642796 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.210000 6.081598 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.210000 4.561198 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.210100 -0.014331 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.210100 -10.637542 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.210100 6.078595 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.210100 4.558947 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.210200 -0.028644 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.210200 -10.621790 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.210200 6.069594 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.210200 4.552196 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.210300 -0.042929 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.210300 -10.595555 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.210300 6.054603 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.210300 4.540952 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.210400 -0.057172 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.210400 -10.558864 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.210400 6.033637 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.210400 4.525228 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.210500 -0.071357 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.210500 -10.511753 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.210500 6.006716 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.210500 4.505037 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.210600 -0.085473 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.210600 -10.454269 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.210600 5.973868 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.210600 4.480401 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.210700 -0.099505 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.210700 -10.386466 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.210700 5.935124 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.210700 4.451343 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.210800 -0.113438 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.210800 -10.308414 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.210800 5.890522 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.210800 4.417892 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.210900 -0.127260 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.210900 -10.220188 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.210900 5.840107 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.210900 4.380080 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.211000 -0.140953 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.211000 -10.121877 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.211000 5.783930 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.211000 4.337947 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.211100 -0.154511 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.211100 -10.013577 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.211100 5.722044 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.211100 4.291533 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.211200 -0.167916 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.211200 -9.895394 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.211200 5.654511 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.211200 4.240883 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.211300 -0.181155 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.211300 -9.767446 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.211300 5.581398 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.211300 4.186048 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.211400 -0.194214 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.211400 -9.629858 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.211400 5.502776 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.211400 4.127082 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.211500 -0.207081 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.211500 -9.482766 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.211500 5.418724 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.211500 4.064043 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.211600 -0.219746 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.211600 -9.326316 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.211600 5.329324 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.211600 3.996993 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.211700 -0.232193 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.211700 -9.160662 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.211700 5.234664 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.211700 3.925998 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.211800 -0.244410 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.211800 -8.985966 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.211800 5.134838 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.211800 3.851128 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.211900 -0.256386 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.211900 -8.802403 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.211900 5.029944 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.211900 3.772458 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.212000 -0.268109 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.212000 -8.610152 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.212000 4.920087 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.212000 3.690065 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.212100 -0.279567 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.212100 -8.409405 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.212100 4.805374 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.212100 3.604031 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.212200 -0.290746 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.212200 -8.200359 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.212200 4.685919 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.212200 3.514440 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.212300 -0.301645 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.212300 -7.983221 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.212300 4.561840 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.212300 3.421380 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.212400 -0.312246 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.212400 -7.758204 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.212400 4.433259 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.212400 3.324945 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.212500 -0.322535 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.212500 -7.525531 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.212500 4.300303 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.212500 3.225227 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.212600 -0.332506 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.212600 -7.285431 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.212600 4.163103 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.212600 3.122327 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.212700 -0.342151 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.212700 -7.038140 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.212700 4.021795 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.212700 3.016346 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.212800 -0.351458 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.212800 -6.783904 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.212800 3.876516 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.212800 2.907387 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.212900 -0.360416 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.212900 -6.522972 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.212900 3.727412 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.212900 2.795559 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.213000 -0.369020 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.213000 -6.255602 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.213000 3.574630 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.213000 2.680972 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.213100 -0.377257 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.213100 -5.982059 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.213100 3.418319 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.213100 2.563740 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.213200 -0.385125 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.213200 -5.702612 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.213200 3.258635 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.213200 2.443976 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.213300 -0.392613 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.213300 -5.417536 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.213300 3.095735 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.213300 2.321801 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.213400 -0.399712 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.213400 -5.127114 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.213400 2.929779 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.213400 2.197335 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.213500 -0.406413 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.213500 -4.831632 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.213500 2.760933 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.213500 2.070699 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.213600 -0.412718 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.213600 -4.531381 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.213600 2.589361 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.213600 1.942020 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.213700 -0.418615 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.213700 -4.226658 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.213700 2.415233 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.213700 1.811425 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.213800 -0.424099 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.213800 -3.917763 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.213800 2.238722 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.213800 1.679041 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.213900 -0.429166 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.213900 -3.605004 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.213900 2.060002 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.213900 1.545002 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.214000 -0.433806 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.214000 -3.288687 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.214000 1.879250 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.214000 1.409437 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.214100 -0.438022 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.214100 -2.969125 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.214100 1.696643 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.214100 1.272482 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.214200 -0.441800 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.214200 -2.646632 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.214200 1.512361 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.214200 1.134271 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.214300 -0.445146 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.214300 -2.321527 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.214300 1.326587 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.214300 0.994940 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.214400 -0.448052 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.214400 -1.994131 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.214400 1.139503 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.214400 0.854627 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.214500 -0.450511 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.214500 -1.664766 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.214500 0.951295 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.214500 0.713471 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.214600 -0.452532 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.214600 -1.333757 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.214600 0.762147 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.214600 0.571610 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.214700 -0.454105 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.214700 -1.001432 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.214700 0.572247 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.214700 0.429185 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.214800 -0.455229 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.214800 -0.668117 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.214800 0.381781 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.214800 0.286336 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.214900 -0.455904 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.214900 -0.334143 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.214900 0.190939 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.214900 0.143204 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.215000 -0.456129 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.215000 0.000159 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.215000 -0.000091 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.215000 -0.000068 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.215100 -0.455902 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.215100 0.334461 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.215100 -0.191120 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.215100 -0.143340 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.215200 -0.455229 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.215200 0.668433 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.215200 -0.381962 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.215200 -0.286471 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.215300 -0.454105 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.215300 1.001747 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.215300 -0.572427 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.215300 -0.429320 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.215400 -0.452532 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.215400 1.334072 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.215400 -0.762327 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.215400 -0.571745 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.215500 -0.450513 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.215500 1.665081 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.215500 -0.951475 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.215500 -0.713606 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.215600 -0.448048 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.215600 1.994445 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.215600 -1.139683 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.215600 -0.854762 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.215700 -0.445141 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.215700 2.321841 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.215700 -1.326766 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.215700 -0.995075 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.215800 -0.441799 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.215800 2.646946 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.215800 -1.512540 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.215800 -1.134405 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.215900 -0.438018 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.215900 2.969438 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.215900 -1.696821 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.215900 -1.272616 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.216000 -0.433804 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.216000 3.288998 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.216000 -1.879428 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.216000 -1.409571 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.216100 -0.429165 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.216100 3.605314 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.216100 -2.060179 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.216100 -1.545134 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.216200 -0.424097 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.216200 3.918071 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.216200 -2.238898 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.216200 -1.679173 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.216300 -0.418615 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.216300 4.226961 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.216300 -2.415407 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.216300 -1.811555 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.216400 -0.412718 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.216400 4.531681 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.216400 -2.589532 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.216400 -1.942149 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.216500 -0.406412 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.216500 4.831929 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.216500 -2.761103 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.216500 -2.070827 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.216600 -0.399706 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.216600 5.127410 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.216600 -2.929948 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.216600 -2.197461 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.216700 -0.392605 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.216700 5.417829 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.216700 -3.095902 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.216700 -2.321927 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.216800 -0.385122 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.216800 5.702902 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.216800 -3.258801 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.216800 -2.444101 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.216900 -0.377255 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.216900 5.982347 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.216900 -3.418484 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.216900 -2.563863 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.217000 -0.369015 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.217000 6.255888 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.217000 -3.574793 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.217000 -2.681095 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.217100 -0.360411 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.217100 6.523254 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.217100 -3.727574 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.217100 -2.795680 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.217200 -0.351453 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.217200 6.784183 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.217200 -3.876676 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.217200 -2.907507 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.217300 -0.342147 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.217300 7.038417 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.217300 -4.021953 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.217300 -3.016465 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.217400 -0.332503 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.217400 7.285705 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.217400 -4.163260 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.217400 -3.122445 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.217500 -0.322531 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.217500 7.525802 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.217500 -4.300458 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.217500 -3.225344 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.217600 -0.312240 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.217600 7.758471 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.217600 -4.433412 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.217600 -3.325059 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.217700 -0.301642 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.217700 7.983484 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.217700 -4.561991 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.217700 -3.421493 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.217800 -0.290747 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.217800 8.200619 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.217800 -4.686068 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.217800 -3.514551 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.217900 -0.279564 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.217900 8.409660 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.217900 -4.805520 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.217900 -3.604140 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.218000 -0.268100 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.218000 8.610403 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.218000 -4.920230 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.218000 -3.690173 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.218100 -0.256379 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.218100 8.802649 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.218100 -5.030085 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.218100 -3.772564 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.218200 -0.244403 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.218200 8.986208 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.218200 -5.134976 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.218200 -3.851232 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.218300 -0.232186 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.218300 9.160899 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.218300 -5.234799 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.218300 -3.926100 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.218400 -0.219740 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.218400 9.326549 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.218400 -5.329457 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.218400 -3.997093 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.218500 -0.207076 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.218500 9.482996 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.218500 -5.418855 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.218500 -4.064141 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.218600 -0.194208 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.218600 9.630083 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.218600 -5.502904 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.218600 -4.127178 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.218700 -0.181148 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.218700 9.767666 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.218700 -5.581523 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.218700 -4.186143 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.218800 -0.167910 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.218800 9.895610 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.218800 -5.654634 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.218800 -4.240976 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.218900 -0.154506 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.218900 10.013788 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.218900 -5.722165 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.218900 -4.291624 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.219000 -0.140949 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.219000 10.122084 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.219000 -5.784048 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.219000 -4.338036 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.219100 -0.127252 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.219100 10.220390 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.219100 -5.840223 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.219100 -4.380167 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.219200 -0.113430 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.219200 10.308610 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.219200 -5.890635 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.219200 -4.417976 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.219300 -0.099499 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.219300 10.386658 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.219300 -5.935233 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.219300 -4.451425 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.219400 -0.085467 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.219400 10.454456 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.219400 -5.973975 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.219400 -4.480481 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.219500 -0.071351 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.219500 10.511936 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.219500 -6.006821 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.219500 -4.505115 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.219600 -0.057164 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.219600 10.559042 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.219600 -6.033738 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.219600 -4.525304 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.219700 -0.042922 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.219700 10.595728 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.219700 -6.054702 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.219700 -4.541026 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.219800 -0.028637 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.219800 10.621957 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.219800 -6.069690 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.219800 -4.552267 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.219900 -0.014324 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.219900 10.637704 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.219900 -6.078688 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.219900 -4.559016 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.220000 0.000003 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.220000 10.642953 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.220000 -6.081688 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.220000 -4.561266 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.220100 0.014331 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.220100 10.637699 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.220100 -6.078685 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.220100 -4.559014 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.220200 0.028644 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.220200 10.621947 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.220200 -6.069684 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.220200 -4.552263 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.220300 0.042929 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.220300 10.595713 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.220300 -6.054693 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.220300 -4.541020 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.220400 0.057172 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.220400 10.559022 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.220400 -6.033727 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.220400 -4.525295 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.220500 0.071357 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.220500 10.511910 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.220500 -6.006806 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.220500 -4.505104 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.220600 0.085473 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.220600 10.454426 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.220600 -5.973958 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.220600 -4.480468 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.220700 0.099505 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.220700 10.386624 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.220700 -5.935213 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.220700 -4.451410 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.220800 0.113438 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.220800 10.308571 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.220800 -5.890612 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.220800 -4.417959 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.220900 0.127260 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.220900 10.220345 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.220900 -5.840197 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.220900 -4.380148 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.221000 0.140953 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.221000 10.122034 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.221000 -5.784019 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.221000 -4.338015 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.221100 0.154511 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.221100 10.013734 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.221100 -5.722134 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.221100 -4.291600 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.221200 0.167916 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.221200 9.895552 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.221200 -5.654601 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.221200 -4.240951 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.221300 0.181155 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.221300 9.767603 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.221300 -5.581487 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.221300 -4.186116 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.221400 0.194214 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.221400 9.630015 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.221400 -5.502866 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.221400 -4.127149 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.221500 0.207081 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.221500 9.482924 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.221500 -5.418814 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.221500 -4.064110 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.221600 0.219746 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.221600 9.326473 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.221600 -5.329413 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.221600 -3.997060 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.221700 0.232193 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.221700 9.160819 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.221700 -5.234754 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.221700 -3.926065 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.221800 0.244410 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.221800 8.986124 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.221800 -5.134928 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.221800 -3.851196 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.221900 0.256386 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.221900 8.802560 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.221900 -5.030034 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.221900 -3.772526 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.222000 0.268109 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.222000 8.610309 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.222000 -4.920177 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.222000 -3.690133 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.222100 0.279567 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.222100 8.409562 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.222100 -4.805464 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.222100 -3.604098 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.222200 0.290746 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.222200 8.200516 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.222200 -4.686009 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.222200 -3.514507 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.222300 0.301645 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.222300 7.983378 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.222300 -4.561930 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.222300 -3.421448 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.222400 0.312247 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.222400 7.758361 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.222400 -4.433349 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.222400 -3.325012 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.222500 0.322535 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.222500 7.525688 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.222500 -4.300393 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.222500 -3.225295 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.222600 0.332506 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.222600 7.285588 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.222600 -4.163193 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.222600 -3.122395 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.222700 0.342151 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.222700 7.038298 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.222700 -4.021884 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.222700 -3.016413 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.222800 0.351458 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.222800 6.784061 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.222800 -3.876606 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.222800 -2.907455 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.222900 0.360416 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.222900 6.523129 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.222900 -3.727502 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.222900 -2.795627 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.223000 0.369020 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.223000 6.255759 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.223000 -3.574720 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.223000 -2.681040 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.223100 0.377257 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.223100 5.982216 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.223100 -3.418409 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.223100 -2.563807 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.223200 0.385125 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.223200 5.702769 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.223200 -3.258725 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.223200 -2.444044 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.223300 0.392613 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.223300 5.417694 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.223300 -3.095825 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.223300 -2.321869 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.223400 0.399712 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.223400 5.127271 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.223400 -2.929869 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.223400 -2.197402 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.223500 0.406413 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.223500 4.831789 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.223500 -2.761022 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.223500 -2.070767 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.223600 0.412718 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.223600 4.531538 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.223600 -2.589451 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.223600 -1.942088 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.223700 0.418615 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.223700 4.226815 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.223700 -2.415323 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.223700 -1.811492 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.223800 0.424099 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.223800 3.917920 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.223800 -2.238812 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.223800 -1.679109 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.223900 0.429166 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.223900 3.605161 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.223900 -2.060092 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.223900 -1.545069 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.224000 0.433806 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.224000 3.288845 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.224000 -1.879340 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.224000 -1.409505 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.224100 0.438022 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.224100 2.969282 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.224100 -1.696733 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.224100 -1.272550 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.224200 0.441800 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.224200 2.646790 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.224200 -1.512451 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.224200 -1.134338 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.224300 0.445146 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.224300 2.321685 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.224300 -1.326677 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.224300 -0.995008 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.224400 0.448052 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.224400 1.994288 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.224400 -1.139593 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.224400 -0.854695 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.224500 0.450511 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.224500 1.664923 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.224500 -0.951385 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.224500 -0.713538 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.224600 0.452532 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.224600 1.333914 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.224600 -0.762237 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.224600 -0.571678 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.224700 0.454105 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.224700 1.001589 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.224700 -0.572336 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.224700 -0.429252 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.224800 0.455229 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.224800 0.668275 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.224800 -0.381871 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.224800 -0.286403 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.224900 0.455904 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.224900 0.334301 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.224900 -0.191029 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.224900 -0.143272 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.225000 0.456129 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.225000 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.225000 0.000001 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.225000 0.000001 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.225100 0.455902 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.225100 -0.334304 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.225100 0.191031 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.225100 0.143273 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.225200 0.455229 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.225200 -0.668275 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.225200 0.381872 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.225200 0.286404 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.225300 0.454105 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.225300 -1.001590 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.225300 0.572337 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.225300 0.429253 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.225400 0.452532 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.225400 -1.333915 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.225400 0.762237 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.225400 0.571678 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.225500 0.450513 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.225500 -1.664923 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.225500 0.951385 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.225500 0.713539 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.225600 0.448048 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.225600 -1.994288 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.225600 1.139593 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.225600 0.854695 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.225700 0.445141 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.225700 -2.321684 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.225700 1.326677 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.225700 0.995007 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.225800 0.441799 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.225800 -2.646788 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.225800 1.512451 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.225800 1.134338 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.225900 0.438018 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.225900 -2.969280 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.225900 1.696732 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.225900 1.272549 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.226000 0.433804 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.226000 -3.288841 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.226000 1.879338 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.226000 1.409503 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.226100 0.429165 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.226100 -3.605156 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.226100 2.060089 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.226100 1.545067 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.226200 0.424097 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.226200 -3.917913 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.226200 2.238808 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.226200 1.679106 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.226300 0.418615 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.226300 -4.226804 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.226300 2.415317 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.226300 1.811487 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.226400 0.412718 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.226400 -4.531523 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.226400 2.589442 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.226400 1.942081 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.226500 0.406412 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.226500 -4.831772 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.226500 2.761013 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.226500 2.070759 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.226600 0.399706 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.226600 -5.127252 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.226600 2.929858 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.226600 2.197394 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.226700 0.392605 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.226700 -5.417672 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.226700 3.095813 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.226700 2.321859 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.226800 0.385122 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.226800 -5.702745 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.226800 3.258711 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.226800 2.444034 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.226900 0.377255 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.226900 -5.982190 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.226900 3.418394 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.226900 2.563796 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.227000 0.369015 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.227000 -6.255731 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.227000 3.574703 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.227000 2.681027 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.227100 0.360411 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.227100 -6.523097 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.227100 3.727484 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.227100 2.795613 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.227200 0.351453 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.227200 -6.784026 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.227200 3.876586 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.227200 2.907440 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.227300 0.342147 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.227300 -7.038260 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.227300 4.021863 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.227300 3.016397 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.227400 0.332503 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.227400 -7.285547 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.227400 4.163170 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.227400 3.122377 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.227500 0.322531 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.227500 -7.525644 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.227500 4.300368 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.227500 3.225276 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.227600 0.312240 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.227600 -7.758314 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.227600 4.433322 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.227600 3.324992 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.227700 0.301642 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.227700 -7.983327 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.227700 4.561901 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.227700 3.421426 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.227800 0.290747 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.227800 -8.200462 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.227800 4.685978 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.227800 3.514484 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.227900 0.279564 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.227900 -8.409503 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.227900 4.805430 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.227900 3.604073 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.228000 0.268100 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.228000 -8.610246 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.228000 4.920140 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.228000 3.690105 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.228100 0.256379 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.228100 -8.802492 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.228100 5.029995 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.228100 3.772496 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.228200 0.244403 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.228200 -8.986051 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.228200 5.134886 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.228200 3.851165 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.228300 0.232186 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.228300 -9.160742 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.228300 5.234710 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.228300 3.926032 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.228400 0.219740 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.228400 -9.326392 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.228400 5.329367 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.228400 3.997025 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.228500 0.207076 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.228500 -9.482838 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.228500 5.418765 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.228500 4.064074 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.228600 0.194208 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.228600 -9.629926 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.228600 5.502815 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.228600 4.127111 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.228700 0.181148 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.228700 -9.767509 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.228700 5.581434 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.228700 4.186075 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.228800 0.167910 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.228800 -9.895453 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.228800 5.654544 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.228800 4.240908 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.228900 0.154506 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.228900 -10.013631 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.228900 5.722075 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.228900 4.291556 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.229000 0.140949 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.229000 -10.121927 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.229000 5.783958 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.229000 4.337969 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.229100 0.127252 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.229100 -10.220233 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.229100 5.840133 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.229100 4.380100 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.229200 0.113430 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.229200 -10.308453 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.229200 5.890545 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.229200 4.417908 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.229300 0.099499 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.229300 -10.386501 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.229300 5.935143 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.229300 4.451358 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.229400 0.085467 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.229400 -10.454298 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.229400 5.973885 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.229400 4.480414 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.229500 0.071351 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.229500 -10.511779 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.229500 6.006731 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.229500 4.505048 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.229600 0.057164 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.229600 -10.558885 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.229600 6.033648 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.229600 4.525236 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.229700 0.042922 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.229700 -10.595570 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.229700 6.054612 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.229700 4.540959 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.229800 0.028637 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.229800 -10.621800 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.229800 6.069600 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.229800 4.552200 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.229900 0.014324 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.229900 -10.637547 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.229900 6.078598 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.229900 4.558949 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.230000 -0.000003 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.230000 -10.642796 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.230000 6.081598 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.230000 4.561198 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.230100 -0.014331 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.230100 -10.637542 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.230100 6.078595 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.230100 4.558947 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.230200 -0.028644 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.230200 -10.621790 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.230200 6.069594 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.230200 4.552196 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.230300 -0.042929 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.230300 -10.595555 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.230300 6.054603 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.230300 4.540952 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.230400 -0.057172 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.230400 -10.558864 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.230400 6.033637 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.230400 4.525228 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.230500 -0.071357 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.230500 -10.511753 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.230500 6.006716 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.230500 4.505037 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.230600 -0.085473 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.230600 -10.454269 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.230600 5.973868 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.230600 4.480401 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.230700 -0.099505 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.230700 -10.386466 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.230700 5.935124 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.230700 4.451343 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.230800 -0.113438 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.230800 -10.308414 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.230800 5.890522 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.230800 4.417892 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.230900 -0.127260 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.230900 -10.220188 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.230900 5.840107 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.230900 4.380080 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.231000 -0.140953 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.231000 -10.121877 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.231000 5.783930 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.231000 4.337947 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.231100 -0.154511 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.231100 -10.013577 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.231100 5.722044 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.231100 4.291533 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.231200 -0.167916 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.231200 -9.895394 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.231200 5.654511 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.231200 4.240883 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.231300 -0.181155 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.231300 -9.767446 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.231300 5.581398 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.231300 4.186048 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.231400 -0.194214 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.231400 -9.629858 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.231400 5.502776 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.231400 4.127082 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.231500 -0.207081 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.231500 -9.482766 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.231500 5.418724 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.231500 4.064043 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.231600 -0.219746 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.231600 -9.326316 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.231600 5.329324 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.231600 3.996993 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.231700 -0.232193 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.231700 -9.160662 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.231700 5.234664 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.231700 3.925998 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.231800 -0.244410 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.231800 -8.985966 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.231800 5.134838 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.231800 3.851128 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.231900 -0.256386 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.231900 -8.802403 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.231900 5.029944 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.231900 3.772458 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.232000 -0.268109 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.232000 -8.610152 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.232000 4.920087 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.232000 3.690065 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.232100 -0.279567 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.232100 -8.409405 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.232100 4.805374 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.232100 3.604031 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.232200 -0.290746 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.232200 -8.200359 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.232200 4.685919 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.232200 3.514440 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.232300 -0.301645 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.232300 -7.983221 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.232300 4.561840 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.232300 3.421380 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.232400 -0.312246 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.232400 -7.758204 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.232400 4.433259 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.232400 3.324945 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.232500 -0.322535 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.232500 -7.525531 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.232500 4.300303 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.232500 3.225227 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.232600 -0.332506 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.232600 -7.285431 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.232600 4.163103 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.232600 3.122327 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.232700 -0.342151 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.232700 -7.038140 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.232700 4.021795 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.232700 3.016346 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.232800 -0.351458 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.232800 -6.783904 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.232800 3.876516 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.232800 2.907387 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.232900 -0.360416 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.232900 -6.522972 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.232900 3.727412 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.232900 2.795559 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.233000 -0.369020 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.233000 -6.255602 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.233000 3.574630 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.233000 2.680972 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.233100 -0.377257 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.233100 -5.982059 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.233100 3.418319 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.233100 2.563740 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.233200 -0.385125 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.233200 -5.702612 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.233200 3.258635 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.233200 2.443976 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.233300 -0.392613 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.233300 -5.417536 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.233300 3.095735 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.233300 2.321801 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.233400 -0.399712 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.233400 -5.127114 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.233400 2.929779 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.233400 2.197335 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.233500 -0.406413 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.233500 -4.831632 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.233500 2.760933 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.233500 2.070699 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.233600 -0.412718 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.233600 -4.531381 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.233600 2.589361 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.233600 1.942020 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.233700 -0.418615 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.233700 -4.226658 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.233700 2.415233 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.233700 1.811425 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.233800 -0.424099 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.233800 -3.917763 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.233800 2.238722 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.233800 1.679041 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.233900 -0.429166 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.233900 -3.605004 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.233900 2.060002 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.233900 1.545002 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.234000 -0.433806 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.234000 -3.288687 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.234000 1.879250 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.234000 1.409437 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.234100 -0.438022 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.234100 -2.969125 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.234100 1.696643 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.234100 1.272482 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.234200 -0.441800 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.234200 -2.646632 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.234200 1.512361 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.234200 1.134271 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.234300 -0.445146 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.234300 -2.321527 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.234300 1.326587 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.234300 0.994940 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.234400 -0.448052 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.234400 -1.994131 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.234400 1.139503 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.234400 0.854627 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.234500 -0.450511 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.234500 -1.664766 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.234500 0.951295 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.234500 0.713471 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.234600 -0.452532 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.234600 -1.333757 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.234600 0.762147 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.234600 0.571610 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.234700 -0.454105 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.234700 -1.001432 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.234700 0.572247 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.234700 0.429185 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.234800 -0.455229 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.234800 -0.668117 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.234800 0.381781 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.234800 0.286336 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.234900 -0.455904 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.234900 -0.334143 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.234900 0.190939 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.234900 0.143204 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.235000 -0.456129 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.235000 0.000159 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.235000 -0.000091 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.235000 -0.000068 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.235100 -0.455902 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.235100 0.334461 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.235100 -0.191120 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.235100 -0.143340 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.235200 -0.455229 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.235200 0.668433 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.235200 -0.381962 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.235200 -0.286471 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.235300 -0.454105 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.235300 1.001747 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.235300 -0.572427 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.235300 -0.429320 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.235400 -0.452532 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.235400 1.334072 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.235400 -0.762327 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.235400 -0.571745 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.235500 -0.450513 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.235500 1.665081 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.235500 -0.951475 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.235500 -0.713606 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.235600 -0.448048 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.235600 1.994445 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.235600 -1.139683 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.235600 -0.854762 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.235700 -0.445141 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.235700 2.321841 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.235700 -1.326766 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.235700 -0.995075 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.235800 -0.441799 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.235800 2.646946 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.235800 -1.512540 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.235800 -1.134405 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.235900 -0.438018 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.235900 2.969438 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.235900 -1.696821 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.235900 -1.272616 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.236000 -0.433804 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.236000 3.288998 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.236000 -1.879428 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.236000 -1.409571 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.236100 -0.429165 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.236100 3.605314 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.236100 -2.060179 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.236100 -1.545134 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.236200 -0.424097 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.236200 3.918071 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.236200 -2.238898 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.236200 -1.679173 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.236300 -0.418615 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.236300 4.226961 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.236300 -2.415407 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.236300 -1.811555 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.236400 -0.412718 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.236400 4.531680 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.236400 -2.589532 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.236400 -1.942149 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.236500 -0.406412 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.236500 4.831929 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.236500 -2.761103 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.236500 -2.070827 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.236600 -0.399706 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.236600 5.127410 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.236600 -2.929948 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.236600 -2.197461 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.236700 -0.392605 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.236700 5.417829 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.236700 -3.095902 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.236700 -2.321927 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.236800 -0.385122 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.236800 5.702902 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.236800 -3.258801 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.236800 -2.444101 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.236900 -0.377255 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.236900 5.982347 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.236900 -3.418484 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.236900 -2.563863 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.237000 -0.369015 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.237000 6.255888 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.237000 -3.574793 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.237000 -2.681095 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.237100 -0.360411 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.237100 6.523254 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.237100 -3.727574 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.237100 -2.795680 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.237200 -0.351453 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.237200 6.784183 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.237200 -3.876676 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.237200 -2.907507 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.237300 -0.342147 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.237300 7.038417 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.237300 -4.021953 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.237300 -3.016465 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.237400 -0.332503 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.237400 7.285705 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.237400 -4.163260 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.237400 -3.122445 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.237500 -0.322531 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.237500 7.525802 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.237500 -4.300458 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.237500 -3.225344 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.237600 -0.312240 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.237600 7.758471 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.237600 -4.433412 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.237600 -3.325059 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.237700 -0.301642 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.237700 7.983484 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.237700 -4.561991 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.237700 -3.421493 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.237800 -0.290747 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.237800 8.200619 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.237800 -4.686068 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.237800 -3.514551 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.237900 -0.279564 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.237900 8.409660 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.237900 -4.805520 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.237900 -3.604140 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.238000 -0.268100 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.238000 8.610403 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.238000 -4.920230 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.238000 -3.690173 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.238100 -0.256379 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.238100 8.802649 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.238100 -5.030085 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.238100 -3.772564 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.238200 -0.244403 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.238200 8.986208 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.238200 -5.134976 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.238200 -3.851232 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.238300 -0.232186 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.238300 9.160899 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.238300 -5.234799 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.238300 -3.926100 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.238400 -0.219740 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.238400 9.326549 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.238400 -5.329457 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.238400 -3.997093 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.238500 -0.207076 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.238500 9.482996 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.238500 -5.418855 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.238500 -4.064141 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.238600 -0.194208 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.238600 9.630083 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.238600 -5.502904 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.238600 -4.127178 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.238700 -0.181148 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.238700 9.767666 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.238700 -5.581523 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.238700 -4.186143 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.238800 -0.167910 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.238800 9.895610 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.238800 -5.654634 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.238800 -4.240976 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.238900 -0.154506 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.238900 10.013788 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.238900 -5.722165 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.238900 -4.291624 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.239000 -0.140949 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.239000 10.122084 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.239000 -5.784048 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.239000 -4.338036 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.239100 -0.127252 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.239100 10.220390 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.239100 -5.840223 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.239100 -4.380167 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.239200 -0.113430 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.239200 10.308610 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.239200 -5.890635 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.239200 -4.417976 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.239300 -0.099499 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.239300 10.386658 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.239300 -5.935233 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.239300 -4.451425 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.239400 -0.085467 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.239400 10.454456 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.239400 -5.973975 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.239400 -4.480481 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.239500 -0.071351 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.239500 10.511936 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.239500 -6.006821 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.239500 -4.505115 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.239600 -0.057164 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.239600 10.559042 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.239600 -6.033738 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.239600 -4.525304 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.239700 -0.042922 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.239700 10.595728 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.239700 -6.054702 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.239700 -4.541026 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.239800 -0.028637 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.239800 10.621957 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.239800 -6.069690 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.239800 -4.552267 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.239900 -0.014324 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.239900 10.637704 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.239900 -6.078688 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.239900 -4.559016 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.240000 0.000003 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.240000 10.642953 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.240000 -6.081688 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.240000 -4.561266 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.240100 0.014331 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.240100 10.637699 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.240100 -6.078685 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.240100 -4.559014 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.240200 0.028644 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.240200 10.621947 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.240200 -6.069684 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.240200 -4.552263 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.240300 0.042929 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.240300 10.595713 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.240300 -6.054693 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.240300 -4.541020 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.240400 0.057172 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.240400 10.559022 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.240400 -6.033727 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.240400 -4.525295 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.240500 0.071357 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.240500 10.511910 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.240500 -6.006806 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.240500 -4.505104 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.240600 0.085473 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.240600 10.454426 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.240600 -5.973958 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.240600 -4.480468 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.240700 0.099505 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.240700 10.386624 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.240700 -5.935213 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.240700 -4.451410 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.240800 0.113438 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.240800 10.308571 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.240800 -5.890612 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.240800 -4.417959 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.240900 0.127260 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.240900 10.220345 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.240900 -5.840197 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.240900 -4.380148 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.241000 0.140953 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.241000 10.122034 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.241000 -5.784019 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.241000 -4.338015 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.241100 0.154511 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.241100 10.013734 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.241100 -5.722134 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.241100 -4.291600 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.241200 0.167916 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.241200 9.895552 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.241200 -5.654601 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.241200 -4.240951 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.241300 0.181155 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.241300 9.767603 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.241300 -5.581487 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.241300 -4.186116 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.241400 0.194214 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.241400 9.630015 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.241400 -5.502866 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.241400 -4.127149 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.241500 0.207081 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.241500 9.482924 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.241500 -5.418814 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.241500 -4.064110 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.241600 0.219746 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.241600 9.326473 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.241600 -5.329413 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.241600 -3.997060 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.241700 0.232193 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.241700 9.160819 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.241700 -5.234754 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.241700 -3.926065 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.241800 0.244410 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.241800 8.986124 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.241800 -5.134928 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.241800 -3.851196 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.241900 0.256386 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.241900 8.802560 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.241900 -5.030034 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.241900 -3.772526 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.242000 0.268109 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.242000 8.610309 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.242000 -4.920177 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.242000 -3.690133 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.242100 0.279567 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.242100 8.409562 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.242100 -4.805464 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.242100 -3.604098 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.242200 0.290746 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.242200 8.200516 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.242200 -4.686009 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.242200 -3.514507 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.242300 0.301645 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.242300 7.983378 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.242300 -4.561930 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.242300 -3.421448 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.242400 0.312247 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.242400 7.758361 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.242400 -4.433349 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.242400 -3.325012 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.242500 0.322535 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.242500 7.525688 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.242500 -4.300393 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.242500 -3.225295 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.242600 0.332506 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.242600 7.285588 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.242600 -4.163193 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.242600 -3.122395 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.242700 0.342151 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.242700 7.038298 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.242700 -4.021884 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.242700 -3.016413 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.242800 0.351458 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.242800 6.784061 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.242800 -3.876606 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.242800 -2.907455 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.242900 0.360416 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.242900 6.523129 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.242900 -3.727502 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.242900 -2.795627 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.243000 0.369020 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.243000 6.255759 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.243000 -3.574720 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.243000 -2.681040 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.243100 0.377257 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.243100 5.982216 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.243100 -3.418409 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.243100 -2.563807 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.243200 0.385125 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.243200 5.702769 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.243200 -3.258725 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.243200 -2.444044 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.243300 0.392613 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.243300 5.417694 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.243300 -3.095825 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.243300 -2.321869 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.243400 0.399712 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.243400 5.127271 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.243400 -2.929869 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.243400 -2.197402 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.243500 0.406413 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.243500 4.831789 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.243500 -2.761022 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.243500 -2.070767 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.243600 0.412718 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.243600 4.531538 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.243600 -2.589451 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.243600 -1.942088 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.243700 0.418615 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.243700 4.226815 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.243700 -2.415323 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.243700 -1.811492 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.243800 0.424099 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.243800 3.917920 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.243800 -2.238812 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.243800 -1.679109 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.243900 0.429166 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.243900 3.605161 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.243900 -2.060092 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.243900 -1.545069 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.244000 0.433806 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.244000 3.288845 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.244000 -1.879340 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.244000 -1.409505 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.244100 0.438022 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.244100 2.969282 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.244100 -1.696733 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.244100 -1.272550 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.244200 0.441800 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.244200 2.646790 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.244200 -1.512451 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.244200 -1.134338 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.244300 0.445146 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.244300 2.321685 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.244300 -1.326677 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.244300 -0.995008 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.244400 0.448052 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.244400 1.994288 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.244400 -1.139593 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.244400 -0.854695 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.244500 0.450511 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.244500 1.664923 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.244500 -0.951385 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.244500 -0.713538 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.244600 0.452532 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.244600 1.333914 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.244600 -0.762237 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.244600 -0.571678 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.244700 0.454105 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.244700 1.001589 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.244700 -0.572336 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.244700 -0.429252 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.244800 0.455229 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.244800 0.668275 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.244800 -0.381871 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.244800 -0.286403 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.244900 0.455904 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.244900 0.334300 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.244900 -0.191029 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.244900 -0.143272 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.245000 0.456129 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.245000 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.245000 0.000001 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.245000 0.000001 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.245100 0.455902 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.245100 -0.334304 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.245100 0.191031 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.245100 0.143273 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.245200 0.455229 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.245200 -0.668275 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.245200 0.381872 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.245200 0.286404 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.245300 0.454105 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.245300 -1.001590 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.245300 0.572337 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.245300 0.429253 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.245400 0.452532 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.245400 -1.333915 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.245400 0.762237 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.245400 0.571678 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.245500 0.450513 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.245500 -1.664923 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.245500 0.951385 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.245500 0.713539 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.245600 0.448048 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.245600 -1.994288 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.245600 1.139593 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.245600 0.854695 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.245700 0.445141 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.245700 -2.321684 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.245700 1.326677 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.245700 0.995007 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.245800 0.441799 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.245800 -2.646788 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.245800 1.512451 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.245800 1.134338 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.245900 0.438018 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.245900 -2.969280 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.245900 1.696732 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.245900 1.272549 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.246000 0.433804 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.246000 -3.288841 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.246000 1.879338 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.246000 1.409503 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.246100 0.429165 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.246100 -3.605156 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.246100 2.060089 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.246100 1.545067 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.246200 0.424097 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.246200 -3.917913 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.246200 2.238808 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.246200 1.679106 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.246300 0.418615 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.246300 -4.226804 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.246300 2.415317 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.246300 1.811487 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.246400 0.412718 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.246400 -4.531523 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.246400 2.589442 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.246400 1.942081 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.246500 0.406412 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.246500 -4.831772 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.246500 2.761013 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.246500 2.070759 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.246600 0.399706 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.246600 -5.127252 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.246600 2.929858 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.246600 2.197394 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.246700 0.392605 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.246700 -5.417672 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.246700 3.095813 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.246700 2.321859 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.246800 0.385122 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.246800 -5.702745 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.246800 3.258711 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.246800 2.444034 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.246900 0.377255 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.246900 -5.982190 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.246900 3.418394 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.246900 2.563796 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.247000 0.369015 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.247000 -6.255731 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.247000 3.574703 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.247000 2.681027 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.247100 0.360411 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.247100 -6.523097 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.247100 3.727484 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.247100 2.795613 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.247200 0.351453 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.247200 -6.784026 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.247200 3.876586 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.247200 2.907440 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.247300 0.342147 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.247300 -7.038260 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.247300 4.021863 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.247300 3.016397 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.247400 0.332503 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.247400 -7.285547 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.247400 4.163170 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.247400 3.122377 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.247500 0.322531 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.247500 -7.525644 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.247500 4.300368 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.247500 3.225276 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.247600 0.312240 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.247600 -7.758314 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.247600 4.433322 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.247600 3.324992 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.247700 0.301642 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.247700 -7.983327 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.247700 4.561901 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.247700 3.421426 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.247800 0.290747 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.247800 -8.200462 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.247800 4.685978 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.247800 3.514484 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.247900 0.279564 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.247900 -8.409503 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.247900 4.805430 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.247900 3.604073 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.248000 0.268100 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.248000 -8.610246 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.248000 4.920140 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.248000 3.690105 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.248100 0.256379 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.248100 -8.802492 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.248100 5.029995 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.248100 3.772496 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.248200 0.244403 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.248200 -8.986051 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.248200 5.134886 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.248200 3.851165 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.248300 0.232186 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.248300 -9.160742 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.248300 5.234710 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.248300 3.926032 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.248400 0.219740 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.248400 -9.326392 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.248400 5.329367 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.248400 3.997025 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.248500 0.207076 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.248500 -9.482838 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.248500 5.418765 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.248500 4.064074 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.248600 0.194208 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.248600 -9.629926 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.248600 5.502815 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.248600 4.127111 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.248700 0.181148 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.248700 -9.767509 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.248700 5.581434 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.248700 4.186075 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.248800 0.167910 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.248800 -9.895453 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.248800 5.654544 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.248800 4.240908 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.248900 0.154506 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.248900 -10.013631 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.248900 5.722075 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.248900 4.291556 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.249000 0.140949 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.249000 -10.121927 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.249000 5.783958 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.249000 4.337969 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.249100 0.127252 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.249100 -10.220233 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.249100 5.840133 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.249100 4.380100 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.249200 0.113430 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.249200 -10.308453 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.249200 5.890545 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.249200 4.417908 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.249300 0.099499 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.249300 -10.386501 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.249300 5.935143 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.249300 4.451358 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.249400 0.085467 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.249400 -10.454298 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.249400 5.973885 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.249400 4.480414 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.249500 0.071351 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.249500 -10.511779 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.249500 6.006731 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.249500 4.505048 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.249600 0.057164 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.249600 -10.558885 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.249600 6.033648 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.249600 4.525236 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.249700 0.042922 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.249700 -10.595570 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.249700 6.054612 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.249700 4.540959 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.249800 0.028637 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.249800 -10.621800 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.249800 6.069600 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.249800 4.552200 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 206 | 212 || 0.249900 0.014324 0.000000 2 -2.000000 2.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 221 || 0.249900 -10.637547 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 222 || 0.249900 6.078598 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +2 16140 || 177 | 213 | 223 || 0.249900 4.558949 0.000000 2 -20.000000 20.000000 0.250000 CMSCOPE +16140 || Ending 177 diff --git a/Working_Examples/83/CH11/EX11.5/scilab-log-28061.txt b/Working_Examples/83/CH11/EX11.5/scilab-log-28061.txt new file mode 100644 index 0000000..13c4676 --- /dev/null +++ b/Working_Examples/83/CH11/EX11.5/scilab-log-28061.txt @@ -0,0 +1,10002 @@ +28061 || Initialization 83 +2 28061 || 83 | 112 | 118 || 0.000000 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.000000 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.000000 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.000000 -0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.000100 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.000100 -0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.000100 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.000100 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.000200 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.000200 -0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.000200 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.000200 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.000300 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.000300 -0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.000300 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.000300 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.000400 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.000400 -0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.000400 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.000400 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.000500 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.000500 -0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.000500 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.000500 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.000600 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.000600 -0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.000600 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.000600 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.000700 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.000700 -0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.000700 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.000700 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.000800 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.000800 -0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.000800 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.000800 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.000900 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.000900 -0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.000900 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.000900 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.001000 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.001000 -0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.001000 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.001000 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.001100 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.001100 -0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.001100 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.001100 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.001200 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.001200 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.001200 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.001200 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.001300 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.001300 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.001300 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.001300 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.001400 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.001400 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.001400 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.001400 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.001500 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.001500 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.001500 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.001500 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.001600 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.001600 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.001600 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.001600 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.001700 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.001700 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.001700 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.001700 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.001800 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.001800 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.001800 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.001800 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.001900 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.001900 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.001900 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.001900 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.002000 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.002000 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.002000 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.002000 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.002100 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.002100 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.002100 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.002100 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.002200 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.002200 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.002200 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.002200 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.002300 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.002300 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.002300 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.002300 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.002400 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.002400 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.002400 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.002400 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.002500 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.002500 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.002500 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.002500 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.002600 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.002600 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.002600 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.002600 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.002700 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.002700 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.002700 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.002700 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.002800 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.002800 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.002800 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.002800 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.002900 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.002900 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.002900 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.002900 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.003000 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.003000 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.003000 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.003000 0.000000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.003100 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.003100 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.003100 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.003100 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.003200 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.003200 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.003200 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.003200 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.003300 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.003300 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.003300 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.003300 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.003400 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.003400 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.003400 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.003400 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.003500 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.003500 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.003500 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.003500 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.003600 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.003600 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.003600 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.003600 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.003700 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.003700 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.003700 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.003700 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.003800 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.003800 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.003800 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.003800 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.003900 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.003900 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.003900 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.003900 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.004000 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.004000 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.004000 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.004000 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.004100 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.004100 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.004100 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.004100 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.004200 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.004200 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.004200 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.004200 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.004300 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.004300 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.004300 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.004300 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.004400 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.004400 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.004400 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.004400 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.004500 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.004500 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.004500 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.004500 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.004600 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.004600 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.004600 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.004600 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.004700 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.004700 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.004700 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.004700 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.004800 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.004800 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.004800 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.004800 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.004900 0.000000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.004900 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.004900 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.004900 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.005000 1.414000 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.005000 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.005000 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.005000 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.005100 0.455903 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.005100 -0.334305 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.005100 0.191032 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.005100 0.143274 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.005200 0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.005200 -0.668278 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.005200 0.381873 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.005200 0.286405 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.005300 0.454102 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.005300 -1.001591 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.005300 0.572338 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.005300 0.429253 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.005400 0.452531 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.005400 -1.333915 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.005400 0.762237 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.005400 0.571678 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.005500 0.450512 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.005500 -1.664924 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.005500 0.951385 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.005500 0.713539 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.005600 0.448049 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.005600 -1.994290 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.005600 1.139594 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.005600 0.854696 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.005700 0.445144 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.005700 -2.321686 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.005700 1.326678 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.005700 0.995008 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.005800 0.441801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.005800 -2.646791 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.005800 1.512452 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.005800 1.134339 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.005900 0.438014 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.005900 -2.969284 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.005900 1.696734 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.005900 1.272550 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.006000 0.433800 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.006000 -3.288845 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.006000 1.879340 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.006000 1.409505 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.006100 0.429161 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.006100 -3.605161 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.006100 2.060092 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.006100 1.545069 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.006200 0.424092 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.006200 -3.917918 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.006200 2.238810 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.006200 1.679108 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.006300 0.418611 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.006300 -4.226809 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.006300 2.415319 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.006300 1.811489 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.006400 0.412713 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.006400 -4.531528 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.006400 2.589444 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.006400 1.942083 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.006500 0.406409 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.006500 -4.831775 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.006500 2.761014 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.006500 2.070761 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.006600 0.399708 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.006600 -5.127255 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.006600 2.929860 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.006600 2.197395 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.006700 0.392610 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.006700 -5.417675 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.006700 3.095815 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.006700 2.321861 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.006800 0.385125 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.006800 -5.702749 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.006800 3.258713 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.006800 2.444035 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.006900 0.377251 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.006900 -5.982194 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.006900 3.418396 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.006900 2.563797 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.007000 0.369011 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.007000 -6.255735 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.007000 3.574706 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.007000 2.681029 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.007100 0.360408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.007100 -6.523102 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.007100 3.727487 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.007100 2.795615 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.007200 0.351451 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.007200 -6.784031 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.007200 3.876589 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.007200 2.907442 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.007300 0.342142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.007300 -7.038265 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.007300 4.021865 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.007300 3.016399 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.007400 0.332498 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.007400 -7.285552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.007400 4.163173 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.007400 3.122380 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.007500 0.322526 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.007500 -7.525650 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.007500 4.300371 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.007500 3.225278 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.007600 0.312237 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.007600 -7.758320 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.007600 4.433326 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.007600 3.324994 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.007700 0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.007700 -7.983333 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.007700 4.561904 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.007700 3.421428 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.007800 0.290742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.007800 -8.200467 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.007800 4.685981 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.007800 3.514486 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.007900 0.279557 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.007900 -8.409509 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.007900 4.805434 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.007900 3.604075 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.008000 0.268113 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.008000 -8.610251 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.008000 4.920144 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.008000 3.690108 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.008100 0.256386 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.008100 -8.802497 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.008100 5.029998 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.008100 3.772499 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.008200 0.244405 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.008200 -8.986056 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.008200 5.134889 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.008200 3.851167 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.008300 0.232185 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.008300 -9.160747 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.008300 5.234712 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.008300 3.926034 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.008400 0.219738 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.008400 -9.326397 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.008400 5.329370 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.008400 3.997027 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.008500 0.207073 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.008500 -9.482843 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.008500 5.418768 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.008500 4.064076 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.008600 0.194205 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.008600 -9.629931 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.008600 5.502818 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.008600 4.127113 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.008700 0.181147 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.008700 -9.767514 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.008700 5.581437 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.008700 4.186078 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.008800 0.167908 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.008800 -9.895458 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.008800 5.654548 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.008800 4.240911 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.008900 0.154502 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.008900 -10.013637 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.008900 5.722078 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.008900 4.291559 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.009000 0.140947 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.009000 -10.121933 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.009000 5.783962 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.009000 4.337971 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.009100 0.127252 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.009100 -10.220239 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.009100 5.840137 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.009100 4.380102 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.009200 0.113436 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.009200 -10.308459 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.009200 5.890548 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.009200 4.417911 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.009300 0.099497 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.009300 -10.386507 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.009300 5.935147 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.009300 4.451360 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.009400 0.085467 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.009400 -10.454304 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.009400 5.973888 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.009400 4.480416 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.009500 0.071350 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.009500 -10.511785 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.009500 6.006734 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.009500 4.505051 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.009600 0.057165 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.009600 -10.558891 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.009600 6.033652 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.009600 4.525239 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.009700 0.042923 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.009700 -10.595577 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.009700 6.054615 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.009700 4.540961 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.009800 0.028637 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.009800 -10.621806 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.009800 6.069603 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.009800 4.552203 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.009900 0.014324 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.009900 -10.637553 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.009900 6.078602 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.009900 4.558951 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.010000 -0.000003 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.010000 -10.642802 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.010000 6.081601 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.010000 4.561201 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.010100 -0.014331 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.010100 -10.637548 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.010100 6.078599 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.010100 4.558949 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.010200 -0.028644 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.010200 -10.621796 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.010200 6.069598 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.010200 4.552198 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.010300 -0.042929 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.010300 -10.595562 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.010300 6.054607 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.010300 4.540955 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.010400 -0.057171 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.010400 -10.558870 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.010400 6.033640 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.010400 4.525230 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.010500 -0.071358 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.010500 -10.511759 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.010500 6.006720 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.010500 4.505040 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.010600 -0.085474 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.010600 -10.454275 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.010600 5.973871 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.010600 4.480403 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.010700 -0.099504 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.010700 -10.386472 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.010700 5.935127 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.010700 4.451345 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.010800 -0.113438 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.010800 -10.308420 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.010800 5.890526 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.010800 4.417894 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.010900 -0.127258 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.010900 -10.220194 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.010900 5.840111 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.010900 4.380083 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.011000 -0.140960 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.011000 -10.121883 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.011000 5.783933 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.011000 4.337950 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.011100 -0.154511 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.011100 -10.013583 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.011100 5.722047 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.011100 4.291535 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.011200 -0.167914 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.011200 -9.895400 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.011200 5.654514 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.011200 4.240886 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.011300 -0.181150 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.011300 -9.767451 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.011300 5.581401 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.011300 4.186051 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.011400 -0.194212 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.011400 -9.629863 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.011400 5.502779 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.011400 4.127084 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.011500 -0.207080 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.011500 -9.482772 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.011500 5.418727 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.011500 4.064045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.011600 -0.219742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.011600 -9.326321 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.011600 5.329326 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.011600 3.996995 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.011700 -0.232189 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.011700 -9.160667 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.011700 5.234667 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.011700 3.926000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.011800 -0.244408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.011800 -8.985971 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.011800 5.134841 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.011800 3.851131 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.011900 -0.256384 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.011900 -8.802408 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.011900 5.029947 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.011900 3.772460 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.012000 -0.268110 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.012000 -8.610158 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.012000 4.920090 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.012000 3.690068 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.012100 -0.279574 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.012100 -8.409411 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.012100 4.805378 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.012100 3.604033 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.012200 -0.290760 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.012200 -8.200365 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.012200 4.685923 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.012200 3.514442 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.012300 -0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.012300 -7.983227 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.012300 4.561844 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.012300 3.421383 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.012400 -0.312242 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.012400 -7.758210 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.012400 4.433263 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.012400 3.324947 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.012500 -0.322534 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.012500 -7.525537 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.012500 4.300307 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.012500 3.225230 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.012600 -0.332503 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.012600 -7.285437 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.012600 4.163107 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.012600 3.122330 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.012700 -0.342146 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.012700 -7.038146 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.012700 4.021798 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.012700 3.016348 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.012800 -0.351452 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.012800 -6.783909 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.012800 3.876519 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.012800 2.907390 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.012900 -0.360411 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.012900 -6.522977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.012900 3.727415 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.012900 2.795561 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.013000 -0.369018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.013000 -6.255607 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.013000 3.574633 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.013000 2.680975 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.013100 -0.377255 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.013100 -5.982064 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.013100 3.418322 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.013100 2.563742 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.013200 -0.385122 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.013200 -5.702616 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.013200 3.258638 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.013200 2.443978 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.013300 -0.392609 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.013300 -5.417540 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.013300 3.095737 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.013300 2.321803 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.013400 -0.399715 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.013400 -5.127118 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.013400 2.929782 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.013400 2.197336 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.013500 -0.406418 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.013500 -4.831635 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.013500 2.760935 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.013500 2.070701 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.013600 -0.412720 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.013600 -4.531384 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.013600 2.589362 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.013600 1.942022 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.013700 -0.418612 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.013700 -4.226663 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.013700 2.415236 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.013700 1.811427 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.013800 -0.424096 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.013800 -3.917771 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.013800 2.238726 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.013800 1.679045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.013900 -0.429162 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.013900 -3.605011 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.013900 2.060007 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.013900 1.545005 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.014000 -0.433801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.014000 -3.288695 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.014000 1.879254 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.014000 1.409441 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.014100 -0.438018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.014100 -2.969132 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.014100 1.696647 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.014100 1.272485 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.014200 -0.441797 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.014200 -2.646639 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.014200 1.512365 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.014200 1.134274 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.014300 -0.445142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.014300 -2.321533 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.014300 1.326590 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.014300 0.994943 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.014400 -0.448054 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.014400 -1.994136 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.014400 1.139506 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.014400 0.854630 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.014500 -0.450515 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.014500 -1.664770 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.014500 0.951297 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.014500 0.713473 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.014600 -0.452532 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.014600 -1.333761 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.014600 0.762149 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.014600 0.571612 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.014700 -0.454104 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.014700 -1.001435 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.014700 0.572248 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.014700 0.429186 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.014800 -0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.014800 -0.668120 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.014800 0.381783 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.014800 0.286337 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.014900 -0.455901 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.014900 -0.334147 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.014900 0.190941 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.014900 0.143206 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.015000 -0.456129 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.015000 0.000156 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.015000 -0.000089 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.015000 -0.000067 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.015100 -0.455903 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.015100 0.334460 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.015100 -0.191120 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.015100 -0.143340 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.015200 -0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.015200 0.668433 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.015200 -0.381962 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.015200 -0.286471 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.015300 -0.454102 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.015300 1.001746 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.015300 -0.572426 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.015300 -0.429320 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.015400 -0.452531 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.015400 1.334070 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.015400 -0.762326 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.015400 -0.571744 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.015500 -0.450512 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.015500 1.665079 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.015500 -0.951474 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.015500 -0.713605 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.015600 -0.448049 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.015600 1.994444 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.015600 -1.139682 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.015600 -0.854762 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.015700 -0.445144 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.015700 2.321841 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.015700 -1.326766 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.015700 -0.995075 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.015800 -0.441801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.015800 2.646946 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.015800 -1.512541 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.015800 -1.134405 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.015900 -0.438014 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.015900 2.969439 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.015900 -1.696822 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.015900 -1.272617 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.016000 -0.433800 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.016000 3.289000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.016000 -1.879429 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.016000 -1.409572 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.016100 -0.429161 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.016100 3.605315 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.016100 -2.060180 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.016100 -1.545135 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.016200 -0.424092 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.016200 3.918073 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.016200 -2.238899 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.016200 -1.679174 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.016300 -0.418611 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.016300 4.226963 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.016300 -2.415408 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.016300 -1.811556 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.016400 -0.412713 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.016400 4.531683 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.016400 -2.589533 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.016400 -1.942150 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.016500 -0.406409 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.016500 4.831930 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.016500 -2.761103 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.016500 -2.070827 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.016600 -0.399708 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.016600 5.127410 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.016600 -2.929949 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.016600 -2.197461 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.016700 -0.392610 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.016700 5.417830 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.016700 -3.095903 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.016700 -2.321927 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.016800 -0.385125 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.016800 5.702903 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.016800 -3.258802 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.016800 -2.444101 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.016900 -0.377251 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.016900 5.982348 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.016900 -3.418485 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.016900 -2.563864 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.017000 -0.369011 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.017000 6.255889 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.017000 -3.574794 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.017000 -2.681095 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.017100 -0.360408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.017100 6.523256 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.017100 -3.727575 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.017100 -2.795681 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.017200 -0.351451 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.017200 6.784185 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.017200 -3.876677 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.017200 -2.907508 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.017300 -0.342142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.017300 7.038419 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.017300 -4.021954 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.017300 -3.016465 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.017400 -0.332498 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.017400 7.285707 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.017400 -4.163261 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.017400 -3.122446 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.017500 -0.322526 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.017500 7.525805 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.017500 -4.300460 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.017500 -3.225345 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.017600 -0.312237 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.017600 7.758475 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.017600 -4.433414 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.017600 -3.325061 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.017700 -0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.017700 7.983487 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.017700 -4.561993 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.017700 -3.421495 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.017800 -0.290742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.017800 8.200622 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.017800 -4.686070 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.017800 -3.514552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.017900 -0.279557 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.017900 8.409664 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.017900 -4.805522 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.017900 -3.604142 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.018000 -0.268113 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.018000 8.610406 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.018000 -4.920232 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.018000 -3.690174 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.018100 -0.256386 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.018100 8.802651 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.018100 -5.030087 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.018100 -3.772565 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.018200 -0.244405 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.018200 8.986210 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.018200 -5.134977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.018200 -3.851233 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.018300 -0.232185 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.018300 9.160902 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.018300 -5.234801 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.018300 -3.926101 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.018400 -0.219738 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.018400 9.326552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.018400 -5.329458 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.018400 -3.997094 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.018500 -0.207073 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.018500 9.482998 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.018500 -5.418856 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.018500 -4.064142 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.018600 -0.194205 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.018600 9.630086 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.018600 -5.502906 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.018600 -4.127180 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.018700 -0.181147 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.018700 9.767669 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.018700 -5.581525 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.018700 -4.186144 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.018800 -0.167908 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.018800 9.895613 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.018800 -5.654636 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.018800 -4.240977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.018900 -0.154502 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.018900 10.013792 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.018900 -5.722167 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.018900 -4.291625 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.019000 -0.140947 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.019000 10.122088 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.019000 -5.784050 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.019000 -4.338038 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.019100 -0.127252 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.019100 10.220394 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.019100 -5.840225 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.019100 -4.380169 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.019200 -0.113436 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.019200 10.308614 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.019200 -5.890636 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.019200 -4.417977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.019300 -0.099497 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.019300 10.386662 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.019300 -5.935235 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.019300 -4.451426 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.019400 -0.085467 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.019400 10.454459 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.019400 -5.973977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.019400 -4.480483 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.019500 -0.071350 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.019500 10.511939 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.019500 -6.006823 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.019500 -4.505117 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.019600 -0.057165 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.019600 10.559045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.019600 -6.033740 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.019600 -4.525305 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.019700 -0.042923 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.019700 10.595731 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.019700 -6.054704 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.019700 -4.541028 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.019800 -0.028637 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.019800 10.621961 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.019800 -6.069692 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.019800 -4.552269 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.019900 -0.014324 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.019900 10.637708 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.019900 -6.078690 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.019900 -4.559018 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.020000 0.000003 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.020000 10.642957 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.020000 -6.081690 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.020000 -4.561267 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.020100 0.014331 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.020100 10.637703 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.020100 -6.078687 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.020100 -4.559015 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.020200 0.028644 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.020200 10.621951 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.020200 -6.069686 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.020200 -4.552265 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.020300 0.042929 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.020300 10.595716 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.020300 -6.054695 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.020300 -4.541021 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.020400 0.057171 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.020400 10.559025 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.020400 -6.033729 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.020400 -4.525297 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.020500 0.071358 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.020500 10.511914 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.020500 -6.006808 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.020500 -4.505106 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.020600 0.085474 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.020600 10.454429 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.020600 -5.973960 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.020600 -4.480470 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.020700 0.099504 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.020700 10.386627 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.020700 -5.935215 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.020700 -4.451412 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.020800 0.113438 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.020800 10.308575 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.020800 -5.890614 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.020800 -4.417961 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.020900 0.127258 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.020900 10.220348 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.020900 -5.840199 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.020900 -4.380149 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.021000 0.140960 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.021000 10.122038 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.021000 -5.784022 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.021000 -4.338016 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.021100 0.154511 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.021100 10.013738 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.021100 -5.722136 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.021100 -4.291602 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.021200 0.167914 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.021200 9.895555 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.021200 -5.654603 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.021200 -4.240952 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.021300 0.181150 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.021300 9.767606 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.021300 -5.581489 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.021300 -4.186117 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.021400 0.194212 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.021400 9.630018 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.021400 -5.502867 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.021400 -4.127151 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.021500 0.207080 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.021500 9.482927 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.021500 -5.418815 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.021500 -4.064111 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.021600 0.219742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.021600 9.326476 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.021600 -5.329415 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.021600 -3.997061 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.021700 0.232189 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.021700 9.160821 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.021700 -5.234755 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.021700 -3.926066 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.021800 0.244408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.021800 8.986126 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.021800 -5.134929 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.021800 -3.851197 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.021900 0.256384 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.021900 8.802562 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.021900 -5.030036 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.021900 -3.772527 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.022000 0.268110 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.022000 8.610312 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.022000 -4.920178 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.022000 -3.690134 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.022100 0.279574 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.022100 8.409566 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.022100 -4.805466 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.022100 -3.604100 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.022200 0.290760 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.022200 8.200520 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.022200 -4.686012 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.022200 -3.514509 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.022300 0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.022300 7.983382 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.022300 -4.561932 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.022300 -3.421449 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.022400 0.312242 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.022400 7.758365 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.022400 -4.433351 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.022400 -3.325014 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.022500 0.322534 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.022500 7.525692 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.022500 -4.300395 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.022500 -3.225297 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.022600 0.332503 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.022600 7.285592 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.022600 -4.163195 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.022600 -3.122396 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.022700 0.342146 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.022700 7.038301 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.022700 -4.021886 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.022700 -3.016415 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.022800 0.351452 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.022800 6.784064 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.022800 -3.876608 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.022800 -2.907456 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.022900 0.360411 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.022900 6.523131 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.022900 -3.727504 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.022900 -2.795628 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.023000 0.369018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.023000 6.255762 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.023000 -3.574721 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.023000 -2.681041 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.023100 0.377255 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.023100 5.982218 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.023100 -3.418411 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.023100 -2.563808 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.023200 0.385122 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.023200 5.702771 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.023200 -3.258726 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.023200 -2.444045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.023300 0.392609 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.023300 5.417695 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.023300 -3.095826 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.023300 -2.321869 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.023400 0.399715 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.023400 5.127273 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.023400 -2.929870 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.023400 -2.197403 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.023500 0.406418 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.023500 4.831790 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.023500 -2.761023 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.023500 -2.070767 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.023600 0.412720 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.023600 4.531539 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.023600 -2.589451 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.023600 -1.942088 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.023700 0.418612 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.023700 4.226818 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.023700 -2.415325 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.023700 -1.811493 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.023800 0.424096 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.023800 3.917925 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.023800 -2.238814 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.023800 -1.679111 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.023900 0.429162 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.023900 3.605166 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.023900 -2.060095 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.023900 -1.545071 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.024000 0.433801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.024000 3.288849 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.024000 -1.879343 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.024000 -1.409507 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.024100 0.438018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.024100 2.969287 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.024100 -1.696735 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.024100 -1.272552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.024200 0.441797 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.024200 2.646794 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.024200 -1.512454 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.024200 -1.134340 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.024300 0.445142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.024300 2.321688 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.024300 -1.326679 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.024300 -0.995009 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.024400 0.448054 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.024400 1.994291 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.024400 -1.139595 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.024400 -0.854696 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.024500 0.450515 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.024500 1.664925 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.024500 -0.951386 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.024500 -0.713539 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.024600 0.452532 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.024600 1.333915 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.024600 -0.762237 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.024600 -0.571678 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.024700 0.454104 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.024700 1.001589 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.024700 -0.572337 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.024700 -0.429253 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.024800 0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.024800 0.668274 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.024800 -0.381871 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.024800 -0.286403 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.024900 0.455901 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.024900 0.334302 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.024900 -0.191030 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.024900 -0.143272 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.025000 0.456129 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.025000 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.025000 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.025000 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.025100 0.455903 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.025100 -0.334305 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.025100 0.191032 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.025100 0.143274 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.025200 0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.025200 -0.668278 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.025200 0.381873 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.025200 0.286405 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.025300 0.454102 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.025300 -1.001591 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.025300 0.572338 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.025300 0.429253 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.025400 0.452531 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.025400 -1.333915 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.025400 0.762237 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.025400 0.571678 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.025500 0.450512 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.025500 -1.664924 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.025500 0.951385 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.025500 0.713539 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.025600 0.448049 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.025600 -1.994290 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.025600 1.139594 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.025600 0.854696 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.025700 0.445144 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.025700 -2.321686 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.025700 1.326678 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.025700 0.995008 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.025800 0.441801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.025800 -2.646791 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.025800 1.512452 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.025800 1.134339 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.025900 0.438014 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.025900 -2.969284 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.025900 1.696734 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.025900 1.272550 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.026000 0.433800 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.026000 -3.288845 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.026000 1.879340 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.026000 1.409505 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.026100 0.429161 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.026100 -3.605161 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.026100 2.060092 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.026100 1.545069 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.026200 0.424092 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.026200 -3.917918 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.026200 2.238810 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.026200 1.679108 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.026300 0.418611 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.026300 -4.226809 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.026300 2.415319 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.026300 1.811489 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.026400 0.412713 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.026400 -4.531528 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.026400 2.589444 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.026400 1.942083 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.026500 0.406409 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.026500 -4.831775 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.026500 2.761014 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.026500 2.070761 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.026600 0.399708 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.026600 -5.127255 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.026600 2.929860 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.026600 2.197395 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.026700 0.392610 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.026700 -5.417675 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.026700 3.095815 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.026700 2.321861 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.026800 0.385125 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.026800 -5.702749 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.026800 3.258713 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.026800 2.444035 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.026900 0.377251 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.026900 -5.982194 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.026900 3.418396 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.026900 2.563797 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.027000 0.369011 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.027000 -6.255735 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.027000 3.574706 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.027000 2.681029 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.027100 0.360408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.027100 -6.523102 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.027100 3.727487 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.027100 2.795615 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.027200 0.351451 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.027200 -6.784031 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.027200 3.876589 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.027200 2.907442 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.027300 0.342142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.027300 -7.038265 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.027300 4.021865 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.027300 3.016399 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.027400 0.332498 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.027400 -7.285552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.027400 4.163173 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.027400 3.122380 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.027500 0.322526 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.027500 -7.525650 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.027500 4.300371 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.027500 3.225278 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.027600 0.312237 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.027600 -7.758320 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.027600 4.433326 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.027600 3.324994 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.027700 0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.027700 -7.983333 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.027700 4.561904 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.027700 3.421428 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.027800 0.290742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.027800 -8.200467 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.027800 4.685981 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.027800 3.514486 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.027900 0.279557 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.027900 -8.409509 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.027900 4.805434 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.027900 3.604075 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.028000 0.268113 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.028000 -8.610251 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.028000 4.920144 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.028000 3.690108 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.028100 0.256386 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.028100 -8.802497 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.028100 5.029998 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.028100 3.772499 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.028200 0.244405 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.028200 -8.986056 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.028200 5.134889 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.028200 3.851167 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.028300 0.232185 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.028300 -9.160747 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.028300 5.234712 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.028300 3.926034 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.028400 0.219738 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.028400 -9.326397 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.028400 5.329370 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.028400 3.997027 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.028500 0.207073 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.028500 -9.482843 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.028500 5.418768 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.028500 4.064076 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.028600 0.194205 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.028600 -9.629931 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.028600 5.502818 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.028600 4.127113 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.028700 0.181147 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.028700 -9.767514 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.028700 5.581437 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.028700 4.186078 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.028800 0.167908 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.028800 -9.895458 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.028800 5.654548 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.028800 4.240911 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.028900 0.154502 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.028900 -10.013637 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.028900 5.722078 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.028900 4.291559 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.029000 0.140947 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.029000 -10.121933 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.029000 5.783962 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.029000 4.337971 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.029100 0.127252 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.029100 -10.220239 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.029100 5.840137 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.029100 4.380102 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.029200 0.113436 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.029200 -10.308459 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.029200 5.890548 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.029200 4.417911 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.029300 0.099497 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.029300 -10.386507 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.029300 5.935147 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.029300 4.451360 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.029400 0.085467 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.029400 -10.454304 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.029400 5.973888 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.029400 4.480416 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.029500 0.071350 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.029500 -10.511785 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.029500 6.006734 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.029500 4.505051 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.029600 0.057165 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.029600 -10.558891 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.029600 6.033652 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.029600 4.525239 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.029700 0.042923 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.029700 -10.595577 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.029700 6.054615 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.029700 4.540961 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.029800 0.028637 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.029800 -10.621806 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.029800 6.069603 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.029800 4.552203 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.029900 0.014324 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.029900 -10.637553 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.029900 6.078602 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.029900 4.558951 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.030000 -0.000003 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.030000 -10.642802 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.030000 6.081601 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.030000 4.561201 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.030100 -0.014331 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.030100 -10.637548 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.030100 6.078599 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.030100 4.558949 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.030200 -0.028644 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.030200 -10.621796 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.030200 6.069598 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.030200 4.552198 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.030300 -0.042929 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.030300 -10.595562 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.030300 6.054607 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.030300 4.540955 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.030400 -0.057171 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.030400 -10.558870 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.030400 6.033640 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.030400 4.525230 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.030500 -0.071358 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.030500 -10.511759 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.030500 6.006720 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.030500 4.505040 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.030600 -0.085474 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.030600 -10.454275 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.030600 5.973871 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.030600 4.480403 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.030700 -0.099504 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.030700 -10.386472 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.030700 5.935127 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.030700 4.451345 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.030800 -0.113438 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.030800 -10.308420 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.030800 5.890526 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.030800 4.417894 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.030900 -0.127258 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.030900 -10.220194 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.030900 5.840111 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.030900 4.380083 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.031000 -0.140960 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.031000 -10.121883 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.031000 5.783933 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.031000 4.337950 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.031100 -0.154511 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.031100 -10.013583 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.031100 5.722047 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.031100 4.291535 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.031200 -0.167914 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.031200 -9.895400 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.031200 5.654514 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.031200 4.240886 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.031300 -0.181150 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.031300 -9.767451 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.031300 5.581401 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.031300 4.186051 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.031400 -0.194212 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.031400 -9.629863 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.031400 5.502779 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.031400 4.127084 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.031500 -0.207080 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.031500 -9.482772 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.031500 5.418727 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.031500 4.064045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.031600 -0.219742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.031600 -9.326321 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.031600 5.329326 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.031600 3.996995 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.031700 -0.232189 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.031700 -9.160667 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.031700 5.234667 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.031700 3.926000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.031800 -0.244408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.031800 -8.985971 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.031800 5.134841 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.031800 3.851131 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.031900 -0.256384 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.031900 -8.802408 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.031900 5.029947 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.031900 3.772460 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.032000 -0.268110 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.032000 -8.610158 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.032000 4.920090 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.032000 3.690068 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.032100 -0.279574 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.032100 -8.409411 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.032100 4.805378 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.032100 3.604033 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.032200 -0.290760 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.032200 -8.200365 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.032200 4.685923 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.032200 3.514442 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.032300 -0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.032300 -7.983227 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.032300 4.561844 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.032300 3.421383 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.032400 -0.312242 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.032400 -7.758210 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.032400 4.433263 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.032400 3.324947 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.032500 -0.322534 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.032500 -7.525537 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.032500 4.300307 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.032500 3.225230 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.032600 -0.332503 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.032600 -7.285437 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.032600 4.163107 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.032600 3.122330 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.032700 -0.342146 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.032700 -7.038146 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.032700 4.021798 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.032700 3.016348 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.032800 -0.351452 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.032800 -6.783909 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.032800 3.876519 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.032800 2.907390 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.032900 -0.360411 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.032900 -6.522977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.032900 3.727415 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.032900 2.795561 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.033000 -0.369018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.033000 -6.255607 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.033000 3.574633 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.033000 2.680975 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.033100 -0.377255 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.033100 -5.982064 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.033100 3.418322 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.033100 2.563742 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.033200 -0.385122 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.033200 -5.702616 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.033200 3.258638 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.033200 2.443978 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.033300 -0.392609 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.033300 -5.417540 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.033300 3.095737 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.033300 2.321803 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.033400 -0.399715 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.033400 -5.127118 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.033400 2.929782 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.033400 2.197336 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.033500 -0.406418 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.033500 -4.831635 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.033500 2.760935 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.033500 2.070701 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.033600 -0.412720 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.033600 -4.531384 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.033600 2.589362 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.033600 1.942022 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.033700 -0.418612 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.033700 -4.226663 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.033700 2.415236 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.033700 1.811427 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.033800 -0.424096 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.033800 -3.917771 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.033800 2.238726 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.033800 1.679045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.033900 -0.429162 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.033900 -3.605011 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.033900 2.060007 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.033900 1.545005 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.034000 -0.433801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.034000 -3.288695 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.034000 1.879254 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.034000 1.409441 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.034100 -0.438018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.034100 -2.969132 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.034100 1.696647 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.034100 1.272485 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.034200 -0.441797 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.034200 -2.646639 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.034200 1.512365 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.034200 1.134274 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.034300 -0.445142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.034300 -2.321533 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.034300 1.326590 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.034300 0.994943 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.034400 -0.448054 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.034400 -1.994136 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.034400 1.139506 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.034400 0.854630 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.034500 -0.450515 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.034500 -1.664770 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.034500 0.951297 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.034500 0.713473 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.034600 -0.452532 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.034600 -1.333761 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.034600 0.762149 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.034600 0.571612 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.034700 -0.454104 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.034700 -1.001435 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.034700 0.572248 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.034700 0.429186 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.034800 -0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.034800 -0.668120 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.034800 0.381783 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.034800 0.286337 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.034900 -0.455901 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.034900 -0.334147 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.034900 0.190941 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.034900 0.143206 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.035000 -0.456129 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.035000 0.000156 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.035000 -0.000089 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.035000 -0.000067 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.035100 -0.455903 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.035100 0.334460 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.035100 -0.191120 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.035100 -0.143340 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.035200 -0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.035200 0.668433 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.035200 -0.381962 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.035200 -0.286471 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.035300 -0.454102 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.035300 1.001746 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.035300 -0.572426 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.035300 -0.429320 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.035400 -0.452531 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.035400 1.334070 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.035400 -0.762326 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.035400 -0.571744 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.035500 -0.450512 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.035500 1.665079 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.035500 -0.951474 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.035500 -0.713605 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.035600 -0.448049 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.035600 1.994444 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.035600 -1.139682 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.035600 -0.854762 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.035700 -0.445144 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.035700 2.321841 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.035700 -1.326766 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.035700 -0.995075 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.035800 -0.441801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.035800 2.646946 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.035800 -1.512541 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.035800 -1.134405 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.035900 -0.438014 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.035900 2.969439 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.035900 -1.696822 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.035900 -1.272617 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.036000 -0.433800 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.036000 3.289000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.036000 -1.879429 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.036000 -1.409572 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.036100 -0.429161 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.036100 3.605315 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.036100 -2.060180 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.036100 -1.545135 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.036200 -0.424092 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.036200 3.918073 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.036200 -2.238899 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.036200 -1.679174 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.036300 -0.418611 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.036300 4.226963 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.036300 -2.415408 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.036300 -1.811556 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.036400 -0.412713 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.036400 4.531683 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.036400 -2.589533 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.036400 -1.942150 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.036500 -0.406409 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.036500 4.831930 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.036500 -2.761103 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.036500 -2.070827 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.036600 -0.399708 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.036600 5.127410 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.036600 -2.929949 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.036600 -2.197461 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.036700 -0.392610 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.036700 5.417830 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.036700 -3.095903 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.036700 -2.321927 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.036800 -0.385125 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.036800 5.702903 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.036800 -3.258802 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.036800 -2.444101 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.036900 -0.377251 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.036900 5.982348 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.036900 -3.418485 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.036900 -2.563864 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.037000 -0.369011 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.037000 6.255889 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.037000 -3.574794 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.037000 -2.681095 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.037100 -0.360408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.037100 6.523256 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.037100 -3.727575 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.037100 -2.795681 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.037200 -0.351451 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.037200 6.784185 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.037200 -3.876677 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.037200 -2.907508 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.037300 -0.342142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.037300 7.038419 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.037300 -4.021954 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.037300 -3.016465 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.037400 -0.332498 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.037400 7.285707 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.037400 -4.163261 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.037400 -3.122446 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.037500 -0.322526 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.037500 7.525805 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.037500 -4.300460 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.037500 -3.225345 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.037600 -0.312237 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.037600 7.758475 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.037600 -4.433414 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.037600 -3.325061 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.037700 -0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.037700 7.983487 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.037700 -4.561993 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.037700 -3.421495 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.037800 -0.290742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.037800 8.200622 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.037800 -4.686070 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.037800 -3.514552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.037900 -0.279557 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.037900 8.409664 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.037900 -4.805522 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.037900 -3.604142 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.038000 -0.268113 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.038000 8.610406 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.038000 -4.920232 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.038000 -3.690174 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.038100 -0.256386 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.038100 8.802651 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.038100 -5.030087 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.038100 -3.772565 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.038200 -0.244405 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.038200 8.986210 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.038200 -5.134977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.038200 -3.851233 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.038300 -0.232185 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.038300 9.160902 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.038300 -5.234801 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.038300 -3.926101 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.038400 -0.219738 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.038400 9.326552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.038400 -5.329458 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.038400 -3.997094 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.038500 -0.207073 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.038500 9.482998 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.038500 -5.418856 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.038500 -4.064142 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.038600 -0.194205 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.038600 9.630086 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.038600 -5.502906 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.038600 -4.127180 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.038700 -0.181147 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.038700 9.767669 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.038700 -5.581525 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.038700 -4.186144 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.038800 -0.167908 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.038800 9.895613 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.038800 -5.654636 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.038800 -4.240977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.038900 -0.154502 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.038900 10.013792 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.038900 -5.722167 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.038900 -4.291625 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.039000 -0.140947 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.039000 10.122088 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.039000 -5.784050 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.039000 -4.338038 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.039100 -0.127252 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.039100 10.220394 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.039100 -5.840225 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.039100 -4.380169 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.039200 -0.113436 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.039200 10.308614 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.039200 -5.890636 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.039200 -4.417977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.039300 -0.099497 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.039300 10.386662 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.039300 -5.935235 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.039300 -4.451426 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.039400 -0.085467 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.039400 10.454459 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.039400 -5.973977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.039400 -4.480483 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.039500 -0.071350 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.039500 10.511939 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.039500 -6.006823 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.039500 -4.505117 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.039600 -0.057165 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.039600 10.559045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.039600 -6.033740 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.039600 -4.525305 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.039700 -0.042923 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.039700 10.595731 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.039700 -6.054704 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.039700 -4.541028 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.039800 -0.028637 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.039800 10.621961 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.039800 -6.069692 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.039800 -4.552269 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.039900 -0.014324 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.039900 10.637708 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.039900 -6.078690 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.039900 -4.559018 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.040000 0.000003 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.040000 10.642957 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.040000 -6.081690 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.040000 -4.561267 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.040100 0.014331 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.040100 10.637703 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.040100 -6.078687 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.040100 -4.559015 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.040200 0.028644 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.040200 10.621951 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.040200 -6.069686 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.040200 -4.552265 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.040300 0.042929 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.040300 10.595716 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.040300 -6.054695 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.040300 -4.541021 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.040400 0.057171 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.040400 10.559025 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.040400 -6.033729 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.040400 -4.525297 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.040500 0.071358 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.040500 10.511914 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.040500 -6.006808 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.040500 -4.505106 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.040600 0.085474 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.040600 10.454429 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.040600 -5.973960 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.040600 -4.480470 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.040700 0.099504 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.040700 10.386627 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.040700 -5.935215 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.040700 -4.451412 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.040800 0.113438 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.040800 10.308575 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.040800 -5.890614 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.040800 -4.417961 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.040900 0.127258 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.040900 10.220348 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.040900 -5.840199 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.040900 -4.380149 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.041000 0.140960 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.041000 10.122038 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.041000 -5.784022 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.041000 -4.338016 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.041100 0.154511 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.041100 10.013738 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.041100 -5.722136 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.041100 -4.291602 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.041200 0.167914 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.041200 9.895555 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.041200 -5.654603 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.041200 -4.240952 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.041300 0.181150 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.041300 9.767606 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.041300 -5.581489 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.041300 -4.186117 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.041400 0.194212 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.041400 9.630018 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.041400 -5.502867 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.041400 -4.127151 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.041500 0.207080 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.041500 9.482927 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.041500 -5.418815 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.041500 -4.064111 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.041600 0.219742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.041600 9.326476 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.041600 -5.329415 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.041600 -3.997061 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.041700 0.232189 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.041700 9.160821 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.041700 -5.234755 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.041700 -3.926066 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.041800 0.244408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.041800 8.986126 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.041800 -5.134929 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.041800 -3.851197 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.041900 0.256384 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.041900 8.802562 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.041900 -5.030036 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.041900 -3.772527 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.042000 0.268110 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.042000 8.610312 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.042000 -4.920178 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.042000 -3.690134 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.042100 0.279574 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.042100 8.409566 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.042100 -4.805466 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.042100 -3.604100 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.042200 0.290760 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.042200 8.200520 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.042200 -4.686012 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.042200 -3.514509 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.042300 0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.042300 7.983382 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.042300 -4.561932 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.042300 -3.421449 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.042400 0.312242 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.042400 7.758365 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.042400 -4.433351 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.042400 -3.325014 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.042500 0.322534 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.042500 7.525692 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.042500 -4.300395 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.042500 -3.225297 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.042600 0.332503 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.042600 7.285592 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.042600 -4.163195 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.042600 -3.122396 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.042700 0.342146 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.042700 7.038301 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.042700 -4.021886 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.042700 -3.016415 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.042800 0.351452 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.042800 6.784064 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.042800 -3.876608 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.042800 -2.907456 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.042900 0.360411 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.042900 6.523131 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.042900 -3.727504 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.042900 -2.795628 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.043000 0.369018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.043000 6.255762 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.043000 -3.574721 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.043000 -2.681041 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.043100 0.377255 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.043100 5.982218 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.043100 -3.418411 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.043100 -2.563808 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.043200 0.385122 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.043200 5.702771 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.043200 -3.258726 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.043200 -2.444045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.043300 0.392609 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.043300 5.417695 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.043300 -3.095826 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.043300 -2.321869 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.043400 0.399715 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.043400 5.127273 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.043400 -2.929870 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.043400 -2.197403 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.043500 0.406418 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.043500 4.831790 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.043500 -2.761023 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.043500 -2.070767 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.043600 0.412720 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.043600 4.531539 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.043600 -2.589451 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.043600 -1.942088 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.043700 0.418612 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.043700 4.226818 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.043700 -2.415325 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.043700 -1.811493 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.043800 0.424096 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.043800 3.917925 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.043800 -2.238814 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.043800 -1.679111 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.043900 0.429162 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.043900 3.605166 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.043900 -2.060095 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.043900 -1.545071 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.044000 0.433801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.044000 3.288849 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.044000 -1.879343 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.044000 -1.409507 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.044100 0.438018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.044100 2.969287 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.044100 -1.696735 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.044100 -1.272552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.044200 0.441797 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.044200 2.646794 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.044200 -1.512454 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.044200 -1.134340 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.044300 0.445142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.044300 2.321688 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.044300 -1.326679 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.044300 -0.995009 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.044400 0.448054 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.044400 1.994291 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.044400 -1.139595 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.044400 -0.854696 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.044500 0.450515 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.044500 1.664925 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.044500 -0.951386 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.044500 -0.713539 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.044600 0.452532 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.044600 1.333915 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.044600 -0.762237 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.044600 -0.571678 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.044700 0.454104 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.044700 1.001589 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.044700 -0.572337 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.044700 -0.429253 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.044800 0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.044800 0.668274 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.044800 -0.381871 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.044800 -0.286403 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.044900 0.455901 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.044900 0.334302 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.044900 -0.191030 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.044900 -0.143272 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.045000 0.456129 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.045000 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.045000 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.045000 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.045100 0.455903 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.045100 -0.334305 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.045100 0.191032 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.045100 0.143274 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.045200 0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.045200 -0.668278 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.045200 0.381873 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.045200 0.286405 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.045300 0.454102 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.045300 -1.001591 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.045300 0.572338 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.045300 0.429253 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.045400 0.452531 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.045400 -1.333915 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.045400 0.762237 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.045400 0.571678 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.045500 0.450512 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.045500 -1.664924 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.045500 0.951385 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.045500 0.713539 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.045600 0.448049 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.045600 -1.994290 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.045600 1.139594 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.045600 0.854696 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.045700 0.445144 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.045700 -2.321686 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.045700 1.326678 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.045700 0.995008 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.045800 0.441801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.045800 -2.646791 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.045800 1.512452 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.045800 1.134339 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.045900 0.438014 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.045900 -2.969284 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.045900 1.696734 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.045900 1.272550 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.046000 0.433800 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.046000 -3.288845 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.046000 1.879340 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.046000 1.409505 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.046100 0.429161 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.046100 -3.605161 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.046100 2.060092 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.046100 1.545069 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.046200 0.424092 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.046200 -3.917918 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.046200 2.238810 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.046200 1.679108 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.046300 0.418611 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.046300 -4.226809 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.046300 2.415319 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.046300 1.811489 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.046400 0.412713 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.046400 -4.531528 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.046400 2.589444 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.046400 1.942083 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.046500 0.406409 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.046500 -4.831775 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.046500 2.761014 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.046500 2.070761 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.046600 0.399708 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.046600 -5.127255 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.046600 2.929860 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.046600 2.197395 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.046700 0.392610 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.046700 -5.417675 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.046700 3.095815 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.046700 2.321861 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.046800 0.385125 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.046800 -5.702749 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.046800 3.258713 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.046800 2.444035 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.046900 0.377251 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.046900 -5.982194 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.046900 3.418396 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.046900 2.563797 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.047000 0.369011 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.047000 -6.255735 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.047000 3.574706 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.047000 2.681029 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.047100 0.360408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.047100 -6.523102 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.047100 3.727487 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.047100 2.795615 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.047200 0.351451 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.047200 -6.784031 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.047200 3.876589 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.047200 2.907442 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.047300 0.342142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.047300 -7.038265 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.047300 4.021865 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.047300 3.016399 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.047400 0.332498 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.047400 -7.285552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.047400 4.163173 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.047400 3.122380 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.047500 0.322526 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.047500 -7.525650 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.047500 4.300371 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.047500 3.225278 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.047600 0.312237 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.047600 -7.758320 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.047600 4.433326 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.047600 3.324994 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.047700 0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.047700 -7.983333 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.047700 4.561904 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.047700 3.421428 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.047800 0.290742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.047800 -8.200467 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.047800 4.685981 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.047800 3.514486 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.047900 0.279557 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.047900 -8.409509 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.047900 4.805434 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.047900 3.604075 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.048000 0.268113 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.048000 -8.610251 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.048000 4.920144 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.048000 3.690108 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.048100 0.256386 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.048100 -8.802497 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.048100 5.029998 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.048100 3.772499 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.048200 0.244405 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.048200 -8.986056 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.048200 5.134889 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.048200 3.851167 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.048300 0.232185 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.048300 -9.160747 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.048300 5.234712 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.048300 3.926034 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.048400 0.219738 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.048400 -9.326397 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.048400 5.329370 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.048400 3.997027 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.048500 0.207073 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.048500 -9.482843 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.048500 5.418768 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.048500 4.064076 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.048600 0.194205 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.048600 -9.629931 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.048600 5.502818 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.048600 4.127113 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.048700 0.181147 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.048700 -9.767514 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.048700 5.581437 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.048700 4.186078 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.048800 0.167908 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.048800 -9.895458 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.048800 5.654548 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.048800 4.240911 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.048900 0.154502 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.048900 -10.013637 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.048900 5.722078 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.048900 4.291559 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.049000 0.140947 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.049000 -10.121933 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.049000 5.783962 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.049000 4.337971 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.049100 0.127252 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.049100 -10.220239 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.049100 5.840137 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.049100 4.380102 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.049200 0.113436 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.049200 -10.308459 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.049200 5.890548 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.049200 4.417911 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.049300 0.099497 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.049300 -10.386507 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.049300 5.935147 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.049300 4.451360 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.049400 0.085467 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.049400 -10.454304 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.049400 5.973888 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.049400 4.480416 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.049500 0.071350 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.049500 -10.511785 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.049500 6.006734 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.049500 4.505051 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.049600 0.057165 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.049600 -10.558891 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.049600 6.033652 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.049600 4.525239 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.049700 0.042923 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.049700 -10.595577 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.049700 6.054615 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.049700 4.540961 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.049800 0.028637 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.049800 -10.621806 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.049800 6.069603 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.049800 4.552203 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.049900 0.014324 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.049900 -10.637553 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.049900 6.078602 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.049900 4.558951 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.050000 -0.000003 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.050000 -10.642802 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.050000 6.081601 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.050000 4.561201 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.050100 -0.014331 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.050100 -10.637548 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.050100 6.078599 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.050100 4.558949 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.050200 -0.028644 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.050200 -10.621796 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.050200 6.069598 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.050200 4.552198 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.050300 -0.042929 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.050300 -10.595562 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.050300 6.054607 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.050300 4.540955 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.050400 -0.057171 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.050400 -10.558870 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.050400 6.033640 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.050400 4.525230 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.050500 -0.071358 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.050500 -10.511759 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.050500 6.006720 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.050500 4.505040 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.050600 -0.085474 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.050600 -10.454275 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.050600 5.973871 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.050600 4.480403 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.050700 -0.099504 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.050700 -10.386472 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.050700 5.935127 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.050700 4.451345 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.050800 -0.113438 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.050800 -10.308420 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.050800 5.890526 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.050800 4.417894 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.050900 -0.127258 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.050900 -10.220194 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.050900 5.840111 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.050900 4.380083 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.051000 -0.140960 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.051000 -10.121883 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.051000 5.783933 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.051000 4.337950 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.051100 -0.154511 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.051100 -10.013583 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.051100 5.722047 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.051100 4.291535 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.051200 -0.167914 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.051200 -9.895400 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.051200 5.654514 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.051200 4.240886 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.051300 -0.181150 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.051300 -9.767451 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.051300 5.581401 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.051300 4.186051 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.051400 -0.194212 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.051400 -9.629863 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.051400 5.502779 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.051400 4.127084 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.051500 -0.207080 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.051500 -9.482772 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.051500 5.418727 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.051500 4.064045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.051600 -0.219742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.051600 -9.326321 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.051600 5.329326 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.051600 3.996995 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.051700 -0.232189 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.051700 -9.160667 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.051700 5.234667 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.051700 3.926000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.051800 -0.244408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.051800 -8.985971 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.051800 5.134841 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.051800 3.851131 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.051900 -0.256384 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.051900 -8.802408 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.051900 5.029947 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.051900 3.772460 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.052000 -0.268110 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.052000 -8.610158 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.052000 4.920090 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.052000 3.690068 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.052100 -0.279574 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.052100 -8.409411 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.052100 4.805378 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.052100 3.604033 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.052200 -0.290760 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.052200 -8.200365 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.052200 4.685923 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.052200 3.514442 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.052300 -0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.052300 -7.983227 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.052300 4.561844 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.052300 3.421383 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.052400 -0.312242 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.052400 -7.758210 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.052400 4.433263 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.052400 3.324947 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.052500 -0.322534 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.052500 -7.525537 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.052500 4.300307 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.052500 3.225230 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.052600 -0.332503 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.052600 -7.285437 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.052600 4.163107 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.052600 3.122330 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.052700 -0.342146 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.052700 -7.038146 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.052700 4.021798 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.052700 3.016348 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.052800 -0.351452 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.052800 -6.783909 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.052800 3.876519 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.052800 2.907390 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.052900 -0.360411 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.052900 -6.522977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.052900 3.727415 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.052900 2.795561 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.053000 -0.369018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.053000 -6.255607 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.053000 3.574633 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.053000 2.680975 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.053100 -0.377255 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.053100 -5.982064 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.053100 3.418322 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.053100 2.563742 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.053200 -0.385122 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.053200 -5.702616 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.053200 3.258638 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.053200 2.443978 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.053300 -0.392609 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.053300 -5.417540 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.053300 3.095737 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.053300 2.321803 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.053400 -0.399715 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.053400 -5.127118 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.053400 2.929782 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.053400 2.197336 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.053500 -0.406418 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.053500 -4.831635 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.053500 2.760935 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.053500 2.070701 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.053600 -0.412720 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.053600 -4.531384 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.053600 2.589362 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.053600 1.942022 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.053700 -0.418612 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.053700 -4.226663 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.053700 2.415236 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.053700 1.811427 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.053800 -0.424096 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.053800 -3.917771 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.053800 2.238726 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.053800 1.679045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.053900 -0.429162 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.053900 -3.605011 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.053900 2.060007 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.053900 1.545005 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.054000 -0.433801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.054000 -3.288695 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.054000 1.879254 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.054000 1.409441 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.054100 -0.438018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.054100 -2.969132 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.054100 1.696647 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.054100 1.272485 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.054200 -0.441797 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.054200 -2.646639 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.054200 1.512365 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.054200 1.134274 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.054300 -0.445142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.054300 -2.321533 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.054300 1.326590 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.054300 0.994943 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.054400 -0.448054 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.054400 -1.994136 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.054400 1.139506 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.054400 0.854630 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.054500 -0.450515 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.054500 -1.664770 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.054500 0.951297 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.054500 0.713473 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.054600 -0.452532 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.054600 -1.333761 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.054600 0.762149 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.054600 0.571612 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.054700 -0.454104 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.054700 -1.001435 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.054700 0.572248 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.054700 0.429186 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.054800 -0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.054800 -0.668120 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.054800 0.381783 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.054800 0.286337 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.054900 -0.455901 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.054900 -0.334147 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.054900 0.190941 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.054900 0.143206 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.055000 -0.456129 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.055000 0.000156 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.055000 -0.000089 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.055000 -0.000067 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.055100 -0.455903 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.055100 0.334460 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.055100 -0.191120 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.055100 -0.143340 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.055200 -0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.055200 0.668433 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.055200 -0.381962 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.055200 -0.286471 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.055300 -0.454102 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.055300 1.001746 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.055300 -0.572426 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.055300 -0.429320 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.055400 -0.452531 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.055400 1.334070 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.055400 -0.762326 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.055400 -0.571744 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.055500 -0.450512 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.055500 1.665079 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.055500 -0.951474 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.055500 -0.713605 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.055600 -0.448049 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.055600 1.994444 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.055600 -1.139682 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.055600 -0.854762 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.055700 -0.445144 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.055700 2.321841 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.055700 -1.326766 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.055700 -0.995075 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.055800 -0.441801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.055800 2.646946 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.055800 -1.512541 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.055800 -1.134405 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.055900 -0.438014 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.055900 2.969439 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.055900 -1.696822 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.055900 -1.272617 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.056000 -0.433800 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.056000 3.289000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.056000 -1.879429 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.056000 -1.409572 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.056100 -0.429161 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.056100 3.605315 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.056100 -2.060180 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.056100 -1.545135 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.056200 -0.424092 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.056200 3.918073 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.056200 -2.238899 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.056200 -1.679174 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.056300 -0.418611 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.056300 4.226963 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.056300 -2.415408 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.056300 -1.811556 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.056400 -0.412713 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.056400 4.531683 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.056400 -2.589533 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.056400 -1.942150 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.056500 -0.406409 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.056500 4.831930 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.056500 -2.761103 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.056500 -2.070827 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.056600 -0.399708 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.056600 5.127410 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.056600 -2.929949 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.056600 -2.197461 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.056700 -0.392610 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.056700 5.417830 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.056700 -3.095903 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.056700 -2.321927 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.056800 -0.385125 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.056800 5.702903 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.056800 -3.258802 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.056800 -2.444101 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.056900 -0.377251 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.056900 5.982348 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.056900 -3.418485 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.056900 -2.563864 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.057000 -0.369011 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.057000 6.255889 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.057000 -3.574794 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.057000 -2.681095 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.057100 -0.360408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.057100 6.523256 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.057100 -3.727575 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.057100 -2.795681 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.057200 -0.351451 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.057200 6.784185 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.057200 -3.876677 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.057200 -2.907508 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.057300 -0.342142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.057300 7.038419 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.057300 -4.021954 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.057300 -3.016465 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.057400 -0.332498 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.057400 7.285707 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.057400 -4.163261 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.057400 -3.122446 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.057500 -0.322526 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.057500 7.525805 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.057500 -4.300460 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.057500 -3.225345 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.057600 -0.312237 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.057600 7.758475 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.057600 -4.433414 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.057600 -3.325061 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.057700 -0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.057700 7.983487 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.057700 -4.561993 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.057700 -3.421495 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.057800 -0.290742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.057800 8.200622 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.057800 -4.686070 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.057800 -3.514552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.057900 -0.279557 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.057900 8.409664 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.057900 -4.805522 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.057900 -3.604142 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.058000 -0.268113 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.058000 8.610406 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.058000 -4.920232 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.058000 -3.690174 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.058100 -0.256386 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.058100 8.802651 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.058100 -5.030087 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.058100 -3.772565 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.058200 -0.244405 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.058200 8.986210 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.058200 -5.134977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.058200 -3.851233 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.058300 -0.232185 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.058300 9.160902 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.058300 -5.234801 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.058300 -3.926101 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.058400 -0.219738 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.058400 9.326552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.058400 -5.329458 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.058400 -3.997094 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.058500 -0.207073 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.058500 9.482998 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.058500 -5.418856 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.058500 -4.064142 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.058600 -0.194205 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.058600 9.630086 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.058600 -5.502906 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.058600 -4.127180 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.058700 -0.181147 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.058700 9.767669 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.058700 -5.581525 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.058700 -4.186144 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.058800 -0.167908 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.058800 9.895613 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.058800 -5.654636 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.058800 -4.240977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.058900 -0.154502 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.058900 10.013792 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.058900 -5.722167 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.058900 -4.291625 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.059000 -0.140947 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.059000 10.122088 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.059000 -5.784050 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.059000 -4.338038 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.059100 -0.127252 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.059100 10.220394 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.059100 -5.840225 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.059100 -4.380169 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.059200 -0.113436 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.059200 10.308614 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.059200 -5.890636 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.059200 -4.417977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.059300 -0.099497 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.059300 10.386662 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.059300 -5.935235 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.059300 -4.451426 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.059400 -0.085467 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.059400 10.454459 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.059400 -5.973977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.059400 -4.480483 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.059500 -0.071350 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.059500 10.511939 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.059500 -6.006823 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.059500 -4.505117 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.059600 -0.057165 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.059600 10.559045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.059600 -6.033740 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.059600 -4.525305 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.059700 -0.042923 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.059700 10.595731 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.059700 -6.054704 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.059700 -4.541028 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.059800 -0.028637 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.059800 10.621961 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.059800 -6.069692 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.059800 -4.552269 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.059900 -0.014324 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.059900 10.637708 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.059900 -6.078690 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.059900 -4.559018 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.060000 0.000003 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.060000 10.642957 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.060000 -6.081690 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.060000 -4.561267 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.060100 0.014331 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.060100 10.637703 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.060100 -6.078687 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.060100 -4.559015 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.060200 0.028644 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.060200 10.621951 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.060200 -6.069686 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.060200 -4.552265 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.060300 0.042929 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.060300 10.595716 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.060300 -6.054695 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.060300 -4.541021 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.060400 0.057171 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.060400 10.559025 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.060400 -6.033729 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.060400 -4.525297 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.060500 0.071358 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.060500 10.511914 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.060500 -6.006808 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.060500 -4.505106 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.060600 0.085474 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.060600 10.454429 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.060600 -5.973960 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.060600 -4.480470 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.060700 0.099504 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.060700 10.386627 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.060700 -5.935215 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.060700 -4.451412 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.060800 0.113438 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.060800 10.308575 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.060800 -5.890614 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.060800 -4.417961 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.060900 0.127258 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.060900 10.220348 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.060900 -5.840199 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.060900 -4.380149 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.061000 0.140960 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.061000 10.122038 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.061000 -5.784022 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.061000 -4.338016 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.061100 0.154511 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.061100 10.013738 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.061100 -5.722136 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.061100 -4.291602 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.061200 0.167914 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.061200 9.895555 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.061200 -5.654603 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.061200 -4.240952 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.061300 0.181150 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.061300 9.767606 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.061300 -5.581489 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.061300 -4.186117 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.061400 0.194212 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.061400 9.630018 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.061400 -5.502867 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.061400 -4.127151 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.061500 0.207080 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.061500 9.482927 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.061500 -5.418815 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.061500 -4.064111 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.061600 0.219742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.061600 9.326476 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.061600 -5.329415 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.061600 -3.997061 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.061700 0.232189 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.061700 9.160821 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.061700 -5.234755 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.061700 -3.926066 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.061800 0.244408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.061800 8.986126 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.061800 -5.134929 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.061800 -3.851197 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.061900 0.256384 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.061900 8.802562 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.061900 -5.030036 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.061900 -3.772527 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.062000 0.268110 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.062000 8.610312 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.062000 -4.920178 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.062000 -3.690134 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.062100 0.279574 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.062100 8.409566 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.062100 -4.805466 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.062100 -3.604100 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.062200 0.290760 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.062200 8.200520 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.062200 -4.686012 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.062200 -3.514509 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.062300 0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.062300 7.983382 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.062300 -4.561932 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.062300 -3.421449 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.062400 0.312242 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.062400 7.758365 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.062400 -4.433351 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.062400 -3.325014 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.062500 0.322534 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.062500 7.525692 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.062500 -4.300395 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.062500 -3.225297 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.062600 0.332503 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.062600 7.285592 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.062600 -4.163195 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.062600 -3.122396 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.062700 0.342146 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.062700 7.038301 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.062700 -4.021886 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.062700 -3.016415 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.062800 0.351452 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.062800 6.784064 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.062800 -3.876608 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.062800 -2.907456 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.062900 0.360411 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.062900 6.523131 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.062900 -3.727504 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.062900 -2.795628 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.063000 0.369018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.063000 6.255762 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.063000 -3.574721 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.063000 -2.681041 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.063100 0.377255 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.063100 5.982218 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.063100 -3.418411 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.063100 -2.563808 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.063200 0.385122 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.063200 5.702771 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.063200 -3.258726 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.063200 -2.444045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.063300 0.392609 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.063300 5.417695 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.063300 -3.095826 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.063300 -2.321869 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.063400 0.399715 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.063400 5.127273 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.063400 -2.929870 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.063400 -2.197403 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.063500 0.406418 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.063500 4.831790 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.063500 -2.761023 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.063500 -2.070767 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.063600 0.412720 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.063600 4.531539 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.063600 -2.589451 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.063600 -1.942088 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.063700 0.418612 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.063700 4.226818 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.063700 -2.415325 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.063700 -1.811493 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.063800 0.424096 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.063800 3.917925 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.063800 -2.238814 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.063800 -1.679111 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.063900 0.429162 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.063900 3.605166 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.063900 -2.060095 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.063900 -1.545071 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.064000 0.433801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.064000 3.288849 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.064000 -1.879343 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.064000 -1.409507 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.064100 0.438018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.064100 2.969287 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.064100 -1.696735 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.064100 -1.272552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.064200 0.441797 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.064200 2.646794 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.064200 -1.512454 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.064200 -1.134340 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.064300 0.445142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.064300 2.321688 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.064300 -1.326679 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.064300 -0.995009 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.064400 0.448054 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.064400 1.994291 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.064400 -1.139595 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.064400 -0.854696 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.064500 0.450515 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.064500 1.664925 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.064500 -0.951386 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.064500 -0.713539 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.064600 0.452532 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.064600 1.333915 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.064600 -0.762237 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.064600 -0.571678 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.064700 0.454104 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.064700 1.001589 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.064700 -0.572337 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.064700 -0.429253 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.064800 0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.064800 0.668274 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.064800 -0.381871 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.064800 -0.286403 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.064900 0.455901 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.064900 0.334302 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.064900 -0.191030 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.064900 -0.143272 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.065000 0.456129 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.065000 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.065000 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.065000 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.065100 0.455903 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.065100 -0.334305 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.065100 0.191032 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.065100 0.143274 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.065200 0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.065200 -0.668278 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.065200 0.381873 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.065200 0.286405 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.065300 0.454102 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.065300 -1.001591 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.065300 0.572338 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.065300 0.429253 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.065400 0.452531 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.065400 -1.333915 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.065400 0.762237 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.065400 0.571678 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.065500 0.450512 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.065500 -1.664924 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.065500 0.951385 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.065500 0.713539 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.065600 0.448049 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.065600 -1.994290 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.065600 1.139594 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.065600 0.854696 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.065700 0.445144 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.065700 -2.321686 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.065700 1.326678 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.065700 0.995008 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.065800 0.441801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.065800 -2.646791 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.065800 1.512452 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.065800 1.134339 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.065900 0.438014 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.065900 -2.969284 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.065900 1.696734 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.065900 1.272550 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.066000 0.433800 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.066000 -3.288845 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.066000 1.879340 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.066000 1.409505 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.066100 0.429161 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.066100 -3.605161 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.066100 2.060092 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.066100 1.545069 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.066200 0.424092 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.066200 -3.917918 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.066200 2.238810 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.066200 1.679108 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.066300 0.418611 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.066300 -4.226809 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.066300 2.415319 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.066300 1.811489 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.066400 0.412713 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.066400 -4.531528 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.066400 2.589444 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.066400 1.942083 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.066500 0.406409 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.066500 -4.831775 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.066500 2.761014 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.066500 2.070761 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.066600 0.399708 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.066600 -5.127255 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.066600 2.929860 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.066600 2.197395 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.066700 0.392610 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.066700 -5.417675 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.066700 3.095815 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.066700 2.321861 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.066800 0.385125 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.066800 -5.702749 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.066800 3.258713 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.066800 2.444035 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.066900 0.377251 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.066900 -5.982194 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.066900 3.418396 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.066900 2.563797 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.067000 0.369011 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.067000 -6.255735 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.067000 3.574706 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.067000 2.681029 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.067100 0.360408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.067100 -6.523102 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.067100 3.727487 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.067100 2.795615 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.067200 0.351451 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.067200 -6.784031 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.067200 3.876589 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.067200 2.907442 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.067300 0.342142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.067300 -7.038265 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.067300 4.021865 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.067300 3.016399 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.067400 0.332498 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.067400 -7.285552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.067400 4.163173 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.067400 3.122380 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.067500 0.322526 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.067500 -7.525650 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.067500 4.300371 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.067500 3.225278 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.067600 0.312237 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.067600 -7.758320 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.067600 4.433326 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.067600 3.324994 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.067700 0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.067700 -7.983333 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.067700 4.561904 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.067700 3.421428 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.067800 0.290742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.067800 -8.200467 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.067800 4.685981 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.067800 3.514486 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.067900 0.279557 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.067900 -8.409509 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.067900 4.805434 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.067900 3.604075 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.068000 0.268113 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.068000 -8.610251 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.068000 4.920144 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.068000 3.690108 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.068100 0.256386 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.068100 -8.802497 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.068100 5.029998 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.068100 3.772499 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.068200 0.244405 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.068200 -8.986056 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.068200 5.134889 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.068200 3.851167 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.068300 0.232185 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.068300 -9.160747 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.068300 5.234712 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.068300 3.926034 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.068400 0.219738 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.068400 -9.326397 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.068400 5.329370 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.068400 3.997027 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.068500 0.207073 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.068500 -9.482843 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.068500 5.418768 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.068500 4.064076 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.068600 0.194205 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.068600 -9.629931 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.068600 5.502818 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.068600 4.127113 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.068700 0.181147 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.068700 -9.767514 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.068700 5.581437 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.068700 4.186078 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.068800 0.167908 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.068800 -9.895458 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.068800 5.654548 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.068800 4.240911 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.068900 0.154502 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.068900 -10.013637 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.068900 5.722078 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.068900 4.291559 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.069000 0.140947 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.069000 -10.121933 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.069000 5.783962 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.069000 4.337971 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.069100 0.127252 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.069100 -10.220239 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.069100 5.840137 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.069100 4.380102 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.069200 0.113436 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.069200 -10.308459 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.069200 5.890548 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.069200 4.417911 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.069300 0.099497 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.069300 -10.386507 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.069300 5.935147 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.069300 4.451360 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.069400 0.085467 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.069400 -10.454304 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.069400 5.973888 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.069400 4.480416 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.069500 0.071350 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.069500 -10.511785 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.069500 6.006734 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.069500 4.505051 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.069600 0.057165 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.069600 -10.558891 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.069600 6.033652 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.069600 4.525239 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.069700 0.042923 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.069700 -10.595577 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.069700 6.054615 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.069700 4.540961 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.069800 0.028637 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.069800 -10.621806 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.069800 6.069603 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.069800 4.552203 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.069900 0.014324 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.069900 -10.637553 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.069900 6.078602 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.069900 4.558951 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.070000 -0.000003 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.070000 -10.642802 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.070000 6.081601 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.070000 4.561201 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.070100 -0.014331 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.070100 -10.637548 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.070100 6.078599 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.070100 4.558949 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.070200 -0.028644 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.070200 -10.621796 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.070200 6.069598 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.070200 4.552198 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.070300 -0.042929 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.070300 -10.595562 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.070300 6.054607 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.070300 4.540955 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.070400 -0.057171 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.070400 -10.558870 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.070400 6.033640 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.070400 4.525230 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.070500 -0.071358 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.070500 -10.511759 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.070500 6.006720 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.070500 4.505040 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.070600 -0.085474 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.070600 -10.454275 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.070600 5.973871 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.070600 4.480403 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.070700 -0.099504 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.070700 -10.386472 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.070700 5.935127 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.070700 4.451345 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.070800 -0.113438 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.070800 -10.308420 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.070800 5.890526 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.070800 4.417894 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.070900 -0.127258 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.070900 -10.220194 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.070900 5.840111 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.070900 4.380083 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.071000 -0.140960 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.071000 -10.121883 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.071000 5.783933 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.071000 4.337950 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.071100 -0.154511 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.071100 -10.013583 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.071100 5.722047 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.071100 4.291535 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.071200 -0.167914 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.071200 -9.895400 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.071200 5.654514 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.071200 4.240886 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.071300 -0.181150 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.071300 -9.767451 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.071300 5.581401 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.071300 4.186051 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.071400 -0.194212 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.071400 -9.629863 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.071400 5.502779 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.071400 4.127084 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.071500 -0.207080 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.071500 -9.482772 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.071500 5.418727 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.071500 4.064045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.071600 -0.219742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.071600 -9.326321 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.071600 5.329326 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.071600 3.996995 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.071700 -0.232189 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.071700 -9.160667 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.071700 5.234667 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.071700 3.926000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.071800 -0.244408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.071800 -8.985971 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.071800 5.134841 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.071800 3.851131 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.071900 -0.256384 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.071900 -8.802408 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.071900 5.029947 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.071900 3.772460 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.072000 -0.268110 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.072000 -8.610158 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.072000 4.920090 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.072000 3.690068 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.072100 -0.279574 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.072100 -8.409411 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.072100 4.805378 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.072100 3.604033 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.072200 -0.290760 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.072200 -8.200365 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.072200 4.685923 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.072200 3.514442 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.072300 -0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.072300 -7.983227 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.072300 4.561844 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.072300 3.421383 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.072400 -0.312242 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.072400 -7.758210 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.072400 4.433263 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.072400 3.324947 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.072500 -0.322534 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.072500 -7.525537 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.072500 4.300307 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.072500 3.225230 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.072600 -0.332503 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.072600 -7.285437 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.072600 4.163107 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.072600 3.122330 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.072700 -0.342146 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.072700 -7.038146 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.072700 4.021798 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.072700 3.016348 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.072800 -0.351452 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.072800 -6.783909 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.072800 3.876519 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.072800 2.907390 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.072900 -0.360411 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.072900 -6.522977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.072900 3.727415 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.072900 2.795561 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.073000 -0.369018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.073000 -6.255607 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.073000 3.574633 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.073000 2.680975 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.073100 -0.377255 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.073100 -5.982064 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.073100 3.418322 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.073100 2.563742 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.073200 -0.385122 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.073200 -5.702616 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.073200 3.258638 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.073200 2.443978 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.073300 -0.392609 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.073300 -5.417540 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.073300 3.095737 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.073300 2.321803 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.073400 -0.399715 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.073400 -5.127118 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.073400 2.929782 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.073400 2.197336 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.073500 -0.406418 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.073500 -4.831635 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.073500 2.760935 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.073500 2.070701 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.073600 -0.412720 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.073600 -4.531384 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.073600 2.589362 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.073600 1.942022 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.073700 -0.418612 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.073700 -4.226663 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.073700 2.415236 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.073700 1.811427 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.073800 -0.424096 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.073800 -3.917771 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.073800 2.238726 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.073800 1.679045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.073900 -0.429162 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.073900 -3.605011 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.073900 2.060007 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.073900 1.545005 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.074000 -0.433801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.074000 -3.288695 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.074000 1.879254 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.074000 1.409441 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.074100 -0.438018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.074100 -2.969132 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.074100 1.696647 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.074100 1.272485 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.074200 -0.441797 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.074200 -2.646639 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.074200 1.512365 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.074200 1.134274 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.074300 -0.445142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.074300 -2.321533 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.074300 1.326590 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.074300 0.994943 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.074400 -0.448054 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.074400 -1.994136 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.074400 1.139506 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.074400 0.854630 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.074500 -0.450515 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.074500 -1.664770 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.074500 0.951297 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.074500 0.713473 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.074600 -0.452532 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.074600 -1.333761 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.074600 0.762149 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.074600 0.571612 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.074700 -0.454104 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.074700 -1.001435 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.074700 0.572248 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.074700 0.429186 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.074800 -0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.074800 -0.668120 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.074800 0.381783 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.074800 0.286337 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.074900 -0.455901 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.074900 -0.334147 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.074900 0.190941 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.074900 0.143206 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.075000 -0.456129 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.075000 0.000156 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.075000 -0.000089 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.075000 -0.000067 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.075100 -0.455903 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.075100 0.334460 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.075100 -0.191120 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.075100 -0.143340 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.075200 -0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.075200 0.668433 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.075200 -0.381962 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.075200 -0.286471 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.075300 -0.454102 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.075300 1.001746 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.075300 -0.572426 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.075300 -0.429320 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.075400 -0.452531 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.075400 1.334070 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.075400 -0.762326 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.075400 -0.571744 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.075500 -0.450512 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.075500 1.665079 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.075500 -0.951474 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.075500 -0.713605 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.075600 -0.448049 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.075600 1.994444 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.075600 -1.139682 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.075600 -0.854762 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.075700 -0.445144 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.075700 2.321841 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.075700 -1.326766 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.075700 -0.995075 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.075800 -0.441801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.075800 2.646946 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.075800 -1.512541 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.075800 -1.134405 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.075900 -0.438014 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.075900 2.969439 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.075900 -1.696822 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.075900 -1.272617 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.076000 -0.433800 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.076000 3.289000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.076000 -1.879429 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.076000 -1.409572 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.076100 -0.429161 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.076100 3.605315 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.076100 -2.060180 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.076100 -1.545135 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.076200 -0.424092 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.076200 3.918073 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.076200 -2.238899 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.076200 -1.679174 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.076300 -0.418611 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.076300 4.226963 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.076300 -2.415408 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.076300 -1.811556 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.076400 -0.412713 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.076400 4.531683 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.076400 -2.589533 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.076400 -1.942150 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.076500 -0.406409 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.076500 4.831930 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.076500 -2.761103 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.076500 -2.070827 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.076600 -0.399708 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.076600 5.127410 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.076600 -2.929949 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.076600 -2.197461 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.076700 -0.392610 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.076700 5.417830 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.076700 -3.095903 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.076700 -2.321927 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.076800 -0.385125 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.076800 5.702903 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.076800 -3.258802 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.076800 -2.444101 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.076900 -0.377251 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.076900 5.982348 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.076900 -3.418485 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.076900 -2.563864 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.077000 -0.369011 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.077000 6.255889 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.077000 -3.574794 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.077000 -2.681095 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.077100 -0.360408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.077100 6.523256 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.077100 -3.727575 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.077100 -2.795681 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.077200 -0.351451 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.077200 6.784185 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.077200 -3.876677 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.077200 -2.907508 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.077300 -0.342142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.077300 7.038419 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.077300 -4.021954 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.077300 -3.016465 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.077400 -0.332498 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.077400 7.285707 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.077400 -4.163261 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.077400 -3.122446 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.077500 -0.322526 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.077500 7.525805 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.077500 -4.300460 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.077500 -3.225345 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.077600 -0.312237 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.077600 7.758475 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.077600 -4.433414 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.077600 -3.325061 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.077700 -0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.077700 7.983487 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.077700 -4.561993 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.077700 -3.421495 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.077800 -0.290742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.077800 8.200622 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.077800 -4.686070 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.077800 -3.514552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.077900 -0.279557 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.077900 8.409664 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.077900 -4.805522 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.077900 -3.604142 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.078000 -0.268113 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.078000 8.610406 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.078000 -4.920232 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.078000 -3.690174 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.078100 -0.256386 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.078100 8.802651 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.078100 -5.030087 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.078100 -3.772565 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.078200 -0.244405 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.078200 8.986210 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.078200 -5.134977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.078200 -3.851233 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.078300 -0.232185 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.078300 9.160902 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.078300 -5.234801 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.078300 -3.926101 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.078400 -0.219738 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.078400 9.326552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.078400 -5.329458 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.078400 -3.997094 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.078500 -0.207073 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.078500 9.482998 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.078500 -5.418856 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.078500 -4.064142 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.078600 -0.194205 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.078600 9.630086 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.078600 -5.502906 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.078600 -4.127180 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.078700 -0.181147 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.078700 9.767669 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.078700 -5.581525 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.078700 -4.186144 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.078800 -0.167908 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.078800 9.895613 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.078800 -5.654636 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.078800 -4.240977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.078900 -0.154502 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.078900 10.013792 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.078900 -5.722167 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.078900 -4.291625 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.079000 -0.140947 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.079000 10.122088 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.079000 -5.784050 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.079000 -4.338038 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.079100 -0.127252 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.079100 10.220394 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.079100 -5.840225 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.079100 -4.380169 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.079200 -0.113436 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.079200 10.308614 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.079200 -5.890636 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.079200 -4.417977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.079300 -0.099497 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.079300 10.386662 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.079300 -5.935235 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.079300 -4.451426 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.079400 -0.085467 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.079400 10.454459 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.079400 -5.973977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.079400 -4.480483 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.079500 -0.071350 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.079500 10.511939 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.079500 -6.006823 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.079500 -4.505117 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.079600 -0.057165 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.079600 10.559045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.079600 -6.033740 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.079600 -4.525305 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.079700 -0.042923 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.079700 10.595731 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.079700 -6.054704 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.079700 -4.541028 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.079800 -0.028637 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.079800 10.621961 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.079800 -6.069692 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.079800 -4.552269 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.079900 -0.014324 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.079900 10.637708 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.079900 -6.078690 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.079900 -4.559018 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.080000 0.000003 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.080000 10.642957 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.080000 -6.081690 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.080000 -4.561267 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.080100 0.014331 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.080100 10.637703 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.080100 -6.078687 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.080100 -4.559015 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.080200 0.028644 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.080200 10.621951 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.080200 -6.069686 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.080200 -4.552265 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.080300 0.042929 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.080300 10.595716 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.080300 -6.054695 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.080300 -4.541021 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.080400 0.057171 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.080400 10.559025 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.080400 -6.033729 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.080400 -4.525297 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.080500 0.071358 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.080500 10.511914 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.080500 -6.006808 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.080500 -4.505106 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.080600 0.085474 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.080600 10.454429 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.080600 -5.973960 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.080600 -4.480470 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.080700 0.099504 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.080700 10.386627 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.080700 -5.935215 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.080700 -4.451412 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.080800 0.113438 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.080800 10.308575 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.080800 -5.890614 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.080800 -4.417961 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.080900 0.127258 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.080900 10.220348 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.080900 -5.840199 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.080900 -4.380149 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.081000 0.140960 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.081000 10.122038 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.081000 -5.784022 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.081000 -4.338016 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.081100 0.154511 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.081100 10.013738 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.081100 -5.722136 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.081100 -4.291602 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.081200 0.167914 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.081200 9.895555 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.081200 -5.654603 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.081200 -4.240952 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.081300 0.181150 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.081300 9.767606 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.081300 -5.581489 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.081300 -4.186117 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.081400 0.194212 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.081400 9.630018 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.081400 -5.502867 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.081400 -4.127151 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.081500 0.207080 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.081500 9.482926 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.081500 -5.418815 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.081500 -4.064111 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.081600 0.219742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.081600 9.326476 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.081600 -5.329415 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.081600 -3.997061 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.081700 0.232189 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.081700 9.160821 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.081700 -5.234755 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.081700 -3.926066 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.081800 0.244408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.081800 8.986126 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.081800 -5.134929 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.081800 -3.851197 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.081900 0.256384 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.081900 8.802562 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.081900 -5.030036 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.081900 -3.772527 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.082000 0.268110 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.082000 8.610312 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.082000 -4.920178 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.082000 -3.690134 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.082100 0.279574 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.082100 8.409566 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.082100 -4.805466 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.082100 -3.604100 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.082200 0.290760 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.082200 8.200520 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.082200 -4.686012 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.082200 -3.514509 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.082300 0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.082300 7.983382 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.082300 -4.561932 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.082300 -3.421449 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.082400 0.312242 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.082400 7.758365 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.082400 -4.433351 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.082400 -3.325014 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.082500 0.322534 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.082500 7.525692 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.082500 -4.300395 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.082500 -3.225297 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.082600 0.332503 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.082600 7.285592 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.082600 -4.163195 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.082600 -3.122396 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.082700 0.342146 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.082700 7.038301 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.082700 -4.021886 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.082700 -3.016415 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.082800 0.351452 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.082800 6.784064 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.082800 -3.876608 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.082800 -2.907456 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.082900 0.360411 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.082900 6.523131 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.082900 -3.727504 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.082900 -2.795628 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.083000 0.369018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.083000 6.255762 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.083000 -3.574721 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.083000 -2.681041 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.083100 0.377255 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.083100 5.982218 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.083100 -3.418410 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.083100 -2.563808 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.083200 0.385122 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.083200 5.702771 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.083200 -3.258726 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.083200 -2.444045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.083300 0.392609 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.083300 5.417695 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.083300 -3.095826 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.083300 -2.321869 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.083400 0.399715 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.083400 5.127273 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.083400 -2.929870 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.083400 -2.197403 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.083500 0.406418 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.083500 4.831790 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.083500 -2.761023 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.083500 -2.070767 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.083600 0.412720 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.083600 4.531539 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.083600 -2.589451 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.083600 -1.942088 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.083700 0.418612 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.083700 4.226818 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.083700 -2.415325 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.083700 -1.811493 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.083800 0.424096 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.083800 3.917925 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.083800 -2.238814 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.083800 -1.679111 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.083900 0.429162 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.083900 3.605166 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.083900 -2.060095 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.083900 -1.545071 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.084000 0.433801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.084000 3.288849 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.084000 -1.879343 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.084000 -1.409507 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.084100 0.438018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.084100 2.969287 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.084100 -1.696735 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.084100 -1.272552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.084200 0.441797 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.084200 2.646794 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.084200 -1.512454 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.084200 -1.134340 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.084300 0.445142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.084300 2.321688 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.084300 -1.326679 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.084300 -0.995009 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.084400 0.448054 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.084400 1.994291 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.084400 -1.139595 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.084400 -0.854696 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.084500 0.450515 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.084500 1.664925 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.084500 -0.951386 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.084500 -0.713539 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.084600 0.452532 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.084600 1.333915 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.084600 -0.762237 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.084600 -0.571678 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.084700 0.454104 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.084700 1.001589 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.084700 -0.572337 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.084700 -0.429253 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.084800 0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.084800 0.668274 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.084800 -0.381871 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.084800 -0.286403 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.084900 0.455901 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.084900 0.334302 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.084900 -0.191030 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.084900 -0.143272 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.085000 0.456129 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.085000 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.085000 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.085000 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.085100 0.455903 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.085100 -0.334305 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.085100 0.191032 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.085100 0.143274 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.085200 0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.085200 -0.668278 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.085200 0.381873 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.085200 0.286405 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.085300 0.454102 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.085300 -1.001591 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.085300 0.572338 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.085300 0.429253 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.085400 0.452531 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.085400 -1.333915 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.085400 0.762237 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.085400 0.571678 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.085500 0.450512 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.085500 -1.664924 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.085500 0.951385 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.085500 0.713539 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.085600 0.448049 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.085600 -1.994290 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.085600 1.139594 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.085600 0.854696 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.085700 0.445144 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.085700 -2.321686 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.085700 1.326678 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.085700 0.995008 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.085800 0.441801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.085800 -2.646791 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.085800 1.512452 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.085800 1.134339 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.085900 0.438014 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.085900 -2.969284 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.085900 1.696734 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.085900 1.272550 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.086000 0.433800 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.086000 -3.288845 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.086000 1.879340 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.086000 1.409505 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.086100 0.429161 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.086100 -3.605161 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.086100 2.060092 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.086100 1.545069 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.086200 0.424092 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.086200 -3.917918 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.086200 2.238810 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.086200 1.679108 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.086300 0.418611 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.086300 -4.226809 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.086300 2.415319 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.086300 1.811489 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.086400 0.412713 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.086400 -4.531528 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.086400 2.589444 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.086400 1.942083 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.086500 0.406409 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.086500 -4.831775 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.086500 2.761014 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.086500 2.070761 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.086600 0.399708 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.086600 -5.127255 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.086600 2.929860 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.086600 2.197395 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.086700 0.392610 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.086700 -5.417675 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.086700 3.095815 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.086700 2.321861 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.086800 0.385125 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.086800 -5.702749 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.086800 3.258713 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.086800 2.444035 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.086900 0.377251 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.086900 -5.982194 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.086900 3.418396 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.086900 2.563797 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.087000 0.369011 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.087000 -6.255735 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.087000 3.574706 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.087000 2.681029 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.087100 0.360408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.087100 -6.523102 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.087100 3.727487 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.087100 2.795615 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.087200 0.351451 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.087200 -6.784031 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.087200 3.876589 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.087200 2.907442 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.087300 0.342142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.087300 -7.038265 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.087300 4.021865 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.087300 3.016399 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.087400 0.332498 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.087400 -7.285552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.087400 4.163173 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.087400 3.122380 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.087500 0.322526 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.087500 -7.525650 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.087500 4.300371 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.087500 3.225278 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.087600 0.312237 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.087600 -7.758320 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.087600 4.433326 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.087600 3.324994 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.087700 0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.087700 -7.983333 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.087700 4.561904 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.087700 3.421428 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.087800 0.290742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.087800 -8.200467 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.087800 4.685981 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.087800 3.514486 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.087900 0.279557 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.087900 -8.409509 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.087900 4.805434 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.087900 3.604075 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.088000 0.268113 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.088000 -8.610251 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.088000 4.920144 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.088000 3.690108 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.088100 0.256386 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.088100 -8.802497 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.088100 5.029998 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.088100 3.772499 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.088200 0.244405 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.088200 -8.986056 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.088200 5.134889 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.088200 3.851167 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.088300 0.232185 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.088300 -9.160747 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.088300 5.234712 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.088300 3.926034 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.088400 0.219738 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.088400 -9.326397 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.088400 5.329370 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.088400 3.997027 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.088500 0.207073 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.088500 -9.482843 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.088500 5.418768 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.088500 4.064076 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.088600 0.194205 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.088600 -9.629931 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.088600 5.502818 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.088600 4.127113 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.088700 0.181147 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.088700 -9.767514 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.088700 5.581437 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.088700 4.186078 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.088800 0.167908 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.088800 -9.895458 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.088800 5.654548 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.088800 4.240911 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.088900 0.154502 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.088900 -10.013637 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.088900 5.722078 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.088900 4.291559 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.089000 0.140947 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.089000 -10.121933 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.089000 5.783962 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.089000 4.337971 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.089100 0.127252 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.089100 -10.220239 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.089100 5.840137 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.089100 4.380102 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.089200 0.113436 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.089200 -10.308459 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.089200 5.890548 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.089200 4.417911 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.089300 0.099497 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.089300 -10.386507 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.089300 5.935147 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.089300 4.451360 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.089400 0.085467 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.089400 -10.454304 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.089400 5.973888 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.089400 4.480416 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.089500 0.071350 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.089500 -10.511785 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.089500 6.006734 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.089500 4.505051 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.089600 0.057165 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.089600 -10.558891 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.089600 6.033652 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.089600 4.525239 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.089700 0.042923 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.089700 -10.595577 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.089700 6.054615 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.089700 4.540961 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.089800 0.028637 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.089800 -10.621806 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.089800 6.069603 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.089800 4.552203 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.089900 0.014324 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.089900 -10.637553 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.089900 6.078602 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.089900 4.558951 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.090000 -0.000003 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.090000 -10.642802 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.090000 6.081601 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.090000 4.561201 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.090100 -0.014331 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.090100 -10.637548 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.090100 6.078599 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.090100 4.558949 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.090200 -0.028644 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.090200 -10.621796 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.090200 6.069598 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.090200 4.552198 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.090300 -0.042929 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.090300 -10.595562 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.090300 6.054607 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.090300 4.540955 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.090400 -0.057171 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.090400 -10.558871 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.090400 6.033640 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.090400 4.525230 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.090500 -0.071358 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.090500 -10.511759 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.090500 6.006720 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.090500 4.505040 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.090600 -0.085474 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.090600 -10.454275 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.090600 5.973871 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.090600 4.480403 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.090700 -0.099504 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.090700 -10.386472 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.090700 5.935127 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.090700 4.451345 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.090800 -0.113438 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.090800 -10.308420 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.090800 5.890526 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.090800 4.417894 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.090900 -0.127258 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.090900 -10.220194 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.090900 5.840111 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.090900 4.380083 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.091000 -0.140960 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.091000 -10.121883 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.091000 5.783933 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.091000 4.337950 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.091100 -0.154511 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.091100 -10.013583 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.091100 5.722047 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.091100 4.291535 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.091200 -0.167914 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.091200 -9.895400 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.091200 5.654514 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.091200 4.240886 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.091300 -0.181150 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.091300 -9.767451 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.091300 5.581401 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.091300 4.186051 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.091400 -0.194212 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.091400 -9.629863 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.091400 5.502779 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.091400 4.127084 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.091500 -0.207080 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.091500 -9.482772 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.091500 5.418727 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.091500 4.064045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.091600 -0.219742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.091600 -9.326321 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.091600 5.329326 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.091600 3.996995 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.091700 -0.232189 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.091700 -9.160667 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.091700 5.234667 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.091700 3.926000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.091800 -0.244408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.091800 -8.985971 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.091800 5.134841 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.091800 3.851131 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.091900 -0.256384 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.091900 -8.802408 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.091900 5.029947 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.091900 3.772460 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.092000 -0.268110 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.092000 -8.610158 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.092000 4.920090 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.092000 3.690068 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.092100 -0.279574 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.092100 -8.409411 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.092100 4.805378 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.092100 3.604033 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.092200 -0.290760 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.092200 -8.200365 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.092200 4.685923 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.092200 3.514442 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.092300 -0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.092300 -7.983227 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.092300 4.561844 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.092300 3.421383 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.092400 -0.312242 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.092400 -7.758210 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.092400 4.433263 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.092400 3.324947 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.092500 -0.322534 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.092500 -7.525537 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.092500 4.300307 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.092500 3.225230 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.092600 -0.332503 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.092600 -7.285437 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.092600 4.163107 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.092600 3.122330 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.092700 -0.342146 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.092700 -7.038146 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.092700 4.021798 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.092700 3.016348 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.092800 -0.351452 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.092800 -6.783909 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.092800 3.876519 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.092800 2.907390 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.092900 -0.360411 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.092900 -6.522977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.092900 3.727415 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.092900 2.795561 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.093000 -0.369018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.093000 -6.255607 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.093000 3.574633 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.093000 2.680975 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.093100 -0.377255 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.093100 -5.982064 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.093100 3.418322 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.093100 2.563742 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.093200 -0.385122 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.093200 -5.702616 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.093200 3.258638 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.093200 2.443978 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.093300 -0.392609 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.093300 -5.417540 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.093300 3.095737 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.093300 2.321803 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.093400 -0.399715 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.093400 -5.127118 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.093400 2.929782 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.093400 2.197336 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.093500 -0.406418 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.093500 -4.831635 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.093500 2.760935 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.093500 2.070701 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.093600 -0.412720 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.093600 -4.531384 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.093600 2.589362 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.093600 1.942022 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.093700 -0.418612 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.093700 -4.226663 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.093700 2.415236 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.093700 1.811427 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.093800 -0.424096 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.093800 -3.917771 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.093800 2.238726 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.093800 1.679045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.093900 -0.429162 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.093900 -3.605011 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.093900 2.060007 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.093900 1.545005 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.094000 -0.433801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.094000 -3.288695 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.094000 1.879254 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.094000 1.409441 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.094100 -0.438018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.094100 -2.969132 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.094100 1.696647 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.094100 1.272485 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.094200 -0.441797 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.094200 -2.646639 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.094200 1.512365 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.094200 1.134274 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.094300 -0.445142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.094300 -2.321533 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.094300 1.326590 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.094300 0.994943 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.094400 -0.448054 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.094400 -1.994136 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.094400 1.139506 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.094400 0.854630 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.094500 -0.450515 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.094500 -1.664770 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.094500 0.951297 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.094500 0.713473 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.094600 -0.452532 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.094600 -1.333761 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.094600 0.762149 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.094600 0.571612 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.094700 -0.454104 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.094700 -1.001435 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.094700 0.572248 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.094700 0.429186 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.094800 -0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.094800 -0.668120 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.094800 0.381783 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.094800 0.286337 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.094900 -0.455901 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.094900 -0.334147 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.094900 0.190941 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.094900 0.143206 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.095000 -0.456129 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.095000 0.000156 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.095000 -0.000089 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.095000 -0.000067 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.095100 -0.455903 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.095100 0.334460 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.095100 -0.191120 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.095100 -0.143340 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.095200 -0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.095200 0.668433 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.095200 -0.381962 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.095200 -0.286471 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.095300 -0.454102 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.095300 1.001746 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.095300 -0.572426 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.095300 -0.429320 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.095400 -0.452531 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.095400 1.334070 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.095400 -0.762326 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.095400 -0.571744 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.095500 -0.450512 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.095500 1.665079 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.095500 -0.951474 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.095500 -0.713605 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.095600 -0.448049 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.095600 1.994444 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.095600 -1.139682 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.095600 -0.854762 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.095700 -0.445144 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.095700 2.321841 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.095700 -1.326766 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.095700 -0.995075 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.095800 -0.441801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.095800 2.646946 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.095800 -1.512541 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.095800 -1.134405 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.095900 -0.438014 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.095900 2.969439 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.095900 -1.696822 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.095900 -1.272617 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.096000 -0.433800 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.096000 3.289000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.096000 -1.879429 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.096000 -1.409572 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.096100 -0.429161 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.096100 3.605315 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.096100 -2.060180 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.096100 -1.545135 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.096200 -0.424092 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.096200 3.918073 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.096200 -2.238899 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.096200 -1.679174 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.096300 -0.418611 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.096300 4.226963 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.096300 -2.415408 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.096300 -1.811556 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.096400 -0.412713 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.096400 4.531683 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.096400 -2.589533 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.096400 -1.942150 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.096500 -0.406409 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.096500 4.831930 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.096500 -2.761103 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.096500 -2.070827 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.096600 -0.399708 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.096600 5.127410 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.096600 -2.929949 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.096600 -2.197461 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.096700 -0.392610 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.096700 5.417830 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.096700 -3.095903 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.096700 -2.321927 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.096800 -0.385125 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.096800 5.702903 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.096800 -3.258802 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.096800 -2.444101 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.096900 -0.377251 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.096900 5.982348 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.096900 -3.418485 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.096900 -2.563864 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.097000 -0.369011 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.097000 6.255889 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.097000 -3.574794 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.097000 -2.681095 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.097100 -0.360408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.097100 6.523256 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.097100 -3.727575 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.097100 -2.795681 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.097200 -0.351451 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.097200 6.784185 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.097200 -3.876677 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.097200 -2.907508 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.097300 -0.342142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.097300 7.038419 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.097300 -4.021954 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.097300 -3.016465 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.097400 -0.332498 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.097400 7.285707 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.097400 -4.163261 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.097400 -3.122446 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.097500 -0.322526 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.097500 7.525805 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.097500 -4.300460 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.097500 -3.225345 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.097600 -0.312237 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.097600 7.758475 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.097600 -4.433414 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.097600 -3.325061 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.097700 -0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.097700 7.983487 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.097700 -4.561993 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.097700 -3.421495 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.097800 -0.290742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.097800 8.200622 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.097800 -4.686070 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.097800 -3.514552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.097900 -0.279557 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.097900 8.409664 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.097900 -4.805522 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.097900 -3.604142 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.098000 -0.268113 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.098000 8.610406 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.098000 -4.920232 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.098000 -3.690174 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.098100 -0.256386 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.098100 8.802651 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.098100 -5.030087 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.098100 -3.772565 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.098200 -0.244405 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.098200 8.986210 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.098200 -5.134977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.098200 -3.851233 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.098300 -0.232185 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.098300 9.160902 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.098300 -5.234801 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.098300 -3.926101 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.098400 -0.219738 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.098400 9.326552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.098400 -5.329458 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.098400 -3.997094 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.098500 -0.207073 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.098500 9.482998 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.098500 -5.418856 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.098500 -4.064142 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.098600 -0.194205 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.098600 9.630086 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.098600 -5.502906 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.098600 -4.127180 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.098700 -0.181147 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.098700 9.767669 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.098700 -5.581525 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.098700 -4.186144 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.098800 -0.167908 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.098800 9.895613 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.098800 -5.654636 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.098800 -4.240977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.098900 -0.154502 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.098900 10.013792 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.098900 -5.722167 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.098900 -4.291625 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.099000 -0.140947 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.099000 10.122088 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.099000 -5.784050 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.099000 -4.338038 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.099100 -0.127252 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.099100 10.220394 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.099100 -5.840225 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.099100 -4.380169 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.099200 -0.113436 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.099200 10.308614 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.099200 -5.890636 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.099200 -4.417977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.099300 -0.099497 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.099300 10.386662 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.099300 -5.935235 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.099300 -4.451426 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.099400 -0.085467 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.099400 10.454459 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.099400 -5.973977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.099400 -4.480483 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.099500 -0.071350 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.099500 10.511939 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.099500 -6.006823 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.099500 -4.505117 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.099600 -0.057165 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.099600 10.559045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.099600 -6.033740 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.099600 -4.525305 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.099700 -0.042923 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.099700 10.595731 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.099700 -6.054704 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.099700 -4.541028 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.099800 -0.028637 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.099800 10.621961 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.099800 -6.069692 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.099800 -4.552269 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.099900 -0.014324 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.099900 10.637708 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.099900 -6.078690 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.099900 -4.559018 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.100000 0.000003 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.100000 10.642957 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.100000 -6.081690 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.100000 -4.561267 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.100100 0.014331 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.100100 10.637703 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.100100 -6.078687 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.100100 -4.559015 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.100200 0.028644 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.100200 10.621951 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.100200 -6.069686 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.100200 -4.552265 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.100300 0.042929 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.100300 10.595716 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.100300 -6.054695 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.100300 -4.541021 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.100400 0.057171 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.100400 10.559025 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.100400 -6.033729 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.100400 -4.525297 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.100500 0.071358 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.100500 10.511914 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.100500 -6.006808 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.100500 -4.505106 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.100600 0.085474 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.100600 10.454429 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.100600 -5.973960 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.100600 -4.480470 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.100700 0.099504 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.100700 10.386627 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.100700 -5.935215 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.100700 -4.451412 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.100800 0.113438 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.100800 10.308575 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.100800 -5.890614 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.100800 -4.417961 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.100900 0.127258 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.100900 10.220348 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.100900 -5.840199 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.100900 -4.380149 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.101000 0.140960 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.101000 10.122038 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.101000 -5.784022 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.101000 -4.338016 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.101100 0.154511 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.101100 10.013738 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.101100 -5.722136 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.101100 -4.291602 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.101200 0.167914 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.101200 9.895555 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.101200 -5.654603 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.101200 -4.240952 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.101300 0.181150 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.101300 9.767606 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.101300 -5.581489 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.101300 -4.186117 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.101400 0.194212 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.101400 9.630018 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.101400 -5.502867 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.101400 -4.127151 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.101500 0.207080 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.101500 9.482926 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.101500 -5.418815 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.101500 -4.064111 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.101600 0.219742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.101600 9.326476 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.101600 -5.329415 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.101600 -3.997061 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.101700 0.232189 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.101700 9.160821 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.101700 -5.234755 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.101700 -3.926066 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.101800 0.244408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.101800 8.986126 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.101800 -5.134929 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.101800 -3.851197 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.101900 0.256384 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.101900 8.802562 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.101900 -5.030036 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.101900 -3.772527 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.102000 0.268110 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.102000 8.610312 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.102000 -4.920178 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.102000 -3.690134 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.102100 0.279574 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.102100 8.409566 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.102100 -4.805466 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.102100 -3.604100 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.102200 0.290760 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.102200 8.200520 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.102200 -4.686012 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.102200 -3.514509 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.102300 0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.102300 7.983382 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.102300 -4.561932 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.102300 -3.421449 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.102400 0.312242 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.102400 7.758365 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.102400 -4.433351 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.102400 -3.325014 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.102500 0.322534 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.102500 7.525692 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.102500 -4.300395 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.102500 -3.225297 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.102600 0.332503 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.102600 7.285592 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.102600 -4.163195 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.102600 -3.122396 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.102700 0.342146 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.102700 7.038301 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.102700 -4.021886 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.102700 -3.016415 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.102800 0.351452 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.102800 6.784064 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.102800 -3.876608 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.102800 -2.907456 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.102900 0.360411 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.102900 6.523131 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.102900 -3.727504 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.102900 -2.795628 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.103000 0.369018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.103000 6.255762 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.103000 -3.574721 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.103000 -2.681041 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.103100 0.377255 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.103100 5.982218 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.103100 -3.418410 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.103100 -2.563808 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.103200 0.385122 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.103200 5.702771 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.103200 -3.258726 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.103200 -2.444045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.103300 0.392609 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.103300 5.417695 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.103300 -3.095826 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.103300 -2.321869 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.103400 0.399715 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.103400 5.127273 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.103400 -2.929870 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.103400 -2.197403 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.103500 0.406418 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.103500 4.831790 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.103500 -2.761023 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.103500 -2.070767 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.103600 0.412720 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.103600 4.531539 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.103600 -2.589451 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.103600 -1.942088 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.103700 0.418612 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.103700 4.226818 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.103700 -2.415324 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.103700 -1.811493 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.103800 0.424096 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.103800 3.917925 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.103800 -2.238814 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.103800 -1.679111 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.103900 0.429162 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.103900 3.605166 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.103900 -2.060095 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.103900 -1.545071 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.104000 0.433801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.104000 3.288849 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.104000 -1.879343 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.104000 -1.409507 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.104100 0.438018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.104100 2.969287 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.104100 -1.696735 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.104100 -1.272552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.104200 0.441797 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.104200 2.646794 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.104200 -1.512453 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.104200 -1.134340 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.104300 0.445142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.104300 2.321688 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.104300 -1.326679 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.104300 -0.995009 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.104400 0.448054 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.104400 1.994291 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.104400 -1.139595 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.104400 -0.854696 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.104500 0.450515 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.104500 1.664925 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.104500 -0.951386 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.104500 -0.713539 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.104600 0.452532 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.104600 1.333915 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.104600 -0.762237 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.104600 -0.571678 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.104700 0.454104 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.104700 1.001589 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.104700 -0.572337 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.104700 -0.429253 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.104800 0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.104800 0.668274 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.104800 -0.381871 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.104800 -0.286403 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.104900 0.455901 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.104900 0.334302 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.104900 -0.191029 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.104900 -0.143272 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.105000 0.456129 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.105000 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.105000 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.105000 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.105100 0.455903 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.105100 -0.334305 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.105100 0.191032 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.105100 0.143274 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.105200 0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.105200 -0.668278 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.105200 0.381873 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.105200 0.286405 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.105300 0.454102 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.105300 -1.001591 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.105300 0.572338 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.105300 0.429253 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.105400 0.452531 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.105400 -1.333915 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.105400 0.762237 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.105400 0.571678 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.105500 0.450512 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.105500 -1.664924 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.105500 0.951385 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.105500 0.713539 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.105600 0.448049 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.105600 -1.994290 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.105600 1.139594 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.105600 0.854696 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.105700 0.445144 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.105700 -2.321686 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.105700 1.326678 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.105700 0.995008 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.105800 0.441801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.105800 -2.646791 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.105800 1.512452 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.105800 1.134339 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.105900 0.438014 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.105900 -2.969284 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.105900 1.696734 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.105900 1.272550 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.106000 0.433800 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.106000 -3.288845 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.106000 1.879340 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.106000 1.409505 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.106100 0.429161 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.106100 -3.605161 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.106100 2.060092 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.106100 1.545069 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.106200 0.424092 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.106200 -3.917918 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.106200 2.238810 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.106200 1.679108 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.106300 0.418611 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.106300 -4.226809 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.106300 2.415319 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.106300 1.811489 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.106400 0.412713 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.106400 -4.531528 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.106400 2.589444 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.106400 1.942083 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.106500 0.406409 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.106500 -4.831775 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.106500 2.761014 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.106500 2.070761 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.106600 0.399708 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.106600 -5.127255 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.106600 2.929860 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.106600 2.197395 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.106700 0.392610 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.106700 -5.417675 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.106700 3.095815 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.106700 2.321861 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.106800 0.385125 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.106800 -5.702749 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.106800 3.258713 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.106800 2.444035 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.106900 0.377251 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.106900 -5.982194 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.106900 3.418396 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.106900 2.563797 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.107000 0.369011 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.107000 -6.255735 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.107000 3.574706 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.107000 2.681029 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.107100 0.360408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.107100 -6.523102 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.107100 3.727487 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.107100 2.795615 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.107200 0.351451 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.107200 -6.784031 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.107200 3.876589 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.107200 2.907442 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.107300 0.342142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.107300 -7.038265 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.107300 4.021865 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.107300 3.016399 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.107400 0.332498 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.107400 -7.285552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.107400 4.163173 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.107400 3.122380 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.107500 0.322526 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.107500 -7.525650 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.107500 4.300371 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.107500 3.225278 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.107600 0.312237 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.107600 -7.758320 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.107600 4.433326 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.107600 3.324994 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.107700 0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.107700 -7.983333 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.107700 4.561904 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.107700 3.421428 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.107800 0.290742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.107800 -8.200467 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.107800 4.685981 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.107800 3.514486 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.107900 0.279557 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.107900 -8.409509 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.107900 4.805434 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.107900 3.604075 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.108000 0.268113 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.108000 -8.610251 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.108000 4.920144 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.108000 3.690108 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.108100 0.256386 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.108100 -8.802497 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.108100 5.029998 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.108100 3.772499 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.108200 0.244405 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.108200 -8.986056 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.108200 5.134889 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.108200 3.851167 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.108300 0.232185 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.108300 -9.160747 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.108300 5.234712 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.108300 3.926034 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.108400 0.219738 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.108400 -9.326397 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.108400 5.329370 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.108400 3.997027 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.108500 0.207073 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.108500 -9.482843 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.108500 5.418768 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.108500 4.064076 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.108600 0.194205 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.108600 -9.629931 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.108600 5.502818 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.108600 4.127113 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.108700 0.181147 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.108700 -9.767514 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.108700 5.581437 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.108700 4.186078 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.108800 0.167908 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.108800 -9.895458 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.108800 5.654548 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.108800 4.240911 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.108900 0.154502 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.108900 -10.013637 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.108900 5.722078 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.108900 4.291559 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.109000 0.140947 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.109000 -10.121933 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.109000 5.783962 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.109000 4.337971 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.109100 0.127252 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.109100 -10.220239 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.109100 5.840137 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.109100 4.380102 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.109200 0.113436 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.109200 -10.308459 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.109200 5.890548 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.109200 4.417911 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.109300 0.099497 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.109300 -10.386507 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.109300 5.935147 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.109300 4.451360 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.109400 0.085467 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.109400 -10.454304 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.109400 5.973888 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.109400 4.480416 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.109500 0.071350 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.109500 -10.511785 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.109500 6.006734 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.109500 4.505051 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.109600 0.057165 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.109600 -10.558891 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.109600 6.033652 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.109600 4.525239 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.109700 0.042923 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.109700 -10.595577 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.109700 6.054615 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.109700 4.540961 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.109800 0.028637 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.109800 -10.621806 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.109800 6.069603 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.109800 4.552203 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.109900 0.014324 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.109900 -10.637553 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.109900 6.078602 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.109900 4.558951 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.110000 -0.000003 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.110000 -10.642802 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.110000 6.081601 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.110000 4.561201 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.110100 -0.014331 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.110100 -10.637548 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.110100 6.078599 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.110100 4.558949 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.110200 -0.028644 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.110200 -10.621796 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.110200 6.069598 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.110200 4.552198 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.110300 -0.042929 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.110300 -10.595562 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.110300 6.054607 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.110300 4.540955 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.110400 -0.057171 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.110400 -10.558871 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.110400 6.033640 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.110400 4.525230 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.110500 -0.071358 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.110500 -10.511759 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.110500 6.006720 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.110500 4.505040 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.110600 -0.085474 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.110600 -10.454275 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.110600 5.973871 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.110600 4.480403 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.110700 -0.099504 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.110700 -10.386472 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.110700 5.935127 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.110700 4.451345 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.110800 -0.113438 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.110800 -10.308420 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.110800 5.890526 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.110800 4.417894 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.110900 -0.127258 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.110900 -10.220194 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.110900 5.840111 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.110900 4.380083 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.111000 -0.140960 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.111000 -10.121883 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.111000 5.783933 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.111000 4.337950 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.111100 -0.154511 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.111100 -10.013583 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.111100 5.722047 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.111100 4.291535 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.111200 -0.167914 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.111200 -9.895400 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.111200 5.654514 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.111200 4.240886 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.111300 -0.181150 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.111300 -9.767451 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.111300 5.581401 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.111300 4.186051 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.111400 -0.194212 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.111400 -9.629863 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.111400 5.502779 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.111400 4.127084 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.111500 -0.207080 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.111500 -9.482772 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.111500 5.418727 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.111500 4.064045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.111600 -0.219742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.111600 -9.326321 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.111600 5.329326 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.111600 3.996995 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.111700 -0.232189 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.111700 -9.160667 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.111700 5.234667 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.111700 3.926000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.111800 -0.244408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.111800 -8.985971 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.111800 5.134841 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.111800 3.851131 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.111900 -0.256384 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.111900 -8.802408 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.111900 5.029947 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.111900 3.772460 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.112000 -0.268110 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.112000 -8.610158 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.112000 4.920090 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.112000 3.690068 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.112100 -0.279574 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.112100 -8.409411 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.112100 4.805378 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.112100 3.604033 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.112200 -0.290760 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.112200 -8.200365 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.112200 4.685923 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.112200 3.514442 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.112300 -0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.112300 -7.983227 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.112300 4.561844 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.112300 3.421383 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.112400 -0.312242 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.112400 -7.758210 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.112400 4.433263 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.112400 3.324947 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.112500 -0.322534 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.112500 -7.525537 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.112500 4.300307 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.112500 3.225230 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.112600 -0.332503 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.112600 -7.285437 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.112600 4.163107 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.112600 3.122330 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.112700 -0.342146 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.112700 -7.038146 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.112700 4.021798 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.112700 3.016348 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.112800 -0.351452 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.112800 -6.783909 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.112800 3.876519 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.112800 2.907390 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.112900 -0.360411 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.112900 -6.522977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.112900 3.727415 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.112900 2.795561 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.113000 -0.369018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.113000 -6.255607 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.113000 3.574633 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.113000 2.680975 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.113100 -0.377255 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.113100 -5.982064 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.113100 3.418322 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.113100 2.563742 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.113200 -0.385122 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.113200 -5.702616 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.113200 3.258638 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.113200 2.443978 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.113300 -0.392609 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.113300 -5.417540 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.113300 3.095737 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.113300 2.321803 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.113400 -0.399715 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.113400 -5.127118 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.113400 2.929782 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.113400 2.197336 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.113500 -0.406418 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.113500 -4.831635 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.113500 2.760935 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.113500 2.070701 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.113600 -0.412720 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.113600 -4.531384 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.113600 2.589362 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.113600 1.942022 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.113700 -0.418612 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.113700 -4.226663 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.113700 2.415236 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.113700 1.811427 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.113800 -0.424096 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.113800 -3.917771 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.113800 2.238726 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.113800 1.679045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.113900 -0.429162 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.113900 -3.605011 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.113900 2.060007 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.113900 1.545005 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.114000 -0.433801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.114000 -3.288695 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.114000 1.879254 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.114000 1.409441 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.114100 -0.438018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.114100 -2.969132 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.114100 1.696647 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.114100 1.272485 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.114200 -0.441797 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.114200 -2.646639 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.114200 1.512365 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.114200 1.134274 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.114300 -0.445142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.114300 -2.321533 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.114300 1.326590 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.114300 0.994943 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.114400 -0.448054 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.114400 -1.994136 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.114400 1.139506 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.114400 0.854630 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.114500 -0.450515 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.114500 -1.664770 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.114500 0.951297 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.114500 0.713473 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.114600 -0.452532 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.114600 -1.333761 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.114600 0.762149 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.114600 0.571612 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.114700 -0.454104 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.114700 -1.001435 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.114700 0.572248 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.114700 0.429186 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.114800 -0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.114800 -0.668120 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.114800 0.381783 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.114800 0.286337 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.114900 -0.455901 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.114900 -0.334147 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.114900 0.190941 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.114900 0.143206 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.115000 -0.456129 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.115000 0.000156 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.115000 -0.000089 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.115000 -0.000067 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.115100 -0.455903 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.115100 0.334460 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.115100 -0.191120 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.115100 -0.143340 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.115200 -0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.115200 0.668433 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.115200 -0.381962 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.115200 -0.286471 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.115300 -0.454102 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.115300 1.001746 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.115300 -0.572426 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.115300 -0.429320 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.115400 -0.452531 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.115400 1.334070 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.115400 -0.762326 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.115400 -0.571744 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.115500 -0.450512 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.115500 1.665079 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.115500 -0.951474 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.115500 -0.713605 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.115600 -0.448049 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.115600 1.994444 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.115600 -1.139682 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.115600 -0.854762 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.115700 -0.445144 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.115700 2.321841 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.115700 -1.326766 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.115700 -0.995075 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.115800 -0.441801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.115800 2.646946 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.115800 -1.512541 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.115800 -1.134405 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.115900 -0.438014 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.115900 2.969438 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.115900 -1.696822 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.115900 -1.272616 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.116000 -0.433800 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.116000 3.289000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.116000 -1.879429 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.116000 -1.409572 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.116100 -0.429161 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.116100 3.605315 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.116100 -2.060180 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.116100 -1.545135 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.116200 -0.424092 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.116200 3.918073 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.116200 -2.238899 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.116200 -1.679174 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.116300 -0.418611 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.116300 4.226963 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.116300 -2.415408 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.116300 -1.811556 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.116400 -0.412713 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.116400 4.531683 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.116400 -2.589533 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.116400 -1.942150 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.116500 -0.406409 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.116500 4.831930 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.116500 -2.761103 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.116500 -2.070827 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.116600 -0.399708 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.116600 5.127410 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.116600 -2.929949 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.116600 -2.197461 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.116700 -0.392610 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.116700 5.417830 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.116700 -3.095903 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.116700 -2.321927 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.116800 -0.385125 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.116800 5.702903 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.116800 -3.258802 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.116800 -2.444101 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.116900 -0.377251 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.116900 5.982348 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.116900 -3.418485 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.116900 -2.563864 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.117000 -0.369011 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.117000 6.255889 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.117000 -3.574794 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.117000 -2.681095 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.117100 -0.360408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.117100 6.523256 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.117100 -3.727575 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.117100 -2.795681 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.117200 -0.351451 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.117200 6.784185 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.117200 -3.876677 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.117200 -2.907508 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.117300 -0.342142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.117300 7.038419 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.117300 -4.021954 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.117300 -3.016465 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.117400 -0.332498 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.117400 7.285707 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.117400 -4.163261 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.117400 -3.122446 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.117500 -0.322526 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.117500 7.525805 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.117500 -4.300460 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.117500 -3.225345 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.117600 -0.312237 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.117600 7.758475 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.117600 -4.433414 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.117600 -3.325061 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.117700 -0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.117700 7.983487 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.117700 -4.561993 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.117700 -3.421495 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.117800 -0.290742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.117800 8.200622 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.117800 -4.686070 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.117800 -3.514552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.117900 -0.279557 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.117900 8.409664 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.117900 -4.805522 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.117900 -3.604142 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.118000 -0.268113 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.118000 8.610406 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.118000 -4.920232 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.118000 -3.690174 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.118100 -0.256386 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.118100 8.802651 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.118100 -5.030087 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.118100 -3.772565 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.118200 -0.244405 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.118200 8.986210 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.118200 -5.134977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.118200 -3.851233 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.118300 -0.232185 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.118300 9.160902 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.118300 -5.234801 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.118300 -3.926101 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.118400 -0.219738 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.118400 9.326552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.118400 -5.329458 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.118400 -3.997094 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.118500 -0.207073 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.118500 9.482998 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.118500 -5.418856 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.118500 -4.064142 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.118600 -0.194205 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.118600 9.630086 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.118600 -5.502906 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.118600 -4.127180 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.118700 -0.181147 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.118700 9.767669 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.118700 -5.581525 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.118700 -4.186144 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.118800 -0.167908 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.118800 9.895613 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.118800 -5.654636 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.118800 -4.240977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.118900 -0.154502 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.118900 10.013792 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.118900 -5.722167 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.118900 -4.291625 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.119000 -0.140947 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.119000 10.122088 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.119000 -5.784050 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.119000 -4.338038 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.119100 -0.127252 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.119100 10.220394 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.119100 -5.840225 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.119100 -4.380169 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.119200 -0.113436 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.119200 10.308614 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.119200 -5.890636 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.119200 -4.417977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.119300 -0.099497 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.119300 10.386662 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.119300 -5.935235 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.119300 -4.451426 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.119400 -0.085467 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.119400 10.454459 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.119400 -5.973977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.119400 -4.480482 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.119500 -0.071350 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.119500 10.511939 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.119500 -6.006823 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.119500 -4.505117 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.119600 -0.057165 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.119600 10.559045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.119600 -6.033740 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.119600 -4.525305 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.119700 -0.042923 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.119700 10.595731 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.119700 -6.054704 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.119700 -4.541028 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.119800 -0.028637 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.119800 10.621961 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.119800 -6.069692 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.119800 -4.552269 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.119900 -0.014324 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.119900 10.637708 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.119900 -6.078690 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.119900 -4.559018 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.120000 0.000003 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.120000 10.642957 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.120000 -6.081690 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.120000 -4.561267 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.120100 0.014331 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.120100 10.637703 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.120100 -6.078687 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.120100 -4.559015 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.120200 0.028644 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.120200 10.621951 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.120200 -6.069686 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.120200 -4.552265 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.120300 0.042929 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.120300 10.595716 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.120300 -6.054695 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.120300 -4.541021 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.120400 0.057171 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.120400 10.559025 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.120400 -6.033729 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.120400 -4.525297 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.120500 0.071358 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.120500 10.511914 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.120500 -6.006808 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.120500 -4.505106 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.120600 0.085474 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.120600 10.454429 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.120600 -5.973960 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.120600 -4.480470 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.120700 0.099504 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.120700 10.386627 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.120700 -5.935215 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.120700 -4.451412 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.120800 0.113438 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.120800 10.308575 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.120800 -5.890614 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.120800 -4.417961 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.120900 0.127258 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.120900 10.220348 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.120900 -5.840199 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.120900 -4.380149 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.121000 0.140960 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.121000 10.122038 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.121000 -5.784022 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.121000 -4.338016 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.121100 0.154511 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.121100 10.013738 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.121100 -5.722136 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.121100 -4.291602 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.121200 0.167914 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.121200 9.895555 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.121200 -5.654603 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.121200 -4.240952 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.121300 0.181150 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.121300 9.767606 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.121300 -5.581489 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.121300 -4.186117 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.121400 0.194212 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.121400 9.630018 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.121400 -5.502867 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.121400 -4.127151 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.121500 0.207080 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.121500 9.482926 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.121500 -5.418815 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.121500 -4.064111 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.121600 0.219742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.121600 9.326476 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.121600 -5.329415 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.121600 -3.997061 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.121700 0.232189 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.121700 9.160821 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.121700 -5.234755 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.121700 -3.926066 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.121800 0.244408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.121800 8.986126 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.121800 -5.134929 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.121800 -3.851197 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.121900 0.256384 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.121900 8.802562 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.121900 -5.030036 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.121900 -3.772527 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.122000 0.268110 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.122000 8.610312 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.122000 -4.920178 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.122000 -3.690134 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.122100 0.279574 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.122100 8.409566 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.122100 -4.805466 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.122100 -3.604100 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.122200 0.290760 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.122200 8.200520 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.122200 -4.686012 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.122200 -3.514509 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.122300 0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.122300 7.983382 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.122300 -4.561932 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.122300 -3.421449 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.122400 0.312242 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.122400 7.758365 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.122400 -4.433351 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.122400 -3.325014 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.122500 0.322534 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.122500 7.525692 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.122500 -4.300395 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.122500 -3.225297 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.122600 0.332503 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.122600 7.285592 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.122600 -4.163195 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.122600 -3.122396 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.122700 0.342146 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.122700 7.038301 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.122700 -4.021886 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.122700 -3.016415 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.122800 0.351452 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.122800 6.784064 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.122800 -3.876608 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.122800 -2.907456 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.122900 0.360411 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.122900 6.523131 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.122900 -3.727504 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.122900 -2.795628 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.123000 0.369018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.123000 6.255762 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.123000 -3.574721 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.123000 -2.681041 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.123100 0.377255 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.123100 5.982218 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.123100 -3.418410 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.123100 -2.563808 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.123200 0.385122 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.123200 5.702771 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.123200 -3.258726 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.123200 -2.444045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.123300 0.392609 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.123300 5.417695 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.123300 -3.095826 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.123300 -2.321869 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.123400 0.399715 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.123400 5.127273 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.123400 -2.929870 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.123400 -2.197403 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.123500 0.406418 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.123500 4.831790 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.123500 -2.761023 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.123500 -2.070767 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.123600 0.412720 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.123600 4.531539 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.123600 -2.589451 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.123600 -1.942088 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.123700 0.418612 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.123700 4.226818 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.123700 -2.415324 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.123700 -1.811493 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.123800 0.424096 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.123800 3.917925 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.123800 -2.238814 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.123800 -1.679111 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.123900 0.429162 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.123900 3.605166 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.123900 -2.060095 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.123900 -1.545071 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.124000 0.433801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.124000 3.288849 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.124000 -1.879343 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.124000 -1.409507 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.124100 0.438018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.124100 2.969287 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.124100 -1.696735 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.124100 -1.272552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.124200 0.441797 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.124200 2.646794 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.124200 -1.512453 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.124200 -1.134340 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.124300 0.445142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.124300 2.321688 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.124300 -1.326679 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.124300 -0.995009 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.124400 0.448054 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.124400 1.994291 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.124400 -1.139595 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.124400 -0.854696 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.124500 0.450515 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.124500 1.664925 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.124500 -0.951386 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.124500 -0.713539 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.124600 0.452532 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.124600 1.333915 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.124600 -0.762237 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.124600 -0.571678 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.124700 0.454104 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.124700 1.001589 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.124700 -0.572337 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.124700 -0.429253 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.124800 0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.124800 0.668274 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.124800 -0.381871 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.124800 -0.286403 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.124900 0.455901 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.124900 0.334302 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.124900 -0.191029 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.124900 -0.143272 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.125000 0.456129 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.125000 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.125000 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.125000 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.125100 0.455903 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.125100 -0.334305 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.125100 0.191032 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.125100 0.143274 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.125200 0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.125200 -0.668278 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.125200 0.381873 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.125200 0.286405 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.125300 0.454102 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.125300 -1.001591 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.125300 0.572338 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.125300 0.429253 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.125400 0.452531 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.125400 -1.333915 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.125400 0.762237 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.125400 0.571678 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.125500 0.450512 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.125500 -1.664924 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.125500 0.951385 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.125500 0.713539 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.125600 0.448049 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.125600 -1.994290 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.125600 1.139594 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.125600 0.854696 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.125700 0.445144 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.125700 -2.321686 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.125700 1.326678 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.125700 0.995008 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.125800 0.441801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.125800 -2.646791 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.125800 1.512452 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.125800 1.134339 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.125900 0.438014 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.125900 -2.969284 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.125900 1.696734 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.125900 1.272550 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.126000 0.433800 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.126000 -3.288845 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.126000 1.879340 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.126000 1.409505 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.126100 0.429161 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.126100 -3.605161 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.126100 2.060092 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.126100 1.545069 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.126200 0.424092 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.126200 -3.917918 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.126200 2.238810 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.126200 1.679108 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.126300 0.418611 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.126300 -4.226809 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.126300 2.415319 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.126300 1.811489 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.126400 0.412713 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.126400 -4.531528 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.126400 2.589444 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.126400 1.942083 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.126500 0.406409 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.126500 -4.831775 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.126500 2.761014 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.126500 2.070761 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.126600 0.399708 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.126600 -5.127255 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.126600 2.929860 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.126600 2.197395 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.126700 0.392610 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.126700 -5.417675 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.126700 3.095815 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.126700 2.321861 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.126800 0.385125 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.126800 -5.702749 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.126800 3.258713 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.126800 2.444035 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.126900 0.377251 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.126900 -5.982194 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.126900 3.418396 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.126900 2.563797 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.127000 0.369011 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.127000 -6.255735 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.127000 3.574706 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.127000 2.681029 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.127100 0.360408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.127100 -6.523102 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.127100 3.727487 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.127100 2.795615 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.127200 0.351451 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.127200 -6.784031 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.127200 3.876589 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.127200 2.907442 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.127300 0.342142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.127300 -7.038265 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.127300 4.021865 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.127300 3.016399 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.127400 0.332498 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.127400 -7.285552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.127400 4.163173 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.127400 3.122380 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.127500 0.322526 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.127500 -7.525650 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.127500 4.300371 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.127500 3.225278 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.127600 0.312237 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.127600 -7.758320 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.127600 4.433326 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.127600 3.324994 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.127700 0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.127700 -7.983333 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.127700 4.561904 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.127700 3.421428 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.127800 0.290742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.127800 -8.200467 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.127800 4.685981 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.127800 3.514486 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.127900 0.279557 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.127900 -8.409509 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.127900 4.805434 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.127900 3.604075 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.128000 0.268113 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.128000 -8.610251 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.128000 4.920144 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.128000 3.690108 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.128100 0.256386 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.128100 -8.802497 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.128100 5.029998 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.128100 3.772499 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.128200 0.244405 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.128200 -8.986056 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.128200 5.134889 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.128200 3.851167 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.128300 0.232185 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.128300 -9.160747 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.128300 5.234712 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.128300 3.926034 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.128400 0.219738 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.128400 -9.326397 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.128400 5.329370 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.128400 3.997027 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.128500 0.207073 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.128500 -9.482843 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.128500 5.418768 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.128500 4.064076 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.128600 0.194205 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.128600 -9.629931 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.128600 5.502818 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.128600 4.127113 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.128700 0.181147 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.128700 -9.767514 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.128700 5.581437 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.128700 4.186078 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.128800 0.167908 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.128800 -9.895458 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.128800 5.654548 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.128800 4.240911 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.128900 0.154502 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.128900 -10.013637 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.128900 5.722078 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.128900 4.291559 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.129000 0.140947 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.129000 -10.121933 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.129000 5.783962 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.129000 4.337971 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.129100 0.127252 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.129100 -10.220239 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.129100 5.840137 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.129100 4.380102 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.129200 0.113436 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.129200 -10.308459 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.129200 5.890548 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.129200 4.417911 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.129300 0.099497 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.129300 -10.386507 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.129300 5.935147 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.129300 4.451360 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.129400 0.085467 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.129400 -10.454304 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.129400 5.973888 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.129400 4.480416 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.129500 0.071350 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.129500 -10.511785 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.129500 6.006734 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.129500 4.505051 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.129600 0.057165 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.129600 -10.558891 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.129600 6.033652 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.129600 4.525239 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.129700 0.042923 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.129700 -10.595577 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.129700 6.054615 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.129700 4.540961 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.129800 0.028637 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.129800 -10.621806 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.129800 6.069603 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.129800 4.552203 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.129900 0.014324 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.129900 -10.637553 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.129900 6.078602 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.129900 4.558951 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.130000 -0.000003 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.130000 -10.642802 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.130000 6.081601 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.130000 4.561201 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.130100 -0.014331 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.130100 -10.637548 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.130100 6.078599 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.130100 4.558949 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.130200 -0.028644 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.130200 -10.621796 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.130200 6.069598 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.130200 4.552198 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.130300 -0.042929 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.130300 -10.595562 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.130300 6.054607 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.130300 4.540955 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.130400 -0.057171 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.130400 -10.558871 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.130400 6.033640 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.130400 4.525230 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.130500 -0.071358 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.130500 -10.511759 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.130500 6.006720 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.130500 4.505040 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.130600 -0.085474 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.130600 -10.454275 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.130600 5.973871 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.130600 4.480403 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.130700 -0.099504 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.130700 -10.386472 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.130700 5.935127 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.130700 4.451345 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.130800 -0.113438 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.130800 -10.308420 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.130800 5.890526 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.130800 4.417894 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.130900 -0.127258 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.130900 -10.220194 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.130900 5.840111 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.130900 4.380083 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.131000 -0.140960 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.131000 -10.121883 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.131000 5.783933 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.131000 4.337950 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.131100 -0.154511 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.131100 -10.013583 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.131100 5.722047 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.131100 4.291535 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.131200 -0.167914 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.131200 -9.895400 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.131200 5.654514 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.131200 4.240886 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.131300 -0.181150 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.131300 -9.767451 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.131300 5.581401 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.131300 4.186051 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.131400 -0.194212 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.131400 -9.629863 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.131400 5.502779 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.131400 4.127084 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.131500 -0.207080 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.131500 -9.482772 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.131500 5.418727 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.131500 4.064045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.131600 -0.219742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.131600 -9.326321 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.131600 5.329326 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.131600 3.996995 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.131700 -0.232189 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.131700 -9.160667 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.131700 5.234667 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.131700 3.926000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.131800 -0.244408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.131800 -8.985971 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.131800 5.134841 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.131800 3.851131 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.131900 -0.256384 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.131900 -8.802408 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.131900 5.029947 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.131900 3.772460 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.132000 -0.268110 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.132000 -8.610158 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.132000 4.920090 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.132000 3.690068 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.132100 -0.279574 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.132100 -8.409411 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.132100 4.805378 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.132100 3.604033 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.132200 -0.290760 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.132200 -8.200365 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.132200 4.685923 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.132200 3.514442 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.132300 -0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.132300 -7.983227 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.132300 4.561844 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.132300 3.421383 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.132400 -0.312242 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.132400 -7.758210 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.132400 4.433263 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.132400 3.324947 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.132500 -0.322534 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.132500 -7.525537 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.132500 4.300307 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.132500 3.225230 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.132600 -0.332503 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.132600 -7.285437 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.132600 4.163107 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.132600 3.122330 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.132700 -0.342146 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.132700 -7.038146 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.132700 4.021798 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.132700 3.016348 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.132800 -0.351452 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.132800 -6.783909 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.132800 3.876519 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.132800 2.907390 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.132900 -0.360411 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.132900 -6.522977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.132900 3.727415 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.132900 2.795561 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.133000 -0.369018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.133000 -6.255607 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.133000 3.574633 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.133000 2.680975 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.133100 -0.377255 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.133100 -5.982064 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.133100 3.418322 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.133100 2.563742 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.133200 -0.385122 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.133200 -5.702616 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.133200 3.258638 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.133200 2.443978 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.133300 -0.392609 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.133300 -5.417540 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.133300 3.095737 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.133300 2.321803 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.133400 -0.399715 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.133400 -5.127118 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.133400 2.929782 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.133400 2.197336 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.133500 -0.406418 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.133500 -4.831636 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.133500 2.760935 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.133500 2.070701 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.133600 -0.412720 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.133600 -4.531384 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.133600 2.589362 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.133600 1.942022 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.133700 -0.418612 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.133700 -4.226663 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.133700 2.415236 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.133700 1.811427 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.133800 -0.424096 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.133800 -3.917771 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.133800 2.238726 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.133800 1.679045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.133900 -0.429162 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.133900 -3.605011 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.133900 2.060007 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.133900 1.545005 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.134000 -0.433801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.134000 -3.288695 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.134000 1.879254 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.134000 1.409441 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.134100 -0.438018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.134100 -2.969132 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.134100 1.696647 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.134100 1.272485 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.134200 -0.441797 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.134200 -2.646639 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.134200 1.512365 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.134200 1.134274 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.134300 -0.445142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.134300 -2.321533 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.134300 1.326590 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.134300 0.994943 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.134400 -0.448054 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.134400 -1.994136 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.134400 1.139506 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.134400 0.854630 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.134500 -0.450515 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.134500 -1.664770 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.134500 0.951297 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.134500 0.713473 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.134600 -0.452532 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.134600 -1.333761 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.134600 0.762149 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.134600 0.571612 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.134700 -0.454104 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.134700 -1.001435 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.134700 0.572248 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.134700 0.429186 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.134800 -0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.134800 -0.668120 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.134800 0.381783 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.134800 0.286337 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.134900 -0.455901 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.134900 -0.334147 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.134900 0.190941 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.134900 0.143206 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.135000 -0.456129 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.135000 0.000156 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.135000 -0.000089 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.135000 -0.000067 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.135100 -0.455903 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.135100 0.334460 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.135100 -0.191120 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.135100 -0.143340 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.135200 -0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.135200 0.668433 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.135200 -0.381962 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.135200 -0.286471 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.135300 -0.454102 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.135300 1.001746 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.135300 -0.572426 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.135300 -0.429320 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.135400 -0.452531 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.135400 1.334070 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.135400 -0.762326 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.135400 -0.571744 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.135500 -0.450512 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.135500 1.665079 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.135500 -0.951474 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.135500 -0.713605 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.135600 -0.448049 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.135600 1.994444 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.135600 -1.139682 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.135600 -0.854762 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.135700 -0.445144 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.135700 2.321841 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.135700 -1.326766 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.135700 -0.995075 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.135800 -0.441801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.135800 2.646946 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.135800 -1.512541 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.135800 -1.134405 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.135900 -0.438014 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.135900 2.969438 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.135900 -1.696822 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.135900 -1.272616 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.136000 -0.433800 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.136000 3.289000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.136000 -1.879429 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.136000 -1.409572 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.136100 -0.429161 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.136100 3.605315 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.136100 -2.060180 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.136100 -1.545135 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.136200 -0.424092 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.136200 3.918073 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.136200 -2.238899 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.136200 -1.679174 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.136300 -0.418611 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.136300 4.226963 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.136300 -2.415408 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.136300 -1.811556 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.136400 -0.412713 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.136400 4.531683 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.136400 -2.589533 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.136400 -1.942150 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.136500 -0.406409 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.136500 4.831930 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.136500 -2.761103 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.136500 -2.070827 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.136600 -0.399708 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.136600 5.127410 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.136600 -2.929949 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.136600 -2.197461 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.136700 -0.392610 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.136700 5.417830 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.136700 -3.095903 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.136700 -2.321927 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.136800 -0.385125 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.136800 5.702903 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.136800 -3.258802 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.136800 -2.444101 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.136900 -0.377251 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.136900 5.982348 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.136900 -3.418485 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.136900 -2.563864 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.137000 -0.369011 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.137000 6.255889 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.137000 -3.574794 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.137000 -2.681095 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.137100 -0.360408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.137100 6.523256 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.137100 -3.727575 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.137100 -2.795681 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.137200 -0.351451 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.137200 6.784185 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.137200 -3.876677 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.137200 -2.907508 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.137300 -0.342142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.137300 7.038419 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.137300 -4.021954 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.137300 -3.016465 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.137400 -0.332498 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.137400 7.285707 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.137400 -4.163261 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.137400 -3.122446 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.137500 -0.322526 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.137500 7.525805 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.137500 -4.300460 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.137500 -3.225345 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.137600 -0.312237 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.137600 7.758475 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.137600 -4.433414 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.137600 -3.325061 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.137700 -0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.137700 7.983487 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.137700 -4.561993 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.137700 -3.421495 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.137800 -0.290742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.137800 8.200622 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.137800 -4.686070 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.137800 -3.514552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.137900 -0.279557 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.137900 8.409664 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.137900 -4.805522 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.137900 -3.604142 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.138000 -0.268113 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.138000 8.610406 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.138000 -4.920232 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.138000 -3.690174 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.138100 -0.256386 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.138100 8.802651 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.138100 -5.030087 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.138100 -3.772565 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.138200 -0.244405 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.138200 8.986210 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.138200 -5.134977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.138200 -3.851233 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.138300 -0.232185 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.138300 9.160902 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.138300 -5.234801 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.138300 -3.926101 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.138400 -0.219738 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.138400 9.326552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.138400 -5.329458 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.138400 -3.997094 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.138500 -0.207073 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.138500 9.482998 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.138500 -5.418856 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.138500 -4.064142 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.138600 -0.194205 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.138600 9.630086 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.138600 -5.502906 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.138600 -4.127180 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.138700 -0.181147 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.138700 9.767669 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.138700 -5.581525 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.138700 -4.186144 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.138800 -0.167908 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.138800 9.895613 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.138800 -5.654636 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.138800 -4.240977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.138900 -0.154502 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.138900 10.013792 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.138900 -5.722167 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.138900 -4.291625 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.139000 -0.140947 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.139000 10.122088 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.139000 -5.784050 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.139000 -4.338038 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.139100 -0.127252 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.139100 10.220394 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.139100 -5.840225 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.139100 -4.380169 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.139200 -0.113436 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.139200 10.308614 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.139200 -5.890636 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.139200 -4.417977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.139300 -0.099497 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.139300 10.386662 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.139300 -5.935235 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.139300 -4.451426 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.139400 -0.085467 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.139400 10.454459 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.139400 -5.973977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.139400 -4.480482 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.139500 -0.071350 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.139500 10.511939 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.139500 -6.006823 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.139500 -4.505117 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.139600 -0.057165 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.139600 10.559045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.139600 -6.033740 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.139600 -4.525305 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.139700 -0.042923 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.139700 10.595731 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.139700 -6.054704 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.139700 -4.541028 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.139800 -0.028637 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.139800 10.621961 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.139800 -6.069692 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.139800 -4.552269 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.139900 -0.014324 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.139900 10.637708 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.139900 -6.078690 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.139900 -4.559018 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.140000 0.000003 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.140000 10.642957 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.140000 -6.081690 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.140000 -4.561267 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.140100 0.014331 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.140100 10.637703 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.140100 -6.078687 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.140100 -4.559015 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.140200 0.028644 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.140200 10.621951 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.140200 -6.069686 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.140200 -4.552265 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.140300 0.042929 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.140300 10.595716 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.140300 -6.054695 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.140300 -4.541021 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.140400 0.057171 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.140400 10.559025 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.140400 -6.033729 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.140400 -4.525297 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.140500 0.071358 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.140500 10.511914 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.140500 -6.006808 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.140500 -4.505106 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.140600 0.085474 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.140600 10.454429 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.140600 -5.973960 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.140600 -4.480470 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.140700 0.099504 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.140700 10.386627 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.140700 -5.935215 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.140700 -4.451412 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.140800 0.113438 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.140800 10.308575 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.140800 -5.890614 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.140800 -4.417961 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.140900 0.127258 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.140900 10.220348 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.140900 -5.840199 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.140900 -4.380149 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.141000 0.140960 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.141000 10.122038 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.141000 -5.784022 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.141000 -4.338016 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.141100 0.154511 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.141100 10.013738 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.141100 -5.722136 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.141100 -4.291602 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.141200 0.167914 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.141200 9.895555 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.141200 -5.654603 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.141200 -4.240952 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.141300 0.181150 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.141300 9.767606 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.141300 -5.581489 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.141300 -4.186117 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.141400 0.194212 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.141400 9.630018 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.141400 -5.502867 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.141400 -4.127151 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.141500 0.207080 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.141500 9.482926 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.141500 -5.418815 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.141500 -4.064111 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.141600 0.219742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.141600 9.326476 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.141600 -5.329415 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.141600 -3.997061 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.141700 0.232189 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.141700 9.160821 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.141700 -5.234755 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.141700 -3.926066 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.141800 0.244408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.141800 8.986126 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.141800 -5.134929 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.141800 -3.851197 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.141900 0.256384 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.141900 8.802562 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.141900 -5.030036 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.141900 -3.772527 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.142000 0.268110 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.142000 8.610312 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.142000 -4.920178 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.142000 -3.690134 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.142100 0.279574 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.142100 8.409566 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.142100 -4.805466 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.142100 -3.604100 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.142200 0.290760 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.142200 8.200520 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.142200 -4.686012 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.142200 -3.514509 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.142300 0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.142300 7.983382 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.142300 -4.561932 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.142300 -3.421449 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.142400 0.312242 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.142400 7.758365 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.142400 -4.433351 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.142400 -3.325014 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.142500 0.322534 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.142500 7.525692 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.142500 -4.300395 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.142500 -3.225297 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.142600 0.332503 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.142600 7.285592 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.142600 -4.163195 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.142600 -3.122396 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.142700 0.342146 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.142700 7.038301 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.142700 -4.021886 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.142700 -3.016415 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.142800 0.351452 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.142800 6.784064 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.142800 -3.876608 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.142800 -2.907456 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.142900 0.360411 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.142900 6.523131 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.142900 -3.727504 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.142900 -2.795628 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.143000 0.369018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.143000 6.255762 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.143000 -3.574721 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.143000 -2.681041 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.143100 0.377255 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.143100 5.982218 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.143100 -3.418410 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.143100 -2.563808 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.143200 0.385122 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.143200 5.702771 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.143200 -3.258726 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.143200 -2.444045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.143300 0.392609 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.143300 5.417695 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.143300 -3.095826 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.143300 -2.321869 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.143400 0.399715 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.143400 5.127273 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.143400 -2.929870 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.143400 -2.197403 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.143500 0.406418 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.143500 4.831790 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.143500 -2.761023 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.143500 -2.070767 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.143600 0.412720 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.143600 4.531539 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.143600 -2.589451 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.143600 -1.942088 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.143700 0.418612 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.143700 4.226818 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.143700 -2.415324 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.143700 -1.811493 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.143800 0.424096 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.143800 3.917925 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.143800 -2.238814 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.143800 -1.679111 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.143900 0.429162 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.143900 3.605166 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.143900 -2.060095 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.143900 -1.545071 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.144000 0.433801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.144000 3.288849 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.144000 -1.879343 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.144000 -1.409507 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.144100 0.438018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.144100 2.969287 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.144100 -1.696735 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.144100 -1.272552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.144200 0.441797 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.144200 2.646794 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.144200 -1.512453 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.144200 -1.134340 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.144300 0.445142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.144300 2.321688 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.144300 -1.326679 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.144300 -0.995009 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.144400 0.448054 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.144400 1.994291 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.144400 -1.139595 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.144400 -0.854696 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.144500 0.450515 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.144500 1.664925 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.144500 -0.951386 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.144500 -0.713539 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.144600 0.452532 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.144600 1.333915 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.144600 -0.762237 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.144600 -0.571678 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.144700 0.454104 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.144700 1.001589 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.144700 -0.572337 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.144700 -0.429253 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.144800 0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.144800 0.668274 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.144800 -0.381871 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.144800 -0.286403 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.144900 0.455901 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.144900 0.334302 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.144900 -0.191029 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.144900 -0.143272 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.145000 0.456129 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.145000 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.145000 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.145000 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.145100 0.455903 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.145100 -0.334305 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.145100 0.191032 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.145100 0.143274 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.145200 0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.145200 -0.668278 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.145200 0.381873 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.145200 0.286405 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.145300 0.454102 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.145300 -1.001591 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.145300 0.572338 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.145300 0.429253 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.145400 0.452531 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.145400 -1.333915 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.145400 0.762237 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.145400 0.571678 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.145500 0.450512 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.145500 -1.664924 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.145500 0.951385 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.145500 0.713539 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.145600 0.448049 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.145600 -1.994290 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.145600 1.139594 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.145600 0.854696 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.145700 0.445144 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.145700 -2.321686 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.145700 1.326678 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.145700 0.995008 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.145800 0.441801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.145800 -2.646791 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.145800 1.512452 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.145800 1.134339 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.145900 0.438014 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.145900 -2.969284 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.145900 1.696734 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.145900 1.272550 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.146000 0.433800 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.146000 -3.288845 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.146000 1.879340 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.146000 1.409505 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.146100 0.429161 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.146100 -3.605161 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.146100 2.060092 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.146100 1.545069 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.146200 0.424092 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.146200 -3.917918 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.146200 2.238810 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.146200 1.679108 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.146300 0.418611 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.146300 -4.226809 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.146300 2.415319 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.146300 1.811489 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.146400 0.412713 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.146400 -4.531528 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.146400 2.589444 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.146400 1.942083 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.146500 0.406409 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.146500 -4.831775 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.146500 2.761014 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.146500 2.070761 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.146600 0.399708 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.146600 -5.127255 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.146600 2.929860 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.146600 2.197395 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.146700 0.392610 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.146700 -5.417675 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.146700 3.095815 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.146700 2.321861 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.146800 0.385125 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.146800 -5.702749 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.146800 3.258713 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.146800 2.444035 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.146900 0.377251 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.146900 -5.982194 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.146900 3.418396 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.146900 2.563797 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.147000 0.369011 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.147000 -6.255735 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.147000 3.574706 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.147000 2.681029 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.147100 0.360408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.147100 -6.523102 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.147100 3.727487 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.147100 2.795615 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.147200 0.351451 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.147200 -6.784031 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.147200 3.876589 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.147200 2.907442 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.147300 0.342142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.147300 -7.038265 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.147300 4.021865 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.147300 3.016399 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.147400 0.332498 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.147400 -7.285552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.147400 4.163173 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.147400 3.122380 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.147500 0.322526 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.147500 -7.525650 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.147500 4.300371 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.147500 3.225278 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.147600 0.312237 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.147600 -7.758320 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.147600 4.433326 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.147600 3.324994 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.147700 0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.147700 -7.983333 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.147700 4.561904 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.147700 3.421428 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.147800 0.290742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.147800 -8.200467 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.147800 4.685981 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.147800 3.514486 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.147900 0.279557 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.147900 -8.409509 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.147900 4.805434 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.147900 3.604075 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.148000 0.268113 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.148000 -8.610251 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.148000 4.920144 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.148000 3.690108 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.148100 0.256386 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.148100 -8.802497 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.148100 5.029998 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.148100 3.772499 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.148200 0.244405 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.148200 -8.986056 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.148200 5.134889 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.148200 3.851167 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.148300 0.232185 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.148300 -9.160747 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.148300 5.234712 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.148300 3.926034 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.148400 0.219738 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.148400 -9.326397 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.148400 5.329370 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.148400 3.997027 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.148500 0.207073 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.148500 -9.482843 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.148500 5.418768 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.148500 4.064076 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.148600 0.194205 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.148600 -9.629931 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.148600 5.502818 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.148600 4.127113 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.148700 0.181147 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.148700 -9.767514 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.148700 5.581437 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.148700 4.186078 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.148800 0.167908 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.148800 -9.895458 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.148800 5.654548 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.148800 4.240911 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.148900 0.154502 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.148900 -10.013637 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.148900 5.722078 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.148900 4.291559 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.149000 0.140947 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.149000 -10.121933 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.149000 5.783962 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.149000 4.337971 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.149100 0.127252 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.149100 -10.220239 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.149100 5.840137 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.149100 4.380102 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.149200 0.113436 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.149200 -10.308459 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.149200 5.890548 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.149200 4.417911 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.149300 0.099497 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.149300 -10.386507 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.149300 5.935147 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.149300 4.451360 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.149400 0.085467 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.149400 -10.454304 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.149400 5.973888 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.149400 4.480416 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.149500 0.071350 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.149500 -10.511785 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.149500 6.006734 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.149500 4.505051 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.149600 0.057165 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.149600 -10.558891 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.149600 6.033652 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.149600 4.525239 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.149700 0.042923 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.149700 -10.595577 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.149700 6.054615 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.149700 4.540961 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.149800 0.028637 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.149800 -10.621806 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.149800 6.069603 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.149800 4.552203 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.149900 0.014324 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.149900 -10.637553 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.149900 6.078602 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.149900 4.558951 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.150000 -0.000003 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.150000 -10.642802 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.150000 6.081601 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.150000 4.561201 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.150100 -0.014331 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.150100 -10.637548 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.150100 6.078599 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.150100 4.558949 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.150200 -0.028644 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.150200 -10.621796 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.150200 6.069598 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.150200 4.552198 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.150300 -0.042929 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.150300 -10.595562 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.150300 6.054607 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.150300 4.540955 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.150400 -0.057171 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.150400 -10.558871 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.150400 6.033640 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.150400 4.525230 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.150500 -0.071358 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.150500 -10.511759 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.150500 6.006720 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.150500 4.505040 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.150600 -0.085474 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.150600 -10.454275 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.150600 5.973871 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.150600 4.480403 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.150700 -0.099504 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.150700 -10.386472 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.150700 5.935127 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.150700 4.451345 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.150800 -0.113438 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.150800 -10.308420 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.150800 5.890526 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.150800 4.417894 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.150900 -0.127258 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.150900 -10.220194 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.150900 5.840111 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.150900 4.380083 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.151000 -0.140960 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.151000 -10.121883 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.151000 5.783933 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.151000 4.337950 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.151100 -0.154511 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.151100 -10.013583 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.151100 5.722047 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.151100 4.291535 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.151200 -0.167914 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.151200 -9.895400 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.151200 5.654514 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.151200 4.240886 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.151300 -0.181150 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.151300 -9.767451 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.151300 5.581401 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.151300 4.186051 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.151400 -0.194212 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.151400 -9.629863 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.151400 5.502779 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.151400 4.127084 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.151500 -0.207080 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.151500 -9.482772 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.151500 5.418727 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.151500 4.064045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.151600 -0.219742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.151600 -9.326321 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.151600 5.329326 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.151600 3.996995 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.151700 -0.232189 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.151700 -9.160667 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.151700 5.234667 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.151700 3.926000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.151800 -0.244408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.151800 -8.985971 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.151800 5.134841 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.151800 3.851131 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.151900 -0.256384 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.151900 -8.802408 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.151900 5.029947 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.151900 3.772460 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.152000 -0.268110 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.152000 -8.610158 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.152000 4.920090 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.152000 3.690068 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.152100 -0.279574 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.152100 -8.409411 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.152100 4.805378 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.152100 3.604033 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.152200 -0.290760 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.152200 -8.200365 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.152200 4.685923 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.152200 3.514442 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.152300 -0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.152300 -7.983227 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.152300 4.561844 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.152300 3.421383 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.152400 -0.312242 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.152400 -7.758210 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.152400 4.433263 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.152400 3.324947 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.152500 -0.322534 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.152500 -7.525537 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.152500 4.300307 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.152500 3.225230 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.152600 -0.332503 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.152600 -7.285437 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.152600 4.163107 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.152600 3.122330 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.152700 -0.342146 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.152700 -7.038146 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.152700 4.021798 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.152700 3.016348 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.152800 -0.351452 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.152800 -6.783909 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.152800 3.876519 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.152800 2.907390 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.152900 -0.360411 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.152900 -6.522977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.152900 3.727415 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.152900 2.795561 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.153000 -0.369018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.153000 -6.255607 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.153000 3.574633 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.153000 2.680975 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.153100 -0.377255 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.153100 -5.982064 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.153100 3.418322 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.153100 2.563742 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.153200 -0.385122 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.153200 -5.702616 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.153200 3.258638 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.153200 2.443978 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.153300 -0.392609 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.153300 -5.417540 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.153300 3.095737 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.153300 2.321803 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.153400 -0.399715 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.153400 -5.127118 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.153400 2.929782 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.153400 2.197336 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.153500 -0.406418 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.153500 -4.831636 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.153500 2.760935 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.153500 2.070701 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.153600 -0.412720 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.153600 -4.531384 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.153600 2.589362 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.153600 1.942022 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.153700 -0.418612 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.153700 -4.226663 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.153700 2.415236 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.153700 1.811427 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.153800 -0.424096 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.153800 -3.917771 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.153800 2.238726 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.153800 1.679045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.153900 -0.429162 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.153900 -3.605011 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.153900 2.060007 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.153900 1.545005 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.154000 -0.433801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.154000 -3.288695 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.154000 1.879254 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.154000 1.409441 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.154100 -0.438018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.154100 -2.969132 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.154100 1.696647 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.154100 1.272485 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.154200 -0.441797 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.154200 -2.646639 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.154200 1.512365 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.154200 1.134274 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.154300 -0.445142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.154300 -2.321533 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.154300 1.326590 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.154300 0.994943 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.154400 -0.448054 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.154400 -1.994136 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.154400 1.139506 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.154400 0.854630 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.154500 -0.450515 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.154500 -1.664770 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.154500 0.951297 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.154500 0.713473 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.154600 -0.452532 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.154600 -1.333761 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.154600 0.762149 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.154600 0.571612 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.154700 -0.454104 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.154700 -1.001435 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.154700 0.572248 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.154700 0.429186 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.154800 -0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.154800 -0.668120 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.154800 0.381783 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.154800 0.286337 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.154900 -0.455901 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.154900 -0.334147 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.154900 0.190941 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.154900 0.143206 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.155000 -0.456129 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.155000 0.000156 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.155000 -0.000089 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.155000 -0.000067 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.155100 -0.455903 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.155100 0.334460 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.155100 -0.191120 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.155100 -0.143340 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.155200 -0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.155200 0.668433 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.155200 -0.381962 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.155200 -0.286471 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.155300 -0.454102 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.155300 1.001746 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.155300 -0.572426 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.155300 -0.429320 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.155400 -0.452531 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.155400 1.334070 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.155400 -0.762326 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.155400 -0.571744 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.155500 -0.450512 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.155500 1.665079 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.155500 -0.951474 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.155500 -0.713605 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.155600 -0.448049 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.155600 1.994444 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.155600 -1.139682 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.155600 -0.854762 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.155700 -0.445144 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.155700 2.321841 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.155700 -1.326766 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.155700 -0.995075 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.155800 -0.441801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.155800 2.646946 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.155800 -1.512541 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.155800 -1.134405 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.155900 -0.438014 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.155900 2.969438 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.155900 -1.696822 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.155900 -1.272616 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.156000 -0.433800 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.156000 3.289000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.156000 -1.879429 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.156000 -1.409572 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.156100 -0.429161 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.156100 3.605315 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.156100 -2.060180 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.156100 -1.545135 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.156200 -0.424092 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.156200 3.918073 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.156200 -2.238899 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.156200 -1.679174 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.156300 -0.418611 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.156300 4.226963 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.156300 -2.415408 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.156300 -1.811556 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.156400 -0.412713 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.156400 4.531683 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.156400 -2.589533 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.156400 -1.942150 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.156500 -0.406409 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.156500 4.831930 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.156500 -2.761103 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.156500 -2.070827 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.156600 -0.399708 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.156600 5.127410 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.156600 -2.929949 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.156600 -2.197461 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.156700 -0.392610 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.156700 5.417830 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.156700 -3.095903 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.156700 -2.321927 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.156800 -0.385125 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.156800 5.702903 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.156800 -3.258802 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.156800 -2.444101 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.156900 -0.377251 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.156900 5.982348 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.156900 -3.418485 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.156900 -2.563864 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.157000 -0.369011 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.157000 6.255889 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.157000 -3.574794 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.157000 -2.681095 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.157100 -0.360408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.157100 6.523256 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.157100 -3.727575 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.157100 -2.795681 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.157200 -0.351451 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.157200 6.784185 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.157200 -3.876677 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.157200 -2.907508 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.157300 -0.342142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.157300 7.038419 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.157300 -4.021954 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.157300 -3.016465 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.157400 -0.332498 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.157400 7.285707 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.157400 -4.163261 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.157400 -3.122446 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.157500 -0.322526 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.157500 7.525805 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.157500 -4.300460 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.157500 -3.225345 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.157600 -0.312237 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.157600 7.758475 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.157600 -4.433414 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.157600 -3.325061 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.157700 -0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.157700 7.983487 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.157700 -4.561993 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.157700 -3.421495 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.157800 -0.290742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.157800 8.200622 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.157800 -4.686070 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.157800 -3.514552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.157900 -0.279557 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.157900 8.409664 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.157900 -4.805522 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.157900 -3.604142 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.158000 -0.268113 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.158000 8.610406 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.158000 -4.920232 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.158000 -3.690174 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.158100 -0.256386 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.158100 8.802651 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.158100 -5.030087 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.158100 -3.772565 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.158200 -0.244405 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.158200 8.986210 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.158200 -5.134977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.158200 -3.851233 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.158300 -0.232185 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.158300 9.160902 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.158300 -5.234801 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.158300 -3.926101 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.158400 -0.219738 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.158400 9.326552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.158400 -5.329458 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.158400 -3.997094 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.158500 -0.207073 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.158500 9.482998 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.158500 -5.418856 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.158500 -4.064142 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.158600 -0.194205 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.158600 9.630086 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.158600 -5.502906 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.158600 -4.127180 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.158700 -0.181147 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.158700 9.767669 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.158700 -5.581525 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.158700 -4.186144 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.158800 -0.167908 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.158800 9.895613 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.158800 -5.654636 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.158800 -4.240977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.158900 -0.154502 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.158900 10.013792 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.158900 -5.722167 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.158900 -4.291625 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.159000 -0.140947 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.159000 10.122088 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.159000 -5.784050 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.159000 -4.338038 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.159100 -0.127252 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.159100 10.220394 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.159100 -5.840225 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.159100 -4.380169 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.159200 -0.113436 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.159200 10.308614 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.159200 -5.890636 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.159200 -4.417977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.159300 -0.099497 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.159300 10.386662 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.159300 -5.935235 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.159300 -4.451426 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.159400 -0.085467 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.159400 10.454459 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.159400 -5.973977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.159400 -4.480482 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.159500 -0.071350 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.159500 10.511939 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.159500 -6.006823 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.159500 -4.505117 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.159600 -0.057165 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.159600 10.559045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.159600 -6.033740 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.159600 -4.525305 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.159700 -0.042923 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.159700 10.595731 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.159700 -6.054704 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.159700 -4.541028 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.159800 -0.028637 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.159800 10.621961 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.159800 -6.069692 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.159800 -4.552269 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.159900 -0.014324 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.159900 10.637708 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.159900 -6.078690 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.159900 -4.559018 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.160000 0.000003 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.160000 10.642957 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.160000 -6.081690 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.160000 -4.561267 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.160100 0.014331 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.160100 10.637703 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.160100 -6.078687 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.160100 -4.559015 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.160200 0.028644 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.160200 10.621951 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.160200 -6.069686 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.160200 -4.552265 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.160300 0.042929 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.160300 10.595716 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.160300 -6.054695 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.160300 -4.541021 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.160400 0.057171 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.160400 10.559025 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.160400 -6.033729 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.160400 -4.525297 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.160500 0.071358 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.160500 10.511914 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.160500 -6.006808 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.160500 -4.505106 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.160600 0.085474 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.160600 10.454429 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.160600 -5.973960 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.160600 -4.480470 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.160700 0.099504 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.160700 10.386627 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.160700 -5.935215 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.160700 -4.451412 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.160800 0.113438 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.160800 10.308575 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.160800 -5.890614 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.160800 -4.417961 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.160900 0.127258 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.160900 10.220348 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.160900 -5.840199 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.160900 -4.380149 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.161000 0.140960 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.161000 10.122038 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.161000 -5.784022 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.161000 -4.338016 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.161100 0.154511 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.161100 10.013738 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.161100 -5.722136 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.161100 -4.291602 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.161200 0.167914 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.161200 9.895555 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.161200 -5.654603 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.161200 -4.240952 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.161300 0.181150 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.161300 9.767606 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.161300 -5.581489 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.161300 -4.186117 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.161400 0.194212 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.161400 9.630018 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.161400 -5.502867 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.161400 -4.127151 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.161500 0.207080 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.161500 9.482926 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.161500 -5.418815 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.161500 -4.064111 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.161600 0.219742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.161600 9.326476 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.161600 -5.329415 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.161600 -3.997061 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.161700 0.232189 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.161700 9.160821 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.161700 -5.234755 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.161700 -3.926066 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.161800 0.244408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.161800 8.986126 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.161800 -5.134929 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.161800 -3.851197 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.161900 0.256384 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.161900 8.802562 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.161900 -5.030036 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.161900 -3.772527 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.162000 0.268110 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.162000 8.610312 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.162000 -4.920178 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.162000 -3.690134 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.162100 0.279574 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.162100 8.409566 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.162100 -4.805466 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.162100 -3.604100 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.162200 0.290760 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.162200 8.200520 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.162200 -4.686011 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.162200 -3.514509 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.162300 0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.162300 7.983382 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.162300 -4.561932 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.162300 -3.421449 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.162400 0.312242 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.162400 7.758365 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.162400 -4.433351 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.162400 -3.325014 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.162500 0.322534 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.162500 7.525692 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.162500 -4.300395 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.162500 -3.225297 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.162600 0.332503 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.162600 7.285592 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.162600 -4.163195 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.162600 -3.122396 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.162700 0.342146 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.162700 7.038301 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.162700 -4.021886 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.162700 -3.016415 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.162800 0.351452 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.162800 6.784064 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.162800 -3.876608 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.162800 -2.907456 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.162900 0.360411 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.162900 6.523131 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.162900 -3.727504 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.162900 -2.795628 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.163000 0.369018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.163000 6.255762 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.163000 -3.574721 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.163000 -2.681041 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.163100 0.377255 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.163100 5.982218 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.163100 -3.418410 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.163100 -2.563808 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.163200 0.385122 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.163200 5.702771 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.163200 -3.258726 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.163200 -2.444045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.163300 0.392609 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.163300 5.417695 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.163300 -3.095826 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.163300 -2.321869 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.163400 0.399715 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.163400 5.127273 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.163400 -2.929870 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.163400 -2.197403 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.163500 0.406418 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.163500 4.831790 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.163500 -2.761023 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.163500 -2.070767 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.163600 0.412720 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.163600 4.531539 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.163600 -2.589451 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.163600 -1.942088 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.163700 0.418612 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.163700 4.226818 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.163700 -2.415324 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.163700 -1.811493 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.163800 0.424096 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.163800 3.917925 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.163800 -2.238814 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.163800 -1.679111 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.163900 0.429162 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.163900 3.605166 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.163900 -2.060095 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.163900 -1.545071 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.164000 0.433801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.164000 3.288849 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.164000 -1.879343 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.164000 -1.409507 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.164100 0.438018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.164100 2.969287 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.164100 -1.696735 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.164100 -1.272552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.164200 0.441797 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.164200 2.646794 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.164200 -1.512453 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.164200 -1.134340 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.164300 0.445142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.164300 2.321688 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.164300 -1.326679 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.164300 -0.995009 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.164400 0.448054 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.164400 1.994291 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.164400 -1.139595 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.164400 -0.854696 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.164500 0.450515 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.164500 1.664925 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.164500 -0.951386 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.164500 -0.713539 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.164600 0.452532 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.164600 1.333915 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.164600 -0.762237 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.164600 -0.571678 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.164700 0.454104 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.164700 1.001589 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.164700 -0.572337 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.164700 -0.429253 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.164800 0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.164800 0.668274 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.164800 -0.381871 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.164800 -0.286403 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.164900 0.455901 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.164900 0.334302 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.164900 -0.191029 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.164900 -0.143272 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.165000 0.456129 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.165000 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.165000 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.165000 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.165100 0.455903 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.165100 -0.334305 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.165100 0.191032 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.165100 0.143274 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.165200 0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.165200 -0.668278 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.165200 0.381873 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.165200 0.286405 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.165300 0.454102 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.165300 -1.001591 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.165300 0.572338 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.165300 0.429253 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.165400 0.452531 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.165400 -1.333915 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.165400 0.762237 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.165400 0.571678 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.165500 0.450512 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.165500 -1.664924 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.165500 0.951385 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.165500 0.713539 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.165600 0.448049 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.165600 -1.994290 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.165600 1.139594 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.165600 0.854696 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.165700 0.445144 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.165700 -2.321686 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.165700 1.326678 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.165700 0.995008 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.165800 0.441801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.165800 -2.646791 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.165800 1.512452 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.165800 1.134339 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.165900 0.438014 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.165900 -2.969284 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.165900 1.696734 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.165900 1.272550 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.166000 0.433800 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.166000 -3.288845 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.166000 1.879340 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.166000 1.409505 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.166100 0.429161 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.166100 -3.605161 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.166100 2.060092 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.166100 1.545069 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.166200 0.424092 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.166200 -3.917918 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.166200 2.238810 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.166200 1.679108 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.166300 0.418611 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.166300 -4.226809 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.166300 2.415319 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.166300 1.811489 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.166400 0.412713 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.166400 -4.531528 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.166400 2.589444 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.166400 1.942083 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.166500 0.406409 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.166500 -4.831775 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.166500 2.761014 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.166500 2.070761 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.166600 0.399708 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.166600 -5.127255 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.166600 2.929860 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.166600 2.197395 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.166700 0.392610 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.166700 -5.417675 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.166700 3.095815 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.166700 2.321861 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.166800 0.385125 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.166800 -5.702749 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.166800 3.258713 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.166800 2.444035 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.166900 0.377251 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.166900 -5.982194 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.166900 3.418396 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.166900 2.563797 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.167000 0.369011 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.167000 -6.255735 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.167000 3.574706 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.167000 2.681029 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.167100 0.360408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.167100 -6.523102 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.167100 3.727487 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.167100 2.795615 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.167200 0.351451 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.167200 -6.784031 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.167200 3.876589 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.167200 2.907442 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.167300 0.342142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.167300 -7.038265 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.167300 4.021865 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.167300 3.016399 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.167400 0.332498 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.167400 -7.285552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.167400 4.163173 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.167400 3.122380 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.167500 0.322526 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.167500 -7.525650 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.167500 4.300371 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.167500 3.225278 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.167600 0.312237 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.167600 -7.758320 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.167600 4.433326 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.167600 3.324994 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.167700 0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.167700 -7.983333 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.167700 4.561904 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.167700 3.421428 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.167800 0.290742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.167800 -8.200467 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.167800 4.685981 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.167800 3.514486 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.167900 0.279557 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.167900 -8.409509 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.167900 4.805434 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.167900 3.604075 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.168000 0.268113 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.168000 -8.610251 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.168000 4.920144 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.168000 3.690108 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.168100 0.256386 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.168100 -8.802497 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.168100 5.029998 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.168100 3.772499 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.168200 0.244405 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.168200 -8.986056 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.168200 5.134889 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.168200 3.851167 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.168300 0.232185 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.168300 -9.160747 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.168300 5.234712 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.168300 3.926034 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.168400 0.219738 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.168400 -9.326397 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.168400 5.329370 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.168400 3.997027 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.168500 0.207073 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.168500 -9.482843 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.168500 5.418768 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.168500 4.064076 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.168600 0.194205 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.168600 -9.629931 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.168600 5.502818 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.168600 4.127113 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.168700 0.181147 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.168700 -9.767514 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.168700 5.581437 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.168700 4.186078 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.168800 0.167908 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.168800 -9.895458 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.168800 5.654548 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.168800 4.240911 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.168900 0.154502 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.168900 -10.013637 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.168900 5.722078 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.168900 4.291559 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.169000 0.140947 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.169000 -10.121933 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.169000 5.783962 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.169000 4.337971 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.169100 0.127252 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.169100 -10.220239 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.169100 5.840137 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.169100 4.380102 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.169200 0.113436 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.169200 -10.308459 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.169200 5.890548 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.169200 4.417911 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.169300 0.099497 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.169300 -10.386507 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.169300 5.935147 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.169300 4.451360 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.169400 0.085467 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.169400 -10.454304 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.169400 5.973888 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.169400 4.480416 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.169500 0.071350 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.169500 -10.511785 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.169500 6.006734 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.169500 4.505051 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.169600 0.057165 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.169600 -10.558891 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.169600 6.033652 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.169600 4.525239 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.169700 0.042923 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.169700 -10.595577 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.169700 6.054615 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.169700 4.540961 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.169800 0.028637 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.169800 -10.621806 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.169800 6.069603 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.169800 4.552203 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.169900 0.014324 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.169900 -10.637553 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.169900 6.078602 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.169900 4.558951 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.170000 -0.000003 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.170000 -10.642802 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.170000 6.081601 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.170000 4.561201 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.170100 -0.014331 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.170100 -10.637548 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.170100 6.078599 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.170100 4.558949 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.170200 -0.028644 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.170200 -10.621796 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.170200 6.069598 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.170200 4.552198 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.170300 -0.042929 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.170300 -10.595562 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.170300 6.054607 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.170300 4.540955 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.170400 -0.057171 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.170400 -10.558871 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.170400 6.033640 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.170400 4.525230 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.170500 -0.071358 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.170500 -10.511759 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.170500 6.006720 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.170500 4.505040 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.170600 -0.085474 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.170600 -10.454275 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.170600 5.973871 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.170600 4.480403 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.170700 -0.099504 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.170700 -10.386472 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.170700 5.935127 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.170700 4.451345 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.170800 -0.113438 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.170800 -10.308420 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.170800 5.890526 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.170800 4.417894 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.170900 -0.127258 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.170900 -10.220194 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.170900 5.840111 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.170900 4.380083 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.171000 -0.140960 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.171000 -10.121883 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.171000 5.783933 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.171000 4.337950 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.171100 -0.154511 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.171100 -10.013583 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.171100 5.722047 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.171100 4.291535 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.171200 -0.167914 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.171200 -9.895400 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.171200 5.654514 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.171200 4.240886 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.171300 -0.181150 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.171300 -9.767451 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.171300 5.581401 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.171300 4.186051 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.171400 -0.194212 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.171400 -9.629863 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.171400 5.502779 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.171400 4.127084 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.171500 -0.207080 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.171500 -9.482772 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.171500 5.418727 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.171500 4.064045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.171600 -0.219742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.171600 -9.326321 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.171600 5.329326 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.171600 3.996995 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.171700 -0.232189 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.171700 -9.160667 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.171700 5.234667 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.171700 3.926000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.171800 -0.244408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.171800 -8.985971 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.171800 5.134841 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.171800 3.851131 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.171900 -0.256384 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.171900 -8.802408 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.171900 5.029947 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.171900 3.772460 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.172000 -0.268110 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.172000 -8.610158 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.172000 4.920090 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.172000 3.690068 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.172100 -0.279574 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.172100 -8.409411 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.172100 4.805378 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.172100 3.604033 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.172200 -0.290760 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.172200 -8.200365 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.172200 4.685923 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.172200 3.514442 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.172300 -0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.172300 -7.983227 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.172300 4.561844 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.172300 3.421383 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.172400 -0.312242 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.172400 -7.758210 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.172400 4.433263 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.172400 3.324947 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.172500 -0.322534 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.172500 -7.525537 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.172500 4.300307 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.172500 3.225230 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.172600 -0.332503 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.172600 -7.285437 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.172600 4.163107 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.172600 3.122330 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.172700 -0.342146 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.172700 -7.038146 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.172700 4.021798 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.172700 3.016348 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.172800 -0.351452 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.172800 -6.783909 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.172800 3.876519 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.172800 2.907390 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.172900 -0.360411 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.172900 -6.522977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.172900 3.727415 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.172900 2.795561 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.173000 -0.369018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.173000 -6.255607 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.173000 3.574633 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.173000 2.680975 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.173100 -0.377255 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.173100 -5.982064 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.173100 3.418322 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.173100 2.563742 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.173200 -0.385122 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.173200 -5.702616 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.173200 3.258638 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.173200 2.443978 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.173300 -0.392609 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.173300 -5.417540 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.173300 3.095737 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.173300 2.321803 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.173400 -0.399715 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.173400 -5.127118 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.173400 2.929782 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.173400 2.197336 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.173500 -0.406418 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.173500 -4.831636 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.173500 2.760935 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.173500 2.070701 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.173600 -0.412720 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.173600 -4.531384 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.173600 2.589362 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.173600 1.942022 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.173700 -0.418612 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.173700 -4.226663 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.173700 2.415236 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.173700 1.811427 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.173800 -0.424096 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.173800 -3.917771 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.173800 2.238726 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.173800 1.679045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.173900 -0.429162 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.173900 -3.605011 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.173900 2.060007 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.173900 1.545005 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.174000 -0.433801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.174000 -3.288695 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.174000 1.879254 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.174000 1.409441 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.174100 -0.438018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.174100 -2.969132 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.174100 1.696647 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.174100 1.272485 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.174200 -0.441797 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.174200 -2.646639 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.174200 1.512365 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.174200 1.134274 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.174300 -0.445142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.174300 -2.321533 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.174300 1.326590 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.174300 0.994943 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.174400 -0.448054 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.174400 -1.994136 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.174400 1.139506 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.174400 0.854630 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.174500 -0.450515 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.174500 -1.664770 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.174500 0.951297 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.174500 0.713473 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.174600 -0.452532 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.174600 -1.333761 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.174600 0.762149 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.174600 0.571612 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.174700 -0.454104 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.174700 -1.001435 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.174700 0.572248 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.174700 0.429186 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.174800 -0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.174800 -0.668120 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.174800 0.381783 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.174800 0.286337 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.174900 -0.455901 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.174900 -0.334147 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.174900 0.190941 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.174900 0.143206 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.175000 -0.456129 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.175000 0.000156 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.175000 -0.000089 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.175000 -0.000067 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.175100 -0.455903 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.175100 0.334460 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.175100 -0.191120 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.175100 -0.143340 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.175200 -0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.175200 0.668433 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.175200 -0.381962 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.175200 -0.286471 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.175300 -0.454102 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.175300 1.001746 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.175300 -0.572426 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.175300 -0.429320 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.175400 -0.452531 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.175400 1.334070 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.175400 -0.762326 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.175400 -0.571744 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.175500 -0.450512 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.175500 1.665079 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.175500 -0.951474 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.175500 -0.713605 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.175600 -0.448049 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.175600 1.994444 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.175600 -1.139682 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.175600 -0.854762 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.175700 -0.445144 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.175700 2.321841 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.175700 -1.326766 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.175700 -0.995075 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.175800 -0.441801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.175800 2.646946 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.175800 -1.512541 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.175800 -1.134405 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.175900 -0.438014 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.175900 2.969438 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.175900 -1.696822 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.175900 -1.272616 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.176000 -0.433800 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.176000 3.289000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.176000 -1.879429 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.176000 -1.409572 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.176100 -0.429161 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.176100 3.605315 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.176100 -2.060180 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.176100 -1.545135 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.176200 -0.424092 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.176200 3.918073 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.176200 -2.238899 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.176200 -1.679174 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.176300 -0.418611 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.176300 4.226963 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.176300 -2.415408 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.176300 -1.811556 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.176400 -0.412713 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.176400 4.531683 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.176400 -2.589533 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.176400 -1.942150 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.176500 -0.406409 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.176500 4.831930 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.176500 -2.761103 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.176500 -2.070827 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.176600 -0.399708 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.176600 5.127410 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.176600 -2.929949 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.176600 -2.197461 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.176700 -0.392610 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.176700 5.417830 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.176700 -3.095903 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.176700 -2.321927 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.176800 -0.385125 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.176800 5.702903 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.176800 -3.258802 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.176800 -2.444101 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.176900 -0.377251 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.176900 5.982348 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.176900 -3.418485 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.176900 -2.563864 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.177000 -0.369011 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.177000 6.255889 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.177000 -3.574794 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.177000 -2.681095 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.177100 -0.360408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.177100 6.523256 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.177100 -3.727575 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.177100 -2.795681 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.177200 -0.351451 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.177200 6.784185 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.177200 -3.876677 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.177200 -2.907508 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.177300 -0.342142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.177300 7.038419 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.177300 -4.021954 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.177300 -3.016465 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.177400 -0.332498 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.177400 7.285707 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.177400 -4.163261 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.177400 -3.122446 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.177500 -0.322526 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.177500 7.525805 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.177500 -4.300460 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.177500 -3.225345 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.177600 -0.312237 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.177600 7.758475 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.177600 -4.433414 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.177600 -3.325061 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.177700 -0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.177700 7.983487 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.177700 -4.561993 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.177700 -3.421495 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.177800 -0.290742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.177800 8.200622 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.177800 -4.686070 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.177800 -3.514552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.177900 -0.279557 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.177900 8.409664 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.177900 -4.805522 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.177900 -3.604142 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.178000 -0.268113 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.178000 8.610406 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.178000 -4.920232 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.178000 -3.690174 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.178100 -0.256386 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.178100 8.802651 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.178100 -5.030087 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.178100 -3.772565 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.178200 -0.244405 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.178200 8.986210 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.178200 -5.134977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.178200 -3.851233 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.178300 -0.232185 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.178300 9.160902 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.178300 -5.234801 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.178300 -3.926101 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.178400 -0.219738 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.178400 9.326552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.178400 -5.329458 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.178400 -3.997094 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.178500 -0.207073 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.178500 9.482998 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.178500 -5.418856 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.178500 -4.064142 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.178600 -0.194205 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.178600 9.630086 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.178600 -5.502906 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.178600 -4.127180 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.178700 -0.181147 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.178700 9.767669 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.178700 -5.581525 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.178700 -4.186144 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.178800 -0.167908 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.178800 9.895613 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.178800 -5.654636 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.178800 -4.240977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.178900 -0.154502 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.178900 10.013792 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.178900 -5.722167 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.178900 -4.291625 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.179000 -0.140947 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.179000 10.122088 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.179000 -5.784050 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.179000 -4.338038 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.179100 -0.127252 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.179100 10.220394 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.179100 -5.840225 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.179100 -4.380169 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.179200 -0.113436 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.179200 10.308614 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.179200 -5.890636 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.179200 -4.417977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.179300 -0.099497 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.179300 10.386662 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.179300 -5.935235 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.179300 -4.451426 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.179400 -0.085467 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.179400 10.454459 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.179400 -5.973977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.179400 -4.480482 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.179500 -0.071350 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.179500 10.511939 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.179500 -6.006823 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.179500 -4.505117 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.179600 -0.057165 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.179600 10.559045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.179600 -6.033740 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.179600 -4.525305 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.179700 -0.042923 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.179700 10.595731 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.179700 -6.054704 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.179700 -4.541028 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.179800 -0.028637 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.179800 10.621961 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.179800 -6.069692 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.179800 -4.552269 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.179900 -0.014324 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.179900 10.637708 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.179900 -6.078690 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.179900 -4.559018 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.180000 0.000003 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.180000 10.642957 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.180000 -6.081690 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.180000 -4.561267 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.180100 0.014331 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.180100 10.637703 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.180100 -6.078687 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.180100 -4.559015 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.180200 0.028644 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.180200 10.621951 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.180200 -6.069686 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.180200 -4.552265 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.180300 0.042929 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.180300 10.595716 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.180300 -6.054695 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.180300 -4.541021 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.180400 0.057171 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.180400 10.559025 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.180400 -6.033729 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.180400 -4.525297 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.180500 0.071358 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.180500 10.511914 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.180500 -6.006808 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.180500 -4.505106 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.180600 0.085474 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.180600 10.454429 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.180600 -5.973960 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.180600 -4.480470 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.180700 0.099504 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.180700 10.386627 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.180700 -5.935215 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.180700 -4.451412 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.180800 0.113438 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.180800 10.308575 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.180800 -5.890614 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.180800 -4.417961 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.180900 0.127258 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.180900 10.220348 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.180900 -5.840199 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.180900 -4.380149 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.181000 0.140960 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.181000 10.122038 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.181000 -5.784022 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.181000 -4.338016 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.181100 0.154511 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.181100 10.013738 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.181100 -5.722136 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.181100 -4.291602 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.181200 0.167914 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.181200 9.895555 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.181200 -5.654603 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.181200 -4.240952 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.181300 0.181150 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.181300 9.767606 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.181300 -5.581489 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.181300 -4.186117 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.181400 0.194212 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.181400 9.630018 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.181400 -5.502867 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.181400 -4.127151 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.181500 0.207080 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.181500 9.482926 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.181500 -5.418815 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.181500 -4.064111 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.181600 0.219742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.181600 9.326476 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.181600 -5.329415 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.181600 -3.997061 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.181700 0.232189 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.181700 9.160821 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.181700 -5.234755 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.181700 -3.926066 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.181800 0.244408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.181800 8.986126 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.181800 -5.134929 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.181800 -3.851197 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.181900 0.256384 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.181900 8.802562 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.181900 -5.030036 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.181900 -3.772527 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.182000 0.268110 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.182000 8.610312 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.182000 -4.920178 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.182000 -3.690134 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.182100 0.279574 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.182100 8.409566 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.182100 -4.805466 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.182100 -3.604100 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.182200 0.290760 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.182200 8.200520 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.182200 -4.686011 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.182200 -3.514509 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.182300 0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.182300 7.983382 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.182300 -4.561932 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.182300 -3.421449 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.182400 0.312242 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.182400 7.758365 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.182400 -4.433351 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.182400 -3.325014 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.182500 0.322534 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.182500 7.525692 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.182500 -4.300395 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.182500 -3.225297 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.182600 0.332503 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.182600 7.285592 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.182600 -4.163195 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.182600 -3.122396 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.182700 0.342146 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.182700 7.038301 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.182700 -4.021886 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.182700 -3.016415 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.182800 0.351452 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.182800 6.784064 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.182800 -3.876608 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.182800 -2.907456 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.182900 0.360411 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.182900 6.523131 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.182900 -3.727504 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.182900 -2.795628 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.183000 0.369018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.183000 6.255762 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.183000 -3.574721 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.183000 -2.681041 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.183100 0.377255 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.183100 5.982218 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.183100 -3.418410 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.183100 -2.563808 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.183200 0.385122 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.183200 5.702771 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.183200 -3.258726 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.183200 -2.444045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.183300 0.392609 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.183300 5.417695 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.183300 -3.095826 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.183300 -2.321869 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.183400 0.399715 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.183400 5.127273 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.183400 -2.929870 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.183400 -2.197403 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.183500 0.406418 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.183500 4.831790 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.183500 -2.761023 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.183500 -2.070767 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.183600 0.412720 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.183600 4.531539 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.183600 -2.589451 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.183600 -1.942088 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.183700 0.418612 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.183700 4.226818 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.183700 -2.415324 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.183700 -1.811493 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.183800 0.424096 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.183800 3.917925 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.183800 -2.238814 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.183800 -1.679111 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.183900 0.429162 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.183900 3.605166 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.183900 -2.060095 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.183900 -1.545071 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.184000 0.433801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.184000 3.288849 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.184000 -1.879342 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.184000 -1.409507 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.184100 0.438018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.184100 2.969287 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.184100 -1.696735 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.184100 -1.272552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.184200 0.441797 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.184200 2.646794 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.184200 -1.512453 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.184200 -1.134340 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.184300 0.445142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.184300 2.321688 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.184300 -1.326679 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.184300 -0.995009 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.184400 0.448054 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.184400 1.994291 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.184400 -1.139595 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.184400 -0.854696 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.184500 0.450515 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.184500 1.664925 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.184500 -0.951386 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.184500 -0.713539 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.184600 0.452532 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.184600 1.333915 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.184600 -0.762237 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.184600 -0.571678 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.184700 0.454104 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.184700 1.001589 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.184700 -0.572337 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.184700 -0.429253 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.184800 0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.184800 0.668274 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.184800 -0.381871 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.184800 -0.286403 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.184900 0.455901 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.184900 0.334302 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.184900 -0.191029 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.184900 -0.143272 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.185000 0.456129 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.185000 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.185000 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.185000 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.185100 0.455903 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.185100 -0.334305 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.185100 0.191032 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.185100 0.143274 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.185200 0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.185200 -0.668278 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.185200 0.381873 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.185200 0.286405 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.185300 0.454102 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.185300 -1.001591 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.185300 0.572338 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.185300 0.429253 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.185400 0.452531 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.185400 -1.333915 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.185400 0.762237 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.185400 0.571678 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.185500 0.450512 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.185500 -1.664924 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.185500 0.951385 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.185500 0.713539 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.185600 0.448049 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.185600 -1.994290 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.185600 1.139594 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.185600 0.854696 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.185700 0.445144 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.185700 -2.321686 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.185700 1.326678 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.185700 0.995008 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.185800 0.441801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.185800 -2.646791 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.185800 1.512452 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.185800 1.134339 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.185900 0.438014 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.185900 -2.969284 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.185900 1.696734 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.185900 1.272550 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.186000 0.433800 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.186000 -3.288845 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.186000 1.879340 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.186000 1.409505 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.186100 0.429161 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.186100 -3.605161 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.186100 2.060092 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.186100 1.545069 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.186200 0.424092 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.186200 -3.917918 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.186200 2.238810 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.186200 1.679108 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.186300 0.418611 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.186300 -4.226809 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.186300 2.415319 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.186300 1.811489 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.186400 0.412713 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.186400 -4.531528 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.186400 2.589444 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.186400 1.942083 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.186500 0.406409 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.186500 -4.831775 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.186500 2.761014 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.186500 2.070761 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.186600 0.399708 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.186600 -5.127255 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.186600 2.929860 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.186600 2.197395 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.186700 0.392610 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.186700 -5.417675 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.186700 3.095815 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.186700 2.321861 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.186800 0.385125 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.186800 -5.702749 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.186800 3.258713 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.186800 2.444035 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.186900 0.377251 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.186900 -5.982194 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.186900 3.418396 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.186900 2.563797 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.187000 0.369011 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.187000 -6.255735 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.187000 3.574706 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.187000 2.681029 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.187100 0.360408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.187100 -6.523102 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.187100 3.727487 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.187100 2.795615 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.187200 0.351451 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.187200 -6.784031 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.187200 3.876589 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.187200 2.907442 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.187300 0.342142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.187300 -7.038265 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.187300 4.021865 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.187300 3.016399 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.187400 0.332498 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.187400 -7.285552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.187400 4.163173 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.187400 3.122380 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.187500 0.322526 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.187500 -7.525650 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.187500 4.300371 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.187500 3.225279 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.187600 0.312237 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.187600 -7.758320 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.187600 4.433326 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.187600 3.324994 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.187700 0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.187700 -7.983333 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.187700 4.561904 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.187700 3.421428 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.187800 0.290742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.187800 -8.200467 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.187800 4.685981 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.187800 3.514486 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.187900 0.279557 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.187900 -8.409509 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.187900 4.805434 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.187900 3.604075 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.188000 0.268113 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.188000 -8.610251 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.188000 4.920144 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.188000 3.690108 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.188100 0.256386 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.188100 -8.802497 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.188100 5.029998 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.188100 3.772499 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.188200 0.244405 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.188200 -8.986056 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.188200 5.134889 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.188200 3.851167 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.188300 0.232185 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.188300 -9.160747 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.188300 5.234712 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.188300 3.926034 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.188400 0.219738 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.188400 -9.326397 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.188400 5.329370 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.188400 3.997027 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.188500 0.207073 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.188500 -9.482843 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.188500 5.418768 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.188500 4.064076 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.188600 0.194205 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.188600 -9.629931 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.188600 5.502818 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.188600 4.127113 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.188700 0.181147 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.188700 -9.767514 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.188700 5.581437 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.188700 4.186078 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.188800 0.167908 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.188800 -9.895458 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.188800 5.654548 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.188800 4.240911 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.188900 0.154502 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.188900 -10.013637 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.188900 5.722078 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.188900 4.291559 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.189000 0.140947 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.189000 -10.121933 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.189000 5.783962 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.189000 4.337971 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.189100 0.127252 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.189100 -10.220239 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.189100 5.840137 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.189100 4.380102 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.189200 0.113436 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.189200 -10.308459 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.189200 5.890548 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.189200 4.417911 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.189300 0.099497 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.189300 -10.386507 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.189300 5.935147 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.189300 4.451360 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.189400 0.085467 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.189400 -10.454304 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.189400 5.973888 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.189400 4.480416 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.189500 0.071350 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.189500 -10.511785 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.189500 6.006734 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.189500 4.505051 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.189600 0.057165 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.189600 -10.558891 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.189600 6.033652 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.189600 4.525239 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.189700 0.042923 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.189700 -10.595577 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.189700 6.054615 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.189700 4.540961 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.189800 0.028637 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.189800 -10.621806 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.189800 6.069603 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.189800 4.552203 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.189900 0.014324 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.189900 -10.637553 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.189900 6.078602 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.189900 4.558951 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.190000 -0.000003 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.190000 -10.642802 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.190000 6.081601 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.190000 4.561201 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.190100 -0.014331 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.190100 -10.637548 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.190100 6.078599 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.190100 4.558949 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.190200 -0.028644 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.190200 -10.621796 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.190200 6.069598 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.190200 4.552198 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.190300 -0.042929 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.190300 -10.595562 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.190300 6.054607 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.190300 4.540955 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.190400 -0.057171 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.190400 -10.558871 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.190400 6.033640 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.190400 4.525230 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.190500 -0.071358 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.190500 -10.511759 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.190500 6.006720 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.190500 4.505040 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.190600 -0.085474 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.190600 -10.454275 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.190600 5.973871 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.190600 4.480403 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.190700 -0.099504 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.190700 -10.386472 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.190700 5.935127 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.190700 4.451345 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.190800 -0.113438 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.190800 -10.308420 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.190800 5.890526 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.190800 4.417894 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.190900 -0.127258 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.190900 -10.220194 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.190900 5.840111 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.190900 4.380083 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.191000 -0.140960 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.191000 -10.121883 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.191000 5.783933 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.191000 4.337950 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.191100 -0.154511 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.191100 -10.013583 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.191100 5.722047 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.191100 4.291535 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.191200 -0.167914 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.191200 -9.895400 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.191200 5.654514 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.191200 4.240886 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.191300 -0.181150 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.191300 -9.767451 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.191300 5.581401 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.191300 4.186051 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.191400 -0.194212 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.191400 -9.629863 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.191400 5.502779 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.191400 4.127084 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.191500 -0.207080 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.191500 -9.482772 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.191500 5.418727 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.191500 4.064045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.191600 -0.219742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.191600 -9.326321 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.191600 5.329326 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.191600 3.996995 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.191700 -0.232189 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.191700 -9.160667 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.191700 5.234667 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.191700 3.926000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.191800 -0.244408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.191800 -8.985971 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.191800 5.134841 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.191800 3.851131 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.191900 -0.256384 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.191900 -8.802408 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.191900 5.029947 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.191900 3.772460 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.192000 -0.268110 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.192000 -8.610158 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.192000 4.920090 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.192000 3.690068 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.192100 -0.279574 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.192100 -8.409411 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.192100 4.805378 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.192100 3.604033 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.192200 -0.290760 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.192200 -8.200365 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.192200 4.685923 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.192200 3.514442 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.192300 -0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.192300 -7.983227 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.192300 4.561844 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.192300 3.421383 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.192400 -0.312242 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.192400 -7.758210 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.192400 4.433263 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.192400 3.324947 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.192500 -0.322534 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.192500 -7.525537 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.192500 4.300307 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.192500 3.225230 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.192600 -0.332503 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.192600 -7.285437 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.192600 4.163107 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.192600 3.122330 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.192700 -0.342146 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.192700 -7.038146 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.192700 4.021798 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.192700 3.016348 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.192800 -0.351452 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.192800 -6.783909 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.192800 3.876519 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.192800 2.907390 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.192900 -0.360411 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.192900 -6.522977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.192900 3.727415 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.192900 2.795561 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.193000 -0.369018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.193000 -6.255607 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.193000 3.574633 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.193000 2.680975 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.193100 -0.377255 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.193100 -5.982064 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.193100 3.418322 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.193100 2.563742 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.193200 -0.385122 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.193200 -5.702616 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.193200 3.258638 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.193200 2.443978 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.193300 -0.392609 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.193300 -5.417540 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.193300 3.095737 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.193300 2.321803 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.193400 -0.399715 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.193400 -5.127118 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.193400 2.929782 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.193400 2.197336 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.193500 -0.406418 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.193500 -4.831636 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.193500 2.760935 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.193500 2.070701 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.193600 -0.412720 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.193600 -4.531384 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.193600 2.589362 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.193600 1.942022 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.193700 -0.418612 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.193700 -4.226663 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.193700 2.415236 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.193700 1.811427 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.193800 -0.424096 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.193800 -3.917771 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.193800 2.238726 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.193800 1.679045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.193900 -0.429162 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.193900 -3.605011 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.193900 2.060007 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.193900 1.545005 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.194000 -0.433801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.194000 -3.288695 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.194000 1.879254 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.194000 1.409441 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.194100 -0.438018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.194100 -2.969132 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.194100 1.696647 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.194100 1.272485 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.194200 -0.441797 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.194200 -2.646639 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.194200 1.512365 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.194200 1.134274 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.194300 -0.445142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.194300 -2.321533 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.194300 1.326590 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.194300 0.994943 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.194400 -0.448054 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.194400 -1.994136 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.194400 1.139506 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.194400 0.854630 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.194500 -0.450515 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.194500 -1.664770 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.194500 0.951297 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.194500 0.713473 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.194600 -0.452532 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.194600 -1.333761 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.194600 0.762149 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.194600 0.571612 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.194700 -0.454104 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.194700 -1.001435 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.194700 0.572248 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.194700 0.429186 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.194800 -0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.194800 -0.668120 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.194800 0.381783 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.194800 0.286337 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.194900 -0.455901 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.194900 -0.334147 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.194900 0.190941 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.194900 0.143206 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.195000 -0.456129 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.195000 0.000156 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.195000 -0.000089 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.195000 -0.000067 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.195100 -0.455903 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.195100 0.334460 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.195100 -0.191120 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.195100 -0.143340 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.195200 -0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.195200 0.668433 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.195200 -0.381962 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.195200 -0.286471 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.195300 -0.454102 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.195300 1.001746 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.195300 -0.572426 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.195300 -0.429320 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.195400 -0.452531 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.195400 1.334070 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.195400 -0.762326 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.195400 -0.571744 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.195500 -0.450512 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.195500 1.665079 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.195500 -0.951474 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.195500 -0.713605 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.195600 -0.448049 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.195600 1.994444 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.195600 -1.139682 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.195600 -0.854762 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.195700 -0.445144 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.195700 2.321841 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.195700 -1.326766 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.195700 -0.995075 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.195800 -0.441801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.195800 2.646946 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.195800 -1.512541 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.195800 -1.134405 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.195900 -0.438014 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.195900 2.969438 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.195900 -1.696822 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.195900 -1.272616 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.196000 -0.433800 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.196000 3.289000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.196000 -1.879429 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.196000 -1.409571 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.196100 -0.429161 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.196100 3.605315 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.196100 -2.060180 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.196100 -1.545135 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.196200 -0.424092 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.196200 3.918073 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.196200 -2.238899 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.196200 -1.679174 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.196300 -0.418611 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.196300 4.226963 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.196300 -2.415408 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.196300 -1.811556 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.196400 -0.412713 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.196400 4.531683 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.196400 -2.589533 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.196400 -1.942150 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.196500 -0.406409 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.196500 4.831930 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.196500 -2.761103 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.196500 -2.070827 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.196600 -0.399708 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.196600 5.127410 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.196600 -2.929949 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.196600 -2.197461 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.196700 -0.392610 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.196700 5.417830 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.196700 -3.095903 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.196700 -2.321927 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.196800 -0.385125 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.196800 5.702903 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.196800 -3.258802 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.196800 -2.444101 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.196900 -0.377251 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.196900 5.982348 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.196900 -3.418485 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.196900 -2.563864 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.197000 -0.369011 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.197000 6.255889 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.197000 -3.574794 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.197000 -2.681095 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.197100 -0.360408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.197100 6.523256 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.197100 -3.727575 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.197100 -2.795681 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.197200 -0.351451 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.197200 6.784185 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.197200 -3.876677 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.197200 -2.907508 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.197300 -0.342142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.197300 7.038419 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.197300 -4.021954 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.197300 -3.016465 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.197400 -0.332498 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.197400 7.285707 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.197400 -4.163261 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.197400 -3.122446 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.197500 -0.322526 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.197500 7.525805 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.197500 -4.300460 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.197500 -3.225345 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.197600 -0.312237 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.197600 7.758475 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.197600 -4.433414 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.197600 -3.325061 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.197700 -0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.197700 7.983487 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.197700 -4.561993 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.197700 -3.421495 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.197800 -0.290742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.197800 8.200622 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.197800 -4.686070 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.197800 -3.514552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.197900 -0.279557 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.197900 8.409664 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.197900 -4.805522 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.197900 -3.604142 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.198000 -0.268113 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.198000 8.610406 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.198000 -4.920232 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.198000 -3.690174 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.198100 -0.256386 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.198100 8.802651 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.198100 -5.030087 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.198100 -3.772565 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.198200 -0.244405 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.198200 8.986210 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.198200 -5.134977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.198200 -3.851233 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.198300 -0.232185 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.198300 9.160902 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.198300 -5.234801 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.198300 -3.926101 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.198400 -0.219738 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.198400 9.326552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.198400 -5.329458 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.198400 -3.997094 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.198500 -0.207073 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.198500 9.482998 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.198500 -5.418856 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.198500 -4.064142 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.198600 -0.194205 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.198600 9.630086 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.198600 -5.502906 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.198600 -4.127180 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.198700 -0.181147 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.198700 9.767669 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.198700 -5.581525 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.198700 -4.186144 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.198800 -0.167908 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.198800 9.895613 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.198800 -5.654636 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.198800 -4.240977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.198900 -0.154502 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.198900 10.013792 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.198900 -5.722167 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.198900 -4.291625 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.199000 -0.140947 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.199000 10.122088 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.199000 -5.784050 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.199000 -4.338038 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.199100 -0.127252 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.199100 10.220394 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.199100 -5.840225 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.199100 -4.380169 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.199200 -0.113436 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.199200 10.308614 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.199200 -5.890636 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.199200 -4.417977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.199300 -0.099497 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.199300 10.386662 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.199300 -5.935235 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.199300 -4.451426 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.199400 -0.085467 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.199400 10.454459 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.199400 -5.973977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.199400 -4.480482 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.199500 -0.071350 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.199500 10.511939 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.199500 -6.006823 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.199500 -4.505117 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.199600 -0.057165 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.199600 10.559045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.199600 -6.033740 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.199600 -4.525305 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.199700 -0.042923 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.199700 10.595731 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.199700 -6.054704 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.199700 -4.541028 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.199800 -0.028637 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.199800 10.621961 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.199800 -6.069692 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.199800 -4.552269 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.199900 -0.014324 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.199900 10.637708 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.199900 -6.078690 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.199900 -4.559018 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.200000 0.000003 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.200000 10.642957 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.200000 -6.081690 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.200000 -4.561267 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.200100 0.014331 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.200100 10.637703 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.200100 -6.078687 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.200100 -4.559015 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.200200 0.028644 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.200200 10.621951 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.200200 -6.069686 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.200200 -4.552265 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.200300 0.042929 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.200300 10.595716 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.200300 -6.054695 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.200300 -4.541021 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.200400 0.057171 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.200400 10.559025 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.200400 -6.033729 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.200400 -4.525297 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.200500 0.071358 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.200500 10.511914 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.200500 -6.006808 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.200500 -4.505106 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.200600 0.085474 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.200600 10.454429 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.200600 -5.973960 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.200600 -4.480470 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.200700 0.099504 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.200700 10.386627 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.200700 -5.935215 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.200700 -4.451412 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.200800 0.113438 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.200800 10.308575 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.200800 -5.890614 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.200800 -4.417961 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.200900 0.127258 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.200900 10.220348 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.200900 -5.840199 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.200900 -4.380149 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.201000 0.140960 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.201000 10.122038 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.201000 -5.784022 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.201000 -4.338016 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.201100 0.154511 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.201100 10.013738 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.201100 -5.722136 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.201100 -4.291602 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.201200 0.167914 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.201200 9.895555 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.201200 -5.654603 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.201200 -4.240952 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.201300 0.181150 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.201300 9.767606 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.201300 -5.581489 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.201300 -4.186117 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.201400 0.194212 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.201400 9.630018 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.201400 -5.502867 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.201400 -4.127151 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.201500 0.207080 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.201500 9.482926 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.201500 -5.418815 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.201500 -4.064111 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.201600 0.219742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.201600 9.326476 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.201600 -5.329415 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.201600 -3.997061 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.201700 0.232189 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.201700 9.160821 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.201700 -5.234755 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.201700 -3.926066 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.201800 0.244408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.201800 8.986126 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.201800 -5.134929 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.201800 -3.851197 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.201900 0.256384 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.201900 8.802562 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.201900 -5.030036 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.201900 -3.772527 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.202000 0.268110 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.202000 8.610312 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.202000 -4.920178 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.202000 -3.690134 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.202100 0.279574 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.202100 8.409566 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.202100 -4.805466 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.202100 -3.604100 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.202200 0.290760 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.202200 8.200520 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.202200 -4.686011 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.202200 -3.514509 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.202300 0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.202300 7.983382 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.202300 -4.561932 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.202300 -3.421449 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.202400 0.312242 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.202400 7.758365 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.202400 -4.433351 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.202400 -3.325014 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.202500 0.322534 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.202500 7.525692 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.202500 -4.300395 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.202500 -3.225297 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.202600 0.332503 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.202600 7.285592 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.202600 -4.163195 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.202600 -3.122396 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.202700 0.342146 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.202700 7.038301 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.202700 -4.021886 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.202700 -3.016415 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.202800 0.351452 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.202800 6.784064 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.202800 -3.876608 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.202800 -2.907456 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.202900 0.360411 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.202900 6.523131 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.202900 -3.727504 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.202900 -2.795628 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.203000 0.369018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.203000 6.255762 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.203000 -3.574721 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.203000 -2.681041 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.203100 0.377255 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.203100 5.982218 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.203100 -3.418410 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.203100 -2.563808 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.203200 0.385122 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.203200 5.702771 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.203200 -3.258726 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.203200 -2.444045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.203300 0.392609 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.203300 5.417695 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.203300 -3.095826 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.203300 -2.321869 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.203400 0.399715 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.203400 5.127273 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.203400 -2.929870 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.203400 -2.197403 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.203500 0.406418 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.203500 4.831790 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.203500 -2.761023 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.203500 -2.070767 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.203600 0.412720 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.203600 4.531539 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.203600 -2.589451 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.203600 -1.942088 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.203700 0.418612 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.203700 4.226818 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.203700 -2.415324 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.203700 -1.811493 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.203800 0.424096 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.203800 3.917925 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.203800 -2.238814 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.203800 -1.679111 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.203900 0.429162 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.203900 3.605166 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.203900 -2.060095 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.203900 -1.545071 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.204000 0.433801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.204000 3.288849 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.204000 -1.879342 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.204000 -1.409507 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.204100 0.438018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.204100 2.969287 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.204100 -1.696735 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.204100 -1.272552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.204200 0.441797 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.204200 2.646794 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.204200 -1.512453 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.204200 -1.134340 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.204300 0.445142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.204300 2.321688 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.204300 -1.326679 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.204300 -0.995009 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.204400 0.448054 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.204400 1.994291 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.204400 -1.139595 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.204400 -0.854696 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.204500 0.450515 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.204500 1.664925 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.204500 -0.951386 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.204500 -0.713539 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.204600 0.452532 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.204600 1.333915 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.204600 -0.762237 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.204600 -0.571678 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.204700 0.454104 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.204700 1.001589 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.204700 -0.572337 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.204700 -0.429253 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.204800 0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.204800 0.668274 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.204800 -0.381871 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.204800 -0.286403 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.204900 0.455901 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.204900 0.334302 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.204900 -0.191029 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.204900 -0.143272 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.205000 0.456129 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.205000 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.205000 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.205000 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.205100 0.455903 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.205100 -0.334305 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.205100 0.191032 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.205100 0.143274 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.205200 0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.205200 -0.668278 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.205200 0.381873 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.205200 0.286405 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.205300 0.454102 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.205300 -1.001591 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.205300 0.572338 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.205300 0.429253 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.205400 0.452531 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.205400 -1.333915 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.205400 0.762237 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.205400 0.571678 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.205500 0.450512 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.205500 -1.664924 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.205500 0.951385 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.205500 0.713539 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.205600 0.448049 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.205600 -1.994290 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.205600 1.139594 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.205600 0.854696 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.205700 0.445144 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.205700 -2.321686 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.205700 1.326678 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.205700 0.995008 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.205800 0.441801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.205800 -2.646791 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.205800 1.512452 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.205800 1.134339 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.205900 0.438014 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.205900 -2.969284 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.205900 1.696734 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.205900 1.272550 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.206000 0.433800 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.206000 -3.288845 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.206000 1.879340 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.206000 1.409505 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.206100 0.429161 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.206100 -3.605161 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.206100 2.060092 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.206100 1.545069 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.206200 0.424092 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.206200 -3.917918 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.206200 2.238810 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.206200 1.679108 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.206300 0.418611 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.206300 -4.226809 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.206300 2.415319 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.206300 1.811489 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.206400 0.412713 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.206400 -4.531528 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.206400 2.589444 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.206400 1.942083 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.206500 0.406409 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.206500 -4.831775 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.206500 2.761014 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.206500 2.070761 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.206600 0.399708 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.206600 -5.127255 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.206600 2.929860 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.206600 2.197395 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.206700 0.392610 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.206700 -5.417675 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.206700 3.095815 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.206700 2.321861 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.206800 0.385125 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.206800 -5.702749 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.206800 3.258713 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.206800 2.444035 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.206900 0.377251 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.206900 -5.982194 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.206900 3.418396 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.206900 2.563797 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.207000 0.369011 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.207000 -6.255735 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.207000 3.574706 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.207000 2.681029 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.207100 0.360408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.207100 -6.523102 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.207100 3.727487 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.207100 2.795615 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.207200 0.351451 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.207200 -6.784031 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.207200 3.876589 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.207200 2.907442 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.207300 0.342142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.207300 -7.038265 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.207300 4.021865 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.207300 3.016399 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.207400 0.332498 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.207400 -7.285552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.207400 4.163173 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.207400 3.122380 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.207500 0.322526 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.207500 -7.525650 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.207500 4.300371 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.207500 3.225279 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.207600 0.312237 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.207600 -7.758320 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.207600 4.433326 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.207600 3.324994 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.207700 0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.207700 -7.983333 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.207700 4.561904 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.207700 3.421428 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.207800 0.290742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.207800 -8.200467 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.207800 4.685981 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.207800 3.514486 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.207900 0.279557 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.207900 -8.409509 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.207900 4.805434 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.207900 3.604075 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.208000 0.268113 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.208000 -8.610251 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.208000 4.920144 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.208000 3.690108 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.208100 0.256386 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.208100 -8.802497 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.208100 5.029998 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.208100 3.772499 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.208200 0.244405 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.208200 -8.986056 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.208200 5.134889 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.208200 3.851167 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.208300 0.232185 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.208300 -9.160747 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.208300 5.234712 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.208300 3.926034 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.208400 0.219738 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.208400 -9.326397 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.208400 5.329370 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.208400 3.997027 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.208500 0.207073 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.208500 -9.482843 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.208500 5.418768 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.208500 4.064076 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.208600 0.194205 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.208600 -9.629931 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.208600 5.502818 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.208600 4.127113 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.208700 0.181147 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.208700 -9.767514 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.208700 5.581437 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.208700 4.186078 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.208800 0.167908 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.208800 -9.895458 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.208800 5.654548 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.208800 4.240911 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.208900 0.154502 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.208900 -10.013637 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.208900 5.722078 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.208900 4.291559 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.209000 0.140947 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.209000 -10.121933 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.209000 5.783962 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.209000 4.337971 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.209100 0.127252 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.209100 -10.220239 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.209100 5.840137 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.209100 4.380102 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.209200 0.113436 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.209200 -10.308459 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.209200 5.890548 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.209200 4.417911 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.209300 0.099497 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.209300 -10.386507 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.209300 5.935147 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.209300 4.451360 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.209400 0.085467 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.209400 -10.454304 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.209400 5.973888 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.209400 4.480416 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.209500 0.071350 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.209500 -10.511785 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.209500 6.006734 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.209500 4.505051 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.209600 0.057165 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.209600 -10.558891 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.209600 6.033652 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.209600 4.525239 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.209700 0.042923 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.209700 -10.595577 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.209700 6.054615 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.209700 4.540961 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.209800 0.028637 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.209800 -10.621806 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.209800 6.069603 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.209800 4.552203 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.209900 0.014324 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.209900 -10.637553 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.209900 6.078602 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.209900 4.558951 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.210000 -0.000003 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.210000 -10.642802 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.210000 6.081601 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.210000 4.561201 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.210100 -0.014331 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.210100 -10.637548 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.210100 6.078599 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.210100 4.558949 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.210200 -0.028644 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.210200 -10.621796 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.210200 6.069598 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.210200 4.552198 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.210300 -0.042929 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.210300 -10.595562 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.210300 6.054607 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.210300 4.540955 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.210400 -0.057171 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.210400 -10.558871 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.210400 6.033640 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.210400 4.525230 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.210500 -0.071358 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.210500 -10.511759 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.210500 6.006720 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.210500 4.505040 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.210600 -0.085474 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.210600 -10.454275 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.210600 5.973871 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.210600 4.480403 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.210700 -0.099504 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.210700 -10.386472 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.210700 5.935127 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.210700 4.451345 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.210800 -0.113438 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.210800 -10.308420 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.210800 5.890526 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.210800 4.417894 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.210900 -0.127258 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.210900 -10.220194 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.210900 5.840111 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.210900 4.380083 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.211000 -0.140960 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.211000 -10.121883 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.211000 5.783933 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.211000 4.337950 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.211100 -0.154511 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.211100 -10.013583 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.211100 5.722047 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.211100 4.291535 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.211200 -0.167914 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.211200 -9.895400 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.211200 5.654514 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.211200 4.240886 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.211300 -0.181150 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.211300 -9.767451 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.211300 5.581401 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.211300 4.186051 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.211400 -0.194212 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.211400 -9.629863 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.211400 5.502779 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.211400 4.127084 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.211500 -0.207080 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.211500 -9.482772 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.211500 5.418727 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.211500 4.064045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.211600 -0.219742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.211600 -9.326321 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.211600 5.329326 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.211600 3.996995 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.211700 -0.232189 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.211700 -9.160667 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.211700 5.234667 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.211700 3.926000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.211800 -0.244408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.211800 -8.985971 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.211800 5.134841 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.211800 3.851131 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.211900 -0.256384 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.211900 -8.802408 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.211900 5.029947 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.211900 3.772460 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.212000 -0.268110 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.212000 -8.610158 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.212000 4.920090 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.212000 3.690068 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.212100 -0.279574 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.212100 -8.409411 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.212100 4.805378 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.212100 3.604033 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.212200 -0.290760 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.212200 -8.200365 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.212200 4.685923 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.212200 3.514442 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.212300 -0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.212300 -7.983227 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.212300 4.561844 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.212300 3.421383 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.212400 -0.312242 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.212400 -7.758210 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.212400 4.433263 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.212400 3.324947 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.212500 -0.322534 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.212500 -7.525537 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.212500 4.300307 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.212500 3.225230 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.212600 -0.332503 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.212600 -7.285437 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.212600 4.163107 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.212600 3.122330 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.212700 -0.342146 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.212700 -7.038146 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.212700 4.021798 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.212700 3.016348 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.212800 -0.351452 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.212800 -6.783909 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.212800 3.876519 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.212800 2.907390 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.212900 -0.360411 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.212900 -6.522977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.212900 3.727415 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.212900 2.795561 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.213000 -0.369018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.213000 -6.255607 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.213000 3.574633 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.213000 2.680975 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.213100 -0.377255 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.213100 -5.982064 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.213100 3.418322 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.213100 2.563742 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.213200 -0.385122 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.213200 -5.702616 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.213200 3.258638 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.213200 2.443978 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.213300 -0.392609 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.213300 -5.417540 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.213300 3.095737 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.213300 2.321803 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.213400 -0.399715 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.213400 -5.127118 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.213400 2.929782 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.213400 2.197336 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.213500 -0.406418 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.213500 -4.831636 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.213500 2.760935 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.213500 2.070701 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.213600 -0.412720 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.213600 -4.531384 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.213600 2.589362 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.213600 1.942022 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.213700 -0.418612 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.213700 -4.226663 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.213700 2.415236 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.213700 1.811427 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.213800 -0.424096 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.213800 -3.917771 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.213800 2.238726 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.213800 1.679045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.213900 -0.429162 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.213900 -3.605011 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.213900 2.060007 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.213900 1.545005 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.214000 -0.433801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.214000 -3.288695 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.214000 1.879254 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.214000 1.409441 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.214100 -0.438018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.214100 -2.969132 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.214100 1.696647 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.214100 1.272485 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.214200 -0.441797 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.214200 -2.646639 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.214200 1.512365 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.214200 1.134274 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.214300 -0.445142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.214300 -2.321533 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.214300 1.326590 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.214300 0.994943 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.214400 -0.448054 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.214400 -1.994136 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.214400 1.139506 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.214400 0.854630 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.214500 -0.450515 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.214500 -1.664770 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.214500 0.951297 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.214500 0.713473 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.214600 -0.452532 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.214600 -1.333761 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.214600 0.762149 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.214600 0.571612 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.214700 -0.454104 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.214700 -1.001435 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.214700 0.572248 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.214700 0.429186 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.214800 -0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.214800 -0.668120 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.214800 0.381783 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.214800 0.286337 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.214900 -0.455901 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.214900 -0.334147 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.214900 0.190941 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.214900 0.143206 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.215000 -0.456129 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.215000 0.000156 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.215000 -0.000089 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.215000 -0.000067 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.215100 -0.455903 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.215100 0.334460 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.215100 -0.191120 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.215100 -0.143340 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.215200 -0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.215200 0.668433 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.215200 -0.381962 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.215200 -0.286471 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.215300 -0.454102 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.215300 1.001746 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.215300 -0.572426 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.215300 -0.429320 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.215400 -0.452531 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.215400 1.334070 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.215400 -0.762326 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.215400 -0.571744 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.215500 -0.450512 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.215500 1.665079 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.215500 -0.951474 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.215500 -0.713605 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.215600 -0.448049 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.215600 1.994444 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.215600 -1.139682 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.215600 -0.854762 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.215700 -0.445144 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.215700 2.321841 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.215700 -1.326766 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.215700 -0.995075 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.215800 -0.441801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.215800 2.646946 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.215800 -1.512541 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.215800 -1.134405 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.215900 -0.438014 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.215900 2.969438 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.215900 -1.696822 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.215900 -1.272616 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.216000 -0.433800 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.216000 3.289000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.216000 -1.879429 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.216000 -1.409571 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.216100 -0.429161 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.216100 3.605315 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.216100 -2.060180 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.216100 -1.545135 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.216200 -0.424092 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.216200 3.918073 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.216200 -2.238899 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.216200 -1.679174 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.216300 -0.418611 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.216300 4.226963 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.216300 -2.415408 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.216300 -1.811556 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.216400 -0.412713 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.216400 4.531683 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.216400 -2.589533 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.216400 -1.942150 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.216500 -0.406409 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.216500 4.831930 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.216500 -2.761103 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.216500 -2.070827 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.216600 -0.399708 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.216600 5.127410 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.216600 -2.929949 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.216600 -2.197461 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.216700 -0.392610 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.216700 5.417830 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.216700 -3.095903 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.216700 -2.321927 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.216800 -0.385125 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.216800 5.702903 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.216800 -3.258802 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.216800 -2.444101 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.216900 -0.377251 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.216900 5.982348 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.216900 -3.418485 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.216900 -2.563864 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.217000 -0.369011 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.217000 6.255889 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.217000 -3.574794 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.217000 -2.681095 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.217100 -0.360408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.217100 6.523256 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.217100 -3.727575 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.217100 -2.795681 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.217200 -0.351451 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.217200 6.784185 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.217200 -3.876677 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.217200 -2.907508 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.217300 -0.342142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.217300 7.038419 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.217300 -4.021954 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.217300 -3.016465 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.217400 -0.332498 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.217400 7.285707 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.217400 -4.163261 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.217400 -3.122446 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.217500 -0.322526 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.217500 7.525805 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.217500 -4.300460 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.217500 -3.225345 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.217600 -0.312237 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.217600 7.758475 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.217600 -4.433414 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.217600 -3.325061 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.217700 -0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.217700 7.983487 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.217700 -4.561993 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.217700 -3.421495 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.217800 -0.290742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.217800 8.200622 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.217800 -4.686070 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.217800 -3.514552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.217900 -0.279557 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.217900 8.409664 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.217900 -4.805522 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.217900 -3.604142 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.218000 -0.268113 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.218000 8.610406 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.218000 -4.920232 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.218000 -3.690174 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.218100 -0.256386 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.218100 8.802651 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.218100 -5.030087 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.218100 -3.772565 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.218200 -0.244405 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.218200 8.986210 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.218200 -5.134977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.218200 -3.851233 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.218300 -0.232185 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.218300 9.160902 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.218300 -5.234801 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.218300 -3.926101 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.218400 -0.219738 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.218400 9.326552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.218400 -5.329458 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.218400 -3.997094 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.218500 -0.207073 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.218500 9.482998 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.218500 -5.418856 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.218500 -4.064142 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.218600 -0.194205 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.218600 9.630086 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.218600 -5.502906 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.218600 -4.127180 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.218700 -0.181147 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.218700 9.767669 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.218700 -5.581525 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.218700 -4.186144 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.218800 -0.167908 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.218800 9.895613 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.218800 -5.654636 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.218800 -4.240977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.218900 -0.154502 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.218900 10.013792 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.218900 -5.722167 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.218900 -4.291625 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.219000 -0.140947 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.219000 10.122088 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.219000 -5.784050 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.219000 -4.338038 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.219100 -0.127252 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.219100 10.220394 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.219100 -5.840225 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.219100 -4.380169 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.219200 -0.113436 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.219200 10.308614 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.219200 -5.890636 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.219200 -4.417977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.219300 -0.099497 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.219300 10.386662 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.219300 -5.935235 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.219300 -4.451426 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.219400 -0.085467 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.219400 10.454459 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.219400 -5.973977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.219400 -4.480482 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.219500 -0.071350 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.219500 10.511939 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.219500 -6.006823 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.219500 -4.505117 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.219600 -0.057165 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.219600 10.559045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.219600 -6.033740 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.219600 -4.525305 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.219700 -0.042923 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.219700 10.595731 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.219700 -6.054704 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.219700 -4.541028 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.219800 -0.028637 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.219800 10.621961 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.219800 -6.069692 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.219800 -4.552269 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.219900 -0.014324 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.219900 10.637708 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.219900 -6.078690 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.219900 -4.559018 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.220000 0.000003 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.220000 10.642957 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.220000 -6.081690 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.220000 -4.561267 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.220100 0.014331 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.220100 10.637703 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.220100 -6.078687 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.220100 -4.559015 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.220200 0.028644 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.220200 10.621951 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.220200 -6.069686 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.220200 -4.552265 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.220300 0.042929 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.220300 10.595716 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.220300 -6.054695 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.220300 -4.541021 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.220400 0.057171 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.220400 10.559025 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.220400 -6.033729 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.220400 -4.525297 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.220500 0.071358 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.220500 10.511914 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.220500 -6.006808 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.220500 -4.505106 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.220600 0.085474 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.220600 10.454429 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.220600 -5.973960 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.220600 -4.480470 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.220700 0.099504 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.220700 10.386627 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.220700 -5.935215 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.220700 -4.451412 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.220800 0.113438 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.220800 10.308575 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.220800 -5.890614 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.220800 -4.417961 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.220900 0.127258 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.220900 10.220348 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.220900 -5.840199 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.220900 -4.380149 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.221000 0.140960 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.221000 10.122038 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.221000 -5.784022 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.221000 -4.338016 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.221100 0.154511 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.221100 10.013738 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.221100 -5.722136 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.221100 -4.291602 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.221200 0.167914 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.221200 9.895555 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.221200 -5.654603 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.221200 -4.240952 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.221300 0.181150 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.221300 9.767606 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.221300 -5.581489 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.221300 -4.186117 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.221400 0.194212 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.221400 9.630018 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.221400 -5.502867 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.221400 -4.127151 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.221500 0.207080 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.221500 9.482926 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.221500 -5.418815 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.221500 -4.064111 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.221600 0.219742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.221600 9.326476 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.221600 -5.329415 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.221600 -3.997061 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.221700 0.232189 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.221700 9.160821 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.221700 -5.234755 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.221700 -3.926066 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.221800 0.244408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.221800 8.986126 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.221800 -5.134929 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.221800 -3.851197 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.221900 0.256384 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.221900 8.802562 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.221900 -5.030036 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.221900 -3.772527 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.222000 0.268110 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.222000 8.610312 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.222000 -4.920178 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.222000 -3.690134 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.222100 0.279574 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.222100 8.409566 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.222100 -4.805466 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.222100 -3.604100 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.222200 0.290760 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.222200 8.200520 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.222200 -4.686011 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.222200 -3.514509 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.222300 0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.222300 7.983382 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.222300 -4.561932 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.222300 -3.421449 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.222400 0.312242 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.222400 7.758365 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.222400 -4.433351 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.222400 -3.325014 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.222500 0.322534 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.222500 7.525692 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.222500 -4.300395 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.222500 -3.225297 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.222600 0.332503 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.222600 7.285592 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.222600 -4.163195 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.222600 -3.122396 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.222700 0.342146 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.222700 7.038301 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.222700 -4.021886 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.222700 -3.016415 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.222800 0.351452 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.222800 6.784064 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.222800 -3.876608 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.222800 -2.907456 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.222900 0.360411 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.222900 6.523131 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.222900 -3.727504 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.222900 -2.795628 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.223000 0.369018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.223000 6.255762 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.223000 -3.574721 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.223000 -2.681041 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.223100 0.377255 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.223100 5.982218 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.223100 -3.418410 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.223100 -2.563808 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.223200 0.385122 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.223200 5.702771 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.223200 -3.258726 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.223200 -2.444045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.223300 0.392609 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.223300 5.417695 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.223300 -3.095826 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.223300 -2.321869 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.223400 0.399715 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.223400 5.127273 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.223400 -2.929870 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.223400 -2.197403 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.223500 0.406418 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.223500 4.831790 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.223500 -2.761023 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.223500 -2.070767 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.223600 0.412720 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.223600 4.531539 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.223600 -2.589451 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.223600 -1.942088 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.223700 0.418612 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.223700 4.226818 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.223700 -2.415324 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.223700 -1.811493 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.223800 0.424096 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.223800 3.917925 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.223800 -2.238814 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.223800 -1.679111 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.223900 0.429162 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.223900 3.605166 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.223900 -2.060095 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.223900 -1.545071 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.224000 0.433801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.224000 3.288849 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.224000 -1.879342 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.224000 -1.409507 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.224100 0.438018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.224100 2.969287 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.224100 -1.696735 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.224100 -1.272552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.224200 0.441797 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.224200 2.646794 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.224200 -1.512453 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.224200 -1.134340 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.224300 0.445142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.224300 2.321688 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.224300 -1.326679 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.224300 -0.995009 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.224400 0.448054 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.224400 1.994291 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.224400 -1.139595 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.224400 -0.854696 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.224500 0.450515 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.224500 1.664925 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.224500 -0.951386 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.224500 -0.713539 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.224600 0.452532 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.224600 1.333915 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.224600 -0.762237 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.224600 -0.571678 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.224700 0.454104 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.224700 1.001589 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.224700 -0.572337 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.224700 -0.429253 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.224800 0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.224800 0.668274 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.224800 -0.381871 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.224800 -0.286403 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.224900 0.455901 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.224900 0.334302 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.224900 -0.191029 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.224900 -0.143272 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.225000 0.456129 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.225000 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.225000 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.225000 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.225100 0.455903 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.225100 -0.334305 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.225100 0.191032 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.225100 0.143274 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.225200 0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.225200 -0.668278 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.225200 0.381873 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.225200 0.286405 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.225300 0.454102 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.225300 -1.001591 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.225300 0.572338 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.225300 0.429253 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.225400 0.452531 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.225400 -1.333915 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.225400 0.762237 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.225400 0.571678 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.225500 0.450512 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.225500 -1.664924 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.225500 0.951385 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.225500 0.713539 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.225600 0.448049 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.225600 -1.994290 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.225600 1.139594 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.225600 0.854696 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.225700 0.445144 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.225700 -2.321686 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.225700 1.326678 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.225700 0.995008 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.225800 0.441801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.225800 -2.646791 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.225800 1.512452 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.225800 1.134339 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.225900 0.438014 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.225900 -2.969284 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.225900 1.696734 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.225900 1.272550 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.226000 0.433800 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.226000 -3.288845 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.226000 1.879340 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.226000 1.409505 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.226100 0.429161 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.226100 -3.605161 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.226100 2.060092 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.226100 1.545069 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.226200 0.424092 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.226200 -3.917918 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.226200 2.238810 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.226200 1.679108 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.226300 0.418611 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.226300 -4.226809 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.226300 2.415319 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.226300 1.811489 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.226400 0.412713 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.226400 -4.531528 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.226400 2.589444 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.226400 1.942083 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.226500 0.406409 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.226500 -4.831775 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.226500 2.761014 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.226500 2.070761 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.226600 0.399708 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.226600 -5.127255 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.226600 2.929860 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.226600 2.197395 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.226700 0.392610 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.226700 -5.417675 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.226700 3.095815 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.226700 2.321861 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.226800 0.385125 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.226800 -5.702749 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.226800 3.258713 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.226800 2.444035 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.226900 0.377251 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.226900 -5.982194 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.226900 3.418396 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.226900 2.563797 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.227000 0.369011 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.227000 -6.255735 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.227000 3.574706 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.227000 2.681029 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.227100 0.360408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.227100 -6.523102 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.227100 3.727487 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.227100 2.795615 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.227200 0.351451 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.227200 -6.784031 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.227200 3.876589 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.227200 2.907442 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.227300 0.342142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.227300 -7.038265 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.227300 4.021865 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.227300 3.016399 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.227400 0.332498 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.227400 -7.285552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.227400 4.163173 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.227400 3.122380 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.227500 0.322526 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.227500 -7.525650 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.227500 4.300371 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.227500 3.225279 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.227600 0.312237 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.227600 -7.758320 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.227600 4.433326 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.227600 3.324994 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.227700 0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.227700 -7.983333 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.227700 4.561904 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.227700 3.421428 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.227800 0.290742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.227800 -8.200467 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.227800 4.685981 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.227800 3.514486 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.227900 0.279557 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.227900 -8.409509 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.227900 4.805434 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.227900 3.604075 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.228000 0.268113 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.228000 -8.610251 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.228000 4.920144 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.228000 3.690108 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.228100 0.256386 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.228100 -8.802497 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.228100 5.029998 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.228100 3.772499 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.228200 0.244405 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.228200 -8.986056 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.228200 5.134889 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.228200 3.851167 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.228300 0.232185 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.228300 -9.160747 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.228300 5.234712 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.228300 3.926034 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.228400 0.219738 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.228400 -9.326397 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.228400 5.329370 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.228400 3.997027 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.228500 0.207073 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.228500 -9.482843 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.228500 5.418768 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.228500 4.064076 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.228600 0.194205 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.228600 -9.629931 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.228600 5.502818 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.228600 4.127113 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.228700 0.181147 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.228700 -9.767514 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.228700 5.581437 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.228700 4.186078 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.228800 0.167908 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.228800 -9.895458 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.228800 5.654548 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.228800 4.240911 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.228900 0.154502 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.228900 -10.013637 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.228900 5.722078 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.228900 4.291559 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.229000 0.140947 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.229000 -10.121933 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.229000 5.783962 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.229000 4.337971 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.229100 0.127252 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.229100 -10.220239 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.229100 5.840137 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.229100 4.380102 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.229200 0.113436 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.229200 -10.308459 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.229200 5.890548 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.229200 4.417911 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.229300 0.099497 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.229300 -10.386507 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.229300 5.935147 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.229300 4.451360 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.229400 0.085467 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.229400 -10.454304 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.229400 5.973888 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.229400 4.480416 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.229500 0.071350 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.229500 -10.511785 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.229500 6.006734 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.229500 4.505051 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.229600 0.057165 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.229600 -10.558891 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.229600 6.033652 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.229600 4.525239 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.229700 0.042923 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.229700 -10.595577 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.229700 6.054615 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.229700 4.540961 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.229800 0.028637 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.229800 -10.621806 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.229800 6.069603 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.229800 4.552203 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.229900 0.014324 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.229900 -10.637553 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.229900 6.078602 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.229900 4.558951 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.230000 -0.000003 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.230000 -10.642802 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.230000 6.081601 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.230000 4.561201 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.230100 -0.014331 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.230100 -10.637548 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.230100 6.078599 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.230100 4.558949 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.230200 -0.028644 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.230200 -10.621796 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.230200 6.069598 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.230200 4.552198 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.230300 -0.042929 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.230300 -10.595562 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.230300 6.054607 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.230300 4.540955 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.230400 -0.057171 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.230400 -10.558871 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.230400 6.033640 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.230400 4.525230 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.230500 -0.071358 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.230500 -10.511759 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.230500 6.006720 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.230500 4.505040 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.230600 -0.085474 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.230600 -10.454275 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.230600 5.973871 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.230600 4.480403 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.230700 -0.099504 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.230700 -10.386472 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.230700 5.935127 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.230700 4.451345 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.230800 -0.113438 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.230800 -10.308420 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.230800 5.890526 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.230800 4.417894 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.230900 -0.127258 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.230900 -10.220194 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.230900 5.840111 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.230900 4.380083 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.231000 -0.140960 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.231000 -10.121883 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.231000 5.783933 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.231000 4.337950 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.231100 -0.154511 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.231100 -10.013583 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.231100 5.722047 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.231100 4.291535 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.231200 -0.167914 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.231200 -9.895400 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.231200 5.654514 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.231200 4.240886 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.231300 -0.181150 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.231300 -9.767451 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.231300 5.581401 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.231300 4.186051 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.231400 -0.194212 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.231400 -9.629863 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.231400 5.502779 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.231400 4.127084 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.231500 -0.207080 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.231500 -9.482772 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.231500 5.418727 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.231500 4.064045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.231600 -0.219742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.231600 -9.326321 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.231600 5.329326 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.231600 3.996995 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.231700 -0.232189 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.231700 -9.160667 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.231700 5.234667 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.231700 3.926000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.231800 -0.244408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.231800 -8.985971 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.231800 5.134841 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.231800 3.851131 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.231900 -0.256384 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.231900 -8.802408 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.231900 5.029947 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.231900 3.772460 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.232000 -0.268110 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.232000 -8.610158 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.232000 4.920090 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.232000 3.690068 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.232100 -0.279574 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.232100 -8.409411 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.232100 4.805378 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.232100 3.604033 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.232200 -0.290760 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.232200 -8.200365 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.232200 4.685923 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.232200 3.514442 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.232300 -0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.232300 -7.983227 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.232300 4.561844 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.232300 3.421383 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.232400 -0.312242 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.232400 -7.758210 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.232400 4.433263 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.232400 3.324947 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.232500 -0.322534 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.232500 -7.525537 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.232500 4.300307 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.232500 3.225230 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.232600 -0.332503 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.232600 -7.285437 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.232600 4.163107 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.232600 3.122330 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.232700 -0.342146 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.232700 -7.038146 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.232700 4.021798 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.232700 3.016348 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.232800 -0.351452 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.232800 -6.783909 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.232800 3.876519 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.232800 2.907390 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.232900 -0.360411 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.232900 -6.522977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.232900 3.727415 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.232900 2.795561 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.233000 -0.369018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.233000 -6.255607 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.233000 3.574633 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.233000 2.680975 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.233100 -0.377255 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.233100 -5.982064 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.233100 3.418322 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.233100 2.563742 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.233200 -0.385122 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.233200 -5.702616 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.233200 3.258638 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.233200 2.443978 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.233300 -0.392609 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.233300 -5.417540 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.233300 3.095737 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.233300 2.321803 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.233400 -0.399715 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.233400 -5.127118 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.233400 2.929782 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.233400 2.197336 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.233500 -0.406418 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.233500 -4.831636 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.233500 2.760935 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.233500 2.070701 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.233600 -0.412720 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.233600 -4.531384 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.233600 2.589362 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.233600 1.942022 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.233700 -0.418612 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.233700 -4.226663 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.233700 2.415236 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.233700 1.811427 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.233800 -0.424096 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.233800 -3.917771 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.233800 2.238726 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.233800 1.679045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.233900 -0.429162 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.233900 -3.605011 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.233900 2.060007 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.233900 1.545005 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.234000 -0.433801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.234000 -3.288695 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.234000 1.879254 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.234000 1.409441 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.234100 -0.438018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.234100 -2.969132 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.234100 1.696647 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.234100 1.272485 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.234200 -0.441797 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.234200 -2.646639 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.234200 1.512365 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.234200 1.134274 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.234300 -0.445142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.234300 -2.321533 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.234300 1.326590 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.234300 0.994943 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.234400 -0.448054 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.234400 -1.994136 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.234400 1.139506 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.234400 0.854630 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.234500 -0.450515 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.234500 -1.664770 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.234500 0.951297 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.234500 0.713473 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.234600 -0.452532 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.234600 -1.333761 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.234600 0.762149 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.234600 0.571612 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.234700 -0.454104 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.234700 -1.001435 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.234700 0.572248 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.234700 0.429186 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.234800 -0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.234800 -0.668120 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.234800 0.381783 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.234800 0.286337 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.234900 -0.455901 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.234900 -0.334147 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.234900 0.190941 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.234900 0.143206 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.235000 -0.456129 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.235000 0.000156 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.235000 -0.000089 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.235000 -0.000067 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.235100 -0.455903 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.235100 0.334460 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.235100 -0.191120 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.235100 -0.143340 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.235200 -0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.235200 0.668433 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.235200 -0.381962 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.235200 -0.286471 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.235300 -0.454102 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.235300 1.001746 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.235300 -0.572426 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.235300 -0.429320 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.235400 -0.452531 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.235400 1.334070 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.235400 -0.762326 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.235400 -0.571744 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.235500 -0.450512 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.235500 1.665079 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.235500 -0.951474 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.235500 -0.713605 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.235600 -0.448049 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.235600 1.994444 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.235600 -1.139682 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.235600 -0.854762 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.235700 -0.445144 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.235700 2.321841 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.235700 -1.326766 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.235700 -0.995075 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.235800 -0.441801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.235800 2.646946 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.235800 -1.512541 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.235800 -1.134405 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.235900 -0.438014 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.235900 2.969438 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.235900 -1.696822 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.235900 -1.272616 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.236000 -0.433800 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.236000 3.289000 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.236000 -1.879429 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.236000 -1.409571 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.236100 -0.429161 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.236100 3.605315 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.236100 -2.060180 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.236100 -1.545135 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.236200 -0.424092 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.236200 3.918073 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.236200 -2.238899 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.236200 -1.679174 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.236300 -0.418611 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.236300 4.226963 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.236300 -2.415408 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.236300 -1.811556 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.236400 -0.412713 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.236400 4.531683 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.236400 -2.589533 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.236400 -1.942150 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.236500 -0.406409 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.236500 4.831930 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.236500 -2.761103 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.236500 -2.070827 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.236600 -0.399708 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.236600 5.127410 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.236600 -2.929949 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.236600 -2.197461 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.236700 -0.392610 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.236700 5.417830 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.236700 -3.095903 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.236700 -2.321927 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.236800 -0.385125 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.236800 5.702903 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.236800 -3.258802 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.236800 -2.444101 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.236900 -0.377251 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.236900 5.982348 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.236900 -3.418485 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.236900 -2.563864 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.237000 -0.369011 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.237000 6.255889 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.237000 -3.574794 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.237000 -2.681095 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.237100 -0.360408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.237100 6.523256 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.237100 -3.727575 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.237100 -2.795681 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.237200 -0.351451 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.237200 6.784185 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.237200 -3.876677 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.237200 -2.907508 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.237300 -0.342142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.237300 7.038419 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.237300 -4.021954 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.237300 -3.016465 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.237400 -0.332498 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.237400 7.285707 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.237400 -4.163261 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.237400 -3.122446 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.237500 -0.322526 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.237500 7.525805 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.237500 -4.300460 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.237500 -3.225345 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.237600 -0.312237 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.237600 7.758475 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.237600 -4.433414 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.237600 -3.325061 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.237700 -0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.237700 7.983487 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.237700 -4.561993 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.237700 -3.421495 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.237800 -0.290742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.237800 8.200622 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.237800 -4.686070 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.237800 -3.514552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.237900 -0.279557 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.237900 8.409664 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.237900 -4.805522 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.237900 -3.604142 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.238000 -0.268113 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.238000 8.610406 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.238000 -4.920232 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.238000 -3.690174 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.238100 -0.256386 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.238100 8.802651 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.238100 -5.030087 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.238100 -3.772565 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.238200 -0.244405 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.238200 8.986210 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.238200 -5.134977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.238200 -3.851233 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.238300 -0.232185 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.238300 9.160902 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.238300 -5.234801 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.238300 -3.926101 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.238400 -0.219738 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.238400 9.326552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.238400 -5.329458 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.238400 -3.997094 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.238500 -0.207073 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.238500 9.482998 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.238500 -5.418856 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.238500 -4.064142 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.238600 -0.194205 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.238600 9.630086 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.238600 -5.502906 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.238600 -4.127180 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.238700 -0.181147 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.238700 9.767669 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.238700 -5.581525 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.238700 -4.186144 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.238800 -0.167908 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.238800 9.895613 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.238800 -5.654636 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.238800 -4.240977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.238900 -0.154502 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.238900 10.013792 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.238900 -5.722167 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.238900 -4.291625 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.239000 -0.140947 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.239000 10.122087 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.239000 -5.784050 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.239000 -4.338037 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.239100 -0.127252 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.239100 10.220394 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.239100 -5.840225 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.239100 -4.380169 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.239200 -0.113436 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.239200 10.308614 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.239200 -5.890636 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.239200 -4.417977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.239300 -0.099497 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.239300 10.386662 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.239300 -5.935235 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.239300 -4.451426 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.239400 -0.085467 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.239400 10.454459 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.239400 -5.973977 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.239400 -4.480482 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.239500 -0.071350 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.239500 10.511939 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.239500 -6.006823 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.239500 -4.505117 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.239600 -0.057165 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.239600 10.559045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.239600 -6.033740 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.239600 -4.525305 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.239700 -0.042923 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.239700 10.595731 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.239700 -6.054704 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.239700 -4.541028 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.239800 -0.028637 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.239800 10.621961 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.239800 -6.069692 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.239800 -4.552269 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.239900 -0.014324 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.239900 10.637708 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.239900 -6.078690 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.239900 -4.559018 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.240000 0.000003 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.240000 10.642957 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.240000 -6.081690 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.240000 -4.561267 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.240100 0.014331 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.240100 10.637703 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.240100 -6.078687 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.240100 -4.559015 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.240200 0.028644 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.240200 10.621951 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.240200 -6.069686 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.240200 -4.552265 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.240300 0.042929 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.240300 10.595716 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.240300 -6.054695 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.240300 -4.541021 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.240400 0.057171 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.240400 10.559025 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.240400 -6.033729 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.240400 -4.525297 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.240500 0.071358 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.240500 10.511914 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.240500 -6.006808 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.240500 -4.505106 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.240600 0.085474 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.240600 10.454429 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.240600 -5.973960 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.240600 -4.480470 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.240700 0.099504 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.240700 10.386627 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.240700 -5.935215 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.240700 -4.451412 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.240800 0.113438 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.240800 10.308575 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.240800 -5.890614 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.240800 -4.417961 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.240900 0.127258 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.240900 10.220348 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.240900 -5.840199 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.240900 -4.380149 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.241000 0.140960 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.241000 10.122038 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.241000 -5.784022 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.241000 -4.338016 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.241100 0.154511 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.241100 10.013738 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.241100 -5.722136 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.241100 -4.291602 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.241200 0.167914 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.241200 9.895555 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.241200 -5.654603 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.241200 -4.240952 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.241300 0.181150 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.241300 9.767606 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.241300 -5.581489 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.241300 -4.186117 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.241400 0.194212 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.241400 9.630018 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.241400 -5.502867 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.241400 -4.127151 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.241500 0.207080 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.241500 9.482926 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.241500 -5.418815 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.241500 -4.064111 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.241600 0.219742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.241600 9.326476 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.241600 -5.329415 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.241600 -3.997061 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.241700 0.232189 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.241700 9.160821 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.241700 -5.234755 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.241700 -3.926066 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.241800 0.244408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.241800 8.986126 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.241800 -5.134929 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.241800 -3.851197 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.241900 0.256384 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.241900 8.802562 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.241900 -5.030036 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.241900 -3.772527 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.242000 0.268110 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.242000 8.610312 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.242000 -4.920178 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.242000 -3.690134 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.242100 0.279574 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.242100 8.409565 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.242100 -4.805466 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.242100 -3.604099 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.242200 0.290760 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.242200 8.200520 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.242200 -4.686011 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.242200 -3.514509 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.242300 0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.242300 7.983382 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.242300 -4.561932 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.242300 -3.421449 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.242400 0.312242 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.242400 7.758365 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.242400 -4.433351 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.242400 -3.325014 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.242500 0.322534 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.242500 7.525692 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.242500 -4.300395 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.242500 -3.225297 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.242600 0.332503 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.242600 7.285592 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.242600 -4.163195 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.242600 -3.122396 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.242700 0.342146 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.242700 7.038301 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.242700 -4.021886 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.242700 -3.016415 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.242800 0.351452 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.242800 6.784064 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.242800 -3.876608 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.242800 -2.907456 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.242900 0.360411 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.242900 6.523131 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.242900 -3.727504 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.242900 -2.795628 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.243000 0.369018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.243000 6.255762 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.243000 -3.574721 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.243000 -2.681041 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.243100 0.377255 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.243100 5.982218 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.243100 -3.418410 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.243100 -2.563808 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.243200 0.385122 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.243200 5.702771 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.243200 -3.258726 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.243200 -2.444045 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.243300 0.392609 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.243300 5.417695 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.243300 -3.095826 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.243300 -2.321869 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.243400 0.399715 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.243400 5.127273 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.243400 -2.929870 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.243400 -2.197403 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.243500 0.406418 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.243500 4.831790 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.243500 -2.761023 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.243500 -2.070767 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.243600 0.412720 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.243600 4.531539 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.243600 -2.589451 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.243600 -1.942088 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.243700 0.418612 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.243700 4.226818 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.243700 -2.415324 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.243700 -1.811493 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.243800 0.424096 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.243800 3.917925 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.243800 -2.238814 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.243800 -1.679111 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.243900 0.429162 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.243900 3.605166 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.243900 -2.060095 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.243900 -1.545071 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.244000 0.433801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.244000 3.288849 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.244000 -1.879342 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.244000 -1.409507 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.244100 0.438018 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.244100 2.969287 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.244100 -1.696735 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.244100 -1.272552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.244200 0.441797 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.244200 2.646794 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.244200 -1.512453 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.244200 -1.134340 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.244300 0.445142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.244300 2.321688 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.244300 -1.326679 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.244300 -0.995009 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.244400 0.448054 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.244400 1.994291 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.244400 -1.139595 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.244400 -0.854696 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.244500 0.450515 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.244500 1.664925 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.244500 -0.951386 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.244500 -0.713539 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.244600 0.452532 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.244600 1.333915 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.244600 -0.762237 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.244600 -0.571678 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.244700 0.454104 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.244700 1.001589 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.244700 -0.572337 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.244700 -0.429253 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.244800 0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.244800 0.668274 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.244800 -0.381871 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.244800 -0.286403 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.244900 0.455901 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.244900 0.334302 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.244900 -0.191029 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.244900 -0.143272 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.245000 0.456129 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.245000 -0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.245000 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.245000 0.000001 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.245100 0.455903 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.245100 -0.334305 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.245100 0.191032 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.245100 0.143274 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.245200 0.455229 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.245200 -0.668278 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.245200 0.381873 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.245200 0.286405 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.245300 0.454102 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.245300 -1.001591 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.245300 0.572338 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.245300 0.429253 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.245400 0.452531 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.245400 -1.333915 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.245400 0.762237 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.245400 0.571678 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.245500 0.450512 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.245500 -1.664924 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.245500 0.951385 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.245500 0.713539 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.245600 0.448049 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.245600 -1.994290 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.245600 1.139594 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.245600 0.854696 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.245700 0.445144 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.245700 -2.321686 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.245700 1.326678 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.245700 0.995008 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.245800 0.441801 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.245800 -2.646791 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.245800 1.512452 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.245800 1.134339 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.245900 0.438014 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.245900 -2.969284 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.245900 1.696734 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.245900 1.272550 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.246000 0.433800 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.246000 -3.288845 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.246000 1.879340 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.246000 1.409505 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.246100 0.429161 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.246100 -3.605161 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.246100 2.060092 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.246100 1.545069 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.246200 0.424092 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.246200 -3.917918 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.246200 2.238810 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.246200 1.679108 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.246300 0.418611 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.246300 -4.226809 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.246300 2.415319 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.246300 1.811489 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.246400 0.412713 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.246400 -4.531528 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.246400 2.589444 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.246400 1.942083 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.246500 0.406409 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.246500 -4.831775 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.246500 2.761014 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.246500 2.070761 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.246600 0.399708 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.246600 -5.127255 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.246600 2.929860 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.246600 2.197395 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.246700 0.392610 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.246700 -5.417675 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.246700 3.095815 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.246700 2.321861 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.246800 0.385125 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.246800 -5.702749 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.246800 3.258713 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.246800 2.444035 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.246900 0.377251 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.246900 -5.982194 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.246900 3.418396 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.246900 2.563797 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.247000 0.369011 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.247000 -6.255735 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.247000 3.574706 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.247000 2.681029 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.247100 0.360408 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.247100 -6.523102 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.247100 3.727487 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.247100 2.795615 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.247200 0.351451 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.247200 -6.784031 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.247200 3.876589 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.247200 2.907442 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.247300 0.342142 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.247300 -7.038265 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.247300 4.021865 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.247300 3.016399 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.247400 0.332498 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.247400 -7.285552 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.247400 4.163173 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.247400 3.122380 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.247500 0.322526 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.247500 -7.525650 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.247500 4.300371 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.247500 3.225279 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.247600 0.312237 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.247600 -7.758320 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.247600 4.433326 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.247600 3.324994 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.247700 0.301641 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.247700 -7.983333 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.247700 4.561904 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.247700 3.421428 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.247800 0.290742 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.247800 -8.200467 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.247800 4.685981 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.247800 3.514486 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.247900 0.279557 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.247900 -8.409509 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.247900 4.805434 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.247900 3.604075 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.248000 0.268113 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.248000 -8.610251 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.248000 4.920144 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.248000 3.690108 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.248100 0.256386 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.248100 -8.802497 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.248100 5.029998 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.248100 3.772499 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.248200 0.244405 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.248200 -8.986056 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.248200 5.134889 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.248200 3.851167 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.248300 0.232185 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.248300 -9.160747 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.248300 5.234712 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.248300 3.926034 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.248400 0.219738 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.248400 -9.326397 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.248400 5.329370 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.248400 3.997027 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.248500 0.207073 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.248500 -9.482843 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.248500 5.418768 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.248500 4.064076 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.248600 0.194205 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.248600 -9.629931 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.248600 5.502818 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.248600 4.127113 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.248700 0.181147 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.248700 -9.767514 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.248700 5.581437 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.248700 4.186078 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.248800 0.167908 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.248800 -9.895458 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.248800 5.654548 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.248800 4.240911 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.248900 0.154502 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.248900 -10.013637 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.248900 5.722078 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.248900 4.291559 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.249000 0.140947 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.249000 -10.121933 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.249000 5.783962 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.249000 4.337971 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.249100 0.127252 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.249100 -10.220239 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.249100 5.840137 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.249100 4.380102 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.249200 0.113436 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.249200 -10.308459 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.249200 5.890548 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.249200 4.417911 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.249300 0.099497 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.249300 -10.386507 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.249300 5.935147 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.249300 4.451360 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.249400 0.085467 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.249400 -10.454304 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.249400 5.973888 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.249400 4.480416 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.249500 0.071350 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.249500 -10.511785 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.249500 6.006734 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.249500 4.505051 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.249600 0.057165 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.249600 -10.558891 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.249600 6.033652 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.249600 4.525239 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.249700 0.042923 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.249700 -10.595577 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.249700 6.054615 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.249700 4.540961 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.249800 0.028637 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.249800 -10.621806 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.249800 6.069603 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.249800 4.552203 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 112 | 118 || 0.249900 0.014324 0.000000 2 -2.000000 2.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 127 || 0.249900 -10.637553 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 128 || 0.249900 6.078602 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +2 28061 || 83 | 119 | 129 || 0.249900 4.558951 0.000000 2 -20.000000 20.000000 0.250000 Positive Seq Voltage & Sequence Currents +28061 || Ending 83 diff --git a/Working_Examples/83/CH11/EX11.5/xcos_result_example_11_5.jpg b/Working_Examples/83/CH11/EX11.5/xcos_result_example_11_5.jpg Binary files differnew file mode 100755 index 0000000..720f2f3 --- /dev/null +++ b/Working_Examples/83/CH11/EX11.5/xcos_result_example_11_5.jpg diff --git a/Working_Examples/83/CH11/EX11.6/example_11_6.sce b/Working_Examples/83/CH11/EX11.6/example_11_6.sce new file mode 100755 index 0000000..125aac5 --- /dev/null +++ b/Working_Examples/83/CH11/EX11.6/example_11_6.sce @@ -0,0 +1,99 @@ +//Chapter 11 +//Example 11.6 +//page 420 +//To find bus voltages and currents + +clc;clear; +v_pf=1; //prefault voltage +//according to the fig.11.26 +Y1dd=((%i*0.2)^-1)+((%i*0.0805)^-1); +Y1fg=-(%i*0.0805)^-1; +Y1de=Y1fg; +Y1ff=((%i*0.0805)^-1)+((%i*0.164)^-1); +Y1ee=Y1ff; +Y1ef=-(%i*0.164)^-1; +Y1gg=((%i*0.0805)^-1)+((%i*0.345)^-1)+((%i*0.69)^-1); +Y1df=0; +Y1dg=0; +Y1ed=Y1de; +Y1eg=0; +Y1fd=0; +Y1fe=Y1ef; +Y1gd=0; +Y1ge=0; +Y1gf=Y1fg; +printf('\nY-Bus and Z-Bus matrix can be written as:\n') +Y1_bus=[Y1dd Y1de Y1df Y1dg;Y1ed Y1ee Y1ef Y1eg;Y1fd Y1fe Y1ff Y1fg;Y1gd Y1ge Y1gf Y1gg]; +Y2_bus=Y1_bus; +printf('\nY1_bus=');disp(Y1_bus); +printf('\nY2_bus=');disp(Y2_bus); +Y0dd=(%i*1.608)^-1;Y0de=0;Y0df=0;Y0dg=0; +Y0ed=0;Y0ee=((%i*0.0805)^-1)+((%i*0.494)^-1);Y0ef=-(%i*0.494)^-1;Y0eg=0; +Y0fd=0;Y0fe=Y0ef;Y0ff=Y0ee;Y0fg=0; +Y0gd=0;Y0de=0;Y0gf=0;Y0gg=(%i*1.712)^-1; + +Y0_bus=[Y0dd Y0de Y0df Y0dg;Y0ed Y0ee Y0ef Y0eg;Y0fd Y0fe Y0ff Y0fg;Y0gd Y0de Y0gf Y0gg]; +printf('\nY0_bus=');disp(Y0_bus); + +//finding Z-bus matrix +Z1_bus=inv(Y1_bus); +Z2_bus=inv(Y2_bus); +Z0_bus=inv(Y0_bus); +printf('\n\nZ1bus=');disp(Z1_bus); +printf('\nZ2_bus=');disp(Z2_bus); +printf('\nZ0_bus=');disp(Z0_bus); + +//to find fault current with LG fault on bus e ---case(i) +If_e=(3*v_pf)/(Z1_bus(2,2)+Z2_bus(2,2)+Z0_bus(2,2)); +printf('\n\n\nFault current with LG fault on bus e is If_e= -j%0.5f\n',abs(imag(If_e))); + +//to find fault current with LG fault on bus f ---case(ii) +If_f=(3*v_pf)/(Z1_bus(3,3)+Z2_bus(3,3)+Z0_bus(3,3)); +printf('Fault current with LG fault on bus f is If_f= -j%0.5f\n',abs(imag(If_f))); + +//to find bus voltages and line currents in case(i) +printf('\n\n\nBus voltages and currents are given below:\n\n'); +Vf1_d=1-(Z1_bus(1,2)*If_e/3); +Vf1_e=1-(Z1_bus(2,2)*If_e/3); +Vf1_f=1-(Z1_bus(3,2)*If_e/3); +Vf1_g=1-(Z1_bus(4,2)*If_e/3); +disp('Vf1_d=');disp(Vf1_d); +disp('Vf1_e=');disp(Vf1_e); +disp('Vf1_f=');disp(Vf1_f); +disp('Vf1_g=');disp(Vf1_g); + +printf('\n\n\n'); +Vf2_d=-(Z2_bus(1,2)*If_e/3); +Vf2_e=-(Z2_bus(2,2)*If_e/3); +Vf2_f=-(Z2_bus(3,2)*If_e/3); +Vf2_g=-(Z2_bus(4,2)*If_e/3); +disp('Vf2_d=');disp(Vf2_d); +disp('Vf2_e=');disp(Vf2_e); +disp('Vf2_f=');disp(Vf2_f); +disp('Vf2_g=');disp(Vf2_g); + +printf('\n\n\n'); +Vf0_d=-(Z0_bus(1,2)*If_e/3); +Vf0_e=-(Z0_bus(2,2)*If_e/3); +Vf0_f=-(Z0_bus(3,2)*If_e/3); +Vf0_g=-(Z0_bus(4,2)*If_e/3); +disp('Vf0_d=');disp(Vf0_d); +disp('Vf0_e=');disp(Vf0_e); +disp('Vf0_f=');disp(Vf0_f); +disp('Vf0_g=');disp(Vf0_g); + +printf('\n\n\n'); +If1_fe=-Y1fe*(Vf1_f-Vf1_e);disp('If1_fe=');disp(If1_fe); +If1_de=-Y1de*(Vf1_d-Vf1_e);disp('If1_de=');disp(If1_de); +Ia1=If1_fe+If1_de;disp('Ia1=');disp(Ia1); + +printf('\n\n\n'); +If1_gf=-Y1gf*(Vf2_g-Vf2_f);disp('If1_gf=');disp(If1_gf); + +printf('\n\n\n'); +If2_fe=-Y1fe*(Vf2_f-Vf2_e);disp('If2_fe=');disp(If2_fe); //Y2fe=Y1fe +If0_fe=-Y0fe*(Vf2_f-Vf2_e);disp('If0_fe=');disp(If0_fe); +If_fe=If1_fe+If2_fe+If0_fe;disp('If_fe=');disp(If_fe); + + + diff --git a/Working_Examples/83/CH11/EX11.6/result_example_11_6.txt b/Working_Examples/83/CH11/EX11.6/result_example_11_6.txt new file mode 100755 index 0000000..3ec225f --- /dev/null +++ b/Working_Examples/83/CH11/EX11.6/result_example_11_6.txt @@ -0,0 +1,141 @@ + +Y-Bus and Z-Bus matrix can be written as: + +Y1_bus= + - 17.42236i 12.42236i 0 0 + 12.42236i - 18.519921i 6.097561i 0 + 0 6.097561i - 18.519921i 12.42236i + 0 0 12.42236i - 16.770186i + +Y2_bus= + - 17.42236i 12.42236i 0 0 + 12.42236i - 18.519921i 6.097561i 0 + 0 6.097561i - 18.519921i 12.42236i + 0 0 12.42236i - 16.770186i + +Y0_bus= + - 0.6218905i 0 0 0 + 0 - 14.446652i 2.0242915i 0 + 0 2.0242915i - 14.446652i 0 + 0 0 0 - 0.5841121i + + +Z1bus= + 0.1470199i 0.1256954i 0.0822517i 0.0609272i + 0.1256954i 0.1762877i 0.1153579i 0.0854503i + 0.0822517i 0.1153579i 0.1828043i 0.1354106i + 0.0609272i 0.0854503i 0.1354106i 0.1599338i + +Z2_bus= + 0.1470199i 0.1256954i 0.0822517i 0.0609272i + 0.1256954i 0.1762877i 0.1153579i 0.0854503i + 0.0822517i 0.1153579i 0.1828043i 0.1354106i + 0.0609272i 0.0854503i 0.1354106i 0.1599338i + +Z0_bus= + 1.608i 0 0 0 + 0 0.0706065i 0.0098935i 0 + 0 0.0098935i 0.0706065i 0 + 0 0 0 1.712i + + + +Fault current with LG fault on bus e is If_e= -j7.08915 +Fault current with LG fault on bus f is If_f= -j6.87734 + + + +Bus voltages and currents are given below: + + + Vf1_d= + + 0.7029756 + + Vf1_e= + + 0.5834233 + + Vf1_f= + + 0.7274035 + + Vf1_g= + + 0.7980766 + + + + + Vf2_d= + + - 0.2970244 + + Vf2_e= + + - 0.4165767 + + Vf2_f= + + - 0.2725965 + + Vf2_g= + + - 0.2019234 + + + + + Vf0_d= + + 0 + + Vf0_e= + + - 0.1668466 + + Vf0_f= + + - 0.0233789 + + Vf0_g= + + 0 + + + + + If1_fe= + + - 0.8779277i + + If1_de= + + - 1.4851219i + + Ia1= + + - 2.3630496i + + + + + If1_gf= + + - 0.8779277i + + + + + If2_fe= + + - 0.8779277i + + If0_fe= + + - 0.2914578i + + If_fe= + + - 2.0473131i + diff --git a/Working_Examples/83/CH11/EX11.7/example_11_7.sce b/Working_Examples/83/CH11/EX11.7/example_11_7.sce new file mode 100755 index 0000000..3c98e56 --- /dev/null +++ b/Working_Examples/83/CH11/EX11.7/example_11_7.sce @@ -0,0 +1,81 @@ +//Chapter 11 +//Example 11.7 +//page 423 +//To find short circuit currents + +clc;clear; +v_pf=1; //prefault voltage +a=0.5+0.8660254*%i; +//according to the fig.11.28 we can write Z-bus matrix for positive and negative phase sequence +printf('\nstep by step for finding Z1_bus\n') + +//Bus1 to referance bus +Z1_bus=[0.15]; +printf('Bus1 to reference\nZ1_bus=');disp(Z1_bus); + +//Bus2 to Bus1 +Z1_bus=[Z1_bus 0.15;0.15 0.15+0.2]; +printf('\nBus2 to Bus1\nZ1_bus=');disp(Z1_bus); + +//Bus2 to reference bus +Z1_bus=Z1_bus-(1/(Z1_bus(2,2)+0.15))*[Z1_bus(1:2,2:2)]*[Z1_bus(2:2,1:2)]; +Z1_bus=(%i*Z1_bus); +Z2_bus=Z1_bus; +printf('\nBus2 to Reference\nZ1_bus=');disp(Z1_bus);printf('\nZ2_bus=');disp(Z2_bus); + +//according to the fig.11.29 we can write Z-bus matrix for zero phase sequence +printf('\nstep by step for finding Z0_bus\n') +//Bus1 to referance bus +Z0_bus=[0.05]; +printf('\nBus1 to reference \nZ0_bus=');disp(Z0_bus); + +//Bus2 to Bus1 +Z0_bus=[Z0_bus 0.05;0.05 0.05+0.4]; +printf('\nBus1 to Bus1 \nZ0_bus=');disp(Z0_bus); + +//Bus2 to reference bus +Z0_bus=Z0_bus-(1/(Z0_bus(2,2)+0.05))*[Z0_bus(1:2,2:2)]*[Z0_bus(2:2,1:2)]; +Z0_bus=(%i*Z0_bus); +printf('\nBus2 to reference \nZ0_bus=');disp(Z0_bus); + +//to find positive sequence of fault current +printf('\n\n\nFault current calculation\n') +If1_1=v_pf/(Z1_bus(1,1)+Z2_bus(1,1)+Z0_bus(1,1)); printf('If1_1 = -j%0.5f',abs(imag(If1_1))); +printf('\nFault current=If1=3If1_1=-j%0.1f\n\n',abs(imag(3*If1_1))); + +Vf1_1=1-Z1_bus(1,1)*If1_1; +Vf1_2=1-Z1_bus(2,1)*If1_1; + +Vf2_1=-Z2_bus(1,1)*If1_1; +Vf2_2=-Z2_bus(2,1)*If1_1; + +Vf0_1=-Z0_bus(1,1)*If1_1; +Vf0_2=-Z0_bus(2,1)*If1_1; + +If1_12=((%i*0.2)^-1)*(Vf1_1-Vf1_2); +If2_12=((%i*0.2)^-1)*(Vf2_1-Vf2_2); +If0_12=((%i*0.4)^-1)*(Vf0_1-Vf0_2); + +If=[1 1 1;a^2 a 1;a a^2 1]*[If1_12;If2_12;If0_12]; + +printf('\n\n\nShort circuit current on the transmission line in all the three phases\n') +printf('\nIf_a_12='); +disp(If(1,1)); + +printf('\nIf_b_12='); +disp(If(2,1)); + +printf('\nIf_b_12='); +disp(If(3,1)); + +//short circuit current phase(a) of the generator +If1_G=((0.15*%i)^-1)*(1-Vf1_1)*(cosd(-30)+%i*sind(-30)); +If2_G=((0.15*%i)^-1)*(0-Vf2_1)*(cosd(30)+%i*sind(30)); +If0_G=0; +printf('\n\n\nshort circuit current phase(a) of the generator\n') +Ifa_G=If1_G+If2_G+If0_G; printf('Ifa_G = -j%0.5f',abs(imag(Ifa_G))); + +//Voltage of the healthy phases of the bus 1. +printf('\n\n\nVoltage of the healthy phases of the bus 1\n') +Vf_b_1=Vf1_1*(cosd(240)+%i*sind(240))+Vf2_1*(cosd(120)+%i*sind(120))+Vf0_1; printf('Vf_b_1=%0.4f - j%0.5f',real(Vf_b_1),abs(imag(Vf_b_1))); +Vf_c_1=Vf1_1*(cosd(120)+%i*sind(120))+Vf2_1*(cosd(240)+%i*sind(240))+Vf0_1; printf('\nVf_c_1=%0.4f + j%0.5f',real(Vf_c_1),abs(imag(Vf_c_1))); diff --git a/Working_Examples/83/CH11/EX11.7/result_example_11_7.txt b/Working_Examples/83/CH11/EX11.7/result_example_11_7.txt new file mode 100755 index 0000000..1e6a021 --- /dev/null +++ b/Working_Examples/83/CH11/EX11.7/result_example_11_7.txt @@ -0,0 +1,65 @@ + +step by step for finding Z1_bus +Bus1 to reference +Z1_bus= + 0.15 + +Bus2 to Bus1 +Z1_bus= + 0.15 0.15 + 0.15 0.35 + +Bus2 to Reference +Z1_bus= + 0.105i 0.045i + 0.045i 0.105i + +Z2_bus= + 0.105i 0.045i + 0.045i 0.105i + +step by step for finding Z0_bus + +Bus1 to reference +Z0_bus= + 0.05 + +Bus1 to Bus1 +Z0_bus= + 0.05 0.05 + 0.05 0.45 + +Bus2 to reference +Z0_bus= + 0.045i 0.005i + 0.005i 0.045i + + + +Fault current calculation +If1_1 = -j3.92157 +Fault current=If1=3If1_1=-j11.8 + + + + +Short circuit current on the transmission line in all the three phases + +If_a_12= + 2.745098i + +If_b_12= + - 2.0377068 + 0.3921569i + +If_b_12= + - 2.0377068 + 0.3921569i + + + +short circuit current phase(a) of the generator +Ifa_G = -j4.75465 + + +Voltage of the healthy phases of the bus 1 +Vf_b_1=-0.2647 - j0.86603 +Vf_c_1=-0.2647 + j0.86603 diff --git a/Working_Examples/83/CH12/EX12.1/example_12_1.sce b/Working_Examples/83/CH12/EX12.1/example_12_1.sce new file mode 100755 index 0000000..dcc72ab --- /dev/null +++ b/Working_Examples/83/CH12/EX12.1/example_12_1.sce @@ -0,0 +1,26 @@ +//Chapter 12 +//Example 12.1 +//page 439 +//To find stored kinetic energy,rotor acceleration,change in torque angle and rotor speed +clear;clc; +G=100; //base machine rating +H=8.0; //inertia constant +P=4; //no of poles +//(a)To find stored energy in rotor at synchronous speed +stored_energy=G*H; +printf('\nStored energy = %d MJ',stored_energy); + +//(b)To find rotor acceleration when mechanical input is raised 80MW for an electrical load of 50MW +Pa=30; //nett power +f=50; //frequency +M=stored_energy/(180*f); +alpha=Pa/M; //rotor acceleration +printf('\n\nRotor acceleration = %0.1f elect deg/s^2 ',alpha); + +//(c)To calculate change in torque angle and rotor speed when the above acceleration is maintained for 10 cycles +change_angle=0.5*alpha*(10*20*10^(-3)); +printf('\n\nChange in torque angle = %0.2f elect degrees',change_angle); +change_angle=60*alpha/(2*360); +printf('\nChange in torque angle = %0.3f rpm/s',change_angle); +speed=(120*f/P)+(change_angle*0.2); +printf('\n\nRoor speed at the end of 10 cycles = %0.3f rpm',speed); diff --git a/Working_Examples/83/CH12/EX12.1/result_example_12_1.txt b/Working_Examples/83/CH12/EX12.1/result_example_12_1.txt new file mode 100755 index 0000000..b8ab028 --- /dev/null +++ b/Working_Examples/83/CH12/EX12.1/result_example_12_1.txt @@ -0,0 +1,9 @@ + +Stored energy = 800 MJ + +Rotor acceleration = 337.5 elect deg/s^2 + +Change in torque angle = 33.75 elect degrees +Change in torque angle = 28.125 rpm/s + +Roor speed at the end of 10 cycles = 1505.625 rpm diff --git a/Working_Examples/83/CH12/EX12.10/example_12_10.sce b/Working_Examples/83/CH12/EX12.10/example_12_10.sce new file mode 100755 index 0000000..79310e8 --- /dev/null +++ b/Working_Examples/83/CH12/EX12.10/example_12_10.sce @@ -0,0 +1,170 @@ +//Chapter 12 +//Example 12.10 +//page 482 +//To plot swing curves for sustained fault and fault cleared at 2.5 and 6.25 cycles +clear;clc; +P_delivered=18; +MVA_base=20; +Xd=0.35;E=1.1; +Xl=0.2; +V=1; + +H=2.52; +f=50; +M=H/(180*f); + +/////////Prefault////////////////////////// +X1=Xd+Xl/2; +delta=0:0.1:180; +Pe1=E*V*sind(delta)/X1; +P_initial=P_delivered/MVA_base;Pm=P_initial; +delta0=asind(P_initial/max(Pe1)); + + +//////during fault//////// +X2=1.25; //from delta to star conversion +Pe2=E*V*sind(delta)/X2; + +//////postfault:with faulted line switched off///////// +X3=Xd+Xl; +Pe3=E*V*sind(delta)/X3; + +Pa_0minus=0; +Pa_0plus=Pm-max(Pe2)*sind(delta0); +Pa_avg=(Pa_0minus+Pa_0plus)/2; + + +/////for a sustained fault/////////// +P_max=max(Pe2); +delta_delta=0; //initially +delta=21.64; //initially +delta_old=21.64; +delta_t=0.05; +z1=21.64 +n=10; +T=0; +printf('Point-by-point calculation of swing curve for sustained fault delta_t=0.05sec\n'); +printf('_______________________________________________________________________________________________\n'); +printf('t\t\tPmax\t\t sin(delta)\t\tPa\t\t y\t\tdelta\n'); +printf('_______________________________________________________________________________________________\n'); +printf('%0.3f sec\t%0.3f\t\t %0.3f\t\t\t%0.3f\t\t%0.3f\t\t%0.3f\n',0.000,P_max,sind(delta),(0.9-P_max*sind(delta))/2,8.929*(0.9-P_max*sind(delta))/2,delta); +for i=1:n + t=i*delta_t; + if i==1 then + Pa=(0.9-P_max*sind(delta_old))/2; + else + Pa=0.9-P_max*sind(delta_old); + end + + y=(delta_t^2)*Pa/M; + delta_delta=delta_delta+y; + delta=delta+delta_delta; + z1=[z1,delta];T=[T,t]; + printf('%0.3f sec\t%0.3f\t\t %0.3f\t\t\t%0.3f\t\t%0.3f\t\t%0.3f\n',t,P_max,sind(delta),0.9-P_max*sind(delta),8.929*(0.9-P_max*sind(delta)),delta); + delta_old=delta; +end + + +//////Fault cleared in 2.5 cycles(time to clear fault=0.05sec)///// + +P_max1=max(Pe2); +P_max2=max(Pe3); +delta_delta=0; //initially +delta=21.64; //initially +delta_old=21.64; +delta_t=0.05; +z2=21.64 +n=10; +T=0; +printf('\n\nComputations of swing curves for fault cleared at 2.5 cycles(0.05sec)\n'); +printf('______________________________________________________________________________________________\n'); +printf('t\t\tPmax\t\t sin(delta)\t\tPa\t\t y\t\tdelta\n'); +printf('______________________________________________________________________________________________\n'); +printf('%0.3f sec\t%0.3f\t\t %0.3f\t\t\t%0.3f\t\t%0.3f\t\t%0.3f\n',0.000,P_max,sind(delta),(0.9-P_max*sind(delta))/2,8.929*(0.9-P_max*sind(delta))/2,delta); +for i=1:n + t=i*delta_t; + if i==1 then + Pa=(0.9-P_max*sind(delta_old))/2; + P_max=P_max1; + elseif i==2 then + Pa=((0.9-P_max2*sind(delta_old))+((0.9-P_max1*sind(delta_old))))/2; + P_max=P_max2; + else + Pa=0.9-P_max2*sind(delta_old); + P_max=P_max2; + end + + y=(delta_t^2)*Pa/M; + delta_delta=delta_delta+y; + delta=delta+delta_delta; + z2=[z2,delta];T=[T,t]; + + if i==1 then + delta_old=delta; + printf('%0.3f sec\t%0.3f\t\t %0.3f\t\t\t%0.3f\t\t%0.3f\t\t%0.3f\n',t,P_max,sind(delta),((0.9-P_max2*sind(delta_old))+((0.9-P_max1*sind(delta_old))))/2,8.929*((0.9-P_max2*sind(delta_old))+((0.9-P_max1*sind(delta_old))))/2,delta); + else + printf('%0.3f sec\t%0.3f\t\t %0.3f\t\t\t%0.3f\t\t%0.3f\t\t%0.3f\n',t,P_max,sind(delta),0.9-P_max*sind(delta),8.929*(0.9-P_max*sind(delta)),delta); + delta_old=delta; + end + +end + + + +//////Fault cleared in 6.25 cycles(time to clear fault=0.125sec)///// + +P_max1=max(Pe2); +P_max2=max(Pe3); +P_max=P_max1; +delta_delta=0; //initially +delta=21.64; //initially +delta_old=21.64; +delta_t=0.05; +z3=21.64 +n=10; +T=0; +printf('\n\nComputations of swing curves for fault cleared at 6.25 cycles(0.125sec)\n'); +printf('______________________________________________________________________________________________\n'); +printf('t\t\tPmax\t\t sin(delta)\t\tPa\t\t y\t\tdelta\n'); +printf('______________________________________________________________________________________________\n'); +printf('%0.3f sec\t%0.3f\t\t %0.3f\t\t\t%0.3f\t\t%0.3f\t\t%0.3f\n',0.000,P_max,sind(delta),(0.9-P_max*sind(delta))/2,8.929*(0.9-P_max*sind(delta))/2,delta); +for i=1:n + t=i*delta_t; + if i==1 then + Pa=(0.9-P_max1*sind(delta_old))/2; + P_max=P_max1; + elseif i==2 then + Pa=(0.9-P_max1*sind(delta_old)); + P_max=P_max1; + elseif i==3 then + Pa=(0.9-P_max1*sind(delta_old)); + P_max=P_max2; + else + Pa=0.9-P_max2*sind(delta_old); + P_max=P_max2; + end + + y=(delta_t^2)*Pa/M; + delta_delta=delta_delta+y; + delta=delta+delta_delta; + z3=[z3,delta]; + T=[T,t]; + printf('%0.3f sec\t%0.3f\t\t %0.3f\t\t\t%0.3f\t\t%0.3f\t\t%0.3f\n',t,P_max,sind(delta),0.9-P_max*sind(delta),8.929*(0.9-P_max*sind(delta)),delta); + delta_old=delta; + +end + +plot(T,z1,T,z2,T,z3); +set(gca(),"grid",[1 1]); +legend('Sustained Fault','Fault cleared at 2.5 cycles','Fault cleared at 6.25 cycles',[,2]); + +title('Swing Curves for Example 12.10 for a sustained fault and for clearing in 2.5 and 6.25 cycles','fontsize',2.4); +xlabel('Time (in seconds)----->'); +ylabel('Torque Angle (delta,deg)----->'); +f=get("current_figure") +f.figure_position=[0,15] +f.figure_size=[645,1000] + + + + diff --git a/Working_Examples/83/CH12/EX12.10/result_example_12_10.txt b/Working_Examples/83/CH12/EX12.10/result_example_12_10.txt new file mode 100755 index 0000000..51afab7 --- /dev/null +++ b/Working_Examples/83/CH12/EX12.10/result_example_12_10.txt @@ -0,0 +1,53 @@ + + +Point-by-point calculation of swing curve for sustained fault delta_t=0.05sec +_______________________________________________________________________________________________ +t Pmax sin(delta) Pa y delta +_______________________________________________________________________________________________ +0.000 sec 0.880 0.369 0.288 2.569 21.640 +0.050 sec 0.880 0.410 0.539 4.814 24.209 +0.100 sec 0.880 0.524 0.439 3.920 31.592 +0.150 sec 0.880 0.681 0.301 2.688 42.894 +0.200 sec 0.880 0.838 0.163 1.455 56.885 +0.250 sec 0.880 0.953 0.062 0.549 72.330 +0.300 sec 0.880 1.000 0.020 0.182 88.324 +0.350 sec 0.880 0.968 0.048 0.429 104.500 +0.400 sec 0.880 0.856 0.147 1.308 121.105 +0.450 sec 0.880 0.656 0.323 2.883 139.019 +0.500 sec 0.880 0.345 0.596 5.325 159.815 + + +Computations of swing curves for fault cleared at 2.5 cycles(0.05sec) +______________________________________________________________________________________________ +t Pmax sin(delta) Pa y delta +______________________________________________________________________________________________ +0.000 sec 0.880 0.369 0.288 2.569 21.640 +0.050 sec 0.880 0.410 0.310 2.764 24.209 +0.100 sec 2.000 0.493 -0.086 -0.769 29.542 +0.150 sec 2.000 0.561 -0.221 -1.977 34.105 +0.200 sec 2.000 0.598 -0.295 -2.634 36.692 +0.250 sec 2.000 0.597 -0.294 -2.622 36.644 +0.300 sec 2.000 0.559 -0.218 -1.943 33.975 +0.350 sec 2.000 0.490 -0.081 -0.720 29.361 +0.400 sec 2.000 0.407 0.086 0.765 24.028 +0.450 sec 2.000 0.333 0.234 2.087 19.460 +0.500 sec 2.000 0.292 0.316 2.822 16.978 + + +Computations of swing curves for fault cleared at 6.25 cycles(0.125sec) +______________________________________________________________________________________________ +t Pmax sin(delta) Pa y delta +______________________________________________________________________________________________ +0.000 sec 0.880 0.369 0.288 2.569 21.640 +0.050 sec 0.880 0.410 0.539 4.814 24.209 +0.100 sec 0.880 0.524 0.439 3.920 31.592 +0.150 sec 2.000 0.681 -0.461 -4.119 42.894 +0.200 sec 2.000 0.767 -0.634 -5.660 50.078 +0.250 sec 2.000 0.784 -0.667 -5.960 51.603 +0.300 sec 2.000 0.733 -0.567 -5.060 47.168 +0.350 sec 2.000 0.611 -0.322 -2.878 37.673 +0.400 sec 2.000 0.427 0.045 0.404 25.301 +0.450 sec 2.000 0.231 0.439 3.918 13.332 +0.500 sec 2.000 0.092 0.716 6.392 5.282 +WARNING : The size of the figure may not be as wide as you want. + diff --git a/Working_Examples/83/CH12/EX12.10/result_example_12_10_img.jpeg b/Working_Examples/83/CH12/EX12.10/result_example_12_10_img.jpeg Binary files differnew file mode 100755 index 0000000..f6279f5 --- /dev/null +++ b/Working_Examples/83/CH12/EX12.10/result_example_12_10_img.jpeg diff --git a/Working_Examples/83/CH12/EX12.11/example_12_11.sce b/Working_Examples/83/CH12/EX12.11/example_12_11.sce new file mode 100755 index 0000000..33c64db --- /dev/null +++ b/Working_Examples/83/CH12/EX12.11/example_12_11.sce @@ -0,0 +1,173 @@ +//Chapter 12 +//Example 12.11 +//page 488 +//To plot swing curves for fault cleared at 0.275s and 0.08s of a multimachine system +clear;clc; + +xd1=%i*0.067;xd2=%i*0.1; + +//primitive admittances of the lines +y45=1/(0.018+%i*0.11); B45=%i*0.113; +y51=1/(0.004+%i*0.0235); B51=%i*0.098; +y41=1/(0.007+%i*0.04); B41=%i*0.041; +z24=(%i*0.022); +z35=(%i*0.04); + +//Bus data and prefault load-flow values in PU +V1=1.0; P1=-3.8083; Q1=-0.2799; Pl1=0; Ql2=0; +V2=1.0194+%i*0.1475; P2=3.25; Q2=0.6986; Pl2=0; Ql2=0; +V3=1.0121+%i*0.1271; P3=2.10; Q3=0.3110; Pl3=0; Ql3=0; +V4=1.0146+%i*0.0767; P4=0; Q4=1.0; Pl4=1.0; Ql4=0.44; +V5=1.0102+%i*0.0439; P5=0; Q5=0; Pl5=0.5; Ql5=0.16; + + +// To find voltage behind transient reactances before the occurance of fault + +I2=(P2-%i*Q2)/(V2'); +E2=V2+I2*xd1; +E1=V1; +I3=(P3-%i*Q3)/(V3'); +E3=V3+I3*xd2; + +//converting loads into their admittances +Yl4=(Pl4-%i*Ql4)/(V4*V4'); +Yl5=(Pl5-%i*Ql5)/(V5*V5'); + +//forming augmented Bus admittance matrix before the occurance of fault +Y11=y41+y51;Y12=0;Y13=0;Y14=-y41;Y15=-y51; +Y21=Y12;Y22=1/(xd1+z24);Y23=0;Y24=-(1/(z24+xd1));Y25=0; +Y31=0;Y32=0;Y33=1/(z35+xd2);Y34=0;Y35=-1/(z35+xd2); +Y41=Y14;Y42=Y24;Y43=Y34;Y44=y41+Yl4+y45+B45+B41-Y24;Y45=-y45; +Y51=Y15;Y52=Y25;Y53=Y35;Y54=Y45;Y55=Yl5+y45+y51+B45+B51-Y35; + +Ybus=[Y11 Y12 Y13 Y14 Y15; + Y21 Y22 Y23 Y24 Y25; + Y31 Y32 Y33 Y34 Y35; + Y41 Y42 Y43 Y44 Y45; + Y51 Y52 Y53 Y54 Y55]; + +printf('\n Augmented prefault bus admittance matrix (in PU) is given by\n\n Ybus=\n'); +disp(Ybus); +///////to find the Ybus during fault +Ybus_1=Ybus([1:3,5],[1:3,5]); +n=4 +for k=1:n-1 + for j=1:n-1 + Ybus_during_fault(k,j)=Ybus_1(k,j)-(Ybus_1(k,n)*Ybus_1(n,j))/Ybus_1(n,n); + end +end +printf('\n\n\n Bus admittance matrix during fault (in PU) is given by\n\n Ybus_during_fault=\n'); +disp(Ybus_during_fault); + +//to find Ybus after the fault has been cleared +Y45=0;Y54=0;Y44=Y44-y45-B45;Y55=Y55-y45-B45; +Ybus_2=[Y11 Y12 Y13 Y14 Y15; + Y21 Y22 Y23 Y24 Y25; + Y31 Y32 Y33 Y34 Y35; + Y41 Y42 Y43 Y44 Y45; + Y51 Y52 Y53 Y54 Y55]; + +//eliminating node 5 from Ybus_2 +n=5 +for k=1:n-1 + for j=1:n-1 + Ybus_3(k,j)=Ybus_2(k,j)-(Ybus_2(k,n)*Ybus_2(n,j))/Ybus_2(n,n); + end +end + +//eliminating node 4 to get post fault Ybus +n=4 +for k=1:n-1 + for j=1:n-1 + Ybus_post_fault(k,j)=Ybus_3(k,j)-(Ybus_3(k,n)*Ybus_3(n,j))/Ybus_3(n,n); + end +end +printf('\n\n\n Bus admittance matrix postfault (in PU) is given by\n\n Ybus_post_fault=\n'); +disp(Ybus_post_fault); +printf('\n\n\n'); +//During fault power angle equation +delta3=0:0.1:180; +Pe2f=0; +Pe3f=(abs(E3'))^2*real(Ybus_during_fault(3,3))+abs(E1')*abs(E3')*abs(Ybus_during_fault(3,1))*cosd(delta3-atand(imag(Ybus_during_fault(1,3))/real(Ybus_during_fault(1,3)))); + +//Postfault power angle equations +delta2=0:0.1:180; +Pe2pf=(abs(E2'))^2*real(Ybus_post_fault(2,2))+abs(E1')*abs(E2')*abs(Ybus_post_fault(2,1))*cosd(delta2-atand(imag(Ybus_post_fault(1,2))/real(Ybus_post_fault(1,2)))); +Pe3pf=(abs(E3'))^2*real(Ybus_post_fault(3,3))+abs(E1')*abs(E3')*abs(Ybus_post_fault(3,1))*cosd(delta3-atand(imag(Ybus_post_fault(1,3))/real(Ybus_post_fault(1,3)))); + +//mechanical inputs which are assumed to be constant are given by +Pm2=max(real(E2*I2')); +Pm3=max(real(E3*I3')); + +//xdot function defining the swing equations of each of the machines +function xdot=mac2(t,x,tc) + xdot(1)=x(2); + if t>tc then + xdot(2)=180*50*(Pm2-(0.6012+8.365*sind(x(1)-1.662)))/12;//swing equation after clearing the fault + else + xdot(2)=180*50*(Pm2-(0))/12; //swing equation before clearing the fault + end + +endfunction + +function xdot=mac3(t,x,tc) + xdot(1)=x(2); + if t>tc then + xdot(2)=180*50*(Pm3-(0.1823+6.5282*sind(x(1)-0.8466)))/9;//swing equation after clearing the fault + else + xdot(2)=180*50*(Pm3-(0.1561+5.531*sind(x(1)-0.755)))/9; //swing equation before clearing the fault + end + +endfunction + +//to find the solution of swing equation to draw the swing curves + +//to draw the swing curves for machines 2 and 3 for example12.11 for clearing at 0.275 sec +subplot(2,1,1) +x_1_0=[19.354398,0]';t0=0; T=0:0.01:1;T=T'; +x_2_0=[18.2459,0]';tc=0.275; +sol1=ode(x_1_0,t0,T,mac2); +sol2=ode(x_2_0,t0,T,mac3); + +plot(T(1:20),sol1(1,1:20)',T,sol2(1,:)'); +set(gca(),"grid",[1 1]); +legend('Machine 2','Machine 3',[,1]); +title('Swing Curves for machines 2 and 3 of Example 12.11 for a clearing at '+string(tc)+' s'); +xstring(0.55,59,'Machine 1 is reference (infinte bus)'); +xlabel('Time (in seconds)----->'); +ylabel('Torque Angle (delta,deg)----->'); + + +//to draw the swing curves for machines 2 and 3 for example12.11 for clearing at 0.08 sec +subplot(2,1,2) +x_1_0=[19.354398,0]';t0=0; T=0:0.01:1;T=T'; +x_2_0=[18.2459,0]';tc=0.08; +sol1=ode(x_1_0,t0,T,mac2); +sol2=ode(x_2_0,t0,T,mac3); + +plot(T,sol1(1,:)',T,sol2(1,:)'); +set(gca(),"grid",[1 1]); +legend('Machine 2','Machine 3',[,4]); +title('Swing Curves for machines 2 and 3 of Example 12.11 for a clearing at '+string(tc)+' s'); +xstring(0.44,43,'Machine 1 is reference (infinte bus)'); +xlabel('Time (in seconds)----->'); +ylabel('Torque Angle (delta,deg)----->'); + +f=get("current_figure"); +f.figure_position=[0,15]; +f.figure_size=[565,1000]; + + + + + + + + + + + + + + + diff --git a/Working_Examples/83/CH12/EX12.11/result_example_12_11.txt b/Working_Examples/83/CH12/EX12.11/result_example_12_11.txt new file mode 100755 index 0000000..7e66326 --- /dev/null +++ b/Working_Examples/83/CH12/EX12.11/result_example_12_11.txt @@ -0,0 +1,38 @@ + + + + Augmented prefault bus admittance matrix (in PU) is given by + + Ybus= + + 11.284152 - 65.612163i 0 0 - 4.244997 + 24.257126i - 7.0391553 + 41.355037i + 0 - 11.235955i 0 11.235955i 0 + 0 0 - 7.1428571i 0 7.1428571i + - 4.244997 + 24.257126i 11.235955i 0 6.659713 - 44.617911i - 1.4488088 + 8.8538313i + - 7.0391553 + 41.355037i 0 7.1428571i - 1.4488088 + 8.8538313i 8.9769945 - 57.297216i + + + + Bus admittance matrix during fault (in PU) is given by + + Ybus_during_fault= + + 5.7986033 - 35.768947i 0 - 0.0681253 + 5.1661269i + 0 - 11.235955i 0 + - 0.0681253 + 5.1661269i 0 0.1361683 - 6.2737394i + + + + Bus admittance matrix postfault (in PU) is given by + + Ybus_post_fault= + + 1.3931179 - 14.011919i - 0.2213865 + 7.628982i - 0.0901365 + 6.0974822i + - 0.2213865 + 7.628982i 0.5005328 - 7.7897867i 0 + - 0.0901365 + 6.0974822i 0 0.1590837 - 6.1167759i + + + +WARNING : The size of the figure may not be as wide as you want. + + diff --git a/Working_Examples/83/CH12/EX12.11/result_example_12_11_img.jpeg b/Working_Examples/83/CH12/EX12.11/result_example_12_11_img.jpeg Binary files differnew file mode 100755 index 0000000..5660f18 --- /dev/null +++ b/Working_Examples/83/CH12/EX12.11/result_example_12_11_img.jpeg diff --git a/Working_Examples/83/CH12/EX12.12/example_12_12.sce b/Working_Examples/83/CH12/EX12.12/example_12_12.sce new file mode 100755 index 0000000..647cf0a --- /dev/null +++ b/Working_Examples/83/CH12/EX12.12/example_12_12.sce @@ -0,0 +1,97 @@ +//Chapter 12 +//Example 12.12 +//page 500 +//To plot swing curves for single pole and three pole switching +clear;clc; + +Xg0=0.1;Xg1=0.3;Xg2=0.15;E=1.2;H=4.167; +Xt=0.1; +Xl0=1.0;Xl1=0.3;Xl2=0.3;V=1; + +//transfer reactance during LG fault(fault not cleared) by star delta transformation is given by +X12_fault=1.45; + +//transfer reactance after LG faulted line open is given by +X12_fault_open=1.22; + +//transfer reactance when all the lines are healthy is given by +X12_healthy=0.8; + +//power angle equations +delta=0:0.1:180; + +//Prefault condition +Pe1=(E*V)*sind(delta)/X12_healthy; +//for an initial load of 1PU +delta0=asind(1/1.5); + +//during fault +Pe2=(E*V)*sind(delta)/X12_fault; + +//during single pole switching +Pe3=(E*V)*sind(delta)/X12_fault_open; + +//during three pole switching +Pe4=0; + +//after reclosure +Pe5=Pe1; + +Pm=1.0; + +//xdot function defining the swing equations of machine during single poling +function xdot=mac_1_pole(t,x,tc,tr) + xdot(1)=x(2); + if (t<=tc) then + xdot(2)=180*50*(Pm-(0.827*sind(x(1))))/12; //swing equation before clearing the faulted line + elseif (t>tc)&(t<tr) then + xdot(2)=180*50*(Pm-(0.985*sind(x(1))))/12;//swing equation during single pole switching + elseif (t>=tr) then + xdot(2)=180*50*(Pm-(1.5*sind(x(1))))/12; //after reclosure + end +endfunction + +//xdot function defining the swing equations of machine during three poling +function xdot=mac_3_pole(t,x,tc,tr) + xdot(1)=x(2); + if (t>tc)&(t<tr) then + xdot(2)=180*50*(Pm-0)/4.167;//swing equation during three pole switching + elseif (t<=tc) then + xdot(2)=180*50*(Pm-(0.827*sind(x(1))))/4.167; //swing equation before clearing the faulted line + elseif (t>=tr) then + xdot(2)=180*50*(Pm-(1.5*sind(x(1))))/4.167; //after reclosure + end +endfunction + +//to find the solution of swing equation to draw the swing curves + +//to draw the swing curves for three pole switching with reclosure +subplot(2,1,1) +x_1_0=[41.8,0]';t0=0; T=0:0.001:0.65;T=T'; +tc=0.075;tr=0.325; +sol1=ode(x_1_0,t0,T,mac_3_pole); +plot(T,sol1(1,:)'); +set(gca(),"grid",[1 1]); +title('Swing Curve for three pole switching at '+string(tc)+' s'+' and reclosure at '+string(tr)+' s','fontsize',3); +xset("font size",3) +xstring(0.2,300,'MACHINE UNSTABLE'); +xlabel('Time (in seconds)----->'); +ylabel('Torque Angle (delta,deg)----->'); + +//to draw the swing curves for single pole switching with reclosure +subplot(2,1,2) +x_1_0=[41.8,0]';t0=0; T=0:0.001:2.2;T=T'; +tc=0.075;tr=0.325; +sol2=ode(x_1_0,t0,T,mac_1_pole); +plot(T,sol2(1,:)'); +set(gca(),"grid",[1 1]); +title('Swing Curve for single pole switching at '+string(tc)+' s'+' and reclosure at '+string(tr)+' s','fontsize',3); +xset("font size",3) +xstring(1.2,50,'MACHINE STABLE'); +xlabel('Time (in seconds)----->'); +ylabel('Torque Angle (delta,deg)----->'); + +f=get("current_figure"); +f.figure_position=[0,15]; +f.figure_size=[560,1000]; + diff --git a/Working_Examples/83/CH12/EX12.12/result_12_12.jpeg b/Working_Examples/83/CH12/EX12.12/result_12_12.jpeg Binary files differnew file mode 100755 index 0000000..8614513 --- /dev/null +++ b/Working_Examples/83/CH12/EX12.12/result_12_12.jpeg diff --git a/Working_Examples/83/CH12/EX12.2/example_12_2.sce b/Working_Examples/83/CH12/EX12.2/example_12_2.sce new file mode 100755 index 0000000..198bc31 --- /dev/null +++ b/Working_Examples/83/CH12/EX12.2/example_12_2.sce @@ -0,0 +1,45 @@ +//Chapter 12 +//Example 12.1 +//page 448 +//To calculate steady state power limit +clear;clc; + +Xdg=1*%i; //generator's +Xdm=1*%i; //motor's +Xt=0.1*%i; //transformers +Xl=0.25*%i; //transmission line's +Xc=-1*%i; //static capacitor's +Xi=1*%i; //inductive reactor +Eg=1.2; //generator's internal voltage +Em=1; //motor's internal voltage + +//case(i) steady state power limit without reactor +P1=(abs(Eg)*abs(Em))/(abs(Xdg+Xt+Xl+Xt+Xdm)); +printf('\n\n Steady state power limit without reactor = %0.5f pu',P1); + +//case(ii) steady state power limit with capacitive reactor +//three arms of star connected reactances are +Xa=Xdg+Xt+Xl; //from generator side +Xb=Xdm+Xt; //from load side +Xc=Xc; //from reactor side + +//converting star to delta +//reactance between generator side to load side is +Xab=(Xa*Xb+Xb*Xc+Xc*Xa)/Xc; +//power limit is +P2=(abs(Eg)*abs(Em))/(abs(Xab)); +printf('\n\n Steady state power limit with capacitive reactor = %0.5f pu',P2); + +//case(iii) steady state power limit with inductive reactor +//three arms of star connected reactances are +Xa=Xdg+Xt+Xl; //from generator side +Xb=Xdm+Xt; //from load side +Xc=Xi; //from reactor side + +//converting star to delta +//reactance between generator side to load side is +Xab=(Xa*Xb+Xb*Xc+Xc*Xa)/Xc; +//power limit is +P3=(abs(Eg)*abs(Em))/(abs(Xab)); +printf('\n\n Steady state power limit with inductive reactor = %0.5f pu',P3); + diff --git a/Working_Examples/83/CH12/EX12.2/result_example_12_2.txt b/Working_Examples/83/CH12/EX12.2/result_example_12_2.txt new file mode 100755 index 0000000..20581cd --- /dev/null +++ b/Working_Examples/83/CH12/EX12.2/result_example_12_2.txt @@ -0,0 +1,7 @@ + + + Steady state power limit without reactor = 0.48980 pu + + Steady state power limit with capacitive reactor = 1.24352 pu + + Steady state power limit with inductive reactor = 0.30496 pu diff --git a/Working_Examples/83/CH12/EX12.3/example_12_3.sce b/Working_Examples/83/CH12/EX12.3/example_12_3.sce new file mode 100755 index 0000000..e01d48d --- /dev/null +++ b/Working_Examples/83/CH12/EX12.3/example_12_3.sce @@ -0,0 +1,62 @@ +//Chapter 12 +//Example 12.3 +//page 450 +//To calculate maximum power transferred +clear;clc; + +Vt=1.0; //generator terminal voltage +V=1.0 ; //infinite bus voltage +Pe=1.0 ; //power delivered +Xd=0.25*%i ; //generator's transient reactance +Xl=0.5*%i ; //transmission line's reactance +Xt=0.1*%i; //transformer's reactance + +//to calculate alpha +alpha=asind(Pe*abs(Xt+Xl/2)/(abs(Vt)*abs(V))); +printf('\n\nAlpha=%0.1f deg',alpha); + +//current to infinite bus +I=(Vt*(cosd(alpha)+%i*sind(alpha))-V)/(Xt+Xl/2); +printf('\nCurrent to infinte bus=%d+j%0.3f pu',real(I),imag(I)); + +//votage behind transient reactance +E=Vt+I*(Xd+Xt+Xl/2); +printf('\nVoltage behind transient reactance= E''= %0.3f+j%0.1f pu = %0.3f @%0.1f deg pu\n\n',real(E),imag(E),abs(E),atand(imag(E)/real(E))); + +delta=0:0.001:180; + +//case(a) Maximum power when system is healthy +X12=Xd+Xt+Xl/2; +Pmax=abs(V)*abs(E)/abs(X12); +Pe1=Pmax*sind(delta); +printf('Maximum power that can be transferred under the following condition is') +printf('\n\n(a)System Healthy:'); +printf('\nPmax=%0.2f pu',Pmax); +printf('\nPe=%0.2f sin(delta) pu',Pmax); + +//case(b) One line short in the middle +//converting bus3 to delta40 +Xa=Xd+Xt; //generator side +Xb=Xl; //healthy transmission line side +Xc=Xl/2; //unhealthy line side +X12=(Xa*Xb+Xb*Xc+Xc*Xa)/(Xc); +Pmax=abs(V)*abs(E)/abs(X12); +Pe2=Pmax*sind(delta); +printf('\n\n(b)One line shorted in the middle:'); +printf('\nPmax=%0.4f pu',Pmax); +printf('\nPe=%0.4f sin(delta) pu',Pmax); + +//case(c) One line open +X12=Xd+Xt+Xl; +Pmax=abs(V)*abs(E)/abs(X12); +Pe3=Pmax*sind(delta); +printf('\n\n(c)One line open :'); +printf('\nPmax=%0.4f pu',Pmax); +printf('\nPe=%0.4f sin(delta) pu',Pmax); + +//plotting Power angle curves +plot(delta,Pe1,delta,Pe2,delta,Pe3); +legend(['1.79sin(delta)';'0.694sin(delta)';'1.265sin(delta)']); +title("Power angle curves"); +xlabel("Delta"); +ylabel("Pe");
\ No newline at end of file diff --git a/Working_Examples/83/CH12/EX12.3/result_example_12_3.txt b/Working_Examples/83/CH12/EX12.3/result_example_12_3.txt new file mode 100755 index 0000000..7ba9b55 --- /dev/null +++ b/Working_Examples/83/CH12/EX12.3/result_example_12_3.txt @@ -0,0 +1,20 @@ + + +Alpha=20.5 deg +Current to infinte bus=1+j0.181 pu +Voltage behind transient reactance= E'= 0.892+j0.6 pu = 1.075 @33.9 deg pu + +Maximum power that can be transferred under the following condition is + +(a)System Healthy: +Pmax=1.79 pu +Pe=1.79 sin(delta) pu + +(b)One line shorted in the middle: +Pmax=0.6933 pu +Pe=0.6933 sin(delta) pu + +(c)One line open : +Pmax=1.2643 pu +Pe=1.2643 sin(delta) pu + diff --git a/Working_Examples/83/CH12/EX12.3/result_example_12_3_img.jpeg b/Working_Examples/83/CH12/EX12.3/result_example_12_3_img.jpeg Binary files differnew file mode 100755 index 0000000..22682b4 --- /dev/null +++ b/Working_Examples/83/CH12/EX12.3/result_example_12_3_img.jpeg diff --git a/Working_Examples/83/CH12/EX12.4/example_12_4.sce b/Working_Examples/83/CH12/EX12.4/example_12_4.sce new file mode 100755 index 0000000..bcd57a0 --- /dev/null +++ b/Working_Examples/83/CH12/EX12.4/example_12_4.sce @@ -0,0 +1,20 @@ +//Chapter 12 +//Example 12.4 +//page 453 +//To calculate acceleration and rotor angle +clear;clc; + +delta0=33.9; //initial rotor angle +H=4; //inertia constant +f=50; //frequency +Pm=1; //mechanical power input +t=0.05; //time interval +angular_acceleration=(Pm-0.694*sind(delta0))*180*f/H; +delta_change=0.5*angular_acceleration*t^2; +delta_new=delta0+delta_change; +new_angular_acceleration=(Pm-0.694*sind(delta_new))*180*f/H; + +printf('\n\nInitial rotor angular acceleration = %d elect deg/s^2',angular_acceleration); +printf('\nDelta_change=%0.1f deg',delta_change); +printf('\nNew delta =delta1=%0.1f deg',delta_new); +printf('\nAngular acceleration at the end of 0.05s =%d elect deg/s^2\n\n',new_angular_acceleration); diff --git a/Working_Examples/83/CH12/EX12.4/result_example_12_4.txt b/Working_Examples/83/CH12/EX12.4/result_example_12_4.txt new file mode 100755 index 0000000..e05c3a4 --- /dev/null +++ b/Working_Examples/83/CH12/EX12.4/result_example_12_4.txt @@ -0,0 +1,7 @@ + + +Initial rotor angular acceleration = 1379 elect deg/s^2 +Delta_change=1.7 deg +New delta =delta1=35.6 deg +Angular acceleration at the end of 0.05s =1340 elect deg/s^2 + diff --git a/Working_Examples/83/CH12/EX12.5/example_12_5.sce b/Working_Examples/83/CH12/EX12.5/example_12_5.sce new file mode 100755 index 0000000..ed53369 --- /dev/null +++ b/Working_Examples/83/CH12/EX12.5/example_12_5.sce @@ -0,0 +1,35 @@ +//Chapter 12 +//Example 12.5 +//page 456 +//To calculate frequency of natural oscilations +clear;clc; + +E=1.2; //no load voltage +V=1; //infinite bus voltage +Xg=1.2; // synchronous generator reactance +Xtl=0.6 //transformer anf transmission line reactance +H=4; //inertia constant + +//case(i) 50% loading +delta0=asind(0.5); +synchronizing_coefficien=(abs(E)*abs(V)*cosd(delta0))/(Xg+Xtl); +M=H/(%pi*50); +p=%i*sqrt(synchronizing_coefficien/M); +f=abs(p)/(2*%pi); +printf('\n\ncase(i) For 50%% loading'); +printf('\nDelta_0=%d deg',delta0); +printf('\nsynchronizing_coefficient=%0.3f MW(pu)/elect rad',synchronizing_coefficien); +printf('\nM=%0.4f s^2/elect rad',M); +printf('\nFrequency of oscillations=%0.2f rad/sec = %0.3f Hz\n',abs(p),f); + +//case(i) 80% loading +delta0=asind(0.8); +synchronizing_coefficien=(abs(E)*abs(V)*cosd(delta0))/(Xg+Xtl); +M=H/(%pi*50); +p=%i*sqrt(synchronizing_coefficien/M); +f=abs(p)/(2*%pi); +printf('\n\ncase(ii) For 80%% loading'); +printf('\nDelta_0=%d deg',delta0); +printf('\nSynchronizing_coefficient=%0.3f MW(pu)/elect rad',synchronizing_coefficien); +printf('\nM=%0.4f s^2/elect rad',M); +printf('\nFrequency of oscillations=%0.2f rad/sec = %0.3f Hz\n',abs(p),f);
\ No newline at end of file diff --git a/Working_Examples/83/CH12/EX12.5/result_example_12_5.txt b/Working_Examples/83/CH12/EX12.5/result_example_12_5.txt new file mode 100755 index 0000000..d48c344 --- /dev/null +++ b/Working_Examples/83/CH12/EX12.5/result_example_12_5.txt @@ -0,0 +1,15 @@ + + + +case(i) For 50% loading +Delta_0=30 deg +synchronizing_coefficient=0.577 MW(pu)/elect rad +M=0.0255 s^2/elect rad +Frequency of oscillations=4.76 rad/sec = 0.758 Hz + + +case(ii) For 80% loading +Delta_0=53 deg +Synchronizing_coefficient=0.400 MW(pu)/elect rad +M=0.0255 s^2/elect rad +Frequency of oscillations=3.96 rad/sec = 0.631 Hz diff --git a/Working_Examples/83/CH12/EX12.6/example_12_6.sce b/Working_Examples/83/CH12/EX12.6/example_12_6.sce new file mode 100755 index 0000000..1507d88 --- /dev/null +++ b/Working_Examples/83/CH12/EX12.6/example_12_6.sce @@ -0,0 +1,23 @@ +//Chapter 12 +//Example 12.6 +//page 457 +//To find steady state power limit +clear;clc; + +V=1.0; //infinite bus volatge +Vt=1.2; //terminal volatge +Xd=0.5*%i; //synchronous generator reactance +X=%i; //series reactance +//by solving the expressions given in the textbook +theta=acosd(0.5/1.8); +printf('\n\ntheta=%0.3f deg',theta); +Vt=Vt*(cosd(theta)+%i*sind(theta)); +printf('\nVt=%0.3f+j%0.3f pu',real(Vt),imag(Vt)); +I=(Vt-V)/X; +printf('\nI=%0.3f+j%0.3f pu',real(I),imag(I)); +E=Vt+Xd*I; +printf('\nE=%0.3f @ %d deg pu',abs(E),atand(imag(E)/real(E))); +Pmax=(abs(E)*abs(V))/abs(X+Xd); +printf('\n\nSteady state power limit is given by:\tPmax=%0.3f pu',Pmax); +E=1.2;Pmax=(abs(E)*abs(V))/abs(X+Xd); +printf('\n\nIf the generator emf is held fixed at a value 1.2pu,steady state power limit would be :\t Pmax=%0.2f pu\n\n',Pmax);
\ No newline at end of file diff --git a/Working_Examples/83/CH12/EX12.6/result_example_12_6.txt b/Working_Examples/83/CH12/EX12.6/result_example_12_6.txt new file mode 100755 index 0000000..b7933b1 --- /dev/null +++ b/Working_Examples/83/CH12/EX12.6/result_example_12_6.txt @@ -0,0 +1,10 @@ + +theta=73.872 deg +Vt=0.333+j1.153 pu +I=1.153+j0.667 pu +E=1.729 @ -90 deg pu + +Steady state power limit is given by: Pmax=1.153 pu + +If the generator emf is held fixed at a value 1.2pu,steady state power limit would be : Pmax=0.80 pu + diff --git a/Working_Examples/83/CH12/EX12.7/example_12_7.sce b/Working_Examples/83/CH12/EX12.7/example_12_7.sce new file mode 100755 index 0000000..5e2663f --- /dev/null +++ b/Working_Examples/83/CH12/EX12.7/example_12_7.sce @@ -0,0 +1,45 @@ +//Chapter 12 +//Example 12.7 +//page 475 +//To calculate critcal clearing angle +clear;clc; + +Xd=0.25; //direct axis transient reactance of the generator +Xl1=0.5; Xl2=0.4; //reactances of transmission line +E=1.2; //voltage behind transient reactance +Xinf=0.05; //reactnce before infinite bus +V=1; //infinite bus voltage +Pm=1; //mechanical input to the generator +delta=0:1:180; + +//Normal operation (prefault) +X1=Xd+(Xl1*Xl2/(Xl1+Xl2))+Xinf; //equivalent reactance between sending ened and receiving end +//Power angle equation before the fault is +Pe1=(E*V/X1)*sind(delta); +//prefault operating power =1.0pu +delta0=asin(1/max(Pe1)); +printf('Normal Operation (prefault):\n'); +printf('X1=%0.3f PU\n',X1); +printf('Pe1=%0.1fsin(delta)\n\n',max(Pe1)); + +//during fault there will be no power transfer +Pe2=0; +printf('During Fault:\n'); +printf('Pe2=%d\n\n',Pe2); + +//Post fault operation(fault cleared by opening the faulted line) +X3=Xd+Xl1+Xinf; +Pe3=(E*V/X3)*sind(delta); +delta_max=%pi-asin(Pm/max(Pe3)); +//from A1 and A2, we solve A1=A2 +deff('[y]=fx(delta_cr)',"y=1.5*cos(delta_cr)+delta_cr-1.293-Pm*(delta_cr-delta0)"); +delta_cr=fsolve(0.45,fx); +printf('Post fault operation(fault cleared by opening the faulted line):\n'); +printf('X3=%0.1fPU\n',X3); +printf('Pe3=%0.1fsin(delta)\n',max(Pe3)); +printf('Delta_cr=%0.4f rad =%0.2f deg',delta_cr,delta_cr*180/%pi); +plot(delta,Pe1,delta,Pe3,delta,Pm*ones(1,length(delta))); +legend('Pe1=2.3sin(delta)','Pe3=1.5sin(delta)','Pm=1'); +title('Power angle Diagram for example 12.7'); +xlabel('delta (in degrees)----->'); +ylabel('Electrical output (Pe)----->');
\ No newline at end of file diff --git a/Working_Examples/83/CH12/EX12.7/result_example_12_7.txt b/Working_Examples/83/CH12/EX12.7/result_example_12_7.txt new file mode 100755 index 0000000..63fb998 --- /dev/null +++ b/Working_Examples/83/CH12/EX12.7/result_example_12_7.txt @@ -0,0 +1,12 @@ + +Normal Operation (prefault): +X1=0.522 PU +Pe1=2.3sin(delta) + +During Fault: +Pe2=0 + +Post fault operation(fault cleared by opening the faulted line): +X3=0.8PU +Pe3=1.5sin(delta) +Delta_cr=0.9742 rad =55.82 deg diff --git a/Working_Examples/83/CH12/EX12.7/result_example_12_7_img.jpeg b/Working_Examples/83/CH12/EX12.7/result_example_12_7_img.jpeg Binary files differnew file mode 100755 index 0000000..42d4b8e --- /dev/null +++ b/Working_Examples/83/CH12/EX12.7/result_example_12_7_img.jpeg diff --git a/Working_Examples/83/CH12/EX12.8/example_12_8.sce b/Working_Examples/83/CH12/EX12.8/example_12_8.sce new file mode 100755 index 0000000..68b4863 --- /dev/null +++ b/Working_Examples/83/CH12/EX12.8/example_12_8.sce @@ -0,0 +1,50 @@ +//Chapter 12 +//Example 12.8 +//page 477 +//To calculate critcal clearing angle +clear;clc; + +Xd=0.25; //direct axis transient reactance of the generator +Xl1=0.28; Xl2_1=0.14;Xl2_2=0.14; //reactances of transmission line +E=1.2; //voltage behind transient reactance +Xinf=0.17; //reactnce before infinite bus +V=1; //infinite bus voltage +Pm=1; //mechanical input to the generator +Xtr=0.15; //transformer reactance +delta=0:1:180; + +//prefault operation +X1=Xd+Xinf+(Xtr+Xl1+Xtr)/2; //transfer reactance between generator and infinte bus +Pe1=E*V*sind(delta)/X1; +delta0=asin(1/max(Pe1)); +printf('Normal Operation (prefault):\n'); +printf('X1=%0.3f PU\n',X1); +printf('Pe1=%0.2fsin(delta)\n',max(Pe1)); +printf('delta0=%0.3fPU\n\n',delta0); +//during fault there will be no power transfer +//using star delta transformation given in the textbook +X2=2.424; +Pe2=E*V*sind(delta)/X2; +printf('During Fault:\n'); +printf('X2=%0.3f PU\n',X2); +printf('Pe2=%0.3fsin(delta)\n\n',max(Pe2)); + +//Post fault operation(faulty line switched off) +X3=Xd+Xinf+(Xtr+Xl1+Xtr); +Pe3=E*V*sind(delta)/X3; +delta_max=%pi-asin(Pm/max(Pe3)); +//from A1 and A2, we solve A1=A2 +deff('[y]=fx(delta_cr)',"y=-delta0+max(Pe2)*cos(delta_cr)-0.399-0.661-max(Pe3)*cos(delta_cr)+delta_max"); +delta_cr=fsolve(0.45,fx); +printf('Post fault operation(faulty line switched off):\n'); +printf('X3=%0.1fPU\n',X3); +printf('Pe3=%0.1fsin(delta)\n',max(Pe3)); +printf('Delta_cr=%0.4f rad =%0.2f deg',delta_cr,delta_cr*180/%pi); +plot(delta,Pe1,delta,Pe2,delta,Pe3,delta,Pm); +legend('Pe1=1.69sin(delta)','Pe2=0.495sin(delta)','Pe3=1.2sin(delta)','Pm=1'); +title('Power angle Diagram for example 12.8'); +xlabel('delta (in degrees)----->'); +ylabel('Electrical output (Pe)----->'); +f=get("current_figure") +f.figure_position=[0,15] +f.figure_size=[750,750] diff --git a/Working_Examples/83/CH12/EX12.8/result_example_12_8.jpeg b/Working_Examples/83/CH12/EX12.8/result_example_12_8.jpeg Binary files differnew file mode 100755 index 0000000..424f5aa --- /dev/null +++ b/Working_Examples/83/CH12/EX12.8/result_example_12_8.jpeg diff --git a/Working_Examples/83/CH12/EX12.8/result_example_12_8.txt b/Working_Examples/83/CH12/EX12.8/result_example_12_8.txt new file mode 100755 index 0000000..47c5db1 --- /dev/null +++ b/Working_Examples/83/CH12/EX12.8/result_example_12_8.txt @@ -0,0 +1,16 @@ + + +Normal Operation (prefault): +X1=0.710 PU +Pe1=1.69sin(delta) +delta0=0.633PU + +During Fault: +X2=2.424 PU +Pe2=0.495sin(delta) + +Post fault operation(faulty line switched off): +X3=1.0PU +Pe3=1.2sin(delta) +Delta_cr=0.8536 rad =48.91 deg + diff --git a/Working_Examples/83/CH12/EX12.9/example_12_9.sce b/Working_Examples/83/CH12/EX12.9/example_12_9.sce new file mode 100755 index 0000000..8fe1976 --- /dev/null +++ b/Working_Examples/83/CH12/EX12.9/example_12_9.sce @@ -0,0 +1,19 @@ +//Chapter 12 +//Example 12.9 +//page 479 +//To calculate critcal clearing angle +clear;clc; +Pmax1=2; // prefault(2 lines) +Pmax2=0.5; //deuring fault +Pmax3=1.5; //post fault(1 line) +Pm=1; //initial loading + +delta0=asin(Pm/Pmax1); +delta_max=%pi-asin(Pm/Pmax3); + +//to find critical angle,using eq.12.67 +delta_cr=acos((Pm*(delta_max-delta0)-Pmax2*cos(delta0)+Pmax3*cos(delta_max))/(Pmax3-Pmax2)); +printf('Pmax1=%0.1f PU\t Pmax2=%0.2f PU\t Pmax3=%0.2f PU\n\n',Pmax1,Pmax2,Pmax3); +printf('Delta0=%0.3f rad\n\n',delta0); +printf('Delta_max=%0.3f rad\n\n',delta_max); +printf('Delta_cr=%0.3f rad =%0.2f deg\n\n',delta_cr,delta_cr*180/%pi); diff --git a/Working_Examples/83/CH12/EX12.9/result_example_12_9.txt b/Working_Examples/83/CH12/EX12.9/result_example_12_9.txt new file mode 100755 index 0000000..bad40c5 --- /dev/null +++ b/Working_Examples/83/CH12/EX12.9/result_example_12_9.txt @@ -0,0 +1,11 @@ + + +Pmax1=2.0 PU Pmax2=0.50 PU Pmax3=1.50 PU + +Delta0=0.524 rad + +Delta_max=2.412 rad + +Delta_cr=1.227 rad =70.29 deg + + diff --git a/Working_Examples/83/CH13/EX13.1/example_13_1.sce b/Working_Examples/83/CH13/EX13.1/example_13_1.sce new file mode 100755 index 0000000..0e6257c --- /dev/null +++ b/Working_Examples/83/CH13/EX13.1/example_13_1.sce @@ -0,0 +1,180 @@ +//Chapter 13 +//Example 13.1 +//page 522 +//To find the generation shift factors and the line outage distribution factors +clear;clc; + +//this problem can be thought to be solved by using gauss-siedel method using Zbus(X matrix given in table 13.1),but then in this method we need total line charging admittances to ground at each bus.Hence we cant solve this problem only using the given table 13.1,And we can use gauss-siedel method using Ybus by taking the values of impedances and line charging admittances of the system which is taken from the textbook "[1]Computer Methods in Power System Analysis,Stagg and El-Abiad,Page No 284" +//----------------------------------------------------------------------------------------------------------------------- + +// Function to form the Ybus for primitve admittance values and line charging admittance values +function Ybus=formYbus(y_l,y_lc) + Ybus=[y_l(1)+y_l(2)+y_lc(1)+y_lc(2) -y_l(1) -y_l(2) 0 0; + -y_l(1) y_l(1)+y_l(3)+y_l(4)+y_l(5)+y_lc(1)+y_lc(3)+y_lc(4)+y_lc(5) -y_l(3) -y_l(4) -y_l(5); + -y_l(2) -y_l(3) y_l(2)+y_l(3)+y_l(6)+y_lc(2)+y_lc(3)+y_lc(6) -y_l(6) 0; + 0 -y_l(4) -y_l(6) y_l(6)+y_l(4)+y_l(7)+y_lc(6)+y_lc(4)+y_lc(7) -y_l(7); + 0 -y_l(5) 0 -y_l(7) y_l(5)+y_l(7)+y_lc(5)+y_lc(7)]; +endfunction + +//Function to incorporate load flow analysis for a given system +function P_line=load_flow(E,Pg,Qg,Pl,Ql,y_l,y_lc) + + //to retrieve Ybus for the given network parameters + Y=formYbus(y_l,y_lc); + + //to form primitive admittance matrix and primitive line charging admittances that required later in the program + yl=[0 y_l(1) y_l(2) 0 0; + y_l(1) 0 y_l(3) y_l(4) y_l(5); + y_l(2) y_l(3) 0 y_l(6) 0; + 0 y_l(4) y_l(6) 0 y_l(7); + 0 y_l(5) 0 y_l(7) 0]; + yc=[0 y_lc(1) y_lc(2) 0 0; + y_lc(1) 0 y_lc(3) y_lc(4) y_lc(5); + y_lc(2) y_lc(3) 0 y_lc(6) 0; + 0 y_lc(4) y_lc(6) 0 y_lc(7); + 0 y_lc(5) 0 y_lc(7) 0]; + + // to optimize the evaluation, constants like KLs and YLs are evaluated only once outside the loop + KL2=((Pg(2)-Pl(2))-(Qg(2)-Ql(2)))/Y(2,2); + KL3=((Pg(3)-Pl(3))-(Qg(3)-Ql(3)))/Y(3,3); + KL4=((Pg(4)-Pl(4))-(Qg(4)-Ql(4)))/Y(4,4); + KL5=((Pg(5)-Pl(5))-(Qg(5)-Ql(5)))/Y(5,5); + + YL21=Y(2,1)/Y(2,2); YL23=Y(2,3)/Y(2,2); YL24=Y(2,4)/Y(2,2); YL25=Y(2,5)/Y(2,2); + YL31=Y(3,1)/Y(3,3); YL32=Y(3,2)/Y(3,3); YL34=Y(3,4)/Y(3,3); + YL42=Y(4,2)/Y(4,4); YL43=Y(4,3)/Y(4,4); YL45=Y(4,5)/Y(4,4); + YL52=Y(5,2)/Y(5,5); YL54=Y(5,4)/Y(5,5); + + //to calculate bus voltages (Refer[1] stagg,pg 285) + n=100; + for i=1:n + E(1)=E(1); + E(2)=(KL2/E(2)')-YL21*E(1)-YL23*E(3)-YL24*E(4)-YL25*E(5); + E(3)=(KL3/E(3)')-YL31*E(1)-YL32*E(2)-YL34*E(4); + E(4)=(KL4/E(4)')-YL42*E(2)-YL43*E(3)-YL45*E(5); + E(5)=(KL5/E(5)')-YL52*E(2)-YL54*E(4); + end + // to calculate line flows(Refer[1] stagg,pg 291) + for i=1:5 + for j=1:5 + S(i,j)=E(i)'*(E(i)-E(j))*yl(i,j)+E(i)'*E(i)*yc(i,j); + end + end + P_line=conj(S); //since P_line=P-jQ=conj(S) + +endfunction +///////////////////////////////////////////////////////////////////////////////////////////////////////////////////////////////////////////////////////////// +//First we will calculate the line flows for the system which operating under normal condition (without any congincy)[taken as Base system for comparision]// +///////////////////////////////////////////////////////////////////////////////////////////////////////////////////////////////////////////////////////////// +//ypq y'pq/2 line no Buscode(p-q) +yl1=1/(0.02+%i*0.06); ylc_1=%i*0.030; //l=1 line 1-2 +yl2=1/(0.08+%i*0.24); ylc_2=%i*0.025; //l=2 line 1-3 +yl3=1/(0.06+%i*0.18); ylc_3=%i*0.020; //l=3 line 2-3 +yl4=1/(0.06+%i*0.18); ylc_4=%i*0.020; //l=4 line 2-4 +yl5=1/(0.04+%i*0.12); ylc_5=%i*0.015; //l=5 line 2-5 +yl6=1/(0.01+%i*0.03); ylc_6=%i*0.010; //l=6 line 3-4 +yl7=1/(0.08+%i*0.24); ylc_7=%i*0.025; //l=7 line 4-5 + +y_l_vector=[yl1 yl2 yl3 yl4 yl5 yl6 yl7]; +y_lc_vector=[ylc_1 ylc_2 ylc_3 ylc_4 ylc_5 ylc_6 ylc_7]; + + +//Assumed voltage Generation load Buscode +// MW MVAR MW MVAR +E1=1.06+%i*0; Pg1=0; Qg1=%i*0; Pl1=0; Ql1=%i*0; //1 +E2=1+%i*0; Pg2=0.4; Qg2=%i*0.3; Pl2=0.2; Ql2=%i*0.1; //2 +E3=1+%i*0; Pg3=0; Qg3=%i*0; Pl3=0.45; Ql3=%i*0.15; //3 +E4=1+%i*0; Pg4=0; Qg4=%i*0; Pl4=0.40; Ql4=%i*0.05; //4 +E5=1+%i*0; Pg5=0; Qg5=%i*0; Pl5=0.60; Ql5=%i*0.10; //5 + +E=[E1 E2 E3 E4 E5]; Pg=[Pg1 Pg2 Pg3 Pg4 Pg5]; Qg=[Qg1 Qg2 Qg3 Qg4 Qg5]; +Pl=[Pl1 Pl2 Pl3 Pl4 Pl5]; Ql=[Ql1 Ql2 Ql3 Ql4 Ql5]; + +P_base=load_flow(E,Pg,Qg,Pl,Ql,y_l_vector,y_lc_vector); +P_base=P_base*100; //converting back to MW and MVARs + + + + +//////////////////////////////////////////////////////////////////////////////////////////////////////////// +//To find generation shift factor let us remove the generator at each of PV buses and calculate line flows// +//////////////////////////////////////////////////////////////////////////////////////////////////////////// + +//(i)when generator at slack bus trips + Pg1_old=Pg1; //required for the calculation of change in MWs + Pg1=0;Qg1=0; //generation remains same + Pg=[Pg1 Pg2 Pg3 Pg4 Pg5]; Qg=[Qg1 Qg2 Qg3 Qg4 Qg5]; //updating the changed values + + //conducting load flow studies + P_G_1=load_flow(E,Pg,Qg,Pl,Ql,y_l_vector,y_lc_vector); + P_G_1=P_G_1*100; //converting back to MW and MVARs + alpha1=(real(P_G_1)-real(P_base))/((Pg1_old-Pg1+0.001)*100); //0.001 is added to eliminate divide by zero error + alpha1=tril(alpha1); //only lower triangular matrix is required + l1=[alpha1(2,1) alpha1(3,1) alpha1(3,2) alpha1(4,2) alpha1(5,2) alpha1(4,3) alpha1(5,4)]; +//(ii)When generator at Bus2 trips + Pg2_old=Pg2; //required for the calculation of change in MWs + Pg2=0;Qg2=0; Pg1=0;Qg1=0; + Pg=[Pg1 Pg2 Pg3 Pg4 Pg5]; Qg=[Qg1 Qg2 Qg3 Qg4 Qg5]; //updating the changed values + + //conducting load flow studies + P_G_2=load_flow(E,Pg,Qg,Pl,Ql,y_l_vector,y_lc_vector); + P_G_2=P_G_2*100; //converting back to MW and MVARs + alpha2=(real(P_G_2)-real(P_base))/((Pg2_old-Pg2)*100); + alpha2=tril(alpha2); //only lower triangular matrix is required + l2=[alpha2(2,1) alpha2(3,1) alpha2(3,2) alpha2(4,2) alpha2(5,2) alpha2(4,3) alpha2(5,4)]; +//To print the results of generator shift factors + +printf('Generator Shift Factor for Five-bus System\n'); +printf('--------------------------------------------------------\n'); +printf('Lines\t\t\t Bus 1 \t\t\tBus 2\n'); +printf('--------------------------------------------------------\n'); +for i=1:7 + printf('l = %d\t\t\t %d\t\t\t%0.4f\n',i,l1(i),l2(i)); +end +printf('--------------------------------------------------------\n'); +///////////////////////////////////////////////////////////////////////////////////////////////// +//To find Line Outage Distribution Factors let us remove each line and calculate the line flows// +///////////////////////////////////////////////////////////////////////////////////////////////// + +//changing the network back to normal system +Pg2=0.4; Qg2=%i*0.3; + +//copying the original values of the network parameters +y_l_vector_normal=y_l_vector; y_lc_vector_normal=y_lc_vector; + Pg=[Pg1 Pg2 Pg3 Pg4 Pg5]; Qg=[Qg1 Qg2 Qg3 Qg4 Qg5]; //updating the changed values +//when jth line trips the load flow analysis is done as follows +for j=1:7 + y_l_vector(j)=0;y_lc_vector(j)=0; + P_L=load_flow(E,Pg,Qg,Pl,Ql,y_l_vector,y_lc_vector); //load flow anlysis + P_L=P_L*100; + select j, + case 1 then fi0=P_base(2,1), + case 2 then fi0=P_base(3,1), + case 3 then fi0=P_base(3,2), + case 4 then fi0=P_base(4,2), + case 5 then fi0=P_base(5,2), + case 6 then fi0=P_base(4,3), + case 7 then fi0=P_base(5,4), + end + d0=(real(P_L)-real(P_base))/real(fi0); + d(:,j)=[d0(2,1); d0(3,1); d0(3,2); d0(4,2); d0(5,2); d0(4,3); d0(5,4)]; + y_l_vector=y_l_vector_normal; y_lc_vector=y_lc_vector_normal; //changing the system back to normal +end + +//when a line trips power flow in that line is zero,this is not accounted in load flow. So accounting this by making all diagonal elemnts of d=0 +for i=1:7 + d(i,i)=0; +end + +//To print the results of line outage distribution factors +printf('\n\n\n\nLine Outage Distribution Factor for Five-bus System\n'); +printf('------------------------------------------------------------------------------------------------------------------------\n'); +printf('Lines \t\tj=1\t\tj=2\t\tj=3\t\tj=4\t\tj=5\t\tj=6\t\tj=7\n'); +printf('------------------------------------------------------------------------------------------------------------------------\n'); +for l=1:7 + printf('l = %d\t\t%0.4f\t\t%0.4f\t\t%0.4f\t\t%0.4f\t\t%0.4f\t\t%0.4f\t\t%0.4f\n',l,d(l,1),d(l,2),d(l,3),d(l,4),d(l,5),d(l,6),d(l,7)); +end +printf('------------------------------------------------------------------------------------------------------------------------\n\n\n'); + + + diff --git a/Working_Examples/83/CH13/EX13.1/result_example_13_1.txt b/Working_Examples/83/CH13/EX13.1/result_example_13_1.txt new file mode 100755 index 0000000..ce2c510 --- /dev/null +++ b/Working_Examples/83/CH13/EX13.1/result_example_13_1.txt @@ -0,0 +1,32 @@ + +Generator Shift Factor for Five-bus System +-------------------------------------------------------- +Lines Bus 1 Bus 2 +-------------------------------------------------------- +l = 1 0 -0.8374 +l = 2 0 -0.1599 +l = 3 0 0.0716 +l = 4 0 0.0577 +l = 5 0 0.0299 +l = 6 0 -0.0880 +l = 7 0 -0.0299 +-------------------------------------------------------- + + + + +Line Outage Distribution Factor for Five-bus System +------------------------------------------------------------------------------------------------------------------------ +Lines j=1 j=2 j=3 j=4 j=5 j=6 j=7 +------------------------------------------------------------------------------------------------------------------------ +l = 1 0.0000 1.0433 -0.3136 -0.2487 -0.1432 0.3953 0.2237 +l = 2 0.9882 0.0000 0.3257 0.2665 0.2353 -0.3701 -0.2017 +l = 3 -0.4514 0.4521 0.0000 0.4490 0.3698 -0.6318 -0.3558 +l = 4 -0.3585 0.3628 0.4451 0.0000 0.4662 0.6659 -0.4493 +l = 5 -0.1758 0.1836 0.2268 0.2875 0.0000 0.3326 1.0000 +l = 6 0.5383 -0.5472 -0.6731 0.7115 0.6007 0.0000 -0.5556 +l = 7 0.1756 -0.1836 -0.2268 -0.2875 1.0000 -0.3326 0.0000 +------------------------------------------------------------------------------------------------------------------------ + + + diff --git a/Working_Examples/83/CH14/EX14.1/example_14_1.sce b/Working_Examples/83/CH14/EX14.1/example_14_1.sce new file mode 100755 index 0000000..e392b99 --- /dev/null +++ b/Working_Examples/83/CH14/EX14.1/example_14_1.sce @@ -0,0 +1,13 @@ +//Chapter 14 +//Example 14.1 +//page 533 +//To estimate the values of the random variables x1 and x2 +clear;clc; + +H=[1 0;0 1;1 1]; //given matrix +k=inv(H'*H)*H'; // from eq 14.9 +y=['y1';'y2';'y3']; +k=string(k); +x=[k(1,1)+y(1,1)+k(1,2)+y(2,1)+"+"+k(1,3)+y(3,1) ;k(2,1)+y(1,1)+"+"+k(2,2)+y(2,1)+"+"+k(2,3)+y(3,1)]; +printf('Estimate of x =\n'); +disp(x);
\ No newline at end of file diff --git a/Working_Examples/83/CH14/EX14.1/result_example_14_1.txt b/Working_Examples/83/CH14/EX14.1/result_example_14_1.txt new file mode 100755 index 0000000..8e301aa --- /dev/null +++ b/Working_Examples/83/CH14/EX14.1/result_example_14_1.txt @@ -0,0 +1,7 @@ + +Estimate of x = + +!0.6666667y1-0.3333333y2+0.3333333y3 ! +! ! +!-0.3333333y1+0.6666667y2+0.3333333y3 ! + diff --git a/Working_Examples/83/CH14/EX14.2/example_14_2.sce b/Working_Examples/83/CH14/EX14.2/example_14_2.sce new file mode 100755 index 0000000..6d7b95d --- /dev/null +++ b/Working_Examples/83/CH14/EX14.2/example_14_2.sce @@ -0,0 +1,30 @@ +//Chapter 14 +//Example 14.2 +//page 534 +//To estimate the values of the random variables x1 and x2 using WLSE +clear;clc; + +w=diag([0.1;1;0.1]); //assumed matrix +H=[1 0;0 1;1 1]; //given matrix +k=inv(H'*w*H)*H'*w; // from eq 14.12b +y=['y1';'y2';'y3']; +Px=k*k'; +k=string(k); +x=[k(1,1)+y(1,1)+k(1,2)+y(2,1)+"+"+k(1,3)+y(3,1) ;k(2,1)+y(1,1)+"+"+k(2,2)+y(2,1)+"+"+k(2,3)+y(3,1)]; +printf('The weighted least square s estimate of the vector x =\n'); +disp(x); +printf('\n\nThe matrix k is in this case found to be \n'); +disp(k); +//covariance of measurement is assumed is assumed to be unit matrix +printf('\n\nThe covariance of the estimation error is obtained as Px=\n'); +disp(Px); + +printf('\n\n\n Now choosing W=1\n'); +w=diag([1;1;1]); //assumed matrix +H=[1 0;0 1;1 1]; //given matrix +k=inv(H'*w*H)*H'*w; // from eq 14.12b +Px=k*k'; +printf('\n\nThe matrix k is in this case found to be \n'); +disp(k); +printf('\n\nThe covariance of the estimation error is obtained as Px=\n'); +disp(Px);
\ No newline at end of file diff --git a/Working_Examples/83/CH14/EX14.2/result_example_14_2.txt b/Working_Examples/83/CH14/EX14.2/result_example_14_2.txt new file mode 100755 index 0000000..71f30e6 --- /dev/null +++ b/Working_Examples/83/CH14/EX14.2/result_example_14_2.txt @@ -0,0 +1,36 @@ + +The weighted least square s estimate of the vector x = + +!0.5238095y1-0.4761905y2+0.4761905y3 ! +! ! +!-0.0476190y1+0.9523810y2+0.0476190y3 ! + + +The matrix k is in this case found to be + +!0.5238095 -0.4761905 0.4761905 ! +! ! +!-0.0476190 0.9523810 0.0476190 ! + + +The covariance of the estimation error is obtained as Px= + + 0.7278912 - 0.4557823 + - 0.4557823 0.9115646 + + + + Now choosing W=1 + + +The matrix k is in this case found to be + + 0.6666667 - 0.3333333 0.3333333 + - 0.3333333 0.6666667 0.3333333 + + +The covariance of the estimation error is obtained as Px= + + 0.6666667 - 0.3333333 + - 0.3333333 0.6666667 + diff --git a/Working_Examples/83/CH14/EX14.3/example_14_3.sce b/Working_Examples/83/CH14/EX14.3/example_14_3.sce new file mode 100755 index 0000000..7b53d0a --- /dev/null +++ b/Working_Examples/83/CH14/EX14.3/example_14_3.sce @@ -0,0 +1,16 @@ +//Chapter 14 +//Example 14.3 +//page 538 +//To estimate the values of the random variables x1 and x2 using WLSE +clear;clc; +i=0; x=1;y=8.5 +printf('---------------------------------------\n'); +printf('iteration\t\tx(l)\n'); +printf('---------------------------------------\n'); +printf('\t%d\t\t%0.3f\n',i,x); +for i=1:1:10 + k=(1/3)*x^-2 //expression for the value of k has been printed wrongly in the textbook + x=x+(k)*(y-x^3); + printf('\t%d\t\t%0.3f\n',i,x); + +end diff --git a/Working_Examples/83/CH14/EX14.3/result_example_14_3.txt b/Working_Examples/83/CH14/EX14.3/result_example_14_3.txt new file mode 100755 index 0000000..2a65a97 --- /dev/null +++ b/Working_Examples/83/CH14/EX14.3/result_example_14_3.txt @@ -0,0 +1,16 @@ + +--------------------------------------- +iteration x(l) +--------------------------------------- + 0 1.000 + 1 3.500 + 2 2.565 + 3 2.141 + 4 2.045 + 5 2.041 + 6 2.041 + 7 2.041 + 8 2.041 + 9 2.041 + 10 2.041 + diff --git a/Working_Examples/83/CH17/EX17.1/example_17_1.sce b/Working_Examples/83/CH17/EX17.1/example_17_1.sce new file mode 100755 index 0000000..1c42e46 --- /dev/null +++ b/Working_Examples/83/CH17/EX17.1/example_17_1.sce @@ -0,0 +1,11 @@ +//Chapter 17 +//Example 17.1 +//page 602 +//To find reactive power sensitivity at the bus +clear;clc; +Q_nom=1; //given +Ksh=0.8; V=1.0; //assumed +Qnet=(V^2-Ksh*V^2)*Q_nom; +//senstivity=dQnet/dV +s=2*V-2*V*Ksh; +printf('Reactive power Sensitivity at the bus is = %0.2f pu',s); diff --git a/Working_Examples/83/CH17/EX17.1/result_example_17_1.txt b/Working_Examples/83/CH17/EX17.1/result_example_17_1.txt new file mode 100755 index 0000000..908ff1e --- /dev/null +++ b/Working_Examples/83/CH17/EX17.1/result_example_17_1.txt @@ -0,0 +1,3 @@ + + +Reactive power Sensitivity at the bus is = 0.40 pu diff --git a/Working_Examples/83/CH17/EX17.2/example_17_2.sce b/Working_Examples/83/CH17/EX17.2/example_17_2.sce new file mode 100755 index 0000000..c216cae --- /dev/null +++ b/Working_Examples/83/CH17/EX17.2/example_17_2.sce @@ -0,0 +1,10 @@ +//Chapter 17 +//Example 17.2 +//page 602 +//To find capacity of static VAR compensator +clear;clc; + +delta_V=5/100; //allowable voltage fluctuation +S_sc=5000; //system short circuit capacity in MVA +delta_Q=delta_V*S_sc; //size of the compensator +printf('The capacity of the static VAR compensator is +%d MVAR',delta_Q);
\ No newline at end of file diff --git a/Working_Examples/83/CH17/EX17.2/result_example_17_2.txt b/Working_Examples/83/CH17/EX17.2/result_example_17_2.txt new file mode 100755 index 0000000..57f0937 --- /dev/null +++ b/Working_Examples/83/CH17/EX17.2/result_example_17_2.txt @@ -0,0 +1,4 @@ + + +The capacity of the static VAR compensator is +250 MVAR + diff --git a/Working_Examples/83/CH2/EX2.1/example_2_1.sce b/Working_Examples/83/CH2/EX2.1/example_2_1.sce new file mode 100755 index 0000000..a05dcb8 --- /dev/null +++ b/Working_Examples/83/CH2/EX2.1/example_2_1.sce @@ -0,0 +1,16 @@ +//Chapter 2 +//Example 2.1 +//page 56 +//To find GMD of the conductor +//From the given the text book,leaving out the factor of "r",we have the seven possible distances +clear;clc; +D1=0.7788*2*2*(2*sqrt(3))*4*(2*sqrt(3))*2; +//since there are 7 identical conductors,the above products remains same dor all D's +D2=D1; +D3=D1; +D4=D1; +D5=D1; +D6=D1; +D7=D1; +Ds=(D1*D2*D3*D4*D5*D6*D7)^(1/(7*7)); +printf("\n GMD of the conductor is %0.4fr",Ds); diff --git a/Working_Examples/83/CH2/EX2.1/result_example_2_1.txt b/Working_Examples/83/CH2/EX2.1/result_example_2_1.txt new file mode 100755 index 0000000..0c9d80c --- /dev/null +++ b/Working_Examples/83/CH2/EX2.1/result_example_2_1.txt @@ -0,0 +1,3 @@ + + + GMD of the conductor is 2.2578r diff --git a/Working_Examples/83/CH2/EX2.2/example_2_2.sce b/Working_Examples/83/CH2/EX2.2/example_2_2.sce new file mode 100755 index 0000000..c8680e6 --- /dev/null +++ b/Working_Examples/83/CH2/EX2.2/example_2_2.sce @@ -0,0 +1,35 @@ +//Chapter 2 +//Example 2.2 +//page 57 +//To find reactance of the conductor +clear;clc; +f=50; //frequency +D=5.04; //diameter of the entire ACSR +d=1.68; //diameter of each conductor +Dsteel=D-2*d; //diameter of steel strand +//As shown in fig +D12=d; +D13=(sqrt(3)*d); +D14=2*d; +D15=D13; +D16=D12; +//neglecting the central sttel conductor,we have the 6 possibilities +D1=(0.7788*d)*D12*D13*D14*D15*D16; +//we have total of 6 conductors,hence +D2=D1; +D3=D1; +D4=D1; +D5=D1; +D6=D1; +Ds=(D1*D2*D3*D4*D5*D6)^(1/(6*6));//GMR; +//since the spacing between lines is 1m=100cm +l=100; +L=0.461*log10(l/Ds); //Inductance of each conductor +Ll=2*L; // loop inductance +Xl=2*%pi*f*Ll*10^(-3);//reactance of the line +printf("\n\nInductance of each conductor=%0.4f mH/km\n\n",L); +printf("Loop Inductance=%0.4f mH/km\n\n",Ll); +printf("Loop Reactance=%f ohms/km\n\n",Xl); + + + diff --git a/Working_Examples/83/CH2/EX2.2/result_example_2_2.txt b/Working_Examples/83/CH2/EX2.2/result_example_2_2.txt new file mode 100755 index 0000000..68706e8 --- /dev/null +++ b/Working_Examples/83/CH2/EX2.2/result_example_2_2.txt @@ -0,0 +1,9 @@ + + + +Inductance of each conductor=0.7667 mH/km + +Loop Inductance=1.5334 mH/km + +Loop Reactance=0.481723 ohms/km + diff --git a/Working_Examples/83/CH2/EX2.3/example_2_3.sce b/Working_Examples/83/CH2/EX2.3/example_2_3.sce new file mode 100755 index 0000000..d3f3e39 --- /dev/null +++ b/Working_Examples/83/CH2/EX2.3/example_2_3.sce @@ -0,0 +1,48 @@ +//Chapter 2 +//Example 2.3 +//page 58 +//To find inductance of each side of the line and that of the complete line +clear;clc; +//to find mutual GMD +D14=sqrt(8*8+2*2); +D15=sqrt(8*8+6*6); +D24=sqrt(8*8+2*2); +D25=sqrt(8*8+2*2); +D34=sqrt(8*8+6*6); +D35=sqrt(8*8+2*2); +//sixth root of six mutual distances +Dm=(D14*D15*D24*D25*D34*D35)^(1/6);//mutual GMD between lines + +//to find GMR of Side A conductors +D11=0.7788*2.5*10^(-3); +D22=D11; +D33=D11; +D12=4; +D21=D12; +D13=8; +D31=8; +D23=4; +D32=D23; +//ninth root nine distances in Side A +Da=(D11*D12*D13*D21*D22*D23*D31*D32*D33)^(1/9); + +//to find GMR of Side A conductors +D44=0.7788*5*10^(-3); +D45=4; +D54=D45; +D55=D44; +//fourth root of four distances in Side B +Db=(D44*D45*D54*D55)^(1/4); + +La=0.461*log10(Dm/Da);//inductance line A +Lb=0.461*log10(Dm/Db);//inductance line B + +L=La+Lb; //loop inductance + +printf("\n\nMutual GMD between lines = %0.4f m\n\n",Dm); +printf("GMR of Side A conductors = %0.4f m\n\n",Da); +printf("GMR of Side B conductors = %0.4f m\n\n",Db); +printf("Inductance of line A = %0.4f mH/km\n\n",La); +printf("Inductance of line B = %0.4f mH/km\n\n",Lb); +printf("Loop Inductance of the lines = %0.4f mH/km\n\n",L); + diff --git a/Working_Examples/83/CH2/EX2.3/result_example_2_3.txt b/Working_Examples/83/CH2/EX2.3/result_example_2_3.txt new file mode 100755 index 0000000..bec7c7d --- /dev/null +++ b/Working_Examples/83/CH2/EX2.3/result_example_2_3.txt @@ -0,0 +1,12 @@ + +Mutual GMD between lines = 8.7937 m + +GMR of Side A conductors = 0.3670 m + +GMR of Side B conductors = 0.1248 m + +Inductance of line A = 0.6359 mH/km + +Inductance of line B = 0.8519 mH/km + +Loop Inductance of the lines = 1.4878 mH/km diff --git a/Working_Examples/83/CH2/EX2.5/example_2_5.sce b/Working_Examples/83/CH2/EX2.5/example_2_5.sce new file mode 100755 index 0000000..dc380bd --- /dev/null +++ b/Working_Examples/83/CH2/EX2.5/example_2_5.sce @@ -0,0 +1,34 @@ +//Chapter 2 +//Example 2.5 +//page 63 +//To find flux linkages with neutral and voltage induced in neutral +//To find voltage drop in each of three-phase wires + +clear;clc; +Ia=-30+%i*50; +Ib=-25+%i*55; +Ic=-(Ia+Ib); + +//(a) to find flux linkages with neutral and voltage induce in it +Dan=4.5; +Dbn=3; //from figure +Dcn=1.5; +Phi_n=2*10^(-7)*(Ia*log(1/Dan)+Ib*log(1/Dbn)+Ic*log(1/Dcn)); +Vn=%i*2*%pi*50*Phi_n*15000; //voltage induced for 15km long TL +Vn=abs(Vn) ; +printf("\nFlux linkages of the neutral wire = %f Wb-T/m\n\n",Phi_n); +printf("Voltage induced in the neutral = %d\n\n",Vn); + +//(b) to find voltage drop in each phase +Phi_a=2*10^(-7)*(Ia*log(1/(0.7788*0.005))+Ib*log(1/1.5)+Ic*log(1/3)); +Phi_b=2*10^(-7)*(Ib*log(1/(0.7788*0.005))+Ia*log(1/1.5)+Ic*log(1/1.5)); +Phi_c=2*10^(-7)*(Ic*log(1/(0.7788*0.005))+Ib*log(1/1.5)+Ia*log(1/3)); + +delta_Va=%i*2*%pi*50*Phi_a*15000; //like we did for neutral voltage +delta_Vb=%i*2*%pi*50*Phi_b*15000; +delta_Vc=%i*2*%pi*50*Phi_c*15000; + +printf("The Voltage drop of phase a(in volts) =");disp(delta_Va); +printf("\n\nThe Voltage drop of phase b(in volts) =");disp(delta_Vb); +printf("\n\nThe Voltage drop of phase c(in volts) =");disp(delta_Vc); + diff --git a/Working_Examples/83/CH2/EX2.5/result_example_2_5.txt b/Working_Examples/83/CH2/EX2.5/result_example_2_5.txt new file mode 100755 index 0000000..1b29086 --- /dev/null +++ b/Working_Examples/83/CH2/EX2.5/result_example_2_5.txt @@ -0,0 +1,15 @@ + +Flux linkages of the neutral wire = 0.000010 Wb-T/m + +Voltage induced in the neutral = 99 + +The Voltage drop of phase a(in volts) = + - 349.1594 - 204.26943i + + +The Voltage drop of phase b(in volts) = + - 308.62198 - 140.28272i + + +The Voltage drop of phase c(in volts) = + 621.85121 + 328.22026i diff --git a/Working_Examples/83/CH2/EX2.6/example_2_6.sce b/Working_Examples/83/CH2/EX2.6/example_2_6.sce new file mode 100755 index 0000000..8ec5b50 --- /dev/null +++ b/Working_Examples/83/CH2/EX2.6/example_2_6.sce @@ -0,0 +1,13 @@ +//Chapter 2 +//Example 2.6 +//page 65 +//To find mutual inductance between power line and telephone line and voltage induced in telephone line + +clear;clc; +D1=sqrt(1.1*1.1+2*2); //from figure 2.14 +D2=sqrt(1.9*1.9+2*2); //from figure 2.14 +Mpt=0.921*log10(D2/D1); //mutual inductance +Vt=abs(%i*2*%pi*50*Mpt*10^(-3)*100);//when 100A is flowing in the power lines + +printf("\n\nMutual inductance between power line and telephone line = %f mH/km\n\n",Mpt); +printf("\n\nVoltage induced in the telephone circuit = %.3f V/km\n\n",Vt);
\ No newline at end of file diff --git a/Working_Examples/83/CH2/EX2.6/result_example_2_6.txt b/Working_Examples/83/CH2/EX2.6/result_example_2_6.txt new file mode 100755 index 0000000..cfce102 --- /dev/null +++ b/Working_Examples/83/CH2/EX2.6/result_example_2_6.txt @@ -0,0 +1,8 @@ + + + +Mutual inductance between power line and telephone line = 0.075774 mH/km + + + +Voltage induced in the telephone circuit = 2.381 V/km diff --git a/Working_Examples/83/CH2/EX2.7/example_2_7.sce b/Working_Examples/83/CH2/EX2.7/example_2_7.sce new file mode 100755 index 0000000..7d7a737 --- /dev/null +++ b/Working_Examples/83/CH2/EX2.7/example_2_7.sce @@ -0,0 +1,43 @@ +//Chapter 2 +//Example 2.7 +//page 69 +//To find inductive reactance of for the three phase bundled conductors +clear;clc; +r=0.01725; //radius of each conductor +//from the figure we can declare the distances +d=7; +s=0.4; +//Mutual GMD between bundles of phases a and b +Dab=(d*(d+s)*(d-s)*d)^(1/4); +//Mutual GMD between bundles of phases b and c +Dbc=Dab ; //by symmetry +//Mutual GMD between bundles of phases c and a +Dca=(2*d*(2*d+s)*(2*d-s)*2*d)^(1/4); +//Equivalent GMD is calculated as +Deq=(Dab*Dbc*Dca)^(1/3); +//self GMD is given by +Ds=(0.7788*1.725*10^(-2)*0.4*0.7788*1.725*10^(-2)*0.4)^(1/4); +//Inductive reactance per phase is given by +Xl=2*%pi*50*10^(-3)*0.461*log10(Deq/Ds); //10^(-3) because per km is asked +printf("\n\nMutual GMD between bundles of phases a and b = %0.3fm\n\n",Dab); +printf("Mutual GMD between bundles of phases b and c = %0.3fm\n\n",Dbc); +printf("Mutual GMD between bundles of phases c and a = %0.3fm\n\n",Dca); +printf("Equivalent GMD = %0.3fm\n\n",Deq); +printf("Self GMD of the bundles = %0.3fm\n\n",Ds); +printf("Inductive reactance per phase = %0.3f ohms/km\n\n",Xl); + +//now let us compute reactance when center to centerr distances are used +Deq1=(d*d*2*d)^(1/3); +Xl1=2*%pi*50*0.461*10^(-3)*log10(Deq1/Ds); +printf("\n When radius of conductors are neglected and only distance between conductors are used, we get below results:\n\n"); +printf("Equivalent mean distance is = %f\n\n",Deq1); +printf("Inductive reactance per phase = %0.3f ohms/km\n\n",Xl1); + +//when bundle of conductors are replaced by an equivalent single conductor +cond_dia=sqrt(2)*1.725*10^(-3); //conductor diameter for same cross-sectional area +Xl2=2*%pi*50*0.461*10^(-3)*log10(Deq1/cond_dia); +printf("\nWhen bundle of conductors are replaced by an equivalent single conductor:\n\n"); +printf("Inductive reactance per phase = %0.3f ohms/km\n\n",Xl2) ; +percentage_increase=((Xl2-Xl1)/Xl1)*100; +printf("This is %0.2f higher than corresponding value for a bundled conductor line.",percentage_increase); + diff --git a/Working_Examples/83/CH2/EX2.7/results_example_2_7.txt b/Working_Examples/83/CH2/EX2.7/results_example_2_7.txt new file mode 100755 index 0000000..ab9b323 --- /dev/null +++ b/Working_Examples/83/CH2/EX2.7/results_example_2_7.txt @@ -0,0 +1,28 @@ + + + +Mutual GMD between bundles of phases a and b = 6.994m + +Mutual GMD between bundles of phases b and c = 6.994m + +Mutual GMD between bundles of phases c and a = 13.997m + +Equivalent GMD = 8.814m + +Self GMD of the bundles = 0.073m + +Inductive reactance per phase = 0.301 ohms/km + + + When radius of conductors are neglected and only distance between conductors are used, we get below results: + +Equivalent mean distance is = 8.819447 + +Inductive reactance per phase = 0.301 ohms/km + + +When bundle of conductors are replaced by an equivalent single conductor: + +Inductive reactance per phase = 0.515 ohms/km + +This is 71.04 higher than corresponding value for a bundled conductor line. diff --git a/Working_Examples/83/CH3/EX3.1/example_3_1.sce b/Working_Examples/83/CH3/EX3.1/example_3_1.sce new file mode 100755 index 0000000..fc0512a --- /dev/null +++ b/Working_Examples/83/CH3/EX3.1/example_3_1.sce @@ -0,0 +1,22 @@ +//Chapter 3 +//Example 3.1 +//page 87 +//To calculate the capacitance to neutral of a single phase line +clear;clc; +r=0.328; //radius of the conductors +D=300; //distance between the conductors +h=750; //height of the conductors + +//calculating capacitance neglecting the presence of ground +//using Eq (3.6) +Cn=(0.0242/(log10(D/r))); +printf("\nCapacitance to neutral /km of the given single phase line neglecting presence of the earth (using Eq 3.6) is = %0.5f uF/km\n\n",Cn); + +//using Eq (3.7) +Cn=(0.0242)/log10((D/(2*r))+((D^2)/(4*r^2)-1)^0.5); +printf("Capacitance to neutral /km of the given single phase line neglecting presence of the earth (using Eq 3.7) is = %0.5f uF/km\n\n",Cn); + +//Consudering the effect of earth and neglecting the non uniformity of the charge +Cn=(0.0242)/log10(D/(r*(1+((D^2)/(4*h^2)))^0.5)); +printf("Capacitance to neutral /km of the given single phase line considering the presence of the earth and neglecting non uniformity of charge distribution (using Eq 3.26b) is = %0.5f uF/km\n\n",Cn); + diff --git a/Working_Examples/83/CH3/EX3.1/result_example_3_1.txt b/Working_Examples/83/CH3/EX3.1/result_example_3_1.txt new file mode 100755 index 0000000..9afdbd2 --- /dev/null +++ b/Working_Examples/83/CH3/EX3.1/result_example_3_1.txt @@ -0,0 +1,10 @@ + + +Capacitance to neutral /km of the given single phase line neglecting presence of the earth (using Eq 3.6) is = 0.00817 uF/km + +Capacitance to neutral /km of the given single phase line neglecting presence of the earth (using Eq 3.7) is = 0.00817 uF/km + +Capacitance to neutral /km of the given single phase line considering the presence of the earth and neglecting non uniformity of charge distribution (using Eq 3.26b) is = 0.00820 uF/km + + + diff --git a/Working_Examples/83/CH3/EX3.2/example_3_2.sce b/Working_Examples/83/CH3/EX3.2/example_3_2.sce new file mode 100755 index 0000000..e312350 --- /dev/null +++ b/Working_Examples/83/CH3/EX3.2/example_3_2.sce @@ -0,0 +1,21 @@ +//Chapter 3 +//Example 3.2 +//page 88 +//To claculate the capacitance to neutral and charging current of a three phase transmission line +clear;clc; +d=350; //distance between adjacent lines +r=1.05/2; //radius of the conductor +v=110e3; //line voltage; +f=50; + +Deq=(d*d*2*d)^(1/3); //GMD or equivalent + +Cn=(0.0242/log10(Deq/r)); + +Xn=1/(2*%pi*f*Cn*10^(-6)); // Cn is in uF hence we add 10^6 while printing + +Ic=(v/sqrt(3))/Xn; + +printf("\nCapacitance to neutral is = %f uF/km\n\n",Cn); +printf("Capacitive rectance of the line is = %f ohm/km to neutral\n\n",Xn); +printf("Charging Current = %0.2f A/km\n\n",Ic);
\ No newline at end of file diff --git a/Working_Examples/83/CH3/EX3.2/result_exapmle_3_2.txt b/Working_Examples/83/CH3/EX3.2/result_exapmle_3_2.txt new file mode 100755 index 0000000..36aad3e --- /dev/null +++ b/Working_Examples/83/CH3/EX3.2/result_exapmle_3_2.txt @@ -0,0 +1,9 @@ + + +Capacitance to neutral is = 0.008276 uF/km + +Capacitive rectance of the line is = 384635.679536 ohm/km to neutral + +Charging Current = 0.17 A/km + + diff --git a/Working_Examples/83/CH3/EX3.3/example_3_3.sce b/Working_Examples/83/CH3/EX3.3/example_3_3.sce new file mode 100755 index 0000000..07e3791 --- /dev/null +++ b/Working_Examples/83/CH3/EX3.3/example_3_3.sce @@ -0,0 +1,31 @@ +//Chapter 3 +//Example 3.3 +//page 88 +//To claculate the capacitance to neutral and charging current of a double circuit three phase transmission line +clear;clc; + +//After deriving the equation for Cn from the textbook and starting calculation from Eq 3.36 onwards + +r=0.865*10^(-2); frequency=50; v=110e3; +h=6; d=8; j=8; //Referring to fig given in the textbook + +i=((j/2)^2+((d-h)/2)^2)^(1/2); +f=(j^2+h^2)^(1/2); +g=(7^2+4^2)^(1/2); + + +Cn=4*%pi*8.85*10^(-12)/(log((((i^2)*(g^2)*j*h)/((r^3)*(f^2*d)))^(1/3))); + +Cn=Cn*1000 ; //Cn is in per m.to convert it to per km,we multiply by 1000 +WCn=2*%pi*frequency*Cn; + +Icp=(v/sqrt(3))*WCn; + +Icc=Icp/2; + +printf("\nTotal capacitance to neutral for two conductors in parallel = %0.6f uF/km \n\n",Cn*10^(6)); +printf("Charging current/phase = %0.3f A/km \n\n",Icp); +printf("Charging current/conductor = %0.4f A/km \n\n",Icc); + + + diff --git a/Working_Examples/83/CH3/EX3.3/result_example_3_3.txt b/Working_Examples/83/CH3/EX3.3/result_example_3_3.txt new file mode 100755 index 0000000..6602fe5 --- /dev/null +++ b/Working_Examples/83/CH3/EX3.3/result_example_3_3.txt @@ -0,0 +1,8 @@ + + +Total capacitance to neutral for two conductors in parallel = 0.018088 uF/km + +Charging current/phase = 0.361 A/km + +Charging current/conductor = 0.1804 A/km + diff --git a/Working_Examples/83/CH4/EX4.1/example_4_1.sce b/Working_Examples/83/CH4/EX4.1/example_4_1.sce new file mode 100755 index 0000000..bc919b4 --- /dev/null +++ b/Working_Examples/83/CH4/EX4.1/example_4_1.sce @@ -0,0 +1,43 @@ +//Chapter 4 +//Example 4.1 +//page 103 +// to draw the per unit reactance diagram +clear;clc; +mvab=30; kvb=33; //MVA base and KVA base are selected + +gen1_mva=30; gen1_kv=10.5; gen1_x=1.6; //Generator No.1 details +gen2_mva=15; gen2_kv=6.6; gen2_x=1.2; //Generator No.2 details +gen3_mva=25; gen3_kv=6.6; gen3_x=0.56; //Generator No.3 details + +t1_mva=15; t1_hv=33; t1_lv=11; t1_x=15.2; //Transformer T1 details +t2_mva=15; t2_hv=33; t2_lv=6.2; t2_x=16; //Transformer T1 details + +tl_x=20.5; //Transmission line recatance + +//Loads are neglected as said in the problem + +tl_pu=(tl_x*mvab)/kvb^2; +t1_pu=(t1_x*mvab)/kvb^2; +t2_pu=(t2_x*mvab)/kvb^2; +gen1_kv_base=t1_lv; +gen1_pu=(gen1_x*mvab)/gen1_kv_base^2; +gen2_kv_base=t2_lv; +gen2_pu=(gen2_x*mvab)/gen2_kv_base^2; +gen3_pu=(gen3_x*mvab)/gen2_kv_base^2; + +//diplaying the results on console + +printf('Per unit impedance of the components of the given power system are as follows :\n\n'); + +printf('Transmission line: %0.3f \n\n',tl_pu); + +printf('Transformer T1: %0.3f \n\n',t1_pu); + +printf('Transformer T2: %0.3f \n\n',t2_pu); + +printf('Generator 1: %0.3f \n\n',gen1_pu); + +printf('Generator 2: %0.3f \n\n',gen2_pu); + +printf('Generator 3: %0.3f \n\n',gen3_pu); + diff --git a/Working_Examples/83/CH4/EX4.1/result_example_4_1.txt b/Working_Examples/83/CH4/EX4.1/result_example_4_1.txt new file mode 100755 index 0000000..975ce31 --- /dev/null +++ b/Working_Examples/83/CH4/EX4.1/result_example_4_1.txt @@ -0,0 +1,18 @@ + +Per unit impedance of the components of the given power system are as follows : + +Transmission line: 0.565 + +Transformer T1: 0.419 + +Transformer T2: 0.441 + +Generator 1: 0.397 + +Generator 2: 0.937 + +Generator 3: 0.437 + + + Execution done. + diff --git a/Working_Examples/83/CH4/EX4.2/example_4_2.sce b/Working_Examples/83/CH4/EX4.2/example_4_2.sce new file mode 100755 index 0000000..31701df --- /dev/null +++ b/Working_Examples/83/CH4/EX4.2/example_4_2.sce @@ -0,0 +1,43 @@ +//Chapter 4 +//Example 4.2 +//page 104 +// To draw the per unit reactance diagram when pu values are specified based on euipment rating +clear;clc; +mvab=30; kvb=11; //MVA base and KVA base are selected in the circuit of generator 1 + +gen1_mva=30; gen1_kv=10.5; gen1_x=0.435; //Generator No.1 details +gen2_mva=15; gen2_kv=6.6; gen2_x=0.413; //Generator No.2 details +gen3_mva=25; gen3_kv=6.6; gen3_x=0.3214; //Generator No.3 details + +t1_mva=15; t1_hv=33; t1_lv=11; t1_x=0.209; //Transformer T1 details +t2_mva=15; t2_hv=33; t2_lv=6.2; t2_x=0.220; //Transformer T1 details + +tl_x=20.5; //Transmission line recatance + +//Loads are neglected as said in the problem + +tl_pu=(tl_x*mvab)/t1_hv^2; +t1_pu=t1_x*(mvab/t1_mva); +t2_pu=t2_x*(mvab/t2_mva); +gen1_pu=gen1_x*(mvab/gen1_mva)*(gen1_kv/kvb)^2; +gen2_kv_base=t2_lv; +gen2_pu=gen2_x*(mvab/gen2_mva)*(gen2_kv/gen2_kv_base)^2; +gen3_kv_base=t2_lv; +gen3_pu=gen3_x*(mvab/gen3_mva)*(gen3_kv/gen3_kv_base)^2; + +//diplaying the results on console + +printf('Per unit impedance of the components of the given power system are as follows :\n\n'); + +printf('Transmission line: %0.3f \n\n',tl_pu); + +printf('Transformer T1: %0.3f \n\n',t1_pu); + +printf('Transformer T2: %0.3f \n\n',t2_pu); + +printf('Generator 1: %0.3f \n\n',gen1_pu); + +printf('Generator 2: %0.3f \n\n',gen2_pu); + +printf('Generator 3: %0.3f \n\n',gen3_pu); + diff --git a/Working_Examples/83/CH4/EX4.2/result_example_4_2.txt b/Working_Examples/83/CH4/EX4.2/result_example_4_2.txt new file mode 100755 index 0000000..30c5370 --- /dev/null +++ b/Working_Examples/83/CH4/EX4.2/result_example_4_2.txt @@ -0,0 +1,32 @@ + +Per unit impedance of the components of the given power system are as follows : + +Transmission line: 0.565 + +Transformer T1: 0.418 + +Transformer T2: 0.440 + +Generator 1: 0.396 + +Generator 2: 0.936 + +Generator 3: 0.437 + +Per unit impedance of the components of the given power system are as follows : + +Transmission line: 0.565 + +Transformer T1: 0.419 + +Transformer T2: 0.441 + +Generator 1: 0.397 + +Generator 2: 0.937 + +Generator 3: 0.437 + + + Execution done. + diff --git a/Working_Examples/83/CH4/EX4.3/example_4_3.sce b/Working_Examples/83/CH4/EX4.3/example_4_3.sce new file mode 100755 index 0000000..9c72377 --- /dev/null +++ b/Working_Examples/83/CH4/EX4.3/example_4_3.sce @@ -0,0 +1,24 @@ +//Taking Base value MVA and KVA +clear;clc; +mvab=645; //Base MVA in 3-phase +kvb=24; //Base KV,line-to-line + +vl=24/kvb; //Load voltage +xs=1.2; +xs=(xs*mvab)/kvb^2; // xs converted to its pu + +//since the generator is operating at full load & 0.9pf +pf_angle=acos(0.9); +Ia=1*(cos(pf_angle)-%i*sin(pf_angle)); //load current +//to find excitation emf +ef=vl+%i*xs*Ia; +delta=atand(imag(ef)/real(ef));//positive for leading +ef=abs(ef)*kvb; //pu to actual unit conversion + if(delta>0) then lead_lag='leading'; + else lead_lag='lagging'; + end +printf('Excitation emf= %0.2f kV at an angle %0.3f (%s) \n\n',ef,delta,lead_lag); +//to find reactive power drawn by load +Q=vl*abs(imag(Ia)); +Q=Q*mvab; //pu to actual unit conversion +printf('Reactive power drawn by laod= %d MVAR',Q); diff --git a/Working_Examples/83/CH4/EX4.3/result_example_4_3.txt b/Working_Examples/83/CH4/EX4.3/result_example_4_3.txt new file mode 100755 index 0000000..17267b8 --- /dev/null +++ b/Working_Examples/83/CH4/EX4.3/result_example_4_3.txt @@ -0,0 +1,5 @@ + +Excitation emf= 47.86 kV at an angle 37.331 (leading) + +Reactive power drawn by laod= 281 MVAR + diff --git a/Working_Examples/83/CH4/EX4.4/example_4_4.sce b/Working_Examples/83/CH4/EX4.4/example_4_4.sce new file mode 100755 index 0000000..064e191 --- /dev/null +++ b/Working_Examples/83/CH4/EX4.4/example_4_4.sce @@ -0,0 +1,50 @@ +//Taking Base value MVA and KVA +clear;clc; +global mvab +mvab=645; //Base MVA in 3-phase +kvb=24; //Base KV,line-to-line +vt=24/kvb; //Terminal voltage +xs=1.2; +xs=(xs*mvab)/kvb^2; // xs converted to its pu + +//since the generator is operating at full load & 0.9pf +pf_angle=acos(0.9); +Ia=1*(cos(pf_angle)-%i*sin(pf_angle)); //load current +//to find excitation emf +ef=vt+%i*xs*Ia; +ef=abs(ef); +P=1*0.9; //at Full load + +/////// writing an inline function ///////////////// +function [pf,lead_lag,Q]=excitation_change(P,ef,vt,xs) +sin_delta=(P*xs)/(ef*vt); +delta=asind(sin_delta); +ef0=ef*(cosd(delta)+(%i*sind(delta))); +Ia=(ef0-vt)/(%i*xs); +Ia_mag=abs(Ia);Ia_ang=atand(imag(Ia)/real(Ia)); // Magnitude and angle of Ia +pf=cosd(abs(Ia_ang)); +if(Ia_ang>0) then lead_lag='leading'; + elseif (Ia_ang==0) then lead_lag='unity pf' + else lead_lag='lagging'; + end +Q=vt*Ia_mag*sind(abs(Ia_ang)); +Q=abs(Q)*mvab; +endfunction +//////////////////////////////////////////////////////// + + +// First Case when Ef is increased by 20% at same real load now + ef1=ef*1.2; +[pf1,lead_lag1,Q1]=excitation_change(P,ef1,vt,xs); +disp("Case (i): When Ef is increased by 20% "); +printf('\n\tPower factor pf= %0.2f %s \n',pf1,lead_lag1); +printf('\tReactive power drawn by the load = %0.1f MVAR \n',Q1); + +//Second Case when Ef is decreased by 20% at same real load now + ef2=ef*0.8; +[pf2,lead_lag2,Q2]=excitation_change(P,ef2,vt,xs); +disp("Case (ii): When Ef is decreased by 20% "); +printf('\n\tPower factor pf= %0.2f %s \n',pf2,lead_lag2); +printf('\tReactive power drawn by the load = %0.1f MVAR \n',Q2); + +disp('The answers given here are exact values.Textbook answers has an approximation of upto 2 decimal places on Xs,Ia,pf. '); diff --git a/Working_Examples/83/CH4/EX4.4/result_example_4_4.txt b/Working_Examples/83/CH4/EX4.4/result_example_4_4.txt new file mode 100755 index 0000000..7e86950 --- /dev/null +++ b/Working_Examples/83/CH4/EX4.4/result_example_4_4.txt @@ -0,0 +1,14 @@ + + + Case (i): When Ef is increased by 20% + + Power factor pf= 0.75 lagging + Reactive power drawn by the load = 511.2 MVAR + + Case (ii): When Ef is decreased by 20% + + Power factor pf= 1.00 lagging + Reactive power drawn by the load = 19.5 MVAR + + The answers given here are exact values.Textbook answers has an approximat + ion of upto 2 decimal places on Xs,Ia,pf. diff --git a/Working_Examples/83/CH5/EX5.1/example_5_1.sce b/Working_Examples/83/CH5/EX5.1/example_5_1.sce new file mode 100755 index 0000000..d64c735 --- /dev/null +++ b/Working_Examples/83/CH5/EX5.1/example_5_1.sce @@ -0,0 +1,43 @@ +//Chapter 5 +//Example 5.1 +//page 132 +//To find sending-end voltage and voltage regulation +clc;clear; + +load1=5000; //kW +pf=0.707; +Vr=10000; //receiving end voltage +R=0.0195*20; +X=2*%pi*50*0.63*10^-3*20; + +//to find sending end voltage and voltage regulation +I=load1*1000/(Vr*pf); +Vs=Vr+I*(R*pf+X*sin(acos(pf))); +voltage_regulation=(Vs-Vr)*100/Vr; +printf('\n\nReceiving current =I=%d A\n',I); +printf('Sending end voltage =Vs=%d V\n',Vs); +printf('Voltage Regulation=%0.2f %%',voltage_regulation); + +//to find the value of the capacitor to be connected in parallel to the load +voltage_regulation_desi=voltage_regulation/2; +Vs=(voltage_regulation_desi/100)*Vr+Vr; +//by solving the equations (i) and (ii) +pf=0.911; +Ir=549; +Ic=(Ir*(pf-%i*sin(acos(pf))))-(707*(0.707-%i*0.707)); +Xc=(Vr/imag(Ic)); +c=(2*%pi*50*Xc)^-1; +printf('\n\nCapacitance to be connected across the load so as to reduce voltage regulation by half of the above voltage regulation is given by :\n C = %d uF\n',c*10^6); + +//to find efficiency in both the cases +//case(i) +losses=I*I*R*10^-3; +n=(load1/(load1+losses))*100; +printf('\n Efficiency in : \nCase(i) \t n=%0.1f%%',n); +//caase(ii) +losses=Ir*Ir*R*10^-3; +n=(load1/(load1+losses))*100; +printf('\nCase(ii) \t n=%0.1f%%',n); + + + diff --git a/Working_Examples/83/CH5/EX5.1/result_example_5_1.txt b/Working_Examples/83/CH5/EX5.1/result_example_5_1.txt new file mode 100755 index 0000000..99064b3 --- /dev/null +++ b/Working_Examples/83/CH5/EX5.1/result_example_5_1.txt @@ -0,0 +1,11 @@ + +Receiving current =I=707 A +Sending end voltage =Vs=12174 V +Voltage Regulation=21.75 % + +Capacitance to be connected across the load so as to reduce voltage regulation by half of the above voltage regulation is given by : + C = 87 uF + + Efficiency in : +Case(i) n=96.2% +Case(ii) n=97.7% diff --git a/Working_Examples/83/CH5/EX5.10/example_5_10.sce b/Working_Examples/83/CH5/EX5.10/example_5_10.sce new file mode 100755 index 0000000..af6af96 --- /dev/null +++ b/Working_Examples/83/CH5/EX5.10/example_5_10.sce @@ -0,0 +1,39 @@ +//Chapter 5 +//Example 5.10 +//page 170 +//To determine the MVA rating of the shunt reactor +clear;clc; +v=275; +l=400; +R=0.035*l; +X=2*%pi*50*1.1*l*10^-3; +Z=R+%i*X; +Y=2*%pi*50*0.012*10^-6*l*%i; +A=1+(Y*Z/2); +B=Z; +Vs=275; +Vr=275; +r=(Vs*Vr)/abs(B); +Ce=abs(A/B)*Vr^2; +printf('Radius of the receiving-end circle=%0.1f MVA\n\n',r); +printf('Location of the center of receiving-end circle= %0.1f MVA\n\n',Ce); +printf('From the graph, 55 MVA shunt reactor is required\n\n'); +theta=180+82.5; +x=-75:0.01:450; +a=Ce*cosd(theta); //to draw the circle +b=Ce*sind(theta); +y=sqrt(r^2-(x-a)^2)+b; +x1=a:0.001:0; +y1=tand(theta)*x1; +plot(x,y,x1,y1); +title('Circle diagram for example 5.10'); +xlabel('MW'); +ylabel('MVAR'); +plot(a,b,'markersize',150); +xgrid(2) +set(gca(),"grid",[0,0]) +get("current_axes"); +xstring (-75,25,'55 MVAR'); +xstring(-75,-25,'83.5 deg'); +xstring(-20,-300,'487.6 MVA'); +xstring(300,-100,'544.3 MVA');
\ No newline at end of file diff --git a/Working_Examples/83/CH5/EX5.10/result_example_5_10.txt b/Working_Examples/83/CH5/EX5.10/result_example_5_10.txt new file mode 100755 index 0000000..abd9fbc --- /dev/null +++ b/Working_Examples/83/CH5/EX5.10/result_example_5_10.txt @@ -0,0 +1,7 @@ + +Radius of the receiving-end circle=544.3 MVA + +Location of the center of receiving-end circle= 487.6 MVA + +From the graph, 55 MVA shunt reactor is required + diff --git a/Working_Examples/83/CH5/EX5.10/result_fig_example_5_10.jpeg b/Working_Examples/83/CH5/EX5.10/result_fig_example_5_10.jpeg Binary files differnew file mode 100755 index 0000000..522057e --- /dev/null +++ b/Working_Examples/83/CH5/EX5.10/result_fig_example_5_10.jpeg diff --git a/Working_Examples/83/CH5/EX5.11/example_5_11.sce b/Working_Examples/83/CH5/EX5.11/example_5_11.sce new file mode 100755 index 0000000..19bd34f --- /dev/null +++ b/Working_Examples/83/CH5/EX5.11/example_5_11.sce @@ -0,0 +1,19 @@ +//Chapter 5 +//Example 5.11 +//page 172 +//To determine sending-end voltage.maximum power delivered +clear;clc; + +A=0.93*(cosd(1.5)+%i*sind(1.5)); +B=115*(cosd(77)+%i*sind(77)); +Vr=275; +Ce=abs(A/B)*Vr^2; +printf('Centre of the receiving end circle is = %0.1f MVA\n\n',Ce); +CrP=850;Vs=CrP*abs(B)/Vr; +printf('(a) From the diagram,\n\tCrP=%d \n \tSending end voltage|Vs|= %0.1f kV\n\n',CrP,Vs); +Vs=295; //given +r=(Vs*Vr)/abs(B); +Pr_m=556; //from the diagram +printf('(b) Radius of the circle diagram = %0.1f MVA\n\t PR_max=%d MW\n\n',r,Pr_m); +Ps=295; //from the diagram; +printf('(c) Additional MVA to be drawn from the line is = P''S=%d MVAR\n\n',Ps);
\ No newline at end of file diff --git a/Working_Examples/83/CH5/EX5.11/result_example_5_11.txt b/Working_Examples/83/CH5/EX5.11/result_example_5_11.txt new file mode 100755 index 0000000..322c788 --- /dev/null +++ b/Working_Examples/83/CH5/EX5.11/result_example_5_11.txt @@ -0,0 +1,12 @@ + + +Centre of the receiving end circle is = 611.6 MVA + +(a) From the diagram, + CrP=850 + Sending end voltage|Vs|= 355.5 kV + +(b) Radius of the circle diagram = 705.4 MVA + PR_max=556 MW + +(c) Additional MVA to be drawn from the line is = P'S=295 MVAR diff --git a/Working_Examples/83/CH5/EX5.2/example_5_2.sce b/Working_Examples/83/CH5/EX5.2/example_5_2.sce new file mode 100755 index 0000000..925e68d --- /dev/null +++ b/Working_Examples/83/CH5/EX5.2/example_5_2.sce @@ -0,0 +1,28 @@ +//Chapter 5 +//Example 5.2 +//page 134 +//To find voltage at the bus at the power station end +clc;clear; + +base_MVA=5; +base_kV=33; +pf=0.85; +cable_impedance=(8+%i*2.5); +cable_impedance=cable_impedance*base_MVA/(base_kV^2); + +transf_imp_star=(0.06+%i*0.36)/3; //equivalent star impedance of winding of the transformer +Zt=(transf_imp_star*5/(6.6^2))+((0.5+%i*3.75)*5/(33^2)); +total=cable_impedance+2*Zt; + +load_MVA=1; +load_voltage=6/6.6; +load_current=1/load_voltage; + +Vs=load_voltage+load_current*(real(total)*pf+imag(total)*sin(acos(pf))); +Vs=Vs*6.6; +printf('\n\nCable impedance= (%0.3f+j%0.4f) pu\n',real(cable_impedance),imag(cable_impedance)); +printf('\nEquivalent star impedance of 6.6kV winding of the transformer =(%0.2f+j%0.2f) pu\n',real(transf_imp_star),imag(transf_imp_star)); +printf('\nPer unit transformer impedance,Zt=(%0.4f+j%0.3f) pu\n',real(Zt),imag(Zt)); +printf('\nTotal series impedance=(%0.3f+j%0.3f) pu\n',real(total),imag(total)); +printf('\nSending end Voltage =|Vs|=%0.2fkV (line-to-line)',Vs); + diff --git a/Working_Examples/83/CH5/EX5.2/result_example_5_2.txt b/Working_Examples/83/CH5/EX5.2/result_example_5_2.txt new file mode 100755 index 0000000..f9b1d06 --- /dev/null +++ b/Working_Examples/83/CH5/EX5.2/result_example_5_2.txt @@ -0,0 +1,10 @@ + +Cable impedance= (0.037+j0.0115) pu + +Equivalent star impedance of 6.6kV winding of the transformer =(0.02+j0.12) pu + +Per unit transformer impedance,Zt=(0.0046+j0.031) pu + +Total series impedance=(0.046+j0.073) pu + +Sending end Voltage =|Vs|=6.56kV (line-to-line) diff --git a/Working_Examples/83/CH5/EX5.3/example_5_3.sce b/Working_Examples/83/CH5/EX5.3/example_5_3.sce new file mode 100755 index 0000000..195c0b5 --- /dev/null +++ b/Working_Examples/83/CH5/EX5.3/example_5_3.sce @@ -0,0 +1,24 @@ +//Chapter 5 +//Example 5.3 +//page 135 +//problem with mixed end condition +clc;clear; +Vr=3000; //receiving end voltage +pfs=0.8; //sending end power factor +Ps=2000*10^3; //sending end active power +z=0.4+%i*0.4; //series impedance +Ss=Ps/pfs; //sending end VA +Qs=Ss*sqrt(1-pfs^2); //sending end reacive power + +//by substituting all the values to the equation (iii) +deff('[y]=fx(I)',"y=(Vr^2)*(I^2)+2*Vr*(I^2)*(real(z)*((Ps-real(z)*(I^2))/Vr)+imag(z)*((Qs-imag(z)*(I^2))/Vr))+(abs(z))^2*(I^4)-(Ss^2)"); +I=fsolve(100,fx); + +pfR=(Ps-real(z)*(I^2))/(Vr*I); //Cos(phi_r) +Pr=Vr*I*pfR; +Vs=(Ps/(I*pfs)); + +printf('\nLoad Current |I|= %0.2f A',I); +printf('\nLoad Pr=%d W',Pr); +printf('\nReceiving end power factor=%0.2f',pfR); +printf('\nSupply Voltage=%0.2fV',Vs); diff --git a/Working_Examples/83/CH5/EX5.3/result_example_5_3.txt b/Working_Examples/83/CH5/EX5.3/result_example_5_3.txt new file mode 100755 index 0000000..537ce19 --- /dev/null +++ b/Working_Examples/83/CH5/EX5.3/result_example_5_3.txt @@ -0,0 +1,6 @@ + +Load Current |I|= 733.14 A +Load Pr=1785001 W +Receiving end power factor=0.81 +Supply Voltage=3409.99V + diff --git a/Working_Examples/83/CH5/EX5.4/example_5_4.sce b/Working_Examples/83/CH5/EX5.4/example_5_4.sce new file mode 100755 index 0000000..7a4015d --- /dev/null +++ b/Working_Examples/83/CH5/EX5.4/example_5_4.sce @@ -0,0 +1,24 @@ +//Chapter 5 +//Example 5.4 +//page 138 +//to find sending end voltage and voltage regulation of a medium transmission line system +clear;clc; +D=300; +r=0.8; +L=0.461*log10(D/(0.7788*r)); +C=0.0242/(log10(D/r)); +R=0.11*250; +X=2*%pi*50*L*0.001*250; +Z=R+%i*X; +Y=%i*2*%pi*50*C*0.000001*250; +Ir=((25*1000)/(132*sqrt(3)))*(cosd(-36.9)+%i*sind(-36.9)); +Vr=(132/sqrt(3)); +A=(1+(Y*Z/2)); +Vs=A*Vr+Z*Ir*10^(-3); +printf('\n\nVs(per phase)=(%0.2f+%0.2f)kV',real(Vs),imag(Vs)); +Vs=abs(Vs)*sqrt(3); +printf('\n\n|Vs|(line)=%d kV',Vs); +Vr0=Vs/abs(A); +printf('\n\n|Vr0|(line no load)=%0.1fkV',Vr0); +Vol_regu=(Vr0-132)/132; +printf('\n\nVoltage Regulation=%0.1f%%\n\n',Vol_regu*100); diff --git a/Working_Examples/83/CH5/EX5.4/result_example_5_4.txt b/Working_Examples/83/CH5/EX5.4/result_example_5_4.txt new file mode 100755 index 0000000..4a47cad --- /dev/null +++ b/Working_Examples/83/CH5/EX5.4/result_example_5_4.txt @@ -0,0 +1,12 @@ + + +Vs(per phase)=(82.26+7.46)kV + +|Vs|(line)=143 kV + +|Vr0|(line no load)=148.4kV + +Voltage Regulation=12.4% + + + diff --git a/Working_Examples/83/CH5/EX5.5/example_5_5.sce b/Working_Examples/83/CH5/EX5.5/example_5_5.sce new file mode 100755 index 0000000..8c62731 --- /dev/null +++ b/Working_Examples/83/CH5/EX5.5/example_5_5.sce @@ -0,0 +1,29 @@ +//Chapter 5 +//Example 5.5 +//page 147 +//to find maximum permissible length and and frequency +clc;clear; +R=0.125*400; +X=0.4*400; +Y=2.8*(10^-6)*400*%i; +Z=R+X*%i; + +//(i) At no-load +A=1+(Y*Z/2); +C=Y*(1+Y*Z/6); +VR_line=220000/abs(A); +Is=abs(C)*VR_line/sqrt(3); +printf('\n\n |VR|line = %d kV',VR_line/1000); +printf('\n |Is| = %d A',Is); + +//(ii) to find maximum permissible length +//By solving the equations shown in the book,we get +l=sqrt((1-0.936)/(0.56*10^(-6))); +printf('\n\n Maximum permissible length of the line = %d km',l); + +//(iii) to find maximum permissible frequency for the case(i) +//By solving the equations shown in the book,we get +f=sqrt(((1-0.88)*50*50)/(0.5*1.12*10^-3*160)); +printf('\n\n Maximum permissible frequency = %0.1f Hz\n\n',f); + + diff --git a/Working_Examples/83/CH5/EX5.5/result_example_5_5.txt b/Working_Examples/83/CH5/EX5.5/result_example_5_5.txt new file mode 100755 index 0000000..d027f9c --- /dev/null +++ b/Working_Examples/83/CH5/EX5.5/result_example_5_5.txt @@ -0,0 +1,11 @@ + + + + |VR|line = 241 kV + |Is| = 151 A + + Maximum permissible length of the line = 338 km + + Maximum permissible frequency = 57.9 Hz + + diff --git a/Working_Examples/83/CH5/EX5.6/example_5_6.sce b/Working_Examples/83/CH5/EX5.6/example_5_6.sce new file mode 100755 index 0000000..21b98e4 --- /dev/null +++ b/Working_Examples/83/CH5/EX5.6/example_5_6.sce @@ -0,0 +1,35 @@ +//Chapter 5 +//Example 5.6 +//page 149 +//to find incident and reflected voltages +clear;clc; + +R=0.125; +X=0.4; +y=%i*2.8*10^(-6); +z=R+%i*X; + +r=sqrt(y*z); //propogation constant +a=real(r); //attenuation constant +b=imag(r); //phase constant + +//(a) At the receiving-end; +Vr=220000; +Inci_vol=Vr/(sqrt(3)*2); +Refl_vol=Vr/(sqrt(3)*2); +printf('\n\nIncident Vvoltage=%0.2f kV',Inci_vol/1000); +printf('\nReflected Vvoltage=%0.2f kV',Refl_vol/1000); + +//(b) At 200km from the receiving-end +x=200; +Inci_vol=Inci_vol*exp(a*x)*exp(%i*b*x); +Refl_vol=Refl_vol*exp(-a*x)*exp(-%i*b*x); +printf('\n\nIncident voltage=%0.2f @ %0.1f deg kV',abs(Inci_vol)/1000,atand(imag(Inci_vol)/real(Inci_vol))); +printf('\nReflected voltage=%0.2f @ %0.1f deg kV',abs(Refl_vol)/1000,atand(imag(Refl_vol)/real(Refl_vol))); + +//(c) Resultant voltage at 200km from the receiving-end +res=Inci_vol+Refl_vol; +printf('\n\nResultant line-to-line voltage at 200km =%0.2f kV',abs(res)*sqrt(3)/1000); + + + diff --git a/Working_Examples/83/CH5/EX5.6/result_example_5_6.txt b/Working_Examples/83/CH5/EX5.6/result_example_5_6.txt new file mode 100755 index 0000000..cd94d77 --- /dev/null +++ b/Working_Examples/83/CH5/EX5.6/result_example_5_6.txt @@ -0,0 +1,10 @@ + + + +Incident Vvoltage=63.51 kV +Reflected Vvoltage=63.51 kV + +Incident voltage=65.62 @ 12.3 deg kV +Reflected voltage=61.47 @ -12.3 deg kV + +Resultant line-to-line voltage at 200km =215.09 kV diff --git a/Working_Examples/83/CH5/EX5.7/example_5_7.sce b/Working_Examples/83/CH5/EX5.7/example_5_7.sce new file mode 100755 index 0000000..dbd47d2 --- /dev/null +++ b/Working_Examples/83/CH5/EX5.7/example_5_7.sce @@ -0,0 +1,83 @@ +//Chapter 5 +//Example 5.7 +//page 138 +//to tabulate characteristics of a system using different methods +clear;clc; + +Z=40+125*%i; +Y=%i*10^(-3); +Ir=((50*10^6)/(220000*0.8*sqrt(3)))*(cosd(-36.9)+%i*sind(-36.9)); +Vr=220000/sqrt(3); + +//(a) Short line approximation +Vs=Vr+Ir*Z; +Vs_line1=Vs*sqrt(3); +Is1=Ir; +pfs1=cos(atan(imag(Vs)/real(Vs))+acos(0.8)); +Ps1=sqrt(3)*abs(Vs_line1)*abs(Is1)*pfs1; + +//(b) Nominal pi method +A=1+Y*Z/2; +D=A; +B=Z; +C=Y*(1+Y*Z/4); +Vs=A*Vr+B*Ir; +Is2=C*Vr+D*Ir; +Vs_line2=sqrt(3)*Vs; +pfs2=cos(atan(imag(Is2)/real(Is2))-atan(imag(Vs)/real(Vs))); +Ps2=sqrt(3)*abs(Vs_line2)*abs(Is2)*pfs2; + +//(c) Exact transmission line equations +rl=sqrt(Z*Y); //propogation constant +Zc=sqrt(Z/Y); //characteristic impedance +A=cosh(rl); +B=Zc*sinh(rl); +C=sinh(rl)/Zc; +D=cosh(rl); +Vs=A*Vr+B*Ir; +Is3=C*Vr+D*Ir; +Vs_line3=sqrt(3)*Vs; +pfs3=cos(atan(imag(Is3)/real(Is3))-atan(imag(Vs)/real(Vs))); +Ps3=sqrt(3)*abs(Vs_line3)*abs(Is3)*pfs3; + +//(d) Approximation +A=(1+Y*Z/2); +B=Z*(1+Y*Z/6); +C=Y*(1+Y*Z/6); +D=A; +Vs=A*Vr+B*Ir; +Is4=C*Vr+D*Ir; +Vs_line4=sqrt(3)*Vs; +pfs4=cos(atan(imag(Is4)/real(Is4))-atan(imag(Vs)/real(Vs))); +Ps4=sqrt(3)*abs(Vs_line4)*abs(Is4)*pfs4; + +//converting all the values to their standard form before writing it to table + +//voltage to kV +Vs_line1=abs(Vs_line1)/1000; +Vs_line2=abs(Vs_line2)/1000; +Vs_line3=abs(Vs_line3)/1000; +Vs_line4=abs(Vs_line4)/1000; + +//Current to kA +Is1=Is1/1000; +Is2=Is2/1000; +Is3=Is3/1000; +Is4=Is4/1000; + +//power to MW5 +Ps1=Ps1/1000000; +Ps2=Ps2/1000000; +Ps3=Ps3/1000000; +Ps4=Ps4/1000000; + +//preparinf table +printf("\n\n_______________________________________________________________________________________________________________________"); +printf('\n \t\tShort line \t\t Nominal Pi \t\t Exact \t\t Approximation'); +printf("\n_______________________________________________________________________________________________________________________"); +printf('\n|Vs|line\t\t%0.2fkV \t\t %0.2fkV\t\t %0.2fkV \t\t %0.2fkV',Vs_line1,Vs_line2,Vs_line3,Vs_line4); +printf('\nIs \t\t%0.3f@%0.1fdeg kA \t\t%0.2f@%0.1fdeg kA\t\t%0.4f@%0.1fdeg kA\t%0.2f@%0.1fdeg kA',abs(Is1),tand(imag(Is1)/real(Is1)),abs(Is2),tand(imag(Is2)/real(Is2)),abs(Is3),tand(imag(Is3)/real(Is3)),abs(Is4),tand(imag(Is4)/real(Is4))); +printf('\npfs \t\t%0.3f lagging \t\t%0.3f leading \t\t%0.3f leading \t\t%0.3f leading',pfs1,pfs2,pfs3,pfs4); +printf('\nPs \t\t%0.2f MW \t\t%0.2f MW \t\t%0.2f MW \t\t%0.2f MW',Ps1,Ps2,Ps3,Ps4); +printf("\n_______________________________________________________________________________________________________________________\n\n\n"); + diff --git a/Working_Examples/83/CH5/EX5.7/result_example_5_7.txt b/Working_Examples/83/CH5/EX5.7/result_example_5_7.txt new file mode 100755 index 0000000..bb57c69 --- /dev/null +++ b/Working_Examples/83/CH5/EX5.7/result_example_5_7.txt @@ -0,0 +1,14 @@ + + + +_______________________________________________________________________________________________________________________ + Short line Nominal Pi Exact Approximation +_______________________________________________________________________________________________________________________ +|Vs|line 251.34kV 238.08kV 237.40kV 237.28kV +Is 0.164@-0.0deg kA 0.13@0.0deg kA 0.1289@0.0deg kA 0.13@0.0deg kA +pfs 0.746 lagging 0.988 leading 0.987 leading 0.987 leading +Ps 53.23 MW 52.19 MW 52.28 MW 52.24 MW +_______________________________________________________________________________________________________________________ + + + diff --git a/Working_Examples/83/CH5/EX5.8/example_5_8.sce b/Working_Examples/83/CH5/EX5.8/example_5_8.sce new file mode 100755 index 0000000..6479e6a --- /dev/null +++ b/Working_Examples/83/CH5/EX5.8/example_5_8.sce @@ -0,0 +1,56 @@ +//Chapter 5 +//Example 5.8 +//page 162 +//to estimate the torque angle and station powerfactor +clear;clc; +Sd1=15+%i*5; +Sd2=25+%i*15; +//case(a) cable impedance=j0.05pu +r=0; +x=%i*0.05; +PG1=20; +PG2=20; +Ps=5;Pr=5; +V1=1; +V2=1; +d1=asind(Ps*abs(x)/(V1*V2)); //delta1 +V1=V1*(cosd(d1)+%i*sind(d1)); +Qs=((abs(V1)^2)/abs(x))-((abs(V1)*abs(V2))*cosd(d1)/(abs(x))); +Qr=(((abs(V1)*abs(V2))*cosd(d1)/(abs(x)))-(abs(V1)^2)/abs(x)); +Ql=Qs-Qr; +Ss=Ps+%i*Qs; +Sr=Pr+%i*Qr; +Sg1=Sd1+Ss; +Sg2=Sd2-Sr; +pf1=cos(atan(imag(Sg1)/real(Sg1))); +pf2=cos(atan(imag(Sg2)/real(Sg2))); +printf('\n\nCase(a)\nTotal load on station1=%d+j%0.3f pu',real(Sg1),imag(Sg1)); +printf('\nPower factor of station1=%0.3f pu lagging',pf1); +printf('\n\Total load on station2=%d+j%0.3f pu',real(Sg2),imag(Sg2)); +printf('\nPower factor of station2=%0.3f pu lagging',pf2); +//case(b) cable impedance=0.005+j0.05; +r=0.005; +PG1=20; +V1=1;V2=1; +Ps=5; +//from the eq(i) in the textbook,we can calculate d1 +z=r+x; +theta=atand(imag(z)/real(z)); +z=abs(z); +d1=acosd(z*(V1^2*cosd(theta)/z-Ps)/(V1*V2))-theta; +Qs=(V1^2*sind(theta)/z)-(V1*V2*sind(theta+d1)/z); +Qg1=5+Qs; +Pr=(V1*V2*cosd(theta-d1)/z)-(V1^2*cosd(theta)/z); +Pg2=25-Pr; +Qr=(V1*V2*sind(theta-d1)/z)-(V1^2*sind(theta)/z); +Qg2=15-Qr; +Ss=Ps+%i*Qs; +Sr=Pr+%i*Qr; +Sg1=Sd1+Ss; +Sg2=Sd2-Sr; +pf1=cos(atan(imag(Sg1)/real(Sg1))); +pf2=cos(atan(imag(Sg2)/real(Sg2))); +printf('\n\nCase(b)\nTotal load on station1=%d+j%0.3f pu',real(Sg1),imag(Sg1)); +printf('\nPower factor of station1=%0.3f pu lagging',pf1); +printf('\n\Total load on station2=%d+j%0.3f pu',real(Sg2),imag(Sg2)); +printf('\nPower factor of station2=%0.3f pu lagging\n\n',pf2); diff --git a/Working_Examples/83/CH5/EX5.8/result_example_5_8.txt b/Working_Examples/83/CH5/EX5.8/result_example_5_8.txt new file mode 100755 index 0000000..b7f4dee --- /dev/null +++ b/Working_Examples/83/CH5/EX5.8/result_example_5_8.txt @@ -0,0 +1,15 @@ + + +Case(a) +Total load on station1=20+j5.635 pu +Power factor of station1=0.963 pu lagging +Total load on station2=20+j15.635 pu +Power factor of station2=0.788 pu lagging + +Case(b) +Total load on station1=20+j5.132 pu +Power factor of station1=0.969 pu lagging +Total load on station2=20+j16.119 pu +Power factor of station2=0.781 pu lagging + + diff --git a/Working_Examples/83/CH5/EX5.9/example_5_9.sce b/Working_Examples/83/CH5/EX5.9/example_5_9.sce new file mode 100755 index 0000000..7ca7bf2 --- /dev/null +++ b/Working_Examples/83/CH5/EX5.9/example_5_9.sce @@ -0,0 +1,33 @@ +//Chapter 5 +//Example 5.9 +//page 165 +//to determine power,voltage,compensating equipment rating +clear;clc; +A=0.85; +B=200; + +//case(a) +Vs=275000; +Vr=275000; +a=5;b=75; //alpha and beta +Qr=0; +//from equation 5.62 +d=b-asind((B/(Vs*Vr))*(Qr+(A*Vr^2*sind(b-a)/B))); //delta +Pr=(Vs*Vr*cosd(b-d)/B)-(A*Vr^2*cosd(b-a)/B); +printf('\n\ncase(a)\nPower at unity powerfactor that can be received =%0.1f MW',Pr/10^6); + +//case(b) +Pr=150*10^6; +d=b-acosd((B/(Vs*Vr))*(Pr+(A*Vr^2*cosd(b-a)/B))); //delta +Qr=(Vs*Vr*sind(b-d)/B)-(A*Vr^2*sind(b-a)/B); +Qc=-Qr; +printf('\n\ncase(b)\nRating of the compensating equipment = %0.2f MVAR',Qc/10^6); +printf('\ni.e the compensating equipment must feed positive VARs into the line'); + + +//case(c) +Pr=150*10^6; +Vs=275000; +//by solving the two conditions given as (i) and (ii), we get +Vr=244.9*10^3; +printf('\n\ncase(c)\nReceiving end voltage = %0.1f kV',Vr/1000); diff --git a/Working_Examples/83/CH5/EX5.9/result_example_5_9.txt b/Working_Examples/83/CH5/EX5.9/result_example_5_9.txt new file mode 100755 index 0000000..18b9c60 --- /dev/null +++ b/Working_Examples/83/CH5/EX5.9/result_example_5_9.txt @@ -0,0 +1,11 @@ + + +case(a) +Power at unity powerfactor that can be received =117.6 MW + +case(b) +Rating of the compensating equipment = 27.40 MVAR +i.e the compensating equipment must feed positive VARs into the line + +case(c) +Receiving end voltage = 244.9 kV diff --git a/Working_Examples/83/CH6/EX6.1/example_6_1.sce b/Working_Examples/83/CH6/EX6.1/example_6_1.sce new file mode 100755 index 0000000..cb0ae70 --- /dev/null +++ b/Working_Examples/83/CH6/EX6.1/example_6_1.sce @@ -0,0 +1,40 @@ +//Chapter 6 +//Example 6.1 +//page 195 +//To Ybus using singular transformation + +clear;clc; +printf('Let us solve this problem by giving values given in the table 6.1 instead of keeping it in variables'); + +y10=1;y20=1;y30=1;y40=1; +y34=2-%i*6;y23=0.666-%i*2; +y12=2-%i*6;y24=1-%i*3; +y13=1-%i*3; + +Y=[y10 0 0 0 0 0 0 0 0; + 0 y20 0 0 0 0 0 0 0; + 0 0 y30 0 0 0 0 0 0; + 0 0 0 y40 0 0 0 0 0; + 0 0 0 0 y34 0 0 0 0; + 0 0 0 0 0 y23 0 0 0; + 0 0 0 0 0 0 y12 0 0; + 0 0 0 0 0 0 0 y24 0; + 0 0 0 0 0 0 0 0 y13]; +A=[1 0 0 0; + 0 1 0 0; + 0 0 1 0; + 0 0 0 1; + 0 0 1 -1; + 0 -1 1 0; + 1 -1 0 0; + 0 -1 0 1; + -1 0 1 0]; +printf('\n\n Ybus matrix using singular transformation for the system of fig.6.2 is \n Ybus= '); +Y=A'*Y*A; +disp(Y); +// for verification let us calculate as given in the text book +printf('\n\n For verification,calculating Ybus substituting as given in the text book\n Ybus(verifiaction)='); +Yveri=[(y10+y12+y13) -y12 -y13 0;-y12 (y20+y12+y23+y24) -y23 -y24;-y13 -y23 (y30+y13+y23+y34) -y34;0 -y24 -y34 (y40+y24+y34)]; +disp(Yveri); + + diff --git a/Working_Examples/83/CH6/EX6.1/result_example_6_1.txt b/Working_Examples/83/CH6/EX6.1/result_example_6_1.txt new file mode 100755 index 0000000..a96fc56 --- /dev/null +++ b/Working_Examples/83/CH6/EX6.1/result_example_6_1.txt @@ -0,0 +1,20 @@ + +-->exec('/home/samyak/scilab_working_directory/chapter_6/ex_1/example_6_1.sce', -1) +Let us solve this problem by giving values given in the table 6.1 instead of keeping it in variables + + Ybus matrix using singular transformation for the system of fig.6.2 is + Ybus= + 4. - 9.i - 2. + 6.i - 1. + 3.i 0 + - 2. + 6.i 4.666 - 11.i - 0.666 + 2.i - 1. + 3.i + - 1. + 3.i - 0.666 + 2.i 4.666 - 11.i - 2. + 6.i + 0 - 1. + 3.i - 2. + 6.i 4. - 9.i + + + For verification,calculating Ybus substituting as given in the text book + Ybus(verifiaction)= + 4. - 9.i - 2. + 6.i - 1. + 3.i 0 + - 2. + 6.i 4.666 - 11.i - 0.666 + 2.i - 1. + 3.i + - 1. + 3.i - 0.666 + 2.i 4.666 - 11.i - 2. + 6.i + 0 - 1. + 3.i - 2. + 6.i 4. - 9.i + +-->diary(0); diff --git a/Working_Examples/83/CH6/EX6.2/example_6_2.sce b/Working_Examples/83/CH6/EX6.2/example_6_2.sce new file mode 100755 index 0000000..208ebc4 --- /dev/null +++ b/Working_Examples/83/CH6/EX6.2/example_6_2.sce @@ -0,0 +1,33 @@ +//Chapter 6 +//Example 6.2 +//page 195 +//To Ybus of sample system +clear;clc; + +y10=1;y20=1;y30=1;y40=1; +y34=2-%i*6;y23=0.666-%i*2; +y12=2-%i*6;y24=1-%i*3; +y13=1-%i*3; + +//to form Ybus matrix +Y11=y13;Y12=0;Y13=-y13;Y14=0; +Y21=0;Y22=y23+y24;Y23=-y23;Y24=-y24; +Y31=-y13;Y32=-y23;Y33=y13+y23+y34;Y34=-y34; +Y41=0;Y42=-y24;Y43=-y34;Y44=y34+y24; + +//case(i) line shown dotted is not connected +Ybus=[Y11 Y12 Y13 Y14; + Y21 Y22 Y23 Y24; + Y31 Y32 Y33 Y34; + Y41 Y42 Y43 Y44]; +printf('(i)Assuming that the line shown is not connected \n Ybus= ');disp(Ybus); +//case(ii) line shown dotted is connected +Y12=Y12-y12;Y21=Y12; +Y11=Y11+y12; +Y22=Y22+y12; + +Ybus=[Y11 Y12 Y13 Y14; + Y21 Y22 Y23 Y24; + Y31 Y32 Y33 Y34; + Y41 Y42 Y43 Y44]; +printf('\n\n(ii)Assuming that the line shown is connected \n Ybus= ');disp(Ybus);
\ No newline at end of file diff --git a/Working_Examples/83/CH6/EX6.2/result_example_6_2.txt b/Working_Examples/83/CH6/EX6.2/result_example_6_2.txt new file mode 100755 index 0000000..3e4396f --- /dev/null +++ b/Working_Examples/83/CH6/EX6.2/result_example_6_2.txt @@ -0,0 +1,18 @@ + +-->exec('/home/samyak/scilab_working_directory/chapter_6/ex_2/example_6_2.sce', -1) +(i)Assuming that the line shown is not connected + Ybus= + 1. - 3.i 0 - 1. + 3.i 0 + 0 1.666 - 5.i - 0.666 + 2.i - 1. + 3.i + - 1. + 3.i - 0.666 + 2.i 3.666 - 11.i - 2. + 6.i + 0 - 1. + 3.i - 2. + 6.i 3. - 9.i + + +(ii)Assuming that the line shown is connected + Ybus= + 3. - 9.i - 2. + 6.i - 1. + 3.i 0 + - 2. + 6.i 3.666 - 11.i - 0.666 + 2.i - 1. + 3.i + - 1. + 3.i - 0.666 + 2.i 3.666 - 11.i - 2. + 6.i + 0 - 1. + 3.i - 2. + 6.i 3. - 9.i + +-->diary(0); diff --git a/Working_Examples/83/CH6/EX6.3/example_6_3.sce b/Working_Examples/83/CH6/EX6.3/example_6_3.sce new file mode 100755 index 0000000..a0d85a1 --- /dev/null +++ b/Working_Examples/83/CH6/EX6.3/example_6_3.sce @@ -0,0 +1,64 @@ +//Chapter 6 +//Example 6.3 +//page 201 +//To find an approximate load flow solution +clear;clc; + +///////////////////////////////////////////////////////////////////////////////// +//Realdemand Reactive demand Real generation Reactive generation Bus +///////////////////////////////////////////////////////////////////////////////// + Pd1=1; Qd1=0.5; Pg1=0; Qg1=0;//initialization 1 + Pd2=1; Qd2=0.4; Pg2=4; Qg2=0;//initialization 2 + Pd3=2; Qd3=1; Pg3=0; Qg3=0;//initialization 3 + Pd4=2; Qd4=1; Pg4=0; Qg4=0;//initialization 4 + +Pg1=Pd1+Pd2+Pd3+Pd4-Pg2; + +//Ybus matrix from the network +Ybus=[-21.667*%i 5*%i 6.667*%i 10*%i; + 5*%i -21.667*%i 10*%i 6.667*%i; + 6.667*%i 10*%i -16.667*%i 0; + 10*%i 6.667*%i 0 -16.667*%i]; +printf('Ybus matrix of the system is given by \nYbus=');disp(Ybus); +//as given in the text book using approximate load flow equations and simplifying (ii),(iii),(iv) +//delta matrix(x) is of the from A*x=B +A=[-5 21.667 -10 -6.667; + -6.667 -10 16.667 0; + -10 -6.667 0 16.667 + 1 0 0 0]; + +B=[3; -2; -2;0]; + +delta=inv(A)*B; //solving for delta +printf('\nDelta of the system is given by \ndelta(rad)=');disp(delta); + +Q1=-5*cos(delta(2,1))-6.667*cos(delta(3,1))-10*cos(delta(4,1))+21.667; +Q2=-5*cos(delta(2,1))-10*cos(delta(3,1)-delta(2,1))-6.667*cos(delta(4,1)-delta(2,1))+21.667; +Q3=-6.667*cos(delta(3,1))-10*cos(delta(3,1)-delta(2,1))+16.667; +Q4=-10*cos(delta(4,1))-6.667*cos(delta(4,1)-delta(2,1))+16.667; + +Q=[Q1;Q2;Q3;Q4]; +printf('\nInjected reactive power at the buses is given by \nQi(in pu)=');disp(Q); + +Qg1=Q1+Qd1; +Qg2=Q2+Qd2; +Qg3=Q3+Qd3; +Qg4=Q4+Qd4; + +Qg=[Qg1;Qg2;Qg3;Qg4]; +printf('\n Reactive power generation at the four buses are \nQgi(in pu)=');disp(Qg); +Qd=[Qd1;Qd2;Qd3;Qd4]; +Ql=sum(Qg)-sum(Qd); +printf('\nReactive power losses are QL=%0.5f pu',Ql); + +printf('\n\nLine Flows are given as:\n'); +P13=(abs(Ybus(1,3)))*sin(delta(1,1)-delta(3,1));P31=-P13;printf('\nP13=-P31=%0.3f pu',P13); +P12=(abs(Ybus(1,2)))*sin(delta(1,1)-delta(2,1));P21=-P12;printf('\nP12=-P21=%0.3f pu',P12); +P14=(abs(Ybus(1,4)))*sin(delta(1,1)-delta(4,1));P41=-P14;printf('\nP14=-P41=%0.3f pu',P14); + +Q13=abs(Ybus(1,3))-(abs(Ybus(1,3)))*cos(delta(1,1)-delta(3,1));Q31=-Q13;printf('\n\nQ13=-Q31=%0.3f pu',Q13); +Q12=abs(Ybus(1,2))-(abs(Ybus(1,2)))*cos(delta(1,1)-delta(2,1));Q21=-Q12;printf('\nQ12=-Q21=%0.3f pu',Q12); +Q14=abs(Ybus(1,4))-(abs(Ybus(1,4)))*cos(delta(1,1)-delta(4,1));Q41=-Q14;printf('\nQ14=-Q41=%0.3f pu',Q14); + + +
\ No newline at end of file diff --git a/Working_Examples/83/CH6/EX6.3/result_example_6_3.txt b/Working_Examples/83/CH6/EX6.3/result_example_6_3.txt new file mode 100755 index 0000000..ec1cc10 --- /dev/null +++ b/Working_Examples/83/CH6/EX6.3/result_example_6_3.txt @@ -0,0 +1,42 @@ + +-->exec('/home/samyak/scilab_working_directory/chapter_6/ex_3/example_6_3.sce', -1) +Ybus matrix of the system is given by +Ybus= + - 21.667i 5.i 6.667i 10.i + 5.i - 21.667i 10.i 6.667i + 6.667i 10.i - 16.667i 0 + 10.i 6.667i 0 - 16.667i + +Delta of the system is given by +delta(rad)= + 0. + 0.0769217 + - 0.0738455 + - 0.0892280 + +Injected reactive power at the buses is given by +Qi(in pu)= + 0.0727367 + 0.2200358 + 0.1316085 + 0.1315939 + + Reactive power generation at the four buses are +Qgi(in pu)= + 0.5727367 + 0.6200358 + 1.1316085 + 1.1315939 + +Reactive power losses are QL=0.55597 pu + +Line Flows are given as: + +P13=-P31=0.492 pu +P12=-P21=-0.384 pu +P14=-P41=0.891 pu + +Q13=-Q31=0.018 pu +Q12=-Q21=0.015 pu +Q14=-Q41=0.040 pu +-->diary(0); diff --git a/Working_Examples/83/CH6/EX6.4/example_6_4.sce b/Working_Examples/83/CH6/EX6.4/example_6_4.sce new file mode 100755 index 0000000..49b5188 --- /dev/null +++ b/Working_Examples/83/CH6/EX6.4/example_6_4.sce @@ -0,0 +1,31 @@ +//Chapter 6 +//Example 6.4 +//page 209 +//To find bus voltages using GS iterations +clear;clc; + +//Ybus matrix from the network +Ybus=[3-9*%i -2+6*%i -1+3*%i 0; + -2+6*%i 3.666-11*%i -0.666+2*%i -1+3*%i + -1+3*%i -0.666+2*%i 3.666-11*%i -2+6*%i + 0 -1+3*%i -2+6*%i 3-9*%i] + +////////////////////////////////////////////////////// +//Pi Qi Vi Remarks Bus no// +P1=0; Q1=0; V1=1.04; //Slack bus 1 +P2=0.5; Q2=-0.2; V2=1; //PQbus 2 +P3=-1.0; Q3=0.5; V3=1; //PQbus 3 +P4=0.3; Q4=-0.1; V4=1; //PQbus 4 +///////////////////////////////////////////////////// + +n=1; +for i=1:n + V2=(1/Ybus(2,2))*(((P2-%i*Q2)/conj(V2))-Ybus(2,1)*V1-Ybus(2,3)*V3-Ybus(2,4)*V4); + V3=(1/Ybus(3,3))*(((P3-%i*Q3)/conj(V3))-Ybus(3,1)*V1-Ybus(3,2)*V2-Ybus(3,4)*V4); + V4=(1/Ybus(4,4))*(((P4-%i*Q4)/conj(V4))-Ybus(4,1)*V1-Ybus(4,2)*V2-Ybus(4,3)*V3); +end + +printf('\nAt the end of iteration %d the voltages at the buses are:\n\nV1=',n);disp(V1);printf('pu'); +printf('\n\n\nV2=');disp(V2);printf('pu'); +printf('\n\n\nV3=');disp(V3);printf('pu'); +printf('\n\n\nV4=');disp(V4);printf('pu'); diff --git a/Working_Examples/83/CH6/EX6.4/result_example_6_4.txt b/Working_Examples/83/CH6/EX6.4/result_example_6_4.txt new file mode 100755 index 0000000..4198a53 --- /dev/null +++ b/Working_Examples/83/CH6/EX6.4/result_example_6_4.txt @@ -0,0 +1,21 @@ + +At the end of iteration 1 the voltages at the buses are: + +V1= + 1.04 +pu + + +V2= + 1.0190887 + 0.0463655i +pu + + +V3= + 1.0280236 - 0.0870264i +pu + + +V4= + 1.0250453 - 0.0092291i +pu diff --git a/Working_Examples/83/CH6/EX6.5/example_6_5.sce b/Working_Examples/83/CH6/EX6.5/example_6_5.sce new file mode 100755 index 0000000..8e7eb91 --- /dev/null +++ b/Working_Examples/83/CH6/EX6.5/example_6_5.sce @@ -0,0 +1,86 @@ +//Chapter 6 +//Example 6.5 +//page 210 +//To find bus voltages and Reactive power injected using GS iterations +clear;clc; + +//Ybus matrix from the network +Ybus=[3-9*%i -2+6*%i -1+3*%i 0; + -2+6*%i 3.666-11*%i -0.666+2*%i -1+3*%i + -1+3*%i -0.666+2*%i 3.666-11*%i -2+6*%i + 0 -1+3*%i -2+6*%i 3-9*%i] + +//Case(i) + +////////////////////////////////////////////////////// +//Pi Qi Vi Remarks Bus no// +P1=0; Q1=0; V1=1.04; //Slack bus 1 +P2=0.5; Q2=0.2; V2=1.04; //PVbus 2 +P3=-1.0; Q3=0.5; V3=1; //PQbus 3 +P4=0.3; Q4=-0.1; V4=1; //PQbus 4 +///////////////////////////////////////////////////// +printf('\nCase(i) When 0.2<Q2<1 pu and running for 1 iteration,we get \n\n'); +Q2min=0.2;Q2max=1; +n=1; + +for i=1:n + if Q2<Q2min then + Q2=Q2min; + V2=(1/Ybus(2,2))*(((P2-%i*Q2)/conj(V2))-Ybus(2,1)*V1-Ybus(2,3)*V3-Ybus(2,4)*V4); + elseif Q2>Q2max then + Q2=Q2max; + V2=(1/Ybus(2,2))*(((P2-%i*Q2)/conj(V2))-Ybus(2,1)*V1-Ybus(2,3)*V3-Ybus(2,4)*V4); + else + Q2=-imag(conj(V2)*Ybus(2,1)*V1+conj(V2)*(Ybus(2,2)*V2+Ybus(2,3)*V3+Ybus(2,4)*V4)); + [mag,delta2]=polar((1/Ybus(2,2))*(((P2-%i*Q2)/(conj(V2)))-Ybus(2,1)*V1-Ybus(2,3)*V3-Ybus(2,4)*V4)); + V2=abs(V2)*(cos(delta2)+%i*sin(delta2)); + end + V3=(1/Ybus(3,3))*(((P3-%i*Q3)/conj(V3))-Ybus(3,1)*V1-Ybus(3,2)*V2-Ybus(3,4)*V4); + V4=(1/Ybus(4,4))*(((P4-%i*Q4)/conj(V4))-Ybus(4,1)*V1-Ybus(4,2)*V2-Ybus(4,3)*V3); +end + +printf('Q2=');disp(Q2);printf('pu'); +printf('\n\n\ndelta2=');disp(abs(delta2));printf('rad'); +printf('\n\n\nV1=');disp(V1);printf('pu'); +printf('\n\n\nV2=');disp(V2);printf('pu'); +printf('\n\n\nV3=');disp(V3);printf('pu'); +printf('\n\n\nV4=');disp(V4);printf('pu'); + + +// case(ii) + +printf('\n\n\nCase(ii) When 0.25<Q2<1 pu and running for 1 iteration,we get \n\n'); + +////////////////////////////////////////////////////// +//Pi Qi Vi Remarks Bus no// +P1=0; Q1=0; V1=1.04; //Slack bus 1 +P2=0.5; V2=1.04; //PVbus 2 +P3=-1.0; Q3=0.5; V3=1; //PQbus 3 +P4=0.3; Q4=-0.1; V4=1; //PQbus 4 +///////////////////////////////////////////////////// + +Q2min=0.25;Q2max=1; +n=1; + +for i=1:n + if Q2<Q2min then + Q2=Q2min; + V2=(1/Ybus(2,2))*(((P2-%i*Q2)/conj(V2))-Ybus(2,1)*V1-Ybus(2,3)*V3-Ybus(2,4)*V4); + elseif Q2>Q2max then + Q2=Q2max; + V2=(1/Ybus(2,2))*(((P2-%i*Q2)/conj(V2))-Ybus(2,1)*V1-Ybus(2,3)*V3-Ybus(2,4)*V4); + else + Q2=-imag(conj(V2)*Ybus(2,1)*V1+conj(V2)*(Ybus(2,2)*V2+Ybus(2,3)*V3+Ybus(2,4)*V4)); + [mag,delta2]=polar((1/Ybus(2,2))*(((P2-%i*Q2)/(conj(V2)))-Ybus(2,1)*V1-Ybus(2,3)*V3-Ybus(2,4)*V4)); + V2=abs(V2)*(cos(delta2)+%i*sin(delta2)); + end + V3=(1/Ybus(3,3))*(((P3-%i*Q3)/conj(V3))-Ybus(3,1)*V1-Ybus(3,2)*V2-Ybus(3,4)*V4); + V4=(1/Ybus(4,4))*(((P4-%i*Q4)/conj(V4))-Ybus(4,1)*V1-Ybus(4,2)*V2-Ybus(4,3)*V3); +end + +printf('Q2=');disp(Q2);printf('pu'); +printf('\n\n\nV1=');disp(V1);printf('pu'); +printf('\n\n\nV2=');disp(V2);printf('pu'); +printf('\n\n\nV3=');disp(V3);printf('pu'); +printf('\n\n\nV4=');disp(V4);printf('pu'); + diff --git a/Working_Examples/83/CH6/EX6.5/result_example_6_5.txt b/Working_Examples/83/CH6/EX6.5/result_example_6_5.txt new file mode 100755 index 0000000..b52c393 --- /dev/null +++ b/Working_Examples/83/CH6/EX6.5/result_example_6_5.txt @@ -0,0 +1,60 @@ + + + +Case(i) When 0.2<Q2<1 pu and running for 1 iteration,we get + +Q2= + 0.208 +pu + + +delta2= + 0.0322201 +rad + + +V1= + 1.04 +pu + + +V2= + 1.0394602 + 0.0335032i +pu + + +V3= + 1.0317266 - 0.0893657i +pu + + +V4= + 1.0343045 - 0.0150761i +pu + + +Case(ii) When 0.25<Q2<1 pu and running for 1 iteration,we get + +Q2= + 0.25 +pu + + +V1= + 1.04 +pu + + +V2= + 1.0545971 + 0.0327833i +pu + + +V3= + 1.0344785 - 0.0894973i +pu + + +V4= + 1.0411847 - 0.0154037i +pu diff --git a/Working_Examples/83/CH6/EX6.6/example_6_6.sce b/Working_Examples/83/CH6/EX6.6/example_6_6.sce new file mode 100755 index 0000000..0058084 --- /dev/null +++ b/Working_Examples/83/CH6/EX6.6/example_6_6.sce @@ -0,0 +1,114 @@ +//Chapter 6 +//Example 6.6 +//page 218 +//To find load flow solution using the NR method +clear;clc; + +///////////////////////////////////////////////////////////////////////// +//Pd Qd Pg Qg V Bus Type///// +///////////////////////////////////////////////////////////////////////// +Pd1=2.0; Qd1=1.0; Pg1=0; Qg1=0; V1=1.04; //1 slack bus +Pd2=0; Qd2=0; Pg2=0.5; Qg2=1; V2=1; //2 PQ bus +Pd3=1.5; Qd3=0.6; Pg3=0.0; Qg3=0; V3=1.04; //3 PV bus +///////////////////////////////////////////////////////////////////////// +[V1_mag,V1_ang]=polar(V1); +[V2_mag,V2_ang]=polar(V2); +[V3_mag,V3_ang]=polar(V3); +y_series=1/(0.02+%i*0.08); +y_self=2*y_series; +y_off=-1*y_series; +Ybus=[y_self y_off y_off;y_off y_self y_off;y_off y_off y_self]; + +[y_bus_mag_21,y_bus_ang_21]=polar(Ybus(2,1)); +[y_bus_mag_22,y_bus_ang_22]=polar(Ybus(2,2)); +[y_bus_mag_23,y_bus_ang_23]=polar(Ybus(2,3)); +[y_bus_mag_31,y_bus_ang_31]=polar(Ybus(3,1)); +[y_bus_mag_32,y_bus_ang_32]=polar(Ybus(3,2)); +[y_bus_mag_33,y_bus_ang_33]=polar(Ybus(3,3)); +[y_bus_mag_11,y_bus_ang_11]=polar(Ybus(1,1)); + +//direct computer solution has been found as below by running for 3 iterations + +n=3; +for i=1:n +//from eq.6.27 and 6.28 +P2=V2_mag*V1_mag*y_bus_mag_21*cos(y_bus_ang_21+V1_ang-V2_ang)+(V2_mag^2)*y_bus_mag_22*cos(y_bus_ang_22)+V2_mag*V3_mag*y_bus_mag_23*cos(y_bus_ang_23+V3_ang-V2_ang); + +P3=V3_mag*V1_mag*y_bus_mag_31*cos(y_bus_ang_31+V1_ang-V3_ang)+(V3_mag^2)*y_bus_mag_33*cos(y_bus_ang_33)+V2_mag*V3_mag*y_bus_mag_32*cos(y_bus_ang_32+V2_ang-V3_ang); + +Q2=-V2_mag*V1_mag*y_bus_mag_21*sin(y_bus_ang_21+V1_ang-V2_ang)-(V2_mag^2)*y_bus_mag_22*sin(y_bus_ang_22)-V2_mag*V3_mag*y_bus_mag_23*sin(y_bus_ang_23+V3_ang-V2_ang); + +P2=real(P2); +P3=real(P3); +Q2=real(Q2); + +delta_P2=(Pg2-Pd2)-(P2); +delta_P3=(Pg3-Pd3)-(P3); +delta_P2=(Pg2-Pd2)-(P2); +delta_Q2=(Qg2-Qd2)-(Q2); + +//forming jacobian matrix by differentiating expressions of P2,P3,Q2 +j11=V2_mag*V1_mag*y_bus_mag_21*sin(y_bus_ang_21+V1_ang-V2_ang)+V2_mag*V3_mag*y_bus_mag_23*sin(y_bus_ang_23+V3_ang-V2_ang); +j12=-V2_mag*V3_mag*y_bus_mag_23*sin(y_bus_ang_23+V3_ang-V2_ang); +j13=V1_mag*y_bus_mag_21*cos(y_bus_ang_21+V1_ang-V2_ang)+(V2_mag*2)*y_bus_mag_22*cos(y_bus_ang_22)+V3_mag*y_bus_mag_23*cos(y_bus_ang_23+V3_ang-V2_ang); + +j21=-V2_mag*V3_mag*y_bus_mag_32*sin(y_bus_ang_32+V2_ang-V3_ang); +j22=V3_mag*V1_mag*y_bus_mag_31*sin(y_bus_ang_31+V1_ang-V3_ang)+V2_mag*V3_mag*y_bus_mag_32*sin(y_bus_ang_32+V2_ang-V3_ang); +j23=V3_mag*y_bus_mag_32*cos(y_bus_ang_32+V2_ang-V3_ang); + +j31=V2_mag*V1_mag*y_bus_mag_21*cos(y_bus_ang_21+V1_ang-V2_ang)+V2_mag*V3_mag*y_bus_mag_23*cos(y_bus_ang_23+V3_ang-V2_ang); +j32=-V2_mag*V3_mag*y_bus_mag_23*cos(y_bus_ang_23+V3_ang-V2_ang); +j33=-V1_mag*y_bus_mag_21*sin(y_bus_ang_21+V1_ang-V2_ang)-(V2_mag*2)*y_bus_mag_22*sin(y_bus_ang_22)-V3_mag*y_bus_mag_23*sin(y_bus_ang_23+V3_ang-V2_ang); + +J=[j11 j12 j13;j21 j22 j23;j31 j32 j33]; +J=real(J); + +//power residuals +PR=[delta_P2;delta_P3;delta_Q2]; + +//changes in variables +ch_var=inv(J)*PR; + +V2_ang=V2_ang+ch_var(1,1); +V3_ang=V3_ang+ch_var(2,1); +V2_mag=V2_mag+ch_var(3,1); + +P1=(V1_mag^2)*y_bus_mag_11*cos(y_bus_ang_11)+V1_mag*V2_mag*y_bus_mag_21*cos(y_bus_ang_21+V2_ang-V1_ang)+V1_mag*V3_mag*y_bus_mag_31*cos(y_bus_ang_31+V3_ang-V1_ang); +Q1=-V1_mag^2*y_bus_mag_11*sin(y_bus_ang_11)-V1_mag*V2_mag*y_bus_mag_21*sin(y_bus_ang_21+V2_ang-V1_ang)-V1_mag*V3_mag*y_bus_mag_31*sin(y_bus_ang_31+V3_ang-V1_ang); + +Q3=-V3_mag*V1_mag*y_bus_mag_31*sin(y_bus_ang_31+V1_ang-V3_ang)-(V3_mag^2)*y_bus_mag_33*sin(y_bus_ang_33)-V2_mag*V3_mag*y_bus_mag_32*sin(y_bus_ang_32+V2_ang-V3_ang); +Qg3=Q3+Qd3; + +end + +S1=real(P1)+%i*real(Q1); +S2=P2+%i*Q2; +S3=P3+%i*Q3; + +printf('\nThe final results are given below:\n'); +printf('V2=%0.3f @ %0.3f rad\n',V2_mag,V2_ang); +printf('V3=%0.3f @ %0.3f rad\n',V3_mag,V3_ang); +printf('Qg3=%0.2f pu(with in limits)\n',Qg3); +printf('\nS1=');disp(S1);printf('pu'); +printf('\n\nS2=');disp(S2);printf("pu"); +printf('\n\nS3=');disp(S3);printf("pu"); +printf('\n\nTransmission losses=%0.3f pu\n',(real(P1)+P2+P3)); + +//Line Flows + +//V_mag=[V1_mag V2_mag V3_mag]; +//V_ang=[V1_ang V2_ang V3_ang]; +v1=V1_mag*(cos(V1_ang)+%i*sin(V1_ang)); +v2=V2_mag*(cos(V2_ang)+%i*sin(V2_ang)); +v3=V3_mag*(cos(V3_ang)+%i*sin(V3_ang)); +V=[v1 v2 v3]; +for i=1:3 + for j=1:3 + s(i,j)=conj(V(i))*(V(i)-V(j))*(2.941-%i*11.764)+conj(V(i))*V(i)*(%i*0.01); + s(j,i)=conj(V(j))*(V(j)-V(i))*(2.941-%i*11.764)+conj(V(j))*V(j)*(%i*0.01); + end +end +P=real(s); +Q=-imag(s); +printf('\nLine Flows\nThe following matrix shows the real part of line flows(in pu)');disp(P); +printf('\nThe following matrix shows the imaginary part of line flows(in pu)');disp(Q);
\ No newline at end of file diff --git a/Working_Examples/83/CH6/EX6.6/result_example_6_6.txt b/Working_Examples/83/CH6/EX6.6/result_example_6_6.txt new file mode 100755 index 0000000..368084d --- /dev/null +++ b/Working_Examples/83/CH6/EX6.6/result_example_6_6.txt @@ -0,0 +1,30 @@ + The final results are given below: +V2=1.081 @ -0.024 rad +V3=1.040 @ -0.066 rad +Qg3=0.48 pu(with in limits) + +S1= + 1.0311806 - 0.7581336i +pu + +S2= + 0.5004595 + 1.0012862i +pu + +S3= + - 1.5000616 - 0.1171441i +pu + +Transmission losses=0.032 pu + +Line Flows +The following matrix shows the real part of line flows(in pu) + 0. 0.1910725 0.8400462 + - 0.1842388 0. 0.6842088 + - 0.8263909 - 0.6735191 0. + +The following matrix shows the imaginary part of line flows(in pu) + - 0.010816 - 0.5879101 - 0.1918100 + 0.5927428 - 0.0116862 0.3838248 + 0.2247993 - 0.3635684 - 0.010816 + diff --git a/Working_Examples/83/CH6/EX6.7/example_6_7.sce b/Working_Examples/83/CH6/EX6.7/example_6_7.sce new file mode 100755 index 0000000..46c8605 --- /dev/null +++ b/Working_Examples/83/CH6/EX6.7/example_6_7.sce @@ -0,0 +1,45 @@ +//Chapter 6 +//Example 6.7 +//page 234 +//To find modified Ybus after including regulating transformer +clear;clc; + +y34=2-%i*6;y23=0.666-%i*2; +y12=2-%i*6;y24=1-%i*3; +y13=1-%i*3; + +//case(i) when a=1/1.04; +a=1/1.04; +//to form Ybus matrix +Y11=y13+y12;Y12=-y12;Y13=-y13;Y14=0; +Y21=-y12;Y22=y12+y23+y24;Y23=-y23;Y24=-y24; +Y31=-y13;Y32=-y23;Y33=(a^2)*y34+y23+y13;Y34=-(a')*y34; +Y41=0;Y42=-y24;Y43=-a'*y34;Y44=y34+y24; + + +Ybus=[Y11 Y12 Y13 Y14; + Y21 Y22 Y23 Y24; + Y31 Y32 Y33 Y34; + Y41 Y42 Y43 Y44]; +printf('Case(i) When a=1/1.04'); +printf('\nYbus=');disp(Ybus); +printf('\nObserve the changes in elements between bus 3&4 when compared with the result of example_6.2'); + +//case(ii) when a=e^(-j3) + +a=cosd(3)-%i*sind(3); +//to form Ybus matrix +Y11=y13+y12;Y12=-y12;Y13=-y13;Y14=0; +Y21=-y12;Y22=y12+y23+y24;Y23=-y23;Y24=-y24; +Y31=-y13;Y32=-y23;Y33=(abs(a)^2)*y34+y23+y13;Y34=(a')*(-y34); +Y41=0;Y42=-y24;Y43=a*(-y34);Y44=y34+y24; + + +Ybus=[Y11 Y12 Y13 Y14; + Y21 Y22 Y23 Y24; + Y31 Y32 Y33 Y34; + Y41 Y42 Y43 Y44]; +printf('\n\nCase(ii) When a=e^(-j3)'); +printf('\nYbus=');disp(Ybus); +printf('\nObserve the changes in elements between bus 3&4 when compared with the result of example_6.2'); + diff --git a/Working_Examples/83/CH6/EX6.7/result_example_6_7.txt b/Working_Examples/83/CH6/EX6.7/result_example_6_7.txt new file mode 100755 index 0000000..3d2a478 --- /dev/null +++ b/Working_Examples/83/CH6/EX6.7/result_example_6_7.txt @@ -0,0 +1,20 @@ + +-->exec('/home/samyak/scilab_working_directory/chapter_6/ex_7/example_6_7.sce', -1) +Case(i) When a=1/1.04 +Ybus= + 3. - 9.i - 2. + 6.i - 1. + 3.i 0 + - 2. + 6.i 3.666 - 11.i - 0.666 + 2.i - 1. + 3.i + - 1. + 3.i - 0.666 + 2.i 3.5151124 - 10.547337i - 1.9230769 + 5.7692308i + 0 - 1. + 3.i - 1.9230769 + 5.7692308i 3. - 9.i + +Observe the changes in elements between bus 3&4 when compared with the result of example_6.2 + +Case(ii) When a=e^(-j3) +Ybus= + 3. - 9.i - 2. + 6.i - 1. + 3.i 0 + - 2. + 6.i 3.666 - 11.i - 0.666 + 2.i - 1. + 3.i + - 1. + 3.i - 0.666 + 2.i 3.666 - 11.i - 2.3112748 + 5.8871053i + 0 - 1. + 3.i - 1.6832433 + 6.0964491i 3. - 9.i + +Observe the changes in elements between bus 3&4 when compared with the result of example_6.2 +-->diary(0); diff --git a/Working_Examples/83/CH6/EX6.8/example_6_8.sce b/Working_Examples/83/CH6/EX6.8/example_6_8.sce new file mode 100755 index 0000000..23a8c85 --- /dev/null +++ b/Working_Examples/83/CH6/EX6.8/example_6_8.sce @@ -0,0 +1,122 @@ +//Chapter 6 +//Example 6.8 +//page 226 +//To find load flow solution using the decoupled NR method and FDLF method +clear;clc; + +///////////////////////////////////////////////////////////////////////// +//Pd Qd Pg Qg V Bus Type///// +///////////////////////////////////////////////////////////////////////// +Pd1=2.0; Qd1=1.0; Pg1=0; Qg1=0; V1=1.04; //1 slack bus +Pd2=0; Qd2=0; Pg2=0.5; Qg2=1; V2=1; //2 PQ bus +Pd3=1.5; Qd3=0.6; Pg3=0.0; Qg3=0; V3=1.04; //3 PV bus +///////////////////////////////////////////////////////////////////////// +[V1_mag,V1_ang]=polar(V1); +[V2_mag,V2_ang]=polar(V2); +[V3_mag,V3_ang]=polar(V3); +y_series=1/(0.02+%i*0.08); +y_self=2*y_series; +y_off=-1*y_series; +Ybus=[y_self y_off y_off;y_off y_self y_off;y_off y_off y_self]; + +[y_bus_mag_21,y_bus_ang_21]=polar(Ybus(2,1)); +[y_bus_mag_22,y_bus_ang_22]=polar(Ybus(2,2)); +[y_bus_mag_23,y_bus_ang_23]=polar(Ybus(2,3)); +[y_bus_mag_31,y_bus_ang_31]=polar(Ybus(3,1)); +[y_bus_mag_32,y_bus_ang_32]=polar(Ybus(3,2)); +[y_bus_mag_33,y_bus_ang_33]=polar(Ybus(3,3)); +[y_bus_mag_11,y_bus_ang_11]=polar(Ybus(1,1)); + +//case(a) Decoupled NR method : +printf('\ncase(a) Decoupled NR method :\n') ; + +H22=0.96+23.508; +H23=-1.04*11.764; +H33=25.89; +L22=1+23.508; +H=[H22 H23;H23 H33]; +delta_P=[0.73;-1.62]; + +delta_V_ang=inv(H)*delta_P; +delta_V2_ang=delta_V_ang(1,1); +delta_V3_ang=delta_V_ang(2,1); +printf('\ndelta_Angle_V2=');disp(real(delta_V2_ang)); +printf('\ndelta_Angle_V3=');disp(real(delta_V3_ang)); +V2_ang=V2_ang-delta_V2_ang; +V3_ang=V3_ang-delta_V3_ang; + +Q2=-V2_mag*V1_mag*y_bus_mag_21*sin(y_bus_ang_21+V1_ang-V2_ang)-(V2_mag^2)*y_bus_mag_22*sin(y_bus_ang_22)-V2_mag*V3_mag*y_bus_mag_23*sin(y_bus_ang_23-V3_ang+V2_ang); + +printf('\nQ2=');disp(real(Q2)); +delta_Q2=(Qg2-Qd2)-(Q2); +printf('\ndelta_Q2=');disp(real(delta_Q2)); +L=[L22]; +delta_v=inv(L)*delta_Q2; +delta_V2=delta_v*V2_mag; + +printf('\ndelta_V2=%0.3f',delta_V2); +V2_mag=V2_mag+delta_V2; +printf('\n\nV2=%0.3f pu',V2_mag); + +Q3=-V3_mag*V1_mag*y_bus_mag_31*sin(y_bus_ang_31+V1_ang-V3_ang)-(V3_mag^2)*y_bus_mag_33*sin(y_bus_ang_33)-V2_mag*V3_mag*y_bus_mag_32*sin(y_bus_ang_32+V2_ang-V3_ang); + +printf('\n\nQ3=');disp(real(Q3)); + +//case(b) FDLF method: + +printf('\n\n\ncase(b) FDLF method :\n') ; + +///////////////////////////////////////////////////////////////////////// +//Pd Qd Pg Qg V Bus Type///// +///////////////////////////////////////////////////////////////////////// +Pd1=2.0; Qd1=1.0; Pg1=0; Qg1=0; V1=1.04; //1 slack bus +Pd2=0; Qd2=0; Pg2=0.5; Qg2=1; V2=1; //2 PQ bus +Pd3=1.5; Qd3=0.6; Pg3=0.0; Qg3=0; V3=1.04; //3 PV bus +///////////////////////////////////////////////////////////////////////// +[V1_mag,V1_ang]=polar(V1); +[V2_mag,V2_ang]=polar(V2); +[V3_mag,V3_ang]=polar(V3); +y_series=1/(0.02+%i*0.08); +y_self=2*y_series; +y_off=-1*y_series; +Ybus=[y_self y_off y_off;y_off y_self y_off;y_off y_off y_self]; + +[y_bus_mag_21,y_bus_ang_21]=polar(Ybus(2,1)); +[y_bus_mag_22,y_bus_ang_22]=polar(Ybus(2,2)); +[y_bus_mag_23,y_bus_ang_23]=polar(Ybus(2,3)); +[y_bus_mag_31,y_bus_ang_31]=polar(Ybus(3,1)); +[y_bus_mag_32,y_bus_ang_32]=polar(Ybus(3,2)); +[y_bus_mag_33,y_bus_ang_33]=polar(Ybus(3,3)); +[y_bus_mag_11,y_bus_ang_11]=polar(Ybus(1,1)); + +B22=-23.508; +B23=11.764; +B32=B23; +B33=B22; + +B=[-B22 -B23;-B32 -B33]; + +delta_P=[0.73;-1.557]; + +delta_V_ang=inv(B)*delta_P; +delta_V2_ang=delta_V_ang(1,1); +delta_V3_ang=delta_V_ang(2,1); +printf('\ndelta_Angle_V2=');disp(real(delta_V2_ang)); +printf('\ndelta_Angle_V3=');disp(real(delta_V3_ang)); +V2_ang=V2_ang-delta_V2_ang; +V3_ang=V3_ang-delta_V3_ang; + +Q2=-V2_mag*V1_mag*y_bus_mag_21*sin(y_bus_ang_21+V1_ang-V2_ang)-(V2_mag^2)*y_bus_mag_22*sin(y_bus_ang_22)-V2_mag*V3_mag*y_bus_mag_23*sin(y_bus_ang_23-V3_ang+V2_ang); + +delta_Q2=(Qg2-Qd2)-(Q2); + +delta_v=inv([-B22])*delta_Q2; +delta_V2=delta_v*V2_mag; + +printf('\ndelta_V2=%0.3f',delta_V2); +V2_mag=V2_mag+delta_V2; +printf('\n\nV2=%0.3f pu',V2_mag); + +Q3=-V3_mag*V1_mag*y_bus_mag_31*sin(y_bus_ang_31+V1_ang-V3_ang)-(V3_mag^2)*y_bus_mag_33*sin(y_bus_ang_33)-V2_mag*V3_mag*y_bus_mag_32*sin(y_bus_ang_32+V2_ang-V3_ang); + +printf('\n\nQ3=');disp(real(Q3)); diff --git a/Working_Examples/83/CH6/EX6.8/result_example_6_8.txt b/Working_Examples/83/CH6/EX6.8/result_example_6_8.txt new file mode 100755 index 0000000..f8f965a --- /dev/null +++ b/Working_Examples/83/CH6/EX6.8/result_example_6_8.txt @@ -0,0 +1,42 @@ + +-->exec('/home/samyak/scilab_working_directory/chapter_6/ex_8/example_6_8.sce', -1) + +case(a) Decoupled NR method : + +delta_Angle_V2= + - 0.0019022 + +delta_Angle_V3= + - 0.0634713 + +Q2= + - 1.1119998 + +delta_Q2= + 2.1119998 + +delta_V2=0.086 + +V2=1.086 pu + +Q3= + - 0.9203795 + + + +case(b) FDLF method : + +delta_Angle_V2= + - 0.0027900 + +delta_Angle_V3= + - 0.0676290 + +delta_V2=0.090 + +V2=1.090 pu + +Q3= + - 0.9890485 + +-->diary(0); diff --git a/Working_Examples/83/CH7/EX7.1/example_7_1.sce b/Working_Examples/83/CH7/EX7.1/example_7_1.sce new file mode 100755 index 0000000..4980957 --- /dev/null +++ b/Working_Examples/83/CH7/EX7.1/example_7_1.sce @@ -0,0 +1,86 @@ +//Chapter 7 +//Example 7.1 +//page 246 +//To find incremental cost and load sharing +clear;clc; + +///Let us use the program given in the Appendix G in the textbook to write +//a function that returns the value of lamda and Loading of each generator +//when the total load on the plant is sent to the function + +function [lamdaprev,Pg]=optimum(Pd) + n=2; //number of generators + Alpha=[0.2 0.25]; + Beta=[40 30]; + lamda=35; //initial guess for lambda + lamdaprev=lamda; + eps=1; //tolerance + deltalamda=0.25; //increment in lamda + Pgmax=[125 125]; + Pgmin=[20 20]; + Pg=100*ones(n,1); + while abs(sum(Pg)-Pd)>eps + for i=1:n + Pg(i)=(lamda-Beta(i))/Alpha(i); + if Pg(i)>Pgmax(i) then + Pg(i)=Pgmax(i); + end + if Pg(i)<Pgmin(i) then + Pg(i)=Pgmin(i); + end + end + if (sum(Pg)-Pd)<0 then + lamdaprev=lamda; + lamda=lamda+deltalamda; + else + lamdaprev=lamda; + lamda=lamda-deltalamda; + end + end +endfunction + + +//to draw the table 7.1 +printf('Table 7.1 Output of each unit and plant output for various values of lamda\n') +printf('--------------------------------------------------------------\n'); +printf('Plant Lamda, Unit 1 Unit 2 Plant Output \n'); +printf('Rs/MWh Pg1,MW Pg2,MW (Pg1+Pg2),MW \n'); +printf('--------------------------------------------------------------\n'); + +Pd_matrix=[40 76 130 150 175 220 231.25 250]; +for i=1:8 + [lamda,Pg]=optimum(Pd_matrix(i)); + printf('%0.2f %0.2f %0.2f %0.2f\n',lamda,Pg(1),Pg(2),Pg(1)+Pg(2)); +end +printf('--------------------------------------------------------------\n'); + +//To draw the Graphs 7.3 and 7.4 + +Pd_test=40:3.75:250; +[Pd_ro,Pd_co]=size(Pd_test) +for i=1:Pd_co + [lamda,Pg]=optimum(Pd_test(i)); + lamda_test(i)=lamda; + Pg1_test(i)=Pg(1); + Pg2_test(i)=Pg(2); +end +Pg1_test=Pg1_test.'; //transposing without conjugating +Pg2_test=Pg2_test.'; +lamda_test=lamda_test.'; + +subplot(211) +plot(Pd_test,lamda_test); +title('Incremental Fuel cost versus plant output'); +xlabel('Plant output,MW'); +ylabel('Incremental fuel cost,Rs/MWh'); +set(gca(),"grid",[0,0]) +get("current_axes"); + +subplot(212) +plot(Pd_test,Pg1_test,Pd_test,Pg2_test); +title('Output of each unit versus plant output'); +xlabel('Plant output,MW'); +ylabel('Unit output,MW'); +legend(["Unit 1";"Unit 2"],[2]); +set(gca(),"grid",[0,0]) +get("current_axes");
\ No newline at end of file diff --git a/Working_Examples/83/CH7/EX7.1/result_example_7_1.txt b/Working_Examples/83/CH7/EX7.1/result_example_7_1.txt new file mode 100755 index 0000000..19fcad4 --- /dev/null +++ b/Working_Examples/83/CH7/EX7.1/result_example_7_1.txt @@ -0,0 +1,18 @@ + + +Table 7.1 Output of each unit and plant output for various values of lamda +-------------------------------------------------------------- +Plant Lamda, Unit 1 Unit 2 Plant Output +Rs/MWh Pg1,MW Pg2,MW (Pg1+Pg2),MW +-------------------------------------------------------------- +35.00 20.00 20.00 40.00 +43.75 20.00 55.00 75.00 +50.00 50.00 80.00 130.00 +52.25 61.25 89.00 150.25 +55.00 75.00 100.00 175.00 +60.00 100.00 120.00 220.00 +61.25 106.25 125.00 231.25 +65.00 125.00 125.00 250.00 +-------------------------------------------------------------- + + diff --git a/Working_Examples/83/CH7/EX7.1/result_graph_example_7_1.jpg b/Working_Examples/83/CH7/EX7.1/result_graph_example_7_1.jpg Binary files differnew file mode 100755 index 0000000..0d12777 --- /dev/null +++ b/Working_Examples/83/CH7/EX7.1/result_graph_example_7_1.jpg diff --git a/Working_Examples/83/CH7/EX7.2/example_7_2.sce b/Working_Examples/83/CH7/EX7.2/example_7_2.sce new file mode 100755 index 0000000..50258fe --- /dev/null +++ b/Working_Examples/83/CH7/EX7.2/example_7_2.sce @@ -0,0 +1,15 @@ +//Chapter 7 +//Example 7.2 +//page 248 +//To find the saving in fuel cost by optimal scheduling +clear;clc; + +//Example reveals that for optimal load sharing units 1&2 has to take up 50MW and 80MW respectively +//If each unit supplies 65MW,increase in cost for units 1&2 are + +Increase1=integrate('0.2*Pg1+40','Pg1',50,65); +Increase2=integrate('0.25*Pg2+30','Pg2',80,65); +printf('\nIncrease in cost for unit 1 is = %0.1f Rs/hr',Increase1); +printf('\n\nIncrease in cost for unit 2 is = %0.3f Rs/hr',Increase2); +printf('\n\nNet saving caused by optimum scheduling is = %0.3f Rs/hr',Increase1+Increase2); +printf('\n\nTotal yearly saving assuming continuous operation= Rs %d',(Increase1+Increase2)*24*365);
\ No newline at end of file diff --git a/Working_Examples/83/CH7/EX7.2/result_example_7_2.txt b/Working_Examples/83/CH7/EX7.2/result_example_7_2.txt new file mode 100755 index 0000000..61d8801 --- /dev/null +++ b/Working_Examples/83/CH7/EX7.2/result_example_7_2.txt @@ -0,0 +1,9 @@ + + +Increase in cost for unit 1 is = 772.5 Rs/hr + +Increase in cost for unit 2 is = -721.875 Rs/hr + +Net saving caused by optimum scheduling is = 50.625 Rs/hr + +Total yearly saving assuming continuous operation= Rs 443474 diff --git a/Working_Examples/83/CH7/EX7.3/example_7_3.sce b/Working_Examples/83/CH7/EX7.3/example_7_3.sce new file mode 100755 index 0000000..427f9af --- /dev/null +++ b/Working_Examples/83/CH7/EX7.3/example_7_3.sce @@ -0,0 +1,41 @@ +//Chapter 7 +//Example 7.3 +//page 249 +//To find the economical operation +clear;clc; + +//from the table we got as the output in the example_7_1 +//for optimum operation of load 220MW,unit 1&2 must be loaded 100MW and 120MW respwctively +//and for a load of 76MW,unit 1&2 must be loaded 20MW and 56MW respwctively +start_up=400; +//case(i) +printf('\nCase(i)'); +//total fuel cost for the load of 220MW during 6AM to 6PM +Pg1=100; +Pg2=120; +C1=0.1*Pg1^2+40*Pg1+120; +C2=0.125*Pg2^2+30*Pg2+100; +total1=(C1+C2)*12; +printf('\nTotal fuel cost for the load of 220MW during 6AM to 6PM = Rs. %d',total1); + +//total fuel cost for the load of 76MW during 6PM to 6AM +Pg1=20; +Pg2=56; +C1=0.1*Pg1^2+40*Pg1+120; +C2=0.125*Pg2^2+30*Pg2+100; +total2=(C1+C2)*12; +printf('\nTotal fuel cost for the load of 76MW during 6PM to 6AM if both the units run = Rs. %d',total2); + +total=total1+total2; //total fuel cost for 24hrs + +printf('\nTotal fuel cost for the load during 24hrs if both the units run = Rs. %d',total); + +//case(ii) +printf('\n\nCase(ii)'); +//If during light load condition unit2 is On and Unit1 is Off then +Pg2=76; +C2=0.125*Pg2^2+30*Pg2+100; +total2=C2*12; +total_case2=total1+total2+start_up; + +printf('\nTotal fuel cost for the 24hrs laod if only unit 2 run during light loads is = Rs. %d',total_case2);
\ No newline at end of file diff --git a/Working_Examples/83/CH7/EX7.3/result_example_7_3.txt b/Working_Examples/83/CH7/EX7.3/result_example_7_3.txt new file mode 100755 index 0000000..1032b7b --- /dev/null +++ b/Working_Examples/83/CH7/EX7.3/result_example_7_3.txt @@ -0,0 +1,10 @@ + + +Case(i) +Total fuel cost for the load of 220MW during 6AM to 6PM = Rs. 127440 +Total fuel cost for the load of 76MW during 6PM to 6AM if both the units run = Rs. 37584 +Total fuel cost for the load during 24hrs if both the units run = Rs. 165024 + +Case(ii) +Total fuel cost for the 24hrs laod if only unit 2 run during light loads is = Rs. 165064 + diff --git a/Working_Examples/83/CH7/EX7.4/example_7_4.sce b/Working_Examples/83/CH7/EX7.4/example_7_4.sce new file mode 100755 index 0000000..2fb2f76 --- /dev/null +++ b/Working_Examples/83/CH7/EX7.4/example_7_4.sce @@ -0,0 +1,59 @@ +//Chapter 7 +//Example 7.4 +//page 263 +//To find required generation for each plant and losses incurred +clear;clc; + +///Let us use the program given in the Appendix G in the textbook which includes penalty factor also to write +//a function that returns the value of lamda,Loading of each generator and losses +//when the total load on the plant is sent to the function + +function [lamda,Pg,PL]=optimum2(Pd) +n=2; //no of generators +Alpha=[0.02 0.04]; +Beta=[16 20]; +lamda=20; //initial value of lamda +lamdaprev=lamda; +eps=1; //tolerance +deltalamda=0.1; +Pgmax=[200 200]; +Pgmin=[0 0]; +B=[0.001 0;0 0]; +Pg=zeros(n,1); +noofiter=0; +PL=0; +Pg=zeros(n,1); +while abs(sum(Pg)-Pd-PL)>eps + for i=1:n + sigma=B(i,:)*Pg-B(i,i)*Pg(i); + Pg(i)=(1-(Beta(i)/lamda)-(2*sigma))/(Alpha(i)/lamda+2*B(i,i)); + PL=Pg.'*B*Pg; + if Pg(i)>Pgmax(i) then + Pg(i)=Pgmax(i); + end + if Pg(i)<Pgmin(i) then + Pg(i)=Pgmin(i); + end + end + PL=Pg.'*B*Pg; + if(sum(Pg)-Pd-PL)<0 then + lamdaprev=lamda; + lamda=lamda+deltalamda; + else + lamdaprev=lamda; + lamda=lamda-deltalamda; + end + noofiter=noofiter+1; + Pg; +end +endfunction + +//In this example let us take the answer .i.e load(Pd)=237.04MW and calculate +//lamda so that we can use the algorithm used in the textbook +Pd=237.04 +[lamda_test,Pg_test,PL_test]=optimum2(Pd); +printf('\nLagrange''s multiplier (lamda) is\n Lamda =%0.1f',lamda_test); +printf('\n\nRequired generation for optimum loading are \n Pg1=%0.2f MW \n Pg2=%d MW\n',Pg_test(1),Pg_test(2)); +printf('\nThe transmission power loss is\n PL=%0.2f MW',PL_test); +printf('\n\nThe load is \n Pd=%0.2f MW',Pd); + diff --git a/Working_Examples/83/CH7/EX7.4/result_example_7_4.txt b/Working_Examples/83/CH7/EX7.4/result_example_7_4.txt new file mode 100755 index 0000000..9038d91 --- /dev/null +++ b/Working_Examples/83/CH7/EX7.4/result_example_7_4.txt @@ -0,0 +1,15 @@ + + +Lagrange's multiplier (lamda) is + Lamda =24.9 + +Required generation for optimum loading are + Pg1=128.57 MW + Pg2=125 MW + +The transmission power loss is + PL=16.53 MW + +The load is + Pd=237.04 MW + diff --git a/Working_Examples/83/CH7/EX7.5/example_7_5.sce b/Working_Examples/83/CH7/EX7.5/example_7_5.sce new file mode 100755 index 0000000..aed5fe2 --- /dev/null +++ b/Working_Examples/83/CH7/EX7.5/example_7_5.sce @@ -0,0 +1,69 @@ +//Chapter 7 +//Example 7.5 +//page 264 +//To find savings when losses are coordinated +clear;clc; + +function [lamdaprev,Pg]=optimum(Pd) + n=2; //number of generators + Alpha=[0.02 0.04]; + Beta=[16 20]; + lamda=20; //initial guess for lambda + lamdaprev=lamda; + eps=1; //tolerance + deltalamda=0.25; //increment in lamda + Pgmax=[200 200]; + Pgmin=[0 0]; + Pg=100*ones(n,1); + while abs(sum(Pg)-Pd)>eps + for i=1:n + Pg(i)=(lamda-Beta(i))/Alpha(i); + if Pg(i)>Pgmax(i) then + Pg(i)=Pgmax(i); + end + if Pg(i)<Pgmin(i) then + Pg(i)=Pgmin(i); + end + end + if (sum(Pg)-Pd)<0 then + lamdaprev=lamda; + lamda=lamda+deltalamda; + else + lamdaprev=lamda; + lamda=lamda-deltalamda; + end + end +endfunction + +//the above function "optimum" doesn't coordinate losses + +//case(i) when the losses are included but not coordinated +[lamda_case1,Pg_case1]=optimum(237.04); +//since Pg2 does not supply transmission losses and the losses are supplied only by Pg1 +Pg2_1=Pg_case1(2); +//to get Pg1 we will solve Pg1+Pg2=0.001*Pg1^2+237.04 +//the above equation can be wriiten as (0.001*Pg1^2) - Pg1 +(237.04-Pg2) =0 +p=poly([0.001 -1 (237.04+Pg2_1)],"Pg1"); +Pg1_1=roots(p); +Pg1_1=Pg1_1(1); + +printf('\ncase(i) when the losses are included but not coordinated'); +printf('\nPg1=%0.2f MW Pg2=%0.2f MW',Pg1_1,Pg2_1); + +//case(ii) when the losses are also coordinated +//we have the solution for case(ii) from example_7_4 +Pg1_2=128.57; Pg2_2=125; //case(ii) + +printf('\n\ncase(ii) when the losses are coordinated'); +printf('\nPg1=%0.2f MW Pg2=%0.2f MW',Pg1_2,Pg2_2); + +//saving at plant 1 is +saving1=integrate('0.02*Pg1+16','Pg1',Pg1_2,Pg1_1); +printf('\n\nSaving at plant 1 due to loss coordination is = Rs %0.2f/hr',saving1); + +//saving at plant 2 is +saving2=integrate('0.04*Pg2+20','Pg2',Pg2_2,Pg2_1); +printf('\n\nSaving at plant 2 due to loss coordination is = Rs %0.2f/hr',saving2); + +//net savings achieved +printf('\n\nThe net saving achieved by coordinating losses while scheduling the recieved load of 237.04MW is Rs %0.2f/hr',saving1+saving2);
\ No newline at end of file diff --git a/Working_Examples/83/CH7/EX7.5/result_example_7_5.txt b/Working_Examples/83/CH7/EX7.5/result_example_7_5.txt new file mode 100755 index 0000000..7cd9f3c --- /dev/null +++ b/Working_Examples/83/CH7/EX7.5/result_example_7_5.txt @@ -0,0 +1,13 @@ + +case(i) when the losses are included but not coordinated +Pg1=274.54 MW Pg2=37.50 MW + +case(ii) when the losses are coordinated +Pg1=128.57 MW Pg2=125.00 MW + +Saving at plant 1 due to loss coordination is = Rs 2923.94/hr + +Saving at plant 2 due to loss coordination is = Rs -2034.38/hr + +The net saving achieved by coordinating losses while scheduling the recieved load of 237.04MW is Rs 889.56/hr + diff --git a/Working_Examples/83/CH7/EX7.6/example_7_6.sce b/Working_Examples/83/CH7/EX7.6/example_7_6.sce new file mode 100755 index 0000000..4948e09 --- /dev/null +++ b/Working_Examples/83/CH7/EX7.6/example_7_6.sce @@ -0,0 +1,48 @@ +//Chapter 7 +//Example 7.6 +//page 268 +//To calculate the loss formula coefficients of the system +clear;clc; + +Ia=2-%i*0.5; Ic=1-%i*0.25; +Ib=1.6-%i*0.4; Id=3.6-%i*0.9; +Za=0.015+%i*0.06; Zc=0.01+%i*0.04; +Zb=0.015+%i*0.06; Zd=0.01+%i*0.04; + +ID=Id+Ic ;//total load current + +//calculation of current distribution factors +printf('\nCurrent distribution factors are :\n') +Ma1=(ID/ID); +Ma2=(0/ID); +Mb1=(-Ic/ID); +Mb2=(Id/ID); +Mc1=(Ic/ID); +Mc2=(Ic/ID); +Md1=(Id/ID); +Md2=(Id/ID); +printf('Ma1=%d\tMb1=%0.4f\tMc1=%0.4f\tMd1=%0.4f\nMa2=%d\tMb2=%0.4f\tMc2=%0.4f\tMd2=%0.4f',Ma1,Mb1,Mc1,Md1,Ma2,Mb2,Mc2,Md2); + +//bus voltage calcultion +[V1_mag,V1_ang]=polar(1.0+Ia*Za); +[V2_mag,V2_ang]=polar(1+Ib*Zb); +V1_ang=real(V1_ang)*180/%pi; +V2_ang=real(V2_ang)*180/%pi; +printf('\n\nBus voltages are given by \nV1=%0.3f @ %0.2fdeg PU\tV2=%0.3f @ %0.2fdeg PU',V1_mag,V1_ang,V2_mag,V2_ang); + +//current phase angles at the plants +sigma1=atand(imag(Ia)/real(Ia)); +sigma2=atand(imag(Ib+Ic)/real(Ib+Ic)); +printf('\n\nCurrent phase angles at the plants\nSigma1=%ddeg\tSigma2=%ddeg',sigma1,sigma2); + +//plant power factors +pf1=cosd(V1_ang-sigma1); +pf2=cosd(V2_ang-sigma2); +printf('\n\nThe plant power factors are\npf1=%0.4f\tpf2=%0.4f',pf1,pf2); + +//calculation of loss coefficients +B11=(Ma1*Ma1*real(Za)+Mb1*Mb1*real(Zb)+Mc1*Mc1*real(Zc)+Md1*Md1*real(Zd))/(V1_mag*V1_mag*pf1*pf1); +B22=(Ma2*Ma2*real(Za)+Mb2*Mb2*real(Zb)+Mc2*Mc2*real(Zc)+Md2*Md2*real(Zd))/(V2_mag*V2_mag*pf2*pf2); +B12=(Ma1*Ma2*real(Za)+Mb1*Mb2*real(Zb)+Mc1*Mc2*real(Zc)+Md1*Md2*real(Zd))/(V1_mag*V2_mag*pf1*pf2); +printf('\n\nThe Loss coefficients in PU are \nB11=%0.5f pu\nB22=%0.5f pu\nB12=%0.5f pu',B11,B22,B12); +printf('\n\nThe Loss coefficients in reciprocal megawatts are \nB11=%0.8f MW^-1\nB22=%0.8f MW^-1\nB12=%0.8f MW^-1',B11/100,B22/100,B12/100); diff --git a/Working_Examples/83/CH7/EX7.6/result_example_7_6.txt b/Working_Examples/83/CH7/EX7.6/result_example_7_6.txt new file mode 100755 index 0000000..d4cd7f2 --- /dev/null +++ b/Working_Examples/83/CH7/EX7.6/result_example_7_6.txt @@ -0,0 +1,25 @@ + + +Current distribution factors are : +Ma1=1 Mb1=-0.2174 Mc1=0.2174 Md1=0.7826 +Ma2=0 Mb2=0.7826 Mc2=0.2174 Md2=0.7826 + +Bus voltages are given by +V1=1.066 @ 6.06deg PU V2=1.052 @ 4.91deg PU + +Current phase angles at the plants +Sigma1=-14deg Sigma2=-14deg + +The plant power factors are +pf1=0.9391 pf2=0.9458 + +The Loss coefficients in PU are +B11=0.02226 pu +B22=0.01595 pu +B12=0.00406 pu + +The Loss coefficients in reciprocal megawatts are +B11=0.00022259 MW^-1 +B22=0.00015947 MW^-1 +B12=0.00004062 MW^-1 + diff --git a/Working_Examples/83/CH7/EX7.7/example_7_7.sce b/Working_Examples/83/CH7/EX7.7/example_7_7.sce new file mode 100755 index 0000000..fa8e64f --- /dev/null +++ b/Working_Examples/83/CH7/EX7.7/example_7_7.sce @@ -0,0 +1,72 @@ +//Chapter 7 +//Example 7.7 +//page 281 +//To find the optimal generation schedule for a typical day of the fundamental hydrothermal system +clear;clc; + +h_b=20;//basic head of the water +e=0.005; //head correction factor +r=2; //non-effective water discharge +Pd_1=7; Pd_2=10; Pd_3=5; //load at three intervals of time during a day +alpha=0.5;//positive scalar +X_0=100; //initial water storage in the reservoir +X_3=60; //final water storage in the reservoir +//let us assume the initial values of the control variables +q_2=15; +q_3=15; +i=0; //iteration count +grad_2=1;grad_3=1; //inital value for iterations + +while ((grad_2>0.1)|(grad_3>0.1)) + +//water discharge in the first interval +q_1=X_0-X_3-(q_2+q_3); + +//water level after the first intervals are +X_1=X_0-q_1; +X_2=X_1-q_2; + +//hydro generations in the subintervals +Pgh_1=9.81*(10^-3)*20*(1+0.5*e*(X_1+X_0))*(q_1-r); +Pgh_2=9.81*(10^-3)*20*(1+0.5*e*(X_2+X_1))*(q_2-r); +Pgh_3=9.81*(10^-3)*20*(1+0.5*e*(X_3+X_2))*(q_3-r); + +//thermal generation in the three intervals +Pgt_1=Pd_1-Pgh_1; +Pgt_2=Pd_2-Pgh_2; +Pgt_3=Pd_3-Pgh_3; + +//calculating lamda_1 for three subintervals +lamda_1_1=Pgt_1+25; +lamda_1_2=Pgt_2+25; +lamda_1_3=Pgt_3+25; + +//since we are considering lossless case +lamda_3_1=lamda_1_1; +lamda_3_2=lamda_1_2; +lamda_3_3=lamda_1_3; + +//for calculating lamda_2 for three intervals +lamda_2_1=lamda_3_1*9.81*(10^-3)*20*(1+0.5*e*(2*X_0-2*q_1+r)); +lamda_2_2=lamda_2_1-lamda_3_1*(0.5*9.81*(10^-3)*20*e*(q_1-r))-lamda_3_2*(0.5*9.81*(10^-3)*20*e*(q_2-r)); +lamda_2_3=lamda_2_2-lamda_3_2*(0.5*9.81*(10^-3)*20*e*(q_2-r))-lamda_3_3*(0.5*9.81*(10^-3)*20*e*(q_3-r)); + +//calculation of gradient vector +grad_2=lamda_2_2-lamda_3_2*9.81*(10^-3)*20*(1+0.5*e*(2*X_1-2*q_2+r)); +grad_3=lamda_2_3-lamda_3_3*9.81*(10^-3)*20*(1+0.5*e*(2*X_2-2*q_3+r)); + +q_2=q_2-alpha*grad_2; //updating value of q and reiterating +q_3=q_3-alpha*grad_3; +i=i+1; +end + +//Hydel and thermal generation for the three sub interavals are given in tabular format +printf('\nResults for Optimal Loading of Hydrothermal stations at the end of %d iterations',i); +printf('\n---------------------------------------------------------------------------------------\n'); +printf('Interval\t\tLoad\t\tHydro\t\tThermal\t\tWater discharge\n'); +printf(' \t\tMW\t\tMW\t\tMW\t\tm^3/s\n'); +printf('---------------------------------------------------------------------------------------\n'); +printf(' 1 \t\t%d\t\t%0.4f\t\t%0.4f\t\t%0.2f\n',Pd_1,Pgh_1,Pgt_1,q_1); +printf(' 2 \t\t%d\t\t%0.4f\t\t%0.4f\t\t%0.2f\n',Pd_2,Pgh_2,Pgt_2,q_2); +printf(' 3 \t\t%d\t\t%0.4f\t\t%0.4f\t\t%0.2f\n',Pd_3,Pgh_3,Pgt_3,q_3); +printf('---------------------------------------------------------------------------------------\n'); diff --git a/Working_Examples/83/CH7/EX7.7/result_example_7_7.txt b/Working_Examples/83/CH7/EX7.7/result_example_7_7.txt new file mode 100755 index 0000000..7ba65bd --- /dev/null +++ b/Working_Examples/83/CH7/EX7.7/result_example_7_7.txt @@ -0,0 +1,11 @@ +Results for Optimal Loading of Hydrothermal stations at the end of 46 iterations +--------------------------------------------------------------------------------------- +Interval Load Hydro Thermal Water discharge + MW MW MW m^3/s +--------------------------------------------------------------------------------------- + 1 7 3.0068 3.9932 12.43 + 2 10 5.0295 4.9705 20.53 + 3 5 1.3133 3.6867 7.03 +--------------------------------------------------------------------------------------- + + diff --git a/Working_Examples/83/CH8/EX8.1/example_8_1.sce b/Working_Examples/83/CH8/EX8.1/example_8_1.sce new file mode 100755 index 0000000..1aca454 --- /dev/null +++ b/Working_Examples/83/CH8/EX8.1/example_8_1.sce @@ -0,0 +1,18 @@ +//Chapter 8 +//Example 8.1 +//page 300 +//To determine the change in the frequency +clear;clc; +f=50; +H=5e3; +KE=H*100*1000; //K.E stored in the generator +PI=50e6; //power input to generator before the stem valve is closed +EE=PI*0.4 ; //Excess energy input to the rotating parts +fnew=f*((KE+EE)/KE)^0.5; //frequency at the end of the 0.4sec +printf('\nKinetic Energy stored in the rotating parts of generator and turbine = %d kW-sec',KE/1000); +printf('\nExcess power input to generator before the stem valve begins to close=%d MW',PI/1000000); +printf('\nExcess energy input to rotating parts in 0.4sec=%d kW-sec',EE/1000); +printf('\nFrequency at the end of 0.4sec=%0.2f Hz\n\n',fnew); + + + diff --git a/Working_Examples/83/CH8/EX8.1/result_example_8_1.txt b/Working_Examples/83/CH8/EX8.1/result_example_8_1.txt new file mode 100755 index 0000000..30dcfbe --- /dev/null +++ b/Working_Examples/83/CH8/EX8.1/result_example_8_1.txt @@ -0,0 +1,8 @@ + + +Kinetic Energy stored in the rotating parts of generator and turbine = 500000 kW-sec +Excess power input to generator before the stem valve begins to close=50 MW +Excess energy input to rotating parts in 0.4sec=20000 kW-sec +Frequency at the end of 0.4sec=50.99 Hz + + diff --git a/Working_Examples/83/CH8/EX8.2/example_8_2.sce b/Working_Examples/83/CH8/EX8.2/example_8_2.sce new file mode 100755 index 0000000..79f91fa --- /dev/null +++ b/Working_Examples/83/CH8/EX8.2/example_8_2.sce @@ -0,0 +1,13 @@ +//Chapter 8 +//Example 8.2 +//page 301 +//To determine determine load sharing and system frequency +clear;clc; +f=50; // system frequency +x=200; //load on first generator(value is assumed first) +delta_f=0.01*x; //from the first equation given in the book +x=(3.75)/(0.01+0.00625); //by substituting (i) in (ii) +delta_f=0.01*x; //recalculating the value +x2=600-x; +printf('\nLoad shared by the generator:\n\t Generator1=%0.2f MW\n\tGenerator2=%0.2f MW\n',x,x2); +printf('\nSystem Frequency=%0.2f Hz\n\n',f-delta_f); diff --git a/Working_Examples/83/CH8/EX8.2/result_example_8_2.txt b/Working_Examples/83/CH8/EX8.2/result_example_8_2.txt new file mode 100755 index 0000000..d28f95d --- /dev/null +++ b/Working_Examples/83/CH8/EX8.2/result_example_8_2.txt @@ -0,0 +1,8 @@ + + +Load shared by the generator: + Generator1=230.77 MW + Generator2=369.23 MW + +System Frequency=47.69 Hz + diff --git a/Working_Examples/83/CH9/EX9.1/example_9_1.sce b/Working_Examples/83/CH9/EX9.1/example_9_1.sce new file mode 100755 index 0000000..d845c45 --- /dev/null +++ b/Working_Examples/83/CH9/EX9.1/example_9_1.sce @@ -0,0 +1,45 @@ +//Chapter 9 +//Example 9.1 +//page 335 +//To calculate fault current +clear;clc; +//selecting base KVA and MVA +mvab=100; +Gmva=10; +T1mva=10; T2mva=5; +Gkvb=11; //generator kV base +OHLkvb=33; //overhead line kV base +Ckvb=6.6;// cable kB base +xg1=%i*0.15; xg2=%i*0.125; xt1=%i*0.10; xt2=%i*0.08; +xOHL=0.27+%i*0.36 ; xcab= 0.135+%i*0.08; + +//clculating PU impedances + +xg1=(xg1*mvab)/Gmva; +xg2=(xg2*mvab)/Gmva; +xt1=(xt1*mvab)/T1mva; +xt2=(xt2*mvab)/T2mva; +xOHL=(30*xOHL*mvab)/(OHLkvb^2); +xcab=(3*xcab*mvab)/(Ckvb^2); +//displaying results +printf('\n Reactance of G1= j%0.1f pu \n',abs(imag(xg1))); +printf(' Reactance of G2= j%0.1f pu\n',abs(imag(xg2))); +printf(' Reactance of T1= j%0.1f pu\n',abs(imag(xt1))); +printf(' Reactance of T2= j%0.1f pu\n',abs(imag(xt2))); +printf(' Overhead line impedance=(%0.3f + j%0.3f) pu\n',real(xOHL),abs(imag(xOHL))); +printf(' Cable impedance= (%0.3f + j%0.3f) pu\n',real(xcab),abs(imag(xcab))); + +// Impedance diagram is as shown in the figure9.7 in the textbook +// A XCOS simulation for this proble is done to explain the subtransient,transient and steady state periods of a symmetrical short circuit +xtotal=((xg1*xg2)/(xg1+xg2)+xt1+xt2+xOHL+xcab); +Isc_pu=(1/xtotal); +Ibase=(mvab/(sqrt(3)*Ckvb))*1000; +Isc=Isc_pu*Ibase; +x_F_to_bus=(xt1+xt2+xOHL+xcab); +v_11b=x_F_to_bus*Isc_pu*11; +//displaying results +printf('\nTotal impedance= %0.1f < %0.2f deg pu \n',abs(xtotal),atand(imag(xtotal)/real(xtotal))); +printf('Short circuit current= %d A\n',abs(Isc)); +printf('Voltage at 11kV bus=%0.2f kV\n',abs(v_11b)); + + diff --git a/Working_Examples/83/CH9/EX9.1/example_9_1_3phase_plot.xcos b/Working_Examples/83/CH9/EX9.1/example_9_1_3phase_plot.xcos new file mode 100755 index 0000000..e08ac86 --- /dev/null +++ b/Working_Examples/83/CH9/EX9.1/example_9_1_3phase_plot.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" finalIntegrationTime="0.2" title="example_9_1_3phase_plot"><!--Xcos - 1.0 - scilab-5.5.2 - 20160406 2040--><mxGraphModel as="model"><root><mxCell id="-62268d13:130f6b46d8a:-7eea"/><mxCell id="-62268d13:130f6b46d8a:-7eeb" parent="-62268d13:130f6b46d8a:-7eea"/><ImplicitLink id="-62268d13:130f6b46d8a:-7ec1" parent="-62268d13:130f6b46d8a:-7eeb" source="-62268d13:130f6b46d8a:-7ed8" target="-62268d13:130f6b46d8a:-7ed4"><mxGeometry as="geometry" x="496.0" y="70.0"><mxPoint as="sourcePoint" x="1040.0" y="230.0"/><mxPoint as="targetPoint" x="1126.0" y="230.0"/></mxGeometry></ImplicitLink><ImplicitLink id="-62268d13:130f6b46d8a:-7ec0" parent="-62268d13:130f6b46d8a:-7eeb" source="-62268d13:130f6b46d8a:-7ed5" target="-62268d13:130f6b46d8a:-7ed2"><mxGeometry as="geometry" x="496.0" y="70.0"><mxPoint as="sourcePoint" x="1180.0" y="230.0"/><mxPoint as="targetPoint" x="1236.0" y="230.0"/></mxGeometry></ImplicitLink><ImplicitLink id="-62268d13:130f6b46d8a:-7ebf" parent="-62268d13:130f6b46d8a:-7eeb" source="-62268d13:130f6b46d8a:-7ed1" target="-62268d13:130f6b46d8a:-7ece"><mxGeometry as="geometry" x="496.0" y="70.0"><mxPoint as="sourcePoint" x="1280.0" y="230.0"/><mxPoint as="targetPoint" x="1316.0" y="230.0"/></mxGeometry></ImplicitLink><BasicBlock dependsOnU="1" id="-62268d13:130f6b46d8a:-7ebe" interfaceFunctionName="Inductor" ordering="1" parent="-62268d13:130f6b46d8a:-7eeb" simulationFunctionName="Inductor" simulationFunctionType="DEFAULT" style="mirror=false;Inductor;flip=false;shadow=false" value="Inductor"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="0.0047746482"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="0.0047746482"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Inductor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="L"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0047746482"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="50.0" width="50.0" x="480.0" y="150.0"/></BasicBlock><ImplicitInputPort dataLines="1" dataType="REAL_MATRIX" id="-62268d13:130f6b46d8a:-7ebc" ordering="1" parent="-62268d13:130f6b46d8a:-7ebe" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><mxCell connectable="0" id="-62268d13:130f6b46d8a:-7ebe#identifier" parent="-62268d13:130f6b46d8a:-7ebe" style="noLabel=0;opacity=0;" vertex="1"><mxGeometry as="geometry" relative="1" x="0.5" y="1.1"/></mxCell><ImplicitOutputPort dataLines="1" dataType="REAL_MATRIX" id="-62268d13:130f6b46d8a:-7ebd" ordering="1" parent="-62268d13:130f6b46d8a:-7ebe" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="50.0" y="16.0"/></ImplicitOutputPort><BasicBlock dependsOnU="1" id="-62268d13:130f6b46d8a:-7e95" interfaceFunctionName="CurrentSensor" ordering="2" parent="-62268d13:130f6b46d8a:-7eeb" simulationFunctionName="CurrentSensor" simulationFunctionType="DEFAULT" style="mirror=false;CurrentSensor;rotation=0;flip=false" value="CurrentSensor"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CurrentSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="i"/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="720.0" y="600.0"/></BasicBlock><ImplicitOutputPort dataLines="1" dataType="REAL_MATRIX" id="-62268d13:130f6b46d8a:-7e92" ordering="1" parent="-62268d13:130f6b46d8a:-7e95" style="mirror=false;rotation=0;ImplicitOutputPort;flip=false;align=right;verticalAlign=middle;spacing=10"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="6.0"/></ImplicitOutputPort><ExplicitOutputPort dataLines="1" dataType="REAL_MATRIX" id="-62268d13:130f6b46d8a:-7e94" ordering="2" parent="-62268d13:130f6b46d8a:-7e95" style="mirror=false;ExplicitOutputPort;rotation=0;flip=false;align=right;verticalAlign=middle;spacing=10"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="26.0"/></ExplicitOutputPort><ImplicitInputPort dataLines="1" dataType="REAL_MATRIX" id="-62268d13:130f6b46d8a:-7e93" ordering="1" parent="-62268d13:130f6b46d8a:-7e95" style="mirror=false;rotation=0;ImplicitInputPort;flip=false;align=left;verticalAlign=middle;spacing=10"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="-62268d13:130f6b46d8a:-7e91" interfaceFunctionName="CMSCOPE" ordering="3" parent="-62268d13:130f6b46d8a:-7eeb" simulationFunctionName="cmscope" simulationFunctionType="C_OR_FORTRAN" style="mirror=false;CMSCOPE;rotation=0;flip=false" value="<html><body> MScope </body></html>"><ScilabString as="exprs" height="11" width="1"><data column="0" line="0" value="1 1"/><data column="0" line="1" value="1 3 5 7 9 11 13 15"/><data column="0" line="2" value="1"/><data column="0" line="3" value="[]"/><data column="0" line="4" value="[]"/><data column="0" line="5" value="-2 -0.5"/><data column="0" line="6" value="2 0.5"/><data column="0" line="7" value=".2 .2"/><data column="0" line="8" value="2"/><data column="0" line="9" value="0"/><data column="0" line="10" value="R phase: Voltage and Fault Current"/></ScilabString><ScilabDouble as="realParameters" height="7" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="0.2"/><data column="0" line="2" realPart="0.2"/><data column="0" line="3" realPart="-2.0"/><data column="0" line="4" realPart="2.0"/><data column="0" line="5" realPart="-0.5"/><data column="0" line="6" realPart="0.5"/></ScilabDouble><ScilabDouble as="integerParameters" height="12" width="1"><data column="0" line="0" realPart="1.0"/><data column="0" line="1" realPart="2.0"/><data column="0" line="2" realPart="2.0"/><data column="0" line="3" realPart="-1.0"/><data column="0" line="4" realPart="-1.0"/><data column="0" line="5" realPart="-1.0"/><data column="0" line="6" realPart="-1.0"/><data column="0" line="7" realPart="1.0"/><data column="0" line="8" realPart="1.0"/><data column="0" line="9" realPart="1.0"/><data column="0" line="10" realPart="3.0"/><data column="0" line="11" realPart="0.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="1050.0" y="440.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-72f583ad:131105b55e2:-7926" ordering="1" parent="-62268d13:130f6b46d8a:-7e91" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ExplicitInputPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-72f583ad:131105b55e2:-7925" ordering="2" parent="-62268d13:130f6b46d8a:-7e91" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="26.0"/></ExplicitInputPort><ControlPort dataType="UNKNOW_TYPE" id="-72f583ad:131105b55e2:-7924" ordering="1" parent="-62268d13:130f6b46d8a:-7e91" style="ControlPort;align=center;verticalAlign=top;spacing=10.0;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><ExplicitLink id="-62268d13:130f6b46d8a:-7e8d" parent="-62268d13:130f6b46d8a:-7eeb" source="-62268d13:130f6b46d8a:-7e94" style="ExplicitLink;noEdgeStyle=0;edgeStyle=elbowEdgeStyle;elbow=horizontal" target="-72f583ad:131105b55e2:-7925"><mxGeometry as="geometry" height="80.0" width="80.0" x="563.0" y="240.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ExplicitLink><CommandControlLink id="-62268d13:130f6b46d8a:-7e8c" parent="-62268d13:130f6b46d8a:-7eeb" source="-1c319e25:130fec5b885:-7dcb" target="-72f583ad:131105b55e2:-7924"><mxGeometry as="geometry" height="80.0" width="80.0" x="656.0" y="313.0"/></CommandControlLink><ExplicitLink id="-62268d13:130f6b46d8a:-7e86" parent="-62268d13:130f6b46d8a:-7eeb" source="-62268d13:130f6b46d8a:-7e89" style="ExplicitLink;edgeStyle=elbowEdgeStyle;elbow=horizontal" target="-72f583ad:131105b55e2:-7926"><mxGeometry as="geometry" relative="1"><Array as="points" scilabClass="ScilabList"><mxPoint x="990.0" y="420.0"/></Array></mxGeometry></ExplicitLink><BasicBlock blockType="h" id="-62268d13:130f6b46d8a:-7e76" interfaceFunctionName="CLOCK_f" ordering="4" parent="-62268d13:130f6b46d8a:-7eeb" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="mirror=false;rotation=0;CLOCK_f;flip=false" value="CLOCK_f"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-4"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="79.0"/><data column="1" line="0" realPart="-110.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-72f583ad:131105b55e2:-7ee1"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-72f583ad:131105b55e2:-7ee1"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.0001"/><data column="0" line="1" value="00"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0E-4"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-72f583ad:131105b55e2:-7edd"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-72f583ad:131105b55e2:-7edd"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="252.71065999999996"/><data column="1" line="0" realPart="-292.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="8.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="4.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-72f583ad:131105b55e2:-7ed8"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-72f583ad:131105b55e2:-7ed8"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="338.0"/><data column="0" line="2" realPart="263.37732666666665"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="4.0"/><data column="0" line="1" realPart="-556.0"/><data column="0" line="2" realPart="-296.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="264.71065999999996"/><data column="0" line="1" realPart="139.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-280.0"/><data column="0" line="1" realPart="-66.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="266.0439933333333"/><data column="0" line="1" realPart="443.71000000000004"/><data column="0" line="2" realPart="403.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-296.0"/><data column="0" line="1" realPart="-314.0"/><data column="0" line="2" realPart="-314.0"/><data column="0" line="3" realPart="-44.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="1049.50029" y="370.14363"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="-1c319e25:130fec5b885:-7dcb" ordering="1" parent="-62268d13:130f6b46d8a:-7e76" style="CommandPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><GroundBlock dependsOnU="1" id="-62268d13:130f6b46d8a:-7e7f" interfaceFunctionName="Ground" ordering="5" parent="-62268d13:130f6b46d8a:-7eeb" simulationFunctionName="Ground" simulationFunctionType="DEFAULT" style="Ground;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Ground"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="190.0" y="490.0"/></GroundBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-62268d13:130f6b46d8a:-7e7e" ordering="1" parent="-62268d13:130f6b46d8a:-7e7f" style="ImplicitInputPort;align=center;rotation=90;flip=false;mirror=false;verticalAlign=top;spacing=10"><Orientation as="orientation" value="NORTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="-62268d13:130f6b46d8a:-7ee5" interfaceFunctionName="Inductor" ordering="6" parent="-62268d13:130f6b46d8a:-7eeb" simulationFunctionName="Inductor" simulationFunctionType="DEFAULT" style="mirror=false;Inductor;flip=false" value="Inductor"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="0.0039788735"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="0.0039788735"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Inductor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="L"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0039788735"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="50.0" x="480.0" y="250.0"/></BasicBlock><ImplicitInputPort dataLines="1" dataType="REAL_MATRIX" id="-62268d13:130f6b46d8a:-7ee3" ordering="1" parent="-62268d13:130f6b46d8a:-7ee5" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataLines="1" dataType="REAL_MATRIX" id="-62268d13:130f6b46d8a:-7ee4" ordering="1" parent="-62268d13:130f6b46d8a:-7ee5" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="50.0" y="16.0"/></ImplicitOutputPort><BasicBlock dependsOnU="1" id="-62268d13:130f6b46d8a:-7edc" interfaceFunctionName="Resistor" ordering="7" parent="-62268d13:130f6b46d8a:-7eeb" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="0.744"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="0.744"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.744"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="906.0" y="210.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-62268d13:130f6b46d8a:-7eda" ordering="1" parent="-62268d13:130f6b46d8a:-7edc" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-62268d13:130f6b46d8a:-7edb" ordering="1" parent="-62268d13:130f6b46d8a:-7edc" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><TextBlock id="-1c319e25:130fec5b885:-7e13" parent="-62268d13:130f6b46d8a:-7eeb" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;flip=false;mirror=false" value="Generator 1"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="Generator 1"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="Generator 1"/></ScilabString><mxGeometry as="geometry" height="20.0" width="40.0" x="340.0" y="120.0"/></TextBlock><TextBlock id="-1c319e25:130fec5b885:-7e11" parent="-62268d13:130f6b46d8a:-7eeb" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=13;flip=false;mirror=false" value="Generator 2"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="Generator 2"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="Generator 2"/></ScilabString><mxGeometry as="geometry" height="20.0" width="30.0" x="360.0" y="300.0"/></TextBlock><TextBlock id="-1c319e25:130fec5b885:-7e05" parent="-62268d13:130f6b46d8a:-7eeb" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;flip=false;mirror=false" value="j1.5"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="j1.5"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="j1.5"/></ScilabString><mxGeometry as="geometry" height="20.0" width="40.0" x="490.0" y="120.0"/></TextBlock><TextBlock id="-1c319e25:130fec5b885:-7e02" parent="-62268d13:130f6b46d8a:-7eeb" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;flip=false;mirror=false" value="j2.5"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="j2.5"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="j2.5"/></ScilabString><mxGeometry as="geometry" height="20.0" width="40.0" x="480.0" y="300.0"/></TextBlock><TextBlock id="-1c319e25:130fec5b885:-7dee" parent="-62268d13:130f6b46d8a:-7eeb" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;flip=false;mirror=false" value="j1.0"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="j1.0"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="j1.0"/></ScilabString><mxGeometry as="geometry" height="20.0" width="40.0" x="770.0" y="180.0"/></TextBlock><TextBlock id="-1c319e25:130fec5b885:-7dea" parent="-62268d13:130f6b46d8a:-7eeb" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;flip=false;mirror=false" value="(0.744 + j0.99)"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="(0.744 + j0.99)"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="(0.744 + j0.99)"/></ScilabString><mxGeometry as="geometry" height="20.0" width="40.0" x="950.0" y="180.0"/></TextBlock><TextBlock id="-1c319e25:130fec5b885:-7de6" parent="-62268d13:130f6b46d8a:-7eeb" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;flip=false;mirror=false" value="j1.6"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="j1.6"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="j1.6"/></ScilabString><mxGeometry as="geometry" height="20.0" width="40.0" x="1130.0" y="180.0"/></TextBlock><TextBlock id="-1c319e25:130fec5b885:-7de4" parent="-62268d13:130f6b46d8a:-7eeb" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;flip=false;mirror=false" value="(0.93 + j0.55)"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="(0.93 + j0.55)"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="(0.93 + j0.55)"/></ScilabString><mxGeometry as="geometry" height="20.0" width="40.0" x="1280.0" y="180.0"/></TextBlock><TextBlock id="-1c319e25:130fec5b885:-7dd9" parent="-62268d13:130f6b46d8a:-7eeb" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=15;fontColor=#E3301E;flip=false;mirror=false" value="F"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="F"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="F"/></ScilabString><mxGeometry as="geometry" height="20.0" width="40.0" x="1460.0" y="200.0"/></TextBlock><TextBlock id="-1c319e25:130fec5b885:-7dd5" parent="-62268d13:130f6b46d8a:-7eeb" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=13;fontColor=#292AFE;flip=false;mirror=false" value="Phase R Voltage"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="Phase R Voltage"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="Phase R Voltage"/></ScilabString><mxGeometry as="geometry" height="20.0" width="200.0" x="350.0" y="410.0"/></TextBlock><TextBlock id="-1c319e25:130fec5b885:-7dce" parent="-62268d13:130f6b46d8a:-7eeb" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=13;fontColor=#292AFE;flip=false;mirror=false" value="Phase R Fault Current"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="Phase R Fault Current"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="Phase R Fault Current"/></ScilabString><mxGeometry as="geometry" height="20.0" width="200.0" x="660.0" y="650.0"/></TextBlock><BasicBlock dependsOnU="1" id="-62268d13:130f6b46d8a:-7ed9" interfaceFunctionName="Inductor" ordering="8" parent="-62268d13:130f6b46d8a:-7eeb" simulationFunctionName="Inductor" simulationFunctionType="DEFAULT" style="mirror=false;Inductor;flip=false" value="Inductor"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="0.0031512678"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="0.0031512678"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Inductor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="L"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0031512678"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="50.0" width="50.0" x="986.0" y="210.0"/></BasicBlock><ImplicitInputPort dataLines="1" dataType="REAL_MATRIX" id="-62268d13:130f6b46d8a:-7ed7" ordering="1" parent="-62268d13:130f6b46d8a:-7ed9" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataLines="1" dataType="REAL_MATRIX" id="-62268d13:130f6b46d8a:-7ed8" ordering="1" parent="-62268d13:130f6b46d8a:-7ed9" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="50.0" y="16.0"/></ImplicitOutputPort><BasicBlock dependsOnU="1" id="-62268d13:130f6b46d8a:-7ed6" interfaceFunctionName="Inductor" ordering="9" parent="-62268d13:130f6b46d8a:-7eeb" simulationFunctionName="Inductor" simulationFunctionType="DEFAULT" style="mirror=false;Inductor;flip=false" value="Inductor"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="0.0050929581"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="0.0050929581"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Inductor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="L"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0050929581"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="50.0" width="50.0" x="1126.0" y="210.0"/></BasicBlock><ImplicitInputPort dataLines="1" dataType="REAL_MATRIX" id="-62268d13:130f6b46d8a:-7ed4" ordering="1" parent="-62268d13:130f6b46d8a:-7ed6" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataLines="1" dataType="REAL_MATRIX" id="-62268d13:130f6b46d8a:-7ed5" ordering="1" parent="-62268d13:130f6b46d8a:-7ed6" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="50.0" y="16.0"/></ImplicitOutputPort><BasicBlock dependsOnU="1" id="-62268d13:130f6b46d8a:-7ed3" interfaceFunctionName="Resistor" ordering="10" parent="-62268d13:130f6b46d8a:-7eeb" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="0.93"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="0.93"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.93"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="1236.0" y="210.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-62268d13:130f6b46d8a:-7ed1" ordering="1" parent="-62268d13:130f6b46d8a:-7ed3" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-62268d13:130f6b46d8a:-7ed2" ordering="1" parent="-62268d13:130f6b46d8a:-7ed3" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="73620253:131100f081f:-7abc" interfaceFunctionName="Switch" ordering="11" parent="-62268d13:130f6b46d8a:-7eeb" simulationFunctionName="Switch" simulationFunctionType="DEFAULT" style="Switch;flip=false;mirror=false"><ScilabString as="exprs" height="2" width="1"><data column="0" line="0" value="0.000001"/><data column="0" line="1" value="100000"/></ScilabString><ScilabDouble as="realParameters" height="2" width="1"><data column="0" line="0" realPart="0.01"/><data column="0" line="1" realPart="100000.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Switch"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="p"/><data column="0" line="1" value="inp"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="2" width="1"><data column="0" line="0" value="Ron"/><data column="0" line="1" value="Roff"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0E-6"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="1420.0" y="220.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="3b7a3c23:13110576cee:-7f30" ordering="1" parent="73620253:131100f081f:-7abc" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ImplicitInputPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="3b7a3c23:13110576cee:-7f2f" ordering="2" parent="73620253:131100f081f:-7abc" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="26.0"/></ExplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="3b7a3c23:13110576cee:-7f2e" ordering="1" parent="73620253:131100f081f:-7abc" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><BasicBlock blockType="h" id="73620253:131100f081f:-7ab3" interfaceFunctionName="STEP_FUNCTION" ordering="12" parent="-62268d13:130f6b46d8a:-7eeb" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="STEP_FUNCTION;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="STEP_FUNCTION"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-4"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="14.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=" "/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="3" width="1"><data column="0" line="0" value="0.0008"/><data column="0" line="1" value="-1"/><data column="0" line="2" value="5"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"STEP",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="STEP"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="step_func"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0E-4"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="true"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-72f583ad:131105b55e2:-7ecd"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="STEP"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-72f583ad:131105b55e2:-7ecd"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="188.571433"/><data column="1" line="0" realPart="-150.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"OUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="OUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-2.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-72f583ad:131105b55e2:-7eca"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="OUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-72f583ad:131105b55e2:-7eca"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="6" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="324.000003"/><data column="0" line="2" realPart="285.478395"/><data column="0" line="3" realPart="285.478395"/><data column="0" line="4" realPart="324.000003"/><data column="0" line="5" realPart="60.0"/></ScilabDouble><ScilabDouble height="6" width="1"><data column="0" line="0" realPart="-44.0"/><data column="0" line="1" realPart="-406.39289999999994"/><data column="0" line="2" realPart="-406.39289999999994"/><data column="0" line="3" realPart="-316.69678"/><data column="0" line="4" realPart="-316.69678"/><data column="0" line="5" realPart="4.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="84.0"/><data column="0" line="1" realPart="204.571433"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-20.0"/><data column="0" line="1" realPart="-140.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="1610.0" y="510.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataType="REAL_MATRIX" id="3b7a3c23:13110576cee:-7f33" ordering="1" parent="73620253:131100f081f:-7ab3" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ImplicitLink id="73620253:131100f081f:-7aa5" parent="-62268d13:130f6b46d8a:-7eeb" source="-62268d13:130f6b46d8a:-7ecf" target="3b7a3c23:13110576cee:-7f30"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="1416.0" y="230.0"/><mxPoint as="targetPoint" x="1370.0" y="230.0"/></mxGeometry></ImplicitLink><BasicBlock dependsOnU="1" id="-62268d13:130f6b46d8a:-7ed0" interfaceFunctionName="Inductor" ordering="13" parent="-62268d13:130f6b46d8a:-7eeb" simulationFunctionName="Inductor" simulationFunctionType="DEFAULT" style="mirror=false;Inductor;flip=false" value="Inductor"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="0.0017507043"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="0.0017507043"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Inductor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="L"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0017507043"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="50.0" width="50.0" x="1316.0" y="210.0"/></BasicBlock><ImplicitInputPort dataLines="1" dataType="REAL_MATRIX" id="-62268d13:130f6b46d8a:-7ece" ordering="1" parent="-62268d13:130f6b46d8a:-7ed0" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataLines="1" dataType="REAL_MATRIX" id="-62268d13:130f6b46d8a:-7ecf" ordering="1" parent="-62268d13:130f6b46d8a:-7ed0" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="50.0" y="16.0"/></ImplicitOutputPort><SplitBlock id="38b3b6e7:131103c7d69:-7eb4" ordering="14" parent="-62268d13:130f6b46d8a:-7eeb" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="587.0" y="227.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="38b3b6e7:131103c7d69:-7eb3" ordering="1" parent="38b3b6e7:131103c7d69:-7eb4" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="38b3b6e7:131103c7d69:-7eb2" ordering="1" parent="38b3b6e7:131103c7d69:-7eb4" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="38b3b6e7:131103c7d69:-7eb1" ordering="2" parent="38b3b6e7:131103c7d69:-7eb4" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitLink id="38b3b6e7:131103c7d69:-7eaf" parent="-62268d13:130f6b46d8a:-7eeb" source="-62268d13:130f6b46d8a:-7ebd" target="38b3b6e7:131103c7d69:-7eb2"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="590.0" y="170.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="38b3b6e7:131103c7d69:-7eb5" parent="-62268d13:130f6b46d8a:-7eeb" source="38b3b6e7:131103c7d69:-7eb1" target="-62268d13:130f6b46d8a:-7ecb"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="762.0" y="230.0"/><mxPoint as="targetPoint" x="590.0" y="230.0"/></mxGeometry></ImplicitLink><BasicBlock dependsOnU="1" id="-62268d13:130f6b46d8a:-7ecd" interfaceFunctionName="Inductor" ordering="15" parent="-62268d13:130f6b46d8a:-7eeb" simulationFunctionName="Inductor" simulationFunctionType="DEFAULT" style="mirror=false;Inductor;flip=false" value="Inductor"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="0.0031830988"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="0.0031830988"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Inductor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="L"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0031830988"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="50.0" width="50.0" x="766.0" y="210.0"/></BasicBlock><ImplicitInputPort dataLines="1" dataType="REAL_MATRIX" id="-62268d13:130f6b46d8a:-7ecb" ordering="1" parent="-62268d13:130f6b46d8a:-7ecd" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataLines="1" dataType="REAL_MATRIX" id="-62268d13:130f6b46d8a:-7ecc" ordering="1" parent="-62268d13:130f6b46d8a:-7ecd" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="50.0" y="16.0"/></ImplicitOutputPort><ImplicitLink id="-62268d13:130f6b46d8a:-7ec3" parent="-62268d13:130f6b46d8a:-7eeb" source="-62268d13:130f6b46d8a:-7ecc" target="-62268d13:130f6b46d8a:-7edb"><mxGeometry as="geometry" x="496.0" y="70.0"><mxPoint as="sourcePoint" x="820.0" y="230.0"/><mxPoint as="targetPoint" x="906.0" y="230.0"/></mxGeometry></ImplicitLink><ImplicitLink id="-62268d13:130f6b46d8a:-7ec2" parent="-62268d13:130f6b46d8a:-7eeb" source="-62268d13:130f6b46d8a:-7eda" target="-62268d13:130f6b46d8a:-7ed7"><mxGeometry as="geometry" x="496.0" y="70.0"><mxPoint as="sourcePoint" x="950.0" y="230.0"/><mxPoint as="targetPoint" x="986.0" y="230.0"/></mxGeometry></ImplicitLink><BasicBlock dependsOnU="1" id="-72f583ad:131105b55e2:-7e25" interfaceFunctionName="SineVoltage" ordering="16" parent="-62268d13:130f6b46d8a:-7eeb" simulationFunctionName="SineVoltage" simulationFunctionType="DEFAULT" style="SineVoltage;flip=false;mirror=false"><ScilabString as="exprs" height="5" width="1"><data column="0" line="0" value="1.414"/><data column="0" line="1" value="0"/><data column="0" line="2" value="50"/><data column="0" line="3" value="0"/><data column="0" line="4" value="0"/></ScilabString><ScilabDouble as="realParameters" height="5" width="1"><data column="0" line="0" realPart="1.414"/><data column="0" line="1" realPart="0.0"/><data column="0" line="2" realPart="50.0"/><data column="0" line="3" realPart="0.0"/><data column="0" line="4" realPart="0.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="SineVoltage"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="5" width="1"><data column="0" line="0" value="V"/><data column="0" line="1" value="phase"/><data column="0" line="2" value="freqHz"/><data column="0" line="3" value="offset"/><data column="0" line="4" value="startTime"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.414"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="50.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="60.0" width="50.0" x="350.0" y="140.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-72f583ad:131105b55e2:-7dd3" ordering="1" parent="-72f583ad:131105b55e2:-7e25" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="50.0" y="26.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-72f583ad:131105b55e2:-7dd4" ordering="1" parent="-72f583ad:131105b55e2:-7e25" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="26.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="-72f583ad:131105b55e2:-7e22" interfaceFunctionName="SineVoltage" ordering="17" parent="-62268d13:130f6b46d8a:-7eeb" simulationFunctionName="SineVoltage" simulationFunctionType="DEFAULT" style="SineVoltage;flip=false;mirror=false"><ScilabString as="exprs" height="5" width="1"><data column="0" line="0" value="1.414"/><data column="0" line="1" value="0"/><data column="0" line="2" value="50"/><data column="0" line="3" value="0"/><data column="0" line="4" value="0"/></ScilabString><ScilabDouble as="realParameters" height="5" width="1"><data column="0" line="0" realPart="1.414"/><data column="0" line="1" realPart="0.0"/><data column="0" line="2" realPart="50.0"/><data column="0" line="3" realPart="0.0"/><data column="0" line="4" realPart="0.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="SineVoltage"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="5" width="1"><data column="0" line="0" value="V"/><data column="0" line="1" value="phase"/><data column="0" line="2" value="freqHz"/><data column="0" line="3" value="offset"/><data column="0" line="4" value="startTime"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.414"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="50.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="60.0" width="50.0" x="340.0" y="240.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-72f583ad:131105b55e2:-7dcf" ordering="1" parent="-72f583ad:131105b55e2:-7e22" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="50.0" y="26.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-72f583ad:131105b55e2:-7dd0" ordering="1" parent="-72f583ad:131105b55e2:-7e22" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="26.0"/></ImplicitInputPort><ImplicitLink id="-72f583ad:131105b55e2:-7df7" parent="-62268d13:130f6b46d8a:-7eeb" source="-72f583ad:131105b55e2:-7dd3" target="-62268d13:130f6b46d8a:-7ebc"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="404.0" y="170.0"/><mxPoint as="targetPoint" x="470.0" y="170.0"/></mxGeometry></ImplicitLink><SplitBlock id="-72f583ad:131105b55e2:-7de3" ordering="18" parent="-62268d13:130f6b46d8a:-7eeb" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="207.0" y="267.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="-72f583ad:131105b55e2:-7de2" ordering="1" parent="-72f583ad:131105b55e2:-7de3" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-72f583ad:131105b55e2:-7de1" ordering="1" parent="-72f583ad:131105b55e2:-7de3" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-72f583ad:131105b55e2:-7de0" ordering="2" parent="-72f583ad:131105b55e2:-7de3" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitLink id="-72f583ad:131105b55e2:-7dde" parent="-62268d13:130f6b46d8a:-7eeb" source="-72f583ad:131105b55e2:-7de1" target="-72f583ad:131105b55e2:-7dd4"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="210.0" y="170.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-72f583ad:131105b55e2:-7de4" parent="-62268d13:130f6b46d8a:-7eeb" source="-72f583ad:131105b55e2:-7de0" target="-72f583ad:131105b55e2:-7dd0"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="336.0" y="270.0"/><mxPoint as="targetPoint" x="210.0" y="270.0"/></mxGeometry></ImplicitLink><ImplicitLink id="-72f583ad:131105b55e2:-7dcd" parent="-62268d13:130f6b46d8a:-7eeb" source="-62268d13:130f6b46d8a:-7ee4" target="38b3b6e7:131103c7d69:-7eb3"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="590.0" y="270.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="-72f583ad:131105b55e2:-7db6" ordering="19" parent="-62268d13:130f6b46d8a:-7eeb" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="207.0" y="377.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="-72f583ad:131105b55e2:-7db5" ordering="1" parent="-72f583ad:131105b55e2:-7db6" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-72f583ad:131105b55e2:-7db4" ordering="1" parent="-72f583ad:131105b55e2:-7db6" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-72f583ad:131105b55e2:-7db3" ordering="2" parent="-72f583ad:131105b55e2:-7db6" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitLink id="-72f583ad:131105b55e2:-7db2" parent="-62268d13:130f6b46d8a:-7eeb" source="-72f583ad:131105b55e2:-7de2" target="-72f583ad:131105b55e2:-7db5"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="210.0" y="370.0"/><mxPoint x="210.0" y="280.0"/><mxPoint x="210.0" y="380.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-72f583ad:131105b55e2:-7db1" parent="-62268d13:130f6b46d8a:-7eeb" source="-72f583ad:131105b55e2:-7db4" target="-62268d13:130f6b46d8a:-7e88"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><SplitBlock id="-72f583ad:131105b55e2:-7d7f" ordering="20" parent="-62268d13:130f6b46d8a:-7eeb" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="207.0" y="457.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="-72f583ad:131105b55e2:-7d7e" ordering="1" parent="-72f583ad:131105b55e2:-7d7f" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-72f583ad:131105b55e2:-7d7d" ordering="1" parent="-72f583ad:131105b55e2:-7d7f" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-72f583ad:131105b55e2:-7d7c" ordering="2" parent="-72f583ad:131105b55e2:-7d7f" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitLink id="-72f583ad:131105b55e2:-7d7b" parent="-62268d13:130f6b46d8a:-7eeb" source="-72f583ad:131105b55e2:-7db3" target="-72f583ad:131105b55e2:-7d7e"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-72f583ad:131105b55e2:-7d7a" parent="-62268d13:130f6b46d8a:-7eeb" source="-72f583ad:131105b55e2:-7d7d" target="-62268d13:130f6b46d8a:-7e7e"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="210.0" y="460.0"/><mxPoint x="210.0" y="470.0"/><mxPoint x="210.0" y="470.0"/><mxPoint x="210.0" y="490.0"/><mxPoint x="210.0" y="490.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-72f583ad:131105b55e2:-7d80" parent="-62268d13:130f6b46d8a:-7eeb" source="-72f583ad:131105b55e2:-7d7c" target="-62268d13:130f6b46d8a:-7e93"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="716.0" y="620.0000000000001"/><mxPoint as="targetPoint" x="210.84337349397592" y="457.83132530120486"/><Array as="points" scilabClass="ScilabList"><mxPoint x="578.3132530120482" y="457.83132530120486"/><mxPoint x="578.3132530120482" y="620.4819277108434"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-72f583ad:131105b55e2:-7d79" parent="-62268d13:130f6b46d8a:-7eeb" source="3b7a3c23:13110576cee:-7f2e" target="-62268d13:130f6b46d8a:-7e92"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="764.0" y="610.0000000000001"/><mxPoint as="targetPoint" x="1461.5384615384614" y="238.46153846153845"/><Array as="points" scilabClass="ScilabList"><mxPoint x="1490.0" y="240.0"/><mxPoint x="1492.3076923076922" y="607.6923076923076"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-72f583ad:131105b55e2:-7d12" parent="-62268d13:130f6b46d8a:-7eeb" source="-72f583ad:131105b55e2:-7ce6" target="-72f583ad:131105b55e2:-7ce4"><mxGeometry as="geometry" x="506.0" y="660.0"><mxPoint as="sourcePoint" x="1050.0" y="820.0"/><mxPoint as="targetPoint" x="1136.0" y="820.0"/></mxGeometry></ImplicitLink><ImplicitLink id="-72f583ad:131105b55e2:-7d11" parent="-62268d13:130f6b46d8a:-7eeb" source="-72f583ad:131105b55e2:-7ce3" target="-72f583ad:131105b55e2:-7ce0"><mxGeometry as="geometry" x="506.0" y="660.0"><mxPoint as="sourcePoint" x="1190.0" y="820.0"/><mxPoint as="targetPoint" x="1246.0" y="820.0"/></mxGeometry></ImplicitLink><ImplicitLink id="-72f583ad:131105b55e2:-7d10" parent="-62268d13:130f6b46d8a:-7eeb" source="-72f583ad:131105b55e2:-7ce1" target="-72f583ad:131105b55e2:-7cd7"><mxGeometry as="geometry" x="506.0" y="660.0"><mxPoint as="sourcePoint" x="1290.0" y="820.0"/><mxPoint as="targetPoint" x="1326.0" y="820.0"/></mxGeometry></ImplicitLink><BasicBlock dependsOnU="1" id="-72f583ad:131105b55e2:-7d0f" interfaceFunctionName="Inductor" ordering="21" parent="-62268d13:130f6b46d8a:-7eeb" simulationFunctionName="Inductor" simulationFunctionType="DEFAULT" style="mirror=false;Inductor;flip=false;shadow=false" value="Inductor"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="0.0047746482"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="0.0047746482"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Inductor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="L"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0047746482"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="50.0" width="50.0" x="490.0" y="740.0"/></BasicBlock><ImplicitInputPort dataLines="1" dataType="REAL_MATRIX" id="-72f583ad:131105b55e2:-7d0e" ordering="1" parent="-72f583ad:131105b55e2:-7d0f" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><mxCell connectable="0" id="-72f583ad:131105b55e2:-7d0f#identifier" parent="-72f583ad:131105b55e2:-7d0f" style="noLabel=0;opacity=0;" vertex="1"><mxGeometry as="geometry" relative="1" x="0.5" y="1.1"/></mxCell><ImplicitOutputPort dataLines="1" dataType="REAL_MATRIX" id="-72f583ad:131105b55e2:-7d0d" ordering="1" parent="-72f583ad:131105b55e2:-7d0f" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="50.0" y="16.0"/></ImplicitOutputPort><BasicBlock dependsOnU="1" id="-72f583ad:131105b55e2:-7d0c" interfaceFunctionName="CurrentSensor" ordering="22" parent="-62268d13:130f6b46d8a:-7eeb" simulationFunctionName="CurrentSensor" simulationFunctionType="DEFAULT" style="mirror=false;CurrentSensor;rotation=0;flip=false" value="CurrentSensor"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CurrentSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="i"/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="730.0" y="1190.0"/></BasicBlock><ImplicitOutputPort dataLines="1" dataType="REAL_MATRIX" id="-72f583ad:131105b55e2:-7d0b" ordering="1" parent="-72f583ad:131105b55e2:-7d0c" style="mirror=false;rotation=0;ImplicitOutputPort;flip=false;align=right;verticalAlign=middle;spacing=10"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="6.0"/></ImplicitOutputPort><ExplicitOutputPort dataLines="1" dataType="REAL_MATRIX" id="-72f583ad:131105b55e2:-7d0a" ordering="2" parent="-72f583ad:131105b55e2:-7d0c" style="mirror=false;ExplicitOutputPort;rotation=0;flip=false;align=right;verticalAlign=middle;spacing=10"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="26.0"/></ExplicitOutputPort><ImplicitInputPort dataLines="1" dataType="REAL_MATRIX" id="-72f583ad:131105b55e2:-7d09" ordering="1" parent="-72f583ad:131105b55e2:-7d0c" style="mirror=false;rotation=0;ImplicitInputPort;flip=false;align=left;verticalAlign=middle;spacing=10"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="-72f583ad:131105b55e2:-7d08" interfaceFunctionName="CMSCOPE" ordering="23" parent="-62268d13:130f6b46d8a:-7eeb" simulationFunctionName="cmscope" simulationFunctionType="C_OR_FORTRAN" style="mirror=false;CMSCOPE;rotation=0;flip=false" value="<html><body> MScope </body></html>"><ScilabString as="exprs" height="11" width="1"><data column="0" line="0" value="1 1"/><data column="0" line="1" value="1 3 5 7 9 11 13 15"/><data column="0" line="2" value="2"/><data column="0" line="3" value="[]"/><data column="0" line="4" value="[]"/><data column="0" line="5" value="-2 -0.5"/><data column="0" line="6" value="2 0.5"/><data column="0" line="7" value=".2 .2"/><data column="0" line="8" value="2"/><data column="0" line="9" value="0"/><data column="0" line="10" value="Y phase: Voltage and Fault Current"/></ScilabString><ScilabDouble as="realParameters" height="7" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="0.2"/><data column="0" line="2" realPart="0.2"/><data column="0" line="3" realPart="-2.0"/><data column="0" line="4" realPart="2.0"/><data column="0" line="5" realPart="-0.5"/><data column="0" line="6" realPart="0.5"/></ScilabDouble><ScilabDouble as="integerParameters" height="12" width="1"><data column="0" line="0" realPart="2.0"/><data column="0" line="1" realPart="2.0"/><data column="0" line="2" realPart="2.0"/><data column="0" line="3" realPart="-1.0"/><data column="0" line="4" realPart="-1.0"/><data column="0" line="5" realPart="-1.0"/><data column="0" line="6" realPart="-1.0"/><data column="0" line="7" realPart="1.0"/><data column="0" line="8" realPart="1.0"/><data column="0" line="9" realPart="1.0"/><data column="0" line="10" realPart="3.0"/><data column="0" line="11" realPart="0.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="1060.0" y="1030.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-72f583ad:131105b55e2:-7921" ordering="1" parent="-72f583ad:131105b55e2:-7d08" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ExplicitInputPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-72f583ad:131105b55e2:-7920" ordering="2" parent="-72f583ad:131105b55e2:-7d08" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="26.0"/></ExplicitInputPort><ControlPort dataType="UNKNOW_TYPE" id="-72f583ad:131105b55e2:-791f" ordering="1" parent="-72f583ad:131105b55e2:-7d08" style="ControlPort;align=center;verticalAlign=top;spacing=10.0;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><ExplicitLink id="-72f583ad:131105b55e2:-7d04" parent="-62268d13:130f6b46d8a:-7eeb" source="-72f583ad:131105b55e2:-7d0a" style="ExplicitLink;noEdgeStyle=0;edgeStyle=elbowEdgeStyle;elbow=horizontal" target="-72f583ad:131105b55e2:-7920"><mxGeometry as="geometry" height="80.0" width="80.0" x="573.0" y="830.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ExplicitLink><CommandControlLink id="-72f583ad:131105b55e2:-7d03" parent="-62268d13:130f6b46d8a:-7eeb" source="-72f583ad:131105b55e2:-7cfc" target="-72f583ad:131105b55e2:-791f"><mxGeometry as="geometry" height="80.0" width="80.0" x="666.0" y="903.0"/></CommandControlLink><VoltageSensorBlock dependsOnU="1" id="-72f583ad:131105b55e2:-7d02" interfaceFunctionName="VoltageSensor" ordering="24" parent="-62268d13:130f6b46d8a:-7eeb" simulationFunctionName="VoltageSensor" simulationFunctionType="DEFAULT" style="VoltageSensor;rotation=0;flip=true;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="VoltageSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="v"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="50.0" x="420.0" y="950.0"/></VoltageSensorBlock><ImplicitOutputPort dataLines="1" dataType="REAL_MATRIX" id="-72f583ad:131105b55e2:-7d01" ordering="1" parent="-72f583ad:131105b55e2:-7d02" style="mirror=false;rotation=270;ImplicitOutputPort;flip=false;align=center;verticalAlign=top;spacing=10"><Orientation as="orientation" value="SOUTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitOutputPort><ExplicitOutputPort dataLines="1" dataType="REAL_MATRIX" id="-72f583ad:131105b55e2:-7d00" ordering="2" parent="-72f583ad:131105b55e2:-7d02" style="mirror=false;ExplicitOutputPort;rotation=0;flip=false;align=right;verticalAlign=middle;spacing=10"><mxGeometry as="geometry" height="8.0" width="8.0" x="50.0" y="16.0"/></ExplicitOutputPort><ImplicitInputPort dataLines="1" dataType="REAL_MATRIX" id="-72f583ad:131105b55e2:-7cff" ordering="1" parent="-72f583ad:131105b55e2:-7d02" style="mirror=false;ImplicitInputPort;rotation=0;flip=false;align=left;verticalAlign=middle;spacing=10"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ExplicitLink id="-72f583ad:131105b55e2:-7cfe" parent="-62268d13:130f6b46d8a:-7eeb" source="-72f583ad:131105b55e2:-7d00" style="ExplicitLink;edgeStyle=elbowEdgeStyle;elbow=horizontal" target="-72f583ad:131105b55e2:-7921"><mxGeometry as="geometry" relative="1"><Array as="points" scilabClass="ScilabList"><mxPoint x="1000.0" y="1010.0"/></Array></mxGeometry></ExplicitLink><BasicBlock blockType="h" id="-72f583ad:131105b55e2:-7cfd" interfaceFunctionName="CLOCK_f" ordering="25" parent="-62268d13:130f6b46d8a:-7eeb" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="mirror=false;rotation=0;CLOCK_f;flip=false" value="CLOCK_f"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-4"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="79.0"/><data column="1" line="0" realPart="-110.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-72f583ad:131105b55e2:-7ee1"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-72f583ad:131105b55e2:-7ee1"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.0001"/><data column="0" line="1" value="00"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0E-4"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-72f583ad:131105b55e2:-7edd"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-72f583ad:131105b55e2:-7edd"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="252.71065999999996"/><data column="1" line="0" realPart="-292.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="8.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="4.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-72f583ad:131105b55e2:-7ed8"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-72f583ad:131105b55e2:-7ed8"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="338.0"/><data column="0" line="2" realPart="263.37732666666665"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="4.0"/><data column="0" line="1" realPart="-556.0"/><data column="0" line="2" realPart="-296.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="264.71065999999996"/><data column="0" line="1" realPart="139.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-280.0"/><data column="0" line="1" realPart="-66.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="266.0439933333333"/><data column="0" line="1" realPart="443.71000000000004"/><data column="0" line="2" realPart="403.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-296.0"/><data column="0" line="1" realPart="-314.0"/><data column="0" line="2" realPart="-314.0"/><data column="0" line="3" realPart="-44.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="1059.50029" y="960.14363"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="-72f583ad:131105b55e2:-7cfc" ordering="1" parent="-72f583ad:131105b55e2:-7cfd" style="CommandPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><GroundBlock dependsOnU="1" id="-72f583ad:131105b55e2:-7cfb" interfaceFunctionName="Ground" ordering="26" parent="-62268d13:130f6b46d8a:-7eeb" simulationFunctionName="Ground" simulationFunctionType="DEFAULT" style="Ground;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Ground"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="200.0" y="1080.0"/></GroundBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-72f583ad:131105b55e2:-7cfa" ordering="1" parent="-72f583ad:131105b55e2:-7cfb" style="ImplicitInputPort;align=center;rotation=90;flip=false;mirror=false;verticalAlign=top;spacing=10"><Orientation as="orientation" value="NORTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="-72f583ad:131105b55e2:-7cf9" interfaceFunctionName="Inductor" ordering="27" parent="-62268d13:130f6b46d8a:-7eeb" simulationFunctionName="Inductor" simulationFunctionType="DEFAULT" style="mirror=false;Inductor;flip=false" value="Inductor"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="0.0039788735"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="0.0039788735"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Inductor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="L"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0039788735"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="50.0" x="490.0" y="840.0"/></BasicBlock><ImplicitInputPort dataLines="1" dataType="REAL_MATRIX" id="-72f583ad:131105b55e2:-7cf8" ordering="1" parent="-72f583ad:131105b55e2:-7cf9" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataLines="1" dataType="REAL_MATRIX" id="-72f583ad:131105b55e2:-7cf7" ordering="1" parent="-72f583ad:131105b55e2:-7cf9" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="50.0" y="16.0"/></ImplicitOutputPort><BasicBlock dependsOnU="1" id="-72f583ad:131105b55e2:-7cf6" interfaceFunctionName="Resistor" ordering="28" parent="-62268d13:130f6b46d8a:-7eeb" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="0.744"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="0.744"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.744"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="916.0" y="800.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-72f583ad:131105b55e2:-7cf5" ordering="1" parent="-72f583ad:131105b55e2:-7cf6" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-72f583ad:131105b55e2:-7cf4" ordering="1" parent="-72f583ad:131105b55e2:-7cf6" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><TextBlock id="-72f583ad:131105b55e2:-7cf3" parent="-62268d13:130f6b46d8a:-7eeb" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;flip=false;mirror=false" value="Generator 1"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="Generator 1"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="Generator 1"/></ScilabString><mxGeometry as="geometry" height="20.0" width="40.0" x="350.0" y="710.0"/></TextBlock><TextBlock id="-72f583ad:131105b55e2:-7cf2" parent="-62268d13:130f6b46d8a:-7eeb" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=13;flip=false;mirror=false" value="Generator 2"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="Generator 2"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="Generator 2"/></ScilabString><mxGeometry as="geometry" height="20.0" width="30.0" x="370.0" y="890.0"/></TextBlock><TextBlock id="-72f583ad:131105b55e2:-7cf1" parent="-62268d13:130f6b46d8a:-7eeb" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;flip=false;mirror=false" value="j1.5"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="j1.5"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="j1.5"/></ScilabString><mxGeometry as="geometry" height="20.0" width="40.0" x="500.0" y="710.0"/></TextBlock><TextBlock id="-72f583ad:131105b55e2:-7cf0" parent="-62268d13:130f6b46d8a:-7eeb" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;flip=false;mirror=false" value="j2.5"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="j2.5"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="j2.5"/></ScilabString><mxGeometry as="geometry" height="20.0" width="40.0" x="490.0" y="890.0"/></TextBlock><TextBlock id="-72f583ad:131105b55e2:-7cef" parent="-62268d13:130f6b46d8a:-7eeb" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;flip=false;mirror=false" value="j1.0"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="j1.0"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="j1.0"/></ScilabString><mxGeometry as="geometry" height="20.0" width="40.0" x="780.0" y="770.0"/></TextBlock><TextBlock id="-72f583ad:131105b55e2:-7cee" parent="-62268d13:130f6b46d8a:-7eeb" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;flip=false;mirror=false" value="(0.744 + j0.99)"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="(0.744 + j0.99)"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="(0.744 + j0.99)"/></ScilabString><mxGeometry as="geometry" height="20.0" width="40.0" x="960.0" y="770.0"/></TextBlock><TextBlock id="-72f583ad:131105b55e2:-7ced" parent="-62268d13:130f6b46d8a:-7eeb" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;flip=false;mirror=false" value="j1.6"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="j1.6"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="j1.6"/></ScilabString><mxGeometry as="geometry" height="20.0" width="40.0" x="1140.0" y="770.0"/></TextBlock><TextBlock id="-72f583ad:131105b55e2:-7cec" parent="-62268d13:130f6b46d8a:-7eeb" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;flip=false;mirror=false" value="(0.93 + j0.55)"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="(0.93 + j0.55)"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="(0.93 + j0.55)"/></ScilabString><mxGeometry as="geometry" height="20.0" width="40.0" x="1290.0" y="770.0"/></TextBlock><TextBlock id="-72f583ad:131105b55e2:-7ceb" parent="-62268d13:130f6b46d8a:-7eeb" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=15;fontColor=#E3301E;flip=false;mirror=false" value="F"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="F"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="F"/></ScilabString><mxGeometry as="geometry" height="20.0" width="40.0" x="1470.0" y="790.0"/></TextBlock><TextBlock id="-72f583ad:131105b55e2:-7cea" parent="-62268d13:130f6b46d8a:-7eeb" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=13;fontColor=#292AFE;flip=false;mirror=false" value="Phase Y Voltage"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="Phase Y Voltage"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="Phase Y Voltage"/></ScilabString><mxGeometry as="geometry" height="20.0" width="200.0" x="350.0" y="1000.0"/></TextBlock><TextBlock id="-72f583ad:131105b55e2:-7ce9" parent="-62268d13:130f6b46d8a:-7eeb" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=13;fontColor=#292AFE;flip=false;mirror=false" value="Phase Y Fault Current"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="Phase Y Fault Current"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="Phase Y Fault Current"/></ScilabString><mxGeometry as="geometry" height="20.0" width="200.0" x="650.0" y="1240.0"/></TextBlock><BasicBlock dependsOnU="1" id="-72f583ad:131105b55e2:-7ce8" interfaceFunctionName="Inductor" ordering="29" parent="-62268d13:130f6b46d8a:-7eeb" simulationFunctionName="Inductor" simulationFunctionType="DEFAULT" style="mirror=false;Inductor;flip=false" value="Inductor"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="0.0031512678"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="0.0031512678"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Inductor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="L"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0031512678"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="50.0" width="50.0" x="996.0" y="800.0"/></BasicBlock><ImplicitInputPort dataLines="1" dataType="REAL_MATRIX" id="-72f583ad:131105b55e2:-7ce7" ordering="1" parent="-72f583ad:131105b55e2:-7ce8" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataLines="1" dataType="REAL_MATRIX" id="-72f583ad:131105b55e2:-7ce6" ordering="1" parent="-72f583ad:131105b55e2:-7ce8" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="50.0" y="16.0"/></ImplicitOutputPort><BasicBlock dependsOnU="1" id="-72f583ad:131105b55e2:-7ce5" interfaceFunctionName="Inductor" ordering="30" parent="-62268d13:130f6b46d8a:-7eeb" simulationFunctionName="Inductor" simulationFunctionType="DEFAULT" style="mirror=false;Inductor;flip=false" value="Inductor"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="0.0050929581"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="0.0050929581"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Inductor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="L"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0050929581"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="50.0" width="50.0" x="1136.0" y="800.0"/></BasicBlock><ImplicitInputPort dataLines="1" dataType="REAL_MATRIX" id="-72f583ad:131105b55e2:-7ce4" ordering="1" parent="-72f583ad:131105b55e2:-7ce5" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataLines="1" dataType="REAL_MATRIX" id="-72f583ad:131105b55e2:-7ce3" ordering="1" parent="-72f583ad:131105b55e2:-7ce5" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="50.0" y="16.0"/></ImplicitOutputPort><BasicBlock dependsOnU="1" id="-72f583ad:131105b55e2:-7ce2" interfaceFunctionName="Resistor" ordering="31" parent="-62268d13:130f6b46d8a:-7eeb" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="0.93"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="0.93"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.93"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="1246.0" y="800.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-72f583ad:131105b55e2:-7ce1" ordering="1" parent="-72f583ad:131105b55e2:-7ce2" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-72f583ad:131105b55e2:-7ce0" ordering="1" parent="-72f583ad:131105b55e2:-7ce2" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="-72f583ad:131105b55e2:-7cdf" interfaceFunctionName="Switch" ordering="32" parent="-62268d13:130f6b46d8a:-7eeb" simulationFunctionName="Switch" simulationFunctionType="DEFAULT" style="Switch;flip=false;mirror=false"><ScilabString as="exprs" height="2" width="1"><data column="0" line="0" value="0.000001"/><data column="0" line="1" value="100000"/></ScilabString><ScilabDouble as="realParameters" height="2" width="1"><data column="0" line="0" realPart="0.01"/><data column="0" line="1" realPart="100000.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Switch"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="p"/><data column="0" line="1" value="inp"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="2" width="1"><data column="0" line="0" value="Ron"/><data column="0" line="1" value="Roff"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0E-6"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="1430.0" y="810.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-72f583ad:131105b55e2:-7cde" ordering="1" parent="-72f583ad:131105b55e2:-7cdf" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ImplicitInputPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-72f583ad:131105b55e2:-7cdd" ordering="2" parent="-72f583ad:131105b55e2:-7cdf" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="26.0"/></ExplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-72f583ad:131105b55e2:-7cdc" ordering="1" parent="-72f583ad:131105b55e2:-7cdf" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><ImplicitLink id="-72f583ad:131105b55e2:-7cd9" parent="-62268d13:130f6b46d8a:-7eeb" source="-72f583ad:131105b55e2:-7cd6" target="-72f583ad:131105b55e2:-7cde"><mxGeometry as="geometry" x="10.0" y="590.0"><mxPoint as="sourcePoint" x="1426.0" y="820.0"/><mxPoint as="targetPoint" x="1380.0" y="820.0"/></mxGeometry></ImplicitLink><BasicBlock dependsOnU="1" id="-72f583ad:131105b55e2:-7cd8" interfaceFunctionName="Inductor" ordering="33" parent="-62268d13:130f6b46d8a:-7eeb" simulationFunctionName="Inductor" simulationFunctionType="DEFAULT" style="mirror=false;Inductor;flip=false" value="Inductor"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="0.0017507043"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="0.0017507043"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Inductor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="L"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0017507043"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="50.0" width="50.0" x="1326.0" y="800.0"/></BasicBlock><ImplicitInputPort dataLines="1" dataType="REAL_MATRIX" id="-72f583ad:131105b55e2:-7cd7" ordering="1" parent="-72f583ad:131105b55e2:-7cd8" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataLines="1" dataType="REAL_MATRIX" id="-72f583ad:131105b55e2:-7cd6" ordering="1" parent="-72f583ad:131105b55e2:-7cd8" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="50.0" y="16.0"/></ImplicitOutputPort><SplitBlock id="-72f583ad:131105b55e2:-7cd5" ordering="34" parent="-62268d13:130f6b46d8a:-7eeb" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="597.0" y="817.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="-72f583ad:131105b55e2:-7cd4" ordering="1" parent="-72f583ad:131105b55e2:-7cd5" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-72f583ad:131105b55e2:-7cd3" ordering="1" parent="-72f583ad:131105b55e2:-7cd5" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-72f583ad:131105b55e2:-7cd2" ordering="2" parent="-72f583ad:131105b55e2:-7cd5" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitLink id="-72f583ad:131105b55e2:-7cd1" parent="-62268d13:130f6b46d8a:-7eeb" source="-72f583ad:131105b55e2:-7d0d" target="-72f583ad:131105b55e2:-7cd3"><mxGeometry as="geometry" x="10.0" y="590.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="600.0" y="760.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-72f583ad:131105b55e2:-7cd0" parent="-62268d13:130f6b46d8a:-7eeb" source="-72f583ad:131105b55e2:-7cd2" target="-72f583ad:131105b55e2:-7cce"><mxGeometry as="geometry" x="10.0" y="590.0"><mxPoint as="sourcePoint" x="772.0" y="820.0"/><mxPoint as="targetPoint" x="600.0" y="820.0"/></mxGeometry></ImplicitLink><BasicBlock dependsOnU="1" id="-72f583ad:131105b55e2:-7ccf" interfaceFunctionName="Inductor" ordering="35" parent="-62268d13:130f6b46d8a:-7eeb" simulationFunctionName="Inductor" simulationFunctionType="DEFAULT" style="mirror=false;Inductor;flip=false" value="Inductor"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="0.0031830988"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="0.0031830988"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Inductor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="L"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0031830988"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="50.0" width="50.0" x="776.0" y="800.0"/></BasicBlock><ImplicitInputPort dataLines="1" dataType="REAL_MATRIX" id="-72f583ad:131105b55e2:-7cce" ordering="1" parent="-72f583ad:131105b55e2:-7ccf" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataLines="1" dataType="REAL_MATRIX" id="-72f583ad:131105b55e2:-7ccd" ordering="1" parent="-72f583ad:131105b55e2:-7ccf" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="50.0" y="16.0"/></ImplicitOutputPort><ImplicitLink id="-72f583ad:131105b55e2:-7ccb" parent="-62268d13:130f6b46d8a:-7eeb" source="-72f583ad:131105b55e2:-7ccd" target="-72f583ad:131105b55e2:-7cf4"><mxGeometry as="geometry" x="506.0" y="660.0"><mxPoint as="sourcePoint" x="830.0" y="820.0"/><mxPoint as="targetPoint" x="916.0" y="820.0"/></mxGeometry></ImplicitLink><ImplicitLink id="-72f583ad:131105b55e2:-7cca" parent="-62268d13:130f6b46d8a:-7eeb" source="-72f583ad:131105b55e2:-7cf5" target="-72f583ad:131105b55e2:-7ce7"><mxGeometry as="geometry" x="506.0" y="660.0"><mxPoint as="sourcePoint" x="960.0" y="820.0"/><mxPoint as="targetPoint" x="996.0" y="820.0"/></mxGeometry></ImplicitLink><BasicBlock dependsOnU="1" id="-72f583ad:131105b55e2:-7cc9" interfaceFunctionName="SineVoltage" ordering="36" parent="-62268d13:130f6b46d8a:-7eeb" simulationFunctionName="SineVoltage" simulationFunctionType="DEFAULT" style="SineVoltage;flip=false;mirror=false"><ScilabString as="exprs" height="5" width="1"><data column="0" line="0" value="1.414"/><data column="0" line="1" value="2.094395102"/><data column="0" line="2" value="50"/><data column="0" line="3" value="0"/><data column="0" line="4" value="0"/></ScilabString><ScilabDouble as="realParameters" height="5" width="1"><data column="0" line="0" realPart="1.414"/><data column="0" line="1" realPart="2.094395102"/><data column="0" line="2" realPart="50.0"/><data column="0" line="3" realPart="0.0"/><data column="0" line="4" realPart="0.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="SineVoltage"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="5" width="1"><data column="0" line="0" value="V"/><data column="0" line="1" value="phase"/><data column="0" line="2" value="freqHz"/><data column="0" line="3" value="offset"/><data column="0" line="4" value="startTime"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.414"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="2.094395102"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="50.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="60.0" width="50.0" x="360.0" y="730.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-72f583ad:131105b55e2:-7af9" ordering="1" parent="-72f583ad:131105b55e2:-7cc9" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="50.0" y="26.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-72f583ad:131105b55e2:-7afa" ordering="1" parent="-72f583ad:131105b55e2:-7cc9" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="26.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="-72f583ad:131105b55e2:-7cc6" interfaceFunctionName="SineVoltage" ordering="37" parent="-62268d13:130f6b46d8a:-7eeb" simulationFunctionName="SineVoltage" simulationFunctionType="DEFAULT" style="SineVoltage;flip=false;mirror=false"><ScilabString as="exprs" height="5" width="1"><data column="0" line="0" value="1.414"/><data column="0" line="1" value="2.094395102"/><data column="0" line="2" value="50"/><data column="0" line="3" value="0"/><data column="0" line="4" value="0"/></ScilabString><ScilabDouble as="realParameters" height="5" width="1"><data column="0" line="0" realPart="1.414"/><data column="0" line="1" realPart="2.094395102"/><data column="0" line="2" realPart="50.0"/><data column="0" line="3" realPart="0.0"/><data column="0" line="4" realPart="0.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="SineVoltage"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="5" width="1"><data column="0" line="0" value="V"/><data column="0" line="1" value="phase"/><data column="0" line="2" value="freqHz"/><data column="0" line="3" value="offset"/><data column="0" line="4" value="startTime"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.414"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="2.094395102"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="50.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="60.0" width="50.0" x="350.0" y="830.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-72f583ad:131105b55e2:-7afd" ordering="1" parent="-72f583ad:131105b55e2:-7cc6" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="50.0" y="26.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-72f583ad:131105b55e2:-7afe" ordering="1" parent="-72f583ad:131105b55e2:-7cc6" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="26.0"/></ImplicitInputPort><ImplicitLink id="-72f583ad:131105b55e2:-7cc3" parent="-62268d13:130f6b46d8a:-7eeb" source="-72f583ad:131105b55e2:-7af9" target="-72f583ad:131105b55e2:-7d0e"><mxGeometry as="geometry" x="10.0" y="590.0"><mxPoint as="sourcePoint" x="414.0" y="760.0"/><mxPoint as="targetPoint" x="480.0" y="760.0"/></mxGeometry></ImplicitLink><SplitBlock id="-72f583ad:131105b55e2:-7cc1" ordering="38" parent="-62268d13:130f6b46d8a:-7eeb" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="217.0" y="857.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="-72f583ad:131105b55e2:-7cc0" ordering="1" parent="-72f583ad:131105b55e2:-7cc1" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-72f583ad:131105b55e2:-7cbf" ordering="1" parent="-72f583ad:131105b55e2:-7cc1" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-72f583ad:131105b55e2:-7cbe" ordering="2" parent="-72f583ad:131105b55e2:-7cc1" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitLink id="-72f583ad:131105b55e2:-7cbd" parent="-62268d13:130f6b46d8a:-7eeb" source="-72f583ad:131105b55e2:-7cbf" target="-72f583ad:131105b55e2:-7afa"><mxGeometry as="geometry" x="10.0" y="590.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="220.0" y="760.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-72f583ad:131105b55e2:-7cbc" parent="-62268d13:130f6b46d8a:-7eeb" source="-72f583ad:131105b55e2:-7cbe" target="-72f583ad:131105b55e2:-7afe"><mxGeometry as="geometry" x="10.0" y="590.0"><mxPoint as="sourcePoint" x="346.0" y="860.0"/><mxPoint as="targetPoint" x="220.0" y="860.0"/></mxGeometry></ImplicitLink><ImplicitLink id="-72f583ad:131105b55e2:-7cbb" parent="-62268d13:130f6b46d8a:-7eeb" source="-72f583ad:131105b55e2:-7cf7" target="-72f583ad:131105b55e2:-7cd4"><mxGeometry as="geometry" x="10.0" y="590.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="600.0" y="860.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="-72f583ad:131105b55e2:-7cba" ordering="39" parent="-62268d13:130f6b46d8a:-7eeb" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="217.0" y="967.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="-72f583ad:131105b55e2:-7cb9" ordering="1" parent="-72f583ad:131105b55e2:-7cba" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-72f583ad:131105b55e2:-7cb8" ordering="1" parent="-72f583ad:131105b55e2:-7cba" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-72f583ad:131105b55e2:-7cb7" ordering="2" parent="-72f583ad:131105b55e2:-7cba" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitLink id="-72f583ad:131105b55e2:-7cb6" parent="-62268d13:130f6b46d8a:-7eeb" source="-72f583ad:131105b55e2:-7cc0" target="-72f583ad:131105b55e2:-7cb9"><mxGeometry as="geometry" x="10.0" y="590.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="220.0" y="960.0"/><mxPoint x="220.0" y="870.0"/><mxPoint x="220.0" y="970.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-72f583ad:131105b55e2:-7cb5" parent="-62268d13:130f6b46d8a:-7eeb" source="-72f583ad:131105b55e2:-7cb8" target="-72f583ad:131105b55e2:-7cff"><mxGeometry as="geometry" x="10.0" y="590.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><SplitBlock id="-72f583ad:131105b55e2:-7cb4" ordering="40" parent="-62268d13:130f6b46d8a:-7eeb" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="217.0" y="1047.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="-72f583ad:131105b55e2:-7cb3" ordering="1" parent="-72f583ad:131105b55e2:-7cb4" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-72f583ad:131105b55e2:-7cb2" ordering="1" parent="-72f583ad:131105b55e2:-7cb4" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-72f583ad:131105b55e2:-7cb1" ordering="2" parent="-72f583ad:131105b55e2:-7cb4" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitLink id="-72f583ad:131105b55e2:-7cb0" parent="-62268d13:130f6b46d8a:-7eeb" source="-72f583ad:131105b55e2:-7cb7" target="-72f583ad:131105b55e2:-7cb3"><mxGeometry as="geometry" x="10.0" y="590.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-72f583ad:131105b55e2:-7caf" parent="-62268d13:130f6b46d8a:-7eeb" source="-72f583ad:131105b55e2:-7cb2" target="-72f583ad:131105b55e2:-7cfa"><mxGeometry as="geometry" x="10.0" y="590.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="220.0" y="1050.0"/><mxPoint x="220.0" y="1060.0"/><mxPoint x="220.0" y="1060.0"/><mxPoint x="220.0" y="1080.0"/><mxPoint x="220.0" y="1080.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-72f583ad:131105b55e2:-7cae" parent="-62268d13:130f6b46d8a:-7eeb" source="-72f583ad:131105b55e2:-7cb1" target="-72f583ad:131105b55e2:-7d09"><mxGeometry as="geometry" x="10.0" y="590.0"><mxPoint as="sourcePoint" x="726.0" y="1210.0"/><mxPoint as="targetPoint" x="220.84337349397592" y="1047.8313253012047"/><Array as="points" scilabClass="ScilabList"><mxPoint x="588.3132530120482" y="1047.8313253012047"/><mxPoint x="588.3132530120482" y="1210.4819277108434"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-72f583ad:131105b55e2:-7cad" parent="-62268d13:130f6b46d8a:-7eeb" source="-72f583ad:131105b55e2:-7cdc" target="-72f583ad:131105b55e2:-7d0b"><mxGeometry as="geometry" x="10.0" y="590.0"><mxPoint as="sourcePoint" x="774.0" y="1200.0"/><mxPoint as="targetPoint" x="1471.5384615384614" y="828.4615384615386"/><Array as="points" scilabClass="ScilabList"><mxPoint x="1502.3076923076922" y="828.4615384615386"/><mxPoint x="1502.3076923076922" y="1197.6923076923076"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-72f583ad:131105b55e2:-7bdf" parent="-62268d13:130f6b46d8a:-7eeb" source="-72f583ad:131105b55e2:-7bb3" target="-72f583ad:131105b55e2:-7bb1"><mxGeometry as="geometry" x="2166.0" y="400.0"><mxPoint as="sourcePoint" x="2710.0" y="560.0"/><mxPoint as="targetPoint" x="2796.0" y="560.0"/></mxGeometry></ImplicitLink><ImplicitLink id="-72f583ad:131105b55e2:-7bde" parent="-62268d13:130f6b46d8a:-7eeb" source="-72f583ad:131105b55e2:-7bb0" target="-72f583ad:131105b55e2:-7bad"><mxGeometry as="geometry" x="2166.0" y="400.0"><mxPoint as="sourcePoint" x="2850.0" y="560.0"/><mxPoint as="targetPoint" x="2906.0" y="560.0"/></mxGeometry></ImplicitLink><ImplicitLink id="-72f583ad:131105b55e2:-7bdd" parent="-62268d13:130f6b46d8a:-7eeb" source="-72f583ad:131105b55e2:-7bae" target="-72f583ad:131105b55e2:-7ba4"><mxGeometry as="geometry" x="2166.0" y="400.0"><mxPoint as="sourcePoint" x="2950.0" y="560.0"/><mxPoint as="targetPoint" x="2986.0" y="560.0"/></mxGeometry></ImplicitLink><BasicBlock dependsOnU="1" id="-72f583ad:131105b55e2:-7bdc" interfaceFunctionName="Inductor" ordering="41" parent="-62268d13:130f6b46d8a:-7eeb" simulationFunctionName="Inductor" simulationFunctionType="DEFAULT" style="mirror=false;Inductor;flip=false;shadow=false" value="Inductor"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="0.0047746482"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="0.0047746482"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Inductor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="L"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0047746482"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="50.0" width="50.0" x="2150.0" y="480.0"/></BasicBlock><ImplicitInputPort dataLines="1" dataType="REAL_MATRIX" id="-72f583ad:131105b55e2:-7bdb" ordering="1" parent="-72f583ad:131105b55e2:-7bdc" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><mxCell connectable="0" id="-72f583ad:131105b55e2:-7bdc#identifier" parent="-72f583ad:131105b55e2:-7bdc" style="noLabel=0;opacity=0;" vertex="1"><mxGeometry as="geometry" relative="1" x="0.5" y="1.1"/></mxCell><ImplicitOutputPort dataLines="1" dataType="REAL_MATRIX" id="-72f583ad:131105b55e2:-7bda" ordering="1" parent="-72f583ad:131105b55e2:-7bdc" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="50.0" y="16.0"/></ImplicitOutputPort><BasicBlock dependsOnU="1" id="-72f583ad:131105b55e2:-7bd9" interfaceFunctionName="CurrentSensor" ordering="42" parent="-62268d13:130f6b46d8a:-7eeb" simulationFunctionName="CurrentSensor" simulationFunctionType="DEFAULT" style="mirror=false;CurrentSensor;rotation=0;flip=false" value="CurrentSensor"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CurrentSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="i"/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="2390.0" y="930.0"/></BasicBlock><ImplicitOutputPort dataLines="1" dataType="REAL_MATRIX" id="-72f583ad:131105b55e2:-7bd8" ordering="1" parent="-72f583ad:131105b55e2:-7bd9" style="mirror=false;rotation=0;ImplicitOutputPort;flip=false;align=right;verticalAlign=middle;spacing=10"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="6.0"/></ImplicitOutputPort><ExplicitOutputPort dataLines="1" dataType="REAL_MATRIX" id="-72f583ad:131105b55e2:-7bd7" ordering="2" parent="-72f583ad:131105b55e2:-7bd9" style="mirror=false;ExplicitOutputPort;rotation=0;flip=false;align=right;verticalAlign=middle;spacing=10"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="26.0"/></ExplicitOutputPort><ImplicitInputPort dataLines="1" dataType="REAL_MATRIX" id="-72f583ad:131105b55e2:-7bd6" ordering="1" parent="-72f583ad:131105b55e2:-7bd9" style="mirror=false;rotation=0;ImplicitInputPort;flip=false;align=left;verticalAlign=middle;spacing=10"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="-72f583ad:131105b55e2:-7bd5" interfaceFunctionName="CMSCOPE" ordering="43" parent="-62268d13:130f6b46d8a:-7eeb" simulationFunctionName="cmscope" simulationFunctionType="C_OR_FORTRAN" style="mirror=false;CMSCOPE;rotation=0;flip=false" value="<html><body> MScope </body></html>"><ScilabString as="exprs" height="11" width="1"><data column="0" line="0" value="1 1"/><data column="0" line="1" value="1 3 5 7 9 11 13 15"/><data column="0" line="2" value="3"/><data column="0" line="3" value="[]"/><data column="0" line="4" value="[]"/><data column="0" line="5" value="-2 -0.5"/><data column="0" line="6" value="2 0.5"/><data column="0" line="7" value=".2 .2"/><data column="0" line="8" value="2"/><data column="0" line="9" value="0"/><data column="0" line="10" value="B phase: Voltage and Fault Current"/></ScilabString><ScilabDouble as="realParameters" height="7" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="0.2"/><data column="0" line="2" realPart="0.2"/><data column="0" line="3" realPart="-2.0"/><data column="0" line="4" realPart="2.0"/><data column="0" line="5" realPart="-0.5"/><data column="0" line="6" realPart="0.5"/></ScilabDouble><ScilabDouble as="integerParameters" height="12" width="1"><data column="0" line="0" realPart="3.0"/><data column="0" line="1" realPart="2.0"/><data column="0" line="2" realPart="2.0"/><data column="0" line="3" realPart="-1.0"/><data column="0" line="4" realPart="-1.0"/><data column="0" line="5" realPart="-1.0"/><data column="0" line="6" realPart="-1.0"/><data column="0" line="7" realPart="1.0"/><data column="0" line="8" realPart="1.0"/><data column="0" line="9" realPart="1.0"/><data column="0" line="10" realPart="3.0"/><data column="0" line="11" realPart="0.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="2720.0" y="770.0"/></BasicBlock><ControlPort dataType="UNKNOW_TYPE" id="-72f583ad:131105b55e2:-791a" ordering="1" parent="-72f583ad:131105b55e2:-7bd5" style="ControlPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-72f583ad:131105b55e2:-791c" ordering="1" parent="-72f583ad:131105b55e2:-7bd5" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ExplicitInputPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-72f583ad:131105b55e2:-791b" ordering="2" parent="-72f583ad:131105b55e2:-7bd5" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="26.0"/></ExplicitInputPort><ExplicitLink id="-72f583ad:131105b55e2:-7bd1" parent="-62268d13:130f6b46d8a:-7eeb" source="-72f583ad:131105b55e2:-7bd7" style="ExplicitLink;noEdgeStyle=0;edgeStyle=elbowEdgeStyle;elbow=horizontal" target="-72f583ad:131105b55e2:-791b"><mxGeometry as="geometry" height="80.0" width="80.0" x="2233.0" y="570.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ExplicitLink><CommandControlLink id="-72f583ad:131105b55e2:-7bd0" parent="-62268d13:130f6b46d8a:-7eeb" source="-72f583ad:131105b55e2:-7bc9" target="-72f583ad:131105b55e2:-791a"><mxGeometry as="geometry" height="80.0" width="80.0" x="2326.0" y="643.0"/></CommandControlLink><ExplicitLink id="-72f583ad:131105b55e2:-7bcb" parent="-62268d13:130f6b46d8a:-7eeb" source="-72f583ad:131105b55e2:-7bcd" style="ExplicitLink;edgeStyle=elbowEdgeStyle;elbow=horizontal" target="-72f583ad:131105b55e2:-791c"><mxGeometry as="geometry" relative="1"><Array as="points" scilabClass="ScilabList"><mxPoint x="2660.0" y="750.0"/></Array></mxGeometry></ExplicitLink><BasicBlock blockType="h" id="-72f583ad:131105b55e2:-7bca" interfaceFunctionName="CLOCK_f" ordering="44" parent="-62268d13:130f6b46d8a:-7eeb" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="mirror=false;rotation=0;CLOCK_f;flip=false" value="CLOCK_f"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-4"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="79.0"/><data column="1" line="0" realPart="-110.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-72f583ad:131105b55e2:-7ee1"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-72f583ad:131105b55e2:-7ee1"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.0001"/><data column="0" line="1" value="00"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0E-4"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-72f583ad:131105b55e2:-7edd"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-72f583ad:131105b55e2:-7edd"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="252.71065999999996"/><data column="1" line="0" realPart="-292.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="8.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="4.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-72f583ad:131105b55e2:-7ed8"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-72f583ad:131105b55e2:-7ed8"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="338.0"/><data column="0" line="2" realPart="263.37732666666665"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="4.0"/><data column="0" line="1" realPart="-556.0"/><data column="0" line="2" realPart="-296.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="264.71065999999996"/><data column="0" line="1" realPart="139.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-280.0"/><data column="0" line="1" realPart="-66.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="266.0439933333333"/><data column="0" line="1" realPart="443.71000000000004"/><data column="0" line="2" realPart="403.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-296.0"/><data column="0" line="1" realPart="-314.0"/><data column="0" line="2" realPart="-314.0"/><data column="0" line="3" realPart="-44.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="2719.50029" y="700.14363"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="-72f583ad:131105b55e2:-7bc9" ordering="1" parent="-72f583ad:131105b55e2:-7bca" style="CommandPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><GroundBlock dependsOnU="1" id="-72f583ad:131105b55e2:-7bc8" interfaceFunctionName="Ground" ordering="45" parent="-62268d13:130f6b46d8a:-7eeb" simulationFunctionName="Ground" simulationFunctionType="DEFAULT" style="Ground;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Ground"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="1860.0" y="820.0"/></GroundBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-72f583ad:131105b55e2:-7bc7" ordering="1" parent="-72f583ad:131105b55e2:-7bc8" style="ImplicitInputPort;align=center;rotation=90;flip=false;mirror=false;verticalAlign=top;spacing=10"><Orientation as="orientation" value="NORTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="-72f583ad:131105b55e2:-7bc6" interfaceFunctionName="Inductor" ordering="46" parent="-62268d13:130f6b46d8a:-7eeb" simulationFunctionName="Inductor" simulationFunctionType="DEFAULT" style="mirror=false;Inductor;flip=false" value="Inductor"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="0.0039788735"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="0.0039788735"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Inductor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="L"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0039788735"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="50.0" x="2150.0" y="580.0"/></BasicBlock><ImplicitInputPort dataLines="1" dataType="REAL_MATRIX" id="-72f583ad:131105b55e2:-7bc5" ordering="1" parent="-72f583ad:131105b55e2:-7bc6" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataLines="1" dataType="REAL_MATRIX" id="-72f583ad:131105b55e2:-7bc4" ordering="1" parent="-72f583ad:131105b55e2:-7bc6" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="50.0" y="16.0"/></ImplicitOutputPort><BasicBlock dependsOnU="1" id="-72f583ad:131105b55e2:-7bc3" interfaceFunctionName="Resistor" ordering="47" parent="-62268d13:130f6b46d8a:-7eeb" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="0.744"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="0.744"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.744"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="2576.0" y="540.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-72f583ad:131105b55e2:-7bc2" ordering="1" parent="-72f583ad:131105b55e2:-7bc3" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-72f583ad:131105b55e2:-7bc1" ordering="1" parent="-72f583ad:131105b55e2:-7bc3" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><TextBlock id="-72f583ad:131105b55e2:-7bc0" parent="-62268d13:130f6b46d8a:-7eeb" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;flip=false;mirror=false" value="Generator 1"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="Generator 1"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="Generator 1"/></ScilabString><mxGeometry as="geometry" height="20.0" width="40.0" x="2010.0" y="450.0"/></TextBlock><TextBlock id="-72f583ad:131105b55e2:-7bbf" parent="-62268d13:130f6b46d8a:-7eeb" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=13;flip=false;mirror=false" value="Generator 2"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="Generator 2"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="Generator 2"/></ScilabString><mxGeometry as="geometry" height="20.0" width="30.0" x="2030.0" y="630.0"/></TextBlock><TextBlock id="-72f583ad:131105b55e2:-7bbe" parent="-62268d13:130f6b46d8a:-7eeb" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;flip=false;mirror=false" value="j1.5"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="j1.5"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="j1.5"/></ScilabString><mxGeometry as="geometry" height="20.0" width="40.0" x="2160.0" y="450.0"/></TextBlock><TextBlock id="-72f583ad:131105b55e2:-7bbd" parent="-62268d13:130f6b46d8a:-7eeb" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;flip=false;mirror=false" value="j2.5"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="j2.5"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="j2.5"/></ScilabString><mxGeometry as="geometry" height="20.0" width="40.0" x="2150.0" y="630.0"/></TextBlock><TextBlock id="-72f583ad:131105b55e2:-7bbc" parent="-62268d13:130f6b46d8a:-7eeb" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;flip=false;mirror=false" value="j1.0"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="j1.0"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="j1.0"/></ScilabString><mxGeometry as="geometry" height="20.0" width="40.0" x="2440.0" y="510.0"/></TextBlock><TextBlock id="-72f583ad:131105b55e2:-7bbb" parent="-62268d13:130f6b46d8a:-7eeb" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;flip=false;mirror=false" value="(0.744 + j0.99)"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="(0.744 + j0.99)"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="(0.744 + j0.99)"/></ScilabString><mxGeometry as="geometry" height="20.0" width="40.0" x="2620.0" y="510.0"/></TextBlock><TextBlock id="-72f583ad:131105b55e2:-7bba" parent="-62268d13:130f6b46d8a:-7eeb" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;flip=false;mirror=false" value="j1.6"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="j1.6"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="j1.6"/></ScilabString><mxGeometry as="geometry" height="20.0" width="40.0" x="2800.0" y="510.0"/></TextBlock><TextBlock id="-72f583ad:131105b55e2:-7bb9" parent="-62268d13:130f6b46d8a:-7eeb" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;flip=false;mirror=false" value="(0.93 + j0.55)"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="(0.93 + j0.55)"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="(0.93 + j0.55)"/></ScilabString><mxGeometry as="geometry" height="20.0" width="40.0" x="2950.0" y="510.0"/></TextBlock><TextBlock id="-72f583ad:131105b55e2:-7bb8" parent="-62268d13:130f6b46d8a:-7eeb" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=15;fontColor=#E3301E;flip=false;mirror=false" value="F"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="F"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="F"/></ScilabString><mxGeometry as="geometry" height="20.0" width="40.0" x="3130.0" y="530.0"/></TextBlock><TextBlock id="-72f583ad:131105b55e2:-7bb7" parent="-62268d13:130f6b46d8a:-7eeb" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=13;fontColor=#292AFE;flip=false;mirror=false" value="Phase B Voltage"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="Phase B Voltage"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="Phase B Voltage"/></ScilabString><mxGeometry as="geometry" height="20.0" width="200.0" x="2020.0" y="740.0"/></TextBlock><TextBlock id="-72f583ad:131105b55e2:-7bb6" parent="-62268d13:130f6b46d8a:-7eeb" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=13;fontColor=#292AFE;flip=false;mirror=false" value="Phase B Fault Current"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="Phase B Fault Current"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="Phase B Fault Current"/></ScilabString><mxGeometry as="geometry" height="20.0" width="200.0" x="2310.0" y="990.0"/></TextBlock><BasicBlock dependsOnU="1" id="-72f583ad:131105b55e2:-7bb5" interfaceFunctionName="Inductor" ordering="48" parent="-62268d13:130f6b46d8a:-7eeb" simulationFunctionName="Inductor" simulationFunctionType="DEFAULT" style="mirror=false;Inductor;flip=false" value="Inductor"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="0.0031512678"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="0.0031512678"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Inductor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="L"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0031512678"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="50.0" width="50.0" x="2656.0" y="540.0"/></BasicBlock><ImplicitInputPort dataLines="1" dataType="REAL_MATRIX" id="-72f583ad:131105b55e2:-7bb4" ordering="1" parent="-72f583ad:131105b55e2:-7bb5" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataLines="1" dataType="REAL_MATRIX" id="-72f583ad:131105b55e2:-7bb3" ordering="1" parent="-72f583ad:131105b55e2:-7bb5" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="50.0" y="16.0"/></ImplicitOutputPort><BasicBlock dependsOnU="1" id="-72f583ad:131105b55e2:-7bb2" interfaceFunctionName="Inductor" ordering="49" parent="-62268d13:130f6b46d8a:-7eeb" simulationFunctionName="Inductor" simulationFunctionType="DEFAULT" style="mirror=false;Inductor;flip=false" value="Inductor"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="0.0050929581"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="0.0050929581"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Inductor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="L"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0050929581"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="50.0" width="50.0" x="2796.0" y="540.0"/></BasicBlock><ImplicitInputPort dataLines="1" dataType="REAL_MATRIX" id="-72f583ad:131105b55e2:-7bb1" ordering="1" parent="-72f583ad:131105b55e2:-7bb2" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataLines="1" dataType="REAL_MATRIX" id="-72f583ad:131105b55e2:-7bb0" ordering="1" parent="-72f583ad:131105b55e2:-7bb2" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="50.0" y="16.0"/></ImplicitOutputPort><BasicBlock dependsOnU="1" id="-72f583ad:131105b55e2:-7baf" interfaceFunctionName="Resistor" ordering="50" parent="-62268d13:130f6b46d8a:-7eeb" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="0.93"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="0.93"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.93"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="2906.0" y="540.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-72f583ad:131105b55e2:-7bae" ordering="1" parent="-72f583ad:131105b55e2:-7baf" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-72f583ad:131105b55e2:-7bad" ordering="1" parent="-72f583ad:131105b55e2:-7baf" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="-72f583ad:131105b55e2:-7bac" interfaceFunctionName="Switch" ordering="51" parent="-62268d13:130f6b46d8a:-7eeb" simulationFunctionName="Switch" simulationFunctionType="DEFAULT" style="Switch;flip=false;mirror=false"><ScilabString as="exprs" height="2" width="1"><data column="0" line="0" value="0.000001"/><data column="0" line="1" value="100000"/></ScilabString><ScilabDouble as="realParameters" height="2" width="1"><data column="0" line="0" realPart="0.01"/><data column="0" line="1" realPart="100000.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Switch"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="p"/><data column="0" line="1" value="inp"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="2" width="1"><data column="0" line="0" value="Ron"/><data column="0" line="1" value="Roff"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0E-6"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="3090.0" y="550.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-72f583ad:131105b55e2:-7bab" ordering="1" parent="-72f583ad:131105b55e2:-7bac" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ImplicitInputPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-72f583ad:131105b55e2:-7baa" ordering="2" parent="-72f583ad:131105b55e2:-7bac" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="26.0"/></ExplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-72f583ad:131105b55e2:-7ba9" ordering="1" parent="-72f583ad:131105b55e2:-7bac" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><ImplicitLink id="-72f583ad:131105b55e2:-7ba6" parent="-62268d13:130f6b46d8a:-7eeb" source="-72f583ad:131105b55e2:-7ba3" target="-72f583ad:131105b55e2:-7bab"><mxGeometry as="geometry" x="1670.0" y="330.0"><mxPoint as="sourcePoint" x="3086.0" y="560.0"/><mxPoint as="targetPoint" x="3040.0" y="560.0"/></mxGeometry></ImplicitLink><BasicBlock dependsOnU="1" id="-72f583ad:131105b55e2:-7ba5" interfaceFunctionName="Inductor" ordering="52" parent="-62268d13:130f6b46d8a:-7eeb" simulationFunctionName="Inductor" simulationFunctionType="DEFAULT" style="mirror=false;Inductor;flip=false" value="Inductor"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="0.0017507043"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="0.0017507043"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Inductor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="L"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0017507043"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="50.0" width="50.0" x="2986.0" y="540.0"/></BasicBlock><ImplicitInputPort dataLines="1" dataType="REAL_MATRIX" id="-72f583ad:131105b55e2:-7ba4" ordering="1" parent="-72f583ad:131105b55e2:-7ba5" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataLines="1" dataType="REAL_MATRIX" id="-72f583ad:131105b55e2:-7ba3" ordering="1" parent="-72f583ad:131105b55e2:-7ba5" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="50.0" y="16.0"/></ImplicitOutputPort><SplitBlock id="-72f583ad:131105b55e2:-7ba2" ordering="53" parent="-62268d13:130f6b46d8a:-7eeb" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="2257.0" y="557.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="-72f583ad:131105b55e2:-7ba1" ordering="1" parent="-72f583ad:131105b55e2:-7ba2" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-72f583ad:131105b55e2:-7ba0" ordering="1" parent="-72f583ad:131105b55e2:-7ba2" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-72f583ad:131105b55e2:-7b9f" ordering="2" parent="-72f583ad:131105b55e2:-7ba2" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitLink id="-72f583ad:131105b55e2:-7b9e" parent="-62268d13:130f6b46d8a:-7eeb" source="-72f583ad:131105b55e2:-7bda" target="-72f583ad:131105b55e2:-7ba0"><mxGeometry as="geometry" x="1670.0" y="330.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="2260.0" y="500.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-72f583ad:131105b55e2:-7b9d" parent="-62268d13:130f6b46d8a:-7eeb" source="-72f583ad:131105b55e2:-7b9f" target="-72f583ad:131105b55e2:-7b9b"><mxGeometry as="geometry" x="1670.0" y="330.0"><mxPoint as="sourcePoint" x="2432.0" y="560.0"/><mxPoint as="targetPoint" x="2260.0" y="560.0"/></mxGeometry></ImplicitLink><BasicBlock dependsOnU="1" id="-72f583ad:131105b55e2:-7b9c" interfaceFunctionName="Inductor" ordering="54" parent="-62268d13:130f6b46d8a:-7eeb" simulationFunctionName="Inductor" simulationFunctionType="DEFAULT" style="mirror=false;Inductor;flip=false" value="Inductor"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="0.0031830988"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="0.0031830988"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Inductor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="L"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0031830988"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="50.0" width="50.0" x="2436.0" y="540.0"/></BasicBlock><ImplicitInputPort dataLines="1" dataType="REAL_MATRIX" id="-72f583ad:131105b55e2:-7b9b" ordering="1" parent="-72f583ad:131105b55e2:-7b9c" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataLines="1" dataType="REAL_MATRIX" id="-72f583ad:131105b55e2:-7b9a" ordering="1" parent="-72f583ad:131105b55e2:-7b9c" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="50.0" y="16.0"/></ImplicitOutputPort><ImplicitLink id="-72f583ad:131105b55e2:-7b98" parent="-62268d13:130f6b46d8a:-7eeb" source="-72f583ad:131105b55e2:-7b9a" target="-72f583ad:131105b55e2:-7bc1"><mxGeometry as="geometry" x="2166.0" y="400.0"><mxPoint as="sourcePoint" x="2490.0" y="560.0"/><mxPoint as="targetPoint" x="2576.0" y="560.0"/></mxGeometry></ImplicitLink><ImplicitLink id="-72f583ad:131105b55e2:-7b97" parent="-62268d13:130f6b46d8a:-7eeb" source="-72f583ad:131105b55e2:-7bc2" target="-72f583ad:131105b55e2:-7bb4"><mxGeometry as="geometry" x="2166.0" y="400.0"><mxPoint as="sourcePoint" x="2620.0" y="560.0"/><mxPoint as="targetPoint" x="2656.0" y="560.0"/></mxGeometry></ImplicitLink><BasicBlock dependsOnU="1" id="-72f583ad:131105b55e2:-7b96" interfaceFunctionName="SineVoltage" ordering="55" parent="-62268d13:130f6b46d8a:-7eeb" simulationFunctionName="SineVoltage" simulationFunctionType="DEFAULT" style="SineVoltage;flip=false;mirror=false"><ScilabString as="exprs" height="5" width="1"><data column="0" line="0" value="1.414"/><data column="0" line="1" value="4.188790205"/><data column="0" line="2" value="50"/><data column="0" line="3" value="0"/><data column="0" line="4" value="0"/></ScilabString><ScilabDouble as="realParameters" height="5" width="1"><data column="0" line="0" realPart="1.414"/><data column="0" line="1" realPart="4.188790205"/><data column="0" line="2" realPart="50.0"/><data column="0" line="3" realPart="0.0"/><data column="0" line="4" realPart="0.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="SineVoltage"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="5" width="1"><data column="0" line="0" value="V"/><data column="0" line="1" value="phase"/><data column="0" line="2" value="freqHz"/><data column="0" line="3" value="offset"/><data column="0" line="4" value="startTime"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.414"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.188790205"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="50.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="60.0" width="50.0" x="2020.0" y="470.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-72f583ad:131105b55e2:-7af5" ordering="1" parent="-72f583ad:131105b55e2:-7b96" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="50.0" y="26.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-72f583ad:131105b55e2:-7af6" ordering="1" parent="-72f583ad:131105b55e2:-7b96" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="26.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="-72f583ad:131105b55e2:-7b93" interfaceFunctionName="SineVoltage" ordering="56" parent="-62268d13:130f6b46d8a:-7eeb" simulationFunctionName="SineVoltage" simulationFunctionType="DEFAULT" style="SineVoltage;flip=false;mirror=false"><ScilabString as="exprs" height="5" width="1"><data column="0" line="0" value="1.414"/><data column="0" line="1" value="4.188790205"/><data column="0" line="2" value="50"/><data column="0" line="3" value="0"/><data column="0" line="4" value="0"/></ScilabString><ScilabDouble as="realParameters" height="5" width="1"><data column="0" line="0" realPart="1.414"/><data column="0" line="1" realPart="4.188790205"/><data column="0" line="2" realPart="50.0"/><data column="0" line="3" realPart="0.0"/><data column="0" line="4" realPart="0.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="SineVoltage"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="5" width="1"><data column="0" line="0" value="V"/><data column="0" line="1" value="phase"/><data column="0" line="2" value="freqHz"/><data column="0" line="3" value="offset"/><data column="0" line="4" value="startTime"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.414"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.188790205"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="50.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="60.0" width="50.0" x="2010.0" y="570.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-72f583ad:131105b55e2:-7af1" ordering="1" parent="-72f583ad:131105b55e2:-7b93" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="50.0" y="26.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-72f583ad:131105b55e2:-7af2" ordering="1" parent="-72f583ad:131105b55e2:-7b93" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="26.0"/></ImplicitInputPort><ImplicitLink id="-72f583ad:131105b55e2:-7b90" parent="-62268d13:130f6b46d8a:-7eeb" source="-72f583ad:131105b55e2:-7af5" target="-72f583ad:131105b55e2:-7bdb"><mxGeometry as="geometry" x="1670.0" y="330.0"><mxPoint as="sourcePoint" x="2074.0" y="500.0"/><mxPoint as="targetPoint" x="2140.0" y="500.0"/></mxGeometry></ImplicitLink><SplitBlock id="-72f583ad:131105b55e2:-7b8e" ordering="57" parent="-62268d13:130f6b46d8a:-7eeb" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="1877.0" y="597.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="-72f583ad:131105b55e2:-7b8d" ordering="1" parent="-72f583ad:131105b55e2:-7b8e" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-72f583ad:131105b55e2:-7b8c" ordering="1" parent="-72f583ad:131105b55e2:-7b8e" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-72f583ad:131105b55e2:-7b8b" ordering="2" parent="-72f583ad:131105b55e2:-7b8e" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitLink id="-72f583ad:131105b55e2:-7b8a" parent="-62268d13:130f6b46d8a:-7eeb" source="-72f583ad:131105b55e2:-7b8c" target="-72f583ad:131105b55e2:-7af6"><mxGeometry as="geometry" x="1670.0" y="330.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="1880.0" y="500.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-72f583ad:131105b55e2:-7b89" parent="-62268d13:130f6b46d8a:-7eeb" source="-72f583ad:131105b55e2:-7b8b" target="-72f583ad:131105b55e2:-7af2"><mxGeometry as="geometry" x="1670.0" y="330.0"><mxPoint as="sourcePoint" x="2006.0" y="600.0"/><mxPoint as="targetPoint" x="1880.0" y="600.0"/></mxGeometry></ImplicitLink><ImplicitLink id="-72f583ad:131105b55e2:-7b88" parent="-62268d13:130f6b46d8a:-7eeb" source="-72f583ad:131105b55e2:-7bc4" target="-72f583ad:131105b55e2:-7ba1"><mxGeometry as="geometry" x="1670.0" y="330.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="2260.0" y="600.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="-72f583ad:131105b55e2:-7b87" ordering="58" parent="-62268d13:130f6b46d8a:-7eeb" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="1877.0" y="707.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="-72f583ad:131105b55e2:-7b86" ordering="1" parent="-72f583ad:131105b55e2:-7b87" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-72f583ad:131105b55e2:-7b85" ordering="1" parent="-72f583ad:131105b55e2:-7b87" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-72f583ad:131105b55e2:-7b84" ordering="2" parent="-72f583ad:131105b55e2:-7b87" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitLink id="-72f583ad:131105b55e2:-7b83" parent="-62268d13:130f6b46d8a:-7eeb" source="-72f583ad:131105b55e2:-7b8d" target="-72f583ad:131105b55e2:-7b86"><mxGeometry as="geometry" x="1670.0" y="330.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="1880.0" y="700.0"/><mxPoint x="1880.0" y="610.0"/><mxPoint x="1880.0" y="710.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-72f583ad:131105b55e2:-7b82" parent="-62268d13:130f6b46d8a:-7eeb" source="-72f583ad:131105b55e2:-7b85" target="-72f583ad:131105b55e2:-7bcc"><mxGeometry as="geometry" x="1670.0" y="330.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><SplitBlock id="-72f583ad:131105b55e2:-7b81" ordering="59" parent="-62268d13:130f6b46d8a:-7eeb" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="1877.0" y="787.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="-72f583ad:131105b55e2:-7b80" ordering="1" parent="-72f583ad:131105b55e2:-7b81" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-72f583ad:131105b55e2:-7b7f" ordering="1" parent="-72f583ad:131105b55e2:-7b81" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-72f583ad:131105b55e2:-7b7e" ordering="2" parent="-72f583ad:131105b55e2:-7b81" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitLink id="-72f583ad:131105b55e2:-7b7d" parent="-62268d13:130f6b46d8a:-7eeb" source="-72f583ad:131105b55e2:-7b84" target="-72f583ad:131105b55e2:-7b80"><mxGeometry as="geometry" x="1670.0" y="330.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-72f583ad:131105b55e2:-7b7c" parent="-62268d13:130f6b46d8a:-7eeb" source="-72f583ad:131105b55e2:-7b7f" target="-72f583ad:131105b55e2:-7bc7"><mxGeometry as="geometry" x="1670.0" y="330.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="1880.0" y="790.0"/><mxPoint x="1880.0" y="800.0"/><mxPoint x="1880.0" y="800.0"/><mxPoint x="1880.0" y="820.0"/><mxPoint x="1880.0" y="820.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-72f583ad:131105b55e2:-7b7b" parent="-62268d13:130f6b46d8a:-7eeb" source="-72f583ad:131105b55e2:-7b7e" target="-72f583ad:131105b55e2:-7bd6"><mxGeometry as="geometry" x="1670.0" y="330.0"><mxPoint as="sourcePoint" x="2386.0" y="950.0000000000001"/><mxPoint as="targetPoint" x="1880.8433734939758" y="787.8313253012049"/><Array as="points" scilabClass="ScilabList"><mxPoint x="2248.3132530120483" y="787.8313253012049"/><mxPoint x="2248.3132530120483" y="950.4819277108434"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-72f583ad:131105b55e2:-7b7a" parent="-62268d13:130f6b46d8a:-7eeb" source="-72f583ad:131105b55e2:-7ba9" target="-72f583ad:131105b55e2:-7bd8"><mxGeometry as="geometry" x="1670.0" y="330.0"><mxPoint as="sourcePoint" x="2434.0" y="940.0000000000001"/><mxPoint as="targetPoint" x="3131.5384615384614" y="568.4615384615385"/><Array as="points" scilabClass="ScilabList"><mxPoint x="3162.3076923076924" y="568.4615384615385"/><mxPoint x="3162.3076923076924" y="937.6923076923076"/></Array></mxGeometry></ImplicitLink><VoltageSensorBlock dependsOnU="1" id="-72f583ad:131105b55e2:-7bcf" interfaceFunctionName="VoltageSensor" ordering="60" parent="-62268d13:130f6b46d8a:-7eeb" simulationFunctionName="VoltageSensor" simulationFunctionType="DEFAULT" style="VoltageSensor;rotation=0;flip=true;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="VoltageSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="v"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="50.0" x="2080.0" y="690.0"/></VoltageSensorBlock><ImplicitOutputPort dataLines="1" dataType="REAL_MATRIX" id="-72f583ad:131105b55e2:-7bce" ordering="1" parent="-72f583ad:131105b55e2:-7bcf" style="mirror=false;rotation=270;ImplicitOutputPort;flip=false;align=center;verticalAlign=top;spacing=10"><Orientation as="orientation" value="SOUTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitOutputPort><ExplicitOutputPort dataLines="1" dataType="REAL_MATRIX" id="-72f583ad:131105b55e2:-7bcd" ordering="2" parent="-72f583ad:131105b55e2:-7bcf" style="mirror=false;ExplicitOutputPort;rotation=0;flip=false;align=right;verticalAlign=middle;spacing=10"><mxGeometry as="geometry" height="8.0" width="8.0" x="50.0" y="16.0"/></ExplicitOutputPort><ImplicitInputPort dataLines="1" dataType="REAL_MATRIX" id="-72f583ad:131105b55e2:-7bcc" ordering="1" parent="-72f583ad:131105b55e2:-7bcf" style="mirror=false;ImplicitInputPort;rotation=0;flip=false;align=left;verticalAlign=middle;spacing=10"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><VoltageSensorBlock dependsOnU="1" id="-62268d13:130f6b46d8a:-7e8a" interfaceFunctionName="VoltageSensor" ordering="61" parent="-62268d13:130f6b46d8a:-7eeb" simulationFunctionName="VoltageSensor" simulationFunctionType="DEFAULT" style="VoltageSensor;rotation=0;flip=true;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="VoltageSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="v"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="50.0" x="420.0" y="360.0"/></VoltageSensorBlock><ImplicitOutputPort dataLines="1" dataType="REAL_MATRIX" id="-62268d13:130f6b46d8a:-7e87" ordering="1" parent="-62268d13:130f6b46d8a:-7e8a" style="mirror=false;rotation=270;ImplicitOutputPort;flip=false;align=center;verticalAlign=top;spacing=10"><Orientation as="orientation" value="SOUTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitOutputPort><ExplicitOutputPort dataLines="1" dataType="REAL_MATRIX" id="-62268d13:130f6b46d8a:-7e89" ordering="2" parent="-62268d13:130f6b46d8a:-7e8a" style="mirror=false;ExplicitOutputPort;rotation=0;flip=false;align=right;verticalAlign=middle;spacing=10"><mxGeometry as="geometry" height="8.0" width="8.0" x="50.0" y="16.0"/></ExplicitOutputPort><ImplicitInputPort dataLines="1" dataType="REAL_MATRIX" id="-62268d13:130f6b46d8a:-7e88" ordering="1" parent="-62268d13:130f6b46d8a:-7e8a" style="mirror=false;ImplicitInputPort;rotation=0;flip=false;align=left;verticalAlign=middle;spacing=10"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><SplitBlock id="-72f583ad:131105b55e2:-7a65" ordering="62" parent="-62268d13:130f6b46d8a:-7eeb" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="437.0" y="267.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="-72f583ad:131105b55e2:-7a64" ordering="1" parent="-72f583ad:131105b55e2:-7a65" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-72f583ad:131105b55e2:-7a63" ordering="1" parent="-72f583ad:131105b55e2:-7a65" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-72f583ad:131105b55e2:-7a62" ordering="2" parent="-72f583ad:131105b55e2:-7a65" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitLink id="-72f583ad:131105b55e2:-7a61" parent="-62268d13:130f6b46d8a:-7eeb" source="-72f583ad:131105b55e2:-7dcf" target="-72f583ad:131105b55e2:-7a64"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-72f583ad:131105b55e2:-7a60" parent="-62268d13:130f6b46d8a:-7eeb" source="-72f583ad:131105b55e2:-7a63" target="-62268d13:130f6b46d8a:-7ee3"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="440.0" y="270.0"/><mxPoint x="440.0" y="270.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-72f583ad:131105b55e2:-7a66" parent="-62268d13:130f6b46d8a:-7eeb" source="-62268d13:130f6b46d8a:-7e87" target="-72f583ad:131105b55e2:-7a62"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="440.0" y="356.0"/><mxPoint as="targetPoint" x="439.5061728395062" y="269.1358024691358"/></mxGeometry></ImplicitLink><SplitBlock id="-72f583ad:131105b55e2:-7a5a" ordering="63" parent="-62268d13:130f6b46d8a:-7eeb" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="437.0" y="857.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="-72f583ad:131105b55e2:-7a59" ordering="1" parent="-72f583ad:131105b55e2:-7a5a" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-72f583ad:131105b55e2:-7a58" ordering="1" parent="-72f583ad:131105b55e2:-7a5a" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-72f583ad:131105b55e2:-7a57" ordering="2" parent="-72f583ad:131105b55e2:-7a5a" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitLink id="-72f583ad:131105b55e2:-7a56" parent="-62268d13:130f6b46d8a:-7eeb" source="-72f583ad:131105b55e2:-7afd" target="-72f583ad:131105b55e2:-7a59"><mxGeometry as="geometry" x="40.0" y="-210.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-72f583ad:131105b55e2:-7a55" parent="-62268d13:130f6b46d8a:-7eeb" source="-72f583ad:131105b55e2:-7a58" target="-72f583ad:131105b55e2:-7cf8"><mxGeometry as="geometry" x="40.0" y="-210.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-72f583ad:131105b55e2:-7a5b" parent="-62268d13:130f6b46d8a:-7eeb" source="-72f583ad:131105b55e2:-7d01" target="-72f583ad:131105b55e2:-7a57"><mxGeometry as="geometry" x="40.0" y="-210.0"><mxPoint as="sourcePoint" x="440.0" y="946.0"/><mxPoint as="targetPoint" x="436.8253968253968" y="853.4920634920634"/></mxGeometry></ImplicitLink><SplitBlock id="-72f583ad:131105b55e2:-7a3b" ordering="64" parent="-62268d13:130f6b46d8a:-7eeb" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="2097.0" y="597.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="-72f583ad:131105b55e2:-7a3a" ordering="1" parent="-72f583ad:131105b55e2:-7a3b" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-72f583ad:131105b55e2:-7a39" ordering="1" parent="-72f583ad:131105b55e2:-7a3b" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-72f583ad:131105b55e2:-7a38" ordering="2" parent="-72f583ad:131105b55e2:-7a3b" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitLink id="-72f583ad:131105b55e2:-7a37" parent="-62268d13:130f6b46d8a:-7eeb" source="-72f583ad:131105b55e2:-7af1" target="-72f583ad:131105b55e2:-7a3a"><mxGeometry as="geometry" x="-190.0" y="190.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-72f583ad:131105b55e2:-7a36" parent="-62268d13:130f6b46d8a:-7eeb" source="-72f583ad:131105b55e2:-7a39" target="-72f583ad:131105b55e2:-7bc5"><mxGeometry as="geometry" x="-190.0" y="190.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="2110.0" y="600.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-72f583ad:131105b55e2:-7a3c" parent="-62268d13:130f6b46d8a:-7eeb" source="-72f583ad:131105b55e2:-7bce" target="-72f583ad:131105b55e2:-7a38"><mxGeometry as="geometry" x="-190.0" y="190.0"><mxPoint as="sourcePoint" x="2100.0" y="686.0"/><mxPoint as="targetPoint" x="2097.878787878788" y="599.090909090909"/></mxGeometry></ImplicitLink><SplitBlock id="-72f583ad:131105b55e2:-7955" ordering="65" parent="-62268d13:130f6b46d8a:-7eeb" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="1697.0" y="327.0"/></SplitBlock><ExplicitInputPort dataType="UNKNOW_TYPE" id="-72f583ad:131105b55e2:-7954" ordering="1" parent="-72f583ad:131105b55e2:-7955" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ExplicitInputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="-72f583ad:131105b55e2:-7953" ordering="1" parent="-72f583ad:131105b55e2:-7955" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="-72f583ad:131105b55e2:-7952" ordering="2" parent="-72f583ad:131105b55e2:-7955" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ExplicitOutputPort><ExplicitLink id="-72f583ad:131105b55e2:-7950" parent="-62268d13:130f6b46d8a:-7eeb" source="-72f583ad:131105b55e2:-7953" target="3b7a3c23:13110576cee:-7f2f"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="1390.9090909090908" y="327.27272727272725"/><mxPoint x="1390.0" y="250.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="-72f583ad:131105b55e2:-7956" parent="-62268d13:130f6b46d8a:-7eeb" source="-72f583ad:131105b55e2:-7952" target="-72f583ad:131105b55e2:-7baa"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="3086.0" y="580.0"/><mxPoint as="targetPoint" x="1699.9999999999998" y="327.27272727272725"/><Array as="points" scilabClass="ScilabList"><mxPoint x="3063.6363636363635" y="336.3636363636363"/><mxPoint x="3060.0" y="580.0"/></Array></mxGeometry></ExplicitLink><SplitBlock id="-72f583ad:131105b55e2:-794e" ordering="66" parent="-62268d13:130f6b46d8a:-7eeb" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="1697.0" y="517.0"/></SplitBlock><ExplicitInputPort dataType="UNKNOW_TYPE" id="-72f583ad:131105b55e2:-794d" ordering="1" parent="-72f583ad:131105b55e2:-794e" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ExplicitInputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="-72f583ad:131105b55e2:-794c" ordering="1" parent="-72f583ad:131105b55e2:-794e" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitOutputPort dataType="UNKNOW_TYPE" id="-72f583ad:131105b55e2:-794b" ordering="2" parent="-72f583ad:131105b55e2:-794e" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ExplicitOutputPort><ExplicitLink id="-72f583ad:131105b55e2:-794a" parent="-62268d13:130f6b46d8a:-7eeb" source="3b7a3c23:13110576cee:-7f33" target="-72f583ad:131105b55e2:-794d"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="1700.0" y="530.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="-72f583ad:131105b55e2:-7949" parent="-62268d13:130f6b46d8a:-7eeb" source="-72f583ad:131105b55e2:-794c" target="-72f583ad:131105b55e2:-7954"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ExplicitLink><ExplicitLink id="-72f583ad:131105b55e2:-794f" parent="-62268d13:130f6b46d8a:-7eeb" source="-72f583ad:131105b55e2:-794b" target="-72f583ad:131105b55e2:-7cdd"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="1426.0" y="840.0000000000001"/><mxPoint as="targetPoint" x="1701.6129032258066" y="516.1290322580645"/><Array as="points" scilabClass="ScilabList"><mxPoint x="1701.6129032258066" y="911.2903225806451"/><mxPoint x="1395.1612903225807" y="911.2903225806451"/><mxPoint x="1395.1612903225807" y="838.7096774193549"/></Array></mxGeometry></ExplicitLink><TextBlock id="-72f583ad:131105b55e2:-793e" parent="-62268d13:130f6b46d8a:-7eeb" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=13;fontColor=#E1212F;flip=false;mirror=false" value="Phase R Plot"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="Phase R Plot"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="Phase R Plot"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="1050.0" y="480.0"/></TextBlock><TextBlock id="-72f583ad:131105b55e2:-793c" parent="-62268d13:130f6b46d8a:-7eeb" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=13;fontColor=#E1212F;flip=false;mirror=false" value="Phase Y Plot"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="Phase Y Plot"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="Phase Y Plot"/></ScilabString><mxGeometry as="geometry" height="40.0" width="20.0" x="1070.0" y="1080.0"/></TextBlock><TextBlock id="-72f583ad:131105b55e2:-7937" parent="-62268d13:130f6b46d8a:-7eeb" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=13;fontColor=#E1212F;flip=false;mirror=false" value="Phase B Plot"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="Phase B Plot"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="Phase B Plot"/></ScilabString><mxGeometry as="geometry" height="40.0" width="20.0" x="2740.0" y="820.0"/></TextBlock><TextBlock id="-72f583ad:131105b55e2:-7933" parent="-62268d13:130f6b46d8a:-7eeb" simulationFunctionType="DEFAULT" style="TEXT_f;fillColor=#F3F0B7;fontStyle=1;fontSize=32;fontColor=#A72F2F;flip=false;mirror=false" value="R Phase"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="R Phase"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="R Phase"/></ScilabString><mxGeometry as="geometry" height="40.0" width="130.0" x="720.0" y="130.0"/></TextBlock><TextBlock id="-72f583ad:131105b55e2:-7931" parent="-62268d13:130f6b46d8a:-7eeb" simulationFunctionType="DEFAULT" style="TEXT_f;fillColor=#F3F0B7;fontStyle=1;fontSize=32;fontColor=#A72F2F;flip=false;mirror=false" value="Y Phase"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="Y Phase"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="Y Phase"/></ScilabString><mxGeometry as="geometry" height="40.0" width="130.0" x="710.0" y="730.0"/></TextBlock><TextBlock id="-72f583ad:131105b55e2:-792e" parent="-62268d13:130f6b46d8a:-7eeb" simulationFunctionType="DEFAULT" style="TEXT_f;fillColor=#F3F0B7;fontStyle=1;fontSize=32;fontColor=#A72F2F;flip=false;mirror=false" value="B Phase"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="B Phase"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="B Phase"/></ScilabString><mxGeometry as="geometry" height="40.0" width="130.0" x="2380.0" y="450.0"/></TextBlock><TextBlock id="-72f583ad:131105b55e2:-7928" parent="-62268d13:130f6b46d8a:-7eeb" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=22;fontColor=#D72424;flip=false;mirror=false" value="Fault Initiation"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="Fault Initiation"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="Fault Initiation"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="1590.0" y="550.0"/></TextBlock></root></mxGraphModel><mxCell as="defaultParent" id="-62268d13:130f6b46d8a:-7eeb" parent="-62268d13:130f6b46d8a:-7eea"/></XcosDiagram>
\ No newline at end of file diff --git a/Working_Examples/83/CH9/EX9.1/result_example_9_1.txt b/Working_Examples/83/CH9/EX9.1/result_example_9_1.txt new file mode 100755 index 0000000..abf54ae --- /dev/null +++ b/Working_Examples/83/CH9/EX9.1/result_example_9_1.txt @@ -0,0 +1,12 @@ + + Reactance of G1= j1.5 pu + Reactance of G2= j1.2 pu + Reactance of T1= j1.0 pu + Reactance of T2= j1.6 pu + Overhead line impedance=(0.744 + j0.992) pu + Cable impedance= (0.930 + j0.551) pu + +Total impedance= 5.1 < 70.87 deg pu +Short circuit current= 1713 A +Voltage at 11kV bus=9.62 kV + diff --git a/Working_Examples/83/CH9/EX9.1/xcos_result_example_9_1_all_phases.jpg b/Working_Examples/83/CH9/EX9.1/xcos_result_example_9_1_all_phases.jpg Binary files differnew file mode 100755 index 0000000..00f2809 --- /dev/null +++ b/Working_Examples/83/CH9/EX9.1/xcos_result_example_9_1_all_phases.jpg diff --git a/Working_Examples/83/CH9/EX9.2/example_9_2.sce b/Working_Examples/83/CH9/EX9.2/example_9_2.sce new file mode 100755 index 0000000..30758db --- /dev/null +++ b/Working_Examples/83/CH9/EX9.2/example_9_2.sce @@ -0,0 +1,48 @@ +//Chapter 9 +//Example 9.2 +//page 337 +//To calculate subtransient and momentary current +clear;clc; +mvab=25; +Gmva=25; +T1mva=25; T2mva=25; +Gkvb=11; //generator kV base +OHLkvb=66; //overhead line kV base +Mkvb=6.6; //motor kV base +Mmva=5; //motor mva + +XdG=%i*0.2; //Generator's subtransient reactance +XdM=%i*0.25; //Motor's subtransient reactance +XdM2=%i*0.3; //Motor's transient reactance +Xt1=%i*0.1; // step up transformer's reactance +Xt2=%i*0.1;//step down transformer's reactance +Xtl=%i*0.15 ;//trnasmission line's reactance + +//per unit calculation +XdM=(XdM*mvab)/Mmva ;//perunit impedance of each motor +printf('\nSubtransient reactance of each motor = j%0.2f pu\n',abs(XdM)); + +//(a)subtransient current in the fault +Isc=(3*(1/XdM))+(1/(XdG+Xt1+Xt2+Xtl)); +Ibase=(mvab*1000)/(sqrt(3)*Mkvb); +Isc=Isc*Ibase; +printf('\nSubtransient current in the fault =%0.1fA\n',abs(Isc)); + +//(b)subtransient current in the breaker B +IscB=(2*(1/XdM))+(1/(XdG+Xt1+Xt2+Xtl)); +IscB=IscB*Ibase; +printf('\nSubtransient current in breaker B=%0.1fA\n',abs(IscB)); + +//(c) to find the momentary current through breaker B +ImomB=1.6*IscB; +printf('\nMomentary current through the breaker B=%dA\n',abs(ImomB)); + +//(d) to compute current to be interrupted by breaker in 5 cycles +XdM2=(XdM2*mvab)/Mmva ;//perunit transient impedance of each motor +IscB=(2*(1/XdM2))+(1/(XdG+Xt1+Xt2+Xtl)); +IscB=IscB*Ibase; +ImomB=1.1*IscB; +printf('\nCurrent to be interrupted by breaker B in five cycles=%dA\n',abs(ImomB)); + + + diff --git a/Working_Examples/83/CH9/EX9.2/example_9_2.xcos b/Working_Examples/83/CH9/EX9.2/example_9_2.xcos new file mode 100755 index 0000000..8a219d2 --- /dev/null +++ b/Working_Examples/83/CH9/EX9.2/example_9_2.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" finalIntegrationTime="0.5" title="example_9_2"><!--Xcos - 1.0 - scilab-5.5.2 - 20160406 2040--><mxGraphModel as="model"><root><mxCell id="63eb11b3:131137cfac5:-7fff"/><mxCell id="63eb11b3:131137cfac5:-8000" parent="63eb11b3:131137cfac5:-7fff"/><BasicBlock dependsOnU="1" id="63eb11b3:131137cfac5:-7fcd" interfaceFunctionName="Inductor" ordering="1" parent="63eb11b3:131137cfac5:-8000" simulationFunctionName="Inductor" simulationFunctionType="DEFAULT" style="Inductor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="0.00031831"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="3.1831E-4"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Inductor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="L"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="3.1831E-4"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="280.0" y="90.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="63eb11b3:131137cfac5:-7da9" ordering="1" parent="63eb11b3:131137cfac5:-7fcd" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="63eb11b3:131137cfac5:-7daa" ordering="1" parent="63eb11b3:131137cfac5:-7fcd" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="63eb11b3:131137cfac5:-7fca" interfaceFunctionName="Inductor" ordering="2" parent="63eb11b3:131137cfac5:-8000" simulationFunctionName="Inductor" simulationFunctionType="DEFAULT" style="Inductor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="0.00047746"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="4.7746E-4"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Inductor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="L"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.7746E-4"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="380.0" y="90.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="63eb11b3:131137cfac5:-7da5" ordering="1" parent="63eb11b3:131137cfac5:-7fca" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="63eb11b3:131137cfac5:-7da6" ordering="1" parent="63eb11b3:131137cfac5:-7fca" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="63eb11b3:131137cfac5:-7fc7" interfaceFunctionName="Inductor" ordering="3" parent="63eb11b3:131137cfac5:-8000" simulationFunctionName="Inductor" simulationFunctionType="DEFAULT" style="Inductor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="0.00031831"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="3.1831E-4"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Inductor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="L"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="3.1831E-4"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="460.0" y="90.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="63eb11b3:131137cfac5:-7da1" ordering="1" parent="63eb11b3:131137cfac5:-7fc7" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="63eb11b3:131137cfac5:-7da2" ordering="1" parent="63eb11b3:131137cfac5:-7fc7" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="63eb11b3:131137cfac5:-7fc4" interfaceFunctionName="Inductor" ordering="4" parent="63eb11b3:131137cfac5:-8000" simulationFunctionName="Inductor" simulationFunctionType="DEFAULT" style="Inductor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="0.0035810"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="0.003581"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Inductor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="L"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.003581"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="560.0" y="20.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="63eb11b3:131137cfac5:-7ee4" ordering="1" parent="63eb11b3:131137cfac5:-7fc4" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="63eb11b3:131137cfac5:-7ee5" ordering="1" parent="63eb11b3:131137cfac5:-7fc4" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="63eb11b3:131137cfac5:-7fc1" interfaceFunctionName="Inductor" ordering="5" parent="63eb11b3:131137cfac5:-8000" simulationFunctionName="Inductor" simulationFunctionType="DEFAULT" style="Inductor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="0.0035810"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="0.003581"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Inductor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="L"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.003581"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="560.0" y="90.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="63eb11b3:131137cfac5:-7ee0" ordering="1" parent="63eb11b3:131137cfac5:-7fc1" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="63eb11b3:131137cfac5:-7ee1" ordering="1" parent="63eb11b3:131137cfac5:-7fc1" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="63eb11b3:131137cfac5:-7fbe" interfaceFunctionName="Inductor" ordering="6" parent="63eb11b3:131137cfac5:-8000" simulationFunctionName="Inductor" simulationFunctionType="DEFAULT" style="Inductor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="0.0035810"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="0.003581"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Inductor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="L"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.003581"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="560.0" y="170.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="63eb11b3:131137cfac5:-7edc" ordering="1" parent="63eb11b3:131137cfac5:-7fbe" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="63eb11b3:131137cfac5:-7edd" ordering="1" parent="63eb11b3:131137cfac5:-7fbe" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="63eb11b3:131137cfac5:-7fbb" interfaceFunctionName="SineVoltage" ordering="7" parent="63eb11b3:131137cfac5:-8000" simulationFunctionName="SineVoltage" simulationFunctionType="DEFAULT" style="SineVoltage;flip=false;mirror=false"><ScilabString as="exprs" height="5" width="1"><data column="0" line="0" value="1.414"/><data column="0" line="1" value="0"/><data column="0" line="2" value="50"/><data column="0" line="3" value="0"/><data column="0" line="4" value="0"/></ScilabString><ScilabDouble as="realParameters" height="5" width="1"><data column="0" line="0" realPart="1.414"/><data column="0" line="1" realPart="0.0"/><data column="0" line="2" realPart="50.0"/><data column="0" line="3" realPart="0.0"/><data column="0" line="4" realPart="0.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="SineVoltage"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="5" width="1"><data column="0" line="0" value="V"/><data column="0" line="1" value="phase"/><data column="0" line="2" value="freqHz"/><data column="0" line="3" value="offset"/><data column="0" line="4" value="startTime"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.414"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="50.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="60.0" width="50.0" x="680.0" y="10.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="63eb11b3:131137cfac5:-7f8f" ordering="1" parent="63eb11b3:131137cfac5:-7fbb" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="50.0" y="26.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="63eb11b3:131137cfac5:-7f90" ordering="1" parent="63eb11b3:131137cfac5:-7fbb" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="26.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="63eb11b3:131137cfac5:-7fb8" interfaceFunctionName="SineVoltage" ordering="8" parent="63eb11b3:131137cfac5:-8000" simulationFunctionName="SineVoltage" simulationFunctionType="DEFAULT" style="SineVoltage;flip=false;mirror=false"><ScilabString as="exprs" height="5" width="1"><data column="0" line="0" value="1.414"/><data column="0" line="1" value="0"/><data column="0" line="2" value="50"/><data column="0" line="3" value="0"/><data column="0" line="4" value="0"/></ScilabString><ScilabDouble as="realParameters" height="5" width="1"><data column="0" line="0" realPart="1.414"/><data column="0" line="1" realPart="0.0"/><data column="0" line="2" realPart="50.0"/><data column="0" line="3" realPart="0.0"/><data column="0" line="4" realPart="0.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="SineVoltage"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="5" width="1"><data column="0" line="0" value="V"/><data column="0" line="1" value="phase"/><data column="0" line="2" value="freqHz"/><data column="0" line="3" value="offset"/><data column="0" line="4" value="startTime"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.414"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="50.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="60.0" width="50.0" x="680.0" y="80.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="63eb11b3:131137cfac5:-7f8b" ordering="1" parent="63eb11b3:131137cfac5:-7fb8" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="50.0" y="26.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="63eb11b3:131137cfac5:-7f8c" ordering="1" parent="63eb11b3:131137cfac5:-7fb8" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="26.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="63eb11b3:131137cfac5:-7fb5" interfaceFunctionName="SineVoltage" ordering="9" parent="63eb11b3:131137cfac5:-8000" simulationFunctionName="SineVoltage" simulationFunctionType="DEFAULT" style="SineVoltage;flip=false;mirror=false"><ScilabString as="exprs" height="5" width="1"><data column="0" line="0" value="1.414"/><data column="0" line="1" value="0"/><data column="0" line="2" value="50"/><data column="0" line="3" value="0"/><data column="0" line="4" value="0"/></ScilabString><ScilabDouble as="realParameters" height="5" width="1"><data column="0" line="0" realPart="1.414"/><data column="0" line="1" realPart="0.0"/><data column="0" line="2" realPart="50.0"/><data column="0" line="3" realPart="0.0"/><data column="0" line="4" realPart="0.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="SineVoltage"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="5" width="1"><data column="0" line="0" value="V"/><data column="0" line="1" value="phase"/><data column="0" line="2" value="freqHz"/><data column="0" line="3" value="offset"/><data column="0" line="4" value="startTime"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.414"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="50.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="60.0" width="50.0" x="680.0" y="160.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="63eb11b3:131137cfac5:-7f87" ordering="1" parent="63eb11b3:131137cfac5:-7fb5" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="50.0" y="26.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="63eb11b3:131137cfac5:-7f88" ordering="1" parent="63eb11b3:131137cfac5:-7fb5" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="26.0"/></ImplicitInputPort><GroundBlock dependsOnU="1" id="63eb11b3:131137cfac5:-7f80" interfaceFunctionName="Ground" ordering="10" parent="63eb11b3:131137cfac5:-8000" simulationFunctionName="Ground" simulationFunctionType="DEFAULT" style="Ground;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Ground"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="10.0" y="500.0"/></GroundBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="63eb11b3:131137cfac5:-7f7f" ordering="1" parent="63eb11b3:131137cfac5:-7f80" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><Orientation as="orientation" value="NORTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitLink id="63eb11b3:131137cfac5:-7f78" parent="63eb11b3:131137cfac5:-8000" source="63eb11b3:131137cfac5:-7dad" target="63eb11b3:131137cfac5:-7daa"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="204.0" y="110.0"/><mxPoint as="targetPoint" x="280.0" y="110.0"/></mxGeometry></ImplicitLink><ImplicitLink id="63eb11b3:131137cfac5:-7f77" parent="63eb11b3:131137cfac5:-8000" source="63eb11b3:131137cfac5:-7da9" target="63eb11b3:131137cfac5:-7da6"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="324.0" y="110.0"/><mxPoint as="targetPoint" x="380.0" y="110.0"/></mxGeometry></ImplicitLink><ImplicitLink id="63eb11b3:131137cfac5:-7f76" parent="63eb11b3:131137cfac5:-8000" source="63eb11b3:131137cfac5:-7da5" target="63eb11b3:131137cfac5:-7da2"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="424.0" y="110.0"/><mxPoint as="targetPoint" x="460.0" y="110.0"/></mxGeometry></ImplicitLink><ImplicitLink id="63eb11b3:131137cfac5:-7f74" parent="63eb11b3:131137cfac5:-8000" source="63eb11b3:131137cfac5:-7ee0" target="63eb11b3:131137cfac5:-7f8c"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="604.0" y="110.0"/><mxPoint as="targetPoint" x="670.0" y="110.0"/></mxGeometry></ImplicitLink><SplitBlock id="63eb11b3:131137cfac5:-7f72" ordering="11" parent="63eb11b3:131137cfac5:-8000" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="517.0" y="107.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="63eb11b3:131137cfac5:-7f6f" ordering="2" parent="63eb11b3:131137cfac5:-7f72" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="63eb11b3:131137cfac5:-7f71" ordering="1" parent="63eb11b3:131137cfac5:-7f72" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="63eb11b3:131137cfac5:-7f70" ordering="1" parent="63eb11b3:131137cfac5:-7f72" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="63eb11b3:131137cfac5:-7f6d" parent="63eb11b3:131137cfac5:-8000" source="63eb11b3:131137cfac5:-7f70" target="63eb11b3:131137cfac5:-7ee1"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="63eb11b3:131137cfac5:-7f73" parent="63eb11b3:131137cfac5:-8000" source="63eb11b3:131137cfac5:-7f6f" target="63eb11b3:131137cfac5:-7ee5"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="556.0" y="40.0"/><mxPoint as="targetPoint" x="520.0" y="110.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="520.0" y="40.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="63eb11b3:131137cfac5:-7f60" parent="63eb11b3:131137cfac5:-8000" source="63eb11b3:131137cfac5:-7ee4" target="63eb11b3:131137cfac5:-7f90"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="604.0" y="40.0"/><mxPoint as="targetPoint" x="675.2136752136753" y="42.73504273504274"/></mxGeometry></ImplicitLink><ImplicitLink id="63eb11b3:131137cfac5:-7f5f" parent="63eb11b3:131137cfac5:-8000" source="63eb11b3:131137cfac5:-7edc" target="63eb11b3:131137cfac5:-7f88"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="604.0" y="190.0"/><mxPoint as="targetPoint" x="675.2136752136753" y="188.03418803418805"/></mxGeometry></ImplicitLink><BasicBlock angle="270" dependsOnU="1" id="63eb11b3:131137cfac5:-7f49" interfaceFunctionName="Switch" ordering="12" parent="63eb11b3:131137cfac5:-8000" simulationFunctionName="Switch" simulationFunctionType="DEFAULT" style="Switch;rotation=270;flip=false;mirror=false"><ScilabString as="exprs" height="2" width="1"><data column="0" line="0" value="0.00001"/><data column="0" line="1" value="100000000"/></ScilabString><ScilabDouble as="realParameters" height="2" width="1"><data column="0" line="0" realPart="0.01"/><data column="0" line="1" realPart="100000.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Switch"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="p"/><data column="0" line="1" value="inp"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="2" width="1"><data column="0" line="0" value="Ron"/><data column="0" line="1" value="Roff"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0E-5"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0E8"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="490.0" y="380.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="7e049f10:13119e51e36:-7f33" ordering="1" parent="63eb11b3:131137cfac5:-7f49" style="ImplicitOutputPort;align=center;verticalAlign=top;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitOutputPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="7e049f10:13119e51e36:-7f34" ordering="2" parent="63eb11b3:131137cfac5:-7f49" style="ExplicitInputPort;align=center;verticalAlign=bottom;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="26.0" y="40.0"/></ExplicitInputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="7e049f10:13119e51e36:-7f35" ordering="1" parent="63eb11b3:131137cfac5:-7f49" style="ImplicitInputPort;align=center;verticalAlign=bottom;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="6.0" y="40.0"/></ImplicitInputPort><SplitBlock id="63eb11b3:131137cfac5:-7f1d" ordering="13" parent="63eb11b3:131137cfac5:-8000" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="497.0" y="467.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="63eb11b3:131137cfac5:-7f1a" ordering="2" parent="63eb11b3:131137cfac5:-7f1d" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="63eb11b3:131137cfac5:-7f1c" ordering="1" parent="63eb11b3:131137cfac5:-7f1d" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="63eb11b3:131137cfac5:-7f1b" ordering="1" parent="63eb11b3:131137cfac5:-7f1d" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="63eb11b3:131137cfac5:-7f18" parent="63eb11b3:131137cfac5:-8000" source="63eb11b3:131137cfac5:-7f1b" target="7e049f10:13119e51e36:-7f35"><mxGeometry as="geometry" x="3.0" y="170.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><SplitBlock id="63eb11b3:131137cfac5:-7f15" ordering="14" parent="63eb11b3:131137cfac5:-8000" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="807.0" y="187.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="63eb11b3:131137cfac5:-7f12" ordering="2" parent="63eb11b3:131137cfac5:-7f15" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="63eb11b3:131137cfac5:-7f14" ordering="1" parent="63eb11b3:131137cfac5:-7f15" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="63eb11b3:131137cfac5:-7f13" ordering="1" parent="63eb11b3:131137cfac5:-7f15" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="63eb11b3:131137cfac5:-7f11" parent="63eb11b3:131137cfac5:-8000" source="63eb11b3:131137cfac5:-7f87" target="63eb11b3:131137cfac5:-7f14"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="63eb11b3:131137cfac5:-7f10" parent="63eb11b3:131137cfac5:-8000" source="63eb11b3:131137cfac5:-7f1a" target="63eb11b3:131137cfac5:-7f13"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="810.0" y="470.0"/><mxPoint x="811.965811965812" y="188.03418803418805"/></Array></mxGeometry></ImplicitLink><SplitBlock id="63eb11b3:131137cfac5:-7f0e" ordering="15" parent="63eb11b3:131137cfac5:-8000" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="807.0" y="107.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="63eb11b3:131137cfac5:-7f0b" ordering="2" parent="63eb11b3:131137cfac5:-7f0e" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="63eb11b3:131137cfac5:-7f0d" ordering="1" parent="63eb11b3:131137cfac5:-7f0e" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="63eb11b3:131137cfac5:-7f0c" ordering="1" parent="63eb11b3:131137cfac5:-7f0e" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="63eb11b3:131137cfac5:-7f0a" parent="63eb11b3:131137cfac5:-8000" source="63eb11b3:131137cfac5:-7f8b" target="63eb11b3:131137cfac5:-7f0d"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="63eb11b3:131137cfac5:-7f09" parent="63eb11b3:131137cfac5:-8000" source="63eb11b3:131137cfac5:-7f12" target="63eb11b3:131137cfac5:-7f0c"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="63eb11b3:131137cfac5:-7f0f" parent="63eb11b3:131137cfac5:-8000" source="63eb11b3:131137cfac5:-7f8f" style="ImplicitLink;noEdgeStyle=0;edgeStyle=elbowEdgeStyle;elbow=horizontal" target="63eb11b3:131137cfac5:-7f0b"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="733.9999999999999" y="40.0"/><mxPoint as="targetPoint" x="811.965811965812" y="111.11111111111111"/><Array as="points" scilabClass="ScilabList"><mxPoint x="810.0" y="70.0"/></Array></mxGeometry></ImplicitLink><BasicBlock blockType="h" id="63eb11b3:131137cfac5:-7ed0" interfaceFunctionName="STEP_FUNCTION" ordering="16" parent="63eb11b3:131137cfac5:-8000" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="STEP_FUNCTION;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="STEP_FUNCTION"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-4"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="14.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=" "/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="3" width="1"><data column="0" line="0" value="0.002"/><data column="0" line="1" value="-5"/><data column="0" line="2" value="5"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"STEP",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="STEP"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="step_func"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-5.0"/><data column="0" line="1" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.002"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="true"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="75a50611:1311fa6af8e:-7dbd"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="STEP"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="75a50611:1311fa6af8e:-7dbd"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="148.571433"/><data column="1" line="0" realPart="-110.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"OUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="OUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-2.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="75a50611:1311fa6af8e:-7dba"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="OUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="75a50611:1311fa6af8e:-7dba"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="6" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="212.000003"/><data column="0" line="2" realPart="173.478395"/><data column="0" line="3" realPart="173.478395"/><data column="0" line="4" realPart="212.000003"/><data column="0" line="5" realPart="60.0"/></ScilabDouble><ScilabDouble height="6" width="1"><data column="0" line="0" realPart="-44.0"/><data column="0" line="1" realPart="-278.39289999999994"/><data column="0" line="2" realPart="-278.39289999999994"/><data column="0" line="3" realPart="-188.69678"/><data column="0" line="4" realPart="-188.69678"/><data column="0" line="5" realPart="4.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="84.0"/><data column="0" line="1" realPart="164.571433"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-20.0"/><data column="0" line="1" realPart="-100.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="450.0" y="560.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataType="REAL_MATRIX" id="63eb11b3:131137cfac5:-7d83" ordering="1" parent="63eb11b3:131137cfac5:-7ed0" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><VoltageSensorBlock dependsOnU="1" id="63eb11b3:131137cfac5:-7e37" interfaceFunctionName="VoltageSensor" ordering="17" parent="63eb11b3:131137cfac5:-8000" simulationFunctionName="VoltageSensor" simulationFunctionType="DEFAULT" style="VoltageSensor;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="VoltageSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="v"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="50.0" y="10.0"/></VoltageSensorBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="63eb11b3:131137cfac5:-7e34" ordering="1" parent="63eb11b3:131137cfac5:-7e37" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="63eb11b3:131137cfac5:-7e36" ordering="1" parent="63eb11b3:131137cfac5:-7e37" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><Orientation as="orientation" value="SOUTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="63eb11b3:131137cfac5:-7e35" ordering="2" parent="63eb11b3:131137cfac5:-7e37" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><SplitBlock id="63eb11b3:131137cfac5:-7e19" ordering="18" parent="63eb11b3:131137cfac5:-8000" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="17.0" y="477.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="63eb11b3:131137cfac5:-7e16" ordering="2" parent="63eb11b3:131137cfac5:-7e19" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="63eb11b3:131137cfac5:-7e18" ordering="1" parent="63eb11b3:131137cfac5:-7e19" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="63eb11b3:131137cfac5:-7e17" ordering="1" parent="63eb11b3:131137cfac5:-7e19" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="63eb11b3:131137cfac5:-7e15" parent="63eb11b3:131137cfac5:-8000" source="63eb11b3:131137cfac5:-7f7f" target="63eb11b3:131137cfac5:-7e18"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="63eb11b3:131137cfac5:-7e14" parent="63eb11b3:131137cfac5:-8000" source="63eb11b3:131137cfac5:-7e17" style="ImplicitLink;noEdgeStyle=0;edgeStyle=elbowEdgeStyle;elbow=horizontal" target="63eb11b3:131137cfac5:-7f1c"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><SplitBlock id="63eb11b3:131137cfac5:-7e0e" ordering="19" parent="63eb11b3:131137cfac5:-8000" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="17.0" y="107.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="63eb11b3:131137cfac5:-7e0b" ordering="2" parent="63eb11b3:131137cfac5:-7e0e" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="63eb11b3:131137cfac5:-7e0d" ordering="1" parent="63eb11b3:131137cfac5:-7e0e" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="63eb11b3:131137cfac5:-7e0c" ordering="1" parent="63eb11b3:131137cfac5:-7e0e" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="63eb11b3:131137cfac5:-7e0a" parent="63eb11b3:131137cfac5:-8000" source="63eb11b3:131137cfac5:-7e16" target="63eb11b3:131137cfac5:-7e0d"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="63eb11b3:131137cfac5:-7e09" parent="63eb11b3:131137cfac5:-8000" source="63eb11b3:131137cfac5:-7e0c" target="63eb11b3:131137cfac5:-7fda"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="20.0" y="110.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="63eb11b3:131137cfac5:-7e0f" parent="63eb11b3:131137cfac5:-8000" source="63eb11b3:131137cfac5:-7e0b" target="63eb11b3:131137cfac5:-7e34"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="46.0" y="30.000000000000004"/><mxPoint as="targetPoint" x="21.164021164021165" y="111.11111111111111"/><Array as="points" scilabClass="ScilabList"><mxPoint x="20.0" y="30.0"/></Array></mxGeometry></ImplicitLink><BasicBlock dependsOnU="1" id="63eb11b3:131137cfac5:-7df5" interfaceFunctionName="CMSCOPE" ordering="20" parent="63eb11b3:131137cfac5:-8000" simulationFunctionName="cmscope" simulationFunctionType="C_OR_FORTRAN" style="CMSCOPE;flip=false;mirror=false"><ScilabString as="exprs" height="11" width="1"><data column="0" line="0" value="1 1"/><data column="0" line="1" value="1 3 5 7 9 11 13 15"/><data column="0" line="2" value="1"/><data column="0" line="3" value="[]"/><data column="0" line="4" value="[]"/><data column="0" line="5" value="-1.5 -3.5"/><data column="0" line="6" value="1.5 3.5"/><data column="0" line="7" value="0.5 0.5"/><data column="0" line="8" value="2"/><data column="0" line="9" value="0"/><data column="0" line="10" value="Gen Voltage and Fault Current"/></ScilabString><ScilabDouble as="realParameters" height="7" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="0.5"/><data column="0" line="2" realPart="0.5"/><data column="0" line="3" realPart="-1.5"/><data column="0" line="4" realPart="1.5"/><data column="0" line="5" realPart="-3.5"/><data column="0" line="6" realPart="3.5"/></ScilabDouble><ScilabDouble as="integerParameters" height="12" width="1"><data column="0" line="0" realPart="1.0"/><data column="0" line="1" realPart="2.0"/><data column="0" line="2" realPart="2.0"/><data column="0" line="3" realPart="-1.0"/><data column="0" line="4" realPart="-1.0"/><data column="0" line="5" realPart="-1.0"/><data column="0" line="6" realPart="-1.0"/><data column="0" line="7" realPart="1.0"/><data column="0" line="8" realPart="1.0"/><data column="0" line="9" realPart="1.0"/><data column="0" line="10" realPart="3.0"/><data column="0" line="11" realPart="0.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="240.0" y="260.0"/></BasicBlock><ControlPort dataType="UNKNOW_TYPE" id="75a50611:1311fa6af8e:-7d74" ordering="1" parent="63eb11b3:131137cfac5:-7df5" style="ControlPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="75a50611:1311fa6af8e:-7d76" ordering="1" parent="63eb11b3:131137cfac5:-7df5" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ExplicitInputPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="75a50611:1311fa6af8e:-7d75" ordering="2" parent="63eb11b3:131137cfac5:-7df5" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="26.0"/></ExplicitInputPort><ExplicitLink id="63eb11b3:131137cfac5:-7df1" parent="63eb11b3:131137cfac5:-8000" source="63eb11b3:131137cfac5:-7e35" style="ExplicitLink;noEdgeStyle=0;edgeStyle=elbowEdgeStyle;elbow=horizontal" target="75a50611:1311fa6af8e:-7d76"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="94.0" y="30.000000000000004"/><mxPoint as="targetPoint" x="231.48148148148147" y="268.5185185185185"/><Array as="points" scilabClass="ScilabList"/></mxGeometry></ExplicitLink><BasicBlock blockType="h" id="63eb11b3:131137cfac5:-7dea" interfaceFunctionName="CLOCK_c" ordering="21" parent="63eb11b3:131137cfac5:-8000" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="159.0"/><data column="1" line="0" realPart="-190.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="75a50611:1311fa6af8e:-7db2"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="75a50611:1311fa6af8e:-7db2"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.0001"/><data column="0" line="1" value="0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="1.0E-4"/><data column="0" line="1" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="75a50611:1311fa6af8e:-7dae"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="75a50611:1311fa6af8e:-7dae"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="188.71066000000002"/><data column="1" line="0" realPart="-228.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="8.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="5.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="75a50611:1311fa6af8e:-7da9"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="75a50611:1311fa6af8e:-7da9"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="192.0"/><data column="0" line="2" realPart="200.71066000000002"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-44.0"/><data column="0" line="1" realPart="-292.0"/><data column="0" line="2" realPart="-216.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="199.37732666666668"/><data column="0" line="1" realPart="189.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-232.0"/><data column="0" line="1" realPart="-166.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="202.04399333333336"/><data column="0" line="1" realPart="242.70999999999998"/><data column="0" line="2" realPart="202.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-232.0"/><data column="0" line="1" realPart="-146.0"/><data column="0" line="2" realPart="-146.0"/><data column="0" line="3" realPart="4.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="240.0" y="160.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="63eb11b3:131137cfac5:-7de1" ordering="1" parent="63eb11b3:131137cfac5:-7dea" style="CommandPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><CommandControlLink id="63eb11b3:131137cfac5:-7de8" parent="63eb11b3:131137cfac5:-8000" source="63eb11b3:131137cfac5:-7de1" target="75a50611:1311fa6af8e:-7d74"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="260.0" y="184.0"/><mxPoint as="targetPoint" x="259.25925925925924" y="249.99999999999997"/></mxGeometry></CommandControlLink><ImplicitLink id="63eb11b3:131137cfac5:-7dd7" parent="63eb11b3:131137cfac5:-8000" source="7e049f10:13119e51e36:-7f33" target="63eb11b3:131137cfac5:-7e89"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="520.0000000000001" y="294.0"/><mxPoint as="targetPoint" x="527.7777777777777" y="388.88888888888886"/></mxGeometry></ImplicitLink><BasicBlock angle="90" dependsOnU="1" id="63eb11b3:131137cfac5:-7e8a" interfaceFunctionName="CurrentSensor" ordering="22" parent="63eb11b3:131137cfac5:-8000" simulationFunctionName="CurrentSensor" simulationFunctionType="DEFAULT" style="CurrentSensor;rotation=90;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CurrentSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="i"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="500.0" y="240.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="63eb11b3:131137cfac5:-7e87" ordering="1" parent="63eb11b3:131137cfac5:-7e8a" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="63eb11b3:131137cfac5:-7e89" ordering="1" parent="63eb11b3:131137cfac5:-7e8a" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="6.0" y="40.0"/></ImplicitOutputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="63eb11b3:131137cfac5:-7e88" ordering="2" parent="63eb11b3:131137cfac5:-7e8a" style="ExplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="26.0" y="40.0"/></ExplicitOutputPort><SplitBlock id="63eb11b3:131137cfac5:-7dc5" ordering="23" parent="63eb11b3:131137cfac5:-8000" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="517.0" y="107.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="63eb11b3:131137cfac5:-7dc2" ordering="2" parent="63eb11b3:131137cfac5:-7dc5" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="63eb11b3:131137cfac5:-7dc4" ordering="1" parent="63eb11b3:131137cfac5:-7dc5" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="63eb11b3:131137cfac5:-7dc3" ordering="1" parent="63eb11b3:131137cfac5:-7dc5" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="63eb11b3:131137cfac5:-7dc1" parent="63eb11b3:131137cfac5:-8000" source="63eb11b3:131137cfac5:-7da1" target="63eb11b3:131137cfac5:-7dc4"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="63eb11b3:131137cfac5:-7dc0" parent="63eb11b3:131137cfac5:-8000" source="63eb11b3:131137cfac5:-7dc3" target="63eb11b3:131137cfac5:-7f71"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="520.0" y="110.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="63eb11b3:131137cfac5:-7dba" ordering="24" parent="63eb11b3:131137cfac5:-8000" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="517.0" y="187.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="63eb11b3:131137cfac5:-7db7" ordering="2" parent="63eb11b3:131137cfac5:-7dba" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="63eb11b3:131137cfac5:-7db9" ordering="1" parent="63eb11b3:131137cfac5:-7dba" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="63eb11b3:131137cfac5:-7db8" ordering="1" parent="63eb11b3:131137cfac5:-7dba" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitLink id="63eb11b3:131137cfac5:-7db6" parent="63eb11b3:131137cfac5:-8000" source="63eb11b3:131137cfac5:-7dc2" target="63eb11b3:131137cfac5:-7db9"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="63eb11b3:131137cfac5:-7db5" parent="63eb11b3:131137cfac5:-8000" source="63eb11b3:131137cfac5:-7db8" target="63eb11b3:131137cfac5:-7e87"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="63eb11b3:131137cfac5:-7dbb" parent="63eb11b3:131137cfac5:-8000" source="63eb11b3:131137cfac5:-7db7" target="63eb11b3:131137cfac5:-7edd"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="556.0" y="190.0"/><mxPoint as="targetPoint" x="526.3157894736842" y="190.78947368421052"/></mxGeometry></ImplicitLink><BasicBlock dependsOnU="1" id="63eb11b3:131137cfac5:-7fde" interfaceFunctionName="SineVoltage" ordering="25" parent="63eb11b3:131137cfac5:-8000" simulationFunctionName="SineVoltage" simulationFunctionType="DEFAULT" style="SineVoltage;flip=false;mirror=false"><ScilabString as="exprs" height="5" width="1"><data column="0" line="0" value="1.414"/><data column="0" line="1" value="0"/><data column="0" line="2" value="50"/><data column="0" line="3" value="0"/><data column="0" line="4" value="0"/></ScilabString><ScilabDouble as="realParameters" height="5" width="1"><data column="0" line="0" realPart="1.414"/><data column="0" line="1" realPart="0.0"/><data column="0" line="2" realPart="50.0"/><data column="0" line="3" realPart="0.0"/><data column="0" line="4" realPart="0.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="SineVoltage"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="5" width="1"><data column="0" line="0" value="V"/><data column="0" line="1" value="phase"/><data column="0" line="2" value="freqHz"/><data column="0" line="3" value="offset"/><data column="0" line="4" value="startTime"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.414"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="50.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="60.0" width="50.0" x="40.0" y="80.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="63eb11b3:131137cfac5:-7fd9" ordering="1" parent="63eb11b3:131137cfac5:-7fde" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="50.0" y="26.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="63eb11b3:131137cfac5:-7fda" ordering="1" parent="63eb11b3:131137cfac5:-7fde" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="26.0"/></ImplicitInputPort><SplitBlock id="7e049f10:13119e51e36:-7f2a" ordering="26" parent="63eb11b3:131137cfac5:-8000" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="127.0" y="107.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="7e049f10:13119e51e36:-7f28" ordering="1" parent="7e049f10:13119e51e36:-7f2a" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="7e049f10:13119e51e36:-7f27" ordering="2" parent="7e049f10:13119e51e36:-7f2a" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="7e049f10:13119e51e36:-7f29" ordering="1" parent="7e049f10:13119e51e36:-7f2a" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="7e049f10:13119e51e36:-7f26" parent="63eb11b3:131137cfac5:-8000" source="63eb11b3:131137cfac5:-7fd9" target="7e049f10:13119e51e36:-7f29"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="7e049f10:13119e51e36:-7f25" parent="63eb11b3:131137cfac5:-8000" source="7e049f10:13119e51e36:-7f28" target="63eb11b3:131137cfac5:-7dae"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="140.0" y="110.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="7e049f10:13119e51e36:-7f2b" parent="63eb11b3:131137cfac5:-8000" source="63eb11b3:131137cfac5:-7e36" style="ImplicitLink;noEdgeStyle=0;edgeStyle=elbowEdgeStyle" target="7e049f10:13119e51e36:-7f27"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="70.0" y="54.0"/><mxPoint as="targetPoint" x="130.0" y="110.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="130.0" y="80.0"/></Array></mxGeometry></ImplicitLink><ExplicitLink id="7e049f10:13119e51e36:-7f23" parent="63eb11b3:131137cfac5:-8000" source="63eb11b3:131137cfac5:-7e88" target="75a50611:1311fa6af8e:-7d75"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="236.0" y="290.0"/><mxPoint as="targetPoint" x="530.0" y="280.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="530.0" y="340.0"/><mxPoint x="210.0" y="340.0"/><mxPoint x="210.0" y="290.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="7e049f10:13119e51e36:-7f1f" parent="63eb11b3:131137cfac5:-8000" source="63eb11b3:131137cfac5:-7d83" target="7e049f10:13119e51e36:-7f34"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="494.0" y="580.0"/><mxPoint as="targetPoint" x="520.0" y="430.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="520.0" y="580.0"/></Array></mxGeometry></ExplicitLink><BasicBlock dependsOnU="1" id="63eb11b3:131137cfac5:-7fd0" interfaceFunctionName="Inductor" ordering="27" parent="63eb11b3:131137cfac5:-8000" simulationFunctionName="Inductor" simulationFunctionType="DEFAULT" style="Inductor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="0.00063662"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="6.3662E-4"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Inductor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="L"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.3662E-4"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="180.0" y="90.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="63eb11b3:131137cfac5:-7dad" ordering="1" parent="63eb11b3:131137cfac5:-7fd0" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="63eb11b3:131137cfac5:-7dae" ordering="1" parent="63eb11b3:131137cfac5:-7fd0" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><TextBlock id="75a50611:1311fa6af8e:-7d9f" parent="63eb11b3:131137cfac5:-8000" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;flip=false;mirror=false" value="j0.2"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="j0.2"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="j0.2"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="180.0" y="50.0"/></TextBlock><TextBlock id="75a50611:1311fa6af8e:-7d9c" parent="63eb11b3:131137cfac5:-8000" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;flip=false;mirror=false" value="j0.1"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="j0.1"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="j0.1"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="280.0" y="50.0"/></TextBlock><TextBlock id="75a50611:1311fa6af8e:-7d9a" parent="63eb11b3:131137cfac5:-8000" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;flip=false;mirror=false" value="j0.15"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="j0.15"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="j0.15"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="380.0" y="50.0"/></TextBlock><TextBlock id="75a50611:1311fa6af8e:-7d98" parent="63eb11b3:131137cfac5:-8000" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;flip=false;mirror=false" value="j0.1"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="j0.1"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="j0.1"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="460.0" y="50.0"/></TextBlock><TextBlock id="75a50611:1311fa6af8e:-7d95" parent="63eb11b3:131137cfac5:-8000" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;flip=false;mirror=false" value="j0.125"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="j0.125"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="j0.125"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="560.0" y="-20.0"/></TextBlock><TextBlock id="75a50611:1311fa6af8e:-7d92" parent="63eb11b3:131137cfac5:-8000" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;flip=false;mirror=false" value="j0.125"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="j0.125"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="j0.125"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="560.0" y="60.0"/></TextBlock><TextBlock id="75a50611:1311fa6af8e:-7d90" parent="63eb11b3:131137cfac5:-8000" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;flip=false;mirror=false" value="j0.125"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="j0.125"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="j0.125"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="560.0" y="140.0"/></TextBlock><TextBlock id="75a50611:1311fa6af8e:-7d8d" parent="63eb11b3:131137cfac5:-8000" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;fontColor=#D31B1B;flip=false;mirror=false" value="Fault Initiation"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="Fault Initiation"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="Fault Initiation"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="580.0" y="370.0"/></TextBlock><TextBlock id="75a50611:1311fa6af8e:-7d85" parent="63eb11b3:131137cfac5:-8000" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;fontColor=#D31B1B;flip=false;mirror=false" value="Voltage and <br>Current Waveform"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="Voltage and <br>Current Waveform"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="Voltage and <br>Current Waveform"/></ScilabString><mxGeometry as="geometry" height="40.0" width="50.0" x="330.0" y="260.0"/></TextBlock><TextBlock id="75a50611:1311fa6af8e:-7d7e" parent="63eb11b3:131137cfac5:-8000" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;fontColor=#D31B1B;flip=false;mirror=false" value="Generator"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="Generator"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="Generator"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="50.0" y="140.0"/></TextBlock><TextBlock id="75a50611:1311fa6af8e:-7d7a" parent="63eb11b3:131137cfac5:-8000" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;fontColor=#D31B1B;flip=false;mirror=false" value="Motors"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="Motors"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="Motors"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="750.0" y="70.0"/></TextBlock></root></mxGraphModel><mxCell as="defaultParent" id="63eb11b3:131137cfac5:-8000" parent="63eb11b3:131137cfac5:-7fff"/><mxPoint as="origin" y="-20.0"/></XcosDiagram>
\ No newline at end of file diff --git a/Working_Examples/83/CH9/EX9.2/result_example_9_2.txt b/Working_Examples/83/CH9/EX9.2/result_example_9_2.txt new file mode 100755 index 0000000..68589cd --- /dev/null +++ b/Working_Examples/83/CH9/EX9.2/result_example_9_2.txt @@ -0,0 +1,12 @@ + + +Subtransient reactance of each motor = j1.25 pu + +Subtransient current in the fault =9224.9A + +Subtransient current in breaker B=7475.3A + +Momentary current through the breaker B=11960A + +Current to be interrupted by breaker B in five cycles=7581A + diff --git a/Working_Examples/83/CH9/EX9.2/xcos_result_example_9_2.jpeg b/Working_Examples/83/CH9/EX9.2/xcos_result_example_9_2.jpeg Binary files differnew file mode 100755 index 0000000..b742488 --- /dev/null +++ b/Working_Examples/83/CH9/EX9.2/xcos_result_example_9_2.jpeg diff --git a/Working_Examples/83/CH9/EX9.3/example_9_3.sce b/Working_Examples/83/CH9/EX9.3/example_9_3.sce new file mode 100755 index 0000000..6a76530 --- /dev/null +++ b/Working_Examples/83/CH9/EX9.3/example_9_3.sce @@ -0,0 +1,39 @@ +//Chapter 9 +//Example 9.3 +//page 340 +//To calculate subtransient current in Generator,Motor and fault +clear;clc; +mvab=25; +kvb=11; +Vo=10.6/kvb; //PU Prefault voltage +printf('\nPrefault Voltage = %0.4fpu\n',Vo); + +Load=15/mvab; //load PU with 0.8pf leading +Io=(Load/(Vo*0.8))*(cosd(36.9)+%i*sind(36.9)); //Prefault current +printf('\nPrefault current = %0.4f at %0.1f deg PU',abs(Io),atand(imag(Io)/real(Io))); + +Eg=Vo+(%i*0.45*Io); //voltage behind subtransient reactance(generator) +printf('\n\nVoltage behind subtransient reactance(Generator) = %0.4f+j%0.2f pu\n''',real(Eg),imag(Eg)); + +Em=Vo-(%i*0.15*Io); //voltage behind subtransient reactance(motor) +printf('\nVoltage behind subtransient reactance(Motor) = %0.4f-j%0.4f pu',real(Em),abs(imag(Em))); + +Ig=Eg/(%i*0.45); //under fault condition +Im=Em/(%i*0.15); //under fault condition +printf('\n\nUnder Faulted condition \n Ig""=%0.4f-j%0.4f pu',real(Ig),abs(imag(Ig))); +printf('\n Im""=%0.4f-j%0.4f pu',real(Im),abs(imag(Im))); +If=Ig+Im; //Current in fault +printf('\n\nCurrent in fault= -j%0.4f pu',abs(imag(If))); + +Ib=(mvab*1000/(sqrt(3)*11)); //Base current +//Actual Currents +printf("\n\nNow"); +Ig=Ig*Ib +Im=Im*Ib +If=If*Ib +printf('\nIg""= %0.1f-j%0.1f A',real(Ig),abs(imag(Ig))); +printf('\nIm""= %0.1f-j%0.1f A',real(Im),abs(imag(Im))); +printf('\nIf= -j%d A',abs(imag(If))); + + + diff --git a/Working_Examples/83/CH9/EX9.3/example_9_3.xcos b/Working_Examples/83/CH9/EX9.3/example_9_3.xcos new file mode 100755 index 0000000..9268ec9 --- /dev/null +++ b/Working_Examples/83/CH9/EX9.3/example_9_3.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" finalIntegrationTime="0.5" title="example_9_3"><!--Xcos - 1.0 - scilab-5.5.2 - 20160406 2040--><mxGraphModel as="model"><root><mxCell id="-487ef5e3:131246c8237:-7fff"/><mxCell id="-487ef5e3:131246c8237:-8000" parent="-487ef5e3:131246c8237:-7fff"/><BasicBlock angle="270" dependsOnU="1" id="-487ef5e3:131246c8237:-7fd1" interfaceFunctionName="Inductor" ordering="1" parent="-487ef5e3:131246c8237:-8000" simulationFunctionName="Inductor" simulationFunctionType="DEFAULT" style="Inductor;rotation=270;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="0.00047746482"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="4.7746482E-4"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Inductor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="L"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.7746482E-4"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="80.0" y="150.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-487ef5e3:131246c8237:-7f6e" ordering="1" parent="-487ef5e3:131246c8237:-7fd1" style="ImplicitInputPort;align=center;verticalAlign=bottom;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-487ef5e3:131246c8237:-7f6d" ordering="1" parent="-487ef5e3:131246c8237:-7fd1" style="ImplicitOutputPort;align=center;verticalAlign=top;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitOutputPort><BasicBlock dependsOnU="1" id="-487ef5e3:131246c8237:-7fc5" interfaceFunctionName="Inductor" ordering="2" parent="-487ef5e3:131246c8237:-8000" simulationFunctionName="Inductor" simulationFunctionType="DEFAULT" style="Inductor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="0.00031830988"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="3.1830988E-4"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Inductor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="L"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="3.1830988E-4"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="130.0" y="80.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-487ef5e3:131246c8237:-7f6a" ordering="1" parent="-487ef5e3:131246c8237:-7fc5" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-487ef5e3:131246c8237:-7f69" ordering="1" parent="-487ef5e3:131246c8237:-7fc5" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><BasicBlock dependsOnU="1" id="-487ef5e3:131246c8237:-7fc2" interfaceFunctionName="Inductor" ordering="3" parent="-487ef5e3:131246c8237:-8000" simulationFunctionName="Inductor" simulationFunctionType="DEFAULT" style="Inductor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="0.00031830988"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="3.1830988E-4"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Inductor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="L"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="3.1830988E-4"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="220.0" y="80.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-487ef5e3:131246c8237:-7f66" ordering="1" parent="-487ef5e3:131246c8237:-7fc2" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-487ef5e3:131246c8237:-7f65" ordering="1" parent="-487ef5e3:131246c8237:-7fc2" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><BasicBlock dependsOnU="1" id="-487ef5e3:131246c8237:-7fbf" interfaceFunctionName="Inductor" ordering="4" parent="-487ef5e3:131246c8237:-8000" simulationFunctionName="Inductor" simulationFunctionType="DEFAULT" style="Inductor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="0.00031830988"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="3.1830988E-4"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Inductor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="L"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="3.1830988E-4"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="330.0" y="80.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-487ef5e3:131246c8237:-7f62" ordering="1" parent="-487ef5e3:131246c8237:-7fbf" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-487ef5e3:131246c8237:-7f61" ordering="1" parent="-487ef5e3:131246c8237:-7fbf" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><BasicBlock angle="270" dependsOnU="1" id="-487ef5e3:131246c8237:-7fbc" interfaceFunctionName="Inductor" ordering="5" parent="-487ef5e3:131246c8237:-8000" simulationFunctionName="Inductor" simulationFunctionType="DEFAULT" style="Inductor;rotation=270;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="0.00047746482"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="4.7746482E-4"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Inductor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="L"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.7746482E-4"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="830.0" y="130.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-487ef5e3:131246c8237:-7f5e" ordering="1" parent="-487ef5e3:131246c8237:-7fbc" style="ImplicitInputPort;align=center;verticalAlign=bottom;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-487ef5e3:131246c8237:-7f5d" ordering="1" parent="-487ef5e3:131246c8237:-7fbc" style="ImplicitOutputPort;align=center;verticalAlign=top;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitOutputPort><BasicBlock angle="270" dependsOnU="1" id="-487ef5e3:131246c8237:-7fb6" interfaceFunctionName="SineVoltage" ordering="6" parent="-487ef5e3:131246c8237:-8000" simulationFunctionName="SineVoltage" simulationFunctionType="DEFAULT" style="SineVoltage;rotation=270;flip=false;mirror=false"><ScilabString as="exprs" height="5" width="1"><data column="0" line="0" value="1.467674249"/><data column="0" line="1" value="-0.09002305019"/><data column="0" line="2" value="50"/><data column="0" line="3" value="0"/><data column="0" line="4" value="0"/></ScilabString><ScilabDouble as="realParameters" height="5" width="1"><data column="0" line="0" realPart="1.467674249"/><data column="0" line="1" realPart="-0.09002305019"/><data column="0" line="2" realPart="50.0"/><data column="0" line="3" realPart="0.0"/><data column="0" line="4" realPart="0.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="SineVoltage"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="5" width="1"><data column="0" line="0" value="V"/><data column="0" line="1" value="phase"/><data column="0" line="2" value="freqHz"/><data column="0" line="3" value="offset"/><data column="0" line="4" value="startTime"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.467674249"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-0.09002305019"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="50.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="60.0" width="50.0" x="830.0" y="240.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-487ef5e3:131246c8237:-7f76" ordering="1" parent="-487ef5e3:131246c8237:-7fb6" style="ImplicitInputPort;align=center;verticalAlign=bottom;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="60.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-487ef5e3:131246c8237:-7f75" ordering="1" parent="-487ef5e3:131246c8237:-7fb6" style="ImplicitOutputPort;align=center;verticalAlign=top;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitOutputPort><ImplicitLink id="-487ef5e3:131246c8237:-7fb3" parent="-487ef5e3:131246c8237:-8000" source="-487ef5e3:131246c8237:-7f79" target="-487ef5e3:131246c8237:-7f6e"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="100.0" y="236.0"/><mxPoint as="targetPoint" x="100.0" y="200.0"/></mxGeometry></ImplicitLink><ImplicitLink id="-487ef5e3:131246c8237:-7fb2" parent="-487ef5e3:131246c8237:-8000" source="-487ef5e3:131246c8237:-7f6d" target="-487ef5e3:131246c8237:-7f6a"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="100.0" y="146.0"/><mxPoint as="targetPoint" x="170.0" y="100.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="100.0" y="100.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-487ef5e3:131246c8237:-7fb1" parent="-487ef5e3:131246c8237:-8000" source="-487ef5e3:131246c8237:-7f69" target="-487ef5e3:131246c8237:-7f66"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="214.0" y="100.0"/><mxPoint as="targetPoint" x="270.0" y="100.0"/></mxGeometry></ImplicitLink><ImplicitLink id="-487ef5e3:131246c8237:-7fb0" parent="-487ef5e3:131246c8237:-8000" source="-487ef5e3:131246c8237:-7f65" target="-487ef5e3:131246c8237:-7f62"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="314.0" y="100.0"/><mxPoint as="targetPoint" x="380.0" y="100.0"/></mxGeometry></ImplicitLink><ImplicitLink id="-487ef5e3:131246c8237:-7fae" parent="-487ef5e3:131246c8237:-8000" source="-487ef5e3:131246c8237:-7f75" target="-487ef5e3:131246c8237:-7f5e"><mxGeometry as="geometry" x="320.0"><mxPoint as="sourcePoint" x="850.0" y="174.0"/><mxPoint as="targetPoint" x="850.0" y="240.0"/></mxGeometry></ImplicitLink><GroundBlock dependsOnU="1" id="-487ef5e3:131246c8237:-7fa7" interfaceFunctionName="Ground" ordering="7" parent="-487ef5e3:131246c8237:-8000" simulationFunctionName="Ground" simulationFunctionType="DEFAULT" style="Ground;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Ground"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="80.0" y="410.0"/></GroundBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-487ef5e3:131246c8237:-7fa6" ordering="1" parent="-487ef5e3:131246c8237:-7fa7" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><Orientation as="orientation" value="NORTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><SplitBlock id="-487ef5e3:131246c8237:-7fa4" ordering="8" parent="-487ef5e3:131246c8237:-8000" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="97.0" y="357.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-487ef5e3:131246c8237:-7fa2" ordering="1" parent="-487ef5e3:131246c8237:-7fa4" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-487ef5e3:131246c8237:-7fa1" ordering="2" parent="-487ef5e3:131246c8237:-7fa4" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-487ef5e3:131246c8237:-7fa3" ordering="1" parent="-487ef5e3:131246c8237:-7fa4" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-487ef5e3:131246c8237:-7fa0" parent="-487ef5e3:131246c8237:-8000" source="-487ef5e3:131246c8237:-7f7a" target="-487ef5e3:131246c8237:-7fa3"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-487ef5e3:131246c8237:-7fa5" parent="-487ef5e3:131246c8237:-8000" source="-487ef5e3:131246c8237:-7fa1" target="-487ef5e3:131246c8237:-7fa6"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="100.0" y="406.0"/><mxPoint as="targetPoint" x="100.0" y="360.0"/></mxGeometry></ImplicitLink><BasicBlock angle="270" dependsOnU="1" id="-487ef5e3:131246c8237:-7f95" interfaceFunctionName="Switch" ordering="9" parent="-487ef5e3:131246c8237:-8000" simulationFunctionName="Switch" simulationFunctionType="DEFAULT" style="Switch;rotation=270;flip=false;mirror=false"><ScilabString as="exprs" height="2" width="1"><data column="0" line="0" value="0.000001"/><data column="0" line="1" value="100000000"/></ScilabString><ScilabDouble as="realParameters" height="2" width="1"><data column="0" line="0" realPart="0.01"/><data column="0" line="1" realPart="100000.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Switch"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="p"/><data column="0" line="1" value="inp"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="2" width="1"><data column="0" line="0" value="Ron"/><data column="0" line="1" value="Roff"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0E-6"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0E8"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="720.0" y="263.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-487ef5e3:131246c8237:-7f5a" ordering="1" parent="-487ef5e3:131246c8237:-7f95" style="ImplicitInputPort;align=center;verticalAlign=bottom;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="6.0" y="40.0"/></ImplicitInputPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-487ef5e3:131246c8237:-7f59" ordering="2" parent="-487ef5e3:131246c8237:-7f95" style="ExplicitInputPort;align=center;verticalAlign=bottom;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="26.0" y="40.0"/></ExplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-487ef5e3:131246c8237:-7f58" ordering="1" parent="-487ef5e3:131246c8237:-7f95" style="ImplicitOutputPort;align=center;verticalAlign=top;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitOutputPort><BasicBlock angle="90" dependsOnU="1" id="-487ef5e3:131246c8237:-7f47" interfaceFunctionName="CurrentSensor" ordering="10" parent="-487ef5e3:131246c8237:-8000" simulationFunctionName="CurrentSensor" simulationFunctionType="DEFAULT" style="CurrentSensor;rotation=90;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CurrentSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="i"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="730.0" y="153.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-487ef5e3:131246c8237:-7f45" ordering="2" parent="-487ef5e3:131246c8237:-7f47" style="ExplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="26.0" y="40.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-487ef5e3:131246c8237:-7f44" ordering="1" parent="-487ef5e3:131246c8237:-7f47" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-487ef5e3:131246c8237:-7f46" ordering="1" parent="-487ef5e3:131246c8237:-7f47" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="6.0" y="40.0"/></ImplicitOutputPort><ImplicitLink id="-487ef5e3:131246c8237:-7f38" parent="-487ef5e3:131246c8237:-8000" source="-487ef5e3:131246c8237:-7f58" target="-487ef5e3:131246c8237:-7f46"><mxGeometry as="geometry" x="290.0" y="3.0"><mxPoint as="sourcePoint" x="740.0" y="197.0"/><mxPoint as="targetPoint" x="740.0" y="253.0"/></mxGeometry></ImplicitLink><VoltageSensorBlock angle="270" dependsOnU="1" id="-487ef5e3:131246c8237:-7f2e" interfaceFunctionName="VoltageSensor" ordering="11" parent="-487ef5e3:131246c8237:-8000" simulationFunctionName="VoltageSensor" simulationFunctionType="DEFAULT" style="VoltageSensor;rotation=270;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="VoltageSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="v"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="300.0" y="200.0"/></VoltageSensorBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-487ef5e3:131246c8237:-7f2c" ordering="2" parent="-487ef5e3:131246c8237:-7f2e" style="ExplicitOutputPort;align=center;verticalAlign=top;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-487ef5e3:131246c8237:-7f2b" ordering="1" parent="-487ef5e3:131246c8237:-7f2e" style="ImplicitInputPort;align=center;verticalAlign=bottom;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-487ef5e3:131246c8237:-7f2d" ordering="1" parent="-487ef5e3:131246c8237:-7f2e" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><Orientation as="orientation" value="SOUTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><SplitBlock id="-487ef5e3:131246c8237:-7ef4" ordering="12" parent="-487ef5e3:131246c8237:-8000" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="317.0" y="357.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-487ef5e3:131246c8237:-7ef2" ordering="1" parent="-487ef5e3:131246c8237:-7ef4" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-487ef5e3:131246c8237:-7ef1" ordering="2" parent="-487ef5e3:131246c8237:-7ef4" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-487ef5e3:131246c8237:-7ef3" ordering="1" parent="-487ef5e3:131246c8237:-7ef4" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-487ef5e3:131246c8237:-7ef0" parent="-487ef5e3:131246c8237:-8000" source="-487ef5e3:131246c8237:-7fa2" target="-487ef5e3:131246c8237:-7ef3"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-487ef5e3:131246c8237:-7ef5" parent="-487ef5e3:131246c8237:-8000" source="-487ef5e3:131246c8237:-7ef1" target="-487ef5e3:131246c8237:-7f2b"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="320.0" y="244.0"/><mxPoint as="targetPoint" x="320.0" y="360.0"/></mxGeometry></ImplicitLink><BasicBlock blockType="h" id="-487ef5e3:131246c8237:-7ee9" interfaceFunctionName="STEP_FUNCTION" ordering="13" parent="-487ef5e3:131246c8237:-8000" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="STEP_FUNCTION;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="STEP_FUNCTION"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-4"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="14.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=" "/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="3" width="1"><data column="0" line="0" value="0.255"/><data column="0" line="1" value="-3"/><data column="0" line="2" value="5"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"STEP",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="STEP"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="step_func"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-3.0"/><data column="0" line="1" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.255"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="true"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-9f15b34:131b8cd9210:-7d2f"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="STEP"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-9f15b34:131b8cd9210:-7d2f"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="108.57143300000001"/><data column="1" line="0" realPart="-70.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"OUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="OUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-2.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-9f15b34:131b8cd9210:-7d2c"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="OUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-9f15b34:131b8cd9210:-7d2c"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="6" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="116.00000299999998"/><data column="0" line="2" realPart="77.47839499999999"/><data column="0" line="3" realPart="77.47839499999999"/><data column="0" line="4" realPart="116.00000299999998"/><data column="0" line="5" realPart="60.0"/></ScilabDouble><ScilabDouble height="6" width="1"><data column="0" line="0" realPart="4.0"/><data column="0" line="1" realPart="-174.39289999999994"/><data column="0" line="2" realPart="-174.39289999999994"/><data column="0" line="3" realPart="-84.69677999999999"/><data column="0" line="4" realPart="-84.69677999999999"/><data column="0" line="5" realPart="-44.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="84.0"/><data column="0" line="1" realPart="124.57143300000001"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-20.0"/><data column="0" line="1" realPart="-60.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="700.0" y="413.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataType="REAL_MATRIX" id="-487ef5e3:131246c8237:-7d7d" ordering="1" parent="-487ef5e3:131246c8237:-7ee9" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ExplicitLink id="-487ef5e3:131246c8237:-7ee4" parent="-487ef5e3:131246c8237:-8000" source="-487ef5e3:131246c8237:-7d7d" target="-487ef5e3:131246c8237:-7f59"><mxGeometry as="geometry" x="290.0" y="3.0"><mxPoint as="sourcePoint" x="744.0" y="433.0"/><mxPoint as="targetPoint" x="750.0" y="313.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="750.0" y="433.0"/></Array></mxGeometry></ExplicitLink><BasicBlock dependsOnU="1" id="-487ef5e3:131246c8237:-7eda" interfaceFunctionName="CMSCOPE" ordering="14" parent="-487ef5e3:131246c8237:-8000" simulationFunctionName="cmscope" simulationFunctionType="C_OR_FORTRAN" style="CMSCOPE;flip=false;mirror=false"><ScilabString as="exprs" height="11" width="1"><data column="0" line="0" value="1 1"/><data column="0" line="1" value="1 3 5 7 9 11 13 15"/><data column="0" line="2" value="-1"/><data column="0" line="3" value="[]"/><data column="0" line="4" value="[]"/><data column="0" line="5" value="-1.5 -25"/><data column="0" line="6" value="1.5 25"/><data column="0" line="7" value="0.50 0.50 "/><data column="0" line="8" value="20"/><data column="0" line="9" value="0"/><data column="0" line="10" value="Voltage and Current at the Fault"/></ScilabString><ScilabDouble as="realParameters" height="7" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="0.5"/><data column="0" line="2" realPart="0.5"/><data column="0" line="3" realPart="-1.5"/><data column="0" line="4" realPart="1.5"/><data column="0" line="5" realPart="-25.0"/><data column="0" line="6" realPart="25.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="12" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="2.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="-1.0"/><data column="0" line="4" realPart="-1.0"/><data column="0" line="5" realPart="-1.0"/><data column="0" line="6" realPart="-1.0"/><data column="0" line="7" realPart="1.0"/><data column="0" line="8" realPart="1.0"/><data column="0" line="9" realPart="1.0"/><data column="0" line="10" realPart="3.0"/><data column="0" line="11" realPart="0.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="540.0" y="260.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-9f15b34:131b8cd9210:-7d16" ordering="1" parent="-487ef5e3:131246c8237:-7eda" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ExplicitInputPort><ControlPort dataType="UNKNOW_TYPE" id="-9f15b34:131b8cd9210:-7d14" ordering="1" parent="-487ef5e3:131246c8237:-7eda" style="ControlPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-9f15b34:131b8cd9210:-7d15" ordering="2" parent="-487ef5e3:131246c8237:-7eda" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="26.0"/></ExplicitInputPort><SplitBlock id="-487ef5e3:131246c8237:-7ecb" ordering="15" parent="-487ef5e3:131246c8237:-8000" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="727.0" y="357.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-487ef5e3:131246c8237:-7ec9" ordering="1" parent="-487ef5e3:131246c8237:-7ecb" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-487ef5e3:131246c8237:-7ec8" ordering="2" parent="-487ef5e3:131246c8237:-7ecb" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-487ef5e3:131246c8237:-7eca" ordering="1" parent="-487ef5e3:131246c8237:-7ecb" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-487ef5e3:131246c8237:-7ec7" parent="-487ef5e3:131246c8237:-8000" source="-487ef5e3:131246c8237:-7ef2" target="-487ef5e3:131246c8237:-7eca"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-487ef5e3:131246c8237:-7ec6" parent="-487ef5e3:131246c8237:-8000" source="-487ef5e3:131246c8237:-7ec9" target="-487ef5e3:131246c8237:-7f5a"><mxGeometry as="geometry" x="290.0" y="3.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-487ef5e3:131246c8237:-7ecc" parent="-487ef5e3:131246c8237:-8000" source="-487ef5e3:131246c8237:-7ec8" target="-487ef5e3:131246c8237:-7f76"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="850.0" y="304.0"/><mxPoint as="targetPoint" x="440.0" y="360.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="850.0" y="360.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="-487ef5e3:131246c8237:-7ec1" ordering="16" parent="-487ef5e3:131246c8237:-8000" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="747.0" y="97.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-487ef5e3:131246c8237:-7ebf" ordering="1" parent="-487ef5e3:131246c8237:-7ec1" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-487ef5e3:131246c8237:-7ebe" ordering="2" parent="-487ef5e3:131246c8237:-7ec1" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-487ef5e3:131246c8237:-7ec0" ordering="1" parent="-487ef5e3:131246c8237:-7ec1" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-487ef5e3:131246c8237:-7ebc" parent="-487ef5e3:131246c8237:-8000" source="-487ef5e3:131246c8237:-7ebf" target="-487ef5e3:131246c8237:-7f44"><mxGeometry as="geometry" x="290.0" y="3.0"><Array as="points" scilabClass="ScilabList"><mxPoint x="750.0" y="133.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-487ef5e3:131246c8237:-7ec2" parent="-487ef5e3:131246c8237:-8000" source="-487ef5e3:131246c8237:-7f5d" target="-487ef5e3:131246c8237:-7ebe"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="850.0" y="126.0"/><mxPoint as="targetPoint" x="460.0" y="100.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="850.0" y="100.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="-487ef5e3:131246c8237:-7e92" ordering="17" parent="-487ef5e3:131246c8237:-8000" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="407.0" y="97.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-487ef5e3:131246c8237:-7e90" ordering="1" parent="-487ef5e3:131246c8237:-7e92" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-487ef5e3:131246c8237:-7e8f" ordering="2" parent="-487ef5e3:131246c8237:-7e92" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-487ef5e3:131246c8237:-7e91" ordering="1" parent="-487ef5e3:131246c8237:-7e92" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-487ef5e3:131246c8237:-7e8e" parent="-487ef5e3:131246c8237:-8000" source="-487ef5e3:131246c8237:-7f61" target="-487ef5e3:131246c8237:-7e91"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-487ef5e3:131246c8237:-7e8d" parent="-487ef5e3:131246c8237:-8000" source="-487ef5e3:131246c8237:-7e90" target="-487ef5e3:131246c8237:-7ec0"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="710.0" y="100.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-487ef5e3:131246c8237:-7e93" parent="-487ef5e3:131246c8237:-8000" source="-487ef5e3:131246c8237:-7f2d" target="-487ef5e3:131246c8237:-7e8f"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="344.0" y="220.0"/><mxPoint as="targetPoint" x="410.0" y="100.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="410.0" y="220.0"/></Array></mxGeometry></ImplicitLink><BasicBlock blockType="h" id="-487ef5e3:131246c8237:-7e81" interfaceFunctionName="CLOCK_c" ordering="18" parent="-487ef5e3:131246c8237:-8000" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="119.0"/><data column="1" line="0" realPart="-150.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-9f15b34:131b8cd9210:-7d24"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-9f15b34:131b8cd9210:-7d24"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.0001"/><data column="0" line="1" value="0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="1.0E-4"/><data column="0" line="1" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-9f15b34:131b8cd9210:-7d20"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-9f15b34:131b8cd9210:-7d20"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="124.71066000000002"/><data column="1" line="0" realPart="-164.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="8.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="4.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-9f15b34:131b8cd9210:-7d1b"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-9f15b34:131b8cd9210:-7d1b"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="106.0"/><data column="0" line="2" realPart="135.37732666666668"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="4.0"/><data column="0" line="1" realPart="-204.0"/><data column="0" line="2" realPart="-168.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="136.71066000000002"/><data column="0" line="1" realPart="149.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-152.0"/><data column="0" line="1" realPart="-126.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="138.04399333333336"/><data column="0" line="1" realPart="151.70999999999998"/><data column="0" line="2" realPart="111.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-168.0"/><data column="0" line="1" realPart="-58.0"/><data column="0" line="2" realPart="-58.0"/><data column="0" line="3" realPart="-44.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="540.0" y="150.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="-487ef5e3:131246c8237:-7e74" ordering="1" parent="-487ef5e3:131246c8237:-7e81" style="CommandPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><CommandControlLink id="-487ef5e3:131246c8237:-7e7f" parent="-487ef5e3:131246c8237:-8000" source="-487ef5e3:131246c8237:-7e74" target="-9f15b34:131b8cd9210:-7d14"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="560.0" y="194.0"/><mxPoint as="targetPoint" x="560.0" y="260.0"/></mxGeometry></CommandControlLink><ExplicitLink id="-487ef5e3:131246c8237:-7e7c" parent="-487ef5e3:131246c8237:-8000" source="-487ef5e3:131246c8237:-7f2c" target="-9f15b34:131b8cd9210:-7d16"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="320.0" y="196.0"/><mxPoint as="targetPoint" x="530.0" y="270.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="320.0" y="170.0"/><mxPoint x="480.0" y="170.0"/><mxPoint x="480.0" y="270.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="-487ef5e3:131246c8237:-7e7b" parent="-487ef5e3:131246c8237:-8000" source="-487ef5e3:131246c8237:-7f45" target="-9f15b34:131b8cd9210:-7d15"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="760.0" y="197.0"/><mxPoint as="targetPoint" x="540.0" y="290.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="760.0" y="230.0"/><mxPoint x="620.0" y="230.0"/><mxPoint x="620.0" y="320.0"/><mxPoint x="480.0" y="320.0"/><mxPoint x="480.0" y="290.0"/></Array></mxGeometry></ExplicitLink><TextBlock id="-487ef5e3:131246c8237:-7da3" parent="-487ef5e3:131246c8237:-8000" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;flip=false;mirror=false" value="j0.15"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="j0.15"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="j0.15"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="40.0" y="150.0"/></TextBlock><TextBlock id="-487ef5e3:131246c8237:-7d9f" parent="-487ef5e3:131246c8237:-8000" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;flip=false;mirror=false" value="j0.1"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="j0.1"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="j0.1"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="130.0" y="40.0"/></TextBlock><TextBlock id="-487ef5e3:131246c8237:-7d9c" parent="-487ef5e3:131246c8237:-8000" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;flip=false;mirror=false" value="j0.1"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="j0.1"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="j0.1"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="220.0" y="40.0"/></TextBlock><TextBlock id="-487ef5e3:131246c8237:-7d99" parent="-487ef5e3:131246c8237:-8000" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;flip=false;mirror=false" value="j0.1"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="j0.1"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="j0.1"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="330.0" y="40.0"/></TextBlock><TextBlock id="-487ef5e3:131246c8237:-7d96" parent="-487ef5e3:131246c8237:-8000" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;flip=false;mirror=false" value="j0.15"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="j0.15"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="j0.15"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="880.0" y="130.0"/></TextBlock><TextBlock id="-487ef5e3:131246c8237:-7d92" parent="-487ef5e3:131246c8237:-8000" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;flip=false;mirror=false" value="Eg&quot;"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="Eg&quot;"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="Eg&quot;"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="10.0" y="260.0"/></TextBlock><TextBlock id="-487ef5e3:131246c8237:-7d8d" parent="-487ef5e3:131246c8237:-8000" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;flip=false;mirror=false" value="Em&quot;"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="Em&quot;"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="Em&quot;"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="910.0" y="260.0"/></TextBlock><TextBlock id="-487ef5e3:131246c8237:-7cd3" parent="-487ef5e3:131246c8237:-8000" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;fontColor=#D31B1B;flip=false;mirror=false" value="Voltage and <br>Current Waveform"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="Voltage and <br>Current Waveform"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="Voltage and <br>Current Waveform"/></ScilabString><mxGeometry as="geometry" height="40.0" width="50.0" x="550.0" y="300.0"/></TextBlock><TextBlock id="-487ef5e3:131246c8237:-7cd0" parent="-487ef5e3:131246c8237:-8000" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;fontColor=#D31B1B;flip=false;mirror=false" value="Generator"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="Generator"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="Generator"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="140.0" y="280.0"/></TextBlock><TextBlock id="-487ef5e3:131246c8237:-7ccd" parent="-487ef5e3:131246c8237:-8000" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;fontColor=#D31B1B;flip=false;mirror=false" value="Motor"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="Motor"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="Motor"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="870.0" y="290.0"/></TextBlock><TextBlock id="-487ef5e3:131246c8237:-7cca" parent="-487ef5e3:131246c8237:-8000" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;fontColor=#D31B1B;flip=false;mirror=false" value="Fault Initiation"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="Fault Initiation"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="Fault Initiation"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="700.0" y="450.0"/></TextBlock><BasicBlock angle="270" dependsOnU="1" id="-487ef5e3:131246c8237:-7fde" interfaceFunctionName="SineVoltage" ordering="19" parent="-487ef5e3:131246c8237:-8000" simulationFunctionName="SineVoltage" simulationFunctionType="DEFAULT" style="SineVoltage;rotation=270;flip=false;mirror=false"><ScilabString as="exprs" height="5" width="1"><data column="0" line="0" value="1.065751341"/><data column="0" line="1" value="0.3959797975"/><data column="0" line="2" value="50"/><data column="0" line="3" value="0"/><data column="0" line="4" value="0"/></ScilabString><ScilabDouble as="realParameters" height="5" width="1"><data column="0" line="0" realPart="1.065751341"/><data column="0" line="1" realPart="0.3959797975"/><data column="0" line="2" realPart="50.0"/><data column="0" line="3" realPart="0.0"/><data column="0" line="4" realPart="0.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="SineVoltage"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="5" width="1"><data column="0" line="0" value="V"/><data column="0" line="1" value="phase"/><data column="0" line="2" value="freqHz"/><data column="0" line="3" value="offset"/><data column="0" line="4" value="startTime"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.065751341"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.3959797975"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="50.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="60.0" width="50.0" x="80.0" y="240.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-487ef5e3:131246c8237:-7f7a" ordering="1" parent="-487ef5e3:131246c8237:-7fde" style="ImplicitInputPort;align=center;verticalAlign=bottom;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="60.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-487ef5e3:131246c8237:-7f79" ordering="1" parent="-487ef5e3:131246c8237:-7fde" style="ImplicitOutputPort;align=center;verticalAlign=top;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitOutputPort></root></mxGraphModel><mxCell as="defaultParent" id="-487ef5e3:131246c8237:-8000" parent="-487ef5e3:131246c8237:-7fff"/></XcosDiagram>
\ No newline at end of file diff --git a/Working_Examples/83/CH9/EX9.3/result_example_9_3.txt b/Working_Examples/83/CH9/EX9.3/result_example_9_3.txt new file mode 100755 index 0000000..9a89992 --- /dev/null +++ b/Working_Examples/83/CH9/EX9.3/result_example_9_3.txt @@ -0,0 +1,22 @@ + + + +Prefault Voltage = 0.9636pu + +Prefault current = 0.7783 at 36.9 deg PU + +Voltage behind subtransient reactance(Generator) = 0.7533+j0.28 pu +' +Voltage behind subtransient reactance(Motor) = 1.0337-j0.0934 pu + +Under Faulted condition + Ig"=0.6224-j1.6741 pu + Im"=-0.6224-j6.8916 pu + +Current in fault= -j8.5657 pu + +Now +Ig"= 816.7-j2196.7 A +Im"= -816.7-j9042.8 A +If= -j11239 A + diff --git a/Working_Examples/83/CH9/EX9.3/xcos_result_example_9_3.jpeg b/Working_Examples/83/CH9/EX9.3/xcos_result_example_9_3.jpeg Binary files differnew file mode 100755 index 0000000..dac7410 --- /dev/null +++ b/Working_Examples/83/CH9/EX9.3/xcos_result_example_9_3.jpeg diff --git a/Working_Examples/83/CH9/EX9.4/example_9_4.sce b/Working_Examples/83/CH9/EX9.4/example_9_4.sce new file mode 100755 index 0000000..21092fd --- /dev/null +++ b/Working_Examples/83/CH9/EX9.4/example_9_4.sce @@ -0,0 +1,35 @@ +//Chapter 9 +//Example 9.4 +//page 345 +//To calculate maximum MVA +clear;clc; +mvab=50; +kvb=6.6; +mvaA=40; +mvaB=50; +mvaC=25; +feeder_impedance=((0.06+%i*0.12)*mvab)/(kvb^2) + +Gen_A_reactance=(%i*0.1*mvab/mvaA); +Gen_B_reactance=(%i*0.1*mvab/mvaB); +Gen_C_reactance=(%i*0.1*mvab/mvaC); + +printf('\nGenerator A reactance = j%0.3f pu',abs(Gen_A_reactance)); +printf('\nGenerator B reactance = j%0.3f pu',abs(Gen_B_reactance)); +printf('\nGenerator C reactance = j%0.3f pu',abs(Gen_C_reactance)); + +Reactor_A_reactance=(%i*0.12*mvab/mvaA); +Reactor_B_reactance=(%i*0.12*mvab/mvaB); +Reactor_C_reactance=(%i*0.12*mvab/mvaC); + +printf('\nReactor A reactance = j%0.3f pu',abs(Reactor_A_reactance)); +printf('\nReactor B reactance = j%0.3f pu',abs(Reactor_B_reactance)); +printf('\nReactor C reactance = j%0.3f pu',abs(Reactor_C_reactance)); + +function resistance=parallel(r1,r2) +resistance=(r1*r2/(r1+r2)); +endfunction + +Z=(feeder_impedance)+parallel(%i*0.125,(%i*0.15 + parallel(%i*0.22,%i*0.44))); +scmva=(1/abs(Z))*mvab; +printf("\n\nSC MVA = %d MVA",scmva); diff --git a/Working_Examples/83/CH9/EX9.4/example_9_4.xcos b/Working_Examples/83/CH9/EX9.4/example_9_4.xcos new file mode 100755 index 0000000..c3f6e6e --- /dev/null +++ b/Working_Examples/83/CH9/EX9.4/example_9_4.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" finalIntegrationTime="0.5" title="example_9_4"><!--Xcos - 1.0 - scilab-5.5.2 - 20160406 2040--><mxGraphModel as="model"><root><mxCell id="-487ef5e3:131246c8237:-7cc7"/><mxCell id="-487ef5e3:131246c8237:-7cc8" parent="-487ef5e3:131246c8237:-7cc7"/><BasicBlock angle="270" dependsOnU="1" id="-487ef5e3:131246c8237:-7cb5" interfaceFunctionName="Inductor" ordering="1" parent="-487ef5e3:131246c8237:-7cc8" simulationFunctionName="Inductor" simulationFunctionType="DEFAULT" style="Inductor;rotation=270;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="0.00039788735"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="3.9788735E-4"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Inductor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="L"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="3.9788735E-4"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="750.0" y="153.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-487ef5e3:131246c8237:-7aee" ordering="1" parent="-487ef5e3:131246c8237:-7cb5" style="ImplicitInputPort;align=center;verticalAlign=bottom;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-487ef5e3:131246c8237:-7aed" ordering="1" parent="-487ef5e3:131246c8237:-7cb5" style="ImplicitOutputPort;align=center;verticalAlign=top;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitOutputPort><BasicBlock angle="270" dependsOnU="1" id="-487ef5e3:131246c8237:-7caf" interfaceFunctionName="Inductor" ordering="2" parent="-487ef5e3:131246c8237:-7cc8" simulationFunctionName="Inductor" simulationFunctionType="DEFAULT" style="Inductor;rotation=270;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="0.00047746482"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="4.7746482E-4"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Inductor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="L"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.7746482E-4"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="750.0" y="233.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-487ef5e3:131246c8237:-7af2" ordering="1" parent="-487ef5e3:131246c8237:-7caf" style="ImplicitInputPort;align=center;verticalAlign=bottom;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-487ef5e3:131246c8237:-7af1" ordering="1" parent="-487ef5e3:131246c8237:-7caf" style="ImplicitOutputPort;align=center;verticalAlign=top;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitOutputPort><BasicBlock angle="270" dependsOnU="1" id="-487ef5e3:131246c8237:-7ca6" interfaceFunctionName="Inductor" ordering="3" parent="-487ef5e3:131246c8237:-7cc8" simulationFunctionName="Inductor" simulationFunctionType="DEFAULT" style="Inductor;rotation=270;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="0.00031830988"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="3.1830988E-4"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Inductor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="L"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="3.1830988E-4"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="870.0" y="153.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-487ef5e3:131246c8237:-7aea" ordering="1" parent="-487ef5e3:131246c8237:-7ca6" style="ImplicitInputPort;align=center;verticalAlign=bottom;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-487ef5e3:131246c8237:-7ae9" ordering="1" parent="-487ef5e3:131246c8237:-7ca6" style="ImplicitOutputPort;align=center;verticalAlign=top;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitOutputPort><BasicBlock angle="270" dependsOnU="1" id="-487ef5e3:131246c8237:-7c9d" interfaceFunctionName="Inductor" ordering="4" parent="-487ef5e3:131246c8237:-7cc8" simulationFunctionName="Inductor" simulationFunctionType="DEFAULT" style="Inductor;rotation=270;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="0.00038197186"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="3.8197186E-4"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Inductor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="L"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="3.8197186E-4"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="870.0" y="233.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-487ef5e3:131246c8237:-7ae6" ordering="1" parent="-487ef5e3:131246c8237:-7c9d" style="ImplicitInputPort;align=center;verticalAlign=bottom;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-487ef5e3:131246c8237:-7ae5" ordering="1" parent="-487ef5e3:131246c8237:-7c9d" style="ImplicitOutputPort;align=center;verticalAlign=top;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitOutputPort><BasicBlock angle="270" dependsOnU="1" id="-487ef5e3:131246c8237:-7c97" interfaceFunctionName="Inductor" ordering="5" parent="-487ef5e3:131246c8237:-7cc8" simulationFunctionName="Inductor" simulationFunctionType="DEFAULT" style="Inductor;rotation=270;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="0.00063661977"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="6.3661977E-4"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Inductor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="L"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.3661977E-4"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="980.0" y="153.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-487ef5e3:131246c8237:-7ae2" ordering="1" parent="-487ef5e3:131246c8237:-7c97" style="ImplicitInputPort;align=center;verticalAlign=bottom;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-487ef5e3:131246c8237:-7ae1" ordering="1" parent="-487ef5e3:131246c8237:-7c97" style="ImplicitOutputPort;align=center;verticalAlign=top;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitOutputPort><BasicBlock angle="270" dependsOnU="1" id="-487ef5e3:131246c8237:-7c8e" interfaceFunctionName="Inductor" ordering="6" parent="-487ef5e3:131246c8237:-7cc8" simulationFunctionName="Inductor" simulationFunctionType="DEFAULT" style="Inductor;rotation=270;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="0.00076394372"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="7.6394372E-4"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Inductor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="L"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="7.6394372E-4"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="980.0" y="233.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-487ef5e3:131246c8237:-7ade" ordering="1" parent="-487ef5e3:131246c8237:-7c8e" style="ImplicitInputPort;align=center;verticalAlign=bottom;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-487ef5e3:131246c8237:-7add" ordering="1" parent="-487ef5e3:131246c8237:-7c8e" style="ImplicitOutputPort;align=center;verticalAlign=top;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitOutputPort><BasicBlock angle="270" dependsOnU="1" id="-487ef5e3:131246c8237:-7c82" interfaceFunctionName="Inductor" ordering="7" parent="-487ef5e3:131246c8237:-7cc8" simulationFunctionName="Inductor" simulationFunctionType="DEFAULT" style="Inductor;rotation=270;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="0.00043926764"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="4.3926764E-4"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Inductor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="L"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.3926764E-4"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="660.0" y="270.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-487ef5e3:131246c8237:-7af6" ordering="1" parent="-487ef5e3:131246c8237:-7c82" style="ImplicitInputPort;align=center;verticalAlign=bottom;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-487ef5e3:131246c8237:-7af5" ordering="1" parent="-487ef5e3:131246c8237:-7c82" style="ImplicitOutputPort;align=center;verticalAlign=top;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitOutputPort><BasicBlock angle="270" dependsOnU="1" id="-487ef5e3:131246c8237:-7c75" interfaceFunctionName="Resistor" ordering="8" parent="-487ef5e3:131246c8237:-7cc8" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=270;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="0.069"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="0.069"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.069"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="660.0" y="360.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-487ef5e3:131246c8237:-7afa" ordering="1" parent="-487ef5e3:131246c8237:-7c75" style="ImplicitInputPort;align=center;verticalAlign=bottom;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-487ef5e3:131246c8237:-7af9" ordering="1" parent="-487ef5e3:131246c8237:-7c75" style="ImplicitOutputPort;align=center;verticalAlign=top;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitOutputPort><ImplicitLink id="-487ef5e3:131246c8237:-7c6e" parent="-487ef5e3:131246c8237:-7cc8" source="-487ef5e3:131246c8237:-7ae5" target="-487ef5e3:131246c8237:-7aea"><mxGeometry as="geometry" x="450.0" y="53.0"><mxPoint as="sourcePoint" x="890.0" y="197.0"/><mxPoint as="targetPoint" x="890.0" y="223.0"/></mxGeometry></ImplicitLink><ImplicitLink id="-487ef5e3:131246c8237:-7c6d" parent="-487ef5e3:131246c8237:-7cc8" source="-487ef5e3:131246c8237:-7add" target="-487ef5e3:131246c8237:-7ae2"><mxGeometry as="geometry" x="450.0" y="53.0"><mxPoint as="sourcePoint" x="1000.0" y="197.0"/><mxPoint as="targetPoint" x="1000.0" y="223.0"/></mxGeometry></ImplicitLink><SplitBlock id="-487ef5e3:131246c8237:-7c6a" ordering="9" parent="-487ef5e3:131246c8237:-7cc8" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="887.0" y="307.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-487ef5e3:131246c8237:-7c68" ordering="1" parent="-487ef5e3:131246c8237:-7c6a" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-487ef5e3:131246c8237:-7c67" ordering="2" parent="-487ef5e3:131246c8237:-7c6a" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-487ef5e3:131246c8237:-7c69" ordering="1" parent="-487ef5e3:131246c8237:-7c6a" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-487ef5e3:131246c8237:-7c66" parent="-487ef5e3:131246c8237:-7cc8" source="-487ef5e3:131246c8237:-7af2" style="ImplicitLink;noEdgeStyle=0;edgeStyle=elbowEdgeStyle;elbow=horizontal" target="-487ef5e3:131246c8237:-7c69"><mxGeometry as="geometry" x="450.0" y="53.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-487ef5e3:131246c8237:-7c65" parent="-487ef5e3:131246c8237:-7cc8" source="-487ef5e3:131246c8237:-7c68" target="-487ef5e3:131246c8237:-7ae6"><mxGeometry as="geometry" x="450.0" y="53.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-487ef5e3:131246c8237:-7c6b" parent="-487ef5e3:131246c8237:-7cc8" source="-487ef5e3:131246c8237:-7c67" style="ImplicitLink;noEdgeStyle=0;edgeStyle=elbowEdgeStyle;elbow=horizontal" target="-487ef5e3:131246c8237:-7ade"><mxGeometry as="geometry" x="450.0" y="53.0"><mxPoint as="sourcePoint" x="1000.0" y="277.0"/><mxPoint as="targetPoint" x="890.0" y="303.0"/><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><SplitBlock id="-487ef5e3:131246c8237:-7c54" ordering="10" parent="-487ef5e3:131246c8237:-7cc8" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="767.0" y="207.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-487ef5e3:131246c8237:-7c52" ordering="1" parent="-487ef5e3:131246c8237:-7c54" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-487ef5e3:131246c8237:-7c51" ordering="2" parent="-487ef5e3:131246c8237:-7c54" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-487ef5e3:131246c8237:-7c53" ordering="1" parent="-487ef5e3:131246c8237:-7c54" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-487ef5e3:131246c8237:-7c50" parent="-487ef5e3:131246c8237:-7cc8" source="-487ef5e3:131246c8237:-7af1" target="-487ef5e3:131246c8237:-7c53"><mxGeometry as="geometry" x="450.0" y="53.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-487ef5e3:131246c8237:-7c4f" parent="-487ef5e3:131246c8237:-7cc8" source="-487ef5e3:131246c8237:-7c52" target="-487ef5e3:131246c8237:-7aee"><mxGeometry as="geometry" x="450.0" y="53.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-487ef5e3:131246c8237:-7c55" parent="-487ef5e3:131246c8237:-7cc8" source="-487ef5e3:131246c8237:-7af5" target="-487ef5e3:131246c8237:-7c51"><mxGeometry as="geometry" x="450.0" y="53.0"><mxPoint as="sourcePoint" x="680.0" y="219.0"/><mxPoint as="targetPoint" x="770.0" y="213.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="680.0" y="210.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-487ef5e3:131246c8237:-7c4e" parent="-487ef5e3:131246c8237:-7cc8" source="-487ef5e3:131246c8237:-7af9" target="-487ef5e3:131246c8237:-7af6"><mxGeometry as="geometry" x="450.0" y="100.0"><mxPoint as="sourcePoint" x="680.0" y="314.0"/><mxPoint as="targetPoint" x="680.0" y="350.0"/></mxGeometry></ImplicitLink><SplitBlock id="-487ef5e3:131246c8237:-7c08" ordering="11" parent="-487ef5e3:131246c8237:-7cc8" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="767.0" y="127.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-487ef5e3:131246c8237:-7c06" ordering="1" parent="-487ef5e3:131246c8237:-7c08" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-487ef5e3:131246c8237:-7c05" ordering="2" parent="-487ef5e3:131246c8237:-7c08" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-487ef5e3:131246c8237:-7c07" ordering="1" parent="-487ef5e3:131246c8237:-7c08" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-487ef5e3:131246c8237:-7c03" parent="-487ef5e3:131246c8237:-7cc8" source="-487ef5e3:131246c8237:-7aed" target="-487ef5e3:131246c8237:-7c06"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><SplitBlock id="-487ef5e3:131246c8237:-7bfb" ordering="12" parent="-487ef5e3:131246c8237:-7cc8" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="887.0" y="127.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-487ef5e3:131246c8237:-7bf9" ordering="1" parent="-487ef5e3:131246c8237:-7bfb" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-487ef5e3:131246c8237:-7bf8" ordering="2" parent="-487ef5e3:131246c8237:-7bfb" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-487ef5e3:131246c8237:-7bfa" ordering="1" parent="-487ef5e3:131246c8237:-7bfb" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-487ef5e3:131246c8237:-7bf7" parent="-487ef5e3:131246c8237:-7cc8" source="-487ef5e3:131246c8237:-7ae9" target="-487ef5e3:131246c8237:-7bfa"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-487ef5e3:131246c8237:-7bf6" parent="-487ef5e3:131246c8237:-7cc8" source="-487ef5e3:131246c8237:-7bf9" target="-487ef5e3:131246c8237:-7c07"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-487ef5e3:131246c8237:-7bfc" parent="-487ef5e3:131246c8237:-7cc8" source="-487ef5e3:131246c8237:-7ae1" target="-487ef5e3:131246c8237:-7bf8"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="1000.0" y="149.0"/><mxPoint as="targetPoint" x="890.0" y="130.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="1000.0" y="130.0"/></Array></mxGeometry></ImplicitLink><VoltageSensorBlock dependsOnU="1" id="-487ef5e3:131246c8237:-7bec" interfaceFunctionName="VoltageSensor" ordering="13" parent="-487ef5e3:131246c8237:-7cc8" simulationFunctionName="VoltageSensor" simulationFunctionType="DEFAULT" style="VoltageSensor;rotation=0;mirror=false;flip=true"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="VoltageSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="v"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="520.0" y="250.0"/></VoltageSensorBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-487ef5e3:131246c8237:-7bea" ordering="2" parent="-487ef5e3:131246c8237:-7bec" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-487ef5e3:131246c8237:-7be9" ordering="1" parent="-487ef5e3:131246c8237:-7bec" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-487ef5e3:131246c8237:-7beb" ordering="1" parent="-487ef5e3:131246c8237:-7bec" style="ImplicitOutputPort;align=center;verticalAlign=top;spacing=10;rotation=270;flip=false;mirror=false"><Orientation as="orientation" value="SOUTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitOutputPort><BasicBlock dependsOnU="1" id="-487ef5e3:131246c8237:-7bdf" interfaceFunctionName="CurrentSensor" ordering="14" parent="-487ef5e3:131246c8237:-7cc8" simulationFunctionName="CurrentSensor" simulationFunctionType="DEFAULT" style="CurrentSensor;flip=false;mirror=true"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CurrentSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="i"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="520.0" y="480.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-487ef5e3:131246c8237:-7bdd" ordering="2" parent="-487ef5e3:131246c8237:-7bdf" style="ExplicitOutputPort;align=left;verticalAlign=middle;spacing=10;rotation=180;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="26.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-487ef5e3:131246c8237:-7bdc" ordering="1" parent="-487ef5e3:131246c8237:-7bdf" style="ImplicitInputPort;align=right;verticalAlign=middle;spacing=10;rotation=180;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-487ef5e3:131246c8237:-7bde" ordering="1" parent="-487ef5e3:131246c8237:-7bdf" style="ImplicitOutputPort;align=left;verticalAlign=middle;spacing=10;rotation=180;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ImplicitOutputPort><SplitBlock id="-487ef5e3:131246c8237:-7bd4" ordering="15" parent="-487ef5e3:131246c8237:-7cc8" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="537.0" y="127.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-487ef5e3:131246c8237:-7bd2" ordering="1" parent="-487ef5e3:131246c8237:-7bd4" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-487ef5e3:131246c8237:-7bd1" ordering="2" parent="-487ef5e3:131246c8237:-7bd4" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-487ef5e3:131246c8237:-7bd3" ordering="1" parent="-487ef5e3:131246c8237:-7bd4" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-487ef5e3:131246c8237:-7bd0" parent="-487ef5e3:131246c8237:-7cc8" source="-487ef5e3:131246c8237:-7ad3" target="-487ef5e3:131246c8237:-7bd3"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="430.0" y="130.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-487ef5e3:131246c8237:-7bcf" parent="-487ef5e3:131246c8237:-7cc8" source="-487ef5e3:131246c8237:-7c05" target="-487ef5e3:131246c8237:-7bd2"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-487ef5e3:131246c8237:-7bd5" parent="-487ef5e3:131246c8237:-7cc8" source="-487ef5e3:131246c8237:-7beb" target="-487ef5e3:131246c8237:-7bd1"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="540.0" y="246.0"/><mxPoint as="targetPoint" x="540.0" y="130.0"/></mxGeometry></ImplicitLink><BasicBlock dependsOnU="1" id="-487ef5e3:131246c8237:-7bbe" interfaceFunctionName="Switch" ordering="16" parent="-487ef5e3:131246c8237:-7cc8" simulationFunctionName="Switch" simulationFunctionType="DEFAULT" style="Switch;flip=false;mirror=false"><ScilabString as="exprs" height="2" width="1"><data column="0" line="0" value="0.00001"/><data column="0" line="1" value="10000000"/></ScilabString><ScilabDouble as="realParameters" height="2" width="1"><data column="0" line="0" realPart="0.01"/><data column="0" line="1" realPart="100000.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Switch"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="p"/><data column="0" line="1" value="inp"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="2" width="1"><data column="0" line="0" value="Ron"/><data column="0" line="1" value="Roff"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0E-5"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0E7"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="610.0" y="490.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-487ef5e3:131246c8237:-7ad0" ordering="1" parent="-487ef5e3:131246c8237:-7bbe" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ImplicitInputPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-487ef5e3:131246c8237:-7acf" ordering="2" parent="-487ef5e3:131246c8237:-7bbe" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="26.0"/></ExplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-487ef5e3:131246c8237:-7ace" ordering="1" parent="-487ef5e3:131246c8237:-7bbe" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><BasicBlock dependsOnU="1" id="-487ef5e3:131246c8237:-7bb1" interfaceFunctionName="CMSCOPE" ordering="17" parent="-487ef5e3:131246c8237:-7cc8" simulationFunctionName="cmscope" simulationFunctionType="C_OR_FORTRAN" style="CMSCOPE;flip=false;mirror=false"><ScilabString as="exprs" height="11" width="1"><data column="0" line="0" value="1 1"/><data column="0" line="1" value="1 3 5 7 9 11 13 15"/><data column="0" line="2" value="-1"/><data column="0" line="3" value="[]"/><data column="0" line="4" value="[]"/><data column="0" line="5" value="-1.5 -13"/><data column="0" line="6" value="1.5 13"/><data column="0" line="7" value="0.5 0.5"/><data column="0" line="8" value="20"/><data column="0" line="9" value="0"/><data column="0" line="10" value="Generator Voltage and Fault Current"/></ScilabString><ScilabDouble as="realParameters" height="7" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="0.5"/><data column="0" line="2" realPart="0.5"/><data column="0" line="3" realPart="-1.5"/><data column="0" line="4" realPart="1.5"/><data column="0" line="5" realPart="-13.0"/><data column="0" line="6" realPart="13.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="12" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="2.0"/><data column="0" line="2" realPart="20.0"/><data column="0" line="3" realPart="-1.0"/><data column="0" line="4" realPart="-1.0"/><data column="0" line="5" realPart="-1.0"/><data column="0" line="6" realPart="-1.0"/><data column="0" line="7" realPart="1.0"/><data column="0" line="8" realPart="1.0"/><data column="0" line="9" realPart="1.0"/><data column="0" line="10" realPart="3.0"/><data column="0" line="11" realPart="0.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="600.0" y="380.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-9f15b34:131b8cd9210:-7c7e" ordering="1" parent="-487ef5e3:131246c8237:-7bb1" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ExplicitInputPort><ControlPort dataType="UNKNOW_TYPE" id="-9f15b34:131b8cd9210:-7c7c" ordering="1" parent="-487ef5e3:131246c8237:-7bb1" style="ControlPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-9f15b34:131b8cd9210:-7c7d" ordering="2" parent="-487ef5e3:131246c8237:-7bb1" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="26.0"/></ExplicitInputPort><BasicBlock blockType="h" id="-487ef5e3:131246c8237:-7ba8" interfaceFunctionName="CLOCK_c" ordering="18" parent="-487ef5e3:131246c8237:-7cc8" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="139.0"/><data column="1" line="0" realPart="-170.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-9f15b34:131b8cd9210:-7c99"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-9f15b34:131b8cd9210:-7c99"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.0001"/><data column="0" line="1" value="0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="1.0E-4"/><data column="0" line="1" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-9f15b34:131b8cd9210:-7c95"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-9f15b34:131b8cd9210:-7c95"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="156.71066000000002"/><data column="1" line="0" realPart="-196.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="8.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="4.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-9f15b34:131b8cd9210:-7c90"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-9f15b34:131b8cd9210:-7c90"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="146.0"/><data column="0" line="2" realPart="167.37732666666668"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="4.0"/><data column="0" line="1" realPart="-244.0"/><data column="0" line="2" realPart="-200.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="168.71066000000002"/><data column="0" line="1" realPart="169.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-184.0"/><data column="0" line="1" realPart="-146.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="170.04399333333336"/><data column="0" line="1" realPart="191.70999999999998"/><data column="0" line="2" realPart="151.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-200.0"/><data column="0" line="1" realPart="-98.0"/><data column="0" line="2" realPart="-98.0"/><data column="0" line="3" realPart="-44.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="600.0" y="180.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="-487ef5e3:131246c8237:-7aaf" ordering="1" parent="-487ef5e3:131246c8237:-7ba8" style="CommandPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><BasicBlock blockType="h" id="-487ef5e3:131246c8237:-7ba1" interfaceFunctionName="STEP_FUNCTION" ordering="19" parent="-487ef5e3:131246c8237:-7cc8" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="STEP_FUNCTION;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="STEP_FUNCTION"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-4"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="14.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=" "/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="3" width="1"><data column="0" line="0" value="0.25"/><data column="0" line="1" value="-3"/><data column="0" line="2" value="5"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"STEP",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="STEP"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="step_func"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-3.0"/><data column="0" line="1" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.25"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="true"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-9f15b34:131b8cd9210:-7c85"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="STEP"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-9f15b34:131b8cd9210:-7c85"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="128.571433"/><data column="1" line="0" realPart="-90.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"OUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="OUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-2.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-9f15b34:131b8cd9210:-7c82"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="OUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-9f15b34:131b8cd9210:-7c82"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="6" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="156.000003"/><data column="0" line="2" realPart="117.47839499999999"/><data column="0" line="3" realPart="117.47839499999999"/><data column="0" line="4" realPart="156.000003"/><data column="0" line="5" realPart="60.0"/></ScilabDouble><ScilabDouble height="6" width="1"><data column="0" line="0" realPart="4.0"/><data column="0" line="1" realPart="-214.39289999999994"/><data column="0" line="2" realPart="-214.39289999999994"/><data column="0" line="3" realPart="-124.69677999999999"/><data column="0" line="4" realPart="-124.69677999999999"/><data column="0" line="5" realPart="-44.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="84.0"/><data column="0" line="1" realPart="144.571433"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-20.0"/><data column="0" line="1" realPart="-80.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="530.0" y="550.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataType="REAL_MATRIX" id="-487ef5e3:131246c8237:-7ad7" ordering="1" parent="-487ef5e3:131246c8237:-7ba1" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ImplicitLink id="-487ef5e3:131246c8237:-7b8f" parent="-487ef5e3:131246c8237:-7cc8" source="-487ef5e3:131246c8237:-7bdc" target="-487ef5e3:131246c8237:-7ad0"><mxGeometry as="geometry" x="-1.0" y="103.0"><mxPoint as="sourcePoint" x="573.0" y="503.0"/><mxPoint as="targetPoint" x="599.0" y="503.0"/></mxGeometry></ImplicitLink><ImplicitLink id="-487ef5e3:131246c8237:-7b2b" parent="-487ef5e3:131246c8237:-7cc8" source="-487ef5e3:131246c8237:-7ace" target="-487ef5e3:131246c8237:-7afa"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="654.0" y="510.0"/><mxPoint as="targetPoint" x="680.0" y="360.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="680.0" y="510.0"/></Array></mxGeometry></ImplicitLink><ExplicitLink id="-487ef5e3:131246c8237:-7b27" parent="-487ef5e3:131246c8237:-7cc8" source="-487ef5e3:131246c8237:-7ad7" target="-487ef5e3:131246c8237:-7acf"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="574.0" y="620.0"/><mxPoint as="targetPoint" x="600.0" y="520.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="590.0" y="570.0"/><mxPoint x="590.0" y="520.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="-487ef5e3:131246c8237:-7b26" parent="-487ef5e3:131246c8237:-7cc8" source="-487ef5e3:131246c8237:-7bdd" target="-9f15b34:131b8cd9210:-7c7d"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="516.0" y="510.0"/><mxPoint as="targetPoint" x="540.0" y="410.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="490.0" y="510.0"/><mxPoint x="490.0" y="410.0"/></Array></mxGeometry></ExplicitLink><ExplicitLink id="-487ef5e3:131246c8237:-7b1c" parent="-487ef5e3:131246c8237:-7cc8" source="-487ef5e3:131246c8237:-7bea" target="-9f15b34:131b8cd9210:-7c7e"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="564.0" y="270.0"/><mxPoint as="targetPoint" x="590.0" y="390.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="580.0" y="270.0"/><mxPoint x="580.0" y="390.0"/></Array></mxGeometry></ExplicitLink><CommandControlLink id="-487ef5e3:131246c8237:-7b19" parent="-487ef5e3:131246c8237:-7cc8" source="-487ef5e3:131246c8237:-7aaf" target="-9f15b34:131b8cd9210:-7c7c"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="620.0" y="324.0"/><mxPoint as="targetPoint" x="620.0" y="370.0"/></mxGeometry></CommandControlLink><SplitBlock id="-487ef5e3:131246c8237:-7b15" ordering="20" parent="-487ef5e3:131246c8237:-7cc8" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="427.0" y="347.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-487ef5e3:131246c8237:-7b13" ordering="1" parent="-487ef5e3:131246c8237:-7b15" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-487ef5e3:131246c8237:-7b12" ordering="2" parent="-487ef5e3:131246c8237:-7b15" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-487ef5e3:131246c8237:-7b14" ordering="1" parent="-487ef5e3:131246c8237:-7b15" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-487ef5e3:131246c8237:-7b10" parent="-487ef5e3:131246c8237:-7cc8" source="-487ef5e3:131246c8237:-7b13" target="-487ef5e3:131246c8237:-7ad4"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-487ef5e3:131246c8237:-7b16" parent="-487ef5e3:131246c8237:-7cc8" source="-487ef5e3:131246c8237:-7b12" target="-487ef5e3:131246c8237:-7be9"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="516.0" y="270.0"/><mxPoint as="targetPoint" x="430.0" y="350.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="490.0" y="350.0"/><mxPoint x="490.0" y="270.0"/></Array></mxGeometry></ImplicitLink><GroundBlock dependsOnU="1" id="-487ef5e3:131246c8237:-7b0a" interfaceFunctionName="Ground" ordering="21" parent="-487ef5e3:131246c8237:-7cc8" simulationFunctionName="Ground" simulationFunctionType="DEFAULT" style="Ground;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Ground"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="410.0" y="530.0"/></GroundBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-487ef5e3:131246c8237:-7b09" ordering="1" parent="-487ef5e3:131246c8237:-7b0a" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><Orientation as="orientation" value="NORTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><SplitBlock id="-487ef5e3:131246c8237:-7b05" ordering="22" parent="-487ef5e3:131246c8237:-7cc8" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="427.0" y="487.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-487ef5e3:131246c8237:-7b03" ordering="1" parent="-487ef5e3:131246c8237:-7b05" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-487ef5e3:131246c8237:-7b02" ordering="2" parent="-487ef5e3:131246c8237:-7b05" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-487ef5e3:131246c8237:-7b04" ordering="1" parent="-487ef5e3:131246c8237:-7b05" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-487ef5e3:131246c8237:-7b01" parent="-487ef5e3:131246c8237:-7cc8" source="-487ef5e3:131246c8237:-7bde" target="-487ef5e3:131246c8237:-7b04"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-487ef5e3:131246c8237:-7b00" parent="-487ef5e3:131246c8237:-7cc8" source="-487ef5e3:131246c8237:-7b03" target="-487ef5e3:131246c8237:-7b14"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-487ef5e3:131246c8237:-7b06" parent="-487ef5e3:131246c8237:-7cc8" source="-487ef5e3:131246c8237:-7b02" target="-487ef5e3:131246c8237:-7b09"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="430.0" y="526.0"/><mxPoint as="targetPoint" x="430.0" y="490.0"/></mxGeometry></ImplicitLink><TextBlock id="-487ef5e3:131246c8237:-79c3" parent="-487ef5e3:131246c8237:-7cc8" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;flip=false;mirror=false" value="j0.1"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="j0.1"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="j0.1"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="910.0" y="150.0"/></TextBlock><TextBlock id="-487ef5e3:131246c8237:-79c0" parent="-487ef5e3:131246c8237:-7cc8" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;flip=false;mirror=false" value="j0.125"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="j0.125"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="j0.125"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="800.0" y="150.0"/></TextBlock><TextBlock id="-487ef5e3:131246c8237:-79be" parent="-487ef5e3:131246c8237:-7cc8" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;flip=false;mirror=false" value="j0.15"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="j0.15"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="j0.15"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="790.0" y="230.0"/></TextBlock><TextBlock id="-487ef5e3:131246c8237:-79bb" parent="-487ef5e3:131246c8237:-7cc8" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;flip=false;mirror=false" value="j0.12"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="j0.12"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="j0.12"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="910.0" y="230.0"/></TextBlock><TextBlock id="-487ef5e3:131246c8237:-79b9" parent="-487ef5e3:131246c8237:-7cc8" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;flip=false;mirror=false" value="j0.2"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="j0.2"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="j0.2"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="1020.0" y="150.0"/></TextBlock><TextBlock id="-487ef5e3:131246c8237:-79b7" parent="-487ef5e3:131246c8237:-7cc8" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;flip=false;mirror=false" value="j0.24"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="j0.24"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="j0.24"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="1020.0" y="230.0"/></TextBlock><TextBlock id="-487ef5e3:131246c8237:-79ac" parent="-487ef5e3:131246c8237:-7cc8" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;flip=false;mirror=false" value="(0.069+j0.138)"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="(0.069+j0.138)"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="(0.069+j0.138)"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="720.0" y="310.0"/></TextBlock><TextBlock id="-487ef5e3:131246c8237:-79a9" parent="-487ef5e3:131246c8237:-7cc8" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;fontColor=#D31B1B;flip=false;mirror=false" value="Generators's<br>Equivalent"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="Generators's<br>Equivalent"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="Generators's<br>Equivalent"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="330.0" y="230.0"/></TextBlock><TextBlock id="-487ef5e3:131246c8237:-79a4" parent="-487ef5e3:131246c8237:-7cc8" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;fontColor=#D31B1B;flip=false;mirror=false" value="Voltage and <br>Current Waveform"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="Voltage and <br>Current Waveform"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="Voltage and <br>Current Waveform"/></ScilabString><mxGeometry as="geometry" height="40.0" width="50.0" x="580.0" y="420.0"/></TextBlock><TextBlock id="-487ef5e3:131246c8237:-79a1" parent="-487ef5e3:131246c8237:-7cc8" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;fontColor=#D31B1B;flip=false;mirror=false" value="Fault Initiation"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="Fault Initiation"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="Fault Initiation"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="540.0" y="580.0"/></TextBlock><BasicBlock angle="270" dependsOnU="1" id="-487ef5e3:131246c8237:-7cbf" interfaceFunctionName="SineVoltage" ordering="23" parent="-487ef5e3:131246c8237:-7cc8" simulationFunctionName="SineVoltage" simulationFunctionType="DEFAULT" style="SineVoltage;rotation=270;flip=false;mirror=false"><ScilabString as="exprs" height="5" width="1"><data column="0" line="0" value="1.414"/><data column="0" line="1" value="0"/><data column="0" line="2" value="50"/><data column="0" line="3" value="0"/><data column="0" line="4" value="0"/></ScilabString><ScilabDouble as="realParameters" height="5" width="1"><data column="0" line="0" realPart="1.414"/><data column="0" line="1" realPart="0.0"/><data column="0" line="2" realPart="50.0"/><data column="0" line="3" realPart="0.0"/><data column="0" line="4" realPart="0.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="SineVoltage"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="5" width="1"><data column="0" line="0" value="V"/><data column="0" line="1" value="phase"/><data column="0" line="2" value="freqHz"/><data column="0" line="3" value="offset"/><data column="0" line="4" value="startTime"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.414"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="50.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="60.0" width="50.0" x="410.0" y="220.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-487ef5e3:131246c8237:-7ad4" ordering="1" parent="-487ef5e3:131246c8237:-7cbf" style="ImplicitInputPort;align=center;verticalAlign=bottom;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="60.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-487ef5e3:131246c8237:-7ad3" ordering="1" parent="-487ef5e3:131246c8237:-7cbf" style="ImplicitOutputPort;align=center;verticalAlign=top;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitOutputPort></root></mxGraphModel><mxCell as="defaultParent" id="-487ef5e3:131246c8237:-7cc8" parent="-487ef5e3:131246c8237:-7cc7"/></XcosDiagram>
\ No newline at end of file diff --git a/Working_Examples/83/CH9/EX9.4/result_example_9_4.txt b/Working_Examples/83/CH9/EX9.4/result_example_9_4.txt new file mode 100755 index 0000000..0f4efe1 --- /dev/null +++ b/Working_Examples/83/CH9/EX9.4/result_example_9_4.txt @@ -0,0 +1,13 @@ + + feeder_impedance = + + 0.0688705 + 0.1377410i + +Generator A reactance = j0.125 pu +Generator B reactance = j0.100 pu +Generator C reactance = j0.200 pu +Reactor A reactance = j0.150 pu +Reactor B reactance = j0.120 pu +Reactor C reactance = j0.240 pu + +SC MVA = 211 MVA diff --git a/Working_Examples/83/CH9/EX9.4/xcos_result_example_9_4.jpeg b/Working_Examples/83/CH9/EX9.4/xcos_result_example_9_4.jpeg Binary files differnew file mode 100755 index 0000000..8fc16bc --- /dev/null +++ b/Working_Examples/83/CH9/EX9.4/xcos_result_example_9_4.jpeg diff --git a/Working_Examples/83/CH9/EX9.5/example_9_5.sce b/Working_Examples/83/CH9/EX9.5/example_9_5.sce new file mode 100755 index 0000000..4eebfe8 --- /dev/null +++ b/Working_Examples/83/CH9/EX9.5/example_9_5.sce @@ -0,0 +1,36 @@ +//Chapter 9 +//Example 9.5 +//page 347 +//To calculate short circuit solution +clear;clc; +//referring to figures 9.19 in the text book,we get directly the fault current +V4o=1.0; +Zf=%i*0.13560; +If=V4o/Zf; +printf('\nIf= -j%0.5f pu\n\n',abs(If)); + +//From Fig9.19d +I1=If*((%i*0.19583)/(%i*0.37638)); +I2=If*((%i*0.18055)/(%i*0.37638)); +printf('I1 = -j%0.5f pu \n\nI2 = -j%0.5f pu\n\n',abs(I1),abs(I2)); + +//voltage changes for bus 1,2 and 3 +deltaV1=0-(%i*0.15)*I1; +deltaV2=0-(%i*0.15)*I2; +printf('DeltaV1=%0.5f pu\n\nDeltaV2=%0.5f pu\n\n',deltaV1,deltaV2); + +//reffering to book +V1f=1+deltaV1; +V2f=1+deltaV2; +printf('V1f= %0.5f pu\n\nV2f=%0.5f pu\n\n',V1f,V2f); +I13=(V1f-V2f)/(%i*0.15+%i*0.1); +printf('I13=j%0.5f pu\n\n',abs(I13)); +deltaV3=0-((%i*0.15)*(I1)+(%i*0.15)*(I13)); +Vf3=1+deltaV3; +printf('DeltaV3=%0.5f pu\n\n',deltaV3); +printf('Vf3=%0.5f pu\n\n',Vf3); +Vf4=0; +printf('Vf4=%d\n\n',Vf4); +//short circuit MVA at bus 4 +SC_MVA_4=abs(If)*100; +printf('Short circuit MVA at bus4 =%0.3f MVA',SC_MVA_4); diff --git a/Working_Examples/83/CH9/EX9.5/example_9_5.xcos b/Working_Examples/83/CH9/EX9.5/example_9_5.xcos new file mode 100755 index 0000000..bcc2224 --- /dev/null +++ b/Working_Examples/83/CH9/EX9.5/example_9_5.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" finalIntegrationTime="0.5" title="example_9_5"><!--Xcos - 1.0 - scilab-5.5.2 - 20160406 2040--><mxGraphModel as="model"><root><mxCell id="-487ef5e3:131246c8237:-799a"/><mxCell id="-487ef5e3:131246c8237:-799b" parent="-487ef5e3:131246c8237:-799a"/><BasicBlock angle="270" dependsOnU="1" id="-487ef5e3:131246c8237:-7906" interfaceFunctionName="Switch" ordering="1" parent="-487ef5e3:131246c8237:-799b" simulationFunctionName="Switch" simulationFunctionType="DEFAULT" style="Switch;rotation=270;flip=false;mirror=false"><ScilabString as="exprs" height="2" width="1"><data column="0" line="0" value="0.00000001"/><data column="0" line="1" value="100000000"/></ScilabString><ScilabDouble as="realParameters" height="2" width="1"><data column="0" line="0" realPart="0.01"/><data column="0" line="1" realPart="100000.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Switch"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="p"/><data column="0" line="1" value="inp"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="2" width="1"><data column="0" line="0" value="Ron"/><data column="0" line="1" value="Roff"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0E-8"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0E8"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="420.0" y="780.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-487ef5e3:131246c8237:-752f" ordering="1" parent="-487ef5e3:131246c8237:-7906" style="ImplicitInputPort;align=center;verticalAlign=bottom;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="6.0" y="40.0"/></ImplicitInputPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-487ef5e3:131246c8237:-752e" ordering="2" parent="-487ef5e3:131246c8237:-7906" style="ExplicitInputPort;align=center;verticalAlign=bottom;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="26.0" y="40.0"/></ExplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-487ef5e3:131246c8237:-752d" ordering="1" parent="-487ef5e3:131246c8237:-7906" style="ImplicitOutputPort;align=center;verticalAlign=top;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitOutputPort><BasicBlock angle="90" dependsOnU="1" id="-487ef5e3:131246c8237:-78f5" interfaceFunctionName="CurrentSensor" ordering="2" parent="-487ef5e3:131246c8237:-799b" simulationFunctionName="CurrentSensor" simulationFunctionType="DEFAULT" style="CurrentSensor;rotation=90;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CurrentSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="i"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="430.0" y="700.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-487ef5e3:131246c8237:-78f3" ordering="2" parent="-487ef5e3:131246c8237:-78f5" style="ExplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="26.0" y="40.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-487ef5e3:131246c8237:-78f2" ordering="1" parent="-487ef5e3:131246c8237:-78f5" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-487ef5e3:131246c8237:-78f4" ordering="1" parent="-487ef5e3:131246c8237:-78f5" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="6.0" y="40.0"/></ImplicitOutputPort><GroundBlock dependsOnU="1" id="-487ef5e3:131246c8237:-7862" interfaceFunctionName="Ground" ordering="3" parent="-487ef5e3:131246c8237:-799b" simulationFunctionName="Ground" simulationFunctionType="DEFAULT" style="Ground;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Ground"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="410.0" y="860.0"/></GroundBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-487ef5e3:131246c8237:-7861" ordering="1" parent="-487ef5e3:131246c8237:-7862" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><Orientation as="orientation" value="NORTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><BasicBlock angle="270" dependsOnU="1" id="-487ef5e3:131246c8237:-782f" interfaceFunctionName="Inductor" ordering="4" parent="-487ef5e3:131246c8237:-799b" simulationFunctionName="Inductor" simulationFunctionType="DEFAULT" style="Inductor;rotation=270;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="0.00031830988"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="3.1830988E-4"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Inductor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="L"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="3.1830988E-4"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="430.0" y="430.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-487ef5e3:131246c8237:-76ce" ordering="1" parent="-487ef5e3:131246c8237:-782f" style="ImplicitInputPort;align=center;verticalAlign=bottom;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-487ef5e3:131246c8237:-76cd" ordering="1" parent="-487ef5e3:131246c8237:-782f" style="ImplicitOutputPort;align=center;verticalAlign=top;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitOutputPort><BasicBlock angle="270" dependsOnU="1" id="-487ef5e3:131246c8237:-7800" interfaceFunctionName="Inductor" ordering="5" parent="-487ef5e3:131246c8237:-799b" simulationFunctionName="Inductor" simulationFunctionType="DEFAULT" style="Inductor;rotation=270;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="0.00047746482"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="4.7746482E-4"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Inductor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="L"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.7746482E-4"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="430.0" y="180.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-487ef5e3:131246c8237:-76d2" ordering="1" parent="-487ef5e3:131246c8237:-7800" style="ImplicitInputPort;align=center;verticalAlign=bottom;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-487ef5e3:131246c8237:-76d1" ordering="1" parent="-487ef5e3:131246c8237:-7800" style="ImplicitOutputPort;align=center;verticalAlign=top;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitOutputPort><GroundBlock angle="180" dependsOnU="1" id="-487ef5e3:131246c8237:-77f8" interfaceFunctionName="Ground" ordering="6" parent="-487ef5e3:131246c8237:-799b" simulationFunctionName="Ground" simulationFunctionType="DEFAULT" style="Ground;rotation=180;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Ground"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="430.0" y="90.0"/></GroundBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-487ef5e3:131246c8237:-77f7" ordering="1" parent="-487ef5e3:131246c8237:-77f8" style="ImplicitInputPort;align=center;verticalAlign=bottom;spacing=10;rotation=270;flip=false;mirror=false"><Orientation as="orientation" value="NORTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="-487ef5e3:131246c8237:-77d4" interfaceFunctionName="Inductor" ordering="7" parent="-487ef5e3:131246c8237:-799b" simulationFunctionName="Inductor" simulationFunctionType="DEFAULT" style="Inductor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="0.00047746482"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="4.7746482E-4"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Inductor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="L"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.7746482E-4"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="660.0" y="280.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-487ef5e3:131246c8237:-76ca" ordering="1" parent="-487ef5e3:131246c8237:-77d4" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-487ef5e3:131246c8237:-76c9" ordering="1" parent="-487ef5e3:131246c8237:-77d4" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><SplitBlock id="-487ef5e3:131246c8237:-7779" ordering="8" parent="-487ef5e3:131246c8237:-799b" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="447.0" y="297.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-487ef5e3:131246c8237:-7777" ordering="1" parent="-487ef5e3:131246c8237:-7779" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-487ef5e3:131246c8237:-7776" ordering="2" parent="-487ef5e3:131246c8237:-7779" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-487ef5e3:131246c8237:-7778" ordering="1" parent="-487ef5e3:131246c8237:-7779" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-487ef5e3:131246c8237:-7774" parent="-487ef5e3:131246c8237:-799b" source="-487ef5e3:131246c8237:-7777" style="ImplicitLink;noEdgeStyle=0;edgeStyle=elbowEdgeStyle;elbow=horizontal" target="-487ef5e3:131246c8237:-76ca"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-487ef5e3:131246c8237:-777a" parent="-487ef5e3:131246c8237:-799b" source="-487ef5e3:131246c8237:-7776" style="ImplicitLink;noEdgeStyle=0;edgeStyle=elbowEdgeStyle;elbow=vertical" target="-487ef5e3:131246c8237:-76d2"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="450.0" y="234.0"/><mxPoint as="targetPoint" x="453.3333333333333" y="293.3333333333333"/></mxGeometry></ImplicitLink><ImplicitLink id="-487ef5e3:131246c8237:-7761" parent="-487ef5e3:131246c8237:-799b" source="-487ef5e3:131246c8237:-76d1" target="-487ef5e3:131246c8237:-77f7"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="460.0" y="176.0"/><mxPoint as="targetPoint" x="453.3333333333333" y="133.33333333333334"/></mxGeometry></ImplicitLink><BasicBlock dependsOnU="1" id="-487ef5e3:131246c8237:-775d" interfaceFunctionName="Inductor" ordering="9" parent="-487ef5e3:131246c8237:-799b" simulationFunctionName="Inductor" simulationFunctionType="DEFAULT" style="Inductor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="0.00047746482"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="4.7746482E-4"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Inductor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="L"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.7746482E-4"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="660.0" y="520.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-487ef5e3:131246c8237:-76c2" ordering="1" parent="-487ef5e3:131246c8237:-775d" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-487ef5e3:131246c8237:-76c1" ordering="1" parent="-487ef5e3:131246c8237:-775d" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><BasicBlock angle="90" dependsOnU="1" id="-487ef5e3:131246c8237:-7729" interfaceFunctionName="Inductor" ordering="10" parent="-487ef5e3:131246c8237:-799b" simulationFunctionName="Inductor" simulationFunctionType="DEFAULT" style="Inductor;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="0.00031830988"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="3.1830988E-4"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Inductor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="L"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="3.1830988E-4"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="930.0" y="390.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-487ef5e3:131246c8237:-76be" ordering="1" parent="-487ef5e3:131246c8237:-7729" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-487ef5e3:131246c8237:-76bd" ordering="1" parent="-487ef5e3:131246c8237:-7729" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ImplicitLink id="-487ef5e3:131246c8237:-771d" parent="-487ef5e3:131246c8237:-799b" source="-487ef5e3:131246c8237:-76c9" target="-487ef5e3:131246c8237:-76be"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="949.9999999999999" y="385.99999999999994"/><mxPoint as="targetPoint" x="703.7037037037037" y="305.55555555555554"/><Array as="points" scilabClass="ScilabList"><mxPoint x="950.0" y="300.0"/></Array></mxGeometry></ImplicitLink><BasicBlock angle="270" dependsOnU="1" id="-487ef5e3:131246c8237:-7717" interfaceFunctionName="Inductor" ordering="11" parent="-487ef5e3:131246c8237:-799b" simulationFunctionName="Inductor" simulationFunctionType="DEFAULT" style="Inductor;rotation=270;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="0.00047746482"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="4.7746482E-4"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Inductor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="L"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.7746482E-4"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="930.0" y="600.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-487ef5e3:131246c8237:-76ba" ordering="1" parent="-487ef5e3:131246c8237:-7717" style="ImplicitInputPort;align=center;verticalAlign=bottom;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-487ef5e3:131246c8237:-76b9" ordering="1" parent="-487ef5e3:131246c8237:-7717" style="ImplicitOutputPort;align=center;verticalAlign=top;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitOutputPort><GroundBlock dependsOnU="1" id="-487ef5e3:131246c8237:-770c" interfaceFunctionName="Ground" ordering="12" parent="-487ef5e3:131246c8237:-799b" simulationFunctionName="Ground" simulationFunctionType="DEFAULT" style="Ground;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Ground"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="930.0" y="690.0"/></GroundBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-487ef5e3:131246c8237:-770b" ordering="1" parent="-487ef5e3:131246c8237:-770c" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><Orientation as="orientation" value="NORTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><SplitBlock id="-487ef5e3:131246c8237:-7707" ordering="13" parent="-487ef5e3:131246c8237:-799b" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="947.0" y="537.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-487ef5e3:131246c8237:-7705" ordering="1" parent="-487ef5e3:131246c8237:-7707" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-487ef5e3:131246c8237:-7704" ordering="2" parent="-487ef5e3:131246c8237:-7707" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-487ef5e3:131246c8237:-7706" ordering="1" parent="-487ef5e3:131246c8237:-7707" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-487ef5e3:131246c8237:-7702" parent="-487ef5e3:131246c8237:-799b" source="-487ef5e3:131246c8237:-76c1" target="-487ef5e3:131246c8237:-7705"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-487ef5e3:131246c8237:-7708" parent="-487ef5e3:131246c8237:-799b" source="-487ef5e3:131246c8237:-76b9" target="-487ef5e3:131246c8237:-7704"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="949.9999999999999" y="596.0"/><mxPoint as="targetPoint" x="944.4444444444443" y="537.037037037037"/></mxGeometry></ImplicitLink><ImplicitLink id="-487ef5e3:131246c8237:-7701" parent="-487ef5e3:131246c8237:-799b" source="-487ef5e3:131246c8237:-770b" target="-487ef5e3:131246c8237:-76ba"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="949.9999999999999" y="686.0"/><mxPoint as="targetPoint" x="953.7037037037037" y="648.1481481481482"/></mxGeometry></ImplicitLink><BasicBlock dependsOnU="1" id="-487ef5e3:131246c8237:-76fd" interfaceFunctionName="Inductor" ordering="14" parent="-487ef5e3:131246c8237:-799b" simulationFunctionName="Inductor" simulationFunctionType="DEFAULT" style="Inductor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="0.00063661977"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="6.3661977E-4"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Inductor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="L"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.3661977E-4"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="670.0" y="400.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-487ef5e3:131246c8237:-76c6" ordering="1" parent="-487ef5e3:131246c8237:-76fd" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><mxCell connectable="0" id="-487ef5e3:131246c8237:-76fd#identifier" parent="-487ef5e3:131246c8237:-76fd" style="noLabel=0;opacity=0;" vertex="1"><mxGeometry as="geometry" relative="1" x="0.5" y="1.1"/></mxCell><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-487ef5e3:131246c8237:-76c5" ordering="1" parent="-487ef5e3:131246c8237:-76fd" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><SplitBlock id="-487ef5e3:131246c8237:-76f0" ordering="15" parent="-487ef5e3:131246c8237:-799b" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="447.0" y="297.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-487ef5e3:131246c8237:-76ee" ordering="1" parent="-487ef5e3:131246c8237:-76f0" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-487ef5e3:131246c8237:-76ed" ordering="2" parent="-487ef5e3:131246c8237:-76f0" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-487ef5e3:131246c8237:-76ef" ordering="1" parent="-487ef5e3:131246c8237:-76f0" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-487ef5e3:131246c8237:-76ec" parent="-487ef5e3:131246c8237:-799b" source="-487ef5e3:131246c8237:-76cd" target="-487ef5e3:131246c8237:-76ef"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-487ef5e3:131246c8237:-76eb" parent="-487ef5e3:131246c8237:-799b" source="-487ef5e3:131246c8237:-76ee" target="-487ef5e3:131246c8237:-7778"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-487ef5e3:131246c8237:-76f1" parent="-487ef5e3:131246c8237:-799b" source="-487ef5e3:131246c8237:-76ed" target="-487ef5e3:131246c8237:-76c6"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="666.0" y="420.0"/><mxPoint as="targetPoint" x="453.7037037037037" y="305.55555555555554"/></mxGeometry></ImplicitLink><SplitBlock id="-487ef5e3:131246c8237:-76da" ordering="16" parent="-487ef5e3:131246c8237:-799b" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="947.0" y="537.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-487ef5e3:131246c8237:-76d8" ordering="1" parent="-487ef5e3:131246c8237:-76da" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-487ef5e3:131246c8237:-76d7" ordering="2" parent="-487ef5e3:131246c8237:-76da" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-487ef5e3:131246c8237:-76d9" ordering="1" parent="-487ef5e3:131246c8237:-76da" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-487ef5e3:131246c8237:-76d6" parent="-487ef5e3:131246c8237:-799b" source="-487ef5e3:131246c8237:-76bd" target="-487ef5e3:131246c8237:-76d9"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-487ef5e3:131246c8237:-76d5" parent="-487ef5e3:131246c8237:-799b" source="-487ef5e3:131246c8237:-76d8" target="-487ef5e3:131246c8237:-7706"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="950.0" y="540.0"/><mxPoint x="950.0" y="540.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-487ef5e3:131246c8237:-76db" parent="-487ef5e3:131246c8237:-799b" source="-487ef5e3:131246c8237:-76c5" target="-487ef5e3:131246c8237:-76d7"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="714.0" y="420.0"/><mxPoint as="targetPoint" x="951.0869565217391" y="538.0434782608695"/></mxGeometry></ImplicitLink><SplitBlock id="-487ef5e3:131246c8237:-76aa" ordering="17" parent="-487ef5e3:131246c8237:-799b" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="447.0" y="537.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-487ef5e3:131246c8237:-76a8" ordering="1" parent="-487ef5e3:131246c8237:-76aa" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-487ef5e3:131246c8237:-76a7" ordering="2" parent="-487ef5e3:131246c8237:-76aa" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-487ef5e3:131246c8237:-76a9" ordering="1" parent="-487ef5e3:131246c8237:-76aa" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-487ef5e3:131246c8237:-76a6" parent="-487ef5e3:131246c8237:-799b" source="-487ef5e3:131246c8237:-76ce" target="-487ef5e3:131246c8237:-76a9"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-487ef5e3:131246c8237:-76a5" parent="-487ef5e3:131246c8237:-799b" source="-487ef5e3:131246c8237:-76a8" target="-487ef5e3:131246c8237:-76c2"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="450.0" y="540.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-487ef5e3:131246c8237:-76ab" parent="-487ef5e3:131246c8237:-799b" source="-487ef5e3:131246c8237:-76a7" target="-487ef5e3:131246c8237:-76b6"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="450.0" y="596.0"/><mxPoint as="targetPoint" x="447.1544715447155" y="536.5853658536586"/></mxGeometry></ImplicitLink><ImplicitLink id="-487ef5e3:131246c8237:-7698" parent="-487ef5e3:131246c8237:-799b" source="-487ef5e3:131246c8237:-752d" target="-487ef5e3:131246c8237:-78f4"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="439.99999999999994" y="743.9999999999999"/><mxPoint as="targetPoint" x="439.0243902439025" y="772.3577235772358"/></mxGeometry></ImplicitLink><VoltageSensorBlock angle="180" dependsOnU="1" id="-487ef5e3:131246c8237:-768c" interfaceFunctionName="VoltageSensor" ordering="18" parent="-487ef5e3:131246c8237:-799b" simulationFunctionName="VoltageSensor" simulationFunctionType="DEFAULT" style="VoltageSensor;rotation=180;mirror=true;flip=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="VoltageSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="v"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="540.0" y="700.0"/></VoltageSensorBlock><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-487ef5e3:131246c8237:-768a" ordering="2" parent="-487ef5e3:131246c8237:-768c" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-487ef5e3:131246c8237:-7689" ordering="1" parent="-487ef5e3:131246c8237:-768c" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-487ef5e3:131246c8237:-768b" ordering="1" parent="-487ef5e3:131246c8237:-768c" style="ImplicitOutputPort;align=center;verticalAlign=top;spacing=10;rotation=270;flip=false;mirror=false"><Orientation as="orientation" value="SOUTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitOutputPort><SplitBlock id="-487ef5e3:131246c8237:-7682" ordering="19" parent="-487ef5e3:131246c8237:-799b" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="447.0" y="677.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-487ef5e3:131246c8237:-7680" ordering="1" parent="-487ef5e3:131246c8237:-7682" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-487ef5e3:131246c8237:-767f" ordering="2" parent="-487ef5e3:131246c8237:-7682" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-487ef5e3:131246c8237:-7681" ordering="1" parent="-487ef5e3:131246c8237:-7682" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-487ef5e3:131246c8237:-767e" parent="-487ef5e3:131246c8237:-799b" source="-487ef5e3:131246c8237:-76b5" target="-487ef5e3:131246c8237:-7681"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-487ef5e3:131246c8237:-767d" parent="-487ef5e3:131246c8237:-799b" source="-487ef5e3:131246c8237:-7680" target="-487ef5e3:131246c8237:-78f2"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-487ef5e3:131246c8237:-7683" parent="-487ef5e3:131246c8237:-799b" source="-487ef5e3:131246c8237:-768b" target="-487ef5e3:131246c8237:-767f"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="560.0" y="696.0000000000001"/><mxPoint as="targetPoint" x="450.98039215686276" y="676.4705882352941"/><Array as="points" scilabClass="ScilabList"><mxPoint x="560.0" y="680.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="-487ef5e3:131246c8237:-7671" ordering="20" parent="-487ef5e3:131246c8237:-799b" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="427.0" y="837.0"/></SplitBlock><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-487ef5e3:131246c8237:-766f" ordering="1" parent="-487ef5e3:131246c8237:-7671" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="-487ef5e3:131246c8237:-766e" ordering="2" parent="-487ef5e3:131246c8237:-7671" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitInputPort dataType="UNKNOW_TYPE" id="-487ef5e3:131246c8237:-7670" ordering="1" parent="-487ef5e3:131246c8237:-7671" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitLink id="-487ef5e3:131246c8237:-766d" parent="-487ef5e3:131246c8237:-799b" source="-487ef5e3:131246c8237:-752f" target="-487ef5e3:131246c8237:-7670"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="-487ef5e3:131246c8237:-766c" parent="-487ef5e3:131246c8237:-799b" source="-487ef5e3:131246c8237:-766f" target="-487ef5e3:131246c8237:-7861"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="430.0" y="850.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="-487ef5e3:131246c8237:-7672" parent="-487ef5e3:131246c8237:-799b" source="-487ef5e3:131246c8237:-766e" target="-487ef5e3:131246c8237:-7689"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="536.0" y="719.9999999999999"/><mxPoint as="targetPoint" x="428.57142857142856" y="841.2698412698412"/><Array as="points" scilabClass="ScilabList"><mxPoint x="510.0" y="840.0"/><mxPoint x="510.0" y="720.0"/></Array></mxGeometry></ImplicitLink><BasicBlock dependsOnU="1" id="-487ef5e3:131246c8237:-7662" interfaceFunctionName="CMSCOPE" ordering="21" parent="-487ef5e3:131246c8237:-799b" simulationFunctionName="cmscope" simulationFunctionType="C_OR_FORTRAN" style="CMSCOPE;flip=false;mirror=false"><ScilabString as="exprs" height="11" width="1"><data column="0" line="0" value="1 1"/><data column="0" line="1" value="1 3 5 7 9 11 13 15"/><data column="0" line="2" value="-1"/><data column="0" line="3" value="[]"/><data column="0" line="4" value="[]"/><data column="0" line="5" value="-1.414 -22"/><data column="0" line="6" value="1.414 22"/><data column="0" line="7" value="0.5 0.5"/><data column="0" line="8" value="5"/><data column="0" line="9" value="0"/><data column="0" line="10" value="Voltage and Current at the fault"/></ScilabString><ScilabDouble as="realParameters" height="7" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="0.5"/><data column="0" line="2" realPart="0.5"/><data column="0" line="3" realPart="-1.414"/><data column="0" line="4" realPart="1.414"/><data column="0" line="5" realPart="-22.0"/><data column="0" line="6" realPart="22.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="12" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="2.0"/><data column="0" line="2" realPart="5.0"/><data column="0" line="3" realPart="-1.0"/><data column="0" line="4" realPart="-1.0"/><data column="0" line="5" realPart="-1.0"/><data column="0" line="6" realPart="-1.0"/><data column="0" line="7" realPart="1.0"/><data column="0" line="8" realPart="1.0"/><data column="0" line="9" realPart="1.0"/><data column="0" line="10" realPart="3.0"/><data column="0" line="11" realPart="0.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="640.0" y="710.0"/></BasicBlock><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-9f15b34:131b8cd9210:-7bd8" ordering="1" parent="-487ef5e3:131246c8237:-7662" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="6.0"/></ExplicitInputPort><ControlPort dataType="UNKNOW_TYPE" id="-9f15b34:131b8cd9210:-7bd6" ordering="1" parent="-487ef5e3:131246c8237:-7662" style="ControlPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ControlPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-9f15b34:131b8cd9210:-7bd7" ordering="2" parent="-487ef5e3:131246c8237:-7662" style="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="26.0"/></ExplicitInputPort><ExplicitLink id="-487ef5e3:131246c8237:-765a" parent="-487ef5e3:131246c8237:-799b" source="-487ef5e3:131246c8237:-768a" target="-9f15b34:131b8cd9210:-7bd8"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="584.0000000000001" y="720.0000000000001"/><mxPoint as="targetPoint" x="636.3636363636364" y="717.1717171717172"/></mxGeometry></ExplicitLink><ExplicitLink id="-487ef5e3:131246c8237:-7659" parent="-487ef5e3:131246c8237:-799b" source="-487ef5e3:131246c8237:-78f3" target="-9f15b34:131b8cd9210:-7bd7"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="460.0" y="744.0000000000001"/><mxPoint as="targetPoint" x="636.3636363636364" y="747.4747474747475"/><Array as="points" scilabClass="ScilabList"><mxPoint x="460.0" y="770.0"/><mxPoint x="620.0" y="770.0"/><mxPoint x="620.0" y="740.0"/></Array></mxGeometry></ExplicitLink><BasicBlock blockType="h" id="-487ef5e3:131246c8237:-7653" interfaceFunctionName="CLOCK_c" ordering="22" parent="-487ef5e3:131246c8237:-799b" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="139.0"/><data column="1" line="0" realPart="-170.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-9f15b34:131b8cd9210:-7bfe"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-9f15b34:131b8cd9210:-7bfe"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.0001"/><data column="0" line="1" value="0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="1.0E-4"/><data column="0" line="1" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-9f15b34:131b8cd9210:-7bfa"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-9f15b34:131b8cd9210:-7bfa"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="156.71066000000002"/><data column="1" line="0" realPart="-196.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="8.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="4.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-9f15b34:131b8cd9210:-7bf5"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-9f15b34:131b8cd9210:-7bf5"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="146.0"/><data column="0" line="2" realPart="167.37732666666668"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="4.0"/><data column="0" line="1" realPart="-244.0"/><data column="0" line="2" realPart="-200.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="168.71066000000002"/><data column="0" line="1" realPart="169.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-184.0"/><data column="0" line="1" realPart="-146.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="170.04399333333336"/><data column="0" line="1" realPart="191.70999999999998"/><data column="0" line="2" realPart="151.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-200.0"/><data column="0" line="1" realPart="-98.0"/><data column="0" line="2" realPart="-98.0"/><data column="0" line="3" realPart="-44.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="640.0" y="620.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="-487ef5e3:131246c8237:-763a" ordering="1" parent="-487ef5e3:131246c8237:-7653" style="CommandPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><CommandControlLink id="-487ef5e3:131246c8237:-7651" parent="-487ef5e3:131246c8237:-799b" source="-487ef5e3:131246c8237:-763a" target="-9f15b34:131b8cd9210:-7bd6"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="660.0" y="664.0000000000001"/><mxPoint as="targetPoint" x="656.25" y="708.3333333333334"/></mxGeometry></CommandControlLink><BasicBlock blockType="h" id="-487ef5e3:131246c8237:-764b" interfaceFunctionName="STEP_FUNCTION" ordering="23" parent="-487ef5e3:131246c8237:-799b" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="STEP_FUNCTION;mirror=true;flip=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="STEP_FUNCTION"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-4"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="14.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=" "/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="3" width="1"><data column="0" line="0" value="0.255"/><data column="0" line="1" value="-3"/><data column="0" line="2" value="5"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"STEP",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="STEP"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="step_func"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-3.0"/><data column="0" line="1" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.255"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="true"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-9f15b34:131b8cd9210:-7bea"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="STEP"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-9f15b34:131b8cd9210:-7bea"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="128.571433"/><data column="1" line="0" realPart="-90.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"OUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="OUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-2.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-9f15b34:131b8cd9210:-7be7"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="OUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-9f15b34:131b8cd9210:-7be7"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="6" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="156.000003"/><data column="0" line="2" realPart="117.47839499999999"/><data column="0" line="3" realPart="117.47839499999999"/><data column="0" line="4" realPart="156.000003"/><data column="0" line="5" realPart="60.0"/></ScilabDouble><ScilabDouble height="6" width="1"><data column="0" line="0" realPart="4.0"/><data column="0" line="1" realPart="-214.39289999999994"/><data column="0" line="2" realPart="-214.39289999999994"/><data column="0" line="3" realPart="-124.69677999999999"/><data column="0" line="4" realPart="-124.69677999999999"/><data column="0" line="5" realPart="-44.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="84.0"/><data column="0" line="1" realPart="144.571433"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-20.0"/><data column="0" line="1" realPart="-80.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="540.0" y="830.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataType="REAL_MATRIX" id="-487ef5e3:131246c8237:-7532" ordering="1" parent="-487ef5e3:131246c8237:-764b" style="ExplicitOutputPort;align=left;verticalAlign=middle;spacing=10;rotation=180;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitOutputPort><ExplicitLink id="-487ef5e3:131246c8237:-7644" parent="-487ef5e3:131246c8237:-799b" source="-487ef5e3:131246c8237:-7532" target="-487ef5e3:131246c8237:-752e"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="536.0" y="850.0"/><mxPoint as="targetPoint" x="448.9795918367347" y="826.530612244898"/><Array as="points" scilabClass="ScilabList"><mxPoint x="450.0" y="850.0"/></Array></mxGeometry></ExplicitLink><TextBlock id="-487ef5e3:131246c8237:-7428" parent="-487ef5e3:131246c8237:-799b" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;flip=false;mirror=false;fontColor=#DB1717" value="Fault<br>Voltage"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="Fault<br>Voltage"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="Fault<br>Voltage"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="370.0" y="610.0"/></TextBlock><TextBlock id="-487ef5e3:131246c8237:-7423" parent="-487ef5e3:131246c8237:-799b" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;flip=false;mirror=false" value="j0.1"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="j0.1"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="j0.1"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="390.0" y="430.0"/></TextBlock><TextBlock id="-487ef5e3:131246c8237:-741f" parent="-487ef5e3:131246c8237:-799b" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;flip=false;mirror=false" value="j0.15"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="j0.15"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="j0.15"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="480.0" y="180.0"/></TextBlock><TextBlock id="-487ef5e3:131246c8237:-741b" parent="-487ef5e3:131246c8237:-799b" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;flip=false;mirror=false" value="j0.15"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="j0.15"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="j0.15"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="660.0" y="240.0"/></TextBlock><TextBlock id="-487ef5e3:131246c8237:-7418" parent="-487ef5e3:131246c8237:-799b" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;flip=false;mirror=false" value="j0.15"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="j0.15"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="j0.15"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="660.0" y="560.0"/></TextBlock><TextBlock id="-487ef5e3:131246c8237:-7415" parent="-487ef5e3:131246c8237:-799b" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;flip=false;mirror=false" value="j0.15"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="j0.15"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="j0.15"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="880.0" y="600.0"/></TextBlock><TextBlock id="-487ef5e3:131246c8237:-7412" parent="-487ef5e3:131246c8237:-799b" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;flip=false;mirror=false" value="j0.2"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="j0.2"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="j0.2"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="670.0" y="360.0"/></TextBlock><TextBlock id="-487ef5e3:131246c8237:-740f" parent="-487ef5e3:131246c8237:-799b" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;flip=false;mirror=false" value="j0.1"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="j0.1"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="j0.1"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="970.0" y="390.0"/></TextBlock><TextBlock id="-487ef5e3:131246c8237:-740b" parent="-487ef5e3:131246c8237:-799b" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;fontColor=#D31B1B;flip=false;mirror=false" value="Fault Initiation"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="Fault Initiation"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="Fault Initiation"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="550.0" y="860.0"/></TextBlock><TextBlock id="-487ef5e3:131246c8237:-7407" parent="-487ef5e3:131246c8237:-799b" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;fontColor=#D31B1B;flip=false;mirror=false" value="Voltage and <br>Current Waveform"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="Voltage and <br>Current Waveform"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="Voltage and <br>Current Waveform"/></ScilabString><mxGeometry as="geometry" height="40.0" width="50.0" x="640.0" y="770.0"/></TextBlock><BasicBlock angle="90" dependsOnU="1" id="-487ef5e3:131246c8237:-7909" interfaceFunctionName="SineVoltage" ordering="24" parent="-487ef5e3:131246c8237:-799b" simulationFunctionName="SineVoltage" simulationFunctionType="DEFAULT" style="SineVoltage;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="5" width="1"><data column="0" line="0" value="1.414"/><data column="0" line="1" value="0"/><data column="0" line="2" value="50"/><data column="0" line="3" value="0"/><data column="0" line="4" value="0"/></ScilabString><ScilabDouble as="realParameters" height="5" width="1"><data column="0" line="0" realPart="1.414"/><data column="0" line="1" realPart="0.0"/><data column="0" line="2" realPart="50.0"/><data column="0" line="3" realPart="0.0"/><data column="0" line="4" realPart="0.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="SineVoltage"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="5" width="1"><data column="0" line="0" value="V"/><data column="0" line="1" value="phase"/><data column="0" line="2" value="freqHz"/><data column="0" line="3" value="offset"/><data column="0" line="4" value="startTime"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.414"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="50.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="60.0" width="50.0" x="430.0" y="600.0"/></BasicBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-487ef5e3:131246c8237:-76b6" ordering="1" parent="-487ef5e3:131246c8237:-7909" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-487ef5e3:131246c8237:-76b5" ordering="1" parent="-487ef5e3:131246c8237:-7909" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="60.0"/></ImplicitOutputPort></root></mxGraphModel><mxCell as="defaultParent" id="-487ef5e3:131246c8237:-799b" parent="-487ef5e3:131246c8237:-799a"/></XcosDiagram>
\ No newline at end of file diff --git a/Working_Examples/83/CH9/EX9.5/result_example_9_5.txt b/Working_Examples/83/CH9/EX9.5/result_example_9_5.txt new file mode 100755 index 0000000..dde2300 --- /dev/null +++ b/Working_Examples/83/CH9/EX9.5/result_example_9_5.txt @@ -0,0 +1,25 @@ + + +If= -j7.37463 pu + +I1 = -j3.83701 pu + +I2 = -j3.53762 pu + +DeltaV1=-0.57555 pu + +DeltaV2=-0.53064 pu + +V1f= 0.42445 pu + +V2f=0.46936 pu + +I13=j0.17963 pu + +DeltaV3=-0.54861 pu + +Vf3=0.45139 pu + +Vf4=0 + +Short circuit MVA at bus4 =737.463 MVA diff --git a/Working_Examples/83/CH9/EX9.5/xcos_result_example_9_5.jpeg b/Working_Examples/83/CH9/EX9.5/xcos_result_example_9_5.jpeg Binary files differnew file mode 100755 index 0000000..c4871ae --- /dev/null +++ b/Working_Examples/83/CH9/EX9.5/xcos_result_example_9_5.jpeg diff --git a/Working_Examples/83/CH9/EX9.6/example_9_6.sce b/Working_Examples/83/CH9/EX9.6/example_9_6.sce new file mode 100755 index 0000000..2ab3fd6 --- /dev/null +++ b/Working_Examples/83/CH9/EX9.6/example_9_6.sce @@ -0,0 +1,73 @@ +//Chapter 9 +//Example 9.6 +//page 352 +//To calculate short circuit solution using algorithm for short circuit studies +clear;clc; + +Y11=1/(0.15*%i)+1/(0.15*%i)+1/(0.1*%i)+1/(0.2*%i); +Y12=-1/(0.2*%i); +Y21=Y12; +Y13=-1/(0.15*%i); +Y31=Y13; +Y14=-1/(0.1*%i); +Y41=Y14; +Y22=1/(0.15*%i)+1/(0.15*%i)+1/(0.1*%i)+1/(0.2*%i); +Y23=-1/(0.1*%i); +Y32=Y23; +Y24=-1/(0.15*%i); +Y42=Y24; +Y33=1/(0.15*%i)+1/(0.1*%i); +Y34=0; +Y43=Y34; +Y44=1/(0.15*%i)+1/(0.1*%i); + +//Ybus matrix can be written as + +Ybus=[Y11 Y12 Y13 Y14;Y21 Y22 Y23 Y24;Y31 Y32 Y33 Y34;Y41 Y42 Y43 Y44]; + +Zbus=inv(Ybus); + +//preault voltages +V10=1;V20=1;V30=1;V40=1; + +//post fault voltages +V1f=V10-(Zbus(1,4)/Zbus(4,4))*V40; +V2f=V20-(Zbus(2,4)/Zbus(4,4))*V40; +V3f=V30-(Zbus(3,4)/Zbus(4,4))*V40; +V4f=V40-(Zbus(4,4)/Zbus(4,4))*V40; + +//to calculate fault current through Zf=0 +If=V40/(Zbus(4,4)+0); + +//short circuit current in lines 1-3,1-2,1-4,2-4 and 2-3 + +I13f=(V1f-V3f)/(0.15*%i); +I12f=(V1f-V2f)/(0.2*%i); +I14f=(V1f-V4f)/(0.1*%i); +I24f=(V2f-V4f)/(0.15*%i); +I23f=(V2f-V3f)/(0.1*%i); + +//If at all fault occurs on bus1 or bus2 +If12=1/Zbus(1,1); + +//displaying the results +printf('\n Ybus='); +disp(Ybus); + +printf('\n Zbus='); +disp(Zbus); + +printf('\nV1f= %0.4f pu',V1f); +printf('\nV2f= %0.4f pu',V2f); +printf('\nV3f= %0.4f pu',V3f); +printf('\nV4f= %0.1f pu\n',V4f); + +printf('\nFault current=-j%0.5f pu\n',abs(If)); + +printf('\nI13f=j%0.3f pu',abs(I13f)); +printf('\nI12f=j%0.3f pu',abs(I12f)); +printf('\nI14f=-j%0.3f pu',abs(I14f)); +printf('\nI24f=-j%0.3f pu',abs(I24f)); +printf('\nI23f=-j%0.3f pu\n',abs(I23f)); + +printf('\n Fault current for a fault on bus 1 (or bus 2)\n If=-j%0.6f pu\n\n',abs(If12));
\ No newline at end of file diff --git a/Working_Examples/83/CH9/EX9.6/result_example_9_6.txt b/Working_Examples/83/CH9/EX9.6/result_example_9_6.txt new file mode 100755 index 0000000..81e1467 --- /dev/null +++ b/Working_Examples/83/CH9/EX9.6/result_example_9_6.txt @@ -0,0 +1,30 @@ + + + Ybus= + - 28.333333i 5.i 6.6666667i 10.i + 5.i - 28.333333i 10.i 6.6666667i + 6.6666667i 10.i - 16.666667i 0 + 10.i 6.6666667i 0 - 16.666667i + + Zbus= + 0.0903061i 0.0596939i 0.0719388i 0.0780612i + 0.0596939i 0.0903061i 0.0780612i 0.0719388i + 0.0719388i 0.0780612i 0.1356122i 0.0743878i + 0.0780612i 0.0719388i 0.0743878i 0.1356122i + +V1f= 0.4244 pu +V2f= 0.4695 pu +V3f= 0.4515 pu +V4f= 0.0 pu + +Fault current=-j7.37397 pu + +I13f=j0.181 pu +I12f=j0.226 pu +I14f=-j4.244 pu +I24f=-j3.130 pu +I23f=-j0.181 pu + + Fault current for a fault on bus 1 (or bus 2) + If=-j11.073446 pu + diff --git a/Working_Examples/83/CH9/EX9.7/example_9_7.sce b/Working_Examples/83/CH9/EX9.7/example_9_7.sce new file mode 100755 index 0000000..1fb5fd8 --- /dev/null +++ b/Working_Examples/83/CH9/EX9.7/example_9_7.sce @@ -0,0 +1,17 @@ +//Chapter 9 +//Example 9.7 +//page 355 +//To evaluate Zbus using Current Injection method +clear;clc; + +disp("We can approach this problem using XCOS simulation") +disp("In this simulation"); +disp("1)For injecting unit current at bus1 keeping bus2 open circuit,we use a current source of 1 unit which is switched on from t=0 to t=2. During this period we can observe the voltage waveforms of V1 and V2 and compare with the results given in the textbook"); +disp("2)For injecting unit current at bus2 keeping bus1 open circuit,we use a current source of 1 unit which is switched on from t=4 to t=6. During this period we can observe the voltage waveforms of V1 and V2 and compare with the results given in the textbook"); + +Z11=7; +Z21=4; +Z12=Z21; +Z22=6; + +Zbus=[Z11 Z12;Z21 Z22] diff --git a/Working_Examples/83/CH9/EX9.7/example_9_7.xcos b/Working_Examples/83/CH9/EX9.7/example_9_7.xcos new file mode 100755 index 0000000..da80f2b --- /dev/null +++ b/Working_Examples/83/CH9/EX9.7/example_9_7.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" finalIntegrationTime="6.0" title="example_9_7"><!--Xcos - 1.0 - scilab-5.5.2 - 20160406 2040--><mxGraphModel as="model"><root><mxCell id="75289c83:1315698632f:-7fff"/><mxCell id="75289c83:1315698632f:-8000" parent="75289c83:1315698632f:-7fff"/><BasicBlock dependsOnU="1" id="75289c83:1315698632f:-7fde" interfaceFunctionName="Resistor" ordering="1" parent="75289c83:1315698632f:-8000" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="3"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="680.0" y="140.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="75289c83:1315698632f:-7f99" ordering="1" parent="75289c83:1315698632f:-7fde" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="75289c83:1315698632f:-7f9a" ordering="1" parent="75289c83:1315698632f:-7fde" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><BasicBlock dependsOnU="1" id="75289c83:1315698632f:-7fdb" interfaceFunctionName="Resistor" ordering="2" parent="75289c83:1315698632f:-8000" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="2"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="540.0" y="140.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="75289c83:1315698632f:-7f95" ordering="1" parent="75289c83:1315698632f:-7fdb" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="75289c83:1315698632f:-7f96" ordering="1" parent="75289c83:1315698632f:-7fdb" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><BasicBlock angle="270" dependsOnU="1" id="75289c83:1315698632f:-7fd8" interfaceFunctionName="Resistor" ordering="3" parent="75289c83:1315698632f:-8000" simulationFunctionName="resistor" simulationFunctionType="DEFAULT" style="Resistor;rotation=270;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="4"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Resistor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="R"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="610.0" y="200.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="75289c83:1315698632f:-7f9d" ordering="1" parent="75289c83:1315698632f:-7fd8" style="ImplicitOutputPort;align=center;verticalAlign=top;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="75289c83:1315698632f:-7f9e" ordering="1" parent="75289c83:1315698632f:-7fd8" style="ImplicitInputPort;align=center;verticalAlign=bottom;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitInputPort><SplitBlock id="75289c83:1315698632f:-7fcf" ordering="4" parent="75289c83:1315698632f:-8000" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="627.0" y="157.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="75289c83:1315698632f:-7fce" ordering="1" parent="75289c83:1315698632f:-7fcf" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="75289c83:1315698632f:-7fcd" ordering="1" parent="75289c83:1315698632f:-7fcf" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="75289c83:1315698632f:-7fcc" ordering="2" parent="75289c83:1315698632f:-7fcf" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitLink id="75289c83:1315698632f:-7fcb" parent="75289c83:1315698632f:-8000" source="75289c83:1315698632f:-7f95" target="75289c83:1315698632f:-7fce"><mxGeometry as="geometry" x="300.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="75289c83:1315698632f:-7fca" parent="75289c83:1315698632f:-8000" source="75289c83:1315698632f:-7fcd" target="75289c83:1315698632f:-7f9a"><mxGeometry as="geometry" x="300.0"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="75289c83:1315698632f:-7fd0" parent="75289c83:1315698632f:-8000" source="75289c83:1315698632f:-7f9d" target="75289c83:1315698632f:-7fcc"><mxGeometry as="geometry" x="300.0"><mxPoint as="sourcePoint" x="630.0" y="226.0"/><mxPoint as="targetPoint" x="630.0" y="160.0"/></mxGeometry></ImplicitLink><BasicBlock angle="270" dependsOnT="1" id="75289c83:1315698632f:-7fbf" interfaceFunctionName="CCS" ordering="5" parent="75289c83:1315698632f:-8000" simulationFunctionName="CCS" simulationFunctionType="DEFAULT" style="CCS;rotation=270;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CCS"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="Iin"/><data column="0" line="1" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="100.0" y="220.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="75289c83:1315698632f:-7fbe" ordering="1" parent="75289c83:1315698632f:-7fbf" style="ImplicitOutputPort;align=center;verticalAlign=top;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitOutputPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="75289c83:1315698632f:-7fbd" ordering="1" parent="75289c83:1315698632f:-7fbf" style="ExplicitInputPort;align=center;verticalAlign=bottom;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="6.0" y="40.0"/></ExplicitInputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="75289c83:1315698632f:-7fbc" ordering="2" parent="75289c83:1315698632f:-7fbf" style="ImplicitInputPort;align=center;verticalAlign=bottom;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="26.0" y="40.0"/></ImplicitInputPort><GroundBlock dependsOnU="1" id="75289c83:1315698632f:-7fb5" interfaceFunctionName="Ground" ordering="6" parent="75289c83:1315698632f:-8000" simulationFunctionName="Ground" simulationFunctionType="DEFAULT" style="Ground;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="Ground"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="110.0" y="360.0"/></GroundBlock><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="75289c83:1315698632f:-7fb4" ordering="1" parent="75289c83:1315698632f:-7fb5" style="ImplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><Orientation as="orientation" value="NORTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitInputPort><SplitBlock id="75289c83:1315698632f:-7fa5" ordering="7" parent="75289c83:1315698632f:-8000" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="127.0" y="297.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="75289c83:1315698632f:-7fa4" ordering="1" parent="75289c83:1315698632f:-7fa5" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="75289c83:1315698632f:-7fa3" ordering="1" parent="75289c83:1315698632f:-7fa5" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="75289c83:1315698632f:-7fa2" ordering="2" parent="75289c83:1315698632f:-7fa5" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitLink id="75289c83:1315698632f:-7fa1" parent="75289c83:1315698632f:-8000" source="75289c83:1315698632f:-7fb4" target="75289c83:1315698632f:-7fa4"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="75289c83:1315698632f:-7fa0" parent="75289c83:1315698632f:-8000" source="75289c83:1315698632f:-7fa3" target="75289c83:1315698632f:-7fbc"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><BasicBlock blockType="h" id="75289c83:1315698632f:-7f8e" interfaceFunctionName="STEP_FUNCTION" ordering="8" parent="75289c83:1315698632f:-8000" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="STEP_FUNCTION;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="STEP_FUNCTION"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-4"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="14.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=" "/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="3" width="1"><data column="0" line="0" value="2"/><data column="0" line="1" value="1"/><data column="0" line="2" value="0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"STEP",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="STEP"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="step_func"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="1.0"/><data column="0" line="1" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="2.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="true"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-3e07f539:168315200c0:-78a8"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="STEP"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-3e07f539:168315200c0:-78a8"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="108.57143300000001"/><data column="1" line="0" realPart="-70.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"OUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="OUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-2.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-3e07f539:168315200c0:-78a4"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="OUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-3e07f539:168315200c0:-78a4"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="6" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="100.00000299999999"/><data column="0" line="2" realPart="61.478395"/><data column="0" line="3" realPart="61.478395"/><data column="0" line="4" realPart="100.00000299999999"/><data column="0" line="5" realPart="60.0"/></ScilabDouble><ScilabDouble height="6" width="1"><data column="0" line="0" realPart="-44.0"/><data column="0" line="1" realPart="-150.39289999999994"/><data column="0" line="2" realPart="-150.39289999999994"/><data column="0" line="3" realPart="-60.69677999999999"/><data column="0" line="4" realPart="-60.69677999999999"/><data column="0" line="5" realPart="4.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="84.0"/><data column="0" line="1" realPart="124.57143300000001"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-20.0"/><data column="0" line="1" realPart="-60.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="20.0" y="290.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataType="REAL_MATRIX" id="75289c83:1315698632f:-7e45" ordering="1" parent="75289c83:1315698632f:-7f8e" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ExplicitLink id="75289c83:1315698632f:-7f8b" parent="75289c83:1315698632f:-8000" source="75289c83:1315698632f:-7e45" target="75289c83:1315698632f:-7fbd"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="64.0" y="310.0"/><mxPoint as="targetPoint" x="110.0" y="270.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="110.0" y="310.0"/></Array></mxGeometry></ExplicitLink><BasicBlock angle="270" dependsOnT="1" id="75289c83:1315698632f:-7f7e" interfaceFunctionName="CCS" ordering="9" parent="75289c83:1315698632f:-8000" simulationFunctionName="CCS" simulationFunctionType="DEFAULT" style="CCS;rotation=270;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="CCS"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="Iin"/><data column="0" line="1" value="p"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="n"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="160.0" y="220.0"/></BasicBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="75289c83:1315698632f:-7f7d" ordering="1" parent="75289c83:1315698632f:-7f7e" style="ImplicitOutputPort;align=center;verticalAlign=top;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="-8.0"/></ImplicitOutputPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="75289c83:1315698632f:-7f7c" ordering="1" parent="75289c83:1315698632f:-7f7e" style="ExplicitInputPort;align=center;verticalAlign=bottom;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="6.0" y="40.0"/></ExplicitInputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="75289c83:1315698632f:-7f7b" ordering="2" parent="75289c83:1315698632f:-7f7e" style="ImplicitInputPort;align=center;verticalAlign=bottom;spacing=10;rotation=270;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="26.0" y="40.0"/></ImplicitInputPort><SplitBlock id="75289c83:1315698632f:-7f77" ordering="10" parent="75289c83:1315698632f:-8000" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="187.0" y="297.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="75289c83:1315698632f:-7f76" ordering="1" parent="75289c83:1315698632f:-7f77" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="75289c83:1315698632f:-7f75" ordering="1" parent="75289c83:1315698632f:-7f77" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="75289c83:1315698632f:-7f74" ordering="2" parent="75289c83:1315698632f:-7f77" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitLink id="75289c83:1315698632f:-7f73" parent="75289c83:1315698632f:-8000" source="75289c83:1315698632f:-7fa2" target="75289c83:1315698632f:-7f76"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="75289c83:1315698632f:-7f78" parent="75289c83:1315698632f:-8000" source="75289c83:1315698632f:-7f74" target="75289c83:1315698632f:-7f7b"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="190.0" y="264.0"/><mxPoint as="targetPoint" x="190.0" y="300.0"/></mxGeometry></ImplicitLink><BasicBlock angle="180" blockType="h" id="75289c83:1315698632f:-7f60" interfaceFunctionName="STEP_FUNCTION" ordering="11" parent="75289c83:1315698632f:-8000" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="STEP_FUNCTION;rotation=180;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="STEP_FUNCTION"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-4"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="14.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=" "/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="3" width="1"><data column="0" line="0" value="4"/><data column="0" line="1" value="0"/><data column="0" line="2" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"STEP",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10.0;rotation=0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="STEP"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="step_func"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="true"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-3e07f539:168315200c0:-789e"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="STEP"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-3e07f539:168315200c0:-789e"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="108.57143300000001"/><data column="1" line="0" realPart="-70.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"OUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="E"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="ExplicitInputPort;align=left;verticalAlign=middle;spacing=10.0;rotation=0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="OUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-2.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="c"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-3e07f539:168315200c0:-789a"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="OUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-3e07f539:168315200c0:-789a"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="6" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="100.00000299999999"/><data column="0" line="2" realPart="61.478395"/><data column="0" line="3" realPart="61.478395"/><data column="0" line="4" realPart="100.00000299999999"/><data column="0" line="5" realPart="60.0"/></ScilabDouble><ScilabDouble height="6" width="1"><data column="0" line="0" realPart="-44.0"/><data column="0" line="1" realPart="-150.39289999999994"/><data column="0" line="2" realPart="-150.39289999999994"/><data column="0" line="3" realPart="-60.69677999999999"/><data column="0" line="4" realPart="-60.69677999999999"/><data column="0" line="5" realPart="4.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="84.0"/><data column="0" line="1" realPart="124.57143300000001"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-20.0"/><data column="0" line="1" realPart="-60.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="220.0" y="330.0"/></BasicBlock><ExplicitOutputPort dataColumns="1" dataType="REAL_MATRIX" id="75289c83:1315698632f:-7de3" ordering="1" parent="75289c83:1315698632f:-7f60" style="ExplicitOutputPort;align=left;verticalAlign=middle;spacing=10;rotation=180;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitOutputPort><ExplicitLink id="75289c83:1315698632f:-7f5e" parent="75289c83:1315698632f:-8000" source="75289c83:1315698632f:-7de3" target="75289c83:1315698632f:-7f7c"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="215.99999999999997" y="350.0"/><mxPoint as="targetPoint" x="165.68047337278108" y="266.2721893491124"/><Array as="points" scilabClass="ScilabList"><mxPoint x="170.0" y="350.0"/></Array></mxGeometry></ExplicitLink><VoltageSensorBlock dependsOnU="1" id="75289c83:1315698632f:-7f51" interfaceFunctionName="VoltageSensor" ordering="12" parent="75289c83:1315698632f:-8000" simulationFunctionName="VoltageSensor" simulationFunctionType="DEFAULT" style="VoltageSensor;rotation=0;mirror=true;flip=false"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="VoltageSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="v"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="410.0" y="210.0"/></VoltageSensorBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="75289c83:1315698632f:-7f50" ordering="1" parent="75289c83:1315698632f:-7f51" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><Orientation as="orientation" value="SOUTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="75289c83:1315698632f:-7f4f" ordering="2" parent="75289c83:1315698632f:-7f51" style="ExplicitOutputPort;align=left;verticalAlign=middle;spacing=10;rotation=180;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="75289c83:1315698632f:-7f4e" ordering="1" parent="75289c83:1315698632f:-7f51" style="ImplicitInputPort;align=right;verticalAlign=middle;spacing=10;rotation=180;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ImplicitInputPort><BasicBlock angle="90" dependsOnU="1" id="75289c83:1315698632f:-7eb8" interfaceFunctionName="CMSCOPE" ordering="13" parent="75289c83:1315698632f:-8000" simulationFunctionName="cmscope" simulationFunctionType="C_OR_FORTRAN" style="CMSCOPE;rotation=90;flip=false;mirror=false"><ScilabString as="exprs" height="11" width="1"><data column="0" line="0" value="1 1"/><data column="0" line="1" value="1 3 5 7 9 11 13 15"/><data column="0" line="2" value="-1"/><data column="0" line="3" value="[]"/><data column="0" line="4" value="[]"/><data column="0" line="5" value="0 0"/><data column="0" line="6" value="9 9"/><data column="0" line="7" value="6 6"/><data column="0" line="8" value="2"/><data column="0" line="9" value="0"/><data column="0" line="10" value="V1 and V2"/></ScilabString><ScilabDouble as="realParameters" height="7" width="1"><data column="0" line="0" realPart="0.0"/><data column="0" line="1" realPart="6.0"/><data column="0" line="2" realPart="6.0"/><data column="0" line="3" realPart="0.0"/><data column="0" line="4" realPart="9.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="9.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="12" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="2.0"/><data column="0" line="2" realPart="2.0"/><data column="0" line="3" realPart="-1.0"/><data column="0" line="4" realPart="-1.0"/><data column="0" line="5" realPart="-1.0"/><data column="0" line="6" realPart="-1.0"/><data column="0" line="7" realPart="1.0"/><data column="0" line="8" realPart="1.0"/><data column="0" line="9" realPart="1.0"/><data column="0" line="10" realPart="3.0"/><data column="0" line="11" realPart="0.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="340.0" y="380.0"/></BasicBlock><ControlPort dataType="UNKNOW_TYPE" id="75289c83:1315698632f:-7d7d" ordering="1" parent="75289c83:1315698632f:-7eb8" style="ControlPort;align=right;verticalAlign=middle;spacing=10;rotation=180;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ControlPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="75289c83:1315698632f:-7d7f" ordering="1" parent="75289c83:1315698632f:-7eb8" style="ExplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="6.0" y="-8.0"/></ExplicitInputPort><ExplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="75289c83:1315698632f:-7d7e" ordering="2" parent="75289c83:1315698632f:-7eb8" style="ExplicitInputPort;align=center;verticalAlign=top;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="26.0" y="-8.0"/></ExplicitInputPort><ExplicitLink id="75289c83:1315698632f:-7eb0" parent="75289c83:1315698632f:-8000" source="75289c83:1315698632f:-7f4f" target="75289c83:1315698632f:-7d7e"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="406.0" y="229.99999999999997"/><mxPoint as="targetPoint" x="370.3703703703703" y="377.77777777777777"/><Array as="points" scilabClass="ScilabList"><mxPoint x="370.0" y="230.0"/></Array></mxGeometry></ExplicitLink><VoltageSensorBlock angle="180" dependsOnU="1" id="75289c83:1315698632f:-7ea6" interfaceFunctionName="VoltageSensor" ordering="14" parent="75289c83:1315698632f:-8000" simulationFunctionName="VoltageSensor" simulationFunctionType="DEFAULT" style="VoltageSensor;rotation=180;flip=true;mirror=true"><ScilabDouble as="exprs" height="0" width="0"/><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabTList"><ScilabString height="1" width="5"><data column="0" line="0" value="modelica"/><data column="1" line="0" value="model"/><data column="2" line="0" value="inputs"/><data column="3" line="0" value="outputs"/><data column="4" line="0" value="parameters"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="VoltageSensor"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="p"/></ScilabString><ScilabString height="2" width="1"><data column="0" line="0" value="n"/><data column="0" line="1" value="v"/></ScilabString><Array scilabClass="ScilabList"><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array></Array><mxGeometry as="geometry" height="40.0" width="40.0" x="280.0" y="220.0"/></VoltageSensorBlock><ImplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="75289c83:1315698632f:-7ea5" ordering="1" parent="75289c83:1315698632f:-7ea6" style="ImplicitOutputPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><Orientation as="orientation" value="SOUTH"/><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></ImplicitOutputPort><ExplicitOutputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="75289c83:1315698632f:-7ea4" ordering="2" parent="75289c83:1315698632f:-7ea6" style="ExplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ImplicitInputPort dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="75289c83:1315698632f:-7ea3" ordering="1" parent="75289c83:1315698632f:-7ea6" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ImplicitInputPort><BasicBlock blockType="h" id="75289c83:1315698632f:-7e77" interfaceFunctionName="CLOCK_c" ordering="15" parent="75289c83:1315698632f:-8000" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="CLOCK_c;flip=false;mirror=false"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" value="title"/><data column="3" line="0" value="tol"/><data column="4" line="0" value="tf"/><data column="5" line="0" value="context"/><data column="6" line="0" value="void1"/><data column="7" line="0" value="options"/><data column="8" line="0" value="void2"/><data column="9" line="0" value="void3"/><data column="10" line="0" value="doc"/></ScilabString><ScilabDouble height="1" width="6"><data column="0" line="0" realPart="600.0"/><data column="1" line="0" realPart="450.0"/><data column="2" line="0" realPart="0.0"/><data column="3" line="0" realPart="0.0"/><data column="4" line="0" realPart="600.0"/><data column="5" line="0" realPart="450.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="Untitled"/></ScilabString><ScilabDouble height="7" width="1"><data column="0" line="0" realPart="1.0E-6"/><data column="0" line="1" realPart="1.0E-6"/><data column="0" line="2" realPart="1.0E-10"/><data column="0" line="3" realPart="100001.0"/><data column="0" line="4" realPart="0.0"/><data column="0" line="5" realPart="0.0"/><data column="0" line="6" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="100000.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabTList"><ScilabString height="1" width="6"><data column="0" line="0" value="scsopt"/><data column="1" line="0" value="3D"/><data column="2" line="0" value="Background"/><data column="3" line="0" value="Link"/><data column="4" line="0" value="ID"/><data column="5" line="0" value="Cmap"/></ScilabString><Array scilabClass="ScilabList"><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="33.0"/></ScilabDouble></Array><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="8.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="5.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="4.0"/><data column="1" line="0" realPart="1.0"/></ScilabDouble></Array><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="0.8"/><data column="1" line="0" realPart="0.8"/><data column="2" line="0" realPart="0.8"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/></Array><Array scilabClass="ScilabList"><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="119.0"/><data column="1" line="0" realPart="-150.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="20.0"/><data column="1" line="0" realPart="20.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="5.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKOUT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="output"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-3e07f539:168315200c0:-7894"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKOUT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-3e07f539:168315200c0:-7894"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="-40.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="40.0"/><data column="1" line="0" realPart="40.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabString height="2" width="1"><data column="0" line="0" value="0.005"/><data column="0" line="1" value="0"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="6.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"EVTDLY_c",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="evtdly4"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble></Array><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="0.005"/><data column="0" line="1" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-3e07f539:168315200c0:-7892"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="EVTDLY_c"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-3e07f539:168315200c0:-7892"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="Block"/><data column="1" line="0" value="graphics"/><data column="2" line="0" value="model"/><data column="3" line="0" value="gui"/><data column="4" line="0" value="doc"/></ScilabString><Array scilabClass="ScilabMList"><ScilabString height="1" width="19"><data column="0" line="0" value="graphics"/><data column="1" line="0" value="orig"/><data column="2" line="0" value="sz"/><data column="3" line="0" value="flip"/><data column="4" line="0" value="theta"/><data column="5" line="0" value="exprs"/><data column="6" line="0" value="pin"/><data column="7" line="0" value="pout"/><data column="8" line="0" value="pein"/><data column="9" line="0" value="peout"/><data column="10" line="0" value="gr_i"/><data column="11" line="0" value="id"/><data column="12" line="0" value="in_implicit"/><data column="13" line="0" value="out_implicit"/><data column="14" line="0" value="in_style"/><data column="15" line="0" value="out_style"/><data column="16" line="0" value="in_label"/><data column="17" line="0" value="out_label"/><data column="18" line="0" value="style"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="123.3773266666667"/><data column="1" line="0" realPart="-169.33333333333331"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="7.0"/><data column="1" line="0" realPart="7.0"/></ScilabDouble><ScilabBoolean height="1" width="1"><data column="0" line="0" value="true"/></ScilabBoolean><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="4.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="5.0"/><data column="0" line="1" realPart="6.0"/></ScilabDouble><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="xstringb(orig(1),orig(2),"CLKSPLIT_f",sz(1),sz(2));"/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="8.0"/></ScilabDouble></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="24"><data column="0" line="0" value="model"/><data column="1" line="0" value="sim"/><data column="2" line="0" value="in"/><data column="3" line="0" value="in2"/><data column="4" line="0" value="intyp"/><data column="5" line="0" value="out"/><data column="6" line="0" value="out2"/><data column="7" line="0" value="outtyp"/><data column="8" line="0" value="evtin"/><data column="9" line="0" value="evtout"/><data column="10" line="0" value="state"/><data column="11" line="0" value="dstate"/><data column="12" line="0" value="odstate"/><data column="13" line="0" value="rpar"/><data column="14" line="0" value="ipar"/><data column="15" line="0" value="opar"/><data column="16" line="0" value="blocktype"/><data column="17" line="0" value="firing"/><data column="18" line="0" value="dep_ut"/><data column="19" line="0" value="label"/><data column="20" line="0" value="nzcross"/><data column="21" line="0" value="nmode"/><data column="22" line="0" value="equations"/><data column="23" line="0" value="uid"/></ScilabString><ScilabString height="1" width="1"><data column="0" line="0" value="split"/></ScilabString><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabDouble height="0" width="0"/><ScilabDouble height="0" width="0"/><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="d"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-1.0"/><data column="0" line="1" realPart="-1.0"/></ScilabDouble><ScilabBoolean height="1" width="2"><data column="0" line="0" value="false"/><data column="1" line="0" value="false"/></ScilabBoolean><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array scilabClass="ScilabList"/><ScilabString height="1" width="1"><data column="0" line="0" value="-3e07f539:168315200c0:-788f"/></ScilabString></Array><ScilabString height="1" width="1"><data column="0" line="0" value="CLKSPLIT_f"/></ScilabString><Array scilabClass="ScilabList"><ScilabString height="1" width="1"><data column="0" line="0" value="-3e07f539:168315200c0:-788f"/></ScilabString></Array></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="60.0"/><data column="0" line="1" realPart="100.0"/><data column="0" line="2" realPart="133.8773266666667"/></ScilabDouble><ScilabDouble height="3" width="1"><data column="0" line="0" realPart="-44.0"/><data column="0" line="1" realPart="-180.0"/><data column="0" line="2" realPart="-158.33333333333331"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="132.71066000000005"/><data column="0" line="1" realPart="149.0"/></ScilabDouble><ScilabDouble height="2" width="1"><data column="0" line="0" realPart="-173.33333333333331"/><data column="0" line="1" realPart="-126.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="1.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array><Array scilabClass="ScilabMList"><ScilabString height="1" width="8"><data column="0" line="0" value="Link"/><data column="1" line="0" value="xx"/><data column="2" line="0" value="yy"/><data column="3" line="0" value="id"/><data column="4" line="0" value="thick"/><data column="5" line="0" value="ct"/><data column="6" line="0" value="from"/><data column="7" line="0" value="to"/></ScilabString><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="135.04399333333336"/><data column="0" line="1" realPart="140.70999999999998"/><data column="0" line="2" realPart="100.0"/><data column="0" line="3" realPart="60.0"/></ScilabDouble><ScilabDouble height="4" width="1"><data column="0" line="0" realPart="-173.33333333333331"/><data column="0" line="1" realPart="-50.0"/><data column="0" line="2" realPart="-50.0"/><data column="0" line="3" realPart="4.0"/></ScilabDouble><ScilabString height="1" width="1"><data column="0" line="0" value="drawlink"/></ScilabString><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="0.0"/><data column="1" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="2"><data column="0" line="0" realPart="5.0"/><data column="1" line="0" realPart="-1.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="3.0"/><data column="1" line="0" realPart="2.0"/><data column="2" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble height="1" width="3"><data column="0" line="0" realPart="2.0"/><data column="1" line="0" realPart="1.0"/><data column="2" line="0" realPart="1.0"/></ScilabDouble></Array></Array><ScilabString height="1" width="1"><data column="0" line="0" value=""/></ScilabString><Array scilabClass="ScilabList"/></Array><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="40.0" width="40.0" x="410.0" y="320.0"/></BasicBlock><CommandPort dataType="UNKNOW_TYPE" id="75289c83:1315698632f:-7deb" ordering="1" parent="75289c83:1315698632f:-7e77" style="CommandPort;align=center;verticalAlign=bottom;spacing=10;rotation=90;flip=false;mirror=false"><mxGeometry as="geometry" height="8.0" width="8.0" x="16.0" y="40.0"/></CommandPort><CommandControlLink id="75289c83:1315698632f:-7e72" parent="75289c83:1315698632f:-8000" source="75289c83:1315698632f:-7deb" target="75289c83:1315698632f:-7d7d"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="430.0" y="364.0"/><mxPoint as="targetPoint" x="388.88888888888886" y="398.1481481481481"/><Array as="points" scilabClass="ScilabList"><mxPoint x="430.0" y="400.0"/></Array></mxGeometry></CommandControlLink><SplitBlock id="75289c83:1315698632f:-7e3e" ordering="16" parent="75289c83:1315698632f:-8000" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="227.0" y="67.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="75289c83:1315698632f:-7e3d" ordering="1" parent="75289c83:1315698632f:-7e3e" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="75289c83:1315698632f:-7e3c" ordering="1" parent="75289c83:1315698632f:-7e3e" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="75289c83:1315698632f:-7e3b" ordering="2" parent="75289c83:1315698632f:-7e3e" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitLink id="75289c83:1315698632f:-7e3a" parent="75289c83:1315698632f:-8000" source="75289c83:1315698632f:-7f99" target="75289c83:1315698632f:-7e3d"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="790.0" y="160.0"/><mxPoint x="790.0" y="70.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="75289c83:1315698632f:-7e3f" parent="75289c83:1315698632f:-8000" source="75289c83:1315698632f:-7e3b" target="75289c83:1315698632f:-7ea3"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="324.0" y="240.00000000000003"/><mxPoint as="targetPoint" x="351.85185185185185" y="74.07407407407408"/><Array as="points" scilabClass="ScilabList"><mxPoint x="230.0" y="240.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="75289c83:1315698632f:-7e2d" parent="75289c83:1315698632f:-8000" source="75289c83:1315698632f:-7e3c" target="75289c83:1315698632f:-7fbe"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="120.0" y="70.0"/><mxPoint x="120.0" y="70.0"/></Array></mxGeometry></ImplicitLink><SplitBlock id="75289c83:1315698632f:-7e20" ordering="17" parent="75289c83:1315698632f:-8000" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="297.0" y="297.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="75289c83:1315698632f:-7e1f" ordering="1" parent="75289c83:1315698632f:-7e20" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="75289c83:1315698632f:-7e1e" ordering="1" parent="75289c83:1315698632f:-7e20" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="75289c83:1315698632f:-7e1d" ordering="2" parent="75289c83:1315698632f:-7e20" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitLink id="75289c83:1315698632f:-7e1c" parent="75289c83:1315698632f:-8000" source="75289c83:1315698632f:-7f75" target="75289c83:1315698632f:-7e1f"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="250.0" y="300.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="75289c83:1315698632f:-7e21" parent="75289c83:1315698632f:-8000" source="75289c83:1315698632f:-7ea5" target="75289c83:1315698632f:-7e1d"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="300.0" y="264.0"/><mxPoint as="targetPoint" x="296.2962962962963" y="296.2962962962963"/></mxGeometry></ImplicitLink><ExplicitLink id="75289c83:1315698632f:-7e1a" parent="75289c83:1315698632f:-8000" source="75289c83:1315698632f:-7ea4" target="75289c83:1315698632f:-7d7f"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="324.0" y="240.00000000000003"/><mxPoint as="targetPoint" x="351.85185185185185" y="370.3703703703703"/><Array as="points" scilabClass="ScilabList"><mxPoint x="350.0" y="240.0"/></Array></mxGeometry></ExplicitLink><SplitBlock id="75289c83:1315698632f:-7e0d" ordering="18" parent="75289c83:1315698632f:-8000" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="427.0" y="297.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="75289c83:1315698632f:-7e0c" ordering="1" parent="75289c83:1315698632f:-7e0d" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="75289c83:1315698632f:-7e0b" ordering="1" parent="75289c83:1315698632f:-7e0d" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="75289c83:1315698632f:-7e0a" ordering="2" parent="75289c83:1315698632f:-7e0d" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitLink id="75289c83:1315698632f:-7e09" parent="75289c83:1315698632f:-8000" source="75289c83:1315698632f:-7e1e" target="75289c83:1315698632f:-7e0c"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="75289c83:1315698632f:-7e08" parent="75289c83:1315698632f:-8000" source="75289c83:1315698632f:-7e0b" target="75289c83:1315698632f:-7f9e"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="490.0" y="300.0"/><mxPoint x="630.0" y="300.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="75289c83:1315698632f:-7e0e" parent="75289c83:1315698632f:-8000" source="75289c83:1315698632f:-7f50" target="75289c83:1315698632f:-7e0a"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="430.0" y="253.99999999999997"/><mxPoint as="targetPoint" x="435.18518518518516" y="296.2962962962963"/></mxGeometry></ImplicitLink><SplitBlock id="75289c83:1315698632f:-7df6" ordering="19" parent="75289c83:1315698632f:-8000" simulationFunctionType="DEFAULT" style="SPLIT_f;flip=false;mirror=false"><mxGeometry as="geometry" height="7.0" width="7.0" x="497.0" y="157.0"/></SplitBlock><ImplicitInputPort dataType="UNKNOW_TYPE" id="75289c83:1315698632f:-7df5" ordering="1" parent="75289c83:1315698632f:-7df6" style="ImplicitInputPort;align=left;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ImplicitInputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="75289c83:1315698632f:-7df4" ordering="1" parent="75289c83:1315698632f:-7df6" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ImplicitOutputPort><ImplicitOutputPort dataType="UNKNOW_TYPE" id="75289c83:1315698632f:-7df3" ordering="2" parent="75289c83:1315698632f:-7df6" style="ImplicitOutputPort;align=right;verticalAlign=middle;spacing=10;rotation=0;flip=false;mirror=false" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="6.0"/></ImplicitOutputPort><ImplicitLink id="75289c83:1315698632f:-7df2" parent="75289c83:1315698632f:-8000" source="75289c83:1315698632f:-7f7d" target="75289c83:1315698632f:-7df5"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"><mxPoint x="180.0" y="160.0"/><mxPoint x="430.0" y="160.0"/></Array></mxGeometry></ImplicitLink><ImplicitLink id="75289c83:1315698632f:-7df1" parent="75289c83:1315698632f:-8000" source="75289c83:1315698632f:-7df4" target="75289c83:1315698632f:-7f96"><mxGeometry as="geometry"><Array as="points" scilabClass="ScilabList"/></mxGeometry></ImplicitLink><ImplicitLink id="75289c83:1315698632f:-7df7" parent="75289c83:1315698632f:-8000" source="75289c83:1315698632f:-7df3" target="75289c83:1315698632f:-7f4e"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="453.99999999999994" y="230.00000000000003"/><mxPoint as="targetPoint" x="500.0" y="162.33766233766232"/><Array as="points" scilabClass="ScilabList"><mxPoint x="500.0" y="230.0"/></Array></mxGeometry></ImplicitLink><TextBlock id="75289c83:1315698632f:-7d9c" parent="75289c83:1315698632f:-8000" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;flip=false;mirror=false;fontColor=#DB1717" value="Reference Bus"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="Reference Bus"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="Reference Bus"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="520.0" y="290.0"/></TextBlock><TextBlock id="75289c83:1315698632f:-7d99" parent="75289c83:1315698632f:-8000" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;flip=false;mirror=false" value="I1"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="I1"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="I1"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="60.0" y="220.0"/></TextBlock><TextBlock id="75289c83:1315698632f:-7d96" parent="75289c83:1315698632f:-8000" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;flip=false;mirror=false" value="I2"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="I2"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="I2"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="190.0" y="220.0"/></TextBlock><TextBlock id="75289c83:1315698632f:-7d93" parent="75289c83:1315698632f:-8000" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;flip=false;mirror=false" value="4"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="4"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="4"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="640.0" y="200.0"/></TextBlock><TextBlock id="75289c83:1315698632f:-7d90" parent="75289c83:1315698632f:-8000" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;flip=false;mirror=false" value="2"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="2"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="2"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="540.0" y="110.0"/></TextBlock><TextBlock id="75289c83:1315698632f:-7d8c" parent="75289c83:1315698632f:-8000" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;flip=false;mirror=false" value="3"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="3"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="3"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="680.0" y="110.0"/></TextBlock><TextBlock id="75289c83:1315698632f:-7d87" parent="75289c83:1315698632f:-8000" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;flip=false;mirror=false" value="V2"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="V2"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="V2"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="410.0" y="180.0"/></TextBlock><TextBlock id="75289c83:1315698632f:-7d84" parent="75289c83:1315698632f:-8000" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;flip=false;mirror=false" value="V1"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="V1"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="V1"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="280.0" y="190.0"/></TextBlock><TextBlock id="75289c83:1315698632f:-7d7a" parent="75289c83:1315698632f:-8000" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=12;flip=false;mirror=false" value=""><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value=""/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value=""/></ScilabString><mxGeometry as="geometry" height="40.0" width="150.0" x="710.0" y="400.0"/></TextBlock><TextBlock id="75289c83:1315698632f:-7d76" parent="75289c83:1315698632f:-8000" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=14;flip=false;mirror=false;fontColor=#DB1717" value="Current Injection Technique"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="Current Injection Technique"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="Current Injection Technique"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="440.0" y="30.0"/></TextBlock><TextBlock id="75289c83:1315698632f:-7d71" parent="75289c83:1315698632f:-8000" simulationFunctionType="DEFAULT" style="TEXT_f;fontStyle=1;fontSize=12;flip=false;mirror=false;fontColor=#4CA8E1" value="Current source I1 is ON from t=0 to t=2<br>Current source I2 is ON from t=4 to t=6<br>"><ScilabString as="exprs" height="1" width="3"><data column="0" line="0" value="Current source I1 is ON from t=0 to t=2<br>Current source I2 is ON from t=4 to t=6<br>"/><data column="1" line="0" value="2"/><data column="2" line="0" value="1"/></ScilabString><ScilabString as="realParameters" height="1" width="1"><data column="0" line="0" value="Current source I1 is ON from t=0 to t=2<br>Current source I2 is ON from t=4 to t=6<br>"/></ScilabString><mxGeometry as="geometry" height="40.0" width="40.0" x="600.0" y="350.0"/></TextBlock></root></mxGraphModel><mxCell as="defaultParent" id="75289c83:1315698632f:-8000" parent="75289c83:1315698632f:-7fff"/></XcosDiagram>
\ No newline at end of file diff --git a/Working_Examples/83/CH9/EX9.7/result_example_9_7.txt b/Working_Examples/83/CH9/EX9.7/result_example_9_7.txt new file mode 100755 index 0000000..71ab7b4 --- /dev/null +++ b/Working_Examples/83/CH9/EX9.7/result_example_9_7.txt @@ -0,0 +1,18 @@ + + + We can approach this problem using XCOS simulation + + In this simulation + + 1)For injecting unit current at bus1 keeping bus2 open circuit,we use a current source of 1 unit which is + switched on from t=0 to t=2. During this period we can observe the voltage waveforms of V1 and V2 and + compare with the results given in the textbook + + 2)For injecting unit current at bus2 keeping bus1 open circuit,we use a current source of 1 unit which is + switched on from t=4 to t=6. During this period we can observe the voltage waveforms of V1 and V2 and + compare with the results given in the textbook + Zbus = + + 7. 4. + 4. 6. + diff --git a/Working_Examples/83/CH9/EX9.7/xcos_result_example_9_7.jpeg b/Working_Examples/83/CH9/EX9.7/xcos_result_example_9_7.jpeg Binary files differnew file mode 100755 index 0000000..fb74c3a --- /dev/null +++ b/Working_Examples/83/CH9/EX9.7/xcos_result_example_9_7.jpeg diff --git a/Working_Examples/83/CH9/EX9.8/example_9_8.sce b/Working_Examples/83/CH9/EX9.8/example_9_8.sce new file mode 100755 index 0000000..c4b0ef7 --- /dev/null +++ b/Working_Examples/83/CH9/EX9.8/example_9_8.sce @@ -0,0 +1,32 @@ +//Chapter 9 +//Example 9.8 +//page 360 +//To build Zbus matrix using Zbus building algorithm +clear;clc; + +disp("Let us go on modifying Zbus by including nodes and the elements connected to it one by one as given in the textbook") + +//step-1 type1 modification +Zbus=[0.25]; +printf('\nstep-1 type1 modification\nZbus=');disp(Zbus); + +//step-2 type2 modification +Zbus=[Zbus,0.25;0.25,0.25+0.1]; +printf('\nstep-2 type2 modification\nZbus=');disp(Zbus); + +//step-3 type2 modification +Zbus=[Zbus [0.25;0.25]; 0.25 0.25 0.35]; +printf('\nstep-3 type2 modification\nZbus=');disp(Zbus); + +//step-4 type3 modification +Zbus=Zbus-(1/(Zbus(3,3)+0.25))*[Zbus(1:3,2:2)]*[Zbus(2:2,1:3)]; +printf('\nstep-4 type3 modification\nZbus=');disp(Zbus); + +printf('This is the final Zbus matrix after including all the elements\n'); +//step-5 type4 modification +Zbus=Zbus-(1/(0.1+Zbus(2,2)+Zbus(3,3)-2*Zbus(2,3)))*[Zbus(1:3,2:2)-Zbus(1:3,3:3)]*[Zbus(2:2,1:3)-Zbus(3:3,1:3)]; +printf('\nstep-5 type4 modification\nZbus=');disp(Zbus); + +disp("opening a line between 2-3 is equivalent to connecting (-0.1) between bus3 bus2") +Zbus=Zbus-(1/(-0.1+Zbus(2,2)+Zbus(3,3)-2*Zbus(2,3)))*[Zbus(1:3,2:2)-Zbus(1:3,3:3)]*[Zbus(2:2,1:3)-Zbus(3:3,1:3)]; +printf('Zbus=');disp(Zbus);printf('(same as in step 4)');
\ No newline at end of file diff --git a/Working_Examples/83/CH9/EX9.8/result_example_9_8.txt b/Working_Examples/83/CH9/EX9.8/result_example_9_8.txt new file mode 100755 index 0000000..a2c2e51 --- /dev/null +++ b/Working_Examples/83/CH9/EX9.8/result_example_9_8.txt @@ -0,0 +1,39 @@ + + Let us go on modifying Zbus by including nodes and the elements connected to it one by + one as given in the textbook + +step-1 type1 modification +Zbus= + 0.25 + +step-2 type2 modification +Zbus= + 0.25 0.25 + 0.25 0.35 + +step-3 type2 modification +Zbus= + 0.25 0.25 0.25 + 0.25 0.35 0.25 + 0.25 0.25 0.35 + +step-4 type3 modification +Zbus= + 0.1458333 0.1041667 0.1458333 + 0.1041667 0.1458333 0.1041667 + 0.1458333 0.1041667 0.2458333 +This is the final Zbus matrix after including all the elements + +step-5 type4 modification +Zbus= + 0.1397059 0.1102941 0.125 + 0.1102941 0.1397059 0.125 + 0.125 0.125 0.175 + + opening a line between 2-3 is equivalent to connecting (-0.1) between bus3 bus2 +Zbus= + 0.1458333 0.1041667 0.1458333 + 0.1041667 0.1458333 0.1041667 + 0.1458333 0.1041667 0.2458333 +(same as in step 4) + diff --git a/Working_Examples/83/CH9/EX9.9/example_9_9.sce b/Working_Examples/83/CH9/EX9.9/example_9_9.sce new file mode 100755 index 0000000..dca2934 --- /dev/null +++ b/Working_Examples/83/CH9/EX9.9/example_9_9.sce @@ -0,0 +1,36 @@ +//Chapter 9 +//Example 9.9 +//page 362 +//To find postfault currents and voltages +clear;clc; + +disp("The Thevenin passive network for this system is drawn in Example_9_8 (or fig 9.28 in the textbook)"); +disp("Using the Zbus matrix from the results of example_9_8,we can calculate post fault currents and voltages"); +Zbus=%i*[0.1397059 0.1102941 0.125;0.1102941 0.1397059 0.125;0.125 0.125 0.175] + +//to find fault current +V30=1;V10=1;V20=1; +If=(V30/(Zbus(3,3)+0)); +printf('\nIf=-j%0.2f pu\n',abs(If)); + + +//to find postfault voltages +V1f=V10-(Zbus(1,3)/Zbus(3,3)); +V2f=V20-(Zbus(2,3)/Zbus(3,3)); +printf('\nV1f=%0.3f',V1f); +printf('\nV2f=%0.3f',V2f); + +//to find fault currents in the TL +I12f=(V1f-V2f)/(%i*0.1); +I13f=(V1f-0)/(%i*0.1); +I23f=(V2f-0)/(%i*0.1); +printf('\n\nI12f=%d',I12f); +printf('\nI13f=-j%0.2f',abs(I13f)); +printf('\nI23f=-j%0.2f',abs(I23f)); + +//to find generator currents during faults +Eg1=1;Eg2=1; +Ig1f=(Eg1-V1f)/(0.2*%i+0.05*%i); +Ig2f=(Eg2-V2f)/(0.2*%i+0.05*%i); +printf('\n\nIg1f=-j%0.2f',abs(Ig1f)); +printf('\nIg2f=-j%0.2f\n\n',abs(Ig2f));
\ No newline at end of file diff --git a/Working_Examples/83/CH9/EX9.9/result_example_9_9.txt b/Working_Examples/83/CH9/EX9.9/result_example_9_9.txt new file mode 100755 index 0000000..b051937 --- /dev/null +++ b/Working_Examples/83/CH9/EX9.9/result_example_9_9.txt @@ -0,0 +1,24 @@ + + + The Thevenin passive network for this system is drawn in Example_9_8 (or fig 9.28 in the textbook) + + Using the Zbus matrix from the results of example_9_8,we can calculate post fault currents and voltages + Zbus = + + 0.1397059i 0.1102941i 0.125i + 0.1102941i 0.1397059i 0.125i + 0.125i 0.125i 0.175i + +If=-j5.71 pu + +V1f=0.286 +V2f=0.286 + +I12f=0 +I13f=-j2.86 +I23f=-j2.86 + +Ig1f=-j2.86 +Ig2f=-j2.86 + + |